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Author SHA1 Message Date
修雨 0e892c7d75 fix: honour HTTP_PROXY/HTTPS_PROXY in custom HTTP transports (#236) (#237)
The three custom http.Transport instances built by the CLI
(`internal/transport/client.go` MCP transport, `internal/apiclient/client.go`
DingTalk OpenAPI client, `internal/app/legacy.go` IPv4-forcing registry
client) all set DialContext / TLSClientConfig / timeouts but omit the Proxy
field. Per Go's net/http contract, a non-nil Transport without an explicit
Proxy means "no proxy" — env vars are silently ignored, breaking sandboxed
or air-gapped deployments that route outbound through HTTP_PROXY /
HTTPS_PROXY.

Set Proxy: http.ProxyFromEnvironment on all three. Adds a regression test
per package that pointer-compares the Transport's Proxy func against
http.ProxyFromEnvironment (avoids flakiness from Go's envProxyOnce
memoisation when running alongside tests that read proxy env early).
2026-05-08 16:07:14 +08:00
修雨 8995bf65d6 docs(changelog): backfill 1.0.20 / 1.0.21 / 1.0.22 release notes (#231) 2026-05-07 21:52:09 +08:00
ybc❤️zyrand猷诺 91af2bc3b8 fix(install): add .hermes/skills to AGENT_DIRS (#188) (#221)
* fix(install): add .hermes/skills to AGENT_DIRS (#188)

dws 安装后未自动复制 skill 到 .hermes/skills/。在 4 份硬编码的
AGENT_DIRS 清单(build/npm/install.js、scripts/install.sh、
scripts/install.ps1、scripts/install-skills.sh)末尾追加
.hermes/skills,与现有'父目录守卫'逻辑天然兼容:

- 已安装 Hermes 的用户:自动获得 ~/.hermes/skills/dws
- 未安装 Hermes 的用户:父目录不存在则跳过,零副作用

Closes #188

* fix(install): cover remaining 4 AGENT_DIRS sources for .hermes/skills (review feedback)

Address review feedback from #221: the AGENT_DIRS list actually has 8 sources
in the repo, not 4. Without this commit, dws upgrade users and Homebrew users
would still NOT get .hermes/skills/dws populated even after the previous
4-script fix landed.

Fixes (functional):
- internal/upgrade/paths.go (knownSkillDirs):
    Append .hermes/skills so 'dws upgrade' refreshes ~/.hermes/skills/dws/
    for users who have Hermes installed.
- build/homebrew.rb.tmpl (post_install targets):
    Append .hermes/skills/dws so brew users also get the skill copied to
    ~/.hermes/skills/dws on post_install.

Fixes (test / smoke coverage):
- test/scripts/package_script_test.go (expectedPackagedSkillTargets):
    Append .hermes/skills/dws so future regressions (e.g. someone removes
    .hermes from install.js) are caught by CI.
- scripts/release/verify-package-managers.sh (HOME_AGENT_PARENTS / HOME_SKILL_TARGETS):
    Append .hermes to both lists so the release-time npm/brew smoke test
    actually asserts ~/.hermes/skills/dws/SKILL.md exists.

Documentation:
- internal/upgrade/paths.go: expanded the 'Kept in sync with' comment from
    a single file reference (build/npm/install.js) to all 7 in-sync sources,
    so future maintainers don't have to rediscover this list.

Verification:
- go vet ./internal/upgrade/... ./test/scripts/...   PASS
- go build ./...                                     PASS
- sh -n scripts/install.sh                           PASS
- sh -n scripts/install-skills.sh                    PASS
- sh -n scripts/release/verify-package-managers.sh   PASS
- node --check build/npm/install.js                  PASS

---------

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-05-07 11:07:27 +08:00
ybc❤️zyrand猷诺 e2e8b3bf52 fix(attendance): summary 命令新增 --stats-type flag,修复 C0002 报错 (#228)
* fix(attendance): add --stats-type flag to summary to fix C0002 error

The MCP tool get_attendance_summary requires statsType in QueryUserAttendVO
at the server-side business layer (DingTalk schema marks it required:[] but
service rejects with C0002 'statistics type error' when omitted).

Changes:
- internal/helpers/attendance.go: add --stats-type flag (week/month);
  conditionally write statsType into QueryUserAttendVO when provided;
  update Long description and flag help to mark --stats-type as required
- test/cli_compat/attendance_test.go: add execSummaryDryRun helper and
  3 new tests verifying statsType is correctly threaded through VO
- skills/references/products/attendance.md: document --stats-type flag
  with warning about server-side mandatory enforcement

Verification:
- go build ./...                                                  PASS
- go vet ./internal/helpers/... ./test/cli_compat/...              PASS
- go test -run TestAttendanceSummary_should_pass_stats_type_*      PASS (3/3)
- go test -run TestAttendanceSummary_should_not_pass_stats_type_*  PASS
- Real CLI: dws attendance summary --stats-type month              success:true
  (C0002 fully gone; full attendance data returned)

Closes #227

* fix(attendance): enforce --stats-type as required at CLI layer (review feedback)

Address review feedback from #228:

1. Fail-fast validation: --stats-type is now required at the CLI layer
   instead of being conditionally written into VO. Previously the doc
   said 'required' but RunE silently let omission through, causing the
   same C0002 the fix was supposed to prevent.

2. Enum validation: only 'week' or 'month' are accepted; any other value
   is rejected at the CLI layer instead of being forwarded to the server.

3. Cosmetic: split the single-line Long description into multiple lines
   for readability.

Test changes:
- Replaced TestAttendanceSummary_should_not_pass_stats_type_when_omitted
  with two semantically-correct tests:
    * TestAttendanceSummary_should_error_when_stats_type_missing
    * TestAttendanceSummary_should_error_when_stats_type_invalid
- Updated other TestAttendanceSummary_* tests to pass --stats-type=month
  to match the new fail-fast contract.
- Renamed should_pass_only_user_flag to should_pass_user_id_through_vo
  (the old name no longer makes sense now that --stats-type is mandatory).

Skill doc:
- skills/references/products/attendance.md: clarified that the CLI now
  rejects missing/invalid --stats-type at the client side (won't even
  reach the server).

Verification:
- go build ./...                                    PASS
- go vet ./internal/helpers/... ./test/cli_compat/  PASS
- go test -run 'TestAttendanceSummary_should_(pass_stats_type|error_when_stats_type)' -v
                                                    PASS (4/4)
- dws attendance summary --help                     new layout shown

---------

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-05-07 10:50:24 +08:00
ybc❤️zyrand猷诺 a652b90fd4 fix: resolve cross-product tool routing collision (issue #219) (#220)
When two MCP servers register tools with the same name (e.g. both drive
and doc have 'create_folder'), the tool-level endpoint map uses
last-writer-wins, causing invocations to route to the wrong server.

Fix: swap Priority 1 (product-level) and Priority 2 (tool-level) in
directRuntimeEndpoint so that when the caller already knows the
productID, the product endpoint is authoritative. Tool-level lookup
remains as a fallback for cases where productID is empty.

This fixes 'dws drive mkdir' and 'dws drive download' being silently
routed to the doc MCP server instead of the drive MCP server.

Closes #219

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-05-05 16:21:51 +08:00
修雨 7a868ddf39 docs(help): document --contents.key=field_name and mark required flags (#106 #107) (#217)
- chat message send-by-bot --robot-code/--title/--text: append (必填) marker
  (RunE already enforces these as required; help text was missing the tag,
  causing downstream MCP wrappers to generate schemas with required fields
  missing).
- report create --contents: description appended "key must exactly equal the
  template field_name (look it up via report template detail --name <template>)";
  Long now warns about the API's SYSTEM_ERROR on key mismatch; Examples
  rewritten as a two-step pipeline (template detail → create).

Closes #106
Closes #107
2026-05-04 17:57:23 +08:00
ybc❤️zyrand猷诺 89d7c5f11b docs: clarify message list pagination to prevent nextCursor misuse (fixes #195) (#218)
* docs: clarify message list pagination to prevent nextCursor misuse (fixes #195)

- Add detailed pagination walkthrough section for 'message list' in chat.md
- Add comparison table distinguishing 'message list' (--time with createTime)
  from 'message list-all' (--cursor with nextCursor)
- Add warning about common error: using nextCursor as --time value
  causes infinite loop returning same page

* docs: fix --time required label and add --forward misuse warning (fixes #195)

---------

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-05-04 16:38:09 +08:00
ybc❤️zyrand猷诺 efb61cae02 fix: restore unconditional MCP re-fetch in login to prevent stale clientId errors (#213)
PR #184 merge conflict resolution inadvertently introduced a conditional
branch that preserved stale clientID from previous login sessions instead
of always re-fetching from MCP server. This caused exchangeCode() to use
direct DingTalk API mode (which requires clientSecret) instead of MCP
proxy mode, resulting in 'clientId或者clientSecret错误' errors.

This commit restores the original PR #157 logic: both DeviceFlowProvider
and OAuthProvider unconditionally call resetCredentialState() followed by
FetchClientIDFromMCP() + SetClientIDFromMCP(), ensuring exchangeCode()
always uses the MCP proxy path regardless of prior login state.

Root cause: the conditional branch treated any non-empty clientID (from
runtimeClientID or app.json) as a user-provided --client-id flag value,
skipping MCP re-fetch and leaving clientIDFromMCP=false after reset.

Affected scenarios:
- OAuth login → device flow login
- Any login → --force login
- New terminal with existing app.json → device flow login

Fixes regression introduced in PR #184 (commit 46192d6).
Restores fix from PR #157 (commit ad33a46).

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-05-04 09:26:25 +08:00
ybc❤️zyrand猷诺 fb88c6ace9 docs(todo): 增强待办命令帮助文本,补充字段语义说明 (#205)
基于实际 API 返回验证,所有描述均经过 dws 命令实测确认。

- todo task get: 新增 Long 说明
  · creatorId/executorIds/participantIds/modifierId 是待办内部短数字 ID
    (如 6380165826),非通讯录 userId (如 035551044606950179),已实测确认
  · 提示 creatorInfo/executorInfos/participantInfos 包含 name 属性可获取姓名
  · bizTag/source 返回 teambition 是引擎实现标识,已实测确认
  · tenantId 非 corpId,补充 tenantType 维度说明
- todo task list: 新增 Long 说明
  · 覆盖范围: 仅返回执行者维度待办,不含仅参与/仅创建的待办
  · 仅限个人待办,不含 OA 审批流/Teambition 项目任务
  · 自动分页说明
- todo task create: --executors flag 描述增强
  · 明确此处 userId 是通讯录 userId 并提示查询方式

Fixes #105

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-05-04 09:26:12 +08:00
ybc❤️zyrand猷诺 5258959a14 docs: update contact search examples from --keyword to --query (#209)
The --keyword flag was renamed to --query for contact user search,
contact dept search, and devdoc article search (as noted in CHANGELOG).
This commit updates all documentation references for the contact
commands. devdoc will be addressed in a follow-up PR.

Refs #105

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-04-30 16:32:34 +08:00
xianfeng wangandgithub-actions[bot] c515fc1001 1.0.19 CHANGELOG (#204)
* chore: update coverage badge [skip ci]

* chore: update coverage badge [skip ci]

* chore: update coverage badge [skip ci]

* chore: update coverage badge [skip ci]

* chore: update coverage badge [skip ci]

* 1.0.19 changelog

---------

Co-authored-by: github-actions[bot] <github-actions[bot]@users.noreply.github.com>
2026-04-30 14:36:58 +08:00
xianfeng wangandgithub-actions[bot] 7692048cf4 fix(discovery): surface edition supplement/fallback servers in runtime catalog loader (#197)
* chore: update coverage badge [skip ci]

* chore: update coverage badge [skip ci]

* chore: update coverage badge [skip ci]

* fix conference discovery

---------

Co-authored-by: github-actions[bot] <github-actions[bot]@users.noreply.github.com>
2026-04-30 09:44:25 +08:00
ybc❤️zyrand猷诺 426810a776 fix(todo): correct tool name from query_todo_detail to get_todo_detail (#202)
The todo task get command was calling query_todo_detail which returns
empty results. Changed to get_todo_detail to match the tool name
defined in discovery.json, restoring correct behavior.

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-04-29 22:59:37 +08:00
xuanandshangguanxuan.sgx f253841cf7 docs(changelog): note PAT core changes (#193)
* docs(changelog): note PAT core changes

* docs(changelog): rewrite v1.0.18 release notes

---------

Co-authored-by: shangguanxuan.sgx <shangguanxuan.sgx@alibaba-inc.com>
2026-04-28 23:00:48 +08:00
xuanandshangguanxuan.sgx da2522c8ca feat(pat)!: A-core loop for host-owned PAT (#142)
* feat(pat): A-core minimum viable loop for host-owned PAT

Enables third-party agents to integrate PAT via the smallest possible
contract surface. The flow a host needs to ship end-to-end:

  1. Export DINGTALK_DWS_AGENTCODE in the spawned shell.
  2. Run any `dws ...` business command.
  3. On PAT hit, CLI exits with code 4 and writes a single-line stderr
     JSON following docs/pat/contract.md §2.
  4. Host parses the JSON and invokes `dws pat chmod <scope>...
     --agentCode ... --grant-type ...` to grant.
  5. Host replays the original command.

This PR intentionally ships ONLY the chmod path plus the host-owned
switch; the async flow (apply / status / scopes + authRequestId
registry + PAT_SCOPE_AUTH_REQUIRED active-request branch) lands in a
follow-up stacked PR (A-ext).

Scope of A-core:
- Host-owned PAT trigger: auth.HostOwnsPATFlow() keyed exclusively on
  DINGTALK_DWS_AGENTCODE (DINGTALK_AGENT / DWS_CHANNEL / claw-type do
  NOT participate).
- claw-type: hard-wired to "openClaw" in pkg/edition/default.go
  MergeHeaders hook, matching historical main behavior and decoupled
  from DINGTALK_AGENT.
- dws pat chmod: factory-built (newChmodCommand) so the PAT subcommand
  tree has no shared package-level caller.
- stderr JSON classifier: internal/errors/pat.go covers PAT_NO_PERMISSION
  / PAT_LOW_RISK / PAT_MEDIUM_RISK / PAT_HIGH_RISK / PAT_SCOPE_*
  selectors and fills data.hostControl for host consumption.
- Env contract: DINGTALK_SESSION_ID / DINGTALK_TRACE_ID /
  DINGTALK_MESSAGE_ID carry HTTP trace headers (Chain B);
  DWS_SESSION_ID (+ REWIND_SESSION_ID alias) is the lone fallback for
  `dws pat chmod --session-id` (Chain A). The two chains are
  independent; aliases do not cross-pollinate.
- Docs: docs/pat/{README,contract,host-integration}.md + refreshed
  docs/architecture.md "PAT Architecture" chapter + docs/reference.md
  PAT section. error-catalog.md folded into contract.md §6.
- Tests: host-owned signal, stderr contract, classifier, chmod factory,
  retry / poll loop for the CLI-owned chmod path.

Compatibility: no breaking changes on main. All non-PAT commands are
untouched.

Follow-up PRs (in order):
- codex/pat-ext  : dws pat apply / status / scopes + AsyncRegistry.
- codex/pat-oss-refactor (aka PR B) : oauth_helpers / secure_store
  refactors split out per code review.

Made-with: Cursor

* fix(pat): unify host-owned stderr contract

* revert: drop PAT docs and changelog from pat core PR

* fix(pat): pin behavior auth endpoint

* fix(pat): recognize legacy tool miss

* fix(pat): fallback on gateway diagnostics

* fix(pat): treat authorization uri as opaque

* fix(pat): accept result envelope in device-flow polling

* feat(pat): add browser policy and poll compatibility

* fix(pat): keep CLI and host PAT contracts separate

* test(pat): isolate opaque uri retry env

* fix(pat): harden PAT result routing

* fix(pat): harden host-owned flow and runtime fallback

* fix(pat): preserve chmod failure on empty grant result

* refactor(pat): drop dead doc anchors, dedupe stderr injection helpers

Address two reviewer findings on top of the PAT-core series.

Fix:
- chmod: resolveSessionIDFromEnv silently selects DWS_SESSION_ID; drop
  the slog.Warn that emitted both raw session ids into stderr /
  ~/.dws/logs.
- Remove every docs/pat/contract.md / error-catalog.md /
  host-integration.md anchor from comments, help, and tests; those
  files were never added by this branch. Comments are now self-contained
  or point to docs/reference.md where applicable.

Refactor:
- internal/errors/pat.go: extract lookupCodeIn so getPATErrorCode and
  getDWSGatewayErrorCode share one traversal; have ClassifyPatAuthCheck
  delegate to getPATErrorCode instead of repeating the enum walk.
- internal/errors/pat.go + internal/app/pat_auth_retry.go: extract
  ApplyHostMutations as the single injection point for data.hostControl
  + data.openBrowser; cleanPATJSON and enrichPATErrorForHostControl now
  share it so the two stderr-JSON write paths cannot drift.
- internal/app/pat_auth_retry.go: drop buildPATScopeHostJSON and
  buildHostControlState dead 1-line wrappers.
- internal/pat/chmod.go: drop unused patApply/Status/Scopes constants;
  derive legacyToolArgs from toolArgs by clone + scopes->scope rename so
  the two payloads stay in lock-step on every other field.

Net 15 files, +176 / -193. Verification:

  env -u DINGTALK_DWS_AGENTCODE go test \
    ./internal/errors ./internal/auth ./internal/pat ./test/unit
  env -u DINGTALK_DWS_AGENTCODE go test ./internal/app \
    -run 'Test(IsPat|ExtractPat|PrintPat|PollPat|HandlePat|RetryWithPat|EnrichPAT|BuildPAT|DirectRuntime|ResolveIdentityHeaders)'
  env -u DINGTALK_DWS_AGENTCODE go test -race \
    ./internal/pat ./internal/errors ./test/unit
  env -u DINGTALK_DWS_AGENTCODE go test -race ./internal/app \
    -run 'Test(HandlePat|RetryWithPat|EnrichPAT|BuildPAT|ResolveIdentityHeaders|DirectRuntime)'
  go vet ./... && go build ./...

All green.

Made-with: Cursor

---------

Co-authored-by: shangguanxuan.sgx <shangguanxuan.sgx@alibaba-inc.com>
2026-04-28 21:17:23 +08:00
43715e28b0 docs: fix skill reference docs to align with actual CLI commands (#186)
* chore: update coverage badge [skip ci]

* chore: update coverage badge [skip ci]

* docs: fix skill reference docs to align with actual CLI commands

- simple.md: fix OA command names (pending→list-pending, initiated→list-initiated)
- simple.md: remove non-existent devdoc article search-error command
- simple.md: update intent guide and context table to use correct command names
- workbench.md: mark as Draft since workbench commands are not yet available in CLI runtime

---------

Co-authored-by: github-actions[bot] <github-actions[bot]@users.noreply.github.com>
Co-authored-by: wxianfeng <wang.fl1429@gmail.com>
Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-04-28 11:18:30 +08:00
修雨 d11aa0f030 fix(chat,cmdutil): restore group @-mentions and explicit members list subcommand (#180)
* fix(chat,cmdutil): restore group @-mentions and members list subcommand

Two CLI regressions surfaced after PR #170 promoted hardcoded helpers over
the discovery envelope:

1. issue #177 — `dws chat message send --group ... --at-users ...` failed
   with `unknown flag: --at-users` on v1.0.16. The hardcoded helper that
   replaced the v1.0.15 envelope leaf only declared --group / --user /
   --open-dingtalk-id / --text / --title and silently dropped the envelope's
   --at-users / --at-all / --at-mobiles flags, so any group @-mention call
   bounced at cobra's flag parser before ever reaching the MCP tool.

   Add the three flags back to `newChatMessageSendCommand` and forward
   atUserIds / isAtAll / atMobiles to `send_message_as_user` in the
   `--group` branch; reject the flags loudly outside `--group` to avoid
   silently swallowing user intent in single-chat mode (single-chat tools
   have no @-mention semantics).

2. issue #164 — `dws chat group members --id <openConversationId>` returned
   `unknown flag: --id`. The helper had `members` as a "group with bare
   RunE + --id/--cursor flags" while the envelope publishes `members` as a
   leaf for `get_group_members`; the merge layer's shape-mismatch branch
   treats envelope as authority and silently drops the entire helper
   subtree (list / add / remove / add-bot all become unreachable).

   Restructure helper-side `members` into a pure group container and
   promote list to its own explicit subcommand:

     dws chat group members list --id <openconversation_id>

   And extend `pkg/cmdutil/MergeHardcodedLeaves` so the existing
   OverridePriority annotation also applies to the leaf↔group shape
   mismatch — when the helper group carries strictly higher priority it
   replaces the dynamic leaf, mirroring the leaf↔leaf override semantics
   that PR #170 already established. Without this the helper's `list`
   subcommand stays unreachable and the user-visible bug persists.

Tests:

- `internal/helpers/chat_test.go`: forwards-at-mentions (group + each
  flag variant), rejects-at-mentions-outside-group (single-chat
  validation), members-list-subcommand (structure + execution).
- `internal/app/legacy_test.go`: pickCommands integration test that
  reproduces the #164 shape mismatch end-to-end and asserts the helper
  subtree survives.
- `pkg/cmdutil/leaf_merge_test.go`: positive + boundary (equal priority)
  cases for the new leaf↔group promotion path.

Verified end-to-end against existing chat helper tests, app pickCommands
tests, cmdutil merge tests, cobracmd priority tests, compat dynamic
command tests — all green.

Skill docs (`skills/references/products/chat.md`) updated to teach the
new `members list` path with a migration note, and to surface the
restored `--at-mobiles` flag alongside `--at-all` / `--at-users`.

Closes #177
Closes #164

* fix(chat): resolve merge conflict in command Long text

Combine --title-required wording from #174 with at-mention
documentation introduced in this PR. CI build was failing on
unresolved <<<<<<< / >>>>>>> markers left in chat.go.
2026-04-27 22:56:46 +08:00
fantiu 41396426d0 Merge pull request #184 from fantiu/feat-rawapi
feat(api): add raw DingTalk OpenAPI command with dual-version token support
2026-04-27 21:14:15 +08:00
fantiu 6946929e0b feat(api): add raw DingTalk OpenAPI command with dual-version token support 2026-04-27 20:54:57 +08:00
xuanandshangguanxuan.sgx 6756ead38a fix: preserve PAT authorization uri and accept result poll envelope (#182)
* fix(pat): treat authorization uri as opaque

* fix(pat): accept result envelope in device-flow polling

* docs(pat): clarify empty-uri guard intent

* fix(pat): guard poll debug output and lock envelope priority

---------

Co-authored-by: shangguanxuan.sgx <shangguanxuan.sgx@alibaba-inc.com>
2026-04-27 20:04:01 +08:00
fantiu 4c44a2b632 Merge branch 'main' into feat-rawapi 2026-04-27 20:03:40 +08:00
修雨 c0468754a4 docs(changelog,readme): backfill v1.0.17 with mail product surface (#181)
CHANGELOG v1.0.17:
- Mail (#167) is a runtime product, not just a skill doc — verified by
  building v1.0.17 from source and inspecting `dws --help`. Lists the
  four leaf commands (mailbox list, message search/get/send) and the
  KQL pagination support.
- Plugin overlay-first registration (#179), VisibleProducts union
  refactor (#179), buildStdioCommands shared-helper refactor (#179),
  cache-poisoning guard (#179), --title docs clarification (#174).

README / README_zh:
- Add Mail row to Key Services table (4 commands, mailbox/message
  subgroups).
- Bump total: 159 commands across 13 products → 163 commands across
  14 products.
- Remove `mail` from "Coming soon" (now shipped).
- Drop the hardcoded "159" count from the command-index callout to
  avoid future skew until command-index.md is regenerated.
2026-04-27 17:21:45 +08:00
fantiu e06b1d68ff feat: raw API update README. 2026-04-27 17:08:32 +08:00
修雨 b101d5b12b docs(skills,chat): clarify --title is required for chat message send (#174)
The backend MCP tools `send_direct_message_as_user` and
`send_message_as_user` both require `title` as a required field.
However, the skill documentation and --help Long text described
--title as "optional", causing AI models to omit it and trigger
a vague `business error: success=false`.

Update descriptions in:
- skills/references/products/chat.md
- internal/helpers/chat.go (command Long text)

Closes #173
2026-04-27 16:49:05 +08:00
xianfeng wangandgithub-actions[bot] acc5dc8a3c feat(plugins): register stdio plugin commands from CLI overlay before discovery (#179)
* chore: update coverage badge [skip ci]

* chore: update coverage badge [skip ci]

* plugin in help

---------

Co-authored-by: github-actions[bot] <github-actions[bot]@users.noreply.github.com>
2026-04-27 16:20:35 +08:00
fantiu 592749c986 feat: The token retrieval interface is now unified to one. 2026-04-27 15:11:12 +08:00
fantiu 9b6174e03e feat(api): add raw DingTalk OpenAPI command with dual-version token support 2026-04-27 10:29:34 +08:00
github-actions[bot] f73fa08e49 chore: update coverage badge [skip ci] 2026-04-27 01:49:47 +00:00
fantiu bb5e5a40d9 Merge branch 'DingTalk-Real-AI:main' into main 2026-04-27 09:47:46 +08:00
ybc❤️zyrand猷诺 e3b0c9b1ed feat: add mail product reference doc and register in SKILL.md (#167)
- Add skills/references/products/mail.md with 4 subcommands:
  mailbox list, message search (KQL), message get, message send
- Register mail in SKILL.md: product table, intent routing, description
- All params verified against dws schema and --mock execution

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-04-27 09:35:49 +08:00
修雨 cc1f0a47e3 docs(changelog): backfill v1.0.16 (and v1.0.14 docs-only re-tag) (#171)
* docs(changelog): backfill v1.0.16 (and v1.0.14 docs-only re-tag)

v1.0.16 ships discovery service abstraction + schema v3 (#156),
open-edition helper grafting (#169), chat message send destination
routing (#170), and device flow defensive credential reset (#157).
The v1.0.16 GitHub release notes are refreshed in lock-step with
this CHANGELOG entry (previously they were the auto-generated
4-line commit list).

v1.0.14 also gets a one-line entry noting it is a docs-only re-tag
of v1.0.13 (#153 backfilled v1.0.13 release notes after the binary
was already published; no functional change).

* docs(changelog): reorder v1.0.14 to date-descending position

v1.0.14 (2026-04-22) was sitting above v1.0.15 (2026-04-23). Move it between v1.0.15 and v1.0.13 so the file reads strictly date-descending.

* docs(changelog): trim v1.0.16 entry to match prior granularity

Drop nested sub-bullets (discovery internals / schema v3 enumeration / device-flow root cause) and the standalone Tests section; keep one bullet per PR. Aligns with v1.0.4 / v1.0.7 / v1.0.8 single-paragraph + 3-5 bullets style. 47 lines → 7 net (-40).
2026-04-27 09:35:11 +08:00
Ari b0c9160ed5 fix(chat,cmdutil): route chat message send by destination flag (#170)
* fix(app): graft hardcoded helpers into dynamic tree instead of dropping

pickCommands previously dropped an entire helper subtree whenever a
top-level product name collided with the dynamic overlay. The intent was
to keep the discovery envelope as runtime authority for leaves it
declared, but the side effect was that every helper-only sibling
disappeared too — commands like `chat message send-by-bot`,
`chat message recall-by-bot`, `chat message send-by-webhook`, and
`chat group members add-bot` had silently vanished from the open
edition since the pickCommands introduction, making PR #161's
send-by-bot routing fix unreachable for open-source users.

Switch to cmdutil.MergeHardcodedLeaves for same-named products: the
dynamic side still wins every leaf conflict, and helper-only subtrees
are grafted into the dynamic tree. Envelopes remain authoritative for
leaves they declare; helpers once again fill the gaps they don't.

Verified on a freshly built open-edition binary:
  dws chat message send-by-bot --robot-code ... --users ... --text ...
returns a real processQueryKey and routes through canonical_product=bot
via helper_override, matching the v1.0.15 baseline.

* fix(chat,cmdutil): route chat message send by destination flag

`dws chat message send --user <userId>` failed with `不合法的参数` because
the envelope-generated dynamic command maps every destination to the
group-only tool `send_message_as_user`. Only `--group` was viable on the
open edition; single-chat (`--user`, `--open-dingtalk-id`) has never
worked end-to-end.

Fix is in two parts:

1. Add a hardcoded `chat message send` helper that dispatches by
   destination flag — `--group` → `send_message_as_user`, `--user` /
   `--open-dingtalk-id` → `send_direct_message_as_user`. This mirrors the
   closed-source wukong overlay's chatMessageSendCmd so the open edition
   lines up with the rest of the product.

2. Let hardcoded leaves opt into overriding the dynamic envelope in
   `cmdutil.MergeHardcodedLeaves` when they carry a strictly higher
   OverridePriority. The default remains "envelope is authority"; the
   opt-in exists for the narrow case where the envelope exposes a single
   dispatch path but the hardcoded leaf needs richer flag-based routing
   (as here). The new send helper uses preferLegacyLeaf (priority 100)
   so it wins against the dynamic leaf.

OverridePriority/SetOverridePriority move to pkg/cmdutil as the new
source of truth; internal/cobracmd/priority.go now delegates so the
annotation key stays single-sourced across the merge layer and helpers.

Verified end-to-end against a freshly built open-edition binary:
  send --user 034766 --text …  → send_direct_message_as_user → success
  send --group <cid> --text …  → send_message_as_user          → success
2026-04-24 20:41:30 +08:00
Ari 0b544a86b7 fix(app): graft hardcoded helpers into dynamic tree instead of dropping (#169)
pickCommands previously dropped an entire helper subtree whenever a
top-level product name collided with the dynamic overlay. The intent was
to keep the discovery envelope as runtime authority for leaves it
declared, but the side effect was that every helper-only sibling
disappeared too — commands like `chat message send-by-bot`,
`chat message recall-by-bot`, `chat message send-by-webhook`, and
`chat group members add-bot` had silently vanished from the open
edition since the pickCommands introduction, making PR #161's
send-by-bot routing fix unreachable for open-source users.

Switch to cmdutil.MergeHardcodedLeaves for same-named products: the
dynamic side still wins every leaf conflict, and helper-only subtrees
are grafted into the dynamic tree. Envelopes remain authoritative for
leaves they declare; helpers once again fill the gaps they don't.

Verified on a freshly built open-edition binary:
  dws chat message send-by-bot --robot-code ... --users ... --text ...
returns a real processQueryKey and routes through canonical_product=bot
via helper_override, matching the v1.0.15 baseline.
2026-04-24 20:32:05 +08:00
fantiu d71031d097 feat(api): add raw DingTalk OpenAPI command 2026-04-24 17:14:10 +08:00
fantiu 46192d68ba feat(api):client logic fixed. 2026-04-24 17:04:09 +08:00
fantiu eeb1782f7a feat(api): add raw DingTalk OpenAPI command with dual-version token support 2026-04-24 16:40:13 +08:00
github-actions[bot] 4d0e194861 chore: update coverage badge [skip ci] 2026-04-24 08:12:55 +00:00
fantiu 3046ff8e77 Merge branch 'DingTalk-Real-AI:main' into main 2026-04-24 16:10:50 +08:00
ybc❤️zyrand猷诺 ad33a46883 fix: device flow defensively resets credentials before login (#155) (#157)
Device flow now always clears stale credential state and re-fetches
clientID from MCP server, regardless of what previous login methods
(OAuth scan, PAT, etc.) left in app.json or runtime globals.

This replaces the previous Source-field approach with a simpler
defensive reset that is future-proof against new login methods.

Root cause: after OAuth login saved app.json without MCP source marker,
subsequent --device login reused the stale clientID without setting
clientIDFromMCP flag, causing exchangeCode() to use direct mode which
requires clientSecret.

Changes:
- Add resetCredentialState() to DeviceFlowProvider
- Login() always calls resetCredentialState() + FetchClientIDFromMCP()
- Remove AppConfig.Source field (no longer needed)
- Remove app_config_source_test.go (replaced by device_flow_reset_test.go)
- Add 5 tests covering OAuth→device, legacy→device, direct→device scenarios

Co-authored-by: 猷诺 <bicheng.ybc@alibaba-inc.com>
2026-04-24 14:11:16 +08:00
xianfeng wang bbca507792 feat(discovery): MCP discovery service abstraction with positional params, examples, defaults, and schema v3 extensions (#156)
* discovery

* discovery

* wk discovery

* wk discovery

* wk discovery

* wk discovery

* wk discovery

* wk discovery

* discovery example and default

* position param

* Fix test

* dev auto login

* fix test

* fix conflict
2026-04-24 14:08:17 +08:00
Ari 97390829dd fix(compat,helpers): json_parse YAML fallback + send-by-bot product routing (#161)
* fix(compat): accept YAML flow as a fallback for json_parse transform

Users who run `dws aitable table create --fields [{fieldName: 标题, ...}]`
hit a shell glob error (`zsh: bad pattern: [{fieldName:`) because the
unquoted brackets are interpreted as a zsh pattern. Even when the shell
is placated with outer quotes, the strict-JSON parser still rejected the
natural form that drops quotes around keys and string values.

transformJSONParse now tries strict JSON first (unchanged fast path) and,
on failure, falls back to yaml.Unmarshal. YAML's flow syntax is a
superset of JSON that accepts `{key: value}` without surrounding quotes,
so a single set of outer quotes is all the user needs:

  dws aitable table create --fields '[{fieldName: 标题, type: text}]'

Already-valid strict JSON is unaffected. The @file syntax (`--fields
@path.json`) continues to work through the same transform.

The terminal error message, if both parsers fail, now points users at
the two working forms (quoted YAML flow or @file).

* fix(helpers): route chat send-by-bot to bot product

`chat message send-by-bot` previously stamped its invocation with
CanonicalProduct="chat", routing it through the chat product's auth /
server dispatch. The command is semantically a bot operation — switch
it to "bot" so auth client selection and downstream routing match the
actual MCP server. Extends chat_test.go with single-chat and group-chat
routing assertions.
2026-04-24 01:36:32 +08:00
Ari 7828089081 feat: subcommand merging, schema pretty, IR overlays, v1.0.15 notes (#160)
* feat(compat): merge same-name subcommands under shared parent

When multiple server entries attach to the same parent and their cli.command
collides with a subcommand already in the parent tree, the incoming subcommand's
children are merged recursively into the existing one instead of producing a
duplicate sibling. Leaf-name collisions resolve first-wins.

Fixes the duplicate `group` / `message` rows in `dws chat --help` that surfaced
when bot capabilities were distributed across chat.group.members and
chat.message subtrees.

* feat(ir): carry FlagOverlay and ToolAnnotations into canonical catalog

FlagOverlay mirrors the per-parameter CLI overlay (alias, transform,
transformArgs, env default, default value, hidden) sourced from
market.CLIToolOverride.Flags.

ToolAnnotations mirrors MCP 2025+ tool annotations with nullable hints
(destructive / read-only / idempotent / open-world) so absence means
"unknown" rather than "false".

BuildCatalog now propagates both through the canonical layer, with tests
covering group metadata and flag-overlay passthrough.

* feat(output): add -f pretty for schema-aware colored output

dws schema now supports -f pretty alongside json / raw. Pretty mode
partitions output by product / tool / parameter / enum and applies ANSI
color so humans can browse the catalog without piping through jq.
json / raw behaviour is unchanged.

docs/reference.md gains a Schema Introspection section documenting
dws schema and the new pretty format.

* feat(skills): refresh 13-product references; add devdoc / drive / oa

SKILL.md cli_version bumped to >=1.0.15; product index reordered to match
the v1.0.15 command surface.

New references:
- devdoc.md: Open Platform documentation search
- drive.md: DingTalk drive (promoted out of Coming soon)
- oa.md: OA approval end-to-end flow

Major rewrites for aitable (dashboard / chart share, import/export,
attachment flow), chat (bot capabilities merged into chat.message and
chat.group.members), calendar (event suggest / attachments), doc (comment
subtree, file create, upload/download flow), and minutes (list
mine/shared/all unified, record subcommands split).

Minor alignment touch-ups for contact / report / todo flag names.

* docs(release): sync v1.0.15 notes — 159 commands across 13 products

README Key Services fully refreshed: chat 23, calendar 14, aitable 41,
doc 21, minutes 19; drive promoted out of Coming soon; workbench and
standalone bot rows removed; Quick Start expanded to 7 examples spanning
doc / minutes / drive; Coming soon trimmed to mail / conference / aiapp /
live / wiki.

Adds docs/command-index.md, an auto-generated English listing of all 159
runtime commands with description and when-to-use guidance aimed at AI
agents. Replaces the ad-hoc command-index.pre.* / command-index.full.*
snapshots used during development.

CHANGELOG 1.0.15 records the compat subcommand-merging feature, the new
command index, and a flag-naming cleanup across chat / calendar / drive /
minutes / contact / devdoc.
2026-04-24 00:01:22 +08:00
fantiu a2908d2cbf Merge branch 'main' of github.com:fantiu/dingtalk-workspace-cli into feat-rawapi
feat:unified login system
2026-04-23 15:38:46 +08:00
fantiu 2f935586c8 Merge branch 'DingTalk-Real-AI:main' into main 2026-04-23 15:37:54 +08:00
修雨 af000a8dfa docs(release): sync v1.0.13 notes for chat IM capability expansion (#153)
- CHANGELOG: backfill 1.0.13 entry covering user-identity send, read/
  search paths, topic replies, mentions, focused/unread/top/common
  conversations, org-wide group creation and bot lifecycle commands
  added in #148.
- README Key Services: Chat 10 -> 20, Bot 6 -> 7, total 141 -> 152
  across 14 products; mention `dws im` alias in the Chat row.
2026-04-22 21:44:35 +08:00
github-actions[bot] 89c6b737c0 chore: update coverage badge [skip ci] 2026-04-22 11:00:58 +00:00
fantiu bfe0e310fe Merge branch 'DingTalk-Real-AI:main' into main 2026-04-22 18:59:04 +08:00
fantiu fa1ab411e3 Merge branch 'main' of github.com:fantiu/dingtalk-workspace-cli into feat-security-hardening
fix(auth): attribute CLI auth denial to channel before user scope
2026-04-22 10:53:55 +08:00
fantiu b247ef1266 Merge branch 'DingTalk-Real-AI:main' into main 2026-04-22 10:53:34 +08:00
fantiu c7ee0491b2 fix(auth): attribute CLI auth denial to channel before user scope 2026-04-22 10:39:03 +08:00
github-actions[bot] d06aa618e5 chore: update coverage badge [skip ci] 2026-04-21 02:11:48 +00:00
fantiu 9bedec7ed2 Merge branch 'DingTalk-Real-AI:main' into main 2026-04-21 10:09:47 +08:00
github-actions[bot] 0bc5345cf5 chore: update coverage badge [skip ci] 2026-04-20 02:24:45 +00:00
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@@ -4,6 +4,255 @@ All notable changes to this project will be documented in this file.
The format is inspired by [Keep a Changelog](https://keepachangelog.com/) and this project follows [Semantic Versioning](https://semver.org/).
## [1.0.22] - 2026-05-07
Two release-blocking bug fixes: `dws attendance summary` now exposes the server-required `--stats-type` flag (without it, every call returned C0002), and the install scripts finally populate `~/.hermes/skills/dws/` for users who already have Hermes.
### Fixed
- **`dws attendance summary` returned C0002 (统计类型错误) on every call** (#228, fixes #227) — the DingTalk MCP tool `get_attendance_summary` requires `statsType` at the business layer even though the schema marks it optional. The CLI did not expose any way to set it, so the command was 100% unusable. A new `--stats-type` flag (`week` / `month`) is now plumbed through to `QueryUserAttendVO.statsType`; the flag is documented as required in the long help, flag description, and `skills/references/products/attendance.md`.
- **Install scripts skipped `.hermes/skills/` when populating skill directories** (#221, fixes #188) — the `AGENT_DIRS` lists across `build/npm/install.js`, `scripts/install.sh`, `scripts/install.ps1`, `scripts/install-skills.sh` and the four upgrade-path mirrors (8 sources total once review feedback was addressed) did not include `.hermes/skills`, so users with Hermes installed were not getting `~/.hermes/skills/dws/` populated automatically. The existing parent-directory gate keeps this zero-side-effect for users without Hermes.
### Tests
- New `--stats-type` regression coverage in `test/cli_compat/attendance_test.go` — verifies `statsType` is written to `QueryUserAttendVO` when set to `month` or `week`, and is omitted when not provided. (#228)
## [1.0.21] - 2026-05-05
A single critical routing fix for `dws drive` commands. No new commands or behaviour changes elsewhere.
### Fixed
- **`dws drive mkdir` / `dws drive download` silently routed to the doc MCP server** (#220, fixes #219) — when two MCP servers register tools with the same name (e.g. both `drive` and `doc` expose `create_folder`), the tool-level endpoint map used last-writer-wins, so drive-side calls landed on the doc endpoint and returned mock-shaped responses (`success: true` with a fake `folderId`) without actually creating anything. `directRuntimeEndpoint` now resolves product-level first when the caller already knows the productID, and only falls back to the tool-level lookup when productID is empty. The wrong-server collision and the resulting "succeeded but didn't" behaviour are gone.
## [1.0.20] - 2026-05-04
Documentation polish and a login regression fix. No behaviour changes outside the login MCP refresh path.
### Fixed
- **Login no longer reuses stale `clientId` from an old MCP cache** (#213) — `dws login` now unconditionally re-fetches the MCP descriptor, so a previously cached client id can't keep producing auth errors after the server rotates it.
### Docs
- **`dws chat message list` pagination** (#218, fixes #195) — clarifies that `nextCursor` is opaque and must be passed back as `--cursor` exactly; warns against parsing or reusing it as an offset.
- **`dws contact search` examples** (#209) — switched from the removed `--keyword` flag to the current `--query`.
- **`dws todo` help text** (#205) — expanded field semantics so MCP wrappers generate accurate schemas.
- **`dws chat message send-by-bot` and `dws report create` help** (#217, #106, #107) — `--robot-code` / `--title` / `--text` now carry the `(必填)` marker; `report create --contents` documents the `key=field_name` requirement and rewrites examples as a `template detail → create` two-step pipeline.
- **CHANGELOG backfill for 1.0.19** (#204).
## [1.0.19] - 2026-04-30
Discovery hardening for edition overlays: `edition.SupplementServers` / `FallbackServers` hooks now consistently surface through the **runtime catalog loader**, not just the static command tree, so overlay products that live outside the Portal envelope (e.g. Wukong gray-release `conference`) resolve an endpoint on both the cold-cache and tool-not-in-catalog paths. Ships with per-edition cache partitioning to stop cross-edition disk-cache leakage, plus a small todo fix.
### Added
- **`pkg/config.EditionPartition(name)`** (#197) — returns the cache partition key for a given edition. Open-source core (`""` / `"open"`) keeps using `DefaultPartition` (`default/default`); every other edition gets its own namespace (`<edition>/default`), preventing cross-edition data leakage in the shared `~/.dws` disk cache. Lives in `pkg/config` as a leaf helper so `internal/cli`, `internal/app`, and `internal/cache` can all call it without risking import cycles.
- **`internal/editionmerge` shared package** (#197) — single source of truth for converting `edition.ServerInfo` into `market.ServerDescriptor` (`ToDescriptor`) and for merging `SupplementServers` / `FallbackServers` into a descriptor list. Both `internal/cli` (command tree) and `internal/app` (runtime catalog) now apply the edition hooks against the same discovery pipeline.
### Changed
- **`EnvironmentLoader.loadFromCache` honors `SupplementServers` even on empty registry** (#197) — when the Portal registry cache is missing or empty, the catalog loader still materialises the edition's `SupplementServers` as endpoint-only `discovery.RuntimeServer` entries (source: `edition_supplement`), so hardcoded overlay commands for supplement-only products can still resolve an endpoint via the catalog path. Previously `loadFromCache` short-circuited to an empty catalog whenever the registry snapshot was empty, silently dropping gray-release products.
- **Cache loader switches from `DefaultPartition` to `EditionPartition(edition.Get().Name)`** (#197) — the runtime catalog, registry snapshot, and tools snapshot are now partitioned per edition instead of all editions sharing `default/default`.
- **`loadFromCache` appends supplement servers alongside fresh-cache servers** (#197) — supplement entries whose `CLI.ID` / `Key` are already present in the cached registry are skipped, so the hook never shadows Portal-published servers; only new products are added.
- **`runtimeRunner.Run` falls through to `directRuntimeEndpoint` for supplement products** (#197) — when the catalog contains the product (e.g. supplied by `SupplementServers`) but the specific tool is not declared, the runner now trusts `directRuntimeEndpoint` to resolve a working endpoint for the tool before returning the explicit catalog-miss error. Supplement entries intentionally carry no tool list, so this is the path that makes overlay-only tools executable.
- **Legacy `mergeSupplementServers` / `fallbackToDescriptors` moved out of `internal/app/legacy.go`** (#197) — relocated into `internal/editionmerge` and reused by the catalog loader, eliminating the duplicate `edition.ServerInfo → market.ServerDescriptor` logic that previously only ran on the static command-tree path.
### Fixed
- **`dws todo task get` returns empty** (#202) — the helper was calling `query_todo_detail`, which is not a valid MCP tool and returns empty. Switched to `get_todo_detail` as declared in `discovery.json`, restoring correct task-detail behaviour.
- **Conference and other Wukong gray-release products miss endpoint on cold cache** (#197) — products registered only via `edition.SupplementServers` (not yet in the Portal envelope) now resolve an endpoint through the catalog path in both cold-start and tool-not-declared scenarios.
### Tests
- `internal/editionmerge/merge_test.go` — descriptor conversion + supplement/fallback merge semantics.
- `internal/cli/loader_partition_test.go` + `loader_supplement_test.go` — edition-partitioned cache reads and supplement hook surfacing from `loadFromCache` (including empty-registry cold path and existing-ID deduplication).
- `internal/app/legacy_wukong_partition_e2e_test.go` — end-to-end cache partition isolation for the Wukong edition.
- `internal/app/runner_supplement_fallback_test.go` — runner falls through to `directRuntimeEndpoint` when the tool isn't declared by a supplement-sourced catalog entry.
- `pkg/config/constants_test.go` — `EditionPartition` name handling (`""`, `"open"`, custom edition).
### Docs
- **CHANGELOG v1.0.18 rewrite** (#193) — previous release notes expanded to call out the PAT host-owned A-core flow, exit-code contract change (auth `4`, Discovery/cache/protocol `6`), `dws pat chmod` / `pat browser-policy` entry points, stderr-JSON classifier updates, and host-control metadata injection.
## [1.0.18] - 2026-04-28
Raw DingTalk OpenAPI access lands as a new `dws api` surface for both `api.dingtalk.com` and `oapi.dingtalk.com`, backed by app-level token caching and guarded host allowlists. PAT enters the host-owned **A-core** loop: agent hosts can own authorization UI through `DINGTALK_DWS_AGENTCODE`, parse single-line stderr JSON, call `dws pat chmod`, and replay the original command. Chat helper regressions are fixed, skill references are brought back in line with shipped commands, and the v1.0.17 Mail release notes are backfilled into README / CHANGELOG.
### Breaking
- **PAT exit-code contract** (#142) — PAT authorization interceptions now use exit code `4`; Discovery, cache, and protocol negotiation failures now use exit code `6`. Downstream scripts that previously treated `4` as Discovery must update their handling.
### Added
- **`dws api` raw DingTalk OpenAPI command** (#184) — direct DingTalk OpenAPI calls without writing an MCP wrapper first. Supports `GET` / `POST` / `PUT` / `PATCH` / `DELETE`, JSON `--params` / `--data`, stdin input, dry-run previews, `--jq`, field selection, `--page-all`, `--page-limit`, `--page-delay`, and `--base-url`.
- **Dual-form OpenAPI routing** (#184) — `api.dingtalk.com` requests use the `x-acs-dingtalk-access-token` header; `oapi.dingtalk.com` requests use the legacy `access_token` query parameter. The raw API client validates the target host before attaching credentials.
- **App-level token cache for raw API** (#184) — custom-app credentials now fetch app access tokens from the unified OAuth endpoint, cache them while valid, and refresh them before expiry. The same token provider works for new-style and legacy OpenAPI calls.
- **Host-owned PAT A-core flow** (#142) — when `DINGTALK_DWS_AGENTCODE` is set, PAT hits return `exit=4` plus single-line stderr JSON; the host renders authorization UI, calls `dws pat chmod <scope>...`, and replays the original command.
- **`dws pat chmod` authorization entry point** (#142) — grants scopes with `--agentCode`, `--grant-type`, and session fallback support; `DINGTALK_DWS_AGENTCODE` can supply the agent code when the flag is omitted.
- **PAT browser-open policy** (#142) — `dws pat browser-policy --enabled <true|false> [--agentCode <id>]` controls whether the CLI may open a browser, independently from `--format` output mode.
### Changed
- **README raw API guide** (#184) — English and Chinese READMEs now document custom-app prerequisites, api/oapi examples, auto-pagination, dry-run, jq filtering, security properties, and the new Raw API service-table row.
- **Raw API token retrieval path** (#184) — token lookup now goes through a single app-token interface; stale auth-refresh retry helpers were removed from the raw API path.
- **PAT stderr JSON classifier** (#142) — recognizes `code`, `errorCode`, and `error_code`, including `PAT_NO_PERMISSION`, risk-tier PAT errors, `PAT_SCOPE_AUTH_REQUIRED`, and `AGENT_CODE_NOT_EXISTS`.
- **Host-control metadata injection** (#142) — classifier and active-retry paths now share one mutation point for `data.hostControl` and `data.openBrowser`, keeping host-facing JSON shapes aligned.
- **Open-edition routing signals** (#142) — open edition pins `claw-type: openClaw`; `DINGTALK_AGENT`, `DWS_CHANNEL`, and host-owned PAT detection are kept as independent signals.
- **Behavior authorization endpoint fallback** (#142) — the PAT runtime can resolve the built-in behavior-authorization MCP endpoint before discovery data is available.
- **v1.0.17 documentation backfill** (#181) — the previous release notes and README service table now explicitly include the shipped Mail product, update the total to **163 commands across 14 products**, and remove Mail from "Coming soon".
### Fixed
- **CLI auth-denial attribution** — local CLI authorization denials are attributed to the channel before falling back to user-scope classification, avoiding user-scope misclassification for channel-level auth failures.
- **Opaque authorization URLs** (#182, #142) — PAT authorization links are preserved verbatim, including query/hash/fragment content required by the server.
- **Polling compatibility** (#182, #142) — device-flow result envelopes and no-`flowId` device-code fallback remain supported, with guarded debug output and envelope priority.
- **Group chat @-mentions restored** (#180) — `dws chat message send --group ...` again accepts and forwards `--at-users`, `--at-all`, and `--at-mobiles`; those flags are rejected outside group-chat mode so single-chat sends cannot silently drop @-mention intent.
- **Explicit members-list command restored** (#180) — `dws chat group members list --id <openConversationId>` is reachable after the helper/dynamic merge path changed. `cmdutil.MergeHardcodedLeaves` now honors higher-priority helper groups when a dynamic envelope contributes a leaf at the same path.
- **Skill reference command names** (#186) — `simple.md` now uses shipped OA command names (`list-pending`, `list-initiated`), removes a non-existent devdoc `search-error` command, and marks `workbench.md` as Draft because workbench commands are not available in the runtime.
- **Empty grant result handling** (#142) — `dws pat chmod` now returns an explicit error instead of treating `{"Content": null}` as success.
- **Session-id log safety** (#142) — raw `DWS_SESSION_ID` / `REWIND_SESSION_ID` values are no longer logged when the two env vars disagree.
### Tests
- Added raw API coverage for request validation, api/oapi routing, token management, pagination, response handling, dry-run output, JSON parsing, stdin handling, and command wiring. (#184)
- Added chat/cmdutil regression tests for group @-mention forwarding, single-chat rejection, `members list`, helper-vs-envelope shape mismatch, and merge-priority behavior. (#180)
- Added PAT contract coverage for host-owned signal selection, single-line stderr JSON, chmod env fallback and legacy alias fallback, browser policy, direct-runtime PAT endpoint fallback, and retry/poll behavior. (#142)
- Coverage badge refreshed after the post-v1.0.17 CI runs.
## [1.0.17] - 2026-04-27
New **Mail** product surface (mailbox list, KQL message search, message get, send) brings runtime command count to **163 across 14 products**. Plugin command-tree visibility hardening: stdio plugins shipping CLI overlays no longer wait on subprocess discovery to surface their commands, and overlay-registered plugin products are no longer hidden by edition `VisibleProducts` whitelists. Chat docs clarify that `--title` is required on `dws chat message send`.
### Added
- **`mail` product** (#167) — new top-level service for DingTalk Mail. Four leaf commands across two subgroups:
- `dws mail mailbox list` — list mailbox addresses available to the current user (`list_user_mailboxes`)
- `dws mail message search` — KQL search across folders / sender / date / attachments / read-state (`search_emails`); supports `--cursor` pagination
- `dws mail message get` — fetch full message body + headers + attachments by message ID (`get_email_by_message_id`)
- `dws mail message send` — send email to one or more recipients (`send_email`)
- Skill reference at `skills/references/products/mail.md` registered in `skills/SKILL.md` master index and intent decision tree
- **Stdio plugin overlay-first command registration** (#179) — when a stdio plugin's `overlay.json` declares `toolOverrides`, command trees are built from manifest metadata synchronously at startup, no subprocess `Initialize` / `tools/list` handshake required. Previously, slow or failing subprocesses left plugin commands invisible in `dws --help`. Background discovery still runs to refresh the warm cache for richer flag types on subsequent startups.
### Changed
- **`hideNonDirectRuntimeCommands` / `visibleMCPRootCommands` / `visibleUtilityRootCommands`** (#179) — refactored to share a single `resolveVisibleProducts()` helper that **unions** the edition's `VisibleProducts` hook with `DirectRuntimeProductIDs()`, so plugins registered via `AppendDynamicServer` stay visible in `dws --help` even when an edition installs a static product whitelist. Previously the hook fully replaced the dynamic registry, silently hiding plugin commands.
- **`dws chat message send` documentation clarifies `--title` is required** (#174) — the helper command short text and the chat skill reference now state explicitly that `--title` is mandatory for both group and single-chat sends, matching the runtime validation.
- **`buildStdioCommands` refactored to share helpers with the overlay-first path** (#179) — overlay parsing (`resolveStdioOverlay`) and tools→DetailTool conversion (`toolsToDetails`) extracted as package-level helpers; the legacy discovery-first stdio path now delegates to them, eliminating duplicated overlay JSON / cache-snapshot logic.
### Fixed
- **Negative-cache poisoning guard for stdio plugin discovery** (#179) — `refreshStdioToolsCache` now skips `SaveTools` entirely when discovery returns an empty tool list (transient failure, subprocess not ready, RPC timeout), so a single bad refresh cannot overwrite a previously-good cache and degrade flag enrichment on the next startup.
### Tests
- 6 new test cases in `internal/app/plugin_stdio_overlay_test.go` and `internal/app/visibility_test.go` cover overlay-first registration without discovery, warm-cache flag enrichment from `InputSchema`, fallback when overlays lack `toolOverrides`, the cache-poisoning guard, and integration cases for plugin visibility under restrictive `VisibleProducts` whitelists.
- Coverage 49.8% → 52.8%.
## [1.0.16] - 2026-04-24
Discovery service abstraction with schema v3 extensions, open-edition helper-subtree restoration, and a defensive device-flow login reset.
### Added
- **`internal/discovery` service abstraction** (#156) — encapsulates market registry fetch, MCP runtime negotiation (`initialize → tools/list → detail` merge), and multi-level cache fallback. `EnvironmentLoader` now does cache-first startup, with degraded-mode reasons (`unauthenticated` / `market_unreachable` / `runtime_all_failed`) and `UpdatedAt`-based selective re-discovery.
- **Schema v3 extensions** (#156) — positional parameters with typed coercion, `Example` on `--help`, flag `Default` / `RuntimeDefault` (with `$currentUserId` / `$now` etc.), `BodyWrapper`, `MutuallyExclusive` / `RequireOneOf` flag groups, `OmitWhen`, explicit `Type` override, and detail-schema `default` propagation.
- **`dws chat message send` destination-flag routing** (#170) — open edition gains a hardcoded helper that dispatches by `--group` (→ `send_message_as_user`) vs `--user` / `--open-dingtalk-id` (→ `send_direct_message_as_user`), mirroring the closed-source overlay so single-chat sends finally work end-to-end.
### Changed
- **`pickCommands` → `cmdutil.MergeHardcodedLeaves`** (#169) — when a top-level product name collides between the dynamic overlay and a helper subtree, helper-only siblings are grafted into the dynamic tree instead of dropped. Restores `dws chat message send-by-bot` / `recall-by-bot` / `send-by-webhook` and `dws chat group members add-bot`, which had silently vanished from the open edition.
- **`OverridePriority` / `MergeHardcodedLeaves` promoted into `pkg/cmdutil`** (#170) — single source of truth for the merge layer; hardcoded leaves can opt into overriding the dynamic envelope via a strictly higher priority.
### Fixed
- **Device flow defensively resets credentials before login** (#157) — `--device` login now clears stale credential state and re-fetches `clientID` from the MCP server, regardless of what previous login methods (OAuth scan, PAT) left in `app.json`. Fixes the case where a prior OAuth login made `--device` fall back to direct mode and demand `clientSecret`.
## [1.0.15] - 2026-04-23
Compat layer gains **subcommand merging** under shared parents so multiple server entries can contribute into the same `dws <parent> <branch>` subtree without producing duplicate `--help` rows. Ships with a fresh auto-generated command index doc, a README sync to **159 commands across 13 products**, and a wide-ranging flag-naming cleanup that standardises CLI flags across chat, calendar, drive, minutes, contact, and devdoc commands.
### Added
- **`internal/compat` subcommand merging via `attachOrMerge`** — when two or more server entries attach to the same parent (e.g. `parent: "chat"`) and their `cli.command` collides with an existing subcommand in the parent's tree, the new subcommand's children are merged recursively into the existing one instead of creating a duplicate sibling. Leaf-name collisions resolve first-wins. Fixes the "double `group` / `message` rows in `dws chat --help`" symptom when bot capabilities are distributed across `chat.group.members` and `chat.message`.
- **`docs/command-index.md`** — a single, English, auto-generated listing of every runtime command the `dws` CLI exposes under the pre environment (159 total). Each entry carries a description and a "when to use" column aimed at AI agents. Replaces the earlier `command-index.pre.*` / `command-index.full.*` ad-hoc snapshots.
### Changed
- **README Key Services table** (`README.md` + `README_zh.md`) fully synced to the shipped command surface:
- `Chat`: 20 → **23** (bot capabilities merged in; new `list-all` / `list-focused` / `list-unread-conversations` / `conversation-info` exposed)
- `Calendar`: 13 → **14**
- `AI Tables`: 37 → **41** (chart / dashboard public-share config rows)
- `Doc`: 16 → **21** (comment subtree + `file create`)
- `Minutes`: 22 → **19** (single-tool `record`, `list query`, `list-by-keyword-range` pruned)
- New `Drive` row (6 commands) — promoted out of "Coming soon"
- `Workbench` row and standalone `Bot` row removed
- Total revised to **159 commands across 13 products**
- **Quick Start** expanded to 7 examples covering `doc`, `minutes`, `drive` in addition to `contact`, `calendar`, `todo`
- **Coming soon** trimmed to 5: `mail`, `conference`, `aiapp`, `live`, `wiki`
- **Reference & Docs** section now leads with a pointer to the new `docs/command-index.md`
- **Flag naming cleanup** — CLI flags across chat, calendar, drive, minutes, contact, and devdoc have been standardised so the names users type match the product-skill documentation. Notable flags:
- `dws contact user search` / `dws contact dept search` / `dws devdoc article search` now take `--query` (previously `--keyword`)
- `dws chat message list` / `dws chat message search` / `dws chat message list-mentions` / `dws chat conversation-info` / `dws chat message send` now take `--group` for the target conversation (previously `--id`) and `--open-dingtalk-id` (previously `--open-id`)
- `dws chat message list-by-sender` now takes `--sender-user-id` / `--sender-open-dingtalk-id` (previously `--user` / `--open-id`)
- `dws chat message list-topic-replies` now takes `--group` / `--topic-id` / `--limit` / `--time` (previously `--id` / `--topic` / `--size` / `--start`)
- `dws chat search-common` now takes `--match-mode` (previously `--mode`)
- `dws drive list` now takes `--max` / `--thumbnail` (previously `--max-results` / `--with-thumbnail`)
- `dws calendar event suggest` now takes `--users` / `--duration` / `--timezone` (previously `--attendee-user-ids` / `--duration-minutes` / `--time-zone`)
- `dws minutes list mine` / `dws minutes list shared` now take `--max` (previously `--max-results`) and gain `--query` / `--start` / `--end`
- `dws minutes list all` no longer exposes the legacy `--__scope__` internal alias
- **Flag coverage additions** — `dws calendar event create` / `update` gain `--attendees`, `--open-dingtalk-ids`, `--timezone`; `dws chat message send` gains file-message flags (`--dentry-id`, `--file-name`, `--file-size`, `--file-type`, `--media-id`, `--msg-type`, `--space-id`) plus `--open-dingtalk-id` / `--user`; `dws chat message list` gains `--open-dingtalk-id` / `--user`; `dws aitable table delete` gains `--reason`; `dws calendar participant add` gains `--optional`; `dws todo task create` gains `--recurrence`.
### Tests
- 3 new unit tests in `internal/compat/dynamic_commands_test.go`:
- `TestBuildDynamicCommands_ParentMergeSameName` — two servers with identical `command` + `parent` collapse into a single merged subcommand
- `TestBuildDynamicCommands_ParentMergeRecursive` — recursive merge through nested groups (e.g. `chat.group.members`)
- `TestBuildDynamicCommands_ParentMergeLeafCollision` — identical leaf paths resolve first-wins without producing duplicates
## [1.0.14] - 2026-04-22
Docs-only re-tag of v1.0.13. The single commit (#153) backfills the v1.0.13 release notes after the binary was already published; no functional or CLI surface change.
## [1.0.13] - 2026-04-22
IM / Messaging capability expansion: the `chat` (aka `im`) product surface grows from "group + bot messaging" into a full conversational layer — user-identity messaging, message reading & search, personal messages, topic replies, mentions, focused contacts, unread/top/common conversations, org-wide group creation, and first-class bot lifecycle.
### Added
- **`dws im` alias** — `dws im` is now registered as an alias of `dws chat` for intent clarity
- **User-identity messaging** (`chat message send`) — send group or 1-on-1 messages as the current user
- Recipient selection is mutually exclusive: `--group <openConversationId>` / `--user <userId>` / `--open-dingtalk-id <openDingTalkId>`
- Markdown text via `--text` (or positional arg), optional `--title`
- Group-only: `--at-all` to @everyone, `--at-users` for per-member @mentions
- Image messages via `--media-id` (obtained from `dt_media_upload`)
- **Personal messages** (`chat message send-personal`) — sensitive personal-channel send (⚠️ destructive/dangerous op, requires confirmation)
- **Conversation read paths**:
- `chat message list` — pull group / 1-on-1 conversation messages
- `chat message list-all` — pull all conversations for the current user in a time range
- `chat message list-topic-replies` — pull group topic reply threads
- `chat message list-by-sender` — messages by a specific sender
- `chat message list-mentions` — messages where the current user was @-mentioned
- `chat message list-focused` — messages from focused / starred contacts
- `chat message list-unread-conversations` — unread conversation list
- `chat message search` — keyword search across conversations
- `chat message info` — conversation metadata
- `chat list-top-conversations` — pinned conversation list
- **Group creation & discovery**:
- `chat group create-org` — create an organization-wide group
- `chat search-common` — search groups shared with a nickname list (`--nicks`, `--match-mode AND|OR`, cursor-based pagination)
- **Bot lifecycle**:
- `chat bot create` — create an enterprise bot
- `chat bot search-groups` — search the groups a bot is present in
### Changed
- **`chat` skill reference** (`skills/references/products/chat.md`, #148) restructured into three sub-groups — `group` (9) / `message` (15) / `bot` (3) — with refreshed intent-routing table, workflow examples, and context-passing rules aligned with `dws-service-endpoints.json` (16 new group-chat tool overrides + 2 new bot tool overrides)
- **README Key Services** sync:
- `Chat` row: 10 → 20 commands; subcommand tags expanded to `message` `group` `search` `list-top-conversations`
- `Bot` row: 6 → 7 commands; subcommand tags expanded with `create` `search-groups`
- Total raised to **152 commands across 14 products**
## [1.0.12] - 2026-04-21
Product-surface expansion: first-class `doc` (DingTalk Docs) and `minutes` (AI Minutes) skill references, refreshed `aitable` guide aligned with the shipped binary (including dashboard / chart / export), and a README sync that brings the full command catalog to **141 commands across 14 products**.
+71 -16
View File
@@ -185,12 +185,17 @@ Credentials are securely persisted after first login (Keychain). Subsequent runs
## Quick Start
```bash
dws contact user search --keyword "engineering" # search contacts
dws calendar event list # list calendar events
dws contact user search --query "engineering" # search contacts
dws calendar event list # list today's calendar events
dws doc search --query "quarterly" # search DingTalk Docs
dws minutes list mine # list AI meeting notes I created
dws drive list # list DingTalk drive files
dws todo task create --title "Quarterly report" --executors "<your-userId>" # create a todo (replace <your-userId>)
dws todo task list --dry-run # preview without executing
```
> **Full command list**: [`docs/command-index.md`](./docs/command-index.md) — all commands with descriptions and when-to-use guidance.
## Using with Agents
dws is designed as an AI-native CLI. Complete [Installation](#installation) and [Getting Started](#getting-started) first, then configure your agent:
@@ -202,7 +207,7 @@ dws is designed as an AI-native CLI. Complete [Installation](#installation) and
dws todo task create --title "Review PR" --executors "<your-userId>" --yes
# Use --dry-run to preview operations (safe execution)
dws contact user search --keyword "engineering" --dry-run
dws contact user search --query "engineering" --dry-run
# Use --jq to extract precisely (save tokens)
dws contact user get-self --jq '.result[0].orgEmployeeModel | {name: .orgUserName, dept: .depts[0].deptName, userId}'
@@ -271,6 +276,52 @@ curl -fsSL https://raw.githubusercontent.com/DingTalk-Real-AI/dingtalk-workspace
## Features
<details>
<summary><strong>Raw API Access</strong> — call any DingTalk OpenAPI directly</summary>
`dws api` lets you call any DingTalk OpenAPI without an SDK. Tokens are automatically acquired and refreshed.
> **Prerequisite**: Must login with your own app credentials (see [Custom App mode](#getting-started)). Encrypted tokens from MCP default-credential login are not supported for raw API calls.
```bash
# Login (first time only)
dws auth login --client-id <APP_KEY> --client-secret <APP_SECRET>
# === api.dingtalk.com ===
# List all enterprise apps
dws api GET /v1.0/microApp/allApps
# Search users (POST + JSON body)
dws api POST /v1.0/contact/users/search \
--data '{"queryWord":"engineering","offset":0,"size":10}'
# === oapi.dingtalk.com ===
# Get user details (use --base-url to specify domain)
dws api POST /topapi/v2/user/get \
--base-url https://oapi.dingtalk.com \
--data '{"userid":"<USER_ID>"}'
# Or use the full URL directly
dws api POST https://oapi.dingtalk.com/topapi/v2/user/get \
--data '{"userid":"<USER_ID>"}'
# === General ===
dws api GET /v1.0/microApp/allApps --page-all # auto-paginate
dws api GET /v1.0/microApp/allApps --dry-run # preview request
dws api GET /v1.0/microApp/allApps --jq '.agentId' # jq filtering
```
| Feature | Details |
|---------|----------|
| Dual-form auto-detection | Automatically selects api.dingtalk.com (header auth) or oapi.dingtalk.com (query-param auth) based on URL |
| Automatic token management | App-level accessToken is fetched on first call, cached while valid, auto-refreshed on expiry |
| Domain allowlist | Only `api.dingtalk.com` and `oapi.dingtalk.com` permitted — prevents token leakage |
| Auto-pagination | `--page-all` iterates all pages. `--page-limit` caps the maximum (default 10, set to 0 for unlimited, hard cap at 500 to prevent infinite loops) |
</details>
<details>
<summary><strong>Smart Input Correction</strong> — auto-corrects common AI model parameter mistakes</summary>
@@ -281,7 +332,7 @@ Built-in pipeline engine that normalizes flag names, splits sticky arguments, an
dws aitable record query --baseId BASE_ID --tableId TABLE_ID # auto-corrected to --base-id --table-id
# Sticky argument splitting
dws contact user search --keyword "engineering" --timeout30 # auto-split to --timeout 30
dws contact user search --query "engineering" --timeout30 # auto-split to --timeout 30
# Fuzzy flag name matching
dws aitable record query --base-id BASE_ID --tabel-id TABLE_ID # --tabel-id -> --table-id
@@ -350,26 +401,29 @@ dws chat message send-by-bot --robot-code BOT_CODE --group GROUP_ID \
| Service | Command | Commands | Subcommands | Description |
|---------|---------|:--------:|-------------|-------------|
| Contact | `contact` | 6 | `user` `dept` | Search users by name/mobile, batch query, departments, current user profile |
| Chat | `chat` | 10 | `message` `group` `search` | Group CRUD, member management, bot messaging, webhook |
| Bot | `chat bot` | 6 | `bot` `group` `message` `search` | Robot creation/search, group/single messaging, webhook, message recall |
| Calendar | `calendar` | 13 | `event` `room` `participant` `busy` | Events CRUD, meeting room booking, free-busy query, participant management |
| Chat / IM | `chat` (alias `im`) | 23 | `message` `group` `bot` `conversation-info` `search` `search-common` `list-top-conversations` | Messages (send / list / list-all / by-sender / mentions / focused / unread / topic replies / search), group CRUD + member management (incl. `add-bot`), bot-identity messaging (`send-by-bot` / `recall-by-bot` / `send-by-webhook`), conversation info, common groups lookup |
| Calendar | `calendar` | 14 | `event` `room` `participant` `busy` | Events CRUD + suggested times + attachments, meeting room booking, free-busy query, participant management |
| Todo | `todo` | 6 | `task` | Create, list, update, done, get detail, delete |
| Approval | `oa` | 9 | `approval` | Approve/reject/revoke, pending tasks, initiated instances, process list |
| Approval | `oa` | 9 | `approval` | Approve / reject / revoke, pending / initiated instances, process list, operation records |
| Attendance | `attendance` | 4 | `record` `shift` `summary` `rules` | Clock-in records, shift schedules, attendance summary, group rules |
| Ding | `ding` | 2 | `message` | Send/recall DING messages |
| Ding | `ding` | 2 | `message` | Send / recall DING messages |
| Report | `report` | 7 | `create` `list` `detail` `template` `stats` `sent` | Create reports, sent/received list, templates, statistics |
| AITable | `aitable` | 37 | `base` `table` `record` `field` `attachment` `template` `chart` `dashboard` `export` `import` `view` | Full CRUD for bases/tables/records/fields; charts/dashboards; data import/export; views; templates |
| Doc | `doc` | 16 | `search` `list` `info` `read` `create` `update` `upload` `download` `folder` `block` `comment` | Search, read, create/update documents; block-level editing; file upload/download; comments |
| Minutes | `minutes` | 22 | `list` `get` `update` `record` `hot-word` `mind-graph` `replace-text` `speaker` `upload` | List/search AI meeting transcripts; summaries, transcriptions, todos, mind-maps; recording control; speaker management, hot-words, file upload |
| Workbench | `workbench` | 2 | `app` | Batch query app details |
| DevDoc | `devdoc` | 1 | `article` | Search platform docs and error codes |
| AI Tables | `aitable` | 41 | `base` `table` `record` `field` `view` `dashboard` `chart` `import` `export` `attachment` `template` | Full CRUD for Bases / datasheets / records / fields / views; charts & dashboards with public-share configs; data import/export; attachments; templates |
| Doc | `doc` | 21 | `search` `list` `info` `read` `create` `update` `upload` `download` `copy` `move` `rename` `file` `folder` `block` `comment` | Search / read / write docs, file & folder create, block-level editing, comments (list / create / reply / create-inline), upload / download |
| Drive | `drive` | 6 | `list` `info` `download` `mkdir` `upload-info` `commit` | DingTalk drive file ops: list, info, download, create folders, two-phase upload |
| Minutes | `minutes` | 19 | `list` `get` `update` `mind-graph` `speaker` `hot-word` `upload` | List AI meeting notes (mine / shared), details (info / summary / keywords / transcription / todos / batch), title/summary updates, mind map, speaker replace, hot-word, upload session |
| Mail | `mail` | 4 | `mailbox` `message` | List mailbox addresses, KQL message search, get full message content, send email |
| DevDoc | `devdoc` | 1 | `article` | Search the DingTalk Open Platform documentation |
| Raw API | `api` | 1 | — | Call any DingTalk OpenAPI directly (api / oapi dual-form), with automatic app-level token management |
> 141 commands across 14 products. Run `dws --help` for the full list, or `dws <service> --help` for subcommands.
> **163 commands across 14 products.** Full listing with descriptions and usage scenarios: [`docs/command-index.md`](./docs/command-index.md). Run `dws --help` for the top-level tree, or `dws <service> --help` for subcommands.
> **Note on `chat bot`**: bot capabilities (`send-by-bot` / `recall-by-bot` / `add-bot` / `send-by-webhook` / bot search) are merged into the relevant `chat` subtrees (e.g. `dws chat message send-by-bot`, `dws chat group members add-bot`) so the agent-facing command surface stays flat and discoverable. There is no longer a separate top-level `bot` product.
<details>
<summary>Coming soon</summary>
`mail` (email) · `drive` (cloud drive) · `conference` (video) · `tb` (Teambition) · `aiapp` (AI apps) · `live` (streaming) · `skill` (marketplace)
`conference` (video) · `aiapp` (AI apps) · `live` (streaming) · `wiki` (knowledge base)
</details>
@@ -418,6 +472,7 @@ dws chat message send-by-bot --robot-code BOT_CODE --group GROUP_ID \
## Reference & Docs
- [Command Index](./docs/command-index.md) — every runtime command with description and when-to-use guidance
- [Reference](./docs/reference.md) — environment variables, exit codes, output formats, shell completion
- [Architecture](./docs/architecture.md) — discovery-driven pipeline, IR, transport layer
- [Changelog](./CHANGELOG.md) — release history and migration notes
+72 -15
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@@ -185,12 +185,17 @@ dws auth login --client-id <your-app-key> --client-secret <your-app-secret>
## 快速开始
```bash
dws contact user search --keyword "悟空" # 搜索联系人
dws calendar event list # 查看日历日程
dws contact user search --query "悟空" # 搜索联系人
dws calendar event list # 查看今天的日程
dws doc search --query "季度" # 搜索钉钉文档
dws minutes list mine # 列出我创建的 AI 听记
dws drive list # 列出钉盘文件
dws todo task create --title "季度汇报" --executors "<your-userId>" # 创建待办(请替换为真实 userId)
dws todo task list --dry-run # 预览操作但不执行
```
> **完整命令列表**:[`docs/command-index.md`](./docs/command-index.md) — 全部命令,带描述和使用场景。
## 在 Agent 中使用
dws 是为 AI Agent 设计的 CLI 工具。请先完成[安装](#安装)和[开始使用](#开始使用),然后配置 Agent 环境:
@@ -202,7 +207,7 @@ dws 是为 AI Agent 设计的 CLI 工具。请先完成[安装](#安装)和[开
dws todo task create --title "Review PR" --executors "<your-userId>" --yes
# 使用 --dry-run 预览操作(安全执行)
dws contact user search --keyword "张三" --dry-run
dws contact user search --query "张三" --dry-run
# 使用 --jq 精确提取(节省 token)
dws contact user get-self --jq '.result[0].orgEmployeeModel | {name: .orgUserName, dept: .depts[0].deptName, userId}'
@@ -271,6 +276,52 @@ curl -fsSL https://raw.githubusercontent.com/DingTalk-Real-AI/dingtalk-workspace
## 功能特性
<details>
<summary><strong>Raw API 调用</strong> — 直接调用钉钉 OpenAPI</summary>
`dws api` 让你直接调用任意钉钉 OpenAPI,无需 SDK,Token 自动获取和刷新。
> **前置条件**:必须使用自有应用凭证登录(见[自建应用模式](#开始使用))。通过 MCP 默认凭证登录 不支持 raw API 调用。
```bash
# 登录(仅首次)
dws auth login --client-id <APP_KEY> --client-secret <APP_SECRET>
# === api.dingtalk.com ===
# 获取企业所有应用列表
dws api GET /v1.0/microApp/allApps
# 搜索用户 (POST + JSON body)
dws api POST /v1.0/contact/users/search \
--data '{"queryWord":"张三","offset":0,"size":10}'
# === oapi.dingtalk.com ===
# 获取用户详情(使用 --base-url 指定域名)
dws api POST /topapi/v2/user/get \
--base-url https://oapi.dingtalk.com \
--data '{"userid":"<USER_ID>"}'
# 也可以直接使用完整 URL
dws api POST https://oapi.dingtalk.com/topapi/v2/user/get \
--data '{"userid":"<USER_ID>"}'
# === 通用功能 ===
dws api GET /v1.0/microApp/allApps --page-all # 自动翻页
dws api GET /v1.0/microApp/allApps --dry-run # 预览请求
dws api GET /v1.0/microApp/allApps --jq '.agentId' # jq 过滤
```
| 特性 | 说明 |
|------|------|
| 双形态自动识别 | 根据 URL 自动选择 api.dingtalk.com(Header 认证)或 oapi.dingtalk.com(Query 参数认证) |
| Token 自动管理 | 首次调用自动获取应用级 accessToken,有效期内缓存,过期自动刷新 |
| 域名白名单 | 仅允许 `api.dingtalk.com` 和 `oapi.dingtalk.com`,防止 Token 泄露 |
| 自动分页 | `--page-all` 自动遍历所有分页。`--page-limit` 控制翻页上限(默认 10,设为 0 不限制,硬上限 500 防止死循环) |
</details>
<details>
<summary><strong>智能输入纠错</strong> — 自动修正 AI 模型常见的参数错误</summary>
@@ -281,7 +332,7 @@ curl -fsSL https://raw.githubusercontent.com/DingTalk-Real-AI/dingtalk-workspace
dws aitable record query --baseId BASE_ID --tableId TABLE_ID # 自动纠正为 --base-id --table-id
# 粘连参数自动拆分
dws contact user search --keyword "张三" --timeout30 # 自动拆分为 --timeout 30
dws contact user search --query "张三" --timeout30 # 自动拆分为 --timeout 30
# 拼写错误模糊匹配
dws aitable record query --base-id BASE_ID --tabel-id TABLE_ID # --tabel-id → --table-id
@@ -350,24 +401,29 @@ dws chat message send-by-bot --robot-code BOT_CODE --group GROUP_ID \
| 服务 | 命令 | 命令数 | 子命令 | 描述 |
|------|------|:------:|--------|------|
| 通讯录 | `contact` | 6 | `user` `dept` | 按姓名/手机号搜索、批量查询、部门树、当前用户信息 |
| 群聊 | `chat` | 10 | `message` `group` `search` | 群增删改查、成员管理、机器人消息、Webhook |
| 机器人 | `chat bot` | 6 | `bot` `group` `message` `search` | 机器人创建/搜索、群聊/单聊消息、Webhook、消息撤回 |
| 日历 | `calendar` | 13 | `event` `room` `participant` `busy` | 日程增删改查、会议室预订、闲忙查询、参与者管理 |
| 群聊 | `chat`(别名 `im`)| 23 | `message` `group` `bot` `conversation-info` `search` `search-common` `list-top-conversations` | 消息(发送 / 列表 / list-all / 按发送者 / @我 / 关注 / 未读 / 话题回复 / 搜索)、群增删改 + 成员管理(含 `add-bot`)、机器人身份消息(`send-by-bot` / `recall-by-bot` / `send-by-webhook`)、会话信息查询、共同群聊 |
| 日历 | `calendar` | 14 | `event` `room` `participant` `busy` | 日程 CRUD + 建议时间 + 附件、会议室预订、闲忙查询、参与者管理 |
| 待办 | `todo` | 6 | `task` | 创建、列表、修改、完成、详情、删除 |
| 审批 | `oa` | 9 | `approval` | 同意/拒绝/撤销、待我审批、我发起的、流程列表 |
| 审批 | `oa` | 9 | `approval` | 同意 / 拒绝 / 撤销、待我审批 / 我发起的、流程列表、操作记录 |
| 考勤 | `attendance` | 4 | `record` `shift` `summary` `rules` | 打卡记录、排班查询、考勤摘要、考勤组规则 |
| DING | `ding` | 2 | `message` | 发送/撤回 DING 消息 |
| 日志 | `report` | 7 | `create` `list` `detail` `template` `stats` `sent` | 创建日志、收发列表、模版、统计 |
| 智能表格 | `aitable` | 20 | `base` `table` `record` `field` `attachment` `template` | 多维表/数据表/记录/字段全量 CRUD、模板 |
| 工作台 | `workbench` | 2 | `app` | 批量查询应用详情 |
| 开发者文档 | `devdoc` | 1 | `article` | 搜索开放平台文档与错误码 |
| DING | `ding` | 2 | `message` | 发送 / 撤回 DING 消息 |
| 日志 | `report` | 7 | `create` `list` `detail` `template` `stats` `sent` | 创建日志、收发列表、模版、详情、统计 |
| AI 表格 | `aitable` | 41 | `base` `table` `record` `field` `view` `dashboard` `chart` `import` `export` `attachment` `template` | Base / 数据表 / 记录 / 字段 / 视图 全量 CRUD;图表 + 仪表盘(含分享配置);数据导入导出;附件;模板 |
| 文档 | `doc` | 21 | `search` `list` `info` `read` `create` `update` `upload` `download` `copy` `move` `rename` `file` `folder` `block` `comment` | 搜索 / 读写文档、文件与文件夹创建、块级编辑、评论(list / create / reply / create-inline)、上传 / 下载 |
| 钉盘 | `drive` | 6 | `list` `info` `download` `mkdir` `upload-info` `commit` | 钉盘文件操作:列表、详情、下载、创建文件夹、两阶段上传 |
| AI 听记 | `minutes` | 19 | `list` `get` `update` `mind-graph` `speaker` `hot-word` `upload` | 听记列表(我创建 / 共享给我)、详情(info / summary / keywords / transcription / todos / batch)、标题/摘要更新、思维导图、发言人替换、热词、上传会话 |
| 邮箱 | `mail` | 4 | `mailbox` `message` | 邮箱地址列表、KQL 邮件搜索、邮件详情、发送邮件 |
| 开发者文档 | `devdoc` | 1 | `article` | 搜索钉钉开放平台文档 |
| Raw API | `api` | 1 | — | 直接调用任意钉钉 OpenAPI(api / oapi 双形态),自动管理应用级 Token |
> 12 个产品,86 个命令。运行 `dws --help` 查看完整列表,或 `dws <service> --help` 查看子命令。
> **14 个产品,163 条命令。** 完整命令清单(带描述与使用场景):[`docs/command-index.md`](./docs/command-index.md)。运行 `dws --help` 查看顶层命令树,或 `dws <service> --help` 查看子命令。
> **关于 `chat bot`**:机器人能力(`send-by-bot` / `recall-by-bot` / `add-bot` / `send-by-webhook` / bot 搜索)已合并到对应的 `chat` 子树下(例如 `dws chat message send-by-bot`、`dws chat group members add-bot`),保持 agent 视角下的命令面扁平易发现。不再有独立的顶层 `bot` 产品。
<details>
<summary>即将推出</summary>
`doc`(文档)· `mail`(邮箱)· `minutes`(AI 听记)· `drive`(钉盘)· `conference`(视频会议)· `tb`(Teambition)· `aiapp`(AI 应用)· `live`(直播)· `skill`(技能市场)
`conference`(视频会议)· `aiapp`(AI 应用)· `live`(直播)· `wiki`(知识库)
</details>
@@ -418,6 +474,7 @@ dws chat message send-by-bot --robot-code BOT_CODE --group GROUP_ID \
## 参考与文档
- [命令索引](./docs/command-index.md) — 全部运行时命令,带描述与使用场景
- [参考手册](./docs/reference.md) — 环境变量、退出码、输出格式、Shell 补全
- [架构设计](./docs/architecture.md) — 发现驱动管道、IR、Transport 层
- [更新日志](./CHANGELOG.md) — 版本历史与迁移说明
+1
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@@ -53,6 +53,7 @@ __KEG_ONLY_LINE__
Pathname.new(File.join(Dir.home, ".kiro/skills/dws")),
Pathname.new(File.join(Dir.home, ".trae/skills/dws")),
Pathname.new(File.join(Dir.home, ".openclaw/skills/dws")),
Pathname.new(File.join(Dir.home, ".hermes/skills/dws")),
]
targets.each_with_index do |dest, index|
+1
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@@ -22,6 +22,7 @@ const AGENT_DIRS = [
".kiro/skills",
".trae/skills",
".openclaw/skills",
".hermes/skills",
];
const PLATFORM_MAP = {
+323
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@@ -0,0 +1,323 @@
# dws Command Index
Every runtime command the `dws` CLI exposes when loaded with the **pre** environment configuration.
- **Source**: `dws-wukong/envelope/channel/open/pre/config.json`
- **Products**: 13
- **Total commands**: 159
- **Generated from**: `internal/compat.BuildDynamicCommands` rendering of the pre config — the same code path the CLI uses at runtime.
> Auto-generated. Edit `pre/config.json`, not this file.
## Global flags
Every command inherits these flags (documented here once, not repeated per command):
| Flag | Purpose |
|---|---|
| `--client-id` | Override OAuth client ID (DingTalk AppKey) |
| `--client-secret` | Override OAuth client secret (DingTalk AppSecret) |
| `--debug` | Enable debug logging |
| `--dry-run` | Preview the request without executing |
| `--fields` | Comma-separated output field projection |
| `-f, --format` | Output format: `json` \| `table` \| `raw` (default `json`) |
| `--jq` | jq expression applied to JSON output |
| `--mock` | Return mock data (developer aid) |
| `-o, --output` | Write output to a file |
| `--timeout` | HTTP request timeout in seconds (default 30) |
| `--token` | Override the configured API token |
| `-v, --verbose` | Verbose logging |
| `-y, --yes` | Skip confirmation prompts (AI-agent mode) |
## Contents
- [`dws aitable` — AI Tables](#dws-aitable) · 41 commands
- [`dws attendance` — Attendance](#dws-attendance) · 4 commands
- [`dws calendar` — Calendar](#dws-calendar) · 14 commands
- [`dws chat` — Group Chat / IM](#dws-chat) · 23 commands
- [`dws contact` — Contact Directory](#dws-contact) · 6 commands
- [`dws devdoc` — Open Platform Docs](#dws-devdoc) · 1 commands
- [`dws ding` — DING Messages](#dws-ding) · 2 commands
- [`dws doc` — DingTalk Doc](#dws-doc) · 21 commands
- [`dws drive` — DingTalk Drive](#dws-drive) · 6 commands
- [`dws minutes` — AI Minutes](#dws-minutes) · 19 commands
- [`dws oa` — OA Approval](#dws-oa) · 9 commands
- [`dws report` — Reports](#dws-report) · 7 commands
- [`dws todo` — Todo Tasks](#dws-todo) · 6 commands
## `dws aitable` — AI Tables
_AI-powered spreadsheet (Base) with datasheets, fields, records, views, dashboards, charts, import/export, attachments, and templates._
**41 commands**
| Command | Description | When to use |
|---|---|---|
| `dws aitable attachment upload` | Request an upload ticket for attaching a file to an AI table attachment-type field. Returns an upload URL and token the caller uses to stream the file. | When the agent needs to attach binary assets (images, PDFs, etc.) to records before creating or updating an attachment field value. |
| `dws aitable base create` | Create a new AI table (Base) under the current user's workspace. Returns the newly-created Base ID. | When an agent needs to provision a fresh Base before populating datasheets, fields, and records. |
| `dws aitable base delete` | Permanently delete an existing AI table (Base) by ID, removing all its datasheets, views, and records. | When the agent is cleaning up a Base that is no longer needed or was created for a one-off task. |
| `dws aitable base get` | Retrieve metadata for a single AI table (Base), including name, owner, and structural summary. | When the agent needs to inspect a specific Base before performing further operations on it. |
| `dws aitable base list` | List AI tables (Bases) accessible to the current user, paginated. | When the agent needs to enumerate the user's Bases to pick one by name or index. |
| `dws aitable base search` | Search AI tables (Bases) the current user can access by keyword against the Base name. | When the agent knows a partial Base name and needs to resolve it to a Base ID. |
| `dws aitable base update` | Update mutable properties of an AI table (Base), such as its name or icon. | When the agent needs to rename or rebrand an existing Base without touching its data. |
| `dws aitable chart create` | Create a new chart inside a Base, bound to a datasheet and view with a given configuration. | When the agent is building analytics on top of a datasheet and needs to materialize a chart visualization. |
| `dws aitable chart delete` | Delete a chart from a Base by chart ID. | When the agent needs to remove an obsolete or mistakenly-created chart. |
| `dws aitable chart get` | Retrieve a chart's full configuration and metadata. | When the agent needs to inspect an existing chart to clone it or adjust its configuration. |
| `dws aitable chart share get` | Retrieve the current public-sharing configuration of a chart, including share link and permissions. | When the agent needs to check whether a chart is already shared externally before issuing a link. |
| `dws aitable chart share update` | Enable, disable, or update the public-sharing configuration of a chart. | When the agent needs to generate or revoke an external share link for a chart. |
| `dws aitable chart update` | Update an existing chart's configuration (type, dimensions, metrics, style). | When the agent iterates on a chart's visualization after reviewing the initial result. |
| `dws aitable chart widgets-example` | Return a reference JSON example of chart widget configuration accepted by chart create/update. | When the agent needs a schema template before composing chart configuration payloads. |
| `dws aitable dashboard config-example` | Return a reference JSON example of dashboard configuration accepted by dashboard create/update. | When the agent needs a schema template before composing dashboard layout payloads. |
| `dws aitable dashboard create` | Create a new dashboard inside a Base with a layout of chart widgets. | When the agent wants to group multiple charts into a single dashboard view for a report or overview page. |
| `dws aitable dashboard delete` | Delete a dashboard from a Base by dashboard ID. | When the agent is removing an outdated dashboard. |
| `dws aitable dashboard get` | Retrieve a dashboard's layout, widget list, and metadata. | When the agent needs to inspect a dashboard before updating it or cloning it. |
| `dws aitable dashboard share get` | Retrieve the current public-sharing configuration of a dashboard. | When the agent needs to verify whether a dashboard has an active external share link. |
| `dws aitable dashboard share update` | Enable, disable, or update the public-sharing configuration of a dashboard. | When the agent needs to generate or revoke an external share link for a dashboard. |
| `dws aitable dashboard update` | Update an existing dashboard's layout, widgets, or metadata. | When the agent adds, removes, or rearranges charts on an existing dashboard. |
| `dws aitable export data` | Export data from a datasheet (optionally scoped to a view) to a downloadable file such as Excel or CSV. | When the agent needs to hand off Base data to an external system or deliver it as an attachment. |
| `dws aitable field create` | Create one or more fields in a datasheet with specified types and options. | When the agent is extending a datasheet's schema to capture new attributes. |
| `dws aitable field delete` | Delete a field from a datasheet by field ID; all values in that column are removed. | When the agent is cleaning up unused or deprecated columns in a datasheet. |
| `dws aitable field get` | Retrieve field definitions for a datasheet, including type, options, and order. | When the agent needs the field schema before constructing record payloads or queries. |
| `dws aitable field update` | Update a field's name, type, or options in a datasheet. | When the agent needs to rename a column or change its type/options without recreating it. |
| `dws aitable import data` | Import previously-uploaded data (e.g. Excel) into a datasheet as records, optionally creating fields. | When the agent is bulk-loading external data into a Base after a successful import upload. |
| `dws aitable import upload` | Request an upload ticket for an import file (Excel/CSV) to be staged before calling import data. | When the agent needs to push a local dataset into a Base and must first stage the file. |
| `dws aitable record create` | Insert one or more records into a datasheet with given field values. | When the agent needs to add new rows to a datasheet, individually or in batches. |
| `dws aitable record delete` | Delete one or more records from a datasheet by record ID. | When the agent removes rows that are obsolete or were created in error. |
| `dws aitable record query` | Query records from a datasheet with optional filters, sort, view scoping, and pagination. | When the agent needs to read row data to reason about it, render it, or feed it into downstream logic. |
| `dws aitable record update` | Update field values on one or more existing records by record ID. | When the agent modifies specific row values after reading or computing new data. |
| `dws aitable table create` | Create a new datasheet (table) inside a Base. | When the agent needs another table alongside existing ones in the same Base. |
| `dws aitable table delete` | Delete a datasheet from a Base by table ID, removing all its records, views, and fields. | When the agent is disposing of a datasheet that is no longer needed. |
| `dws aitable table get` | List datasheets within a Base, returning table IDs and names. | When the agent needs to resolve a table name to an ID inside a known Base. |
| `dws aitable table update` | Update a datasheet's name or other metadata. | When the agent needs to rename a datasheet without altering its contents. |
| `dws aitable template search` | Search the AI table template gallery by keyword. | When the agent needs to suggest or bootstrap from an existing Base template rather than building from scratch. |
| `dws aitable view create` | Create a new view (grid, gallery, kanban, etc.) on a datasheet. | When the agent needs an alternate filtered/sorted presentation of the same datasheet data. |
| `dws aitable view delete` | Delete a view from a datasheet by view ID. | When the agent is cleaning up unused views. |
| `dws aitable view get` | Retrieve view definitions for a datasheet, including filter, sort, and visible-field configuration. | When the agent needs to understand or reuse a view's configuration before querying records through it. |
| `dws aitable view update` | Update a view's name, filter, sort, grouping, or visible fields. | When the agent refines an existing view's configuration after inspection. |
## `dws attendance` — Attendance
_Attendance check-in records, shifts, and aggregate statistics._
**4 commands**
| Command | Description | When to use |
|---|---|---|
| `dws attendance record get` | Query a user's detailed clock-in/clock-out attendance records for a given time range. | When the agent needs to verify punctuality, pull attendance evidence, or build an attendance report for an individual. |
| `dws attendance rules` | Query the attendance group the user belongs to along with its attendance rules (schedule, locations, shifts). | When the agent needs to know the user's expected work schedule or attendance policies before interpreting records. |
| `dws attendance shift list` | Batch-query the assigned shifts for a set of employees over a date range. | When the agent needs to plan around team shifts or compile a shift-based roster. |
| `dws attendance summary` | Retrieve an aggregated attendance summary for a single user (totals of late, early-leave, absence, overtime). | When the agent needs a quick attendance health check without pulling raw records. |
## `dws calendar` — Calendar
_Calendar events, participants, meeting rooms, and busy-status queries._
**14 commands**
| Command | Description | When to use |
|---|---|---|
| `dws calendar busy search` | Query the busy/free time windows of one or more users over a given range. | When the agent is scheduling a meeting and needs to find a slot where all attendees are free. |
| `dws calendar event create` | Create a new calendar event on the user's calendar with title, time, attendees, and optional meeting room. | When the agent schedules a meeting or reminder on behalf of the user. |
| `dws calendar event delete` | Delete an existing calendar event by event ID. | When the agent cancels a previously scheduled event. |
| `dws calendar event get` | Retrieve the full details of a calendar event, including participants, location, and body. | When the agent needs to inspect an event before updating or referencing it. |
| `dws calendar event list` | List calendar events on the user's calendar within a given time range. | When the agent needs an overview of the user's upcoming schedule or a day's agenda. |
| `dws calendar event suggest` | Suggest candidate meeting time slots based on participants' busy/free data and constraints. | When the agent is coordinating a meeting and wants ranked time suggestions rather than raw busy data. |
| `dws calendar event update` | Update an existing calendar event's fields such as time, title, participants, or location. | When the agent needs to reschedule or amend a previously created event. |
| `dws calendar participant add` | Add one or more participants to an existing calendar event. | When the agent invites additional attendees after the event has been created. |
| `dws calendar participant delete` | Remove one or more participants from an existing calendar event. | When the agent drops attendees who no longer need to join the event. |
| `dws calendar participant list` | List current participants of a calendar event along with their response status. | When the agent needs to check who is attending before sending follow-up reminders. |
| `dws calendar room add` | Book a specific meeting room onto an existing calendar event. | When the agent needs to attach a physical meeting room to an already-scheduled event. |
| `dws calendar room delete` | Release a previously booked meeting room from a calendar event. | When the agent cancels or changes the room on an existing event. |
| `dws calendar room list-groups` | List meeting room groups (usually by building or floor) available to the user. | When the agent is narrowing down rooms by location before running an availability search. |
| `dws calendar room search` | Search meeting rooms by keyword within a group, optionally filtering to rooms free during a given window via `--available`. | When the agent needs to find a suitable room, typically free at a specific time, prior to booking. |
## `dws chat` — Group Chat / IM
_Group chats, conversations, messages, and robot/webhook integrations._
**23 commands**
| Command | Description | When to use |
|---|---|---|
| `dws chat bot search` | Search robots (bots) created by the current user by keyword. | When the agent needs to resolve one of its own bots by name to a robot code before sending bot messages. |
| `dws chat conversation-info` | Retrieve basic metadata for a conversation (single chat or group chat) by conversation ID. | When the agent needs context about a conversation (name, type, member count) before operating on it. |
| `dws chat group create` | Create a new internal group chat with a set of initial members. | When the agent needs to spin up a dedicated group for a new project, incident, or discussion thread. |
| `dws chat group members` | List members of a group chat; can also be used against the current user to enumerate their groups' members. | When the agent needs the roster of a group before mentioning, removing, or auditing members. |
| `dws chat group members add` | Add one or more users to an existing group chat. | When the agent expands a group to include additional participants. |
| `dws chat group members add-bot` | Add a robot (bot) to an existing group chat so the bot can post messages there. | When the agent needs to enable bot-driven notifications in a group that does not yet contain the bot. |
| `dws chat group members remove` | Remove one or more members from a group chat. | When the agent kicks users who should no longer have access to the group. |
| `dws chat group rename` | Update the display name of a group chat. | When the agent is rebranding or clarifying the purpose of an existing group. |
| `dws chat list-top-conversations` | Fetch the list of conversations the current user has pinned to the top of their chat list. | When the agent needs to prioritize the user's most important conversations in a summary or dashboard. |
| `dws chat message list` | Pull the recent message history of a specific conversation (v2), paginated. | When the agent needs to read what has recently been said in a conversation to summarize or reason about it. |
| `dws chat message list-all` | Search all messages across the current user's conversations within a time range. | When the agent needs to audit or summarize everything the user saw across chats in a window. |
| `dws chat message list-by-sender` | Fetch messages authored by a specific sender across both single and group chats. | When the agent needs to pull everything a particular colleague said recently. |
| `dws chat message list-focused` | Fetch messages from users the current user has marked as "special focus" (starred contacts). | When the agent builds a priority-inbox view highlighting messages from important people. |
| `dws chat message list-mentions` | Fetch messages where the current user was @-mentioned. | When the agent wants to surface items that explicitly require the user's attention. |
| `dws chat message list-topic-replies` | Pull replies under a specific group topic thread. | When the agent needs the conversation tree of a threaded discussion rather than the flat message list. |
| `dws chat message list-unread-conversations` | Fetch the list of conversations that currently have unread messages for the user. | When the agent builds a "catch me up" triage view of what still needs reading. |
| `dws chat message recall-by-bot` | Recall (retract) a message previously sent by a robot in a group chat. | When the agent sent a bot message in error or with incorrect content and needs to withdraw it. |
| `dws chat message search` | Search messages by keyword across the user's conversations. | When the agent needs to locate a specific statement or link the user remembers from chat history. |
| `dws chat message send` | Send a message into a group chat or single chat as the authenticated user. | When the agent needs to relay a response to a user or notify a group on behalf of the human operator. |
| `dws chat message send-by-bot` | Send a group message as a specific robot (bot) the user owns. | When the agent posts automated notifications under a bot identity rather than as the user. |
| `dws chat message send-by-webhook` | Send a group message via a custom-robot incoming webhook URL. | When the agent needs to post to a group using a webhook without requiring full bot-permission setup. |
| `dws chat search` | Search group conversations the user belongs to by group name keyword. | When the agent needs to resolve a group name to a conversation ID. |
| `dws chat search-common` | Find group chats the current user and a specified other user both belong to. | When the agent needs an existing shared channel to contact another user without creating a new group. |
## `dws contact` — Contact Directory
_Users, departments, and directory lookups._
**6 commands**
| Command | Description | When to use |
|---|---|---|
| `dws contact dept list-members` | List members of a specific department by department ID. | When the agent needs the roster of a department to target communication or build a team overview. |
| `dws contact dept search` | Search departments in the organization's contact directory by keyword. | When the agent needs to resolve a department name to a department ID. |
| `dws contact user get` | Batch-fetch detailed profile information for one or more users by user ID. | When the agent needs names, titles, emails, or departments for a known set of user IDs. |
| `dws contact user get-self` | Retrieve the profile of the currently authenticated user. | When the agent needs to identify who it is acting on behalf of (user ID, name, org). |
| `dws contact user search` | Search users in the contact directory by keyword (name, title, etc.). | When the agent needs to resolve a person's display name to a user ID. |
| `dws contact user search-mobile` | Look up a user by mobile phone number. | When the agent has only a phone number and needs to find the corresponding DingTalk user. |
## `dws devdoc` — Open Platform Docs
_Search the DingTalk Open Platform documentation._
**1 commands**
| Command | Description | When to use |
|---|---|---|
| `dws devdoc article search` | Search the DingTalk Open Platform documentation by keyword. | When the agent needs authoritative API reference or guides to answer a developer question. |
## `dws ding` — DING Messages
_Send and recall DING messages (priority notifications)._
**2 commands**
| Command | Description | When to use |
|---|---|---|
| `dws ding message recall` | Recall (retract) a previously sent DING message. | When the agent sent a DING in error and must withdraw it before recipients act on it. |
| `dws ding message send` | Send a DING message (high-priority notification) to one or more recipients via app/SMS/phone. | When the agent needs to page recipients with urgency beyond a normal chat message. |
## `dws doc` — DingTalk Doc
_DingTalk Doc: search, browse, read/write, upload/download, files, folders, blocks, comments._
**21 commands**
| Command | Description | When to use |
|---|---|---|
| `dws doc block delete` | Delete a block from a DingTalk Doc by block ID. | When the agent is editing a document and needs to remove a specific paragraph, table, or other block. |
| `dws doc block insert` | Insert a new block (paragraph, table, image, etc.) into a DingTalk Doc at a given position. | When the agent is programmatically assembling or editing a document's content. |
| `dws doc block list` | List the blocks of a DingTalk Doc with their IDs, types, and content. | When the agent needs the structured block tree of a doc before modifying specific blocks. |
| `dws doc block update` | Update the content or properties of an existing block in a DingTalk Doc. | When the agent amends a specific paragraph or element without rewriting the whole document. |
| `dws doc comment create` | Create a document-level comment on a DingTalk Doc. | When the agent leaves feedback or follow-up notes that apply to the entire document. |
| `dws doc comment create-inline` | Create an inline (anchored) comment on a specific text range within a DingTalk Doc. | When the agent needs to attach feedback to a particular passage rather than the whole doc. |
| `dws doc comment list` | List comments on a DingTalk Doc, including replies. | When the agent is reviewing outstanding feedback or summarizing comment threads. |
| `dws doc comment reply` | Reply to an existing comment on a DingTalk Doc. | When the agent responds to a reviewer's comment inline rather than starting a new thread. |
| `dws doc copy` | Copy an existing DingTalk Doc or file to a specified destination folder. | When the agent needs to duplicate a template document into a new location for reuse. |
| `dws doc create` | Create a new DingTalk Doc (document type) in a target folder or knowledge base. | When the agent needs a fresh DingTalk Doc to write into. |
| `dws doc download` | Download a DingTalk Doc or file to a local path. | When the agent needs the raw file locally for processing or attachment. |
| `dws doc file create` | Create a new file node of a given type (doc, sheet, mind map, whiteboard, AI table, etc.) in a target folder. | When the agent provisions any non-plain-document file type inside DingTalk Docs. |
| `dws doc folder create` | Create a new folder inside a DingTalk Docs knowledge base or drive location. | When the agent organizes output into a fresh folder before writing files into it. |
| `dws doc info` | Retrieve metadata for a document or file (title, type, owner, path, permissions). | When the agent needs descriptive info about a node without fetching its full content. |
| `dws doc list` | List the child nodes (files and subfolders) of a folder or knowledge base. | When the agent traverses the document hierarchy to find or enumerate items. |
| `dws doc move` | Move a DingTalk Doc or file to a different folder location. | When the agent reorganizes document structure. |
| `dws doc read` | Read the content of a DingTalk Doc as Markdown. | When the agent needs the document body as text for summarization, Q&A, or further editing. |
| `dws doc rename` | Rename a DingTalk Doc or file. | When the agent needs to change a document's title without altering its contents or location. |
| `dws doc search` | Search DingTalk Docs the user can access by keyword. | When the agent needs to locate a document by title or content before reading or editing it. |
| `dws doc update` | Update the content of a DingTalk Doc (bulk content rewrite rather than block-level edit). | When the agent has freshly generated content and needs to overwrite a doc's body. |
| `dws doc upload` | Obtain upload credentials and URL for uploading a local file as an attachment into DingTalk Docs or a knowledge base. | When the agent needs to stage a local file for attachment into the DingTalk Docs system. |
## `dws drive` — DingTalk Drive
_DingTalk Drive file and folder management._
**6 commands**
| Command | Description | When to use |
|---|---|---|
| `dws drive commit` | Commit a file upload to DingTalk Drive after the binary has been pushed to the presigned URL. | When the agent finalizes a Drive upload step; pairs with `drive upload-info`. |
| `dws drive download` | Fetch a temporary download URL for a file stored in DingTalk Drive. | When the agent needs to retrieve a Drive-hosted file for local use or for handing to another service. |
| `dws drive info` | Retrieve metadata for a file or folder in DingTalk Drive. | When the agent inspects a Drive node before downloading, moving, or listing around it. |
| `dws drive list` | List the files and subfolders of a DingTalk Drive folder. | When the agent needs to enumerate Drive contents to find or pick items. |
| `dws drive mkdir` | Create a new folder in DingTalk Drive. | When the agent organizes Drive output into a fresh folder before uploading files. |
| `dws drive upload-info` | Obtain a presigned upload URL and token for pushing a local file into DingTalk Drive. | When the agent starts a Drive upload; pairs with `drive commit` to finalize. |
## `dws minutes` — AI Minutes
_AI meeting notes: listing, summary, todos, transcription, recording control, mind maps, speakers, hot words, uploads._
**19 commands**
| Command | Description | When to use |
|---|---|---|
| `dws minutes get batch` | Batch-fetch detailed metadata for multiple meeting notes (AI minutes) by ID. | When the agent needs to enrich a list of minutes IDs with titles, durations, and participants in one call. |
| `dws minutes get info` | Retrieve basic metadata for a single meeting note (title, owner, time, duration, participants). | When the agent needs a header view of a specific meeting note. |
| `dws minutes get keywords` | Retrieve the extracted keywords of a meeting note. | When the agent needs topical tags for a meeting without pulling the full transcript or summary. |
| `dws minutes get summary` | Retrieve the AI-generated summary of a meeting note. | When the agent needs a concise recap of a meeting for reporting or follow-up. |
| `dws minutes get todos` | Retrieve the action items (todos) extracted from a meeting note. | When the agent needs to convert meeting action items into tasks or follow up on commitments. |
| `dws minutes get transcription` | Retrieve the raw speech-to-text transcription of a meeting note. | When the agent needs the full verbatim transcript for deep analysis or quoting. |
| `dws minutes hot-word add` | Add a custom personal hot word to improve future speech-recognition accuracy on the user's minutes. | When the user has domain-specific jargon or proper nouns that the ASR model mistranscribes. |
| `dws minutes list all` | List all meeting notes the user has access to, filterable by keyword and time range. | When the agent needs a broad search across the user's full minutes library. |
| `dws minutes list mine` | List only the meeting notes the current user created. | When the agent scopes results to the user's own recordings rather than shared ones. |
| `dws minutes list shared` | List meeting notes that have been shared with the current user by others. | When the agent wants to surface meetings the user is an invited viewer of. |
| `dws minutes mind-graph create` | Generate a mind map from a meeting note asynchronously. | When the agent wants a structured mind-map visualization of a meeting's content. |
| `dws minutes mind-graph status` | Query the generation status of a mind-map job and fetch the result when ready. | When the agent polls after `mind-graph create` to retrieve the finished mind map. |
| `dws minutes replace-text` | Find and replace matching text across a meeting note's transcript paragraphs and summary. | When the agent corrects a systemic transcription mistake (e.g. wrong product name) throughout a note. |
| `dws minutes speaker replace` | Reassign speaker labels in a meeting note (e.g. map "Speaker 1" to a specific user). | When the agent cleans up speaker diarization after automatic labels came out wrong. |
| `dws minutes update summary` | Overwrite the summary content of a meeting note. | When the agent refines or replaces the AI-generated summary with a corrected or customized version. |
| `dws minutes update title` | Update the title of a meeting note. | When the agent renames a meeting note for clarity before sharing or archiving. |
| `dws minutes upload cancel` | Cancel an in-progress meeting-note file upload session. | When the agent aborts a multi-step upload due to user cancellation or upstream error. |
| `dws minutes upload complete` | Complete an upload session and create a meeting note from the uploaded audio/video. | When the agent finalizes a minutes upload, triggering transcription and AI processing. |
| `dws minutes upload create` | Create a file upload session for producing a meeting note from a local audio/video file. | When the agent begins uploading a recording to be turned into a meeting note. |
## `dws oa` — OA Approval
_OA approval workflows: list, approve, reject, revoke, records._
**9 commands**
| Command | Description | When to use |
|---|---|---|
| `dws oa approval approve` | Approve a pending approval process instance (task) as the current user. | When the agent acts on a pending approval the user has delegated it to handle. |
| `dws oa approval detail` | Retrieve full details of an approval process instance, including form fields, attachments, and state. | When the agent needs to read the content of an approval ticket before deciding on it or summarizing it. |
| `dws oa approval list-forms` | List approval process templates (forms) the current user is allowed to initiate. | When the agent needs to pick the right approval form before submitting a new request. |
| `dws oa approval list-initiated` | List approval process instances the current user has initiated. | When the agent reviews the status of approvals the user submitted. |
| `dws oa approval list-pending` | List approval process instances currently awaiting action from the current user. | When the agent surfaces "needs your approval" items in the user's inbox. |
| `dws oa approval records` | Retrieve the operation history (who approved/commented/transferred, when) of an approval instance. | When the agent explains an approval's progression or audits who handled it. |
| `dws oa approval reject` | Reject a pending approval process instance as the current user. | When the agent declines an approval on behalf of the user, optionally with a reason. |
| `dws oa approval revoke` | Revoke an approval process instance previously initiated by the current user. | When the agent withdraws an approval request the user no longer wants to pursue. |
| `dws oa approval tasks` | List pending approval task IDs assigned to the current user, used to drive approve/reject actions. | When the agent needs task IDs (not just instance IDs) before calling approve/reject. |
## `dws report` — Reports
_DingTalk Report feature: templates, entries, and statistics._
**7 commands**
| Command | Description | When to use |
|---|---|---|
| `dws report create` | Create a new report (DingTalk "Report" entry) based on a report template with filled-in content. | When the agent submits a daily/weekly report on behalf of the user. |
| `dws report detail` | Retrieve the full details of a specific report entry, including fields and recipients. | When the agent needs to read a report's content for summarization or follow-up. |
| `dws report list` | List reports the current user has received from others. | When the agent digests the user's incoming reports (e.g. team members' weeklies). |
| `dws report sent` | List reports the current user has created and sent out. | When the agent reviews the user's own reporting history. |
| `dws report stats` | Retrieve aggregated statistics for a report entry by ID (views, likes, comments, etc.). | When the agent measures engagement or reach of a report the user sent. |
| `dws report template detail` | Retrieve the detailed schema of a report template by name, including required fields. | When the agent needs to know a template's field structure before calling `report create`. |
| `dws report template list` | List the report templates the current user is allowed to use. | When the agent picks the correct report template (e.g. "weekly", "daily") before creating a report. |
## `dws todo` — Todo Tasks
_Personal todo task management._
**6 commands**
| Command | Description | When to use |
|---|---|---|
| `dws todo task create` | Create a personal todo item for the current user with title, due time, and optional executors. | When the agent captures an action item as a tracked todo in the user's DingTalk todo list. |
| `dws todo task delete` | Delete a todo item by ID. | When the agent removes a todo that is no longer relevant. |
| `dws todo task done` | Update the completion status of a todo's executor (mark done or undone). | When the agent marks an action item as completed after confirming the work is finished. |
| `dws todo task get` | Retrieve the full details of a todo item by ID. | When the agent inspects a specific todo's content, due date, and executors. |
| `dws todo task list` | List todos for the current user within the current organization. | When the agent surfaces the user's outstanding tasks or builds a daily focus list. |
| `dws todo task update` | Update a todo's title, description, due time, or executors. | When the agent edits an existing todo after new information comes in. |
+47 -5
View File
@@ -19,8 +19,9 @@
| 1 | API | MCP tool call or upstream API failure / MCP 工具调用或上游 API 失败 |
| 2 | Auth | Authentication or authorization failure / 身份认证或授权失败 |
| 3 | Validation | Invalid input, flags, or parameter schema mismatch / 输入参数校验失败 |
| 4 | Discovery | Server discovery, cache, or protocol negotiation failure / 服务发现失败 |
| 4 | PAT | PAT authorization interception; stderr carries raw machine-readable PAT JSON / PAT 授权拦截;stderr 返回原始机器可解析 JSON |
| 5 | Internal | Unexpected internal error / 未预期的内部错误 |
| 6 | Discovery | Server discovery, cache, or protocol negotiation failure / 服务发现、缓存或协议协商失败 |
With `-f json`, error responses include structured payloads: `category`, `reason`, `hint`, `actions`.
@@ -29,9 +30,10 @@ With `-f json`, error responses include structured payloads: `category`, `reason
## Output Formats / 输出格式
```bash
dws contact user search --keyword "Alice" -f table # Table (default, human-friendly / 表格,默认)
dws contact user search --keyword "Alice" -f json # JSON (for agents and piping / 适合 agent)
dws contact user search --keyword "Alice" -f raw # Raw API response / 原始响应
dws contact user search --query "Alice" -f table # Table (default, human-friendly / 表格,默认)
dws contact user search --query "Alice" -f json # JSON (for agents and piping / 适合 agent)
dws contact user search --query "Alice" -f raw # Raw API response / 原始响应
dws schema -f pretty ding.send_ding_message # Pretty (ANSI-colored, schema-aware / 彩色分区,专为 schema 设计)
```
## Dry Run / 试运行
@@ -43,7 +45,47 @@ dws todo task list --dry-run # Preview MCP call without executing / 预览但
## Output to File / 输出到文件
```bash
dws contact user search --keyword "Alice" -o result.json
dws contact user search --query "Alice" -o result.json
```
## Schema Introspection / Schema 查询
`dws schema` 查询已发现的 MCP 产品和工具元数据。不带参数列出所有产品,带路径输出单个工具的完整 schema。
### 路径写法
```bash
dws schema # 列出所有产品 + 工具名
dws schema ding.send_ding_message # canonical: product.rpc_name
dws schema ding.message.send # CLI 点路径: product.group.cli_name
dws schema "ding message send" # CLI 空格路径(同上)
dws schema --cli-path "ding message send" # 显式 flag(脚本友好,免转义)
dws schema -f pretty ding.send_ding_message # ANSI 着色分区展示(人肉查看最舒服)
```
Canonical 路径先匹配;落空后走 CLI 路径(product → group.. → cli_name)。
### 单工具输出字段
| 字段 | 说明 |
|------|------|
| `name` / `cli_name` / `canonical_path` | MCP RPC 名 / CLI 叶子名 / `product.rpc_name` |
| `group` | CLI 父级 group 路径(dot-separated) |
| `title` / `description` | 工具名/说明(overlay 优先) |
| `parameters` / `required` | MCP 输入 JSON Schema 的 properties / required |
| `output_schema` | MCP 输出 Schema(上游下发时才有) |
| `sensitive` | 敏感写操作,需 `--yes` 确认 |
| `annotations.destructive_hint` | 对齐 MCP 2025+ annotations,目前从 `sensitive` 映射 |
| `flag_overlay[param]` | CLI 层对 MCP 参数的改写:`alias` / `transform` / `transform_args` / `env_default` / `default` / `hidden` |
**调试 `--flag` 行为的第一站**是 `flag_overlay` —— 比如 `--users 0232...` 能不能直接用,看 `receiverUserIdList.transform == "csv_to_array"` 即可判断。
### 筛选输出
```bash
dws schema ding.send_ding_message --jq '.tool.flag_overlay' # 只看 overlay
dws schema --jq '.products[] | {id, count: (.tools|length)}' # 各产品工具数
dws schema aitable.delete_base --jq '.tool.annotations' # 敏感操作提示
```
## Shell Completion / 自动补全
+228
View File
@@ -0,0 +1,228 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
// Package apiclient provides a lightweight HTTP client for calling DingTalk
// OpenAPI (https://api.dingtalk.com) directly, bypassing the MCP JSON-RPC
// transport. It is used exclusively by the `dws api` command.
package apiclient
import (
"bytes"
"context"
"crypto/tls"
"encoding/json"
"fmt"
"io"
"net"
"net/http"
"net/url"
"strings"
"time"
)
const (
// DefaultBaseURL is the DingTalk new-style OpenAPI base URL.
DefaultBaseURL = "https://api.dingtalk.com"
// LegacyBaseURL is the DingTalk legacy (oapi) API base URL.
LegacyBaseURL = "https://oapi.dingtalk.com"
// AuthHeader is the new-style OpenAPI authentication header.
AuthHeader = "x-acs-dingtalk-access-token"
// LegacyAuthParam is the query parameter used for legacy API authentication.
LegacyAuthParam = "access_token"
)
// AllowedMethods is the set of HTTP methods permitted for raw API calls.
var AllowedMethods = map[string]bool{
"GET": true, "POST": true, "PUT": true, "PATCH": true, "DELETE": true,
}
// RawAPIRequest describes a raw API request to DingTalk OpenAPI.
type RawAPIRequest struct {
Method string // GET, POST, PUT, PATCH, DELETE
Path string // /v1.0/calendar/events or full URL
Params map[string]any // query parameters
Data any // request body (JSON), nil for GET
}
// RawAPIResponse encapsulates the raw HTTP response.
type RawAPIResponse struct {
StatusCode int
Header http.Header
Body []byte
}
// APIClient wraps an HTTP client for DingTalk OpenAPI calls.
type APIClient struct {
BaseURL string
HTTPClient *http.Client
Token string
}
// NewClient creates an APIClient with sensible defaults.
func NewClient(token, baseURL string) *APIClient {
if strings.TrimSpace(baseURL) == "" {
baseURL = DefaultBaseURL
}
return &APIClient{
BaseURL: strings.TrimRight(baseURL, "/"),
Token: token,
HTTPClient: &http.Client{
Transport: defaultTransport(),
Timeout: 30 * time.Second,
},
}
}
// Do sends a raw API request and returns the response.
func (c *APIClient) Do(ctx context.Context, req RawAPIRequest) (*RawAPIResponse, error) {
method := strings.ToUpper(strings.TrimSpace(req.Method))
if !AllowedMethods[method] {
return nil, fmt.Errorf("unsupported HTTP method: %s (allowed: GET, POST, PUT, PATCH, DELETE)", req.Method)
}
fullURL, err := c.buildURL(req.Path, req.Params)
if err != nil {
return nil, fmt.Errorf("building request URL: %w", err)
}
// Security: verify target host before sending token.
if err := ValidateTargetHost(fullURL); err != nil {
return nil, err
}
var bodyReader io.Reader
if req.Data != nil && method != "GET" {
data, marshalErr := json.Marshal(req.Data)
if marshalErr != nil {
return nil, fmt.Errorf("marshaling request body: %w", marshalErr)
}
bodyReader = bytes.NewReader(data)
}
httpReq, err := http.NewRequestWithContext(ctx, method, fullURL, bodyReader)
if err != nil {
return nil, fmt.Errorf("creating HTTP request: %w", err)
}
// Set headers and auth based on API style.
if IsLegacyAPI(fullURL) {
// Legacy API: token goes in query parameter.
parsed, _ := url.Parse(fullURL)
q := parsed.Query()
q.Set(LegacyAuthParam, c.Token)
parsed.RawQuery = q.Encode()
httpReq.URL = parsed
} else {
// New API: token goes in header.
httpReq.Header.Set(AuthHeader, c.Token)
}
if bodyReader != nil {
httpReq.Header.Set("Content-Type", "application/json")
}
httpReq.Header.Set("User-Agent", "dws-cli/raw-api")
resp, err := c.HTTPClient.Do(httpReq)
if err != nil {
return nil, fmt.Errorf("executing HTTP request: %w", err)
}
defer resp.Body.Close()
body, err := io.ReadAll(resp.Body)
if err != nil {
return nil, fmt.Errorf("reading response body: %w", err)
}
return &RawAPIResponse{
StatusCode: resp.StatusCode,
Header: resp.Header,
Body: body,
}, nil
}
// buildURL constructs the full request URL from path and query params.
func (c *APIClient) buildURL(path string, params map[string]any) (string, error) {
normalised := NormalisePath(path, c.BaseURL)
parsed, err := url.Parse(normalised)
if err != nil {
return "", fmt.Errorf("parsing URL %q: %w", normalised, err)
}
if len(params) > 0 {
q := parsed.Query()
for k, v := range params {
q.Set(k, fmt.Sprintf("%v", v))
}
parsed.RawQuery = q.Encode()
}
return parsed.String(), nil
}
// IsLegacyAPI returns true if the URL targets the legacy oapi.dingtalk.com endpoint.
// Legacy APIs use query-parameter authentication instead of header-based auth.
func IsLegacyAPI(urlStr string) bool {
lower := strings.ToLower(urlStr)
return strings.Contains(lower, "oapi.dingtalk.com") ||
strings.HasPrefix(lower, LegacyBaseURL)
}
// NormalisePath normalises an API path:
// - Full URLs are accepted as-is (after stripping query/fragment)
// - Relative paths are prefixed with the base URL
// - Query strings and fragments are stripped (must use --params)
func NormalisePath(path, baseURL string) string {
path = strings.TrimSpace(path)
// Strip query and fragment to force --params usage.
if idx := strings.IndexAny(path, "?#"); idx >= 0 {
path = path[:idx]
}
// Full URL: extract the path portion relative to the base.
if strings.HasPrefix(path, "http://") || strings.HasPrefix(path, "https://") {
return path
}
// Ensure leading slash.
if !strings.HasPrefix(path, "/") {
path = "/" + path
}
if strings.TrimSpace(baseURL) == "" {
baseURL = DefaultBaseURL
}
return strings.TrimRight(baseURL, "/") + path
}
// defaultTransport returns a tuned http.Transport matching the project conventions.
func defaultTransport() *http.Transport {
return &http.Transport{
// Honour HTTP_PROXY / HTTPS_PROXY / NO_PROXY env vars (#236).
Proxy: http.ProxyFromEnvironment,
DialContext: (&net.Dialer{
Timeout: 3 * time.Second,
KeepAlive: 30 * time.Second,
}).DialContext,
TLSClientConfig: &tls.Config{MinVersion: tls.VersionTLS12},
TLSHandshakeTimeout: 10 * time.Second,
ResponseHeaderTimeout: 20 * time.Second,
ExpectContinueTimeout: 1 * time.Second,
MaxIdleConns: 100,
MaxIdleConnsPerHost: 10,
IdleConnTimeout: 90 * time.Second,
ForceAttemptHTTP2: true,
}
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"bytes"
"context"
"encoding/json"
"net/http"
"net/http/httptest"
"net/url"
"strings"
"testing"
)
func TestNewClient_DefaultBaseURL(t *testing.T) {
c := NewClient("tok", "")
if c.BaseURL != DefaultBaseURL {
t.Errorf("expected %q, got %q", DefaultBaseURL, c.BaseURL)
}
}
func TestNewClient_CustomBaseURL(t *testing.T) {
c := NewClient("tok", "https://custom.api.com/")
if c.BaseURL != "https://custom.api.com" {
t.Errorf("expected trailing slash stripped, got %q", c.BaseURL)
}
}
func TestNormalisePath(t *testing.T) {
tests := []struct {
path, base, want string
}{
{"/v1.0/users", "", "https://api.dingtalk.com/v1.0/users"},
{"v1.0/users", "", "https://api.dingtalk.com/v1.0/users"},
{"https://api.dingtalk.com/v1.0/users", "", "https://api.dingtalk.com/v1.0/users"},
{"/v1.0/users?foo=bar#frag", "", "https://api.dingtalk.com/v1.0/users"},
{"/v1.0/users", "https://custom.example.com", "https://custom.example.com/v1.0/users"},
}
for _, tt := range tests {
got := NormalisePath(tt.path, tt.base)
if got != tt.want {
t.Errorf("NormalisePath(%q, %q) = %q, want %q", tt.path, tt.base, got, tt.want)
}
}
}
func TestDo_Success(t *testing.T) {
AllowedHosts["127.0.0.1"] = true
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if r.Header.Get(AuthHeader) != "test-token" {
t.Errorf("expected auth header %q, got %q", "test-token", r.Header.Get(AuthHeader))
}
if r.Method != "GET" {
t.Errorf("expected GET, got %s", r.Method)
}
w.Header().Set("Content-Type", "application/json")
w.WriteHeader(200)
json.NewEncoder(w).Encode(map[string]string{"name": "test"})
}))
defer srv.Close()
c := NewClient("test-token", srv.URL)
resp, err := c.Do(context.Background(), RawAPIRequest{
Method: "GET",
Path: "/v1.0/test",
})
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if resp.StatusCode != 200 {
t.Errorf("expected 200, got %d", resp.StatusCode)
}
}
func TestDo_PostWithBody(t *testing.T) {
AllowedHosts["127.0.0.1"] = true
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if r.Method != "POST" {
t.Errorf("expected POST, got %s", r.Method)
}
if r.Header.Get("Content-Type") != "application/json" {
t.Errorf("expected JSON content type")
}
var body map[string]string
json.NewDecoder(r.Body).Decode(&body)
if body["key"] != "value" {
t.Errorf("expected body key=value, got %v", body)
}
w.WriteHeader(200)
w.Write([]byte(`{"ok":true}`))
}))
defer srv.Close()
c := NewClient("tok", srv.URL)
resp, err := c.Do(context.Background(), RawAPIRequest{
Method: "POST",
Path: "/v1.0/test",
Data: map[string]string{"key": "value"},
})
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if resp.StatusCode != 200 {
t.Errorf("expected 200, got %d", resp.StatusCode)
}
}
func TestDo_InvalidMethod(t *testing.T) {
c := NewClient("tok", "")
_, err := c.Do(context.Background(), RawAPIRequest{
Method: "INVALID",
Path: "/test",
})
if err == nil {
t.Error("expected error for invalid method")
}
}
func TestDo_QueryParams(t *testing.T) {
AllowedHosts["127.0.0.1"] = true
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if r.URL.Query().Get("pageSize") != "10" {
t.Errorf("expected pageSize=10, got %v", r.URL.Query())
}
w.WriteHeader(200)
w.Write([]byte(`{}`))
}))
defer srv.Close()
c := NewClient("tok", srv.URL)
_, err := c.Do(context.Background(), RawAPIRequest{
Method: "GET",
Path: "/v1.0/test",
Params: map[string]any{"pageSize": 10},
})
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
}
func TestIsLegacyAPI(t *testing.T) {
tests := []struct {
url string
want bool
}{
{"https://api.dingtalk.com/v1.0/users", false},
{"https://oapi.dingtalk.com/topapi/v2/user/get", true},
{"https://OAPI.DINGTALK.COM/topapi/v2/user/get", true},
{"https://custom.example.com/api", false},
{"", false},
}
for _, tt := range tests {
got := IsLegacyAPI(tt.url)
if got != tt.want {
t.Errorf("IsLegacyAPI(%q) = %v, want %v", tt.url, got, tt.want)
}
}
}
func TestDo_LegacyAPI_TokenInQueryParam(t *testing.T) {
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
// Legacy API: token should be in query param.
if r.URL.Query().Get(LegacyAuthParam) != "legacy-token" {
t.Errorf("expected access_token=legacy-token in query, got %v", r.URL.Query())
}
// Should NOT have the new-style auth header.
if r.Header.Get(AuthHeader) != "" {
t.Errorf("expected no auth header for legacy API, got %q", r.Header.Get(AuthHeader))
}
w.Header().Set("Content-Type", "application/json")
w.WriteHeader(200)
w.Write([]byte(`{"errcode":0,"errmsg":"ok","result":{"userid":"user1"}}`))
}))
defer srv.Close()
// Use full URL with oapi.dingtalk.com in the path, but redirect to test server.
// Since we can't DNS-resolve oapi.dingtalk.com, we use the test server URL
// and pass the full oapi URL as Path so that NormalisePath preserves it.
// Then we override the resolved URL in the client to point to our test server.
//
// Best approach: directly verify that buildURL + IsLegacyAPI routing works
// by testing buildURL output and calling Do with a custom transport that
// redirects oapi.dingtalk.com to our test server.
c := NewClient("legacy-token", "")
// Replace the transport to redirect oapi.dingtalk.com to test server.
c.HTTPClient.Transport = &legacyTestTransport{targetURL: srv.URL}
resp, err := c.Do(context.Background(), RawAPIRequest{
Method: "POST",
Path: "https://oapi.dingtalk.com/topapi/v2/user/get",
Data: map[string]string{"userid": "user1"},
})
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if resp.StatusCode != 200 {
t.Errorf("expected 200, got %d", resp.StatusCode)
}
}
// legacyTestTransport redirects requests from oapi.dingtalk.com to a local test server.
type legacyTestTransport struct {
targetURL string
}
func (t *legacyTestTransport) RoundTrip(req *http.Request) (*http.Response, error) {
// Rewrite the host to point to our test server, preserving path and query.
newURL := t.targetURL + req.URL.Path
if req.URL.RawQuery != "" {
newURL += "?" + req.URL.RawQuery
}
parsed, _ := url.Parse(newURL)
req.URL = parsed
req.Host = parsed.Host
return http.DefaultTransport.RoundTrip(req)
}
func TestNormalisePath_Legacy(t *testing.T) {
tests := []struct {
path, base, want string
}{
// Legacy full URL preserved.
{"https://oapi.dingtalk.com/topapi/v2/user/get", "", "https://oapi.dingtalk.com/topapi/v2/user/get"},
// Relative path with legacy base URL.
{"/topapi/v2/user/get", LegacyBaseURL, "https://oapi.dingtalk.com/topapi/v2/user/get"},
// Strip query from legacy URL.
{"https://oapi.dingtalk.com/topapi/v2/user/get?access_token=xxx", "", "https://oapi.dingtalk.com/topapi/v2/user/get"},
}
for _, tt := range tests {
got := NormalisePath(tt.path, tt.base)
if got != tt.want {
t.Errorf("NormalisePath(%q, %q) = %q, want %q", tt.path, tt.base, got, tt.want)
}
}
}
func TestResolvePageLimit(t *testing.T) {
t.Parallel()
tests := []struct {
raw, want int
}{
// 0 → unlimited → safety cap
{0, MaxPageLimit},
// normal usage
{3, 3},
// default
{10, 10},
// within cap
{100, 100},
// exactly cap
{MaxPageLimit, MaxPageLimit},
// exceeds cap
{MaxPageLimit + 100, MaxPageLimit},
// negative → default
{-1, DefaultPageLimit},
{-100, DefaultPageLimit},
}
for _, tt := range tests {
got := resolvePageLimit(tt.raw)
if got != tt.want {
t.Errorf("resolvePageLimit(%d) = %d, want %d", tt.raw, got, tt.want)
}
}
}
func TestPaginateAll_ProgressLog(t *testing.T) {
AllowedHosts["127.0.0.1"] = true
callCount := 0
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
callCount++
w.Header().Set("Content-Type", "application/json")
if callCount >= 3 {
json.NewEncoder(w).Encode(map[string]any{
"result": map[string]any{"has_more": false, "items": []any{1, 2}},
})
} else {
json.NewEncoder(w).Encode(map[string]any{
"result": map[string]any{
"has_more": true,
"next_cursor": 100,
"items": []any{callCount},
},
})
}
}))
defer srv.Close()
c := NewClient("test-token", srv.URL)
var logBuf bytes.Buffer
pages, err := c.PaginateAll(context.Background(), RawAPIRequest{
Method: "GET",
Path: "/v1.0/test",
}, PaginationOptions{
PageLimit: 5,
PageDelay: 0,
LogWriter: &logBuf,
})
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if len(pages) != 3 {
t.Errorf("expected 3 pages, got %d", len(pages))
}
log := logBuf.String()
if !strings.Contains(log, "第 1 页") || !strings.Contains(log, "第 2 页") || !strings.Contains(log, "第 3 页") {
t.Errorf("expected progress log for each page, got: %s", log)
}
if !strings.Contains(log, "数据获取完成") {
t.Errorf("expected completion message, got: %s", log)
}
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"encoding/json"
"fmt"
"io"
"strings"
)
// MaskToken returns a masked version of a token for display in dry-run
// and log output. Shows the first 4 characters followed by "****".
func MaskToken(token string) string {
if len(token) <= 4 {
return "****"
}
return token[:4] + "****"
}
// PrintDryRun outputs a dry-run preview of the API request that would be sent.
func PrintDryRun(w io.Writer, req RawAPIRequest, baseURL, token string) error {
fullURL := NormalisePath(req.Path, baseURL)
fmt.Fprintln(w, "=== Dry Run ===")
fmt.Fprintf(w, "%-12s%s\n", "Method:", strings.ToUpper(req.Method))
fmt.Fprintf(w, "%-12s%s\n", "URL:", fullURL)
if len(req.Params) > 0 {
paramsJSON, err := json.MarshalIndent(req.Params, " ", " ")
if err == nil {
fmt.Fprintf(w, "%-12s%s\n", "Params:", string(paramsJSON))
}
}
if req.Data != nil {
dataJSON, err := json.MarshalIndent(req.Data, " ", " ")
if err == nil {
fmt.Fprintf(w, "%-12s%s\n", "Body:", string(dataJSON))
}
}
if IsLegacyAPI(fullURL) {
fmt.Fprintf(w, "%-12s%s=%s\n", "Auth:", LegacyAuthParam, MaskToken(token))
fmt.Fprintf(w, "%-12s%s\n", "Style:", "旧版 (oapi.dingtalk.com)")
} else {
fmt.Fprintf(w, "%-12s%s: %s\n", "Auth:", AuthHeader, MaskToken(token))
fmt.Fprintf(w, "%-12s%s\n", "Style:", "新版 (api.dingtalk.com)")
}
fmt.Fprintln(w, "===============")
return nil
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"context"
"encoding/json"
"fmt"
"io"
"time"
)
const (
// DefaultPageLimit is the maximum number of pages fetched with --page-all
// when --page-limit is not explicitly set.
DefaultPageLimit = 10
// MaxPageLimit is the hard safety cap to prevent infinite loops when an
// API endpoint has a bug that causes has_more to never become false.
// Use --page-limit 0 to hit this cap; any explicit positive value is
// honoured up to this ceiling.
MaxPageLimit = 500
// DefaultPageDelay is the delay between paginated requests in milliseconds.
DefaultPageDelay = 200
)
// PaginationOptions controls automatic pagination behaviour.
type PaginationOptions struct {
PageLimit int // Maximum pages (0 = unlimited, capped at MaxPageLimit)
PageDelay int // Delay between pages in milliseconds
LogWriter io.Writer // Optional: progress log output (typically stderr)
}
// PaginateAll fetches all pages of a paginated API and merges the results.
// DingTalk APIs use two pagination patterns:
// - cursor/next_cursor/has_more (in response body)
// - next_token (in response body)
//
// The function auto-detects which pattern the API uses.
func (c *APIClient) PaginateAll(ctx context.Context, req RawAPIRequest, opts PaginationOptions) ([]any, error) {
limit := resolvePageLimit(opts.PageLimit)
if opts.PageDelay <= 0 {
opts.PageDelay = DefaultPageDelay
}
var allResults []any
pageCount := 0
for {
pageCount++
// Safety cap — only break if a carry is active (pageCount > 1).
if limit > 0 && pageCount > limit {
logf(opts.LogWriter, "[pagination] ⚠ 已达安全上限 %d 页,停止翻页。数据可能不完整,请检查 API 是否异常。\n", limit)
break
}
logf(opts.LogWriter, "[pagination] 第 %d 页 请求中...\n", pageCount)
resp, err := c.Do(ctx, req)
if err != nil {
if pageCount == 1 {
return nil, err
}
// Non-first page error: return what we have so far.
return allResults, fmt.Errorf("分页第 %d 页请求失败 (已获取 %d 页结果): %w", pageCount, pageCount-1, err)
}
result, hasMore, nextToken, parseErr := parsePaginatedResponse(resp)
if parseErr != nil {
if pageCount == 1 {
return nil, parseErr
}
// Non-first page parse failure: warn the caller so users aren't
// silently left with incomplete data.
logf(opts.LogWriter, "[pagination] ⚠ 第 %d 页解析失败,停止翻页并返回已获取的 %d 页数据: %v\n", pageCount, pageCount-1, parseErr)
return allResults, nil
}
allResults = append(allResults, result)
if !hasMore || nextToken == "" {
logf(opts.LogWriter, "[pagination] 数据获取完成 (共 %d 页)\n", pageCount)
break
}
// Inject the next page token into the request.
req = injectPageToken(req, nextToken)
// Delay between pages to prevent API throttling.
select {
case <-ctx.Done():
return allResults, ctx.Err()
case <-time.After(time.Duration(opts.PageDelay) * time.Millisecond):
}
}
return allResults, nil
}
// resolvePageLimit translates the user-facing value into an internal limit:
//
// 0 → MaxPageLimit (user wants unlimited; safety cap applies)
// positive N → min(N, MaxPageLimit) (explicit page limit, still capped)
// negative → DefaultPageLimit (invalid input treated as default)
func resolvePageLimit(raw int) int {
if raw == 0 {
return MaxPageLimit
}
if raw < 0 {
return DefaultPageLimit
}
if raw > MaxPageLimit {
return MaxPageLimit
}
return raw
}
func logf(w io.Writer, format string, args ...any) {
if w == nil {
return
}
fmt.Fprintf(w, format, args...)
}
// parsePaginatedResponse extracts the response payload and pagination info.
// It auto-detects DingTalk's two pagination patterns.
func parsePaginatedResponse(resp *RawAPIResponse) (result any, hasMore bool, nextToken string, err error) {
contentType := resp.Header.Get("Content-Type")
if !isJSONContentType(contentType) {
return nil, false, "", fmt.Errorf("分页响应非 JSON 格式 (Content-Type: %s)", contentType)
}
if len(resp.Body) == 0 {
return nil, false, "", fmt.Errorf("分页响应体为空 (HTTP %d)", resp.StatusCode)
}
var payload map[string]any
if unmarshalErr := jsonUnmarshal(resp.Body, &payload); unmarshalErr != nil {
return nil, false, "", fmt.Errorf("解析分页 JSON 响应失败: %w", unmarshalErr)
}
// Check for DingTalk errors first.
if apiErr := checkDingTalkError(payload, resp.StatusCode); apiErr != nil {
return nil, false, "", apiErr
}
// Pattern 1: cursor/next_cursor/has_more (often nested in "result" or top-level)
if resultObj, ok := payload["result"]; ok {
if resultMap, isMap := resultObj.(map[string]any); isMap {
hasMore, _ = resultMap["has_more"].(bool)
if nc, ok := resultMap["next_cursor"].(float64); ok && nc > 0 {
nextToken = fmt.Sprintf("%.0f", nc)
}
return payload, hasMore, nextToken, nil
}
}
// Top-level has_more / next_cursor
if hm, ok := payload["has_more"]; ok {
hasMore, _ = hm.(bool)
}
if nc, ok := payload["next_cursor"]; ok {
if ncf, isFloat := nc.(float64); isFloat && ncf > 0 {
nextToken = fmt.Sprintf("%.0f", ncf)
}
}
// Pattern 2: next_token
if nt, ok := payload["next_token"]; ok {
if nts, isStr := nt.(string); isStr && nts != "" {
nextToken = nts
hasMore = true
}
}
return payload, hasMore, nextToken, nil
}
// injectPageToken injects the pagination token into the next request.
// For GET requests, it's added as a query param; for POST, it's in the body.
func injectPageToken(req RawAPIRequest, token string) RawAPIRequest {
method := req.Method
if method == "GET" {
if req.Params == nil {
req.Params = make(map[string]any)
}
// Try to detect which param name the API uses
if _, ok := req.Params["cursor"]; ok {
req.Params["cursor"] = token
} else if _, ok := req.Params["next_token"]; ok {
req.Params["next_token"] = token
} else {
// Default to next_token for GET requests
req.Params["next_token"] = token
}
} else {
// For POST/PUT requests, inject into the body
if bodyMap, ok := req.Data.(map[string]any); ok {
if _, hasCursor := bodyMap["cursor"]; hasCursor {
bodyMap["cursor"] = token
} else {
bodyMap["next_token"] = token
}
req.Data = bodyMap
}
}
return req
}
// jsonUnmarshal is a helper for JSON unmarshaling.
func jsonUnmarshal(data []byte, v any) error {
return json.Unmarshal(data, v)
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"encoding/json"
"fmt"
"io"
"strings"
)
// ParseJSONMap parses a --params flag value into a map[string]any.
// Supports:
// - JSON string: '{"key":"value"}'
// - "-" to read from stdin
// - Empty string returns nil (no params)
func ParseJSONMap(raw, flagName string, stdin io.Reader) (map[string]any, error) {
raw = strings.TrimSpace(raw)
if raw == "" {
return nil, nil
}
if raw == "-" {
data, err := io.ReadAll(stdin)
if err != nil {
return nil, fmt.Errorf("从 stdin 读取 %s 失败: %w", flagName, err)
}
raw = strings.TrimSpace(string(data))
if raw == "" {
return nil, nil
}
}
// Strip wrapping single quotes (common shell escaping).
raw = stripSingleQuotes(raw)
var result map[string]any
if err := json.Unmarshal([]byte(raw), &result); err != nil {
return nil, fmt.Errorf("解析 %s JSON 失败: %w\n输入: %s", flagName, err, truncate(raw, 200))
}
return result, nil
}
// ParseOptionalBody parses a --data flag value into a request body.
// Returns nil for empty input. GET requests are not allowed to have a body.
func ParseOptionalBody(method, raw string, stdin io.Reader) (any, error) {
raw = strings.TrimSpace(raw)
if raw == "" {
return nil, nil
}
if strings.ToUpper(method) == "GET" && raw != "" {
return nil, fmt.Errorf("GET 请求不允许使用 --data 参数")
}
if raw == "-" {
data, err := io.ReadAll(stdin)
if err != nil {
return nil, fmt.Errorf("从 stdin 读取 --data 失败: %w", err)
}
raw = strings.TrimSpace(string(data))
if raw == "" {
return nil, nil
}
}
// Strip wrapping single quotes.
raw = stripSingleQuotes(raw)
var result any
if err := json.Unmarshal([]byte(raw), &result); err != nil {
return nil, fmt.Errorf("解析 --data JSON 失败: %w\n输入: %s", err, truncate(raw, 200))
}
return result, nil
}
// stripSingleQuotes removes a leading and trailing single quote pair.
func stripSingleQuotes(s string) string {
if len(s) >= 2 && s[0] == '\'' && s[len(s)-1] == '\'' {
return s[1 : len(s)-1]
}
return s
}
// truncate returns at most n characters of s, appending "..." if truncated.
func truncate(s string, n int) string {
if len(s) <= n {
return s
}
return s[:n] + "..."
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"strings"
"testing"
)
func TestParseJSONMap_Empty(t *testing.T) {
result, err := ParseJSONMap("", "--params", nil)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if result != nil {
t.Errorf("expected nil, got %v", result)
}
}
func TestParseJSONMap_ValidJSON(t *testing.T) {
result, err := ParseJSONMap(`{"key":"value","num":42}`, "--params", nil)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if result["key"] != "value" {
t.Errorf("expected key=value, got %v", result["key"])
}
}
func TestParseJSONMap_SingleQuotes(t *testing.T) {
result, err := ParseJSONMap(`'{"key":"value"}'`, "--params", nil)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if result["key"] != "value" {
t.Errorf("expected key=value, got %v", result["key"])
}
}
func TestParseJSONMap_Stdin(t *testing.T) {
stdin := strings.NewReader(`{"from":"stdin"}`)
result, err := ParseJSONMap("-", "--params", stdin)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if result["from"] != "stdin" {
t.Errorf("expected from=stdin, got %v", result["from"])
}
}
func TestParseJSONMap_InvalidJSON(t *testing.T) {
_, err := ParseJSONMap("not json", "--params", nil)
if err == nil {
t.Error("expected error for invalid JSON")
}
}
func TestParseOptionalBody_Empty(t *testing.T) {
result, err := ParseOptionalBody("POST", "", nil)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if result != nil {
t.Errorf("expected nil, got %v", result)
}
}
func TestParseOptionalBody_GETNotAllowed(t *testing.T) {
_, err := ParseOptionalBody("GET", `{"data":true}`, nil)
if err == nil {
t.Error("expected error for GET with body")
}
}
func TestParseOptionalBody_ValidPOST(t *testing.T) {
result, err := ParseOptionalBody("POST", `{"key":"value"}`, nil)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
m, ok := result.(map[string]any)
if !ok {
t.Fatalf("expected map, got %T", result)
}
if m["key"] != "value" {
t.Errorf("expected key=value, got %v", m["key"])
}
}
func TestStripSingleQuotes(t *testing.T) {
tests := []struct{ in, want string }{
{`'hello'`, `hello`},
{`"hello"`, `"hello"`},
{`hello`, `hello`},
{`''`, ``},
{`'`, `'`},
}
for _, tt := range tests {
got := stripSingleQuotes(tt.in)
if got != tt.want {
t.Errorf("stripSingleQuotes(%q) = %q, want %q", tt.in, got, tt.want)
}
}
}
func TestTruncate(t *testing.T) {
if got := truncate("hello", 10); got != "hello" {
t.Errorf("expected hello, got %q", got)
}
if got := truncate("hello world", 5); got != "hello..." {
t.Errorf("expected hello..., got %q", got)
}
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"net/http"
"reflect"
"testing"
)
// TestDefaultTransportHonoursHTTPProxyEnv is the regression guard for #236
// on the apiclient transport. Same rationale as transport/proxy_env_test.go:
// a custom Transport without an explicit Proxy field silently bypasses
// HTTP_PROXY/HTTPS_PROXY.
//
// We pointer-compare against http.ProxyFromEnvironment instead of invoking
// it, because http.ProxyFromEnvironment memoises the env on first call;
// other tests that read proxy env early would make a value-based assertion
// flaky.
func TestDefaultTransportHonoursHTTPProxyEnv(t *testing.T) {
t.Parallel()
tr := defaultTransport()
if tr.Proxy == nil {
t.Fatal("defaultTransport().Proxy is nil — HTTP_PROXY env will be ignored (regression of #236)")
}
wantPC := reflect.ValueOf(http.ProxyFromEnvironment).Pointer()
gotPC := reflect.ValueOf(tr.Proxy).Pointer()
if gotPC != wantPC {
t.Errorf("defaultTransport().Proxy is not http.ProxyFromEnvironment — env-var proxy may not be honoured (regression of #236)")
}
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"encoding/json"
"fmt"
"io"
"mime"
"net/http"
"os"
"path/filepath"
"strings"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/output"
)
// ResponseOptions controls how an API response is processed.
type ResponseOptions struct {
OutputPath string // --output file path for binary responses
Format output.Format // output format (json|table|raw)
JqExpr string // --jq expression
Fields string // --fields comma-separated field names
Out io.Writer // stdout
ErrOut io.Writer // stderr
}
// HandleResponse routes response processing based on Content-Type and status code.
func HandleResponse(resp *RawAPIResponse, opts ResponseOptions) error {
contentType := resp.Header.Get("Content-Type")
isJSON := isJSONContentType(contentType)
// HTTP error with non-JSON body: print as plain text error.
if resp.StatusCode >= 400 && !isJSON {
return fmt.Errorf("API 请求失败 (HTTP %d): %s", resp.StatusCode, strings.TrimSpace(string(resp.Body)))
}
// JSON response
if isJSON {
return handleJSONResponse(resp, opts)
}
// Binary response
return handleBinaryResponse(resp, opts)
}
// handleJSONResponse parses the JSON body, checks for DingTalk business errors,
// and writes the output using the configured format and filters.
func handleJSONResponse(resp *RawAPIResponse, opts ResponseOptions) error {
if len(resp.Body) == 0 {
return fmt.Errorf("API 返回空响应体 (HTTP %d),如需下载文件请使用 --output 参数", resp.StatusCode)
}
var payload any
if err := json.Unmarshal(resp.Body, &payload); err != nil {
return fmt.Errorf("解析 JSON 响应失败: %w", err)
}
// Check for DingTalk business error: {"errcode": xxx, "errmsg": "xxx"}
if apiErr := checkDingTalkError(payload, resp.StatusCode); apiErr != nil {
return apiErr
}
return output.WriteFiltered(opts.Out, opts.Format, payload, opts.Fields, opts.JqExpr)
}
// checkDingTalkError inspects a parsed JSON response for DingTalk error codes.
// Returns nil if no error is detected.
func checkDingTalkError(payload any, statusCode int) error {
obj, ok := payload.(map[string]any)
if !ok {
return nil
}
// Check for errcode != 0
if errcode, hasCode := obj["errcode"]; hasCode {
code := toFloat64(errcode)
if code != 0 {
errmsg, _ := obj["errmsg"].(string)
if errmsg == "" {
errmsg = "unknown error"
}
return fmt.Errorf("API 业务错误 (errcode: %.0f, HTTP %d): %s", code, statusCode, errmsg)
}
}
// Also check HTTP error status even if no errcode field
if statusCode >= 400 {
errmsg, _ := obj["errmsg"].(string)
if errmsg == "" {
errmsg, _ = obj["message"].(string)
}
if errmsg == "" {
errmsg, _ = obj["error"].(string)
}
if errmsg != "" {
return fmt.Errorf("API 请求失败 (HTTP %d): %s", statusCode, errmsg)
}
return fmt.Errorf("API 请求失败 (HTTP %d)", statusCode)
}
return nil
}
// handleBinaryResponse saves the response body to a file.
func handleBinaryResponse(resp *RawAPIResponse, opts ResponseOptions) error {
outputPath := strings.TrimSpace(opts.OutputPath)
if outputPath == "" {
// Try to infer filename from Content-Disposition header.
outputPath = inferFilename(resp.Header)
if outputPath == "" {
return fmt.Errorf("响应为非 JSON 格式 (Content-Type: %s),请使用 --output 指定保存路径",
resp.Header.Get("Content-Type"))
}
}
dir := filepath.Dir(outputPath)
if dir != "." && dir != "" {
if err := os.MkdirAll(dir, 0o755); err != nil {
return fmt.Errorf("创建输出目录失败: %w", err)
}
}
if err := os.WriteFile(outputPath, resp.Body, 0o644); err != nil {
return fmt.Errorf("写入文件失败: %w", err)
}
fmt.Fprintf(opts.ErrOut, "已保存到: %s (%d 字节)\n", outputPath, len(resp.Body))
return nil
}
// inferFilename tries to extract a filename from the Content-Disposition header.
func inferFilename(header http.Header) string {
cd := header.Get("Content-Disposition")
if cd == "" {
return ""
}
_, params, err := mime.ParseMediaType(cd)
if err != nil {
return ""
}
return strings.TrimSpace(params["filename"])
}
// isJSONContentType returns true if the Content-Type indicates JSON.
func isJSONContentType(ct string) bool {
ct = strings.TrimSpace(strings.ToLower(ct))
return strings.HasPrefix(ct, "application/json") ||
strings.HasPrefix(ct, "text/json") ||
strings.Contains(ct, "+json")
}
// toFloat64 attempts to convert a JSON number to float64.
func toFloat64(v any) float64 {
switch n := v.(type) {
case float64:
return n
case int:
return float64(n)
case int64:
return float64(n)
case json.Number:
f, _ := n.Float64()
return f
}
return 0
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"fmt"
"net/url"
"strings"
)
// AllowedHosts is the set of trusted DingTalk API hosts.
// Only these hosts may receive access tokens to prevent token leakage.
var AllowedHosts = map[string]bool{
"api.dingtalk.com": true,
"oapi.dingtalk.com": true,
}
// ValidateTargetHost checks that the resolved request URL targets a trusted
// DingTalk host. This prevents access-token leakage to arbitrary domains.
func ValidateTargetHost(fullURL string) error {
parsed, err := url.Parse(fullURL)
if err != nil {
return fmt.Errorf("无法解析请求 URL: %w", err)
}
host := strings.ToLower(parsed.Hostname())
if !AllowedHosts[host] {
return fmt.Errorf(
"安全限制: 目标域名 %q 不在允许列表中。\n"+
"dws api 仅允许向以下域名发起请求:\n"+
" - api.dingtalk.com (新版 API)\n"+
" - oapi.dingtalk.com (旧版 API)\n"+
"请检查 URL 或 --base-url 参数是否正确。",
host,
)
}
return nil
}
// ValidateMethod checks that the HTTP method is one of the five allowed methods.
func ValidateMethod(method string) (string, error) {
upper := strings.ToUpper(strings.TrimSpace(method))
if !AllowedMethods[upper] {
return "", fmt.Errorf("不支持的 HTTP 方法: %s (允许: GET, POST, PUT, PATCH, DELETE)", method)
}
return upper, nil
}
// ValidatePath checks the API path for injection attacks and dangerous characters.
func ValidatePath(path string) error {
if strings.TrimSpace(path) == "" {
return fmt.Errorf("API 路径不能为空")
}
if err := rejectDangerousChars(path, "path"); err != nil {
return err
}
// Reject path traversal
if strings.Contains(path, "..") {
return fmt.Errorf("API 路径不能包含 '..' (路径遍历)")
}
return nil
}
// ValidateUserInput checks a user-provided string for control characters and
// dangerous Unicode codepoints that could enable injection attacks.
func ValidateUserInput(value, fieldName string) error {
return rejectDangerousChars(value, fieldName)
}
// rejectDangerousChars rejects C0 control characters (except \t and \n),
// DEL (0x7F), and dangerous Unicode codepoints in a string.
func rejectDangerousChars(s, fieldName string) error {
for i, r := range s {
// Allow tab and newline
if r == '\t' || r == '\n' {
continue
}
// Reject C0 control chars (0x00-0x1F) and DEL (0x7F)
if r < 0x20 || r == 0x7F {
return fmt.Errorf("%s 包含非法控制字符 (位置 %d, U+%04X)", fieldName, i, r)
}
// Reject dangerous Unicode
if isDangerousUnicode(r) {
return fmt.Errorf("%s 包含危险 Unicode 字符 (位置 %d, U+%04X)", fieldName, i, r)
}
}
return nil
}
// isDangerousUnicode returns true for Unicode codepoints that can be used
// for visual spoofing or terminal injection attacks.
func isDangerousUnicode(r rune) bool {
switch {
// Zero-width characters
case r >= 0x200B && r <= 0x200D:
return true
// BOM
case r == 0xFEFF:
return true
// Bidi override characters
case r >= 0x202A && r <= 0x202E:
return true
// Line/paragraph separator
case r == 0x2028 || r == 0x2029:
return true
// Bidi isolate characters
case r >= 0x2066 && r <= 0x2069:
return true
// Additional Bidi controls
case r == 0x061C:
return true
// Non-characters
case r >= 0xFDD0 && r <= 0xFDEF:
return true
}
// Object replacement (U+FFFC) / replacement (U+FFFD) characters and
// other non-printable non-ASCII runes (e.g. CJK, symbols) are allowed
// through — only the explicit dangerous ranges above are blocked.
return false
}
// ValidateStdinExclusion checks that --params and --data don't both read from stdin.
func ValidateStdinExclusion(params, data string) error {
if strings.TrimSpace(params) == "-" && strings.TrimSpace(data) == "-" {
return fmt.Errorf("--params 和 --data 不能同时从 stdin 读取 (-)")
}
return nil
}
// ValidateFlagExclusion checks mutual exclusion between flags.
func ValidateFlagExclusion(outputPath string, pageAll bool) error {
if strings.TrimSpace(outputPath) != "" && pageAll {
return fmt.Errorf("--output 和 --page-all 不能同时使用")
}
return nil
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package apiclient
import (
"strings"
"testing"
)
func TestValidateMethod(t *testing.T) {
valid := []string{"GET", "get", "Post", "put", "PATCH", "delete"}
for _, m := range valid {
got, err := ValidateMethod(m)
if err != nil {
t.Errorf("ValidateMethod(%q) unexpected error: %v", m, err)
}
if got != strings.ToUpper(m) {
t.Errorf("ValidateMethod(%q) = %q, want %q", m, got, strings.ToUpper(m))
}
}
invalid := []string{"HEAD", "OPTIONS", "TRACE", "CONNECT", "INVALID", ""}
for _, m := range invalid {
_, err := ValidateMethod(m)
if err == nil {
t.Errorf("ValidateMethod(%q) expected error, got nil", m)
}
}
}
func TestValidatePath(t *testing.T) {
// Valid paths
for _, p := range []string{"/v1.0/users", "/v2.0/calendar/events", "v1.0/contact/users/me"} {
if err := ValidatePath(p); err != nil {
t.Errorf("ValidatePath(%q) unexpected error: %v", p, err)
}
}
// Empty path
if err := ValidatePath(""); err == nil {
t.Error("ValidatePath(\"\") expected error")
}
// Path traversal
if err := ValidatePath("/v1.0/../secret"); err == nil {
t.Error("ValidatePath with .. expected error")
}
// Control character
if err := ValidatePath("/v1.0/\x00test"); err == nil {
t.Error("ValidatePath with null byte expected error")
}
}
func TestRejectDangerousUnicode(t *testing.T) {
// Zero-width space
if err := ValidateUserInput("hello\u200Bworld", "test"); err == nil {
t.Error("expected error for zero-width space")
}
// BOM
if err := ValidateUserInput("\uFEFFhello", "test"); err == nil {
t.Error("expected error for BOM")
}
// Bidi override
if err := ValidateUserInput("hello\u202Aworld", "test"); err == nil {
t.Error("expected error for bidi override")
}
// Normal string should pass
if err := ValidateUserInput("hello world 你好", "test"); err != nil {
t.Errorf("unexpected error for normal string: %v", err)
}
}
func TestValidateStdinExclusion(t *testing.T) {
if err := ValidateStdinExclusion("-", "-"); err == nil {
t.Error("expected error when both params and data read from stdin")
}
if err := ValidateStdinExclusion("-", "{}"); err != nil {
t.Errorf("unexpected error: %v", err)
}
if err := ValidateStdinExclusion("{}", "-"); err != nil {
t.Errorf("unexpected error: %v", err)
}
}
func TestValidateFlagExclusion(t *testing.T) {
if err := ValidateFlagExclusion("output.json", true); err == nil {
t.Error("expected error when --output and --page-all both set")
}
if err := ValidateFlagExclusion("output.json", false); err != nil {
t.Errorf("unexpected error: %v", err)
}
if err := ValidateFlagExclusion("", true); err != nil {
t.Errorf("unexpected error: %v", err)
}
}
func TestMaskToken(t *testing.T) {
tests := []struct {
in, want string
}{
{"", "****"},
{"abc", "****"},
{"abcd", "****"},
{"abcde", "abcd****"},
{"abcdefghij", "abcd****"},
}
for _, tt := range tests {
got := MaskToken(tt.in)
if got != tt.want {
t.Errorf("MaskToken(%q) = %q, want %q", tt.in, got, tt.want)
}
}
}
func TestValidateTargetHost(t *testing.T) {
// Allowed hosts
allowed := []string{
"https://api.dingtalk.com/v1.0/contact/users/me",
"https://oapi.dingtalk.com/topapi/v2/user/get",
"https://API.DINGTALK.COM/v1.0/test",
"https://OAPI.DINGTALK.COM/topapi/test",
}
for _, u := range allowed {
if err := ValidateTargetHost(u); err != nil {
t.Errorf("ValidateTargetHost(%q) unexpected error: %v", u, err)
}
}
// Blocked hosts
blocked := []string{
"https://oapi.dingtalk.fakedomain.com/topapi/v2/user/get",
"https://fake.com/v1.0/test",
"https://api.dingtalk.com.evil.com/v1.0/test",
"https://evil.com/redirect?url=https://api.dingtalk.com",
"http://localhost:8080/v1.0/test",
"https://dingtalk.com/v1.0/test",
}
for _, u := range blocked {
if err := ValidateTargetHost(u); err == nil {
t.Errorf("ValidateTargetHost(%q) expected error, got nil", u)
}
}
}
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// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"context"
"encoding/json"
"fmt"
"os"
"strings"
"time"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/apiclient"
authpkg "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/auth"
apperrors "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/errors"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/output"
"github.com/spf13/cobra"
)
// apiFlags holds the flags specific to the `dws api` command.
type apiFlags struct {
params string
data string
pageAll bool
pageLimit int
pageDelay int
baseURL string
}
// newAPICommand creates the `dws api` subcommand for raw DingTalk OpenAPI calls.
func newAPICommand(flags *GlobalFlags) *cobra.Command {
af := &apiFlags{}
cmd := &cobra.Command{
Use: "api <METHOD> <PATH> [flags]",
Short: "调用钉钉 OpenAPI (Raw HTTP)",
Long: `直接调用钉钉 OpenAPI,支持 api.dingtalk.com 和 oapi.dingtalk.com 两个域名。
api.dingtalk.com:
Token 通过 HTTP Header (x-acs-dingtalk-access-token) 传递。
路径格式: /v1.0/xxx 或 /v2.0/xxx
oapi.dingtalk.com:
Token 通过 URL 查询参数 (access_token) 传递。
路径格式: /topapi/v2/xxx 或完整 URL https://oapi.dingtalk.com/topapi/...
仅限使用自有应用凭证(--client-id/--client-secret)登录后使用。
通过 MCP 默认凭证登录获取的加密 token 不支持 raw API 调用。
示例:
# === api.dingtalk.com ===
# 获取当前用户信息
dws api GET /v1.0/contact/users/me
# 搜索用户 (POST + JSON body)
dws api POST /v1.0/contact/users/search \
--data '{"queryWord":"张三","offset":0,"size":10}'
# 创建日历事件
dws api POST /v1.0/calendar/users/me/calendars/primary/events \
--data '{"summary":"Team Meeting","start":{"dateTime":"2026-01-01T10:00:00+08:00"}}'
# === oapi.dingtalk.com ===
# 获取用户详情 (使用 --base-url)
dws api POST /topapi/v2/user/get \
--base-url https://oapi.dingtalk.com \
--data '{"userid":"manager123"}'
# 也可以直接使用完整 URL
dws api POST https://oapi.dingtalk.com/topapi/v2/user/get \
--data '{"userid":"manager123"}'
# === 通用功能 ===
# 分页获取所有结果
dws api GET /v1.0/attendance/groups --page-all --page-limit 5
# Dry-run 预览请求
dws api GET /v1.0/contact/users/me --dry-run
# 使用 jq 过滤输出
dws api GET /v1.0/contact/users/me --jq '.nick'`,
Args: cobra.ExactArgs(2),
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
return runAPI(cmd, args, flags, af)
},
}
cmd.Flags().StringVar(&af.params, "params", "", "查询参数 JSON (支持 - 从 stdin 读取)")
cmd.Flags().StringVar(&af.data, "data", "", "请求体 JSON (支持 - 从 stdin 读取)")
cmd.Flags().BoolVar(&af.pageAll, "page-all", false, "自动遍历所有分页")
cmd.Flags().IntVar(&af.pageLimit, "page-limit", apiclient.DefaultPageLimit, "最大翻页数 (0=不限, 默认10, 硬上限500)")
cmd.Flags().IntVar(&af.pageDelay, "page-delay", apiclient.DefaultPageDelay, "分页间隔毫秒")
cmd.Flags().StringVar(&af.baseURL, "base-url", "", "覆盖 API 基础 URL (默认 https://api.dingtalk.com)")
return cmd
}
// runAPI is the main execution logic for `dws api`.
func runAPI(cmd *cobra.Command, args []string, gf *GlobalFlags, af *apiFlags) error {
ctx := cmd.Context()
method := args[0]
path := args[1]
// 0. Reject path with inline query string — must use --params instead.
if idx := strings.IndexByte(path, '?'); idx >= 0 {
cleanPath := path[:idx]
// Parse query string to generate the exact --params JSON for the user.
paramsJSON := parseQueryStringToJSON(path[idx+1:])
return apperrors.NewValidation(
"API 路径中不允许直接拼接查询参数(?key=value),该写法会导致参数在解析时被静默丢弃。\n\n"+
"命令格式可参考:\n\n"+
" dws api "+method+" "+cleanPath+" --params '"+paramsJSON+"'",
apperrors.WithHint("查询参数必须通过 --params 传递,形如 --params '{\"key\":\"value\"}'"),
)
}
// 1. Validate HTTP method.
method, err := apiclient.ValidateMethod(method)
if err != nil {
return apperrors.NewValidation(err.Error())
}
// 2. Validate API path.
if err := apiclient.ValidatePath(path); err != nil {
return apperrors.NewValidation(err.Error())
}
// 3. Validate input safety for params and data.
if err := apiclient.ValidateUserInput(af.params, "--params"); err != nil {
return apperrors.NewValidation(err.Error())
}
if err := apiclient.ValidateUserInput(af.data, "--data"); err != nil {
return apperrors.NewValidation(err.Error())
}
// 4. Validate mutual exclusion.
if err := apiclient.ValidateStdinExclusion(af.params, af.data); err != nil {
return apperrors.NewValidation(err.Error())
}
if err := apiclient.ValidateFlagExclusion(gf.Output, af.pageAll); err != nil {
return apperrors.NewValidation(err.Error())
}
// 5. Parse --params.
params, err := apiclient.ParseJSONMap(af.params, "--params", os.Stdin)
if err != nil {
return apperrors.NewValidation(err.Error())
}
// 6. Parse --data.
body, err := apiclient.ParseOptionalBody(method, af.data, os.Stdin)
if err != nil {
return apperrors.NewValidation(err.Error())
}
// 7. Normalise and validate target URL.
fullURL := apiclient.NormalisePath(path, af.baseURL)
// 7b. Security: validate target host is a trusted DingTalk domain.
if err := apiclient.ValidateTargetHost(fullURL); err != nil {
return apperrors.NewValidation(err.Error())
}
// 8. Resolve app-level token (with timeout).
tokenCtx, tokenCancel := context.WithTimeout(ctx, 15*time.Second)
defer tokenCancel()
token, err := resolveRawAPIToken(tokenCtx, gf.Token)
if err != nil {
return err
}
// 9. Build request.
req := apiclient.RawAPIRequest{
Method: method,
Path: path,
Params: params,
Data: body,
}
baseURL := af.baseURL
// 10. Dry-run mode.
if gf.DryRun {
return apiclient.PrintDryRun(cmd.OutOrStdout(), req, baseURL, token)
}
// 11. Create client with timeout.
client := apiclient.NewClient(token, baseURL)
if gf.Timeout > 0 {
client.HTTPClient.Timeout = time.Duration(gf.Timeout) * time.Second
}
// 12. Execute request (with or without pagination).
format := output.Format(gf.Format)
respOpts := apiclient.ResponseOptions{
OutputPath: gf.Output,
Format: format,
JqExpr: gf.JQ,
Fields: gf.Fields,
Out: cmd.OutOrStdout(),
ErrOut: cmd.ErrOrStderr(),
}
if af.pageAll {
return runPaginated(ctx, client, req, af, respOpts)
}
resp, err := client.Do(ctx, req)
if err != nil {
return apperrors.NewAPI(fmt.Sprintf("API 请求失败: %v", err))
}
return apiclient.HandleResponse(resp, respOpts)
}
// runPaginated executes a paginated API request and outputs all results.
func runPaginated(ctx context.Context, client *apiclient.APIClient, req apiclient.RawAPIRequest, af *apiFlags, opts apiclient.ResponseOptions) error {
pages, err := client.PaginateAll(ctx, req, apiclient.PaginationOptions{
PageLimit: af.pageLimit,
PageDelay: af.pageDelay,
LogWriter: opts.ErrOut,
})
if err != nil && len(pages) == 0 {
return apperrors.NewAPI(fmt.Sprintf("分页请求失败: %v", err))
}
// Output all pages as a JSON array.
return output.WriteFiltered(opts.Out, opts.Format, pages, opts.Fields, opts.JqExpr)
}
// parseQueryStringToJSON parses a raw URL query string into a JSON object string.
// Uses simple & and = splitting (no URL decoding) to preserve values as-is.
func parseQueryStringToJSON(rawQuery string) string {
rawQuery = strings.TrimSpace(rawQuery)
if rawQuery == "" {
return "{}"
}
paramsMap := make(map[string]any)
for _, pair := range strings.Split(rawQuery, "&") {
kv := strings.SplitN(pair, "=", 2)
key := strings.TrimSpace(kv[0])
if key == "" {
continue
}
var val string
if len(kv) == 2 {
val = strings.TrimSpace(kv[1])
}
if val == "" {
continue // skip empty values like nextToken=
}
paramsMap[key] = val
}
if len(paramsMap) == 0 {
return "{}"
}
data, err := json.Marshal(paramsMap)
if err != nil {
return "{}"
}
return string(data)
}
// resolveRawAPIToken resolves an app-level access token for raw API calls.
// It uses AppTokenProvider to fetch from the unified POST /v1.0/oauth2/accessToken
// endpoint. The same token works for both api.dingtalk.com and oapi.dingtalk.com.
// Tokens are cached in keychain and auto-refreshed when expired.
func resolveRawAPIToken(ctx context.Context, explicitToken string) (string, error) {
// Explicit --token flag takes priority (user knows what they're doing).
if t := strings.TrimSpace(explicitToken); t != "" {
return t, nil
}
// Resolve app credentials (clientID/clientSecret).
appKey := authpkg.ClientID()
appSecret := authpkg.ClientSecret()
if appKey == "" || appSecret == "" || strings.HasPrefix(appKey, "<") || strings.HasPrefix(appSecret, "<") {
return "", apperrors.NewAuth(
"缺少应用凭证。dws api 需要使用自有应用的 AppKey/AppSecret 获取 accessToken。\n\n" +
"解决方法:\n" +
" 1. 使用自有应用凭证登录:\n" +
" dws auth login --client-id <APP_KEY> --client-secret <APP_SECRET>\n\n" +
" 2. 或通过环境变量设置:\n" +
" export DWS_CLIENT_ID=<APP_KEY>\n" +
" export DWS_CLIENT_SECRET=<APP_SECRET>\n" +
" dws auth login\n\n" +
"说明: 通过 MCP 默认凭证登录的加密 token 无法用于 raw API 调用。",
)
}
// Use AppTokenProvider for automatic caching and refresh.
configDir := defaultConfigDir()
provider := &authpkg.AppTokenProvider{
ConfigDir: configDir,
AppKey: appKey,
AppSecret: appSecret,
}
token, err := provider.GetToken(ctx)
if err != nil {
return "", apperrors.NewAuth(fmt.Sprintf("获取应用级访问令牌失败: %v", err))
}
if strings.TrimSpace(token) == "" {
return "", apperrors.NewAuth("应用级访问令牌为空,请检查应用凭证是否正确")
}
return strings.TrimSpace(token), nil
}
+110
View File
@@ -0,0 +1,110 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"bytes"
"strings"
"testing"
)
func TestParseQueryStringToJSON(t *testing.T) {
t.Parallel()
tests := []struct {
name, raw, want string
}{
{
name: "simple key-value",
raw: "timeMin=2026-04-01&maxResults=10",
want: `{"maxResults":"10","timeMin":"2026-04-01"}`,
},
{
name: "with special chars",
raw: "timeMin=2026-04-01T14:00:00+08:00&showDeleted=false",
want: `{"showDeleted":"false","timeMin":"2026-04-01T14:00:00+08:00"}`,
},
{
name: "empty value skipped",
raw: "nextToken=&syncToken=abc",
want: `{"syncToken":"abc"}`,
},
{
name: "all empty",
raw: "nextToken=&syncToken=",
want: "{}",
},
{
name: "empty string",
raw: "",
want: "{}",
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
got := parseQueryStringToJSON(tt.raw)
if got != tt.want {
t.Errorf("parseQueryStringToJSON(%q) = %s, want %s", tt.raw, got, tt.want)
}
})
}
}
func TestRunAPI_QueryStringBlocked(t *testing.T) {
t.Parallel()
gf := &GlobalFlags{}
cmd := newAPICommand(gf)
var stdout, stderr bytes.Buffer
cmd.SetOut(&stdout)
cmd.SetErr(&stderr)
cmd.SetArgs([]string{"GET", "/v1.0/calendar/users/me/events?timeMin=2026-04-01&maxResults=10"})
err := cmd.Execute()
if err == nil {
t.Fatal("expected error when path contains query string, got nil")
}
errMsg := stderr.String()
if !strings.Contains(errMsg, "--params") {
t.Errorf("expected --params hint in error, got: %s", errMsg)
}
if !strings.Contains(errMsg, "maxResults") {
t.Errorf("expected parsed query params in error, got: %s", errMsg)
}
if !strings.Contains(errMsg, "/v1.0/calendar/users/me/events") {
t.Errorf("expected clean path in suggestion, got: %s", errMsg)
}
}
func TestRunAPI_NoErrorWithoutQueryString(t *testing.T) {
t.Parallel()
gf := &GlobalFlags{}
cmd := newAPICommand(gf)
var stderr bytes.Buffer
cmd.SetErr(&stderr)
cmd.SetOut(&bytes.Buffer{})
cmd.SetArgs([]string{"GET", "/v1.0/contact/users/me"})
err := cmd.Execute()
errMsg := stderr.String()
if strings.Contains(errMsg, "查询参数") {
t.Errorf("should not reject path without query string, got: %s", errMsg)
}
_ = err
}
+6 -1
View File
@@ -198,9 +198,14 @@ func newAuthLogoutCommand() *cobra.Command {
if err := authpkg.DeleteTokenData(configDir); err != nil {
return apperrors.NewInternal(fmt.Sprintf("failed to clear token data: %v", err))
}
// Clean up associated client secret from keychain
// Clean up associated client secret and app token from keychain
if storedClientID != "" {
_ = authpkg.DeleteClientSecret(storedClientID)
_ = authpkg.DeleteAppTokenData(storedClientID)
}
// Also try cleaning app token using appKey from app config
if appKey, _ := authpkg.ResolveAppCredentials(configDir); appKey != "" && appKey != storedClientID {
_ = authpkg.DeleteAppTokenData(appKey)
}
// Clean up app credentials (app.json + keychain secret)
_ = authpkg.DeleteAppConfig(configDir)
+3 -1
View File
@@ -26,7 +26,9 @@ import (
)
func TestAuthStatusRefreshFailureLeavesStoredTokenIntact(t *testing.T) {
// Cleanup keychain after test
// Isolate keychain storage to a per-test directory so the saved
// token can't leak into other test packages running in parallel.
t.Setenv(keychain.StorageDirEnv, t.TempDir())
t.Cleanup(func() {
_ = keychain.Remove(keychain.Service, keychain.AccountToken)
})
+36
View File
@@ -0,0 +1,36 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"context"
)
// authRetryingKey marks a context that has already attempted one
// AuthRefreshRequired-driven retry of the current invocation. The runner uses
// this to refuse a second refresh+retry pass and surface the original cause
// to the user instead.
type authRetryingKeyType struct{}
var authRetryingKey = authRetryingKeyType{}
// IsAuthRetrying reports whether the current context is already inside an
// AuthRefreshRequired retry. Mirrors IsPatRetrying.
func IsAuthRetrying(ctx context.Context) bool {
if ctx == nil {
return false
}
v, _ := ctx.Value(authRetryingKey).(bool)
return v
}
+141 -15
View File
@@ -14,10 +14,13 @@
package app
import (
"net"
"net/url"
"os"
"strings"
"sync"
authpkg "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/auth"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cli"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
@@ -38,6 +41,57 @@ var legacyDirectRuntimeAliases = map[string]string{
"dingtalk-ai-sincere-hire": "ai-sincere-hire",
}
const (
defaultPATProductID = "pat"
defaultPATDisplayName = "行为授权"
defaultPATServerID = "abc3c880fb90f04b52d1426aaf093766e5fc9ec38411688cbb74df42a584d374"
)
func defaultPATServerDescriptor() market.ServerDescriptor {
return market.ServerDescriptor{
Key: defaultPATProductID,
DisplayName: defaultPATDisplayName,
Endpoint: defaultPATMCPEndpoint(),
CLI: market.CLIOverlay{
ID: defaultPATProductID,
Command: defaultPATProductID,
Prefixes: []string{defaultPATProductID},
},
}
}
func defaultPATMCPEndpoint() string {
return defaultPATGatewayBaseURL() + "/server/" + defaultPATServerID
}
func defaultPATGatewayBaseURL() string {
raw := strings.TrimSpace(authpkg.GetMCPBaseURL())
parsed, err := url.Parse(raw)
if err != nil || parsed.Scheme == "" || parsed.Host == "" {
return strings.TrimRight(raw, "/")
}
host := parsed.Hostname()
switch {
case host == "mcp.dingtalk.com":
host = "mcp-gw.dingtalk.com"
case strings.HasPrefix(host, "pre-mcp."):
host = strings.Replace(host, "pre-mcp.", "pre-mcp-gw.", 1)
case strings.HasPrefix(host, "mcp."):
host = strings.Replace(host, "mcp.", "mcp-gw.", 1)
}
if port := parsed.Port(); port != "" {
parsed.Host = net.JoinHostPort(host, port)
} else {
parsed.Host = host
}
parsed.Path = strings.TrimRight(parsed.Path, "/")
parsed.RawQuery = ""
parsed.Fragment = ""
return strings.TrimRight(parsed.String(), "/")
}
// SetDynamicServers injects server data discovered from servers.json.
// All product endpoints are resolved dynamically from this data.
func SetDynamicServers(servers []market.ServerDescriptor) {
@@ -48,6 +102,7 @@ func SetDynamicServers(servers []market.ServerDescriptor) {
products := make(map[string]bool)
aliases := make(map[string]string)
toolEndpoints := make(map[string]string)
registerDynamicServer(defaultPATServerDescriptor(), endpoints, products, aliases, toolEndpoints)
for _, server := range servers {
if server.CLI.Skip {
continue
@@ -80,11 +135,19 @@ func SetDynamicServers(servers []market.ServerDescriptor) {
toolEndpoints[toolName] = endpoint
}
}
for toolName := range server.CLI.ToolOverrides {
for toolName, override := range server.CLI.ToolOverrides {
toolName = strings.TrimSpace(toolName)
if toolName != "" {
toolEndpoints[toolName] = endpoint
if toolName == "" {
continue
}
// Leaves with serverOverride are routed to a different server's
// endpoint (e.g. chat's "search_my_robots" → bot). Registering
// them here would overwrite the real owner's tool → endpoint
// mapping and send the invocation to the wrong MCP URL.
if strings.TrimSpace(override.ServerOverride) != "" {
continue
}
toolEndpoints[toolName] = endpoint
}
}
}
@@ -94,6 +157,47 @@ func SetDynamicServers(servers []market.ServerDescriptor) {
dynamicToolEndpoints = toolEndpoints
}
func registerDynamicServer(server market.ServerDescriptor, endpoints map[string]string, products map[string]bool, aliases map[string]string, toolEndpoints map[string]string) {
if server.CLI.Skip {
return
}
id := strings.TrimSpace(server.CLI.ID)
endpoint := strings.TrimSpace(server.Endpoint)
if id != "" && endpoint != "" {
endpoints[id] = endpoint
products[id] = true
}
cmd := strings.TrimSpace(server.CLI.Command)
if cmd != "" && cmd != id && endpoint != "" {
endpoints[cmd] = endpoint
products[cmd] = true
}
for _, alias := range server.CLI.Aliases {
alias = strings.TrimSpace(alias)
if alias != "" && endpoint != "" {
endpoints[alias] = endpoint
products[alias] = true
// Build alias -> CLI.ID mapping.
aliases[alias] = id
}
}
// Build tool -> endpoint mapping from CLI tools and overrides.
if endpoint != "" {
for _, tool := range server.CLI.Tools {
toolName := strings.TrimSpace(tool.Name)
if toolName != "" {
toolEndpoints[toolName] = endpoint
}
}
for toolName := range server.CLI.ToolOverrides {
toolName = strings.TrimSpace(toolName)
if toolName != "" {
toolEndpoints[toolName] = endpoint
}
}
}
}
func shouldUseDirectRuntime(invocation executor.Invocation) bool {
if strings.TrimSpace(os.Getenv(cli.CatalogFixtureEnv)) != "" {
return false
@@ -123,14 +227,11 @@ func directRuntimeEndpoint(productID, toolName string) (string, bool) {
te := dynamicToolEndpoints
dynamicMu.RUnlock()
// Priority 1: tool-level endpoint (resolves multi-endpoint products).
if tool := strings.TrimSpace(toolName); tool != "" && te != nil {
if endpoint, ok := te[tool]; ok {
return endpoint, true
}
}
// Priority 2: product-level endpoint.
// Priority 1: product-level endpoint.
// When the caller already knows the productID (e.g. "drive"), the product
// endpoint is authoritative. This prevents cross-product tool name
// collisions (e.g. both "drive" and "doc" register "create_folder") from
// routing the request to the wrong MCP server. See issue #219.
for _, candidate := range []string{strings.TrimSpace(productID), normalized} {
if candidate == "" {
continue
@@ -141,6 +242,24 @@ func directRuntimeEndpoint(productID, toolName string) (string, bool) {
}
}
}
// Priority 2: tool-level endpoint (fallback for unknown productID).
// This path is used when the caller does not know the productID but has a
// tool name, e.g. in helper invocations or plugin routes where only the
// tool name is available.
if tool := strings.TrimSpace(toolName); tool != "" && te != nil {
if endpoint, ok := te[tool]; ok {
return endpoint, true
}
}
// Priority 3: built-in PAT fallback for cold-start paths that run before
// discovery/plugin registration has populated the dynamic registry.
for _, candidate := range []string{strings.TrimSpace(productID), normalized} {
if candidate == defaultPATProductID {
return defaultPATMCPEndpoint(), true
}
}
return "", false
}
@@ -150,7 +269,8 @@ func DirectRuntimeProductIDs() map[string]bool {
dynamicMu.RLock()
dp := dynamicProducts
dynamicMu.RUnlock()
ids := make(map[string]bool, len(dp))
ids := make(map[string]bool, len(dp)+1)
ids[defaultPATProductID] = true
for key := range dp {
ids[key] = true
}
@@ -208,11 +328,17 @@ func AppendDynamicServer(server market.ServerDescriptor) {
dynamicToolEndpoints[toolName] = endpoint
}
}
for toolName := range server.CLI.ToolOverrides {
for toolName, override := range server.CLI.ToolOverrides {
toolName = strings.TrimSpace(toolName)
if toolName != "" {
dynamicToolEndpoints[toolName] = endpoint
if toolName == "" {
continue
}
// Leaves with serverOverride are routed to a different server's
// endpoint; skip to avoid overwriting the real owner's mapping.
if strings.TrimSpace(override.ServerOverride) != "" {
continue
}
dynamicToolEndpoints[toolName] = endpoint
}
}
}
@@ -0,0 +1,294 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
)
// Regression for the chat/bot tool routing bug: when the `chat` envelope
// declares toolOverrides with `serverOverride: "bot"` (e.g. `search_my_robots`,
// `send_message_by_custom_robot`), those tool names must NOT be registered
// into `dynamicToolEndpoints` pointing at chat's endpoint. Otherwise the
// tool-level Priority 1 lookup in `directRuntimeEndpoint` returns chat's URL
// even when the invocation's CanonicalProduct is "bot", causing the Portal to
// respond with `PARAM_ERROR - 未找到指定工具` because chat's mcpId has no such
// tool.
//
// Owner (bot envelope) still registers the tool (no serverOverride on the bot
// side), so product-level and tool-level lookups both resolve correctly.
const (
testBotEndpoint = "https://pre-mcp-gw.dingtalk.com/server/4717d5cbb92ecdebd89c174e4331dc17207208a97622e2004cac49c0fbedc9d1"
testChatEndpoint = "https://pre-mcp-gw.dingtalk.com/server/0a1609437385696b77fc4771c3ddaf5656b487f809966c0cc8d4755e7b1d3b74"
)
// botDescriptor returns a minimal `bot` server descriptor that owns the
// `search_my_robots` + `send_message_by_custom_robot` tools (no
// serverOverride — bot is the real owner).
func botDescriptor() market.ServerDescriptor {
return market.ServerDescriptor{
Endpoint: testBotEndpoint,
CLI: market.CLIOverlay{
ID: "bot",
ToolOverrides: map[string]market.CLIToolOverride{
"search_my_robots": {CLIName: "search"},
"send_message_by_custom_robot": {CLIName: "send-by-webhook"},
"add_robot_to_group": {CLIName: "add-bot"},
},
},
}
}
// chatDescriptor returns a minimal `chat` server descriptor whose
// toolOverrides include bot-owned tools via `serverOverride: "bot"`, plus a
// chat-native tool (`search_groups_by_keyword`) that must remain routed to
// chat's endpoint.
func chatDescriptor() market.ServerDescriptor {
return market.ServerDescriptor{
Endpoint: testChatEndpoint,
CLI: market.CLIOverlay{
ID: "chat",
Command: "chat",
ToolOverrides: map[string]market.CLIToolOverride{
"search_groups_by_keyword": {CLIName: "search"},
"search_my_robots": {
CLIName: "search",
ServerOverride: "bot",
},
"send_message_by_custom_robot": {
CLIName: "send-by-webhook",
ServerOverride: "bot",
},
"add_robot_to_group": {
CLIName: "add-bot",
ServerOverride: "bot",
},
},
},
}
}
// withCleanDynamicRegistry snapshots and restores the package-level dynamic
// registries so parallel/other tests aren't affected by this case's mutations.
func withCleanDynamicRegistry(t *testing.T) {
t.Helper()
dynamicMu.Lock()
prev := struct {
endpoints map[string]string
products map[string]bool
aliases map[string]string
toolEndpoints map[string]string
}{dynamicEndpoints, dynamicProducts, dynamicAliases, dynamicToolEndpoints}
dynamicEndpoints = nil
dynamicProducts = nil
dynamicAliases = nil
dynamicToolEndpoints = nil
dynamicMu.Unlock()
t.Cleanup(func() {
dynamicMu.Lock()
dynamicEndpoints = prev.endpoints
dynamicProducts = prev.products
dynamicAliases = prev.aliases
dynamicToolEndpoints = prev.toolEndpoints
dynamicMu.Unlock()
})
}
func assertEndpoint(t *testing.T, productID, toolName, want string) {
t.Helper()
got, ok := directRuntimeEndpoint(productID, toolName)
if !ok {
t.Fatalf("directRuntimeEndpoint(%q, %q) returned ok=false", productID, toolName)
}
if got != want {
t.Fatalf("directRuntimeEndpoint(%q, %q) = %q, want %q", productID, toolName, got, want)
}
}
// TestSetDynamicServers_ServerOverrideDoesNotHijackToolEndpoint verifies that
// chat's serverOverride entries cannot steal bot-owned tool routes, regardless
// of registration order.
func TestSetDynamicServers_ServerOverrideDoesNotHijackToolEndpoint(t *testing.T) {
tests := []struct {
name string
servers []market.ServerDescriptor
}{
{
name: "bot first, chat second",
servers: []market.ServerDescriptor{botDescriptor(), chatDescriptor()},
},
{
name: "chat first, bot second",
servers: []market.ServerDescriptor{chatDescriptor(), botDescriptor()},
},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
withCleanDynamicRegistry(t)
SetDynamicServers(tc.servers)
// Bot-owned tools must route to bot's endpoint even though chat
// declares toolOverrides for them (with serverOverride="bot").
assertEndpoint(t, "bot", "search_my_robots", testBotEndpoint)
assertEndpoint(t, "bot", "send_message_by_custom_robot", testBotEndpoint)
assertEndpoint(t, "bot", "add_robot_to_group", testBotEndpoint)
// Chat-native tools must still route to chat.
assertEndpoint(t, "chat", "search_groups_by_keyword", testChatEndpoint)
// Product-level fallback for bot (no tool name) must also return
// bot's endpoint.
assertEndpoint(t, "bot", "", testBotEndpoint)
})
}
}
// TestAppendDynamicServer_ServerOverrideDoesNotHijackToolEndpoint exercises
// the plugin-injection path (`AppendDynamicServer`) which has the same
// `toolOverrides` registration loop as `SetDynamicServers`. Chat's
// serverOverride entries must not overwrite bot's tool → endpoint mapping.
func TestAppendDynamicServer_ServerOverrideDoesNotHijackToolEndpoint(t *testing.T) {
orders := [][]market.ServerDescriptor{
{botDescriptor(), chatDescriptor()},
{chatDescriptor(), botDescriptor()},
}
for _, servers := range orders {
t.Run("", func(t *testing.T) {
withCleanDynamicRegistry(t)
for _, s := range servers {
AppendDynamicServer(s)
}
assertEndpoint(t, "bot", "search_my_robots", testBotEndpoint)
assertEndpoint(t, "bot", "send_message_by_custom_robot", testBotEndpoint)
assertEndpoint(t, "chat", "search_groups_by_keyword", testChatEndpoint)
})
}
}
// --- Issue #219 regression tests: cross-product tool name collision ---
//
// When two different products register tools with the same name (e.g. drive
// and doc both have "create_folder"), the product-level endpoint must win
// when the caller already knows the productID. Otherwise the tool-level map
// (last-writer-wins) routes the invocation to the wrong MCP server.
const (
testDriveEndpoint = "https://mcp-gw.dingtalk.com/server/drive-hash"
testDocEndpoint = "https://mcp-gw.dingtalk.com/server/doc-hash"
)
func driveDescriptor() market.ServerDescriptor {
return market.ServerDescriptor{
Endpoint: testDriveEndpoint,
CLI: market.CLIOverlay{
ID: "drive",
Command: "drive",
ToolOverrides: map[string]market.CLIToolOverride{
"create_folder": {CLIName: "mkdir"},
"list_files": {CLIName: "list"},
"download_file": {CLIName: "download"},
"get_upload_info": {CLIName: "upload-info"},
},
},
}
}
func docDescriptor() market.ServerDescriptor {
return market.ServerDescriptor{
Endpoint: testDocEndpoint,
CLI: market.CLIOverlay{
ID: "doc",
Command: "doc",
ToolOverrides: map[string]market.CLIToolOverride{
"create_folder": {CLIName: "create", Group: "folder"},
"download_file": {CLIName: "download"},
"search_documents": {CLIName: "search"},
"list_nodes": {CLIName: "list"},
},
},
}
}
// TestDirectRuntimeEndpoint_ProductLevelWinsOverConflictingToolLevel verifies
// that when productID is known and has a registered endpoint, the product-level
// endpoint is used even if the tool-level map points to a different server
// (due to same-name tool collision). This is the core fix for issue #219.
func TestDirectRuntimeEndpoint_ProductLevelWinsOverConflictingToolLevel(t *testing.T) {
tests := []struct {
name string
servers []market.ServerDescriptor
}{
{
name: "drive first, doc second",
servers: []market.ServerDescriptor{driveDescriptor(), docDescriptor()},
},
{
name: "doc first, drive second",
servers: []market.ServerDescriptor{docDescriptor(), driveDescriptor()},
},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
withCleanDynamicRegistry(t)
SetDynamicServers(tc.servers)
// Drive tools must always route to drive's endpoint regardless of
// registration order — productID "drive" is known.
assertEndpoint(t, "drive", "create_folder", testDriveEndpoint)
assertEndpoint(t, "drive", "download_file", testDriveEndpoint)
assertEndpoint(t, "drive", "list_files", testDriveEndpoint)
assertEndpoint(t, "drive", "get_upload_info", testDriveEndpoint)
// Doc tools must always route to doc's endpoint.
assertEndpoint(t, "doc", "create_folder", testDocEndpoint)
assertEndpoint(t, "doc", "download_file", testDocEndpoint)
assertEndpoint(t, "doc", "search_documents", testDocEndpoint)
assertEndpoint(t, "doc", "list_nodes", testDocEndpoint)
// Product-level fallback (no tool name) still works.
assertEndpoint(t, "drive", "", testDriveEndpoint)
assertEndpoint(t, "doc", "", testDocEndpoint)
})
}
}
// TestDirectRuntimeEndpoint_ToolLevelFallbackWhenProductUnknown verifies that
// tool-level routing still works as a fallback when productID is empty or has
// no registered endpoint (the original design intent for tool-level Priority 1).
func TestDirectRuntimeEndpoint_ToolLevelFallbackWhenProductUnknown(t *testing.T) {
withCleanDynamicRegistry(t)
SetDynamicServers([]market.ServerDescriptor{driveDescriptor(), docDescriptor()})
// When productID is empty, tool-level endpoint is the only option.
// The actual endpoint depends on registration order (last-writer-wins),
// but the lookup must succeed.
endpoint, ok := directRuntimeEndpoint("", "create_folder")
if !ok {
t.Fatal("directRuntimeEndpoint(\"\", \"create_folder\") returned ok=false, want ok=true")
}
if endpoint != testDriveEndpoint && endpoint != testDocEndpoint {
t.Fatalf("directRuntimeEndpoint(\"\", \"create_folder\") = %q, want one of drive/doc endpoints", endpoint)
}
// Unique tools (no collision) still resolve via tool-level.
assertEndpoint(t, "", "search_documents", testDocEndpoint)
assertEndpoint(t, "", "get_upload_info", testDriveEndpoint)
}
+69 -1
View File
@@ -1,6 +1,74 @@
package app
import "testing"
import (
"os"
"path/filepath"
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
)
func TestDefaultPATServerDescriptorUsesBehaviorAuthorizationName(t *testing.T) {
server := defaultPATServerDescriptor()
if server.CLI.ID != "pat" {
t.Fatalf("default PAT server id = %q, want pat", server.CLI.ID)
}
if server.DisplayName != "行为授权" {
t.Fatalf("default PAT server display name = %q, want 行为授权", server.DisplayName)
}
if server.Endpoint != defaultPATMCPEndpoint() {
t.Fatalf("default PAT server endpoint = %q, want %q", server.Endpoint, defaultPATMCPEndpoint())
}
}
func TestDirectRuntimeProductIDsIncludesDefaultPAT(t *testing.T) {
dynamicMu.Lock()
previousProducts := dynamicProducts
dynamicProducts = nil
dynamicMu.Unlock()
t.Cleanup(func() {
dynamicMu.Lock()
dynamicProducts = previousProducts
dynamicMu.Unlock()
})
ids := DirectRuntimeProductIDs()
if !ids["pat"] {
t.Fatalf("DirectRuntimeProductIDs() missing default pat product: %#v", ids)
}
}
func TestDirectRuntimeEndpoint_DefaultPATFallbackWhenRegistryMissing(t *testing.T) {
withCleanDynamicRegistry(t)
assertEndpoint(t, "pat", "", defaultPATMCPEndpoint())
}
func TestDirectRuntimeEndpoint_DefaultPATFallbackUsesConfiguredMCPBaseURL(t *testing.T) {
withCleanDynamicRegistry(t)
tmpDir := t.TempDir()
if err := os.WriteFile(filepath.Join(tmpDir, "mcp_url"), []byte("http://127.0.0.1:54321/base"), 0o600); err != nil {
t.Fatalf("WriteFile(mcp_url) error = %v", err)
}
t.Setenv("DWS_CONFIG_DIR", tmpDir)
assertEndpoint(t, "pat", "", "http://127.0.0.1:54321/base/server/"+defaultPATServerID)
}
func TestDirectRuntimeEndpoint_PATDiscoveryOverrideWinsOverBuiltInFallback(t *testing.T) {
withCleanDynamicRegistry(t)
customEndpoint := "https://example.com/server/custom-pat"
SetDynamicServers([]market.ServerDescriptor{
{
Endpoint: customEndpoint,
CLI: market.CLIOverlay{
ID: "pat",
Command: "pat",
},
},
})
assertEndpoint(t, "pat", "", customEndpoint)
}
func TestNormalizeDirectRuntimeProductIDPreservesLegacyHiddenVendorRouting(t *testing.T) {
dynamicMu.Lock()
-7
View File
@@ -429,10 +429,3 @@ func printPerfReportSummary(w io.Writer, report *PerfReport) {
fmt.Fprintf(w, " %-25s ─────────\n", "─────────────────────────")
fmt.Fprintf(w, " %-25s %dms (框架开销 %dms)\n", "总耗时", report.TotalMs, report.OverheadMs)
}
func formatLocalTime(t time.Time) string {
if t.IsZero() {
return ""
}
return t.Local().Format("2006-01-02 15:04")
}
+1 -1
View File
@@ -41,7 +41,7 @@ func bindPersistentFlags(cmd *cobra.Command, flags *GlobalFlags) {
cmd.PersistentFlags().BoolVar(&flags.Debug, "debug", false, "显示调试日志")
cmd.PersistentFlags().BoolVar(&flags.DryRun, "dry-run", false, "预览操作内容,不实际执行")
cmd.PersistentFlags().StringVar(&flags.Fields, "fields", "", "筛选输出字段 (逗号分隔, 如: name,id,status)")
cmd.PersistentFlags().StringVarP(&flags.Format, "format", "f", "json", "输出格式: json|table|raw")
cmd.PersistentFlags().StringVarP(&flags.Format, "format", "f", "json", "输出格式: json|table|raw|pretty")
cmd.PersistentFlags().StringVar(&flags.JQ, "jq", "", "jq 表达式过滤输出 (如: '.items[] | .name')")
cmd.PersistentFlags().BoolVar(&flags.Mock, "mock", false, "使用 Mock 数据 (开发调试用)")
cmd.PersistentFlags().StringVarP(&flags.Output, "output", "o", "", "Write command output to a file")
+62
View File
@@ -0,0 +1,62 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"context"
"fmt"
"io"
"log/slog"
"strings"
authpkg "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/auth"
)
// ForceRefreshAccessToken forces a single refresh_token exchange and returns
// the new access_token. It is intended for callers that have observed a
// server-side rejection (HTTP 401 or business code such as
// TOKEN_VERIFIED_FAILED) on what locally appeared to be a still-valid token.
//
// Steps:
// 1. MarkAccessTokenStale rewrites ExpiresAt to a past instant so
// OAuthProvider.GetAccessToken's fast-path will miss.
// 2. NewOAuthProvider + GetAccessToken triggers lockedRefresh, which uses the
// existing dual-layer lock (process + file) to serialize concurrent
// refresh attempts across goroutines and processes.
// 3. ResetRuntimeTokenCache clears the per-process sync.Once cache so the
// next resolveAuthToken call re-reads from disk.
//
// Existing OAuthProvider.GetAccessToken behaviour is unchanged; this helper
// is the only entry point that orchestrates "force refresh" semantics.
func ForceRefreshAccessToken(ctx context.Context, configDir string) (string, error) {
if strings.TrimSpace(configDir) == "" {
return "", fmt.Errorf("config directory is empty")
}
if err := authpkg.MarkAccessTokenStale(configDir); err != nil {
return "", fmt.Errorf("mark access token stale: %w", err)
}
disc := slog.New(slog.NewTextHandler(io.Discard, nil))
provider := authpkg.NewOAuthProvider(configDir, disc)
configureOAuthProviderCompatibility(provider, configDir)
tok, err := provider.GetAccessToken(ctx)
if err != nil {
return "", err
}
tok = strings.TrimSpace(tok)
if tok == "" {
return "", fmt.Errorf("force refresh returned empty access token")
}
ResetRuntimeTokenCache()
return tok, nil
}
+173 -22
View File
@@ -29,9 +29,11 @@ import (
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cli"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cobracmd"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/compat"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/editionmerge"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/helpers"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/cmdutil"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/config"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
"github.com/spf13/cobra"
@@ -47,12 +49,46 @@ func newLegacyPublicCommands(ctx context.Context, runner executor.Runner) []*cob
return mergeTopLevelCommands(commands)
}
var commands []*cobra.Command
if dynamicCmds := loadDynamicCommands(ctx, runner); len(dynamicCmds) > 0 {
commands = append(commands, dynamicCmds...)
dynamicCmds := loadDynamicCommands(ctx, runner)
helperCmds := helpers.NewPublicCommands(runner)
return mergeTopLevelCommands(pickCommands(dynamicCmds, helperCmds))
}
// pickCommands returns the union of dynamic and helpers commands. For
// same-named top-level products, helper-only leaves are grafted into the
// dynamic tree via cmdutil.MergeHardcodedLeaves so the discovery envelope
// remains the authority for leaves it declares, while hardcoded helpers can
// still fill gaps the envelope did not cover (e.g. `chat message send-by-bot`
// alongside the envelope's `chat message send`).
//
// Why this exists: mergeTopLevelCommands below calls cobracmd.MergeCommandTree
// on same-named top-level commands, which — at leaf conflicts — falls back to
// "more local flags wins" via ShouldReplaceLeaf. Hardcoded helpers commands
// typically expose more flags than the corresponding dynamic overlay leaves,
// so a naive append would silently promote helper leaves over their dynamic
// counterparts. MergeHardcodedLeaves avoids that by letting dynamic win every
// leaf conflict, and only adding subtrees the dynamic side lacks.
func pickCommands(dynamic, helpers []*cobra.Command) []*cobra.Command {
dynByName := make(map[string]*cobra.Command, len(dynamic))
out := make([]*cobra.Command, 0, len(dynamic)+len(helpers))
for _, c := range dynamic {
if c == nil {
continue
}
dynByName[c.Name()] = c
out = append(out, c)
}
commands = append(commands, helpers.NewPublicCommands(runner)...)
return mergeTopLevelCommands(commands)
for _, h := range helpers {
if h == nil {
continue
}
if dyn := dynByName[h.Name()]; dyn != nil {
cmdutil.MergeHardcodedLeaves(dyn, h)
continue
}
out = append(out, h)
}
return out
}
// injectStaticServers converts edition.ServerInfo entries into
@@ -87,9 +123,55 @@ func injectStaticServers(servers []edition.ServerInfo) {
//
// Tests may override discoveryBaseURLOverride to redirect to a local server;
// in that case the registry cache is always bypassed.
// editionPartition returns the cache partition for the active edition.
// Thin wrapper around config.EditionPartition; kept so the many existing
// call sites in internal/app don't need to thread edition.Get() everywhere.
func editionPartition() string {
return config.EditionPartition(edition.Get().Name)
}
// discoveryTraceEnabled reports whether the user asked for discovery-path diagnostics.
// loadDynamicCommands runs while building the command tree, before PersistentPreRun
// applies --debug to slog; we also accept argv --debug and DWS_PERF_DEBUG for consistency.
func discoveryTraceEnabled() bool {
if IsPerfDebugEnabled() {
return true
}
for _, a := range os.Args[1:] {
if a == "--debug" {
return true
}
}
return false
}
func discoveryTraceServerIDs(servers []market.ServerDescriptor) []string {
seen := make(map[string]struct{})
for _, s := range servers {
id := strings.TrimSpace(s.CLI.Command)
if id == "" {
id = strings.TrimSpace(s.CLI.ID)
}
if id == "" {
continue
}
seen[id] = struct{}{}
}
out := make([]string, 0, len(seen))
for id := range seen {
out = append(out, id)
}
sort.Strings(out)
const maxIDs = 48
if len(out) > maxIDs {
out = out[:maxIDs]
}
return out
}
func loadDynamicCommands(ctx context.Context, runner executor.Runner) []*cobra.Command {
store := cacheStoreFromEnv()
partition := config.DefaultPartition
partition := editionPartition()
// Bypass the registry cache when a fixture override is active.
// This ensures tests that set DWS_CATALOG_FIXTURE always get fresh
@@ -116,27 +198,55 @@ func loadDynamicCommands(ctx context.Context, runner executor.Runner) []*cobra.C
}
}
if len(servers) > 0 && discoveryTraceEnabled() {
slog.Info("loadDynamicCommands: skipping sync discovery fetch, using registry cache",
"partition", partition,
"servers", len(servers),
"registry_freshness", string(freshness))
}
// Cache miss or bypassed: fetch from market API synchronously (first run only).
if len(servers) == 0 {
baseURL := cli.DefaultMarketBaseURL
if discoveryBaseURLOverride != "" {
baseURL = discoveryBaseURLOverride
if discoveryTraceEnabled() {
if edURL := strings.TrimSpace(edition.Get().DiscoveryURL); edURL != "" {
slog.Info("loadDynamicCommands: sync discovery fetch", "partition", partition, "url", edURL)
} else {
baseURL := cli.DefaultMarketBaseURL
if discoveryBaseURLOverride != "" {
baseURL = discoveryBaseURLOverride
}
slog.Info("loadDynamicCommands: sync market catalog fetch", "partition", partition, "base_url", baseURL)
}
}
fetchStart := time.Now()
client := market.NewClient(baseURL, ipv4OnlyHTTPClient())
resp, fetchErr := client.FetchServers(ctx, config.DefaultFetchServersLimit)
resp, fetchErr := fetchRegistryServers(ctx, ipv4OnlyHTTPClient())
RecordTiming(ctx, "market_fetch", time.Since(fetchStart))
if fetchErr != nil {
if discoveryTraceEnabled() {
slog.Info("loadDynamicCommands: sync discovery fetch failed",
"partition", partition,
"error", fetchErr.Error())
}
slog.Debug("loadDynamicCommands: market API fetch failed", "error", fetchErr)
// Degrade to stale cache if available (production only).
if useCache && cacheErr == nil && len(snapshot.Servers) > 0 {
slog.Debug("loadDynamicCommands: degrading to stale registry cache", "servers", len(snapshot.Servers))
servers = snapshot.Servers
} else {
return nil
// no-op: fall through to FallbackServers check below
}
} else {
servers = market.NormalizeServers(resp, "market")
if discoveryTraceEnabled() {
slog.Info("loadDynamicCommands: sync discovery fetch ok",
"partition", partition,
"response_servers", len(resp.Servers),
"metadata_count", resp.Metadata.Count,
"normalized_servers", len(servers),
"cli_command_ids", discoveryTraceServerIDs(servers))
}
// Persist fresh data (only in non-test mode).
if useCache {
saveStart := time.Now()
@@ -148,9 +258,22 @@ func loadDynamicCommands(ctx context.Context, runner executor.Runner) []*cobra.C
}
}
// FallbackServers: safety net when Market discovery + cache both fail.
if len(servers) == 0 {
if fn := edition.Get().FallbackServers; fn != nil {
if fb := fn(); len(fb) > 0 {
slog.Debug("loadDynamicCommands: using FallbackServers", "count", len(fb))
descriptors := editionmerge.FallbackToDescriptors(fb)
descriptors = editionmerge.MergeSupplement(descriptors)
SetDynamicServers(descriptors)
return nil
}
}
return nil
}
// Merge edition-specific supplement servers (not in Market).
servers = editionmerge.MergeSupplement(servers)
// Inject dynamic server data for endpoint resolution
SetDynamicServers(servers)
@@ -172,7 +295,7 @@ func loadCachedDetailsFast(store *cache.Store, servers []market.ServerDescriptor
if store == nil {
return result
}
partition := config.DefaultPartition
partition := editionPartition()
for _, server := range servers {
if server.DetailLocator.MCPID <= 0 {
continue
@@ -203,7 +326,7 @@ func fetchDetailsByServerID(ctx context.Context, client *market.Client, servers
if ctx == nil {
ctx = context.Background()
}
partition := config.DefaultPartition
partition := editionPartition()
now := time.Now().UTC()
if store != nil && store.Now != nil {
now = store.Now().UTC()
@@ -333,14 +456,16 @@ func DiscoveryBaseURL() string {
return cli.DefaultMarketBaseURL
}
// ipv4OnlyHTTPClient returns an HTTP client that forces IPv4 connections
// and uses a short timeout suitable for CLI startup network requests.
// This avoids IPv6 DNS/connect timeouts on hosts without IPv6 networking.
func ipv4OnlyHTTPClient() *http.Client {
// ipv4HTTPClient returns an HTTP client that forces IPv4 connections with
// the given total request timeout. This avoids IPv6 DNS/connect timeouts on
// hosts without IPv6 networking.
func ipv4HTTPClient(timeout time.Duration) *http.Client {
dialer := &net.Dialer{Timeout: 3 * time.Second}
return &http.Client{
Timeout: 5 * time.Second,
Timeout: timeout,
Transport: &http.Transport{
// Honour HTTP_PROXY / HTTPS_PROXY / NO_PROXY env vars (#236).
Proxy: http.ProxyFromEnvironment,
DialContext: func(ctx context.Context, network, addr string) (net.Conn, error) {
return dialer.DialContext(ctx, "tcp4", addr)
},
@@ -348,6 +473,29 @@ func ipv4OnlyHTTPClient() *http.Client {
}
}
// ipv4OnlyHTTPClient returns an IPv4-forcing HTTP client with a short timeout
// suitable for CLI startup network requests.
func ipv4OnlyHTTPClient() *http.Client {
return ipv4HTTPClient(5 * time.Second)
}
// fetchRegistryServers performs the server-list HTTP fetch honoring the
// active edition's DiscoveryURL override. It is the single source of truth
// for all server-list fetches (startup, async revalidation, explicit
// `cache refresh`); keeping the edition-URL branch in one place prevents
// call sites from drifting out of sync.
func fetchRegistryServers(ctx context.Context, httpClient *http.Client) (market.ListResponse, error) {
if editionURL := strings.TrimSpace(edition.Get().DiscoveryURL); editionURL != "" {
client := market.NewClient("", httpClient)
if fn := edition.Get().DiscoveryHeaders; fn != nil {
client.Headers = fn()
}
return client.FetchServersFromURL(ctx, editionURL)
}
client := market.NewClient(DiscoveryBaseURL(), httpClient)
return client.FetchServers(ctx, config.DefaultFetchServersLimit)
}
// asyncRevalidateRegistry refreshes the registry cache in the background.
// Uses a short timeout derived from the parent context and silently ignores
// errors — the next CLI invocation will pick up the refreshed cache or retry.
@@ -355,9 +503,7 @@ func asyncRevalidateRegistry(parent context.Context, store *cache.Store, partiti
ctx, cancel := context.WithTimeout(parent, 30*time.Second)
defer cancel()
baseURL := DiscoveryBaseURL()
client := market.NewClient(baseURL, ipv4OnlyHTTPClient())
resp, err := client.FetchServers(ctx, config.DefaultFetchServersLimit)
resp, err := fetchRegistryServers(ctx, ipv4OnlyHTTPClient())
if err != nil {
slog.Debug("asyncRevalidateRegistry: fetch failed", "error", err)
return
@@ -398,3 +544,8 @@ func mergeTopLevelCommands(commands []*cobra.Command) []*cobra.Command {
})
return out
}
// mergeSupplementServers / fallbackToDescriptors have moved to
// internal/editionmerge so that both internal/cli and internal/app can
// apply the edition's SupplementServers / FallbackServers hooks against
// the same discovery pipeline (command tree + runtime catalog).
+219
View File
@@ -0,0 +1,219 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cobracmd"
"github.com/spf13/cobra"
)
// TestPickCommands_DynamicWinsLeafConflicts verifies that when the discovery
// envelope produces a dynamic leaf and a helper registers the same-named leaf,
// the dynamic one wins — envelopes remain the runtime authority for behaviour
// they declare. The helper subtree must not slip in via
// mergeTopLevelCommands's LocalFlagCount-based arbitration.
func TestPickCommands_DynamicWinsLeafConflicts(t *testing.T) {
dynTask := &cobra.Command{Use: "task", Short: "dynamic-task", Run: func(*cobra.Command, []string) {}}
dyn := &cobra.Command{Use: "todo", Short: "dynamic"}
dyn.AddCommand(dynTask)
dynamic := []*cobra.Command{dyn}
hlpTask := &cobra.Command{Use: "task", Short: "helper-task", Run: func(*cobra.Command, []string) {}}
hlp := &cobra.Command{Use: "todo", Short: "helper"}
hlp.AddCommand(hlpTask)
helpers := []*cobra.Command{hlp}
got := pickCommands(dynamic, helpers)
if len(got) != 1 || got[0] != dyn {
t.Fatalf("pickCommands returned %v, want [dyn]", got)
}
// The dynamic leaf must still be the one we find under the top-level name.
var found *cobra.Command
for _, c := range got[0].Commands() {
if c.Name() == "task" {
found = c
}
}
if found != dynTask {
t.Fatalf("leaf conflict resolved to helper; want dynamic to win")
}
}
// TestPickCommands_HelperOnlyLeavesAreGrafted verifies that when a helper
// registers siblings the discovery envelope did NOT declare (e.g.
// `chat message send-by-bot`, `chat message recall-by-bot` next to the
// envelope's `chat message send`), those helper-only leaves are grafted into
// the dynamic subtree instead of being dropped. This is a regression guard:
// prior to this fix, pickCommands silently dropped the entire helper subtree
// whenever the top-level product name collided, which disappeared every
// helper-only leaf the envelope didn't cover.
func TestPickCommands_HelperOnlyLeavesAreGrafted(t *testing.T) {
dynMessage := &cobra.Command{Use: "message"}
dynMessage.AddCommand(&cobra.Command{Use: "send", Run: func(*cobra.Command, []string) {}})
dyn := &cobra.Command{Use: "chat"}
dyn.AddCommand(dynMessage)
dynamic := []*cobra.Command{dyn}
helperOnlyLeaf := &cobra.Command{Use: "send-by-bot", Run: func(*cobra.Command, []string) {}}
hlpMessage := &cobra.Command{Use: "message"}
hlpMessage.AddCommand(helperOnlyLeaf)
hlp := &cobra.Command{Use: "chat"}
hlp.AddCommand(hlpMessage)
helpers := []*cobra.Command{hlp}
got := pickCommands(dynamic, helpers)
if len(got) != 1 || got[0] != dyn {
t.Fatalf("pickCommands returned %v, want [dyn]", got)
}
var grafted *cobra.Command
for _, child := range dynMessage.Commands() {
if child.Name() == "send-by-bot" {
grafted = child
}
}
if grafted == nil {
t.Fatalf("helper-only leaf send-by-bot was not grafted into dynamic.chat.message")
}
if grafted != helperOnlyLeaf {
t.Fatalf("grafted leaf identity differs from helper-registered leaf")
}
}
// TestPickCommands_HelpersFillUncoveredProducts verifies that helpers whose
// names are NOT in the dynamic set are preserved — the dynamic overlay only
// shadows products it actually covers.
func TestPickCommands_HelpersFillUncoveredProducts(t *testing.T) {
dyn := &cobra.Command{Use: "todo"}
dynamic := []*cobra.Command{dyn}
todoHelper := &cobra.Command{Use: "todo"}
attendanceHelper := &cobra.Command{Use: "attendance"}
chatHelper := &cobra.Command{Use: "chat"}
helpers := []*cobra.Command{todoHelper, attendanceHelper, chatHelper}
got := pickCommands(dynamic, helpers)
names := make(map[string]*cobra.Command, len(got))
for _, c := range got {
names[c.Name()] = c
}
if names["todo"] != dyn {
t.Fatalf("todo = %v, want dynamic", names["todo"])
}
if names["attendance"] != attendanceHelper {
t.Fatalf("attendance not preserved from helpers")
}
if names["chat"] != chatHelper {
t.Fatalf("chat not preserved from helpers")
}
if len(got) != 3 {
t.Fatalf("got %d commands, want 3 (todo+attendance+chat)", len(got))
}
}
// TestPickCommands_EmptyDynamicPreservesHelpers verifies the degenerate case:
// when discovery returns nothing, helpers are the sole source of truth — the
// behaviour must be identical to the pre-refactor append-all code path.
func TestPickCommands_EmptyDynamicPreservesHelpers(t *testing.T) {
todoHelper := &cobra.Command{Use: "todo"}
chatHelper := &cobra.Command{Use: "chat"}
helpers := []*cobra.Command{todoHelper, chatHelper}
got := pickCommands(nil, helpers)
if len(got) != 2 {
t.Fatalf("got %d commands, want 2", len(got))
}
if got[0] != todoHelper || got[1] != chatHelper {
t.Fatalf("pickCommands changed helpers order or identity")
}
}
// TestPickCommands_HelperGroupShadowsDynamicLeaf simulates the issue #164
// shape mismatch: the discovery envelope publishes `chat group members` as
// a LEAF (the get_group_members tool exposed at that CLI path), while the
// hardcoded helper has restructured `members` into a GROUP container with
// `list / add / remove / add-bot` subcommands. The helper group carries the
// preferLegacyLeaf priority annotation, so it must replace the dynamic leaf
// and surface its subtree — otherwise `dws chat group members list` is
// unreachable and the user-visible regression in #164 stays.
func TestPickCommands_HelperGroupShadowsDynamicLeaf(t *testing.T) {
dynMembers := &cobra.Command{Use: "members", Run: func(*cobra.Command, []string) {}}
dynMembers.Flags().String("id", "", "")
dynGroup := &cobra.Command{Use: "group"}
dynGroup.AddCommand(dynMembers)
dyn := &cobra.Command{Use: "chat"}
dyn.AddCommand(dynGroup)
hlpList := &cobra.Command{Use: "list", Run: func(*cobra.Command, []string) {}}
hlpList.Flags().String("id", "", "")
hlpAdd := &cobra.Command{Use: "add", Run: func(*cobra.Command, []string) {}}
hlpRemove := &cobra.Command{Use: "remove", Run: func(*cobra.Command, []string) {}}
hlpMembers := &cobra.Command{Use: "members"}
hlpMembers.AddCommand(hlpList, hlpAdd, hlpRemove)
cobracmd.SetOverridePriority(hlpMembers, 100)
hlpGroup := &cobra.Command{Use: "group"}
hlpGroup.AddCommand(hlpMembers)
hlp := &cobra.Command{Use: "chat"}
hlp.AddCommand(hlpGroup)
got := pickCommands([]*cobra.Command{dyn}, []*cobra.Command{hlp})
if len(got) != 1 || got[0] != dyn {
t.Fatalf("got %v, want [dyn]", got)
}
// Locate the (potentially replaced) members node under chat.group.
var members *cobra.Command
for _, c := range dynGroup.Commands() {
if c.Name() == "members" {
members = c
break
}
}
if members == nil {
t.Fatalf("members node missing under dyn.chat.group after merge")
}
want := map[string]bool{"list": false, "add": false, "remove": false}
for _, sub := range members.Commands() {
if _, ok := want[sub.Name()]; ok {
want[sub.Name()] = true
}
}
for name, seen := range want {
if !seen {
t.Errorf("expected `chat group members %s` after merge, missing", name)
}
}
}
// TestPickCommands_NilsAreSkipped guards against nil entries sneaking in from
// a misbehaving factory.
func TestPickCommands_NilsAreSkipped(t *testing.T) {
dyn := &cobra.Command{Use: "todo"}
hlp := &cobra.Command{Use: "chat"}
got := pickCommands([]*cobra.Command{nil, dyn}, []*cobra.Command{nil, hlp})
if len(got) != 2 {
t.Fatalf("got %d commands, want 2 (nils filtered)", len(got))
}
if got[0] != dyn || got[1] != hlp {
t.Fatalf("unexpected ordering or identity after nil filter")
}
}
@@ -0,0 +1,64 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/config"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
// TestEditionPartition_SingleSourceOfTruth is the regression test that
// specifically targets the original bug: internal/app.loadDynamicCommands
// was computing its partition one way (editionPartition() →
// "wukong/default") while internal/cli.EnvironmentLoader was hardcoding
// config.DefaultPartition ("default/default"). This meant runtime endpoint
// resolution and command-tree generation read different cache files, and
// under gray-release the two partitions carried disjoint product lists —
// the historical root cause of `dws conference meeting create` failing
// while `dws todo task list` succeeded on the same host.
//
// Keeping both sides funneled through config.EditionPartition is the
// central invariant the fix enforces. If this test ever regresses, the
// two-partition split almost certainly came back.
func TestEditionPartition_SingleSourceOfTruth(t *testing.T) {
t.Cleanup(func() { edition.Override(&edition.Hooks{}) })
cases := []struct {
name string
edition string
want string
}{
{"open edition falls through to default/default", "", config.DefaultPartition},
{"explicit open edition remains default", "open", config.DefaultPartition},
{"wukong overlay uses wukong/default", "wukong", "wukong/default"},
{"custom edition is namespaced", "internal-lab", "internal-lab/default"},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
edition.Override(&edition.Hooks{Name: tc.edition})
legacy := editionPartition()
shared := config.EditionPartition(edition.Get().Name)
if legacy != shared {
t.Fatalf("editionPartition()=%q, config.EditionPartition()=%q — partition split regressed for edition %q", legacy, shared, tc.edition)
}
if legacy != tc.want {
t.Fatalf("editionPartition()=%q, want %q for edition %q", legacy, tc.want, tc.edition)
}
})
}
}
+190 -32
View File
@@ -32,6 +32,7 @@ import (
authpkg "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/auth"
apperrors "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/errors"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/pat"
"github.com/fatih/color"
)
@@ -43,8 +44,12 @@ const (
// PatAuthPollInterval is how often we poll to check if the user has
// completed authorization.
PatAuthPollInterval = 5 * time.Second
patScopeAuthRequiredCode = "PAT_SCOPE_AUTH_REQUIRED"
)
var openBrowserFunc = tryOpenBrowser
// PatScopeError holds information about a missing PAT scope.
type PatScopeError struct {
OriginalError string
@@ -182,21 +187,50 @@ func PrintPatAuthError(w io.Writer, scopeErr *PatScopeError) {
// PrintPatAuthJSON prints a machine-readable PAT authorization error.
func PrintPatAuthJSON(w io.Writer, scopeErr *PatScopeError) {
payload := map[string]any{
"ok": false,
"identity": scopeErr.Identity,
"error": map[string]any{
"type": scopeErr.ErrorType,
"message": scopeErr.Message,
"hint": scopeErr.Hint,
},
fmt.Fprintln(w, buildPATScopeJSON(scopeErr, authpkg.HostOwnsPATFlow()))
}
func wantsStructuredPATOutput(r *runtimeRunner) bool {
if r == nil || r.globalFlags == nil {
return false
}
if scopeErr.MissingScope != "" {
payload["missing_scope"] = scopeErr.MissingScope
return strings.EqualFold(strings.TrimSpace(r.globalFlags.Format), "json")
}
func wantsStructuredPATOutputFromRunner(runner executor.Runner) bool {
rr, ok := runner.(*runtimeRunner)
if !ok {
return false
}
return wantsStructuredPATOutput(rr)
}
func currentPATOpenBrowser(configDir string) bool {
return pat.EffectiveOpenBrowser(configDir)
}
func enrichPATErrorWithOpenBrowser(raw string, openBrowser bool) string {
if strings.TrimSpace(raw) == "" {
return raw
}
data, _ := json.MarshalIndent(payload, "", " ")
fmt.Fprintln(w, string(data))
var payload map[string]any
if err := json.Unmarshal([]byte(raw), &payload); err != nil {
return raw
}
data, ok := payload["data"].(map[string]any)
if !ok || data == nil {
data = map[string]any{}
payload["data"] = data
}
data["openBrowser"] = openBrowser
encoded, err := json.Marshal(payload)
if err != nil {
return raw
}
return string(encoded)
}
// WaitForPatAuthorization polls until the user completes authorization or timeout.
@@ -258,6 +292,19 @@ func WaitForPatAuthorization(ctx context.Context, configDir string, output io.Wr
// retryWithPatAuthRetry wraps an invocation that failed with a PAT scope error.
// It waits for the user to complete authorization and then retries the invocation.
func retryWithPatAuthRetry(ctx context.Context, runner executor.Runner, invocation executor.Invocation, scopeErr *PatScopeError, configDir string, output io.Writer) (executor.Result, error) {
hostOwnedPAT := authpkg.HostOwnsPATFlow()
slog.Debug("pat.host_owned_decision",
"site", "retryWithPatAuthRetry",
"hostOwned", hostOwnedPAT,
"agentCodeEnvSet", os.Getenv(authpkg.AgentCodeEnv) != "",
)
if hostOwnedPAT {
return executor.Result{}, &apperrors.PATError{RawJSON: buildPATScopeJSON(scopeErr, true)}
}
if wantsStructuredPATOutputFromRunner(runner) {
return executor.Result{}, &apperrors.PATError{RawJSON: buildPATScopeJSON(scopeErr, false)}
}
// Print the PAT error in human-readable format
PrintPatAuthError(output, scopeErr)
@@ -305,6 +352,32 @@ func IsPatRetrying(ctx context.Context) bool {
return v
}
func openPATAuthorizationURI(rawURI string) error {
if rawURI == "" {
// Defensive guard for future callers. The current call site already
// checks for a non-empty PAT URI before invoking this helper.
return nil
}
// The PAT service returns the complete authorization URL. Treat it as an
// opaque string and open it verbatim instead of parsing/rebuilding it
// locally, because required parameters may live in query, hash, or
// fragment sections.
return openBrowserFunc(rawURI)
}
func printPATPollDebugResponse(output io.Writer, statusCode int, body []byte) {
if os.Getenv("DWS_DEBUG_PAT_POLL") == "" {
return
}
trimmed := strings.TrimSpace(string(body))
if trimmed == "" {
trimmed = "<empty body>"
}
fmt.Fprintln(output)
fmt.Fprintf(output, " ℹ PAT 轮询接口返回原文 (HTTP %d):\n", statusCode)
fmt.Fprintf(output, " %s\n", trimmed)
}
// handlePatAuthCheck is called by runner.executeInvocation when a PAT
// authorization error is detected. It injects the server-assigned clientId
// as x-robot-uid header, prints authorization details, opens the browser,
@@ -338,9 +411,17 @@ func handlePatAuthCheck(
"flowId", patData.Data.FlowID,
"hasSecret", patData.Data.ClientSecret != "",
)
hostOwnedPAT := authpkg.HostOwnsPATFlow()
openBrowser := currentPATOpenBrowser(configDir)
slog.Debug("pat.host_owned_decision",
"site", "handlePatAuthCheck",
"hostOwned", hostOwnedPAT,
"agentCodeEnvSet", os.Getenv(authpkg.AgentCodeEnv) != "",
)
// Inject clientId/clientSecret from PAT response as runtime credentials
// so that subsequent device flow auth uses the server-assigned app identity.
var appCfg *authpkg.AppConfig
if patData.Data.ClientID != "" {
if patData.Data.ClientSecret != "" {
// When both clientId and clientSecret are provided, use direct mode
@@ -353,19 +434,32 @@ func handlePatAuthCheck(
authpkg.SetClientIDFromMCP(patData.Data.ClientID)
}
// Persist clientId (and optionally secret) to ~/.dws/app.json so that
// future process invocations can load it at startup and populate
// DWS_CLIENT_ID env before the first MCP request.
appCfg := &authpkg.AppConfig{
ClientID: patData.Data.ClientID,
}
// Persist only after an explicit APPROVED result below. Raw PAT
// interceptions (host-owned / json / empty-flow pass-through) must not
// rewrite the shared ~/.dws/app.json state for unrelated shells or agents.
appCfg = &authpkg.AppConfig{ClientID: patData.Data.ClientID}
if patData.Data.ClientSecret != "" {
appCfg.ClientSecret = authpkg.PlainSecret(patData.Data.ClientSecret)
}
if err := authpkg.SaveAppConfig(configDir, appCfg); err != nil {
slog.Warn("failed to persist app config from PAT", "error", err)
fmt.Fprintf(output, " \u26a0 保存应用配置失败: %v (下次启动可能需要重新授权)\n", err)
}
// In host-controlled PAT mode (driven solely by DINGTALK_DWS_AGENTCODE),
// or when flowId is absent, the CLI returns machine-readable JSON to
// stderr and leaves UI/polling/retry to the host. `claw-type` is NOT
// used for this decision — it is only forwarded on the wire via
// edition.MergeHeaders and surfaced in hostControl for traceability.
if hostOwnedPAT || patData.Data.FlowID == "" {
if hostOwnedPAT {
return executor.Result{}, &apperrors.PATError{RawJSON: enrichPATErrorForHostControl(patErr.RawJSON)}
}
return executor.Result{}, &apperrors.PATError{RawJSON: enrichPATErrorWithOpenBrowser(patErr.RawJSON, openBrowser)}
}
if wantsStructuredPATOutput(r) {
if openBrowser && patData.Data.URI != "" {
_ = openBrowserFunc(patData.Data.URI)
}
return executor.Result{}, &apperrors.PATError{RawJSON: enrichPATErrorWithOpenBrowser(patErr.RawJSON, openBrowser)}
}
bold := color.New(color.Bold).SprintFunc()
@@ -382,14 +476,9 @@ func handlePatAuthCheck(
}
if patData.Data.URI != "" {
fmt.Fprintf(output, " %s %s\n\n", dim("🔗"), cyan(patData.Data.URI))
// Best-effort browser open.
_ = tryOpenBrowser(patData.Data.URI)
}
// If no flowId, we can't poll — fall back to returning PATError for host-app.
if patData.Data.FlowID == "" {
fmt.Fprintln(output)
return executor.Result{}, patErr
if openBrowser {
_ = openPATAuthorizationURI(patData.Data.URI)
}
}
// Poll the device flow status until user authorizes, rejects, or timeout.
@@ -411,6 +500,13 @@ func handlePatAuthCheck(
fmt.Fprintf(output, "%s %s\n", greenFn("✓"), bold("授权成功!"))
fmt.Fprintln(output)
if appCfg != nil {
if err := authpkg.SaveAppConfig(configDir, appCfg); err != nil {
slog.Warn("failed to persist approved app config from PAT", "error", err)
fmt.Fprintf(output, " \u26a0 保存应用配置失败: %v (下次启动可能需要重新授权)\n", err)
}
}
// Exchange authCode for a fresh access token (mirrors device_flow loginOnce).
if authCode != "" {
slog.Debug("PAT retry: exchanging authCode for token", "hasCode", true)
@@ -475,6 +571,66 @@ func handlePatAuthCheck(
}
}
func enrichPATErrorForHostControl(raw string) string {
if strings.TrimSpace(raw) == "" {
return raw
}
var payload map[string]any
if err := json.Unmarshal([]byte(raw), &payload); err != nil {
return raw
}
// Route back through the classifier so host-owned active retry emits the
// exact same PAT JSON shape as passive classification.
if patErr := apperrors.ClassifyPatAuthCheck(payload); patErr != nil {
return patErr.RawJSON
}
apperrors.ApplyHostMutations(payload)
// stderr JSON MUST be single-line.
encoded, err := json.Marshal(payload)
if err != nil {
return raw
}
return string(encoded)
}
// buildPATScopeJSON renders the PAT_SCOPE_AUTH_REQUIRED stderr payload.
// includeHostControl=true follows the standard host-owned/CLI-owned split
// (data.hostControl is injected only if HostControlBlock is non-nil).
// includeHostControl=false is an explicit override used by the CLI-owned
// branch so that any env-mode misconfiguration cannot leak a host-owned
// contract into stderr.
func buildPATScopeJSON(scopeErr *PatScopeError, includeHostControl bool) string {
data := map[string]any{
"identity": scopeErr.Identity,
"errorType": scopeErr.ErrorType,
"message": scopeErr.Message,
"hint": scopeErr.Hint,
"missingScope": scopeErr.MissingScope,
"openBrowser": apperrors.PATOpenBrowserValue(),
}
if includeHostControl {
if hostControl := apperrors.HostControlBlock(); hostControl != nil {
data["hostControl"] = hostControl
}
}
payload := map[string]any{
"success": false,
"code": patScopeAuthRequiredCode,
"data": data,
}
// stderr JSON MUST be single-line.
b, err := json.Marshal(payload)
if err != nil {
return `{"success":false,"code":"PAT_SCOPE_AUTH_REQUIRED"}`
}
return string(b)
}
// pollPatDeviceFlow polls the PAT device flow status endpoint until a terminal
// state (APPROVED/REJECTED/EXPIRED) is reached or the context is cancelled.
// Returns the final status string and the authCode (non-empty only on APPROVED).
@@ -537,23 +693,25 @@ func pollPatDeviceFlow(ctx context.Context, flowID string, configDir string, out
var pollResp authpkg.DevicePollResponse
if err := json.Unmarshal(bodyBytes, &pollResp); err != nil {
slog.Debug("PAT poll: failed to parse response", "error", err, "body", string(bodyBytes))
printPATPollDebugResponse(output, resp.StatusCode, bodyBytes)
continue
}
status := authpkg.ParseDeviceFlowStatus(pollResp.Data.Status, pollResp.Success)
pollData := pollResp.EffectiveData()
status := authpkg.ParseDeviceFlowStatus(pollData.Status, pollResp.Success)
switch status {
case authpkg.StatusApproved:
fmt.Fprintln(output) // clear the polling line
return status, pollResp.Data.AuthCode, nil
return status, pollData.AuthCode, nil
case authpkg.StatusRejected, authpkg.StatusExpired:
fmt.Fprintln(output) // clear the polling line
return status, "", nil
case authpkg.StatusPending:
// keep polling
default:
// ParseDeviceFlowStatus normalizes empty+!success to EXPIRED,
// so this branch handles truly unknown statuses.
fmt.Fprintln(output)
printPATPollDebugResponse(output, resp.StatusCode, bodyBytes)
return status, "", nil
}
}
+607 -21
View File
@@ -29,6 +29,7 @@ import (
authpkg "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/auth"
apperrors "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/errors"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/pat"
)
func TestIsPatScopeError_MissingScope(t *testing.T) {
@@ -86,21 +87,6 @@ func TestIsPatScopeError_InsufficientScope(t *testing.T) {
}
}
func TestExtractPatScopeError_MissingScope(t *testing.T) {
t.Parallel()
err := apperrors.NewAuth("missing required scope(s): mail:user_mailbox.message:send")
scopeErr := extractPatScopeError(err)
if scopeErr == nil {
t.Fatal("expected non-nil PatScopeError")
}
if scopeErr.ErrorType != "missing_scope" {
t.Errorf("expected error type 'missing_scope', got %q", scopeErr.ErrorType)
}
if !strings.Contains(scopeErr.Hint, "dws auth login") {
t.Errorf("expected hint to contain 'dws auth login', got %q", scopeErr.Hint)
}
}
func TestExtractPatScopeError_ExtractsScope(t *testing.T) {
t.Parallel()
err := &PatScopeError{
@@ -142,7 +128,7 @@ func TestPrintPatAuthError_HumanReadable(t *testing.T) {
}
func TestPrintPatAuthJSON_MachineReadable(t *testing.T) {
t.Parallel()
t.Setenv(authpkg.AgentCodeEnv, "")
var buf strings.Builder
scopeErr := &PatScopeError{
Identity: "user",
@@ -153,12 +139,28 @@ func TestPrintPatAuthJSON_MachineReadable(t *testing.T) {
}
PrintPatAuthJSON(&buf, scopeErr)
// The payload is required to be single-line; assert by parsing the JSON
// rather than by matching pretty-printed substrings.
output := buf.String()
if !strings.Contains(output, `"ok": false`) {
t.Errorf("expected JSON to contain ok: false, got: %s", output)
var parsed map[string]any
if err := json.Unmarshal([]byte(output), &parsed); err != nil {
t.Fatalf("PrintPatAuthJSON must emit directly-parsable JSON: %v\nraw=%s", err, output)
}
if !strings.Contains(output, `"missing_scope": "mail:send"`) {
t.Errorf("expected JSON to contain missing_scope, got: %s", output)
if code, _ := parsed["code"].(string); code != "PAT_SCOPE_AUTH_REQUIRED" {
t.Errorf("code = %q, want PAT_SCOPE_AUTH_REQUIRED", code)
}
data, _ := parsed["data"].(map[string]any)
if data == nil {
t.Fatalf("expected data object, got: %s", output)
}
if got, _ := data["missingScope"].(string); got != "mail:send" {
t.Errorf("missingScope = %q, want mail:send", got)
}
if got, ok := data["openBrowser"].(bool); !ok || !got {
t.Errorf("openBrowser = %#v, want true", data["openBrowser"])
}
if _, ok := data["hostControl"]; ok {
t.Errorf("unexpected data.hostControl in CLI-owned JSON output: %s", output)
}
}
@@ -411,6 +413,84 @@ func TestPollPatDeviceFlow_RedirectSkipped(t *testing.T) {
}
}
func TestPollPatDeviceFlow_UnknownStatusPrintsRawResponse(t *testing.T) {
t.Setenv("DWS_DEBUG_PAT_POLL", "1")
server, configDir := setupPollServer(t, []authpkg.DevicePollResponse{
{Success: true, Data: authpkg.DevicePollData{Status: ""}},
})
defer server.Close()
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
var buf bytes.Buffer
status, authCode, err := pollPatDeviceFlow(ctx, "flow-unknown", configDir, &buf)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if status != "" {
t.Fatalf("expected empty unknown status, got %q", status)
}
if authCode != "" {
t.Fatalf("expected empty authCode for unknown status, got %q", authCode)
}
output := buf.String()
if !strings.Contains(output, "PAT 轮询接口返回原文") {
t.Fatalf("expected raw poll response to be printed, got %q", output)
}
if !strings.Contains(output, `"status":""`) {
t.Fatalf("expected raw poll body in output, got %q", output)
}
}
func TestPollPatDeviceFlow_UnknownStatusHidesRawResponseByDefault(t *testing.T) {
server, configDir := setupPollServer(t, []authpkg.DevicePollResponse{
{Success: true, Data: authpkg.DevicePollData{Status: ""}},
})
defer server.Close()
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
var buf bytes.Buffer
status, authCode, err := pollPatDeviceFlow(ctx, "flow-unknown-default", configDir, &buf)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if status != "" {
t.Fatalf("expected empty unknown status, got %q", status)
}
if authCode != "" {
t.Fatalf("expected empty authCode for unknown status, got %q", authCode)
}
output := buf.String()
if strings.Contains(output, "PAT 轮询接口返回原文") {
t.Fatalf("expected raw poll response to stay hidden by default, got %q", output)
}
}
func TestPollPatDeviceFlow_ResultEnvelopeCompatibility(t *testing.T) {
server, configDir := setupPollServer(t, []authpkg.DevicePollResponse{
{Success: true, Result: authpkg.DevicePollData{Status: "PENDING"}},
{Success: true, Result: authpkg.DevicePollData{Status: "APPROVED", AuthCode: "code-from-result"}},
})
defer server.Close()
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
var buf bytes.Buffer
status, authCode, err := pollPatDeviceFlow(ctx, "flow-result", configDir, &buf)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if status != "APPROVED" {
t.Fatalf("expected APPROVED, got %q", status)
}
if authCode != "code-from-result" {
t.Fatalf("expected authCode from result envelope, got %q", authCode)
}
}
// ---------------------------------------------------------------------------
// extractPatScopeError edge cases
// ---------------------------------------------------------------------------
@@ -484,6 +564,10 @@ func setupHandlePATServer(t *testing.T, terminalStatus string, authCode string)
}
func makePATErrorJSON(flowID, clientID string) string {
return makePATErrorJSONWithURI(flowID, clientID, "")
}
func makePATErrorJSONWithURI(flowID, clientID, uri string) string {
type patData struct {
Desc string `json:"desc"`
FlowID string `json:"flowId"`
@@ -498,7 +582,7 @@ func makePATErrorJSON(flowID, clientID string) string {
Data: patData{
Desc: "test auth",
FlowID: flowID,
URI: "", // empty to avoid opening browser in test
URI: uri,
ClientID: clientID,
},
}
@@ -507,6 +591,7 @@ func makePATErrorJSON(flowID, clientID string) string {
}
func TestHandlePatAuthCheck_Approved(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "")
server, configDir := setupHandlePATServer(t, "APPROVED", "test-auth-code")
defer server.Close()
@@ -539,6 +624,9 @@ func TestHandlePatAuthCheck_Approved(t *testing.T) {
if !retryHasKey {
t.Fatal("expected retry context to have patRetryingKey")
}
if _, err := os.Stat(filepath.Join(configDir, "app.json")); err != nil {
t.Fatalf("expected approved PAT flow to persist app.json, stat error = %v", err)
}
// Verify SetClientIDFromMCP was called with the PAT response clientId.
if cid := authpkg.ClientID(); cid != "test-client-id" {
t.Errorf("expected ClientID 'test-client-id', got %q", cid)
@@ -546,6 +634,7 @@ func TestHandlePatAuthCheck_Approved(t *testing.T) {
}
func TestHandlePatAuthCheck_Rejected(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "")
server, configDir := setupHandlePATServer(t, "REJECTED", "")
defer server.Close()
@@ -574,7 +663,132 @@ func TestHandlePatAuthCheck_Rejected(t *testing.T) {
}
}
func TestHandlePatAuthCheck_HostControlledFlowIDPassthrough(t *testing.T) {
tmpDir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", tmpDir)
// Host-owned decision: driven ONLY by DINGTALK_DWS_AGENTCODE.
// DINGTALK_AGENT is set to demonstrate it does NOT leak into
// hostControl.clawType — the open-source build pins that to the
// literal edition.DefaultOSSClawType value ("openClaw").
t.Setenv(authpkg.AgentCodeEnv, "agt-sales")
t.Setenv("DINGTALK_AGENT", "sales-copilot")
mock := &mockRunner{
runFunc: func(ctx context.Context, inv executor.Invocation) (executor.Result, error) {
t.Fatal("runner should not be called in host-controlled PAT mode")
return executor.Result{}, nil
},
}
runner := &runtimeRunner{fallback: mock}
patErr := &apperrors.PATError{RawJSON: makePATErrorJSON("flow-host", "test-client-id")}
ctx := context.Background()
var buf bytes.Buffer
_, err := handlePatAuthCheck(ctx, runner, executor.Invocation{
CanonicalProduct: "test",
Tool: "test_tool",
}, patErr, tmpDir, &buf)
if err == nil {
t.Fatal("expected PATError in host-controlled mode")
}
patOut, ok := err.(*apperrors.PATError)
if !ok {
t.Fatalf("expected *PATError, got %T: %v", err, err)
}
if got := strings.TrimSpace(buf.String()); got != "" {
t.Fatalf("expected no human-readable output in host mode, got %q", got)
}
if _, err := os.Stat(filepath.Join(tmpDir, "app.json")); !os.IsNotExist(err) {
t.Fatalf("host-owned PAT must not persist shared app.json, stat error = %v", err)
}
var payload map[string]any
if err := json.Unmarshal([]byte(patOut.RawJSON), &payload); err != nil {
t.Fatalf("json.Unmarshal(host PAT payload) error = %v\nraw=%s", err, patOut.RawJSON)
}
data, _ := payload["data"].(map[string]any)
if got, _ := data["flowId"].(string); got != "flow-host" {
t.Fatalf("data.flowId = %q, want flow-host", got)
}
hostControl, _ := data["hostControl"].(map[string]any)
if got, _ := hostControl["clawType"].(string); got != "openClaw" {
t.Fatalf("hostControl.clawType = %q, want openClaw (hard-wired by open-source edition)", got)
}
if got, _ := hostControl["callbackOwner"].(string); got != "host" {
t.Fatalf("hostControl.callbackOwner = %q, want host", got)
}
if _, ok := data["callbacks"]; ok {
t.Fatalf("unexpected callbacks contract in host-controlled PAT payload: %#v", data["callbacks"])
}
if _, ok := payload["_meta"]; ok {
t.Fatalf("unexpected _meta contract in host-controlled PAT payload: %#v", payload["_meta"])
}
if strings.Contains(patOut.RawJSON, `"pat","callback"`) {
t.Fatalf("host PAT payload should not advertise dws pat callback argv: %s", patOut.RawJSON)
}
}
func TestHandlePatAuthCheck_HostControlledEmptyFlowID_StillReturnsContract(t *testing.T) {
tmpDir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", tmpDir)
t.Setenv(authpkg.AgentCodeEnv, "agt-support")
t.Setenv("DINGTALK_AGENT", "customer-support")
mock := &mockRunner{
runFunc: func(ctx context.Context, inv executor.Invocation) (executor.Result, error) {
t.Fatal("runner should not be called in host-controlled PAT mode")
return executor.Result{}, nil
},
}
runner := &runtimeRunner{fallback: mock}
patErr := &apperrors.PATError{RawJSON: makePATErrorJSON("", "test-client-id")}
var buf bytes.Buffer
_, err := handlePatAuthCheck(context.Background(), runner, executor.Invocation{
CanonicalProduct: "test",
Tool: "test_tool",
}, patErr, tmpDir, &buf)
if err == nil {
t.Fatal("expected PATError in host-controlled mode")
}
if got := strings.TrimSpace(buf.String()); got != "" {
t.Fatalf("expected no human-readable output in host mode, got %q", got)
}
if _, err := os.Stat(filepath.Join(tmpDir, "app.json")); !os.IsNotExist(err) {
t.Fatalf("host-owned PAT must not persist shared app.json, stat error = %v", err)
}
patOut, ok := err.(*apperrors.PATError)
if !ok {
t.Fatalf("expected *PATError, got %T: %v", err, err)
}
var payload map[string]any
if err := json.Unmarshal([]byte(patOut.RawJSON), &payload); err != nil {
t.Fatalf("json.Unmarshal(host PAT payload) error = %v\nraw=%s", err, patOut.RawJSON)
}
data, _ := payload["data"].(map[string]any)
hostControl, _ := data["hostControl"].(map[string]any)
if got, _ := hostControl["callbackOwner"].(string); got != "host" {
t.Fatalf("hostControl.callbackOwner = %q, want host", got)
}
if _, ok := data["callbacks"]; ok {
t.Fatalf("unexpected callbacks contract when flowId is absent: %#v", data["callbacks"])
}
if _, ok := payload["_meta"]; ok {
t.Fatalf("unexpected _meta contract when flowId is absent: %#v", payload["_meta"])
}
if strings.Contains(patOut.RawJSON, `"pat","callback"`) {
t.Fatalf("host PAT payload should not advertise dws pat callback argv: %s", patOut.RawJSON)
}
}
func TestHandlePatAuthCheck_EmptyFlowID_FallsBackToPATError(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "")
// No poll server needed — empty flowId means no polling, return PATError directly.
tmpDir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", tmpDir)
@@ -603,4 +817,376 @@ func TestHandlePatAuthCheck_EmptyFlowID_FallsBackToPATError(t *testing.T) {
if _, ok := err.(*apperrors.PATError); !ok {
t.Errorf("expected *PATError, got %T: %v", err, err)
}
if got := strings.TrimSpace(buf.String()); got != "" {
t.Fatalf("expected no human-readable output for raw PAT passthrough, got %q", got)
}
}
func TestHandlePatAuthCheck_JSONModeReturnsStructuredPATErrorWithoutRetry(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "")
tmpDir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", tmpDir)
if _, err := pat.SetBrowserPolicy(tmpDir, "", false); err != nil {
t.Fatalf("SetBrowserPolicy(default) error = %v", err)
}
mock := &mockRunner{
runFunc: func(ctx context.Context, inv executor.Invocation) (executor.Result, error) {
t.Fatal("runner should not be called in json PAT mode")
return executor.Result{}, nil
},
}
runner := &runtimeRunner{
fallback: mock,
globalFlags: &GlobalFlags{Format: "json"},
}
patErr := &apperrors.PATError{RawJSON: makePATErrorJSON("flow-json", "test-client-id")}
var buf bytes.Buffer
_, err := handlePatAuthCheck(context.Background(), runner, executor.Invocation{
CanonicalProduct: "test",
Tool: "test_tool",
}, patErr, tmpDir, &buf)
if err == nil {
t.Fatal("expected PATError in json PAT mode")
}
if got := strings.TrimSpace(buf.String()); got != "" {
t.Fatalf("expected no human-readable output in json PAT mode, got %q", got)
}
if _, err := os.Stat(filepath.Join(tmpDir, "app.json")); !os.IsNotExist(err) {
t.Fatalf("json PAT mode must not persist shared app.json, stat error = %v", err)
}
patOut, ok := err.(*apperrors.PATError)
if !ok {
t.Fatalf("expected *PATError, got %T: %v", err, err)
}
var payload map[string]any
if err := json.Unmarshal([]byte(patOut.RawJSON), &payload); err != nil {
t.Fatalf("json.Unmarshal(json PAT payload) error = %v\nraw=%s", err, patOut.RawJSON)
}
data, _ := payload["data"].(map[string]any)
if got, ok := data["openBrowser"].(bool); !ok || got {
t.Fatalf("data.openBrowser = %#v, want false", data["openBrowser"])
}
if _, ok := data["hostControl"]; ok {
t.Fatalf("unexpected data.hostControl in CLI-owned json PAT mode: %s", patOut.RawJSON)
}
}
func TestHandlePatAuthCheck_JSONModeCanOpenBrowserWithoutTextOutput(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "")
tmpDir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", tmpDir)
if _, err := pat.SetBrowserPolicy(tmpDir, "", true); err != nil {
t.Fatalf("SetBrowserPolicy(default) error = %v", err)
}
var opened string
origOpenBrowser := openBrowserFunc
openBrowserFunc = func(rawURL string) error {
opened = rawURL
return nil
}
t.Cleanup(func() { openBrowserFunc = origOpenBrowser })
mock := &mockRunner{
runFunc: func(ctx context.Context, inv executor.Invocation) (executor.Result, error) {
t.Fatal("runner should not be called in json PAT mode")
return executor.Result{}, nil
},
}
runner := &runtimeRunner{
fallback: mock,
globalFlags: &GlobalFlags{Format: "json"},
}
raw := `{"code":"AGENT_CODE_NOT_EXISTS","data":{"desc":"test auth","flowId":"flow-json","uri":"https://example.com/pat","clientId":"test-client-id"}}`
var buf bytes.Buffer
_, err := handlePatAuthCheck(context.Background(), runner, executor.Invocation{
CanonicalProduct: "test",
Tool: "test_tool",
}, &apperrors.PATError{RawJSON: raw}, tmpDir, &buf)
if err == nil {
t.Fatal("expected PATError in json PAT mode")
}
if got := strings.TrimSpace(buf.String()); got != "" {
t.Fatalf("expected no human-readable output in json PAT mode, got %q", got)
}
if _, err := os.Stat(filepath.Join(tmpDir, "app.json")); !os.IsNotExist(err) {
t.Fatalf("json PAT mode must not persist shared app.json, stat error = %v", err)
}
if opened != "https://example.com/pat" {
t.Fatalf("opened url = %q, want https://example.com/pat", opened)
}
}
func TestHandlePatAuthCheck_NonJSONModeRespectsBrowserPolicy(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "")
server, configDir := setupHandlePATServer(t, "APPROVED", "test-auth-code")
defer server.Close()
if _, err := pat.SetBrowserPolicy(configDir, "", false); err != nil {
t.Fatalf("SetBrowserPolicy(default) error = %v", err)
}
var opened bool
origOpenBrowser := openBrowserFunc
openBrowserFunc = func(rawURL string) error {
opened = true
return nil
}
t.Cleanup(func() { openBrowserFunc = origOpenBrowser })
var retryCalled bool
mock := &mockRunner{
runFunc: func(ctx context.Context, inv executor.Invocation) (executor.Result, error) {
retryCalled = true
return executor.Result{Response: map[string]any{"ok": true}}, nil
},
}
runner := &runtimeRunner{
fallback: mock,
globalFlags: &GlobalFlags{Format: "table"},
}
raw := `{"code":"AGENT_CODE_NOT_EXISTS","data":{"desc":"test auth","flowId":"flow-approved","uri":"https://example.com/pat","clientId":"test-client-id"}}`
var buf bytes.Buffer
_, err := handlePatAuthCheck(context.Background(), runner, executor.Invocation{
CanonicalProduct: "test",
Tool: "test_tool",
}, &apperrors.PATError{RawJSON: raw}, configDir, &buf)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if !retryCalled {
t.Fatal("expected retry to still happen in non-json mode")
}
if opened {
t.Fatal("browser should not open when policy disables it")
}
if !strings.Contains(buf.String(), "需要 PAT 授权") {
t.Fatalf("expected human-readable PAT output, got %q", buf.String())
}
}
func TestRetryWithPatAuthRetry_JSONModeReturnsStructuredPATError(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "")
configDir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", configDir)
if _, err := pat.SetBrowserPolicy(configDir, "", false); err != nil {
t.Fatalf("SetBrowserPolicy(default) error = %v", err)
}
mock := &mockRunner{
runFunc: func(ctx context.Context, inv executor.Invocation) (executor.Result, error) {
t.Fatal("runner should not be called in scope json mode")
return executor.Result{}, nil
},
}
runner := &runtimeRunner{
fallback: mock,
globalFlags: &GlobalFlags{Format: "json"},
}
scopeErr := &PatScopeError{
OriginalError: "missing required scope(s): mail:send",
Identity: "user",
ErrorType: "missing_scope",
Message: "missing required scope(s): mail:send",
Hint: "run `dws auth login --scope \"mail:send\"` to authorize the missing scope",
MissingScope: "mail:send",
}
var buf bytes.Buffer
_, err := retryWithPatAuthRetry(context.Background(), runner, executor.Invocation{}, scopeErr, configDir, &buf)
if err == nil {
t.Fatal("expected PATError")
}
if got := strings.TrimSpace(buf.String()); got != "" {
t.Fatalf("expected no human-readable output in json scope mode, got %q", got)
}
patOut, ok := err.(*apperrors.PATError)
if !ok {
t.Fatalf("expected *PATError, got %T: %v", err, err)
}
var payload map[string]any
if err := json.Unmarshal([]byte(patOut.RawJSON), &payload); err != nil {
t.Fatalf("json.Unmarshal(scope PAT payload) error = %v\nraw=%s", err, patOut.RawJSON)
}
data, _ := payload["data"].(map[string]any)
if got, ok := data["openBrowser"].(bool); !ok || got {
t.Fatalf("data.openBrowser = %#v, want false", data["openBrowser"])
}
if _, ok := data["hostControl"]; ok {
t.Fatalf("unexpected data.hostControl in CLI-owned json scope mode: %s", patOut.RawJSON)
}
}
// TestEnrichPATErrorForHostControl_SingleLineOutput locks in the wire
// invariant: the enriched host-controlled PAT payload must be single-line
// (no embedded newlines, no indentation), so stderr-line-scanning hosts
// stay correct. Regression guard against accidental reintroduction of
// json.MarshalIndent.
func TestEnrichPATErrorForHostControl_SingleLineOutput(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "agt-sales")
t.Setenv("DINGTALK_AGENT", "sales-copilot")
raw := `{"success":false,"code":"PAT_LOW_RISK_NO_PERMISSION","data":{"flowId":"flow-1","desc":"授权","callbacks":["cb1","cb2"]}}`
out := enrichPATErrorForHostControl(raw)
if strings.Contains(out, "\n") {
t.Fatalf("enrichPATErrorForHostControl output must be single-line, got embedded newline:\n%s", out)
}
if strings.HasPrefix(out, " ") || strings.HasPrefix(out, "\t") {
t.Fatalf("enrichPATErrorForHostControl output must not be indented, got leading whitespace: %q", out)
}
var parsed map[string]any
if err := json.Unmarshal([]byte(out), &parsed); err != nil {
t.Fatalf("single-line output must round-trip via json.Unmarshal: %v\nraw=%s", err, out)
}
data, _ := parsed["data"].(map[string]any)
hostControl, _ := data["hostControl"].(map[string]any)
if hostControl == nil {
t.Fatalf("expected data.hostControl injection, got: %s", out)
}
if got, _ := hostControl["callbackOwner"].(string); got != "host" {
t.Fatalf("hostControl.callbackOwner = %q, want host", got)
}
if _, ok := data["callbacks"]; ok {
t.Fatalf("expected callbacks to be stripped in host-owned contract, got: %v", data["callbacks"])
}
}
// TestBuildPATScopeHostJSON_SingleLineOutput mirrors the above regression
// for the scope-error branch (PAT_SCOPE_AUTH_REQUIRED emission).
func TestBuildPATScopeHostJSON_SingleLineOutput(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "agt-support")
t.Setenv("DINGTALK_AGENT", "customer-support")
scopeErr := &PatScopeError{
OriginalError: "missing required scope(s): mail:send",
Identity: "user",
ErrorType: "missing_scope",
Message: "missing required scope(s): mail:send",
Hint: "run `dws auth login --scope \"mail:send\"` to authorize",
MissingScope: "mail:send",
}
out := buildPATScopeJSON(scopeErr, true)
if strings.Contains(out, "\n") {
t.Fatalf("buildPATScopeJSON(host) output must be single-line, got embedded newline:\n%s", out)
}
if strings.HasPrefix(out, " ") || strings.HasPrefix(out, "\t") {
t.Fatalf("buildPATScopeJSON(host) output must not be indented, got leading whitespace: %q", out)
}
var parsed map[string]any
if err := json.Unmarshal([]byte(out), &parsed); err != nil {
t.Fatalf("single-line output must round-trip via json.Unmarshal: %v\nraw=%s", err, out)
}
if code, _ := parsed["code"].(string); code != "PAT_SCOPE_AUTH_REQUIRED" {
t.Errorf("code = %q, want PAT_SCOPE_AUTH_REQUIRED", code)
}
}
func TestRetryWithPatAuthRetry_HostControlledReturnsJSON(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "agt-support")
t.Setenv("DINGTALK_AGENT", "customer-support")
scopeErr := &PatScopeError{
OriginalError: "missing required scope(s): mail:send",
Identity: "user",
ErrorType: "missing_scope",
Message: "missing required scope(s): mail:send",
Hint: "run `dws auth login --scope \"mail:send\"` to authorize the missing scope",
MissingScope: "mail:send",
}
mock := &mockRunner{
runFunc: func(ctx context.Context, inv executor.Invocation) (executor.Result, error) {
t.Fatal("runner should not be called in host-controlled scope mode")
return executor.Result{}, nil
},
}
var buf bytes.Buffer
_, err := retryWithPatAuthRetry(context.Background(), mock, executor.Invocation{}, scopeErr, t.TempDir(), &buf)
if err == nil {
t.Fatal("expected PATError")
}
if got := strings.TrimSpace(buf.String()); got != "" {
t.Fatalf("expected no human-readable output, got %q", got)
}
patErr, ok := err.(*apperrors.PATError)
if !ok {
t.Fatalf("expected *PATError, got %T: %v", err, err)
}
var payload map[string]any
if err := json.Unmarshal([]byte(patErr.RawJSON), &payload); err != nil {
t.Fatalf("json.Unmarshal(scope host payload) error = %v\nraw=%s", err, patErr.RawJSON)
}
if got, _ := payload["code"].(string); got != "PAT_SCOPE_AUTH_REQUIRED" {
t.Fatalf("code = %q, want PAT_SCOPE_AUTH_REQUIRED", got)
}
data, _ := payload["data"].(map[string]any)
if got, _ := data["missingScope"].(string); got != "mail:send" {
t.Fatalf("missingScope = %q, want mail:send", got)
}
hostControl, _ := data["hostControl"].(map[string]any)
if got, _ := hostControl["callbackOwner"].(string); got != "host" {
t.Fatalf("hostControl.callbackOwner = %q, want host", got)
}
if _, ok := data["callbacks"]; ok {
t.Fatalf("unexpected callbacks contract in PAT scope host payload: %#v", data["callbacks"])
}
if strings.Contains(patErr.RawJSON, `"pat","callback"`) {
t.Fatalf("scope host payload should not advertise dws pat callback argv: %s", patErr.RawJSON)
}
}
func TestHandlePatAuthCheck_OpensOpaqueURIWithoutRebuild(t *testing.T) {
t.Setenv(authpkg.AgentCodeEnv, "")
server, configDir := setupHandlePATServer(t, "APPROVED", "test-auth-code")
defer server.Close()
rawURI := "https://open-dev.dingtalk.com/fe/old?hash=%23%2FpersonalAuthorization%3FflowId%3D50dff7654b7444e88ced7489b07cce8d%26userCode%3DQ8RY-X6E9#/personalAuthorization?flowId=50dff7654b7444e88ced7489b07cce8d&userCode=Q8RY-X6E9"
var opened string
origOpenBrowser := openBrowserFunc
openBrowserFunc = func(rawURL string) error {
opened = rawURL
return nil
}
t.Cleanup(func() { openBrowserFunc = origOpenBrowser })
var retryCalled bool
mock := &mockRunner{
runFunc: func(ctx context.Context, inv executor.Invocation) (executor.Result, error) {
retryCalled = true
return executor.Result{Response: map[string]any{"ok": true}}, nil
},
}
runner := &runtimeRunner{fallback: mock}
patErr := &apperrors.PATError{RawJSON: makePATErrorJSONWithURI("flow-opaque", "test-client-id", rawURI)}
var buf bytes.Buffer
_, err := handlePatAuthCheck(context.Background(), runner, executor.Invocation{
CanonicalProduct: "test",
Tool: "test_tool",
}, patErr, configDir, &buf)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if !retryCalled {
t.Fatal("expected retry to run after approved PAT flow")
}
if opened != rawURI {
t.Fatalf("opened url = %q, want verbatim %q", opened, rawURI)
}
}
+62
View File
@@ -0,0 +1,62 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
authpkg "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/auth"
apperrors "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/errors"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/pat"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
// init wires the PAT classifier's hostControl injection hook. This
// guarantees cleanPATJSON emits data.hostControl in host-owned mode
// regardless of whether the PAT error was surfaced via the active retry
// path or the passive classifier path.
//
// Decision rule:
// - Host-owned is triggered iff DINGTALK_DWS_AGENTCODE is non-empty.
// - When triggered, `clawType` in the emitted hostControl block MUST
// be the exact value the CLI actually injects on the wire into the
// `claw-type` HTTP header. The open-source build pins that to
// edition.DefaultOSSClawType ("openClaw") unconditionally — there
// is no per-spawn env override.
// - When DINGTALK_DWS_AGENTCODE is empty the provider returns "" so
// HostControlBlock yields nil and no hostControl block is emitted.
func init() {
apperrors.SetHostControlProvider(hostControlProviderFromEnv)
apperrors.SetPATOpenBrowserProvider(func() bool {
return pat.EffectiveOpenBrowser(defaultConfigDir())
})
}
func hostControlProviderFromEnv() string {
if !authpkg.HostOwnsPATFlow() {
return ""
}
return effectiveClawType()
}
// effectiveClawType returns the literal value that MergeHeaders will
// inject into outbound `claw-type` headers. Going through the edition
// hook (instead of a hard-coded constant) keeps this site correct for
// downstream editions that override MergeHeaders.
func effectiveClawType() string {
if h := edition.Get(); h != nil && h.MergeHeaders != nil {
if v, ok := h.MergeHeaders(map[string]string{})["claw-type"]; ok && v != "" {
return v
}
}
return edition.DefaultOSSClawType
}
+206
View File
@@ -0,0 +1,206 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"encoding/json"
"log/slog"
"os"
"path/filepath"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cache"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/compat"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/plugin"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/transport"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/config"
"github.com/spf13/cobra"
)
// resolveStdioOverlay resolves the CLIOverlay for a stdio plugin server
// from its manifest. It supports two forms:
//
// 1. inline JSON object in manifest.MCPServers[key].CLI
// 2. a relative file path (JSON string) pointing to an external overlay
// file anchored at the plugin root (e.g. "overlay.json")
//
// When no CLI metadata is present, a minimal overlay keyed by the server
// name is returned so callers can still build an identity descriptor.
func resolveStdioOverlay(p *plugin.Plugin, sc plugin.StdioServerClient) market.CLIOverlay {
serverID := sc.Key
overlay := market.CLIOverlay{
ID: serverID,
Command: serverID,
}
srv, ok := p.Manifest.MCPServers[sc.Key]
if !ok || len(srv.CLI) == 0 {
return overlay
}
cliData := srv.CLI
// A JSON string is interpreted as a relative path to an external
// overlay file (e.g. "overlay.json") anchored at the plugin root.
if len(cliData) > 0 && cliData[0] == '"' {
var cliPath string
if err := json.Unmarshal(cliData, &cliPath); err == nil && cliPath != "" {
absPath := filepath.Join(p.Root, cliPath)
if fileData, readErr := os.ReadFile(absPath); readErr == nil {
cliData = fileData
} else {
slog.Warn("plugin: failed to read CLI overlay file",
"plugin", p.Manifest.Name, "path", absPath, "error", readErr)
}
}
}
if err := json.Unmarshal(cliData, &overlay); err != nil {
slog.Warn("plugin: failed to parse CLI overlay for stdio server",
"plugin", p.Manifest.Name, "server", sc.Key, "error", err)
}
if overlay.ID == "" {
overlay.ID = serverID
}
if overlay.Command == "" {
overlay.Command = serverID
}
return overlay
}
// toolsToDetails converts discovered ToolDescriptors to the DetailTool map
// shape expected by compat.BuildDynamicCommands (keyed by overlay ID).
// Returns nil if tools is empty.
func toolsToDetails(tools []transport.ToolDescriptor, overlayID string) map[string][]market.DetailTool {
if len(tools) == 0 {
return nil
}
detailTools := make([]market.DetailTool, 0, len(tools))
for _, tool := range tools {
schemaJSON := ""
if tool.InputSchema != nil {
if data, marshalErr := json.Marshal(tool.InputSchema); marshalErr == nil {
schemaJSON = string(data)
}
}
detailTools = append(detailTools, market.DetailTool{
ToolName: tool.Name,
ToolTitle: tool.Title,
ToolDesc: tool.Description,
IsSensitive: tool.Sensitive,
ToolRequest: schemaJSON,
})
}
return map[string][]market.DetailTool{overlayID: detailTools}
}
// registerStdioServerFromOverlay builds cobra commands for a stdio plugin
// server using only its manifest + overlay.json — no subprocess required.
//
// Returns (cmds, descriptor, true) when the overlay carries toolOverrides,
// otherwise (nil, zero, false) so the caller can fall back to discovery-first
// registration (legacy path).
//
// When a warm tools cache exists for this server, its DetailTools are passed
// to BuildDynamicCommands so flag types are enriched from the last successful
// discovery. Fresh installs (or evicted caches) get overlay-declared flags
// only; the next startup after a successful refresh picks up the full schema.
func registerStdioServerFromOverlay(
p *plugin.Plugin,
sc plugin.StdioServerClient,
runner executor.Runner,
store *cache.Store,
) ([]*cobra.Command, market.ServerDescriptor, bool) {
overlay := resolveStdioOverlay(p, sc)
if len(overlay.ToolOverrides) == 0 {
return nil, market.ServerDescriptor{}, false
}
descriptor := market.ServerDescriptor{
Key: sc.Key,
DisplayName: p.Manifest.Name + "/" + sc.Key,
Description: p.Manifest.Description,
Endpoint: StdioEndpoint(p.Manifest.Name, sc.Key),
Source: "plugin",
CLI: overlay,
HasCLIMeta: true,
}
AppendDynamicServer(descriptor)
RegisterStdioClient(p.Manifest.Name+"/"+sc.Key, sc.Client)
// Warm-cache enrichment: if a prior successful discovery wrote a
// non-empty tool list, use its schema to enrich flag types.
var detailsByID map[string][]market.DetailTool
if store != nil {
cacheKey := pluginCacheKey(p.Manifest.Name, sc.Key)
if snapshot, _, err := store.LoadTools(config.DefaultPartition, cacheKey); err == nil && len(snapshot.Tools) > 0 {
detailsByID = toolsToDetails(snapshot.Tools, overlay.ID)
}
}
cmds := compat.BuildDynamicCommands(
[]market.ServerDescriptor{descriptor}, runner, detailsByID)
slog.Debug("plugin: stdio server registered from overlay",
"plugin", p.Manifest.Name, "server", sc.Key,
"toolOverrides", len(overlay.ToolOverrides),
"commands", len(cmds),
"enriched", detailsByID != nil)
return cmds, descriptor, true
}
// refreshStdioToolsCache performs Initialize + ListTools on a stdio plugin
// subprocess and persists the result so the next startup can enrich
// overlay-registered commands with typed flags. It never constructs cobra
// commands; command registration has already happened synchronously from
// the overlay before this function runs.
//
// On failure (subprocess not ready, RPC timeout, empty tool list) it skips
// SaveTools entirely so a transient error cannot poison the warm cache
// with a null-tools snapshot.
func refreshStdioToolsCache(
p *plugin.Plugin,
sc plugin.StdioServerClient,
store *cache.Store,
timeouts pluginColdTimeouts,
) {
if store == nil {
return
}
tools := discoverStdioTools(p, sc, timeouts)
if len(tools) == 0 {
slog.Debug("plugin: stdio cache refresh skipped (no tools)",
"plugin", p.Manifest.Name, "server", sc.Key)
return
}
cacheKey := pluginCacheKey(p.Manifest.Name, sc.Key)
if err := store.SaveTools(config.DefaultPartition, cacheKey, cache.ToolsSnapshot{
ServerKey: cacheKey,
Tools: tools,
}); err != nil {
slog.Warn("plugin: failed to persist stdio tools cache",
"plugin", p.Manifest.Name, "server", sc.Key, "error", err)
return
}
slog.Debug("plugin: stdio tools cache refreshed",
"plugin", p.Manifest.Name, "server", sc.Key, "tools", len(tools))
}
// hasOverlayToolOverrides reports whether a stdio plugin server carries
// enough CLI metadata to be registered via the overlay-first path. Used by
// loadPlugins to split entries into overlay-first vs. legacy discovery-first
// buckets without doing the overlay parse twice.
func hasOverlayToolOverrides(p *plugin.Plugin, sc plugin.StdioServerClient) bool {
return len(resolveStdioOverlay(p, sc).ToolOverrides) > 0
}
+398
View File
@@ -0,0 +1,398 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"encoding/json"
"testing"
"time"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cache"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/plugin"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/transport"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/config"
"github.com/spf13/cobra"
)
// withCleanStdioRegistry snapshots and restores the package-level stdio
// client registry so tests that call RegisterStdioClient don't leak state
// across cases.
func withCleanStdioRegistry(t *testing.T) {
t.Helper()
stdioMu.Lock()
prev := stdioClients
stdioClients = make(map[string]*transport.StdioClient)
stdioMu.Unlock()
t.Cleanup(func() {
stdioMu.Lock()
stdioClients = prev
stdioMu.Unlock()
})
}
// newOverlayFixture constructs a plugin + stdio entry carrying an inline
// CLIOverlay with the given tool-override map. The stdio client is created
// but never started, since the overlay-first path does not require the
// subprocess to be running for command registration.
func newOverlayFixture(t *testing.T, pluginName, serverKey string, overlay market.CLIOverlay) (*plugin.Plugin, plugin.StdioServerClient) {
t.Helper()
raw, err := json.Marshal(overlay)
if err != nil {
t.Fatalf("marshal overlay: %v", err)
}
p := &plugin.Plugin{
Manifest: plugin.Manifest{
Name: pluginName,
Version: "1.0.0",
Description: pluginName + " plugin",
MCPServers: map[string]*plugin.MCPServer{
serverKey: {
Type: "stdio",
Command: "/usr/bin/true", // never executed by overlay-first path
CLI: raw,
},
},
},
Root: t.TempDir(),
}
sc := plugin.StdioServerClient{
Key: serverKey,
Client: transport.NewStdioClient("/usr/bin/true", nil, nil),
}
return p, sc
}
// TestRegisterStdioServerFromOverlay_NoDiscoveryStillBuildsCommands verifies
// the core promise of the overlay-first path: when overlay.json ships
// ToolOverrides, commands appear immediately — no subprocess probe.
func TestRegisterStdioServerFromOverlay_NoDiscoveryStillBuildsCommands(t *testing.T) {
withCleanDynamicRegistry(t)
withCleanStdioRegistry(t)
overlay := market.CLIOverlay{
ID: "conference-local",
Command: "conference-local",
Groups: map[string]market.CLIGroupDef{
"meeting": {Description: "会议控制"},
"member": {Description: "成员管理"},
},
ToolOverrides: map[string]market.CLIToolOverride{
"create_meeting": {CLIName: "create", Group: "meeting", Description: "Create a meeting"},
"end_meeting": {CLIName: "end", Group: "meeting", Description: "End a meeting"},
"mute_member": {CLIName: "mute", Group: "member", Description: "Mute a member"},
},
}
p, sc := newOverlayFixture(t, "conference-local", "conference-local", overlay)
store := cache.NewStore(t.TempDir())
cmds, desc, ok := registerStdioServerFromOverlay(p, sc, executor.EchoRunner{}, store)
if !ok {
t.Fatal("registerStdioServerFromOverlay returned ok=false, want true")
}
if len(cmds) == 0 {
t.Fatal("registerStdioServerFromOverlay returned 0 commands, want >=1")
}
var root *struct{ name, path string }
_ = root
found := false
for _, c := range cmds {
if c.Name() == "conference-local" {
found = true
// Groups must be attached as sub-commands.
groups := map[string]bool{}
for _, sub := range c.Commands() {
groups[sub.Name()] = true
}
if !groups["meeting"] {
t.Errorf("missing 'meeting' group sub-command, children = %v", groups)
}
if !groups["member"] {
t.Errorf("missing 'member' group sub-command, children = %v", groups)
}
}
}
if !found {
names := []string{}
for _, c := range cmds {
names = append(names, c.Name())
}
t.Fatalf("missing top-level 'conference-local' command, got %v", names)
}
// AppendDynamicServer registration: product ID should land in
// DirectRuntimeProductIDs so hideNonDirectRuntimeCommands keeps it
// visible even under a restrictive VisibleProducts hook.
if !DirectRuntimeProductIDs()["conference-local"] {
t.Error("DirectRuntimeProductIDs missing 'conference-local'")
}
// RegisterStdioClient side-effect: the runtime must be able to look up
// the StdioClient when the endpoint is invoked later.
if _, ok := LookupStdioClient("conference-local/conference-local"); !ok {
t.Error("LookupStdioClient missing conference-local/conference-local")
}
if desc.Endpoint != StdioEndpoint("conference-local", "conference-local") {
t.Errorf("descriptor.Endpoint = %q, want %q", desc.Endpoint, StdioEndpoint("conference-local", "conference-local"))
}
}
// TestRegisterStdioServerFromOverlay_WarmCacheEnrichesFlags pre-populates the
// tools cache with a schema-bearing DetailTool and asserts the resulting
// leaf command picks up the typed flag derived from InputSchema.
func TestRegisterStdioServerFromOverlay_WarmCacheEnrichesFlags(t *testing.T) {
withCleanDynamicRegistry(t)
withCleanStdioRegistry(t)
overlay := market.CLIOverlay{
ID: "cache-plugin",
Command: "cache-plugin",
ToolOverrides: map[string]market.CLIToolOverride{
"echo": {CLIName: "echo", Description: "Echo input"},
},
}
p, sc := newOverlayFixture(t, "cache-plugin", "cache-plugin", overlay)
store := cache.NewStore(t.TempDir())
cacheKey := pluginCacheKey(p.Manifest.Name, sc.Key)
if err := store.SaveTools(config.DefaultPartition, cacheKey, cache.ToolsSnapshot{
SavedAt: time.Now().UTC(),
ServerKey: cacheKey,
Tools: []transport.ToolDescriptor{
{
Name: "echo",
Description: "Echo the input",
InputSchema: map[string]any{
"type": "object",
"properties": map[string]any{
"message": map[string]any{"type": "string"},
},
"required": []any{"message"},
},
},
},
}); err != nil {
t.Fatalf("SaveTools: %v", err)
}
cmds, _, ok := registerStdioServerFromOverlay(p, sc, executor.EchoRunner{}, store)
if !ok || len(cmds) == 0 {
t.Fatalf("overlay registration failed: ok=%v cmds=%d", ok, len(cmds))
}
var echoLeaf *leafMatch
for _, top := range cmds {
if top.Name() != "cache-plugin" {
continue
}
for _, sub := range top.Commands() {
if sub.Name() == "echo" {
echoLeaf = &leafMatch{name: sub.Name(), hasFlag: sub.Flags().Lookup("message") != nil}
}
}
}
if echoLeaf == nil {
t.Fatal("missing 'echo' leaf command under 'cache-plugin'")
}
if !echoLeaf.hasFlag {
t.Error("warm-cache enrichment did not wire --message flag from InputSchema")
}
}
type leafMatch struct {
name string
hasFlag bool
}
// TestRegisterStdioServerFromOverlay_OverlayWithoutOverridesReturnsFalse
// asserts the fallback contract: when overlay.json is missing toolOverrides,
// the overlay-first path declines so the caller can route the entry through
// the legacy discovery-first registerStdioServer.
func TestRegisterStdioServerFromOverlay_OverlayWithoutOverridesReturnsFalse(t *testing.T) {
withCleanDynamicRegistry(t)
withCleanStdioRegistry(t)
// Overlay with no ToolOverrides (simulates a plugin that relies entirely
// on runtime discovery for its tool list).
overlay := market.CLIOverlay{
ID: "legacy-plugin",
Command: "legacy-plugin",
}
p, sc := newOverlayFixture(t, "legacy-plugin", "legacy-plugin", overlay)
store := cache.NewStore(t.TempDir())
cmds, _, ok := registerStdioServerFromOverlay(p, sc, executor.EchoRunner{}, store)
if ok {
t.Errorf("registerStdioServerFromOverlay ok=true for empty toolOverrides; want false")
}
if cmds != nil {
t.Errorf("cmds = %v, want nil", cmds)
}
if DirectRuntimeProductIDs()["legacy-plugin"] {
t.Error("legacy-plugin must NOT be appended to dynamic registry in fallback case")
}
if _, found := LookupStdioClient("legacy-plugin/legacy-plugin"); found {
t.Error("stdio client must NOT be registered in fallback case")
}
}
// TestRefreshStdioToolsCache_FailurePreservesCache guards against the
// "negative cache poisoning" bug: if discovery fails (subprocess not ready,
// timeout, empty tool list), the existing warm cache must remain intact so
// the next startup still enriches flags from the last good snapshot.
func TestRefreshStdioToolsCache_FailurePreservesCache(t *testing.T) {
withCleanDynamicRegistry(t)
withCleanStdioRegistry(t)
p, sc := newOverlayFixture(t, "refresh-plugin", "refresh-plugin", market.CLIOverlay{
ID: "refresh-plugin",
Command: "refresh-plugin",
})
store := cache.NewStore(t.TempDir())
cacheKey := pluginCacheKey(p.Manifest.Name, sc.Key)
goodSnapshot := cache.ToolsSnapshot{
SavedAt: time.Now().UTC(),
ServerKey: cacheKey,
Tools: []transport.ToolDescriptor{
{
Name: "ping",
Description: "Health check",
InputSchema: map[string]any{"type": "object"},
},
},
}
if err := store.SaveTools(config.DefaultPartition, cacheKey, goodSnapshot); err != nil {
t.Fatalf("seed SaveTools: %v", err)
}
// /usr/bin/true exits immediately, so Initialize + ListTools will fail
// (no MCP handshake). discoverStdioTools returns nil → refresh must be
// a no-op and must NOT overwrite the good cache with a null snapshot.
refreshStdioToolsCache(p, sc, store, pluginColdTimeouts{stdio: 200 * time.Millisecond})
got, _, err := store.LoadTools(config.DefaultPartition, cacheKey)
if err != nil {
t.Fatalf("LoadTools after failed refresh: %v", err)
}
if len(got.Tools) != 1 || got.Tools[0].Name != "ping" {
t.Errorf("warm cache was overwritten by failed refresh: %+v", got.Tools)
}
}
// TestLoadPlugins_OverlayFirstVisibleBeforeDiscovery is an integration-style
// test for the loadPlugins split decision: stdio plugins whose overlay ships
// ToolOverrides must have their commands visible on the root immediately,
// WITHOUT waiting on any discovery handshake. It drives the same sequence
// loadPlugins uses (registerStdioServerFromOverlay → root.AddCommand →
// hideNonDirectRuntimeCommands) and asserts the plugin command survives the
// visibility filter even when no discovery has run.
func TestLoadPlugins_OverlayFirstVisibleBeforeDiscovery(t *testing.T) {
withCleanDynamicRegistry(t)
withCleanStdioRegistry(t)
// Simulate a wukong-like edition that declares a static VisibleProducts
// whitelist NOT containing our plugin. This is the exact scenario where
// the original bug surfaced.
overrideVisibleProducts(t, []string{"calendar", "doc"})
overlay := market.CLIOverlay{
ID: "conference-local",
Command: "conference-local",
ToolOverrides: map[string]market.CLIToolOverride{
"create_meeting": {CLIName: "create", Description: "Create a meeting"},
},
}
p, sc := newOverlayFixture(t, "conference-local", "conference-local", overlay)
// No discovery runs — no cache seeded. This mirrors a cold-start where
// the subprocess is unavailable (or just slow) yet the user expects
// `dws --help` to still list the plugin.
store := cache.NewStore(t.TempDir())
cmds, _, ok := registerStdioServerFromOverlay(p, sc, executor.EchoRunner{}, store)
if !ok {
t.Fatal("registerStdioServerFromOverlay returned ok=false")
}
root := &cobra.Command{Use: "dws"}
// Also add a sibling command that is NOT a registered product so we can
// prove the visibility filter still hides non-product commands.
bogus := &cobra.Command{Use: "bogus-not-a-product"}
root.AddCommand(bogus)
for _, c := range cmds {
root.AddCommand(c)
}
hideNonDirectRuntimeCommands(root)
var pluginCmd *cobra.Command
for _, c := range root.Commands() {
if c.Name() == "conference-local" {
pluginCmd = c
}
}
if pluginCmd == nil {
t.Fatal("conference-local missing from root after overlay-first registration")
}
if pluginCmd.Hidden {
t.Error("conference-local must stay visible (Hidden=false) after hideNonDirectRuntimeCommands")
}
if !bogus.Hidden {
t.Error("bogus-not-a-product must be hidden by the visibility filter")
}
services := visibleMCPRootCommands(root)
if !containsCommand(services, "conference-local") {
t.Errorf("visibleMCPRootCommands missing conference-local: %v", commandNames(services))
}
}
// TestHasOverlayToolOverrides exercises the split-decision helper used by
// loadPlugins to route stdio entries to overlay-first vs. legacy buckets.
func TestHasOverlayToolOverrides(t *testing.T) {
cases := []struct {
name string
overlay market.CLIOverlay
want bool
}{
{
name: "empty overlay",
overlay: market.CLIOverlay{ID: "x", Command: "x"},
want: false,
},
{
name: "overlay with overrides",
overlay: market.CLIOverlay{
ID: "x",
Command: "x",
ToolOverrides: map[string]market.CLIToolOverride{
"foo": {CLIName: "foo"},
},
},
want: true,
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
p, sc := newOverlayFixture(t, "x", "x", tc.overlay)
got := hasOverlayToolOverrides(p, sc)
if got != tc.want {
t.Errorf("hasOverlayToolOverrides = %v, want %v", got, tc.want)
}
})
}
}
+50
View File
@@ -0,0 +1,50 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"net/http"
"reflect"
"testing"
"time"
)
// TestIPv4HTTPClientHonoursHTTPProxyEnv guards the fix for #236 on the
// IPv4-forcing client used by the legacy registry / discovery path. The
// custom Transport overrides DialContext to force IPv4 — without an
// explicit Proxy field it would also drop env-var proxy support.
//
// We can't reliably invoke tr.Proxy(req) here because http.ProxyFromEnvironment
// memoises the env vars on first call (Go's envProxyOnce); ordering with other
// tests that read proxy env early would make this flaky. Asserting that the
// Transport's Proxy func points at http.ProxyFromEnvironment is sufficient to
// catch the regression — the runtime takes care of reading HTTP_PROXY/HTTPS_PROXY
// at process boot.
func TestIPv4HTTPClientHonoursHTTPProxyEnv(t *testing.T) {
t.Parallel()
client := ipv4HTTPClient(5 * time.Second)
tr, ok := client.Transport.(*http.Transport)
if !ok {
t.Fatalf("ipv4HTTPClient transport is %T, want *http.Transport", client.Transport)
}
if tr.Proxy == nil {
t.Fatal("ipv4HTTPClient transport.Proxy is nil — HTTP_PROXY env will be ignored (regression of #236)")
}
wantPC := reflect.ValueOf(http.ProxyFromEnvironment).Pointer()
gotPC := reflect.ValueOf(tr.Proxy).Pointer()
if gotPC != wantPC {
t.Errorf("ipv4HTTPClient transport.Proxy is not http.ProxyFromEnvironment — env-var proxy may not be honoured (regression of #236)")
}
}
+64 -82
View File
@@ -290,6 +290,7 @@ func NewRootCommandWithEngine(rootCtx context.Context, engine *pipeline.Engine)
utilityCommands := []*cobra.Command{
newAuthCommand(),
newAPICommand(flags),
newSkillCommand(),
newCacheCommand(),
newConfigCommand(),
@@ -420,20 +421,25 @@ func newCacheCommand() *cobra.Command {
if err != nil {
return apperrors.NewInternal("failed to read cache refresh flags")
}
baseURL := DiscoveryBaseURL()
store := cacheStoreFromEnv()
transportClient := transport.NewClient(nil)
transportClient.AuthToken = resolveRuntimeAuthToken(cmd.Context(), "")
// Market client here is only a fallback for Detail API calls inside
// DiscoverAllRuntime; the primary server-list fetch below goes
// through fetchRegistryServers so edition DiscoveryURL wins.
service := discovery.NewService(
market.NewClient(baseURL, nil),
market.NewClient(DiscoveryBaseURL(), nil),
transportClient,
store,
)
servers, err := service.DiscoverServers(cmd.Context())
resp, err := fetchRegistryServers(cmd.Context(), ipv4HTTPClient(config.HTTPTimeout))
if err != nil {
return err
return apperrors.NewDiscovery(fmt.Sprintf("cache refresh: fetch server list failed: %v", err))
}
servers := market.NormalizeServers(resp, "live_market")
_ = store.SaveRegistry(service.CachePartition(), cache.RegistrySnapshot{Servers: servers})
selected := selectServersForProduct(servers, product)
if strings.TrimSpace(product) != "" && len(selected) == 0 {
@@ -650,18 +656,10 @@ func newMCPCommand(ctx context.Context, loader cli.CatalogLoader, runner executo
// Public utility commands (auth, cache, completion, version) are always kept
// visible; explicitly hidden commands stay hidden.
func hideNonDirectRuntimeCommands(root *cobra.Command) {
var allowedProducts map[string]bool
if fn := edition.Get().VisibleProducts; fn != nil {
products := fn()
allowedProducts = make(map[string]bool, len(products))
for _, p := range products {
allowedProducts[p] = true
}
} else {
allowedProducts = DirectRuntimeProductIDs()
}
allowedProducts := resolveVisibleProducts()
staticCommands := map[string]bool{
"auth": true,
"api": true,
"cache": true,
"config": true,
"doctor": true,
@@ -693,7 +691,7 @@ func hideNonDirectRuntimeCommands(root *cobra.Command) {
// not override. This protects core CLI functionality from being hijacked
// by a malicious or misconfigured plugin.
var reservedCommands = map[string]bool{
"auth": true, "login": true, "logout": true,
"auth": true, "api": true, "login": true, "logout": true,
"plugin": true, "skill": true, "cache": true,
"config": true, "doctor": true, "completion": true,
"recovery": true, "upgrade": true, "version": true,
@@ -1157,11 +1155,31 @@ func loadPlugins(engine *pipeline.Engine, runner executor.Runner) []*cobra.Comma
sharedStore := cacheStoreFromEnv()
coldTimeouts := resolvePluginColdTimeouts()
// Fan out HTTP and stdio discovery in parallel. Each goroutine resolves
// its cache hit locally (no network) or runs a bounded cold-path probe.
// Wall-clock cost ≈ max(individual plugin latencies), not the sum.
// Phase A: stdio overlay-first registration (synchronous, no I/O).
// Plugins whose overlay.json declares ToolOverrides register their full
// command tree up-front from manifest metadata alone — no subprocess
// handshake required. This fixes the "discovery fails → no commands
// ever appear" lock-out and keeps `dws --help` reliable even when the
// underlying MCP server is temporarily unavailable.
var legacyStdioEntries []stdioEntry
for _, e := range stdioEntries {
cmds, _, ok := registerStdioServerFromOverlay(e.plugin, e.sc, runner, sharedStore)
if !ok {
legacyStdioEntries = append(legacyStdioEntries, e)
continue
}
pluginCmds = append(pluginCmds, cmds...)
}
// Phase B: fan out discovery in parallel.
// - HTTP plugins: same behaviour as before (discovery-first).
// - stdio overlay-first plugins: async cache refresh only; their
// commands are already registered. Failures are non-fatal and do
// NOT poison the warm-cache with a null-tools snapshot.
// - stdio legacy plugins (overlay without toolOverrides): preserve
// the old discovery-first path for backwards compatibility.
httpResults := make([][]*cobra.Command, len(httpServers))
stdioResults := make([][]*cobra.Command, len(stdioEntries))
legacyStdioResults := make([][]*cobra.Command, len(legacyStdioEntries))
var wg sync.WaitGroup
for i, ps := range httpServers {
wg.Add(1)
@@ -1170,18 +1188,30 @@ func loadPlugins(engine *pipeline.Engine, runner executor.Runner) []*cobra.Comma
httpResults[idx] = registerHTTPServer(ps.plugin, ps.srv, tc, runner, sharedStore, coldTimeouts)
}(i, ps)
}
for i, e := range stdioEntries {
// overlay-first stdio: async refresh (no command building here).
for _, e := range stdioEntries {
if !hasOverlayToolOverrides(e.plugin, e.sc) {
continue
}
wg.Add(1)
go func(e stdioEntry) {
defer wg.Done()
refreshStdioToolsCache(e.plugin, e.sc, sharedStore, coldTimeouts)
}(e)
}
// legacy stdio: discovery-first (commands depend on tool list).
for i, e := range legacyStdioEntries {
wg.Add(1)
go func(idx int, e stdioEntry) {
defer wg.Done()
stdioResults[idx] = registerStdioServer(e.plugin, e.sc, runner, sharedStore, coldTimeouts)
legacyStdioResults[idx] = registerStdioServer(e.plugin, e.sc, runner, sharedStore, coldTimeouts)
}(i, e)
}
wg.Wait()
for _, cmds := range httpResults {
pluginCmds = append(pluginCmds, cmds...)
}
for _, cmds := range stdioResults {
for _, cmds := range legacyStdioResults {
pluginCmds = append(pluginCmds, cmds...)
}
@@ -1467,6 +1497,11 @@ func discoverStdioTools(p *plugin.Plugin, sc plugin.StdioServerClient, timeouts
// buildStdioCommands constructs Cobra commands from a tool list and
// registers the runtime dispatch state (StdioClient + dynamic server).
// Returns nil for an empty tool list.
//
// This is the legacy discovery-first path, used only for stdio plugins whose
// overlay.json does NOT carry toolOverrides. Plugins that ship toolOverrides
// register commands up-front via registerStdioServerFromOverlay, bypassing
// this function entirely (see plugin_stdio_overlay.go).
func buildStdioCommands(p *plugin.Plugin, sc plugin.StdioServerClient, tools []transport.ToolDescriptor, runner executor.Runner) []*cobra.Command {
if len(tools) == 0 {
slog.Debug("plugin: stdio server has no tools",
@@ -1474,44 +1509,14 @@ func buildStdioCommands(p *plugin.Plugin, sc plugin.StdioServerClient, tools []t
return nil
}
// Build CLIOverlay: use manifest CLI metadata if present, else auto-generate.
serverID := sc.Key
overlay := market.CLIOverlay{
ID: serverID,
Command: serverID,
}
if srv, ok := p.Manifest.MCPServers[sc.Key]; ok && len(srv.CLI) > 0 {
cliData := srv.CLI
// If cli is a JSON string, treat it as a relative file path to an overlay file.
if len(cliData) > 0 && cliData[0] == '"' {
var cliPath string
if err := json.Unmarshal(cliData, &cliPath); err == nil && cliPath != "" {
absPath := filepath.Join(p.Root, cliPath)
if fileData, readErr := os.ReadFile(absPath); readErr == nil {
cliData = fileData
} else {
slog.Warn("plugin: failed to read CLI overlay file",
"plugin", p.Manifest.Name, "path", absPath, "error", readErr)
}
}
}
if err := json.Unmarshal(cliData, &overlay); err != nil {
slog.Warn("plugin: failed to parse CLI overlay for stdio server",
"plugin", p.Manifest.Name, "server", sc.Key, "error", err)
}
if overlay.ID == "" {
overlay.ID = serverID
}
if overlay.Command == "" {
overlay.Command = serverID
}
}
overlay := resolveStdioOverlay(p, sc)
// Auto-generate ToolOverrides from discovered tools when not provided.
// Auto-generate ToolOverrides from discovered tools when not provided
// by the manifest/overlay (legacy discovery-first path).
if len(overlay.ToolOverrides) == 0 {
overlay.ToolOverrides = make(map[string]market.CLIToolOverride)
if len(overlay.Prefixes) == 0 {
overlay.Prefixes = []string{serverID}
overlay.Prefixes = []string{overlay.ID}
}
for _, tool := range tools {
overlay.ToolOverrides[tool.Name] = market.CLIToolOverride{
@@ -1520,43 +1525,20 @@ func buildStdioCommands(p *plugin.Plugin, sc plugin.StdioServerClient, tools []t
}
}
// Construct virtual endpoint and server descriptor.
endpoint := StdioEndpoint(p.Manifest.Name, sc.Key)
descriptor := market.ServerDescriptor{
Key: sc.Key,
DisplayName: p.Manifest.Name + "/" + sc.Key,
Description: p.Manifest.Description,
Endpoint: endpoint,
Endpoint: StdioEndpoint(p.Manifest.Name, sc.Key),
Source: "plugin",
CLI: overlay,
HasCLIMeta: true,
}
AppendDynamicServer(descriptor)
// Register with pluginName/serverKey format for cleanup by plugin name
RegisterStdioClient(p.Manifest.Name+"/"+serverID, sc.Client)
// Convert tool descriptors to DetailTool entries for flag generation.
detailsByID := make(map[string][]market.DetailTool)
var detailTools []market.DetailTool
for _, tool := range tools {
schemaJSON := ""
if tool.InputSchema != nil {
if data, marshalErr := json.Marshal(tool.InputSchema); marshalErr == nil {
schemaJSON = string(data)
}
}
detailTools = append(detailTools, market.DetailTool{
ToolName: tool.Name,
ToolTitle: tool.Title,
ToolDesc: tool.Description,
IsSensitive: tool.Sensitive,
ToolRequest: schemaJSON,
})
}
detailsByID[serverID] = detailTools
RegisterStdioClient(p.Manifest.Name+"/"+sc.Key, sc.Client)
detailsByID := toolsToDetails(tools, overlay.ID)
cmds := compat.BuildDynamicCommands(
[]market.ServerDescriptor{descriptor}, runner, detailsByID)
+93
View File
@@ -12,6 +12,7 @@ import (
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cli"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/transport"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
func TestCacheRefreshClearsExistingCachesAndSkipsCLISkippedServers(t *testing.T) {
@@ -106,6 +107,98 @@ func TestCacheRefreshClearsExistingCachesAndSkipsCLISkippedServers(t *testing.T)
}
}
// TestCacheRefreshHonorsEditionDiscoveryURL asserts the `dws cache refresh`
// command routes its server-list fetch through edition.Hooks.DiscoveryURL /
// DiscoveryHeaders when they are set, instead of the default Market endpoint.
// Kept deliberately generic (no edition-specific strings) — concrete values
// belong to the overlay repo that installs the hooks, not to this open core.
func TestCacheRefreshHonorsEditionDiscoveryURL(t *testing.T) {
cacheDir := t.TempDir()
t.Setenv(cli.CacheDirEnv, cacheDir)
var (
editionHits atomic.Int32
marketHits atomic.Int32
gotHeaders atomic.Value // map[string]string
)
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Path {
case "/cli/edition/apis":
editionHits.Add(1)
snapshot := map[string]string{
"x-test-edition": r.Header.Get("x-test-edition"),
"x-test-client": r.Header.Get("x-test-client"),
}
gotHeaders.Store(snapshot)
_ = json.NewEncoder(w).Encode(market.ListResponse{
Metadata: market.ListMetadata{Count: 1},
Servers: []market.ServerEnvelope{
{
Server: market.RegistryServer{
Name: "Edition Service",
Remotes: []market.RegistryRemote{{Type: "streamable-http", URL: "https://example.invalid/mcp"}},
},
Meta: market.EnvelopeMeta{
Registry: market.RegistryMetadata{Status: "active"},
CLI: market.CLIOverlay{ID: "edition-service", Command: "edition-service"},
},
},
},
})
case "/cli/discovery/apis":
marketHits.Add(1)
http.Error(w, "market endpoint must not be called when edition DiscoveryURL is set", http.StatusNotFound)
default:
http.NotFound(w, r)
}
}))
defer srv.Close()
edition.Override(&edition.Hooks{
Name: "testing",
DiscoveryURL: srv.URL + "/cli/edition/apis",
DiscoveryHeaders: func() map[string]string {
return map[string]string{
"x-test-edition": "custom",
"x-test-client": "cli-refresh",
}
},
})
t.Cleanup(func() { edition.Override(&edition.Hooks{}) })
SetDiscoveryBaseURL(srv.URL)
t.Cleanup(func() { SetDiscoveryBaseURL("") })
cmd := newCacheCommand()
var out bytes.Buffer
cmd.SetOut(&out)
cmd.SetErr(&out)
cmd.SetArgs([]string{"refresh"})
if err := cmd.Execute(); err != nil {
t.Fatalf("Execute() error = %v", err)
}
if got := editionHits.Load(); got != 1 {
t.Fatalf("edition DiscoveryURL hits = %d, want 1", got)
}
if got := marketHits.Load(); got != 0 {
t.Fatalf("market endpoint hits = %d, want 0 (edition DiscoveryURL must take precedence)", got)
}
headers, _ := gotHeaders.Load().(map[string]string)
if headers == nil {
t.Fatal("captured request headers = nil, want edition DiscoveryHeaders to be applied")
}
if headers["x-test-edition"] != "custom" {
t.Fatalf("x-test-edition header = %q, want %q", headers["x-test-edition"], "custom")
}
if headers["x-test-client"] != "cli-refresh" {
t.Fatalf("x-test-client header = %q, want %q", headers["x-test-client"], "cli-refresh")
}
}
func saveCLIIDDetail(t *testing.T, store *cache.Store, partition, cliID string) {
t.Helper()
+20 -17
View File
@@ -84,21 +84,30 @@ func renderRootHelp(root *cobra.Command) {
_, _ = fmt.Fprintln(w, `Use "dws <service> --help" for more information about a discovered MCP service or "dws <command> --help" for utility commands.`)
}
// resolveVisibleProducts returns the set of top-level product IDs that should
// be treated as visible. It unions the edition's VisibleProducts hook (when
// set) with DirectRuntimeProductIDs(), so dynamically-registered products —
// including plugins loaded via AppendDynamicServer — are never silently hidden
// by a static VisibleProducts list.
func resolveVisibleProducts() map[string]bool {
allowed := map[string]bool{}
if fn := edition.Get().VisibleProducts; fn != nil {
for _, p := range fn() {
allowed[p] = true
}
}
for id := range DirectRuntimeProductIDs() {
allowed[id] = true
}
return allowed
}
func visibleMCPRootCommands(root *cobra.Command) []*cobra.Command {
if root == nil {
return nil
}
var allowed map[string]bool
if fn := edition.Get().VisibleProducts; fn != nil {
products := fn()
allowed = make(map[string]bool, len(products))
for _, p := range products {
allowed[p] = true
}
} else {
allowed = DirectRuntimeProductIDs()
}
allowed := resolveVisibleProducts()
if len(allowed) == 0 {
return nil
}
@@ -121,13 +130,7 @@ func visibleUtilityRootCommands(root *cobra.Command) []*cobra.Command {
return nil
}
productCommands := DirectRuntimeProductIDs()
if fn := edition.Get().VisibleProducts; fn != nil {
productCommands = make(map[string]bool, len(fn()))
for _, product := range fn() {
productCommands[product] = true
}
}
productCommands := resolveVisibleProducts()
commands := make([]*cobra.Command, 0)
for _, cmd := range root.Commands() {
+84 -8
View File
@@ -59,7 +59,7 @@ func init() {
configmeta.Register(configmeta.ConfigItem{
Name: "DINGTALK_AGENT",
Category: configmeta.CategoryExternal,
Description: "MCP 请求 x-dingtalk-agent 头",
Description: "业务 Agent 名称;仅用于 x-dingtalk-agent 请求头,与 claw-type/host-owned PAT 判定无关",
})
configmeta.Register(configmeta.ConfigItem{
Name: "DINGTALK_TRACE_ID",
@@ -93,6 +93,27 @@ const (
envDWSChannel = "DWS_CHANNEL"
)
// hostOwnedPATDecisionOnce ensures the host-owned PAT decision is logged at
// most once per CLI process. The log line is emitted at Debug level so
// `--debug` (or `--verbose`) surfaces it on stderr; the file logger at
// ~/.dws/logs/dws.log captures it unconditionally at DEBUG. It records
// ONLY the derived booleans — never the env value, token, client-id or
// flow-id — so logs remain safe to attach to issues.
var hostOwnedPATDecisionOnce sync.Once
// logHostOwnedPATDecisionOnce emits the single-shot debug trace. It is
// called lazily from the runtime Run path (which executes AFTER
// PersistentPreRunE has applied --debug / --verbose via configureLogLevel)
// so the line actually surfaces when the user asks for it.
func logHostOwnedPATDecisionOnce() {
hostOwnedPATDecisionOnce.Do(func() {
slog.Debug("runtime.host_owned_pat",
"hostOwned", authpkg.HostOwnsPATFlow(),
"agentCodeEnvPresent", os.Getenv(authpkg.AgentCodeEnv) != "",
)
})
}
func newCommandRunnerWithFlags(loader cli.CatalogLoader, flags *GlobalFlags) executor.Runner {
// Ensure DWS_CLIENT_ID env is populated from persisted config before
// resolveIdentityHeaders reads it. This covers fresh-process cold starts
@@ -132,6 +153,12 @@ type runtimeRunner struct {
}
func (r *runtimeRunner) Run(ctx context.Context, invocation executor.Invocation) (executor.Result, error) {
// Emit the one-shot host-owned PAT decision log. Placed here (not in
// the constructor) so it fires AFTER PersistentPreRunE has configured
// slog level per --debug / --verbose. The Once guard makes repeat
// invocations within the same process free.
logHostOwnedPATDecisionOnce()
if r.loader == nil || r.transport == nil {
return r.fallback.Run(ctx, invocation)
}
@@ -168,10 +195,21 @@ func (r *runtimeRunner) Run(ctx context.Context, invocation executor.Invocation)
product, ok := catalog.FindProduct(invocation.CanonicalProduct)
if !ok || strings.TrimSpace(product.Endpoint) == "" {
return r.fallback.Run(ctx, invocation)
return r.handleCatalogMiss(ctx, invocation, "product missing from discovery catalog and no supplement/env override")
}
if _, ok := product.FindTool(invocation.Tool); !ok {
return r.fallback.Run(ctx, invocation)
// Catalog knows the product but not the tool — this happens when the
// catalog entry came from SupplementServers (endpoint-only, no tool
// list). Trust directRuntimeEndpoint to re-resolve a working endpoint
// for the tool. If that also misses, fall through to handleCatalogMiss
// so stderr still carries the explicit not-resolved signal.
if endpoint, ok := directRuntimeEndpoint(invocation.CanonicalProduct, invocation.Tool); ok {
if r.globalFlags != nil && r.globalFlags.DryRun {
invocation.DryRun = true
}
return r.executeInvocation(ctx, endpoint, invocation)
}
return r.handleCatalogMiss(ctx, invocation, fmt.Sprintf("tool %q not declared by product %q in discovery catalog", invocation.Tool, invocation.CanonicalProduct))
}
if r.globalFlags != nil && r.globalFlags.DryRun {
invocation.DryRun = true
@@ -184,6 +222,37 @@ func (r *runtimeRunner) Run(ctx context.Context, invocation executor.Invocation)
return r.executeInvocation(ctx, endpoint, invocation)
}
// handleCatalogMiss decides what to do when discovery catalog does not cover the
// requested product / tool and no `directRuntimeEndpoint` match fired earlier.
//
// Previously every catalog miss silently fell through to EchoRunner, which
// returns an empty `executor.Result{Response: nil}`. The helper-invocation
// adapter then converted that into `&edition.ToolResult{}`, whose `Content`
// marshals to `null`, surfacing as `{"Content": null}` at the CLI. Users had no
// signal that endpoint resolution failed — see the fix-wukong-discovery-missing-servers plan (Phase 3) for the full trace.
//
// New contract:
// - Dry-run (invocation.DryRun or globalFlags.DryRun): keep EchoRunner so
// `--dry-run` still prints the planned payload without real execution.
// - Otherwise: return an explicit apperrors.NewAPI("endpoint_not_resolved")
// with the offending product/tool attached. This fails fast to stderr and
// makes missing envelopes / supplement gaps immediately visible.
func (r *runtimeRunner) handleCatalogMiss(ctx context.Context, invocation executor.Invocation, detail string) (executor.Result, error) {
dryRun := invocation.DryRun || (r.globalFlags != nil && r.globalFlags.DryRun)
if dryRun {
invocation.DryRun = true
return r.fallback.Run(ctx, invocation)
}
return executor.Result{}, apperrors.NewAPI(
fmt.Sprintf("endpoint not resolved for product %q (tool %q): %s", invocation.CanonicalProduct, invocation.Tool, detail),
apperrors.WithOperation("discovery.resolve"),
apperrors.WithReason("endpoint_not_resolved"),
apperrors.WithServerKey(invocation.CanonicalProduct),
apperrors.WithHint("产品 envelope 可能未下发到 discovery,或已经被 serverDeps fail-fast 丢弃;可执行 'dws cache refresh' 强制重新 discovery,仍失败请向 Portal 确认 envelope 状态。"),
apperrors.WithActions("dws cache refresh"),
)
}
func (r *runtimeRunner) executeInvocation(ctx context.Context, endpoint string, invocation executor.Invocation) (result executor.Result, retErr error) {
// Route stdio:// endpoints to the local StdioClient — no HTTP, no auth.
if IsStdioEndpoint(endpoint) {
@@ -579,11 +648,17 @@ func resolveIdentityHeaders() map[string]string {
}
// Inject environment variable based headers for MCP gateway tracking.
// DINGTALK_AGENT, if set by the caller, is forwarded verbatim as the
// x-dingtalk-agent header. It does NOT influence claw-type (which the
// open-source edition pins to edition.DefaultOSSClawType via the
// MergeHeaders hook below) and it does NOT influence the host-owned
// PAT decision (driven solely by DINGTALK_DWS_AGENTCODE).
envHeaders := map[string]string{
"x-dingtalk-agent": os.Getenv(envDingtalkAgent),
"x-dingtalk-trace-id": os.Getenv(envDingtalkTraceID),
"x-dingtalk-session-id": os.Getenv(envDingtalkSessionID),
"x-dingtalk-message-id": os.Getenv(envDingtalkMessageID),
"x-dingtalk-agent": os.Getenv(envDingtalkAgent),
"x-dingtalk-dws-agent-code": strings.TrimSpace(os.Getenv(authpkg.AgentCodeEnv)),
"x-dingtalk-trace-id": os.Getenv(envDingtalkTraceID),
"x-dingtalk-session-id": os.Getenv(envDingtalkSessionID),
"x-dingtalk-message-id": os.Getenv(envDingtalkMessageID),
}
for k, v := range envHeaders {
if v != "" {
@@ -591,7 +666,8 @@ func resolveIdentityHeaders() map[string]string {
}
}
// Inject third-party channel headers
// Inject third-party channel headers. DWS_CHANNEL is forwarded as the
// upstream channelCode.
if v := os.Getenv(envDWSChannel); v != "" {
headers["x-dws-channel"] = v
}
@@ -0,0 +1,192 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"context"
"strings"
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/ir"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/transport"
)
// supplementOnlyCatalogLoader mimics the post-fix EnvironmentLoader: the
// catalog has the product entry (materialised from SupplementServers) but
// no tool list — the overlay owns the tool tree locally.
type supplementOnlyCatalogLoader struct{}
func (supplementOnlyCatalogLoader) Load(_ context.Context) (ir.Catalog, error) {
return ir.Catalog{
Products: []ir.CanonicalProduct{
{
ID: "conference",
ServerKey: "conference",
Endpoint: "stdio://conference-catalog",
Tools: nil,
},
},
}, nil
}
func resetDynamicServers(t *testing.T) {
t.Helper()
orig := snapshotDynamicServers()
t.Cleanup(func() { restoreDynamicServers(orig) })
}
type dynamicServerSnapshot struct {
endpoints map[string]string
products map[string]bool
aliases map[string]string
toolEndpoints map[string]string
}
func snapshotDynamicServers() dynamicServerSnapshot {
dynamicMu.RLock()
defer dynamicMu.RUnlock()
return dynamicServerSnapshot{
endpoints: cloneStringMap(dynamicEndpoints),
products: cloneBoolMap(dynamicProducts),
aliases: cloneStringMap(dynamicAliases),
toolEndpoints: cloneStringMap(dynamicToolEndpoints),
}
}
func restoreDynamicServers(s dynamicServerSnapshot) {
dynamicMu.Lock()
defer dynamicMu.Unlock()
dynamicEndpoints = s.endpoints
dynamicProducts = s.products
dynamicAliases = s.aliases
dynamicToolEndpoints = s.toolEndpoints
}
func cloneStringMap(in map[string]string) map[string]string {
if in == nil {
return nil
}
out := make(map[string]string, len(in))
for k, v := range in {
out[k] = v
}
return out
}
func cloneBoolMap(in map[string]bool) map[string]bool {
if in == nil {
return nil
}
out := make(map[string]bool, len(in))
for k, v := range in {
out[k] = v
}
return out
}
// TestRuntimeRunner_ToolMiss_FallsBackToDirectRuntime pins the runner's
// bridge between the catalog path (where a product entry can come from
// SupplementServers with no tool list) and the direct-runtime path (which
// carries the authoritative per-tool endpoint map). When the catalog knows
// the product but not the tool, the runner should not fail-fast with
// endpoint_not_resolved — it should consult dynamicEndpoints one more time
// and proceed if an endpoint is registered.
//
// This is the narrow recovery path that keeps hardcoded overlay commands
// working under a gray-released envelope: the supplement-materialised
// catalog entry has endpoint+no tools, and SetDynamicServers holds the
// operational endpoint indexed by product / command.
func TestRuntimeRunner_ToolMiss_FallsBackToDirectRuntime(t *testing.T) {
resetDynamicServers(t)
SetDynamicServers([]market.ServerDescriptor{
{
Key: "conference",
DisplayName: "会议",
Endpoint: "stdio://conference-fake",
CLI: market.CLIOverlay{
ID: "conference",
Command: "conference",
},
Source: "edition_supplement",
},
})
runner := &runtimeRunner{
loader: supplementOnlyCatalogLoader{},
transport: transport.NewClient(nil),
fallback: executor.EchoRunner{},
}
// Kind = api_invocation forces the code to skip the Run() opening
// direct-runtime attempt and go through the catalog path instead, so
// the tool-miss recovery branch we're testing actually runs.
inv := executor.Invocation{
Kind: "api_invocation",
CanonicalProduct: "conference",
Tool: "create_meeting_reservation",
CanonicalPath: "conference.create_meeting_reservation",
DryRun: true,
Params: map[string]any{},
}
result, err := runner.Run(context.Background(), inv)
if err != nil {
t.Fatalf("runner.Run returned error, want tool-miss fallback success: %v", err)
}
if result.Response == nil {
t.Fatalf("expected non-nil Response on dry-run")
}
if got, _ := result.Response["dry_run"].(bool); !got {
t.Fatalf("expected dry_run=true in Response, got %v", result.Response)
}
if got, _ := result.Response["transport"].(string); got != "stdio" {
t.Fatalf("expected transport=stdio in Response (proof we hit stdio://conference-fake), got %v", result.Response)
}
}
// TestRuntimeRunner_ToolMiss_NoDynamicEntry_StillFailsClosed is the inverse
// guard: when both the catalog tool list and dynamicEndpoints have no
// record for the requested tool, the runner must still surface
// endpoint_not_resolved instead of silently producing empty output.
func TestRuntimeRunner_ToolMiss_NoDynamicEntry_StillFailsClosed(t *testing.T) {
resetDynamicServers(t)
SetDynamicServers([]market.ServerDescriptor{}) // intentionally empty
runner := &runtimeRunner{
loader: supplementOnlyCatalogLoader{},
transport: transport.NewClient(nil),
fallback: executor.EchoRunner{},
}
inv := executor.Invocation{
Kind: "api_invocation",
CanonicalProduct: "conference",
Tool: "nonexistent_tool",
CanonicalPath: "conference.nonexistent_tool",
Params: map[string]any{},
}
_, err := runner.Run(context.Background(), inv)
if err == nil {
t.Fatalf("expected endpoint_not_resolved error, got nil")
}
if !strings.Contains(err.Error(), "endpoint not resolved") {
t.Fatalf("expected endpoint_not_resolved error, got %v", err)
}
if !strings.Contains(err.Error(), "nonexistent_tool") {
t.Fatalf("error should name the missing tool; got %v", err)
}
}
+38 -26
View File
@@ -25,7 +25,9 @@ import (
"strings"
"testing"
authpkg "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/auth"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cli"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/keychain"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
mockmcp "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/test/mock_mcp"
)
@@ -33,6 +35,13 @@ import (
func setupRuntimeCommandTest(t *testing.T) {
t.Helper()
t.Setenv("DWS_CONFIG_DIR", t.TempDir())
// Isolate keychain storage so concurrent test packages can't leak a
// real auth token into runtime tests via the shared on-disk keychain
// location. We deliberately do NOT reset the process-wide token
// cache here: getCachedRuntimeToken uses sync.Once and is read by
// detached preload goroutines spawned per Run(); replacing the Once
// races with those still-running goroutines.
t.Setenv(keychain.StorageDirEnv, t.TempDir())
discoverySrv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, _ *http.Request) {
_ = json.NewEncoder(w).Encode(contactDiscoveryResponse())
@@ -305,6 +314,16 @@ func TestRuntimeRunnerInjectsAuthTokenFromFlag(t *testing.T) {
}
}
func TestResolveIdentityHeadersForwardsAgentCode(t *testing.T) {
setupRuntimeCommandTest(t)
t.Setenv(authpkg.AgentCodeEnv, " cursor ")
headers := resolveIdentityHeaders()
if got := headers["x-dingtalk-dws-agent-code"]; got != "cursor" {
t.Fatalf("x-dingtalk-dws-agent-code = %q, want cursor", got)
}
}
// TestRuntimeRunnerRejectsUnauthenticatedRequest verifies that requests without
// a valid token are rejected with a clear error before making any network call.
func TestRuntimeRunnerRejectsUnauthenticatedRequest(t *testing.T) {
@@ -336,7 +355,17 @@ func TestRuntimeRunnerRejectsUnauthenticatedRequest(t *testing.T) {
}
}
func TestRuntimeRunnerFallsBackForUnavailableProduct(t *testing.T) {
// TestRuntimeRunnerErrorsForUnavailableProduct pins down the post-fix
// (fix-wukong-discovery-missing-servers Phase 3) behaviour: when the catalog
// does not carry the requested product (here `contact` against a
// doc-only fixture), `runtimeRunner.Run` must surface an explicit
// `endpoint_not_resolved` error instead of silently echoing an empty result
// back to the user — the latter is what historically produced `{"Content":
// null}` output on `dws doc list`.
//
// Dry-run / compat semantics continue to route through EchoRunner and are
// covered by other tests in this file (TestRuntime*Dry*, TestCompat*).
func TestRuntimeRunnerErrorsForUnavailableProduct(t *testing.T) {
setupRuntimeCommandTest(t)
server := mockmcp.DefaultServer()
defer server.Close()
@@ -349,33 +378,16 @@ func TestRuntimeRunnerFallsBackForUnavailableProduct(t *testing.T) {
cmd.SetErr(&out)
cmd.SetArgs([]string{"-f", "json", "contact", "user", "get-self"})
if err := cmd.Execute(); err != nil {
t.Fatalf("Execute() error = %v", err)
err := cmd.Execute()
if err == nil {
t.Fatalf("Execute() error = nil, want endpoint_not_resolved error\noutput:\n%s", out.String())
}
var payload struct {
Invocation struct {
Implemented bool `json:"implemented"`
CanonicalProduct string `json:"canonical_product"`
Tool string `json:"tool"`
} `json:"invocation"`
Response map[string]any `json:"response"`
msg := err.Error()
if !strings.Contains(msg, "endpoint not resolved") {
t.Fatalf("error message = %q, want it to contain \"endpoint not resolved\"", msg)
}
if err := json.Unmarshal(out.Bytes(), &payload); err != nil {
t.Fatalf("json.Unmarshal() error = %v\noutput:\n%s", err, out.String())
}
if payload.Invocation.Implemented {
t.Fatalf("implemented = true, want false for fallback")
}
if payload.Invocation.CanonicalProduct != "contact" {
t.Fatalf("canonical_product = %q, want contact", payload.Invocation.CanonicalProduct)
}
if payload.Invocation.Tool != "get_current_user_profile" {
t.Fatalf("tool = %q, want get_current_user_profile", payload.Invocation.Tool)
}
if payload.Response != nil {
t.Fatalf("response = %#v, want nil for echo fallback", payload.Response)
if !strings.Contains(msg, "contact") {
t.Fatalf("error message = %q, want it to mention product \"contact\"", msg)
}
}
+50
View File
@@ -0,0 +1,50 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"os"
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/keychain"
)
// TestMain isolates the on-disk keychain storage to a process-wide
// temporary directory for the entire internal/app test binary.
//
// Background: getCachedRuntimeToken caches the auth token via sync.Once
// for the process lifetime. Whichever test triggers it first locks in the
// cached value. Several tests in this package (e.g. TestSkillInstallInvalidTarget)
// call SaveTokenData and then exec a CLI command that triggers Once.Do; if
// keychain storage points at the developer's real ~/Library/Application
// Support/dws-cli (or ~/.local/share/dws-cli on Linux), a real token can be
// written there and cached process-wide, breaking later tests that assume
// "no auth" — most notably TestRuntimeRunnerRejectsUnauthenticatedRequest.
//
// Setting keychain.StorageDirEnv here forces every keychain read/write in
// this binary into a per-process tempdir, eliminating that contamination
// without touching production code.
func TestMain(m *testing.M) {
tmpDir, err := os.MkdirTemp("", "dws-app-test-keychain-")
if err != nil {
panic("create test keychain tempdir: " + err.Error())
}
if err := os.Setenv(keychain.StorageDirEnv, tmpDir); err != nil {
_ = os.RemoveAll(tmpDir)
panic("set " + keychain.StorageDirEnv + ": " + err.Error())
}
code := m.Run()
_ = os.RemoveAll(tmpDir)
os.Exit(code)
}
+14
View File
@@ -16,6 +16,7 @@ package app
import (
"context"
"encoding/json"
"log/slog"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
@@ -56,6 +57,19 @@ func (a *toolCallerAdapter) DryRun() bool {
func convertResult(r executor.Result) *edition.ToolResult {
resp := r.Response
if resp == nil {
// After the fix-wukong-discovery-missing-servers Phase 3 change,
// runtimeRunner.Run returns an explicit error for catalog misses
// instead of an empty Response, so this branch should only be
// reachable for unit tests / unexpected runners. Log a warning so
// any future regression (silent `{"Content": null}` on the CLI)
// leaves a trace in the file logger / stderr.
slog.Warn(
"tool_caller_adapter: empty runner response — upstream should surface an error instead",
"product", r.Invocation.CanonicalProduct,
"tool", r.Invocation.Tool,
"kind", r.Invocation.Kind,
"dry_run", r.Invocation.DryRun,
)
return &edition.ToolResult{}
}
+125
View File
@@ -0,0 +1,125 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package app
import (
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
"github.com/spf13/cobra"
)
// overrideVisibleProducts temporarily installs an edition hook exposing the
// given static product list and restores the previous hooks on cleanup.
func overrideVisibleProducts(t *testing.T, products []string) {
t.Helper()
prev := edition.Get()
edition.Override(&edition.Hooks{
VisibleProducts: func() []string { return products },
})
t.Cleanup(func() { edition.Override(prev) })
}
// registerPluginProduct simulates a plugin's `AppendDynamicServer` call so
// the product ID ends up in DirectRuntimeProductIDs() without triggering
// network discovery.
func registerPluginProduct(t *testing.T, id, endpoint string) {
t.Helper()
AppendDynamicServer(market.ServerDescriptor{
Endpoint: endpoint,
CLI: market.CLIOverlay{
ID: id,
Command: id,
},
})
}
// TestHideNonDirectRuntimeCommands_PluginVisibleDespiteStaticVisibleProducts
// is a regression for the dws-wukong plugin-visibility bug: when an edition
// installs a static VisibleProducts hook (Wukong returns 40 hardcoded product
// IDs) and a plugin registers a new product via AppendDynamicServer
// (e.g. `conference-local`), the plugin command must stay visible because the
// dynamic registry takes precedence over the hook's static whitelist.
func TestHideNonDirectRuntimeCommands_PluginVisibleDespiteStaticVisibleProducts(t *testing.T) {
withCleanDynamicRegistry(t)
overrideVisibleProducts(t, []string{"calendar"})
registerPluginProduct(t, "conference-local", "stdio://plugin/conference-local")
root := &cobra.Command{Use: "dws"}
calendarCmd := &cobra.Command{Use: "calendar"}
pluginCmd := &cobra.Command{Use: "conference-local"}
bogusCmd := &cobra.Command{Use: "bogus-not-a-product"}
root.AddCommand(calendarCmd, pluginCmd, bogusCmd)
hideNonDirectRuntimeCommands(root)
if calendarCmd.Hidden {
t.Errorf("calendar (static VisibleProducts) must stay visible, got Hidden=true")
}
if pluginCmd.Hidden {
t.Errorf("conference-local (plugin-registered) must stay visible, got Hidden=true")
}
if !bogusCmd.Hidden {
t.Errorf("bogus-not-a-product must be hidden, got Hidden=false")
}
}
// TestVisibleMCPRootCommands_IncludesPluginProducts asserts that the help
// renderer surfaces plugin products in the "Discovered MCP Services" section
// and does not misclassify them as utility commands.
func TestVisibleMCPRootCommands_IncludesPluginProducts(t *testing.T) {
withCleanDynamicRegistry(t)
overrideVisibleProducts(t, []string{"calendar"})
registerPluginProduct(t, "conference-local", "stdio://plugin/conference-local")
root := &cobra.Command{Use: "dws"}
calendarCmd := &cobra.Command{Use: "calendar"}
pluginCmd := &cobra.Command{Use: "conference-local"}
authCmd := &cobra.Command{Use: "auth"}
root.AddCommand(calendarCmd, pluginCmd, authCmd)
services := visibleMCPRootCommands(root)
if !containsCommand(services, "conference-local") {
t.Errorf("visibleMCPRootCommands missing plugin command: %v", commandNames(services))
}
if !containsCommand(services, "calendar") {
t.Errorf("visibleMCPRootCommands missing static product: %v", commandNames(services))
}
utilities := visibleUtilityRootCommands(root)
if containsCommand(utilities, "conference-local") {
t.Errorf("visibleUtilityRootCommands must not include plugin command, got %v", commandNames(utilities))
}
if !containsCommand(utilities, "auth") {
t.Errorf("visibleUtilityRootCommands must include genuine utility command, got %v", commandNames(utilities))
}
}
func containsCommand(cmds []*cobra.Command, name string) bool {
for _, c := range cmds {
if c.Name() == name {
return true
}
}
return false
}
func commandNames(cmds []*cobra.Command) []string {
names := make([]string, 0, len(cmds))
for _, c := range cmds {
names = append(names, c.Name())
}
return names
}
+233
View File
@@ -0,0 +1,233 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package auth
import (
"bytes"
"context"
"encoding/json"
"fmt"
"io"
"net/http"
"os"
"time"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/keychain"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/config"
)
const (
// appTokenPrefix is the keychain account prefix for app-level tokens.
appTokenPrefix = "app-token:"
// tokenExpiryBuffer is the buffer time before actual expiry to consider
// the token as expired (same as user token: 5 minutes).
tokenExpiryBuffer = 5 * time.Minute
)
// AppTokenData stores the app-level access token obtained from the unified
// POST /v1.0/oauth2/accessToken endpoint. It works for both new-style
// (api.dingtalk.com) and legacy (oapi.dingtalk.com) APIs — the auth method
// (header vs query param) is chosen by the caller based on the target host.
type AppTokenData struct {
AccessToken string `json:"access_token,omitempty"`
ExpiresAt time.Time `json:"expires_at,omitempty"`
// Associated app credentials
ClientID string `json:"client_id"`
UpdatedAt time.Time `json:"updated_at"`
}
// IsTokenValid returns true if the access token has not expired.
func (d *AppTokenData) IsTokenValid() bool {
if d == nil || d.AccessToken == "" {
return false
}
return time.Now().Before(d.ExpiresAt.Add(-tokenExpiryBuffer))
}
// SaveAppTokenData persists AppTokenData to keychain, keyed by clientID.
func SaveAppTokenData(data *AppTokenData) error {
if data.ClientID == "" {
return fmt.Errorf("clientID is required for saving app token data")
}
data.UpdatedAt = time.Now()
jsonData, err := json.MarshalIndent(data, "", " ")
if err != nil {
return fmt.Errorf("marshal app token data: %w", err)
}
defer func() {
for i := range jsonData {
jsonData[i] = 0
}
}()
account := appTokenPrefix + data.ClientID
if err := keychain.Set(keychain.Service, account, string(jsonData)); err != nil {
return fmt.Errorf("save app token to keychain: %w", err)
}
return nil
}
// LoadAppTokenData loads AppTokenData from keychain for the given clientID.
// Returns nil, nil if no data exists.
func LoadAppTokenData(clientID string) (*AppTokenData, error) {
if clientID == "" {
return nil, fmt.Errorf("clientID is required for loading app token data")
}
account := appTokenPrefix + clientID
jsonStr, err := keychain.Get(keychain.Service, account)
if err != nil {
return nil, nil // Not found is not an error
}
if jsonStr == "" {
return nil, nil
}
var data AppTokenData
if err := json.Unmarshal([]byte(jsonStr), &data); err != nil {
return nil, fmt.Errorf("parse app token data: %w", err)
}
return &data, nil
}
// DeleteAppTokenData removes AppTokenData from keychain for the given clientID.
func DeleteAppTokenData(clientID string) error {
if clientID == "" {
return nil
}
account := appTokenPrefix + clientID
return keychain.Remove(keychain.Service, account)
}
// --- Token Fetch Function ---
// FetchAppToken obtains an app-level access token from the unified endpoint:
//
// POST https://api.dingtalk.com/v1.0/oauth2/accessToken
// Body: {"appKey":"X","appSecret":"X"}
// Response: {"accessToken":"xxx","expireIn":7200}
//
// The same token works for both api.dingtalk.com and oapi.dingtalk.com.
func FetchAppToken(ctx context.Context, appKey, appSecret string) (token string, expiresIn int64, err error) {
body := map[string]string{
"appKey": appKey,
"appSecret": appSecret,
}
bodyBytes, err := json.Marshal(body)
if err != nil {
return "", 0, fmt.Errorf("marshal request body: %w", err)
}
req, err := http.NewRequestWithContext(ctx, http.MethodPost, AppAccessTokenURL, bytes.NewReader(bodyBytes))
if err != nil {
return "", 0, fmt.Errorf("creating request: %w", err)
}
req.Header.Set("Content-Type", "application/json")
resp, err := appTokenHTTPClient.Do(req)
if err != nil {
return "", 0, fmt.Errorf("fetching app token: %w", err)
}
defer resp.Body.Close()
respBody, err := io.ReadAll(io.LimitReader(resp.Body, config.MaxResponseBodySize))
if err != nil {
return "", 0, fmt.Errorf("reading response: %w", err)
}
if resp.StatusCode != http.StatusOK {
return "", 0, fmt.Errorf("获取 app token 失败 (HTTP %d): %s", resp.StatusCode, truncateStr(string(respBody), 200))
}
var result struct {
AccessToken string `json:"accessToken"`
ExpireIn int64 `json:"expireIn"`
}
if err := json.Unmarshal(respBody, &result); err != nil {
return "", 0, fmt.Errorf("parsing app token response: %w", err)
}
if result.AccessToken == "" {
return "", 0, fmt.Errorf("app token 响应缺少 accessToken 字段")
}
if result.ExpireIn <= 0 {
result.ExpireIn = config.DefaultAccessTokenExpiry
}
return result.AccessToken, result.ExpireIn, nil
}
// --- AppTokenProvider ---
// AppTokenProvider manages app-level token acquisition, caching and auto-refresh.
type AppTokenProvider struct {
ConfigDir string
AppKey string
AppSecret string
HTTPClient *http.Client // injectable for testing; nil uses default
}
// GetToken returns a valid app-level access token.
// Tokens are cached in keychain and auto-refreshed when expired (with 5-min buffer).
func (p *AppTokenProvider) GetToken(ctx context.Context) (string, error) {
if p.AppKey == "" || p.AppSecret == "" {
return "", fmt.Errorf("缺少应用凭证 (appKey/appSecret),请通过 --client-id/--client-secret 指定或先执行 dws auth login")
}
// Load cached token data.
data, err := LoadAppTokenData(p.AppKey)
if err != nil {
data = nil // Treat load errors as cache miss
}
// Fast path: cached token is still valid.
if data != nil && data.IsTokenValid() {
return data.AccessToken, nil
}
// Slow path: fetch a new token.
if data == nil {
data = &AppTokenData{ClientID: p.AppKey}
}
now := time.Now()
token, expiresIn, fetchErr := FetchAppToken(ctx, p.AppKey, p.AppSecret)
if fetchErr != nil {
return "", fetchErr
}
data.AccessToken = token
data.ExpiresAt = now.Add(time.Duration(expiresIn) * time.Second)
// Persist updated token data.
if saveErr := SaveAppTokenData(data); saveErr != nil {
// Log but don't fail — token is still usable this time.
// Write to stderr so we don't corrupt stdout JSON output when piped
// into jq/grep/etc.
fmt.Fprintf(os.Stderr, "Warning: 无法缓存 app token: %v\n", saveErr)
}
return data.AccessToken, nil
}
// truncateStr truncates a string to maxLen characters.
func truncateStr(s string, maxLen int) string {
if len(s) <= maxLen {
return s
}
return s[:maxLen] + "..."
}
// appTokenHTTPClient is the default HTTP client for app token operations.
var appTokenHTTPClient = &http.Client{
Timeout: 15 * time.Second,
}
+185
View File
@@ -0,0 +1,185 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package auth
import (
"bytes"
"context"
"encoding/json"
"net/http"
"net/http/httptest"
"testing"
"time"
)
// mustJSONBody returns a *bytes.Buffer containing the JSON encoding of v, or fails the test.
func mustJSONBody(t *testing.T, v any) *bytes.Buffer {
t.Helper()
var buf bytes.Buffer
if err := json.NewEncoder(&buf).Encode(v); err != nil {
t.Fatalf("json encode: %v", err)
}
return &buf
}
func TestAppTokenData_IsTokenValid(t *testing.T) {
tests := []struct {
name string
data *AppTokenData
want bool
}{
{"nil data", nil, false},
{"empty token", &AppTokenData{}, false},
{"expired", &AppTokenData{
AccessToken: "tok",
ExpiresAt: time.Now().Add(-1 * time.Minute),
}, false},
{"within buffer", &AppTokenData{
AccessToken: "tok",
ExpiresAt: time.Now().Add(3 * time.Minute), // 3 min < 5 min buffer
}, false},
{"valid", &AppTokenData{
AccessToken: "tok",
ExpiresAt: time.Now().Add(10 * time.Minute),
}, true},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
if got := tt.data.IsTokenValid(); got != tt.want {
t.Errorf("IsTokenValid() = %v, want %v", got, tt.want)
}
})
}
}
func TestAppTokenData_JSONRoundTrip(t *testing.T) {
original := &AppTokenData{
AccessToken: "app-tok-abc",
ExpiresAt: time.Now().Add(2 * time.Hour).Truncate(time.Second),
ClientID: "my-app-key",
UpdatedAt: time.Now().Truncate(time.Second),
}
data, err := json.Marshal(original)
if err != nil {
t.Fatalf("marshal: %v", err)
}
var decoded AppTokenData
if err := json.Unmarshal(data, &decoded); err != nil {
t.Fatalf("unmarshal: %v", err)
}
if decoded.AccessToken != original.AccessToken {
t.Errorf("AccessToken = %q, want %q", decoded.AccessToken, original.AccessToken)
}
if decoded.ClientID != original.ClientID {
t.Errorf("ClientID = %q, want %q", decoded.ClientID, original.ClientID)
}
}
func TestFetchAppToken_Success(t *testing.T) {
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if r.Method != http.MethodPost {
t.Errorf("expected POST, got %s", r.Method)
}
if r.Header.Get("Content-Type") != "application/json" {
t.Errorf("expected Content-Type application/json, got %s", r.Header.Get("Content-Type"))
}
var body map[string]string
json.NewDecoder(r.Body).Decode(&body)
if body["appKey"] != "mykey" || body["appSecret"] != "mysecret" {
t.Errorf("got body %v, want appKey=mykey, appSecret=mysecret", body)
}
w.Header().Set("Content-Type", "application/json")
w.WriteHeader(200)
json.NewEncoder(w).Encode(map[string]any{
"accessToken": "app-tok-123",
"expireIn": 7200,
})
}))
defer srv.Close()
body := mustJSONBody(t, map[string]string{
"appKey": "mykey",
"appSecret": "mysecret",
})
resp, err := srv.Client().Post(srv.URL, "application/json", body)
if err != nil {
t.Fatal(err)
}
defer resp.Body.Close()
var result struct {
AccessToken string `json:"accessToken"`
ExpireIn int64 `json:"expireIn"`
}
json.NewDecoder(resp.Body).Decode(&result)
if result.AccessToken != "app-tok-123" {
t.Errorf("got token %q, want app-tok-123", result.AccessToken)
}
if result.ExpireIn != 7200 {
t.Errorf("got expireIn %d, want 7200", result.ExpireIn)
}
}
func TestFetchAppToken_EmptyToken(t *testing.T) {
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
w.Header().Set("Content-Type", "application/json")
w.WriteHeader(200)
json.NewEncoder(w).Encode(map[string]any{
"accessToken": "",
"expireIn": 7200,
})
}))
defer srv.Close()
body := mustJSONBody(t, map[string]string{
"appKey": "badkey",
"appSecret": "badsecret",
})
resp, err := srv.Client().Post(srv.URL, "application/json", body)
if err != nil {
t.Fatal(err)
}
defer resp.Body.Close()
var result struct {
AccessToken string `json:"accessToken"`
ExpireIn int64 `json:"expireIn"`
}
json.NewDecoder(resp.Body).Decode(&result)
if result.AccessToken != "" {
t.Errorf("expected empty accessToken, got %q", result.AccessToken)
}
}
func TestAppTokenProvider_GetToken_MissingCredentials(t *testing.T) {
provider := &AppTokenProvider{
ConfigDir: t.TempDir(),
AppKey: "",
AppSecret: "",
}
_, err := provider.GetToken(context.Background())
if err == nil {
t.Error("expected error for missing credentials")
}
}
func TestTruncateStr(t *testing.T) {
if got := truncateStr("hello", 10); got != "hello" {
t.Errorf("got %q, want hello", got)
}
if got := truncateStr("hello world", 5); got != "hello..." {
t.Errorf("got %q, want hello...", got)
}
}
+37
View File
@@ -0,0 +1,37 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package auth
import (
"os"
"strings"
)
const (
// AgentCodeEnv is the sole per-spawn environment variable the host injects
// to declare "this process is driven by a third-party Agent host, render
// authorization UI yourselves".
AgentCodeEnv = "DINGTALK_DWS_AGENTCODE"
)
// HostOwnsPATFlow reports whether the current process is running under a
// third-party Agent host that will render the PAT authorization card
// itself. The sole trigger is AgentCodeEnv (DINGTALK_DWS_AGENTCODE) being
// non-empty. The CLI deliberately does not consult any other signal
// (DINGTALK_AGENT / DWS_CHANNEL / the wire claw-type header) for this
// decision so that server-side routing tags and the host-owned UI contract
// remain independent concerns.
func HostOwnsPATFlow() bool {
return strings.TrimSpace(os.Getenv(AgentCodeEnv)) != ""
}
+319
View File
@@ -0,0 +1,319 @@
package auth
import (
"os"
"path/filepath"
"sync"
"testing"
)
// resetAppConfigCache clears cached app config so tests get a fresh load.
func resetAppConfigCache() {
cachedAppConfigMu.Lock()
cachedAppConfig = nil
cachedAppConfigMu.Unlock()
cachedAppConfigOnce = sync.Once{}
cachedResolvedMu.Lock()
cachedResolvedValid = false
cachedResolvedID = ""
cachedResolvedSecret = ""
cachedResolvedMu.Unlock()
}
// ─── Issue #155: Defensive credential reset ────────────────────────────
//
// These tests verify that both DeviceFlowProvider and OAuthProvider always
// reset credential state and re-fetch clientID from MCP, regardless of what
// previous login methods left in app.json or runtime state.
func TestIssue155V2_OAuthLoginNoSource_ThenDeviceLogin_ResetsAndFetches(t *testing.T) {
// Scenario: OAuth login saved app.json WITHOUT Source field (the original bug).
// Device flow should ignore the stale clientID, reset state, and re-fetch from MCP.
dir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", dir)
t.Setenv("DWS_CLIENT_ID", "")
t.Setenv("DWS_CLIENT_SECRET", "")
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
t.Cleanup(func() {
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
})
// Simulate OAuth login: saved app.json with clientId but NO Source field
oauthAppJSON := `{"clientId":"ding-oauth-stale","clientSecret":"","createdAt":"2026-04-24T00:00:00+08:00"}`
if err := os.WriteFile(filepath.Join(dir, appConfigFile), []byte(oauthAppJSON), 0o600); err != nil {
t.Fatalf("WriteFile error: %v", err)
}
// Verify precondition: ClientID() loads stale value from app.json
resetAppConfigCache()
gotID := ClientID()
if gotID != "ding-oauth-stale" {
t.Fatalf("precondition: ClientID() = %q, want 'ding-oauth-stale'", gotID)
}
if IsClientIDFromMCP() {
t.Fatal("precondition: IsClientIDFromMCP() should be false for app.json without Source")
}
// Now create a DeviceFlowProvider — it should pick up the stale clientID
provider := NewDeviceFlowProvider(dir, nil)
if provider.clientID != "ding-oauth-stale" {
t.Fatalf("provider.clientID = %q, want 'ding-oauth-stale' (from app.json)", provider.clientID)
}
// Key assertion: after prepareCredentials(), the provider should have
// cleared the stale clientID and be ready for MCP fetch.
// We can't call Login() directly (needs real MCP server), but we can
// verify the reset logic by calling the new method directly.
provider.resetCredentialState()
if provider.clientID != "" {
t.Fatalf("after resetCredentialState: provider.clientID = %q, want empty", provider.clientID)
}
if IsClientIDFromMCP() {
t.Fatal("after resetCredentialState: IsClientIDFromMCP() should be false")
}
}
func TestIssue155V2_LegacyAppJson_ThenDeviceLogin_ResetsAndFetches(t *testing.T) {
// Scenario: Legacy app.json (no Source field at all) exists from an old CLI version.
// Device flow should reset and re-fetch.
dir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", dir)
t.Setenv("DWS_CLIENT_ID", "")
t.Setenv("DWS_CLIENT_SECRET", "")
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
t.Cleanup(func() {
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
})
// Write legacy app.json
legacyJSON := `{"clientId":"ding-legacy-old","clientSecret":"","createdAt":"2026-01-01T00:00:00+08:00"}`
if err := os.WriteFile(filepath.Join(dir, appConfigFile), []byte(legacyJSON), 0o600); err != nil {
t.Fatalf("WriteFile error: %v", err)
}
resetAppConfigCache()
provider := NewDeviceFlowProvider(dir, nil)
// Verify stale clientID was loaded
if provider.clientID != "ding-legacy-old" {
t.Fatalf("provider.clientID = %q, want 'ding-legacy-old'", provider.clientID)
}
// Reset should clear it
provider.resetCredentialState()
if provider.clientID != "" {
t.Fatalf("after resetCredentialState: provider.clientID = %q, want empty", provider.clientID)
}
}
func TestIssue155V2_DirectAppJson_ThenDeviceLogin_ResetsAndFetches(t *testing.T) {
// Scenario: User previously logged in with --client-id + --client-secret (direct mode).
// app.json has a different clientId. Device flow should reset and re-fetch from MCP.
dir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", dir)
t.Setenv("DWS_CLIENT_ID", "")
t.Setenv("DWS_CLIENT_SECRET", "")
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
t.Cleanup(func() {
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
})
// Simulate direct-mode app.json with clientSecret stored
if err := SaveAppConfig(dir, &AppConfig{
ClientID: "ding-direct-custom",
ClientSecret: PlainSecret("some-secret"),
}); err != nil {
t.Fatalf("SaveAppConfig error: %v", err)
}
resetAppConfigCache()
provider := NewDeviceFlowProvider(dir, nil)
// Verify the direct clientID was loaded
if provider.clientID != "ding-direct-custom" {
t.Fatalf("provider.clientID = %q, want 'ding-direct-custom'", provider.clientID)
}
// Reset should clear it
provider.resetCredentialState()
if provider.clientID != "" {
t.Fatalf("after resetCredentialState: provider.clientID = %q, want empty", provider.clientID)
}
if IsClientIDFromMCP() {
t.Fatal("after resetCredentialState: IsClientIDFromMCP() should be false")
}
}
func TestIssue155V2_MCPFlagAlreadySet_ThenDeviceLogin_StillResets(t *testing.T) {
// Scenario: MCP flag is already set from a previous device login in same process.
// Device flow should still reset and re-fetch to ensure freshness.
dir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", dir)
t.Setenv("DWS_CLIENT_ID", "")
t.Setenv("DWS_CLIENT_SECRET", "")
// Simulate: MCP flag is already set from previous login
SetClientIDFromMCP("ding-old-mcp")
t.Cleanup(func() {
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
})
provider := NewDeviceFlowProvider(dir, nil)
if provider.clientID != "ding-old-mcp" {
t.Fatalf("provider.clientID = %q, want 'ding-old-mcp'", provider.clientID)
}
// Reset should clear both clientID and MCP flag
provider.resetCredentialState()
if provider.clientID != "" {
t.Fatalf("after resetCredentialState: provider.clientID = %q, want empty", provider.clientID)
}
if IsClientIDFromMCP() {
t.Fatal("after resetCredentialState: IsClientIDFromMCP() should be false after reset")
}
}
func TestIssue155V2_NoAppJson_DeviceLogin_StillWorks(t *testing.T) {
// Scenario: No app.json exists (first time login). Device flow should work normally.
dir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", dir)
t.Setenv("DWS_CLIENT_ID", "")
t.Setenv("DWS_CLIENT_SECRET", "")
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
t.Cleanup(func() {
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
})
provider := NewDeviceFlowProvider(dir, nil)
// clientID should already be empty
if provider.clientID != "" {
t.Fatalf("provider.clientID = %q, want empty (no app.json)", provider.clientID)
}
// Reset should be a no-op but not crash
provider.resetCredentialState()
if provider.clientID != "" {
t.Fatalf("after resetCredentialState: provider.clientID = %q, want empty", provider.clientID)
}
if IsClientIDFromMCP() {
t.Fatal("after resetCredentialState: IsClientIDFromMCP() should be false")
}
}
// ─── OAuthProvider defensive reset (--force login) ─────────────────────
func TestIssue155V2_OAuthForceLogin_ResetsStaleCredentials(t *testing.T) {
// Scenario: Previous login saved app.json with MCP-fetched clientID but
// no Source marker. OAuth --force login should reset and re-fetch.
dir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", dir)
t.Setenv("DWS_CLIENT_ID", "")
t.Setenv("DWS_CLIENT_SECRET", "")
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
t.Cleanup(func() {
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
})
// Simulate previous login: app.json with clientId but no Source
staleJSON := `{"clientId":"ding-stale-oauth","clientSecret":"","createdAt":"2026-04-24T00:00:00+08:00"}`
if err := os.WriteFile(filepath.Join(dir, appConfigFile), []byte(staleJSON), 0o600); err != nil {
t.Fatalf("WriteFile error: %v", err)
}
resetAppConfigCache()
provider := NewOAuthProvider(dir, nil)
// Verify stale clientID was loaded
if provider.clientID != "ding-stale-oauth" {
t.Fatalf("provider.clientID = %q, want 'ding-stale-oauth'", provider.clientID)
}
// Reset should clear it
provider.resetCredentialState()
if provider.clientID != "" {
t.Fatalf("after resetCredentialState: provider.clientID = %q, want empty", provider.clientID)
}
if IsClientIDFromMCP() {
t.Fatal("after resetCredentialState: IsClientIDFromMCP() should be false")
}
}
func TestIssue155V2_OAuthForceLogin_MCPFlagSet_StillResets(t *testing.T) {
// Scenario: MCP flag is already set. OAuth --force login should still reset.
dir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", dir)
t.Setenv("DWS_CLIENT_ID", "")
t.Setenv("DWS_CLIENT_SECRET", "")
SetClientIDFromMCP("ding-old-mcp-oauth")
t.Cleanup(func() {
SetClientID("")
SetClientSecret("")
resetClientIDFromMCP()
resetAppConfigCache()
})
provider := NewOAuthProvider(dir, nil)
provider.resetCredentialState()
if provider.clientID != "" {
t.Fatalf("after resetCredentialState: provider.clientID = %q, want empty", provider.clientID)
}
if IsClientIDFromMCP() {
t.Fatal("after resetCredentialState: IsClientIDFromMCP() should be false after reset")
}
}
+60 -22
View File
@@ -112,6 +112,10 @@ type DevicePollResponse struct {
Code string `json:"code,omitempty"`
Message string `json:"message,omitempty"`
Data DevicePollData `json:"data"`
// Result is an alternate envelope some service versions return instead of
// (or alongside) Data. Always read poll fields via EffectiveData() rather
// than touching Data/Result directly.
Result DevicePollData `json:"result"`
}
type DevicePollData struct {
@@ -120,6 +124,20 @@ type DevicePollData struct {
FlowID string `json:"flowId,omitempty"`
}
// EffectiveData normalizes terminal poll responses that may carry payload
// fields under either `data` or `result`.
//
// Semantics are envelope-level rather than field-level: when Data includes a
// non-empty status, treat Data as the authoritative payload and return it
// unchanged; otherwise fall back to Result. This avoids mixing fields from two
// disagreeing envelopes into a Frankenstein result.
func (r DevicePollResponse) EffectiveData() DevicePollData {
if r.Data.Status != "" || r.Result.Status == "" {
return r.Data
}
return r.Result
}
type serviceResult struct {
Success bool `json:"success"`
Result json.RawMessage `json:"result"`
@@ -127,22 +145,38 @@ type serviceResult struct {
ErrorMsg string `json:"errorMsg"`
}
// resetCredentialState clears any stale credential state inherited from
// previous login methods (OAuth, PAT, etc.) so that device flow always
// starts fresh by fetching clientID from MCP.
//
// This is a defensive measure: no matter what a prior login wrote to
// app.json or runtime globals, device flow will re-fetch from MCP and
// set the correct clientIDFromMCP flag, ensuring exchangeCode() uses
// the MCP proxy path (which doesn't require clientSecret).
func (p *DeviceFlowProvider) resetCredentialState() {
p.clientID = ""
clientMu.Lock()
clientIDFromMCP = false
clientMu.Unlock()
}
func (p *DeviceFlowProvider) Login(ctx context.Context) (*TokenData, error) {
// Ensure we have a valid client ID (fetch from MCP if not available)
if p.clientID == "" {
if p.logger != nil {
p.logger.Debug("client ID not configured, fetching from MCP server")
}
mcpClientID, mcpErr := FetchClientIDFromMCP(ctx)
if mcpErr != nil {
return nil, fmt.Errorf("%s: %w", i18n.T("获取 Client ID 失败"), mcpErr)
}
p.clientID = mcpClientID
// Mark that clientID is from MCP
SetClientIDFromMCP(mcpClientID)
if p.logger != nil {
p.logger.Debug("fetched client ID from MCP server", "clientID", mcpClientID)
}
// Defensive reset: clear any stale credential state from previous login
// methods (OAuth scan, PAT, etc.) so we always re-fetch from MCP.
// This ensures --device login works regardless of what app.json contains.
p.resetCredentialState()
if p.logger != nil {
p.logger.Debug("fetching client ID from MCP server (device flow always re-fetches)")
}
mcpClientID, mcpErr := FetchClientIDFromMCP(ctx)
if mcpErr != nil {
return nil, fmt.Errorf("%s: %w", i18n.T("获取 Client ID 失败"), mcpErr)
}
p.clientID = mcpClientID
SetClientIDFromMCP(mcpClientID)
if p.logger != nil {
p.logger.Debug("fetched client ID from MCP server", "clientID", mcpClientID)
}
const maxAttempts = 3
@@ -271,16 +305,19 @@ func (p *DeviceFlowProvider) loginOnce(ctx context.Context, attempt int) (*Token
return nil, fmt.Errorf("%s: %w", i18n.T("保存 token 失败"), err)
}
// Persist app credentials (with secret) if using custom client credentials.
// MUST run BEFORE os.Setenv below to avoid env-matching short circuit.
oauthProvider.persistAppConfigIfNeeded()
// Always persist clientId to app.json so future process startups
// can load it via ResolveAppCredentials and populate DWS_CLIENT_ID env.
if p.clientID != "" {
_ = os.Setenv("DWS_CLIENT_ID", p.clientID)
_ = SaveAppConfig(p.configDir, &AppConfig{ClientID: p.clientID})
if !HasAppConfig(p.configDir) {
_ = SaveAppConfig(p.configDir, &AppConfig{ClientID: p.clientID})
}
}
// Persist app credentials if using custom client credentials
oauthProvider.persistAppConfigIfNeeded()
return tokenData, nil
}
@@ -412,10 +449,11 @@ func (p *DeviceFlowProvider) waitForAuthorizationByFlowID(ctx context.Context, a
continue
}
switch pollResp.Data.Status {
pollData := pollResp.EffectiveData()
switch pollData.Status {
case StatusApproved:
dfPrintPollResult(p.output(), "authorized", i18n.T("授权成功!"))
return &DeviceTokenResponse{AuthCode: pollResp.Data.AuthCode}, nil
return &DeviceTokenResponse{AuthCode: pollData.AuthCode}, nil
case StatusPending:
dfPrintPollResult(p.output(), "pending", i18n.T("等待用户授权..."))
case StatusRejected:
@@ -425,7 +463,7 @@ func (p *DeviceFlowProvider) waitForAuthorizationByFlowID(ctx context.Context, a
_, _ = fmt.Fprintln(p.output(), "")
return nil, errors.New(i18n.T("设备授权码已过期"))
default:
dfPrintPollResult(p.output(), "unknown", fmt.Sprintf(i18n.T("未知状态: %s"), pollResp.Data.Status))
dfPrintPollResult(p.output(), "unknown", fmt.Sprintf(i18n.T("未知状态: %s"), pollData.Status))
}
}
}
+98
View File
@@ -143,6 +143,104 @@ func TestWaitForAuthorizationSucceedsAfterPending(t *testing.T) {
}
}
func TestWaitForAuthorizationAcceptsResultEnvelope(t *testing.T) {
t.Parallel()
var calls atomic.Int32
server := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if r.Method != http.MethodGet {
t.Fatalf("method = %s, want GET", r.Method)
}
if calls.Add(1) <= 2 {
w.Header().Set("Content-Type", "application/json")
json.NewEncoder(w).Encode(map[string]interface{}{
"success": true,
"result": map[string]string{"status": "PENDING"},
})
return
}
w.Header().Set("Content-Type", "application/json")
json.NewEncoder(w).Encode(map[string]interface{}{
"success": true,
"result": map[string]string{
"status": "APPROVED",
"authCode": "final-auth-code",
},
})
}))
defer server.Close()
provider := NewDeviceFlowProvider(t.TempDir(), newDeviceFlowTestLogger())
provider.Output = io.Discard
provider.SetTerminalBaseURL(server.URL)
resp, err := provider.waitForAuthorization(context.Background(), &DeviceAuthResponse{
FlowID: "test-flow-id-result",
ExpiresIn: 10,
Interval: 1,
})
if err != nil {
t.Fatalf("waitForAuthorization() error = %v", err)
}
if resp.AuthCode != "final-auth-code" {
t.Fatalf("auth code = %q, want final-auth-code", resp.AuthCode)
}
if calls.Load() != 3 {
t.Fatalf("poll calls = %d, want 3", calls.Load())
}
}
func TestDevicePollResponseEffectiveData_FallsBackToResultEnvelope(t *testing.T) {
t.Parallel()
resp := DevicePollResponse{
Success: true,
Result: DevicePollData{
Status: "APPROVED",
AuthCode: "auth-from-result",
FlowID: "flow-from-result",
},
}
effective := resp.EffectiveData()
if effective.Status != "APPROVED" {
t.Fatalf("effective.Status = %q, want APPROVED", effective.Status)
}
if effective.AuthCode != "auth-from-result" {
t.Fatalf("effective.AuthCode = %q, want auth-from-result", effective.AuthCode)
}
if effective.FlowID != "flow-from-result" {
t.Fatalf("effective.FlowID = %q, want flow-from-result", effective.FlowID)
}
}
func TestDevicePollResponseEffectiveData_DataEnvelopeWinsAsWholePayload(t *testing.T) {
t.Parallel()
resp := DevicePollResponse{
Success: true,
Data: DevicePollData{
Status: "PENDING",
},
Result: DevicePollData{
Status: "APPROVED",
AuthCode: "auth-from-result",
FlowID: "flow-from-result",
},
}
effective := resp.EffectiveData()
if effective.Status != "PENDING" {
t.Fatalf("effective.Status = %q, want PENDING", effective.Status)
}
if effective.AuthCode != "" {
t.Fatalf("effective.AuthCode = %q, want empty because Data envelope wins as a whole", effective.AuthCode)
}
if effective.FlowID != "" {
t.Fatalf("effective.FlowID = %q, want empty because Data envelope wins as a whole", effective.FlowID)
}
}
func TestWaitForAuthorizationFallsBackToDeviceCodeWhenFlowIDMissing(t *testing.T) {
t.Parallel()
+6 -5
View File
@@ -106,6 +106,12 @@ const (
MCPOAuthTokenPath = "/oauth2/getToken"
MCPRefreshTokenPath = "/oauth2/refreshToken"
MCPRevokeTokenPath = "/oauth2/revokeToken"
// App-level access token endpoints (for dws api raw calls).
// AppAccessTokenURL is the unified app-level access token endpoint.
// POST with {"appKey":"X","appSecret":"X"} → {"accessToken":"...","expireIn":7200}
AppAccessTokenURL = "https://api.dingtalk.com/v1.0/oauth2/accessToken"
)
// GetTerminalBaseURL returns the terminal base URL with priority:
@@ -290,11 +296,6 @@ func getRuntimeCredentials() (clientID, clientSecret string) {
return runtimeClientID, runtimeClientSecret
}
// getEnvClientID returns the environment variable client ID if set.
func getEnvClientID() string {
return os.Getenv("DWS_CLIENT_ID")
}
// getDefaultConfigDir returns the default configuration directory.
// Priority: DWS_CONFIG_DIR env var > ~/.dws
func getDefaultConfigDir() string {
+41
View File
@@ -0,0 +1,41 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package auth
import "time"
// MarkAccessTokenStale loads the persisted TokenData, sets ExpiresAt to a past
// instant (preserving access_token and refresh_token), and writes it back. The
// next OAuthProvider.GetAccessToken call will see IsAccessTokenValid() == false
// and proceed to lockedRefresh, exchanging the refresh_token for a fresh
// access_token.
//
// Use this only when the server has rejected the current access_token but the
// local expiry has not yet elapsed (zombie token scenario). It does not delete
// any token material and is safe to call concurrently — actual refresh is
// serialized by lockedRefresh's dual-layer locking.
//
// Returns the original load error when there is no usable token on disk; a
// nil error when there is no access_token to invalidate (no-op).
func MarkAccessTokenStale(configDir string) error {
data, err := LoadTokenData(configDir)
if err != nil {
return err
}
if data == nil || data.AccessToken == "" {
return nil
}
data.ExpiresAt = time.Now().Add(-1 * time.Minute)
return SaveTokenData(configDir, data)
}
+40 -22
View File
@@ -55,6 +55,16 @@ func NewOAuthProvider(configDir string, logger *slog.Logger) *OAuthProvider {
}
}
// resetCredentialState clears any stale credential state inherited from
// previous login methods so that OAuth flow always starts fresh by
// fetching clientID from MCP.
func (p *OAuthProvider) resetCredentialState() {
p.clientID = ""
clientMu.Lock()
clientIDFromMCP = false
clientMu.Unlock()
}
func (p *OAuthProvider) output() io.Writer {
if p != nil && p.Output != nil {
return p.Output
@@ -75,6 +85,10 @@ func (p *OAuthProvider) Login(ctx context.Context, force bool) (*TokenData, erro
if p.logger != nil {
p.logger.Debug("access_token still valid, skipping login")
}
// Even on early return, persist custom app credentials if provided
// via --client-id/--client-secret flags. Without this, the flags
// are only in runtime globals and lost when the process exits.
p.persistAppConfigIfNeeded()
return data, nil
}
// Case 2: refresh using refresh_token (with lock to prevent concurrent refresh).
@@ -84,6 +98,7 @@ func (p *OAuthProvider) Login(ctx context.Context, force bool) (*TokenData, erro
}
refreshed, rErr := p.lockedRefresh(ctx)
if rErr == nil {
p.persistAppConfigIfNeeded()
return refreshed, nil
}
if p.logger != nil {
@@ -94,21 +109,22 @@ func (p *OAuthProvider) Login(ctx context.Context, force bool) (*TokenData, erro
}
// Fall through: full browser OAuth flow.
// Ensure we have a valid client ID (fetch from MCP if not available)
if p.clientID == "" {
if p.logger != nil {
p.logger.Debug("client ID not configured, fetching from MCP server")
}
mcpClientID, mcpErr := FetchClientIDFromMCP(ctx)
if mcpErr != nil {
return nil, fmt.Errorf("%s: %w", i18n.T("获取 Client ID 失败"), mcpErr)
}
p.clientID = mcpClientID
// Mark that clientID is from MCP, so we use MCP OAuth endpoints
SetClientIDFromMCP(mcpClientID)
if p.logger != nil {
p.logger.Debug("fetched client ID from MCP server", "clientID", mcpClientID)
}
// Defensive reset: clear any stale credential state from previous login
// methods so we always re-fetch clientID from MCP. This ensures
// --force login works regardless of what app.json contains.
p.resetCredentialState()
if p.logger != nil {
p.logger.Debug("fetching client ID from MCP server (OAuth flow always re-fetches)")
}
mcpClientID, mcpErr := FetchClientIDFromMCP(ctx)
if mcpErr != nil {
return nil, fmt.Errorf("%s: %w", i18n.T("获取 Client ID 失败"), mcpErr)
}
p.clientID = mcpClientID
SetClientIDFromMCP(mcpClientID)
if p.logger != nil {
p.logger.Debug("fetched client ID from MCP server", "clientID", mcpClientID)
}
// Find a free port for the callback server.
@@ -485,16 +501,19 @@ continueLogin:
return nil, fmt.Errorf("%s: %w", i18n.T("保存 token 失败"), err)
}
// Persist app credentials (with secret) if using custom client credentials.
// MUST run BEFORE os.Setenv below to avoid env-matching short circuit.
p.persistAppConfigIfNeeded()
// Always persist clientId to app.json so future process startups
// can load it via ResolveAppCredentials and populate DWS_CLIENT_ID env.
if p.clientID != "" {
_ = os.Setenv("DWS_CLIENT_ID", p.clientID)
_ = SaveAppConfig(p.configDir, &AppConfig{ClientID: p.clientID})
if !HasAppConfig(p.configDir) {
_ = SaveAppConfig(p.configDir, &AppConfig{ClientID: p.clientID})
}
}
// Persist app credentials if using custom client credentials
p.persistAppConfigIfNeeded()
return tokenData, nil
}
@@ -616,9 +635,8 @@ func (p *OAuthProvider) persistAppConfigIfNeeded() {
return
}
// Only persist if they differ from environment/default values
envID := getEnvClientID()
if clientID == envID || clientID == DefaultClientID {
// Skip if using default placeholder credentials
if clientID == DefaultClientID {
return
}
+40
View File
@@ -0,0 +1,40 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package auth
import (
"os"
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/keychain"
)
// TestMain isolates the on-disk keychain storage to a process-wide
// temporary directory for the entire internal/auth test binary so that
// SaveTokenData/DeleteTokenData calls in these tests can never write to
// the developer's real keychain location, preventing cross-package leaks
// when go test runs packages in parallel.
func TestMain(m *testing.M) {
tmpDir, err := os.MkdirTemp("", "dws-auth-test-keychain-")
if err != nil {
panic("create test keychain tempdir: " + err.Error())
}
if err := os.Setenv(keychain.StorageDirEnv, tmpDir); err != nil {
_ = os.RemoveAll(tmpDir)
panic("set " + keychain.StorageDirEnv + ": " + err.Error())
}
code := m.Run()
_ = os.RemoveAll(tmpDir)
os.Exit(code)
}
+4 -1
View File
@@ -20,9 +20,12 @@ import (
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/keychain"
)
// cleanupKeychain removes test data from keychain after test completes.
// cleanupKeychain isolates keychain state to a per-test temporary directory
// so that concurrent test packages (notably internal/app) don't read tokens
// written by these tests, and removes test data on completion.
func cleanupKeychain(t *testing.T) {
t.Helper()
t.Setenv(keychain.StorageDirEnv, t.TempDir())
t.Cleanup(func() {
_ = keychain.Remove(keychain.Service, keychain.AccountToken)
})
+113 -18
View File
@@ -104,22 +104,38 @@ func NewMCPCommand(ctx context.Context, loader CatalogLoader, runner executor.Ru
}
func NewSchemaCommand(loader CatalogLoader) *cobra.Command {
return &cobra.Command{
Use: "schema [product.tool]",
cmd := &cobra.Command{
Use: "schema [path]",
Short: "查看 MCP 工具 Schema (产品列表 / 工具参数)",
Long: `查看已发现的 MCP 产品和工具的 Schema 元数据。
不带参数时列出所有产品及其工具数量;带 product.tool 路径时
输出该工具的完整输入 Schema(JSON Schema 格式)。
不带参数时列出所有产品及其工具数量;带路径时输出该工具的完整
输入 Schema(JSON Schema 格式)、输出 Schema、MCP 注解和 CLI
层的 flag overlay(alias/transform/env_default)。
路径支持三种写法:
product.rpc_name 规范路径 (e.g. ding.send_ding_message)
product.group.cli_name CLI 点路径 (e.g. ding.message.send)
"product group cli_name" CLI 空格/斜杠路径 (e.g. "ding message send")
示例:
dws schema # 列出所有产品
dws schema aitable.query_records # 查看 aitable query_records 的参数 Schema
dws schema --fields id,tools # 只显示 id 和 tools 字段
dws schema --jq '.products[].id' # 用 jq 提取所有产品 ID`,
dws schema # 列出所有产品
dws schema ding.send_ding_message # 规范路径
dws schema "ding message send" # CLI 路径(空格)
dws schema --cli-path "ding message send" # 同上,显式 flag(脚本友好)
dws schema -f pretty ding.send_ding_message # ANSI 彩色分区展示
dws schema --jq '.tool.flag_overlay' # 只看 CLI overlay`,
Args: cobra.MaximumNArgs(1),
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
cliPath, _ := cmd.Flags().GetString("cli-path")
cliPath = strings.TrimSpace(cliPath)
if cliPath != "" {
if len(args) > 0 {
return apperrors.NewValidation("--cli-path and positional argument are mutually exclusive")
}
args = []string{cliPath}
}
catalog, err := loader.Load(cmd.Context())
if err != nil {
var degraded *CatalogDegraded
@@ -158,6 +174,8 @@ func NewSchemaCommand(loader CatalogLoader) *cobra.Command {
)
},
}
cmd.Flags().String("cli-path", "", "按 CLI 命令路径查询 (等同于位置参数,便于脚本使用无需转义)")
return cmd
}
func BuildFlagSpecs(schema map[string]any, hints map[string]ir.CLIFlagHint) []FlagSpec {
@@ -664,7 +682,7 @@ func schemaPayload(catalog ir.Catalog, args []string) (map[string]any, error) {
}, nil
}
product, tool, ok := catalog.FindTool(args[0])
product, tool, ok := resolveSchemaPath(catalog, args[0])
if !ok {
return nil, apperrors.NewValidation(fmt.Sprintf("unknown canonical schema path %q", args[0]))
}
@@ -676,23 +694,100 @@ func schemaPayload(catalog ir.Catalog, args []string) (map[string]any, error) {
}, nil
}
// compactTool returns a lean representation of a tool for schema
// output, keeping only the fields that AI agents and developers
// need: name, description, parameters, and sensitivity flag.
func compactTool(t ir.ToolDescriptor) map[string]any {
tool := map[string]any{
"name": t.RPCName,
"title": t.Title,
"description": t.Description,
"sensitive": t.Sensitive,
// resolveSchemaPath accepts three input forms and maps to (product, tool):
// - "product.rpc_name" (canonical, e.g. "ding.send_ding_message")
// - "product.cli_name" (single-level CLI path, e.g. "doc.create")
// - CLI path with group ("ding message send" or "ding.message.send";
// also accepts "/" and multiple whitespace between tokens)
//
// Canonical form is tried first so existing callers and scripts keep
// working; only when that fails does the CLI-path resolver run.
func resolveSchemaPath(catalog ir.Catalog, raw string) (ir.CanonicalProduct, ir.ToolDescriptor, bool) {
raw = strings.TrimSpace(raw)
if raw == "" {
return ir.CanonicalProduct{}, ir.ToolDescriptor{}, false
}
if product, tool, ok := catalog.FindTool(raw); ok {
return product, tool, true
}
tokens := splitSchemaPathTokens(raw)
if len(tokens) < 2 {
return ir.CanonicalProduct{}, ir.ToolDescriptor{}, false
}
productID := tokens[0]
leaf := tokens[len(tokens)-1]
groupPath := strings.Join(tokens[1:len(tokens)-1], ".")
product, ok := catalog.FindProduct(productID)
if !ok {
return ir.CanonicalProduct{}, ir.ToolDescriptor{}, false
}
for _, tool := range product.Tools {
if tool.CLIName != leaf {
continue
}
if strings.TrimSpace(tool.Group) != groupPath {
continue
}
return product, tool, true
}
return ir.CanonicalProduct{}, ir.ToolDescriptor{}, false
}
// splitSchemaPathTokens splits a CLI path on dots, slashes, and
// whitespace, returning only non-empty tokens. "ding message send",
// "ding.message.send", and "ding/message/send" all yield the same
// three tokens.
func splitSchemaPathTokens(raw string) []string {
fields := strings.FieldsFunc(raw, func(r rune) bool {
return r == '.' || r == '/' || r == ' ' || r == '\t'
})
out := fields[:0]
for _, f := range fields {
if s := strings.TrimSpace(f); s != "" {
out = append(out, s)
}
}
return out
}
// compactTool returns a lean representation of a tool for schema
// output, keeping the fields AI agents and scripts need: RPC + CLI
// identity, input/output schema, sensitivity, MCP annotations, and the
// CLI flag overlay (alias/transform/envDefault/default) that shapes
// how raw MCP parameters appear on the command line.
func compactTool(t ir.ToolDescriptor) map[string]any {
tool := map[string]any{
"name": t.RPCName,
"cli_name": t.CLIName,
"canonical_path": t.CanonicalPath,
"title": t.Title,
"description": t.Description,
"sensitive": t.Sensitive,
}
if strings.TrimSpace(t.Group) != "" {
tool["group"] = t.Group
}
if props, ok := t.InputSchema["properties"]; ok {
tool["parameters"] = props
}
if req := requiredFields(t.InputSchema); len(req) > 0 {
tool["required"] = req
}
if len(t.OutputSchema) > 0 {
tool["output_schema"] = t.OutputSchema
}
if t.Annotations != nil {
tool["annotations"] = t.Annotations
}
if len(t.FlagOverlay) > 0 {
tool["flag_overlay"] = t.FlagOverlay
}
return tool
}
+199
View File
@@ -121,6 +121,205 @@ func TestSchemaPayloadFindsTool(t *testing.T) {
}
}
func TestCompactToolEmitsExtendedFields(t *testing.T) {
t.Parallel()
destructive := true
tool := ir.ToolDescriptor{
RPCName: "send_ding_message",
CLIName: "send",
Group: "message",
CanonicalPath: "ding.send_ding_message",
Title: "发送DING消息",
Description: "desc",
Sensitive: true,
InputSchema: map[string]any{
"type": "object",
"required": []any{"robotCode"},
"properties": map[string]any{
"robotCode": map[string]any{"type": "string"},
},
},
OutputSchema: map[string]any{
"type": "object",
"properties": map[string]any{
"openDingId": map[string]any{"type": "string"},
},
},
Annotations: &ir.ToolAnnotations{DestructiveHint: &destructive},
FlagOverlay: map[string]ir.FlagOverlay{
"receiverUserIdList": {Alias: "users", Transform: "csv_to_array"},
},
}
out := compactTool(tool)
if out["name"] != "send_ding_message" {
t.Errorf("name = %v", out["name"])
}
if out["cli_name"] != "send" {
t.Errorf("cli_name = %v", out["cli_name"])
}
if out["canonical_path"] != "ding.send_ding_message" {
t.Errorf("canonical_path = %v", out["canonical_path"])
}
if out["group"] != "message" {
t.Errorf("group = %v", out["group"])
}
if _, ok := out["output_schema"]; !ok {
t.Errorf("output_schema missing, keys = %v", keysOf(out))
}
if _, ok := out["annotations"]; !ok {
t.Errorf("annotations missing, keys = %v", keysOf(out))
}
overlay, ok := out["flag_overlay"].(map[string]ir.FlagOverlay)
if !ok {
t.Fatalf("flag_overlay type = %T", out["flag_overlay"])
}
if overlay["receiverUserIdList"].Alias != "users" {
t.Errorf("overlay alias = %q", overlay["receiverUserIdList"].Alias)
}
}
func TestCompactToolOmitsEmptyExtras(t *testing.T) {
t.Parallel()
tool := ir.ToolDescriptor{
RPCName: "list_documents",
CLIName: "list",
CanonicalPath: "doc.list_documents",
InputSchema: map[string]any{"type": "object"},
}
out := compactTool(tool)
for _, key := range []string{"output_schema", "annotations", "flag_overlay", "group"} {
if _, has := out[key]; has {
t.Errorf("key %q should be omitted when empty, got %#v", key, out[key])
}
}
}
func TestSchemaPayloadResolvesCLIPath(t *testing.T) {
t.Parallel()
catalog := ir.Catalog{
Products: []ir.CanonicalProduct{
{
ID: "ding",
Tools: []ir.ToolDescriptor{
{
RPCName: "send_ding_message",
CLIName: "send",
Group: "message",
CanonicalPath: "ding.send_ding_message",
InputSchema: map[string]any{"type": "object"},
},
{
RPCName: "recall_ding_message",
CLIName: "recall",
Group: "message",
CanonicalPath: "ding.recall_ding_message",
InputSchema: map[string]any{"type": "object"},
},
},
},
},
}
cases := []struct {
name string
input string
wantRPC string
wantErr bool
}{
{"canonical rpc path", "ding.send_ding_message", "send_ding_message", false},
{"dotted cli path", "ding.message.send", "send_ding_message", false},
{"space cli path", "ding message send", "send_ding_message", false},
{"slash cli path", "ding/message/recall", "recall_ding_message", false},
{"unknown leaf", "ding message nope", "", true},
{"unknown group", "ding random send", "", true},
{"unknown product", "nope send", "", true},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
payload, err := schemaPayload(catalog, []string{tc.input})
if (err != nil) != tc.wantErr {
t.Fatalf("err = %v, wantErr = %v", err, tc.wantErr)
}
if tc.wantErr {
return
}
tool, ok := payload["tool"].(map[string]any)
if !ok {
t.Fatalf("payload tool missing, got %#v", payload)
}
if tool["name"] != tc.wantRPC {
t.Errorf("tool name = %v, want %s", tool["name"], tc.wantRPC)
}
})
}
}
func TestSchemaCommandCLIPathFlag(t *testing.T) {
t.Parallel()
loader := StaticLoader{Catalog: ir.Catalog{
Products: []ir.CanonicalProduct{{
ID: "ding",
Tools: []ir.ToolDescriptor{{
RPCName: "send_ding_message",
CLIName: "send",
Group: "message",
CanonicalPath: "ding.send_ding_message",
InputSchema: map[string]any{"type": "object"},
}},
}},
}}
t.Run("resolves via --cli-path", func(t *testing.T) {
cmd := NewSchemaCommand(loader)
var out bytes.Buffer
cmd.SetOut(&out)
cmd.SetErr(&bytes.Buffer{})
cmd.SetArgs([]string{"--cli-path", "ding message send"})
if err := cmd.Execute(); err != nil {
t.Fatalf("Execute() error = %v", err)
}
var payload map[string]any
if err := json.Unmarshal(out.Bytes(), &payload); err != nil {
t.Fatalf("decode: %v", err)
}
tool, ok := payload["tool"].(map[string]any)
if !ok {
t.Fatalf("tool missing: %#v", payload)
}
if tool["name"] != "send_ding_message" {
t.Errorf("tool name = %v", tool["name"])
}
})
t.Run("rejects positional + flag collision", func(t *testing.T) {
cmd := NewSchemaCommand(loader)
var out bytes.Buffer
cmd.SetOut(&out)
cmd.SetErr(&bytes.Buffer{})
cmd.SetArgs([]string{"--cli-path", "ding message send", "ding.send_ding_message"})
err := cmd.Execute()
if err == nil {
t.Fatalf("expected mutual-exclusion error, got nil")
}
if !strings.Contains(err.Error(), "mutually exclusive") {
t.Errorf("err = %v, want mutual-exclusion message", err)
}
})
}
func keysOf(m map[string]any) []string {
out := make([]string, 0, len(m))
for k := range m {
out = append(out, k)
}
return out
}
func TestNewMCPCommandReturnsLoaderErrorForInvocations(t *testing.T) {
t.Parallel()
+146 -2
View File
@@ -24,6 +24,7 @@ import (
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cache"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/discovery"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/editionmerge"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/ir"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/transport"
@@ -196,14 +197,23 @@ func (l EnvironmentLoader) Load(ctx context.Context) (ir.Catalog, error) {
return FixtureLoader{Path: fixturePath}.Load(ctx)
}
// Priority: explicit test override > edition-specific discovery URL >
// open-source default. For Wukong this pulls the runtime catalog fetch
// onto the same Portal endpoint that loadDynamicCommands already uses,
// eliminating the historical split where the command tree came from
// Wukong Portal while runtime endpoint resolution silently read the
// open-source Market cache (see fix-wukong-endpoint-partition plan).
baseURL := DefaultMarketBaseURL
if editionURL := strings.TrimSpace(edition.Get().DiscoveryURL); editionURL != "" {
baseURL = editionURL
}
if l.CatalogBaseURLOverride != "" {
baseURL = l.CatalogBaseURLOverride
}
cacheDir, _ := l.lookup(CacheDirEnv)
store := cache.NewStore(cacheDir)
partition := config.DefaultPartition
partition := config.EditionPartition(edition.Get().Name)
// Cache-first: if a cached catalog is available, use it immediately.
// Startup command construction should not block on synchronous discovery
@@ -223,6 +233,15 @@ func (l EnvironmentLoader) Load(ctx context.Context) (ir.Catalog, error) {
}
if !hasAuth {
// Cache / discovery both unreachable without credentials — fall back
// to the edition's SupplementServers / FallbackServers hook so that
// hardcoded overlay commands can still resolve an endpoint via the
// returned catalog. Without this an unauthenticated cold start
// produces DegradedUnauthenticated and every hardcoded command
// fails even when the edition carries its own static endpoint map.
if fb := fallbackRuntimeServers(); len(fb) > 0 {
return ir.BuildCatalog(fb), nil
}
return ir.Catalog{}, newCatalogDegraded(DegradedUnauthenticated, 0)
}
@@ -247,9 +266,19 @@ func (l EnvironmentLoader) Load(ctx context.Context) (ir.Catalog, error) {
if cached.Available && len(cached.Catalog.Products) > 0 {
return cached.Catalog, nil
}
if fb := fallbackRuntimeServers(); len(fb) > 0 {
return ir.BuildCatalog(fb), nil
}
return ir.Catalog{}, newCatalogDegraded(DegradedMarketUnreachable, 0)
}
// Surface Portal-side merge warnings (dropped envelopes, dangling serverDeps,
// dangling toolOverrides.*.serverOverride) to stderr so configuration drift
// is visible at the first `dws cache refresh` / cold start after Portal
// publishes a broken envelope. Non-fatal: discovery continues with the
// accepted subset. See plan fix-wukong-discovery-missing-servers Phase 4.3.
logDiscoveryWarnings(response.Metadata.Warnings)
servers := market.NormalizeServers(response, "live_market")
_ = store.SaveRegistry(partition, cache.RegistrySnapshot{Servers: servers})
@@ -280,6 +309,9 @@ func (l EnvironmentLoader) Load(ctx context.Context) (ir.Catalog, error) {
if cached.Available && len(cached.Catalog.Products) > 0 {
return cached.Catalog, nil
}
if fb := fallbackRuntimeServers(); len(fb) > 0 {
return ir.BuildCatalog(fb), nil
}
return ir.Catalog{}, newCatalogDegraded(DegradedRuntimeAllFailed, len(servers))
}
@@ -298,6 +330,7 @@ func (l EnvironmentLoader) Load(ctx context.Context) (ir.Catalog, error) {
runtimeServers = append(runtimeServers, runtimeServer)
}
}
runtimeServers = appendSupplementRuntimeServers(runtimeServers)
return ir.BuildCatalog(runtimeServers), nil
}
@@ -306,15 +339,28 @@ func (l EnvironmentLoader) Load(ctx context.Context) (ir.Catalog, error) {
// window, the returned state asks the caller to try live discovery before
// trusting the cache as current truth.
func (l EnvironmentLoader) loadFromCache(store *cache.Store) cachedCatalogState {
partition := config.DefaultPartition
partition := config.EditionPartition(edition.Get().Name)
regSnap, freshness, err := store.LoadRegistry(partition)
if err != nil || len(regSnap.Servers) == 0 {
// No cached registry. Still honour the edition's SupplementServers
// hook so that hardcoded overlay commands whose products are not
// part of the Portal envelope (Wukong gray-release in particular)
// can resolve an endpoint via the catalog path as well.
if supplement := supplementRuntimeServers(nil); len(supplement) > 0 {
return cachedCatalogState{
Catalog: ir.BuildCatalog(supplement),
Registry: regSnap,
Available: true,
NeedsRevalidate: true,
}
}
return cachedCatalogState{}
}
now := store.Now().UTC()
needsRevalidate := freshness == cache.FreshnessStale || cache.ShouldRevalidate(now, regSnap.SavedAt)
runtimeServers := make([]discovery.RuntimeServer, 0, len(regSnap.Servers))
existing := make(map[string]bool, len(regSnap.Servers))
for _, server := range regSnap.Servers {
toolsSnap, toolsFreshness, toolsErr := store.LoadTools(partition, server.Key)
if toolsErr != nil || toolsFreshness != cache.FreshnessFresh {
@@ -328,10 +374,17 @@ func (l EnvironmentLoader) loadFromCache(store *cache.Store) cachedCatalogState
Source: "fresh_cache",
Degraded: false,
})
if id := server.CLI.ID; id != "" {
existing[id] = true
}
if server.Key != "" {
existing[server.Key] = true
}
}
if len(runtimeServers) != len(regSnap.Servers) {
needsRevalidate = true
}
runtimeServers = append(runtimeServers, supplementRuntimeServers(existing)...)
return cachedCatalogState{
Catalog: ir.BuildCatalog(runtimeServers),
Registry: regSnap,
@@ -340,6 +393,81 @@ func (l EnvironmentLoader) loadFromCache(store *cache.Store) cachedCatalogState
}
}
// supplementRuntimeServers materialises the edition.SupplementServers hook
// as discovery.RuntimeServer values, skipping IDs that already appear in
// the discovery result. The returned servers carry no tools — they exist
// only so catalog.FindProduct can resolve an endpoint; tool validation
// for these products is expected to fall through to directRuntimeEndpoint.
func supplementRuntimeServers(existing map[string]bool) []discovery.RuntimeServer {
fn := edition.Get().SupplementServers
if fn == nil {
return nil
}
sup := fn()
if len(sup) == 0 {
return nil
}
out := make([]discovery.RuntimeServer, 0, len(sup))
for _, s := range sup {
if s.ID == "" {
continue
}
if existing != nil && existing[s.ID] {
continue
}
out = append(out, discovery.RuntimeServer{
Server: editionmerge.ToDescriptor(s, "edition_supplement"),
Source: "edition_supplement",
Degraded: false,
})
}
return out
}
// fallbackRuntimeServers materialises the edition.FallbackServers hook,
// additionally folding in SupplementServers entries the hook omits.
// Used when every other discovery avenue failed.
func fallbackRuntimeServers() []discovery.RuntimeServer {
fn := edition.Get().FallbackServers
if fn == nil {
return supplementRuntimeServers(nil)
}
fb := fn()
if len(fb) == 0 {
return supplementRuntimeServers(nil)
}
existing := make(map[string]bool, len(fb))
out := make([]discovery.RuntimeServer, 0, len(fb))
for _, s := range fb {
if s.ID == "" {
continue
}
existing[s.ID] = true
out = append(out, discovery.RuntimeServer{
Server: editionmerge.ToDescriptor(s, "edition_fallback"),
Source: "edition_fallback",
Degraded: false,
})
}
out = append(out, supplementRuntimeServers(existing)...)
return out
}
// appendSupplementRuntimeServers merges supplement entries into a live
// discovery result, deduplicating against existing IDs.
func appendSupplementRuntimeServers(servers []discovery.RuntimeServer) []discovery.RuntimeServer {
existing := make(map[string]bool, len(servers))
for _, s := range servers {
if id := s.Server.CLI.ID; id != "" {
existing[id] = true
}
if s.Server.Key != "" {
existing[s.Server.Key] = true
}
}
return append(servers, supplementRuntimeServers(existing)...)
}
func (l EnvironmentLoader) lookup(key string) (string, bool) {
if l.LookupEnv == nil {
return "", false
@@ -354,3 +482,19 @@ func (l EnvironmentLoader) lookup(key string) (string, bool) {
}
return value, true
}
// logDiscoveryWarnings prints Portal-side merge warnings via slog (stderr).
// No-op when the response carries an empty / nil Warnings slice — which is the
// common case for older Portal builds that don't populate the field.
func logDiscoveryWarnings(warnings []market.ListWarning) {
if len(warnings) == 0 {
return
}
for _, w := range warnings {
slog.Warn("discovery: merge warning from Portal",
"product", w.ProductID,
"reason", w.Reason,
"detail", w.Detail,
)
}
}
+164
View File
@@ -0,0 +1,164 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package cli
import (
"testing"
"time"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cache"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/ir"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
// setEdition overrides the active edition hooks for the duration of the test.
func setEdition(t *testing.T, h *edition.Hooks) {
t.Helper()
prev := edition.Get()
edition.Override(h)
t.Cleanup(func() { edition.Override(prev) })
}
func seedRegistryCache(t *testing.T, store *cache.Store, partition string, savedAt time.Time, servers []market.ServerDescriptor) {
t.Helper()
if err := store.SaveRegistry(partition, cache.RegistrySnapshot{
SavedAt: savedAt,
Servers: servers,
}); err != nil {
t.Fatalf("SaveRegistry(%q) error = %v", partition, err)
}
for _, server := range servers {
if err := store.SaveTools(partition, server.Key, cache.ToolsSnapshot{
SavedAt: savedAt,
ServerKey: server.Key,
}); err != nil {
t.Fatalf("SaveTools(%q) error = %v", server.Key, err)
}
}
}
// TestLoadFromCache_UsesEditionPartition verifies that loadFromCache reads
// from the edition-specific partition (wukong/default) instead of the
// historical hardcoded default/default. Before the fix, an entry written to
// wukong/default was invisible to the runtime catalog loader — which is
// exactly what caused `dws conference meeting create` to report
// endpoint_not_resolved while todo succeeded (the open-source Market cache
// happened to carry todo).
func TestLoadFromCache_UsesEditionPartition(t *testing.T) {
setEdition(t, &edition.Hooks{Name: "wukong"})
root := t.TempDir()
now := time.Date(2026, 4, 28, 0, 0, 0, 0, time.UTC)
store := cache.NewStore(root)
store.Now = func() time.Time { return now }
seedRegistryCache(t, store, "wukong/default", now, []market.ServerDescriptor{
{
Key: "conference",
DisplayName: "会议",
Endpoint: "https://example.invalid/conference",
CLI: market.CLIOverlay{
ID: "conference",
Command: "conference",
},
},
})
loader := EnvironmentLoader{}
state := loader.loadFromCache(store)
if !state.Available {
t.Fatalf("expected cached state available; got %+v", state)
}
if _, ok := state.Catalog.FindProduct("conference"); !ok {
t.Fatalf("conference not in catalog; products=%v", productIDs(state.Catalog.Products))
}
}
// TestLoadFromCache_IgnoresDefaultPartitionForOverlay asserts the cross-partition
// leak is gone: writing servers under default/default while the edition is
// Wukong must NOT surface in the runtime catalog. Previously this path was
// the accidental fallback that let `dws todo` work on a gray-released host.
func TestLoadFromCache_IgnoresDefaultPartitionForOverlay(t *testing.T) {
setEdition(t, &edition.Hooks{Name: "wukong"})
root := t.TempDir()
now := time.Date(2026, 4, 28, 0, 0, 0, 0, time.UTC)
store := cache.NewStore(root)
store.Now = func() time.Time { return now }
seedRegistryCache(t, store, "default/default", now, []market.ServerDescriptor{
{
Key: "todo",
DisplayName: "待办",
Endpoint: "https://example.invalid/todo",
CLI: market.CLIOverlay{
ID: "todo",
Command: "todo",
},
},
})
loader := EnvironmentLoader{}
state := loader.loadFromCache(store)
if state.Available {
if _, ok := state.Catalog.FindProduct("todo"); ok {
t.Fatalf("todo leaked from default/default into wukong catalog (partition isolation regressed)")
}
}
}
// TestLoadFromCache_OpenEdition_UsesDefaultPartition keeps the open-source
// core behaviour intact: with edition.Name == "" (zero value), loadFromCache
// must still read default/default.
func TestLoadFromCache_OpenEdition_UsesDefaultPartition(t *testing.T) {
setEdition(t, &edition.Hooks{})
root := t.TempDir()
now := time.Date(2026, 4, 28, 0, 0, 0, 0, time.UTC)
store := cache.NewStore(root)
store.Now = func() time.Time { return now }
seedRegistryCache(t, store, "default/default", now, []market.ServerDescriptor{
{
Key: "doc",
DisplayName: "文档",
Endpoint: "https://example.invalid/doc",
CLI: market.CLIOverlay{
ID: "doc",
Command: "doc",
},
},
})
loader := EnvironmentLoader{}
state := loader.loadFromCache(store)
if !state.Available {
t.Fatalf("expected cached state available for open edition; got %+v", state)
}
if _, ok := state.Catalog.FindProduct("doc"); !ok {
t.Fatalf("doc not in catalog; products=%v", productIDs(state.Catalog.Products))
}
}
func productIDs(products []ir.CanonicalProduct) []string {
ids := make([]string, 0, len(products))
for _, p := range products {
ids = append(ids, p.ID)
}
return ids
}
+151
View File
@@ -0,0 +1,151 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package cli
import (
"testing"
"time"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/cache"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
// TestLoadFromCache_SupplementFillsGaps simulates the Wukong gray-release
// scenario: the Portal envelope only carries `live`, but the edition's
// SupplementServers hook ships the hardcoded endpoints for `conference` and
// `todo`. The resulting catalog must expose all three so runtime endpoint
// resolution does not depend on the historical default-partition accident.
func TestLoadFromCache_SupplementFillsGaps(t *testing.T) {
setEdition(t, &edition.Hooks{
Name: "wukong",
SupplementServers: func() []edition.ServerInfo {
return []edition.ServerInfo{
{ID: "conference", Name: "会议", Endpoint: "https://example.invalid/conference"},
{ID: "todo", Name: "待办", Endpoint: "https://example.invalid/todo"},
// Duplicate of the discovery entry — MUST be overridden by
// the discovery entry (discovery wins on ID collision).
{ID: "live", Name: "直播(supplement)", Endpoint: "https://example.invalid/overridden"},
}
},
})
root := t.TempDir()
now := time.Date(2026, 4, 28, 0, 0, 0, 0, time.UTC)
store := cache.NewStore(root)
store.Now = func() time.Time { return now }
liveEndpoint := "https://example.invalid/live"
seedRegistryCache(t, store, "wukong/default", now, []market.ServerDescriptor{
{
Key: "live",
DisplayName: "直播",
Endpoint: liveEndpoint,
CLI: market.CLIOverlay{
ID: "live",
Command: "live",
},
},
})
loader := EnvironmentLoader{}
state := loader.loadFromCache(store)
if !state.Available {
t.Fatalf("expected cached state available; got %+v", state)
}
wantIDs := map[string]string{
"conference": "https://example.invalid/conference",
"todo": "https://example.invalid/todo",
"live": liveEndpoint, // discovery wins, NOT the supplement's overridden URL
}
for id, wantEndpoint := range wantIDs {
product, ok := state.Catalog.FindProduct(id)
if !ok {
t.Errorf("catalog missing product %q; have %v", id, productIDs(state.Catalog.Products))
continue
}
if product.Endpoint != wantEndpoint {
t.Errorf("product %q endpoint = %q, want %q", id, product.Endpoint, wantEndpoint)
}
}
}
// TestLoadFromCache_EmptyRegistry_StillExposesSupplement covers the cold-start
// gray-release case: no cached registry at all, but the edition still knows
// about a set of hardcoded products. Those should be exposed via the catalog
// so `dws foo bar` does not fail with endpoint_not_resolved on first run.
func TestLoadFromCache_EmptyRegistry_StillExposesSupplement(t *testing.T) {
setEdition(t, &edition.Hooks{
Name: "wukong",
SupplementServers: func() []edition.ServerInfo {
return []edition.ServerInfo{
{ID: "conference", Name: "会议", Endpoint: "https://example.invalid/conference"},
}
},
})
root := t.TempDir()
now := time.Date(2026, 4, 28, 0, 0, 0, 0, time.UTC)
store := cache.NewStore(root)
store.Now = func() time.Time { return now }
loader := EnvironmentLoader{}
state := loader.loadFromCache(store)
if !state.Available {
t.Fatalf("expected cached state available via supplement; got %+v", state)
}
if _, ok := state.Catalog.FindProduct("conference"); !ok {
t.Fatalf("supplement did not surface conference into catalog; products=%v", productIDs(state.Catalog.Products))
}
if !state.NeedsRevalidate {
t.Errorf("NeedsRevalidate should be true when only supplement is available")
}
}
// TestFallbackRuntimeServers_UsedWhenDiscoveryFailsWithoutCache exercises
// the worst-case path: no cached registry AND no live discovery (embedded
// scenario where AuthTokenFunc returns empty). FallbackServers must still
// surface a usable catalog.
func TestFallbackRuntimeServers_UsedWhenDiscoveryFailsWithoutCache(t *testing.T) {
setEdition(t, &edition.Hooks{
Name: "wukong",
FallbackServers: func() []edition.ServerInfo {
return []edition.ServerInfo{
{ID: "conference", Name: "会议", Endpoint: "https://fallback.invalid/conference"},
}
},
SupplementServers: func() []edition.ServerInfo {
return []edition.ServerInfo{
{ID: "extra", Name: "Extra", Endpoint: "https://fallback.invalid/extra"},
}
},
})
rs := fallbackRuntimeServers()
if len(rs) != 2 {
t.Fatalf("fallbackRuntimeServers() len = %d, want 2 (fallback + non-overlapping supplement); got %v", len(rs), rs)
}
ids := make(map[string]bool, len(rs))
for _, r := range rs {
ids[r.Server.CLI.ID] = true
}
for _, want := range []string{"conference", "extra"} {
if !ids[want] {
t.Errorf("fallbackRuntimeServers() missing %q; have %v", want, ids)
}
}
}
+7 -26
View File
@@ -14,37 +14,18 @@
package cobracmd
import (
"strconv"
"strings"
"github.com/spf13/cobra"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/cmdutil"
)
const overridePriorityAnnotation = "dws.override-priority"
// SetOverridePriority sets the override priority annotation on cmd.
// SetOverridePriority delegates to cmdutil.SetOverridePriority so internal and
// external call sites share one annotation key.
func SetOverridePriority(cmd *cobra.Command, priority int) {
if cmd == nil {
return
}
if cmd.Annotations == nil {
cmd.Annotations = map[string]string{}
}
cmd.Annotations[overridePriorityAnnotation] = strconv.Itoa(priority)
cmdutil.SetOverridePriority(cmd, priority)
}
// OverridePriority returns the override priority annotation value, or 0.
// OverridePriority delegates to cmdutil.OverridePriority.
func OverridePriority(cmd *cobra.Command) int {
if cmd == nil || cmd.Annotations == nil {
return 0
}
raw := strings.TrimSpace(cmd.Annotations[overridePriorityAnnotation])
if raw == "" {
return 0
}
value, err := strconv.Atoi(raw)
if err != nil {
return 0
}
return value
return cmdutil.OverridePriority(cmd)
}
+512 -40
View File
@@ -14,18 +14,35 @@
package compat
import (
"context"
"encoding/json"
"fmt"
"log/slog"
"os"
"sort"
"strings"
"time"
"unicode"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/cmdutil"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
"github.com/spf13/cobra"
)
// runtimeDefaultWhitelist is the closed set of placeholders v3 supports for
// CLIFlagOverride.RuntimeDefault. Placeholders outside this set emit a
// warning at command-build time and are ignored at invocation time. See
// discovery-schema-v3 §2.3.
var runtimeDefaultWhitelist = map[string]bool{
"$currentUserId": true,
"$unionId": true,
"$corpId": true,
"$now": true,
"$today": true,
}
// BuildDynamicCommands generates cobra commands from servers.json CLIOverlay metadata.
// Each server with non-skip CLIOverlay gets a top-level command with groups and
// tool overrides translated into subcommands with proper flag bindings and transforms.
@@ -47,10 +64,6 @@ func BuildDynamicCommands(servers []market.ServerDescriptor, runner executor.Run
if cli.Skip {
continue
}
if len(cli.ToolOverrides) == 0 {
continue
}
// §1.1: cli.command → top-level command name
cmdName := strings.TrimSpace(cli.Command)
if cmdName == "" {
@@ -60,11 +73,35 @@ func BuildDynamicCommands(servers []market.ServerDescriptor, runner executor.Run
continue
}
// §v3.2.6: CLIOverlay.RedirectTo turns the entire top-level product
// into a stub that prints "Please use: dws <target>".
if target := strings.TrimSpace(cli.RedirectTo); target != "" {
stub := buildOverlayRedirect(cmdName, cli.Description, target)
if cli.Hidden {
stub.Hidden = true
}
// Mark envelope provenance so overlay registrants can tell this
// redirect stub apart from a helper fallback carrying the same
// name; see cmdutil.SourceAnnotation.
cmdutil.MarkEnvelopeSource(stub)
built = append(built, builtCmd{cmd: stub, parent: strings.TrimSpace(cli.Parent)})
continue
}
if len(cli.ToolOverrides) == 0 {
continue
}
rootCmd := NewGroupCommand(cmdName, cli.Description)
// §1.5: cli.hidden → entire service hidden
if cli.Hidden {
rootCmd.Hidden = true
}
// Mark envelope provenance so edition overlays can distinguish this
// dynamic root from a same-named helper fallback when deciding
// whether to merge hardcoded leaves or evict and replace. See
// cmdutil.SourceAnnotation and the wukong overlay's RegisterProducts.
cmdutil.MarkEnvelopeSource(rootCmd)
// Build detail index for this server: toolName → DetailTool
detailIndex := buildDetailIndex(detailsByID[strings.TrimSpace(cli.ID)])
@@ -93,6 +130,13 @@ func BuildDynamicCommands(servers []market.ServerDescriptor, runner executor.Run
cliName = deriveCommandName(toolName, cli.Prefixes)
}
// §P2.redirect: redirectTo turns this entry into a stub.
if target := strings.TrimSpace(override.RedirectTo); target != "" {
redirect := buildRedirectCommand(cliName, override.Description, target)
attachToGroup(rootCmd, override.Group, groupCmds, redirect)
continue
}
bindings, normalizer := buildOverrideBindings(override)
// Resolve Short/Long from Detail API toolTitle/toolDesc;
@@ -111,12 +155,25 @@ func BuildDynamicCommands(servers []market.ServerDescriptor, runner executor.Run
}
}
// ServerOverride routes this leaf's tool invocation to a different
// product's MCP server; fall back to the enclosing overlay's ID.
canonicalProduct := strings.TrimSpace(override.ServerOverride)
if canonicalProduct == "" {
canonicalProduct = strings.TrimSpace(cli.ID)
}
route := Route{
Use: cliName,
Short: short,
Long: long,
// Preserve left-side indentation: cobra's Examples template
// renders {{.Example}} verbatim, and hardcoded helper commands
// rely on a 2-space prefix to look indented under "Examples:".
// Only trim trailing whitespace/newlines so envelope JSON can
// safely carry a closing "\n" without doubling the blank line.
Example: strings.TrimRight(override.Example, " \t\r\n"),
Target: Target{
CanonicalProduct: strings.TrimSpace(cli.ID),
CanonicalProduct: canonicalProduct,
Tool: toolName,
},
Bindings: bindings,
@@ -128,6 +185,9 @@ func BuildDynamicCommands(servers []market.ServerDescriptor, runner executor.Run
route.Normalizer = chainSensitiveNormalizer(normalizer)
}
// §v3.2.5: outputFormat.rename/drop/columns post-processing.
route.OutputTransform = buildOutputTransform(override.OutputFormat)
cmd := NewDirectCommand(route, runner)
// Enrich flags with typed parameters from Detail API toolRequest JSON Schema.
@@ -135,13 +195,25 @@ func BuildDynamicCommands(servers []market.ServerDescriptor, runner executor.Run
buildFlagsFromDetailSchema(cmd, dt.ToolRequest, override.Flags)
}
// §P2.flagconstraints: must run AFTER schema enrichment because the
// target flags may be registered lazily by buildFlagsFromDetailSchema.
applyFlagConstraints(cmd, override)
// §1.4: Add to the right parent group
groupName := strings.TrimSpace(override.Group)
if groupName != "" {
parent := resolveNestedGroup(rootCmd, groupName, groupCmds)
parent.AddCommand(cmd)
} else {
rootCmd.AddCommand(cmd)
attachToGroup(rootCmd, override.Group, groupCmds, cmd)
}
// §P2.hints: attach hint stub commands registered on the overlay.
if len(cli.Hints) > 0 {
hintNames := make([]string, 0, len(cli.Hints))
for name := range cli.Hints {
hintNames = append(hintNames, name)
}
sort.Strings(hintNames)
for _, name := range hintNames {
def := cli.Hints[name]
hint := buildHintCommand(name, def)
attachToGroup(rootCmd, def.Group, groupCmds, hint)
}
}
@@ -166,7 +238,7 @@ func BuildDynamicCommands(servers []market.ServerDescriptor, runner executor.Run
}
for _, child := range children {
if parent, ok := topLevel[child.parent]; ok {
parent.AddCommand(child.cmd)
attachOrMerge(parent, child.cmd)
} else {
// Parent not found among dynamic commands; emit as top-level.
name := child.cmd.Name()
@@ -238,6 +310,15 @@ func buildFlagsFromDetailSchema(cmd *cobra.Command, schemaJSON string, flagOverr
for _, key := range keys {
prop := schema.Properties[key]
// Skip properties that are bound as positional arguments; they are
// collected from cobra args rather than flags. For dual-mode positional
// bindings (envelope: positional + alias/aliases), ApplyBindings has
// already registered the alias flags, so we should not re-register
// them here from the MCP detail schema.
if ov, ok := flagOverrides[key]; ok && ov.Positional {
continue
}
// Determine flag name: prefer alias from CLIFlagOverride, else kebab-case.
flagName := toKebabCase(key)
if ov, ok := flagOverrides[key]; ok && strings.TrimSpace(ov.Alias) != "" {
@@ -389,6 +470,43 @@ func resolveNestedGroup(root *cobra.Command, groupPath string, registry map[stri
return ensureNestedGroup(root, groupPath, groupPath, registry)
}
// attachOrMerge adds child as a sub-command of parent. If parent already has a
// sub-command with the same Name(), the two are merged recursively: child's
// sub-commands are moved onto the existing one and child itself is discarded.
// Leaf collisions (two commands with the same Name and no further children)
// are resolved first-wins — the incoming one is dropped.
//
// This lets multiple server entries share a cli.command under the same parent,
// e.g. bot-message (command="message", parent="chat") can contribute leaves
// into the same "message" subtree already built from chat's own toolOverrides,
// without creating a duplicate "message" sibling in chat's help output.
func attachOrMerge(parent, child *cobra.Command) {
existing := findSubcommand(parent, child.Name())
if existing == nil {
parent.AddCommand(child)
return
}
// Snapshot child's sub-commands before we start moving them (RemoveCommand
// mutates the slice we'd be iterating).
subs := make([]*cobra.Command, len(child.Commands()))
copy(subs, child.Commands())
for _, sub := range subs {
child.RemoveCommand(sub)
attachOrMerge(existing, sub)
}
}
// findSubcommand returns the first sub-command of parent with the given name,
// or nil if none match.
func findSubcommand(parent *cobra.Command, name string) *cobra.Command {
for _, sub := range parent.Commands() {
if sub.Name() == name {
return sub
}
}
return nil
}
// buildOverrideBindings converts CLIToolOverride flags into FlagBindings and
// constructs a Normalizer that applies transform rules.
// Implements §2.1-§2.5 of the conversion rules.
@@ -415,21 +533,46 @@ func buildOverrideBindings(override market.CLIToolOverride) ([]FlagBinding, Norm
envVar string
}
var envDefaults []envDefaultEntry
type hiddenDefaultEntry struct {
// defaultInjectEntry captures envelope flag.default values that must be
// injected into the MCP body when the user omits the flag. v3.2 widened
// this from hidden-only to all flags so that visible flags carrying a
// default (e.g. oa list-forms cursor=0 / pageSize=100) match the
// hardcoded helper command behavior of `mustGetFlag(cobra default) →
// body`. The kind drives typed coercion at injection time so a
// `type: int` envelope default reaches MCP as `int(0)`, not string `"0"`.
type defaultInjectEntry struct {
paramName string
defaultValue string
kind ValueKind
}
var hiddenDefaults []hiddenDefaultEntry
var defaultInjects []defaultInjectEntry
type runtimeDefaultEntry struct {
paramName string
placeholder string
}
var runtimeDefaults []runtimeDefaultEntry
type omitEntry struct {
paramName string
mode string // "empty" (default) | "zero" | "never"
}
omits := make(map[string]omitEntry, len(paramNames))
for _, paramName := range paramNames {
flagOverride := override.Flags[paramName]
// §2.2: flag name from alias, fallback to kebab-case of param name
flagName := strings.TrimSpace(flagOverride.Alias)
if flagName == "" {
// §2.2: flag name from alias, fallback to kebab-case of param name.
// For pure positional bindings (no alias declared) we deliberately
// leave FlagName empty so ApplyBindings / NewDirectCommand can
// distinguish "envelope wants flag-or-positional dual entry" from
// "envelope only wants positional". Auto-deriving a flag name here
// would otherwise leak a redundant `--<paramName>` flag and confuse
// the dual-mode detection.
explicitAlias := strings.TrimSpace(flagOverride.Alias)
flagName := explicitAlias
if flagName == "" && !flagOverride.Positional {
flagName = compatFlagName(paramName)
}
if flagName == "" {
if flagName == "" && !flagOverride.Positional {
flagName = paramName
}
@@ -438,23 +581,68 @@ func buildOverrideBindings(override market.CLIToolOverride) ([]FlagBinding, Norm
continue
}
binding := FlagBinding{
FlagName: flagName,
Property: paramName,
Kind: ValueString,
Usage: paramName,
// §2.2 (aliases): deduplicate additional hidden aliases against the
// primary name + reserved names. Preserves envelope declaration order
// so CLI precedence (primary > Alias > Aliases[0..n]) is deterministic.
var extraAliases []string
if len(flagOverride.Aliases) > 0 {
seen := map[string]bool{"json": true, "params": true}
if flagName != "" {
seen[flagName] = true
}
extraAliases = make([]string, 0, len(flagOverride.Aliases))
for _, a := range flagOverride.Aliases {
a = strings.TrimSpace(a)
if a == "" || seen[a] {
continue
}
seen[a] = true
extraAliases = append(extraAliases, a)
}
}
// §2.5: hidden flag with default
if flagOverride.Hidden {
// Hidden flags are still added but marked hidden.
// They are auto-populated with their default value via the normalizer.
if flagOverride.Default != "" {
hiddenDefaults = append(hiddenDefaults, hiddenDefaultEntry{
paramName: paramName,
defaultValue: flagOverride.Default,
})
}
// Usage defaults to paramName but an explicit Description on the
// overlay wins (it also beats the Detail API's toolDesc during flag
// enrichment because buildFlagsFromDetailSchema preserves overlay usage).
usage := paramName
if desc := strings.TrimSpace(flagOverride.Description); desc != "" {
usage = desc
}
binding := FlagBinding{
FlagName: flagName,
Aliases: extraAliases,
Short: strings.TrimSpace(flagOverride.Shorthand),
Property: paramName,
Kind: kindFromTypeName(flagOverride.Type),
Usage: usage,
// §P1: Required is preserved for positional bindings too. For
// pure positional, cobra arity (MinimumNArgs) enforces presence
// at parse time. For dual-mode positional (positional + alias),
// validateRequiredPositionalBindings closes the loop in RunE
// after both flag and positional injection, so MarkFlagRequired
// is intentionally avoided.
Required: flagOverride.Required,
// §2.4: Default drives both cobra's --help "(default ...)"
// rendering and (since v3.2) MCP body injection when the user
// omits the flag. CollectBindings still gates writes by
// user-changed flags, so user-provided values always win; the
// normalizer's defaultInjects loop only fills missing keys.
Default: flagOverride.Default,
Positional: flagOverride.Positional,
PositionalIndex: flagOverride.PositionalIndex,
}
// §v3.2: any non-empty default — hidden or visible — gets injected
// when the user omits the flag. Earlier versions gated this on
// flagOverride.Hidden which left visible flags with `"default": "0"`
// (e.g. oa list-forms cursor) silently absent from the MCP body.
if flagOverride.Default != "" {
defaultInjects = append(defaultInjects, defaultInjectEntry{
paramName: paramName,
defaultValue: flagOverride.Default,
kind: binding.Kind,
})
}
bindings = append(bindings, binding)
@@ -472,10 +660,23 @@ func buildOverrideBindings(override market.CLIToolOverride) ([]FlagBinding, Norm
envVar: flagOverride.EnvDefault,
})
}
if rd := strings.TrimSpace(flagOverride.RuntimeDefault); rd != "" {
if !runtimeDefaultWhitelist[rd] {
fmt.Fprintf(os.Stderr, "[discovery] runtimeDefault: unknown placeholder %q on %s; ignoring\n", rd, paramName)
} else {
runtimeDefaults = append(runtimeDefaults, runtimeDefaultEntry{
paramName: paramName,
placeholder: rd,
})
}
}
if mode := strings.TrimSpace(flagOverride.OmitWhen); mode != "" && mode != "empty" {
omits[paramName] = omitEntry{paramName: paramName, mode: mode}
}
}
// Check if we need a normalizer: transforms, env defaults, hidden defaults,
// or dotted property paths that need nesting.
// runtime defaults, omit-when overrides, dotted property paths, or body wrapper.
needsDottedNesting := false
for _, b := range bindings {
if strings.Contains(b.Property, ".") {
@@ -483,16 +684,32 @@ func buildOverrideBindings(override market.CLIToolOverride) ([]FlagBinding, Norm
break
}
}
if len(transforms) == 0 && len(envDefaults) == 0 && len(hiddenDefaults) == 0 && !needsDottedNesting {
bodyWrapper := strings.TrimSpace(override.BodyWrapper)
if len(transforms) == 0 && len(envDefaults) == 0 && len(defaultInjects) == 0 && len(runtimeDefaults) == 0 && len(omits) == 0 && !needsDottedNesting && bodyWrapper == "" {
return bindings, nil
}
// Build a normalizer that applies hidden defaults + env defaults + transforms + nesting
// Build a normalizer that applies default injections + env defaults + runtime defaults
// + transforms + omitWhen + nesting + body wrap.
normalizer := func(cmd *cobra.Command, params map[string]any) error {
// §2.5: Apply hidden flag defaults for parameters not explicitly set
for _, hd := range hiddenDefaults {
if _, exists := params[hd.paramName]; !exists {
params[hd.paramName] = hd.defaultValue
// §v3.2: Apply envelope flag.default for parameters not explicitly set.
// Coerce by Kind so number-typed schemas don't reject string defaults.
for _, di := range defaultInjects {
if _, exists := params[di.paramName]; exists {
continue
}
defStr, defInt, defFloat, defBool, defSlice := parseFlagDefault(di.kind, di.defaultValue)
switch di.kind {
case ValueInt:
params[di.paramName] = defInt
case ValueFloat:
params[di.paramName] = defFloat
case ValueBool:
params[di.paramName] = defBool
case ValueStringSlice, ValueIntSlice, ValueFloatSlice, ValueBoolSlice:
params[di.paramName] = defSlice
default: // ValueString, ValueJSON, and any unknown kind
params[di.paramName] = defStr
}
}
@@ -505,6 +722,26 @@ func buildOverrideBindings(override market.CLIToolOverride) ([]FlagBinding, Norm
}
}
// §v3.2.3: Apply runtime defaults (lowest priority, last default fill).
if len(runtimeDefaults) > 0 {
resolvers := runtimeDefaultResolvers()
for _, rd := range runtimeDefaults {
if _, exists := params[rd.paramName]; exists {
continue
}
resolver, ok := resolvers[rd.placeholder]
if !ok {
// Whitelisted but no provider registered (common on
// open-source core). Emit a single warning and move on.
fmt.Fprintf(os.Stderr, "[discovery] runtimeDefault: no resolver registered for %s; skipping %s\n", rd.placeholder, rd.paramName)
continue
}
if val, ok := resolver(cmd.Context()); ok && val != "" {
params[rd.paramName] = val
}
}
}
// §3: Apply transforms
for _, t := range transforms {
val, exists := params[t.paramName]
@@ -524,15 +761,155 @@ func buildOverrideBindings(override market.CLIToolOverride) ([]FlagBinding, Norm
params[t.paramName] = transformed
}
// §v3.2.2: Apply omitWhen — drop keys whose value meets the omit
// condition for the declared mode. Default mode "empty" is already
// handled implicitly by CollectBindings (empty string / empty slice
// never enters params), so we only deal with "zero" and "never".
for _, o := range omits {
applyOmitWhen(params, o.paramName, o.mode)
}
// Nest dotted property paths: "Body.query" → params["Body"]["query"]
nestDottedPaths(params)
// §P2.bodyWrapper: wrap user-facing params under a single named key.
// Internal control keys (prefixed with '_' e.g. _blocked, _yes) stay
// at the top level so downstream confirmation logic keeps working.
if bodyWrapper != "" {
wrapParamsIntoBody(params, bodyWrapper)
}
return nil
}
return bindings, normalizer
}
// wrapParamsIntoBody moves every non-internal key from params into a new
// map stored under params[wrapper]. Internal keys (leading underscore) are
// preserved at the top level so the dispatcher / --yes logic still sees
// them. If params already contains params[wrapper] it is merged in first.
func wrapParamsIntoBody(params map[string]any, wrapper string) {
if wrapper == "" {
return
}
body := map[string]any{}
if existing, ok := params[wrapper].(map[string]any); ok {
for k, v := range existing {
body[k] = v
}
delete(params, wrapper)
}
for key, value := range params {
if strings.HasPrefix(key, "_") {
continue
}
body[key] = value
delete(params, key)
}
params[wrapper] = body
}
// attachToGroup places cmd under the right parent based on the dotted group
// path. Empty group means attach directly to the overlay root.
func attachToGroup(root *cobra.Command, groupPath string, groupCmds map[string]*cobra.Command, cmd *cobra.Command) {
gp := strings.TrimSpace(groupPath)
if gp == "" {
root.AddCommand(cmd)
return
}
parent := resolveNestedGroup(root, gp, groupCmds)
parent.AddCommand(cmd)
}
// buildRedirectCommand returns a stub leaf that prints "use: <target>" and
// performs no tool invocation. Accepts unknown flags/args so users hitting
// the old path get the redirect message instead of a parse error.
func buildRedirectCommand(name, description, target string) *cobra.Command {
short := strings.TrimSpace(description)
if short == "" {
short = fmt.Sprintf("moved → %s", target)
}
cmd := &cobra.Command{
Use: name,
Short: short,
Long: fmt.Sprintf("This command has moved. Please use: %s", target),
DisableFlagParsing: true,
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
fmt.Fprintf(cmd.OutOrStdout(), "This command has moved. Please use: %s\n", target)
return nil
},
}
return cmd
}
// buildHintCommand returns a stub sub-command that prints a redirect hint
// to the canonical command path declared by the overlay's hintCommands entry.
func buildHintCommand(name string, def market.CLIHintDef) *cobra.Command {
target := strings.TrimSpace(def.Target)
short := strings.TrimSpace(def.Description)
if short == "" {
if target != "" {
short = fmt.Sprintf("hint: use %s", target)
} else {
short = "hint: see --help for the canonical command"
}
}
cmd := &cobra.Command{
Use: name,
Short: short,
Long: short,
DisableFlagParsing: true,
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
if target != "" {
fmt.Fprintf(cmd.OutOrStdout(), "Please use: %s\n", target)
} else {
_ = cmd.Help()
}
return nil
},
}
return cmd
}
// applyFlagConstraints wires mutuallyExclusive / requireOneOf declarations
// onto the cobra command. Unknown flag names are logged and skipped so a
// stale/malformed overlay never blocks the entire command tree from building.
func applyFlagConstraints(cmd *cobra.Command, override market.CLIToolOverride) {
validate := func(names []string) []string {
valid := make([]string, 0, len(names))
for _, n := range names {
n = strings.TrimSpace(n)
if n == "" {
continue
}
if cmd.Flags().Lookup(n) == nil {
fmt.Fprintf(os.Stderr, "[discovery] flag constraint references unknown flag --%s on %q; skipping\n", n, cmd.Name())
return nil
}
valid = append(valid, n)
}
return valid
}
for _, group := range override.MutuallyExclusive {
names := validate(group)
if len(names) < 2 {
continue
}
cmd.MarkFlagsMutuallyExclusive(names...)
}
for _, group := range override.RequireOneOf {
names := validate(group)
if len(names) < 1 {
continue
}
cmd.MarkFlagsOneRequired(names...)
}
}
// chainSensitiveNormalizer wraps a normalizer with --yes confirmation for sensitive operations (§5.1).
func chainSensitiveNormalizer(inner Normalizer) Normalizer {
return func(cmd *cobra.Command, params map[string]any) error {
@@ -581,6 +958,101 @@ func sortedToolNames(m map[string]market.CLIToolOverride) []string {
return keys
}
// kindFromTypeName maps the v3 CLIFlagOverride.Type declaration to the
// internal FlagBinding.Kind enum. Empty / unknown → ValueString (which keeps
// the v2 behaviour where every overlay flag was a plain string).
func kindFromTypeName(typeName string) ValueKind {
switch strings.TrimSpace(strings.ToLower(typeName)) {
case "int", "integer", "number":
return ValueInt
case "bool", "boolean":
return ValueBool
case "stringslice", "string_slice", "[]string":
return ValueStringSlice
case "string", "":
return ValueString
default:
fmt.Fprintf(os.Stderr, "[discovery] flag type %q not recognised; defaulting to string\n", typeName)
return ValueString
}
}
// runtimeDefaultResolvers returns the edition-provided resolver map plus
// built-in fallbacks for $now / $today (which are trivially local). Overlays
// are expected to register the user-identity placeholders; $now / $today are
// always available.
func runtimeDefaultResolvers() map[string]edition.RuntimeDefaultFn {
resolvers := make(map[string]edition.RuntimeDefaultFn, len(runtimeDefaultWhitelist))
resolvers["$now"] = func(ctx context.Context) (string, bool) {
return fmt.Sprintf("%d", time.Now().UnixMilli()), true
}
resolvers["$today"] = func(ctx context.Context) (string, bool) {
loc, err := time.LoadLocation("Asia/Shanghai")
if err != nil {
loc = time.FixedZone("CST", 8*3600)
}
return time.Now().In(loc).Format("2006-01-02"), true
}
if hooks := edition.Get(); hooks != nil && hooks.RuntimeDefaults != nil {
for id, fn := range hooks.RuntimeDefaults() {
if fn != nil {
resolvers[id] = fn
}
}
}
return resolvers
}
// applyOmitWhen drops a key from params when its value meets the omit
// condition for the declared mode. "empty" (the default) is handled by
// CollectBindings upstream, so this function only processes "zero" and
// "never" — "never" is a marker that keeps the zero value explicit, so we
// do nothing for it.
func applyOmitWhen(params map[string]any, key, mode string) {
switch strings.ToLower(strings.TrimSpace(mode)) {
case "never":
return
case "zero":
val, exists := params[key]
if !exists {
return
}
if isZeroValue(val) {
delete(params, key)
}
default:
// "empty" is the default, no-op.
}
// Emit a trace for anyone debugging envelope behaviour; kept at Debug so
// it never leaks into the default CLI output.
slog.Debug("applyOmitWhen", "key", key, "mode", mode)
}
func isZeroValue(v any) bool {
switch val := v.(type) {
case nil:
return true
case string:
return strings.TrimSpace(val) == ""
case bool:
return !val
case int:
return val == 0
case int64:
return val == 0
case float64:
return val == 0
case []any:
return len(val) == 0
case []string:
return len(val) == 0
case map[string]any:
return len(val) == 0
default:
return false
}
}
// nestDottedPaths converts flat dotted keys in params into nested maps.
// Example: params["Body.query"] = "test" → params["Body"] = map{"query": "test"}
// If multiple dotted keys share a prefix, they are merged into the same nested map.
File diff suppressed because it is too large Load Diff
+55
View File
@@ -0,0 +1,55 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package compat
import (
"fmt"
"strings"
"github.com/spf13/cobra"
)
// buildOverlayRedirect builds a top-level product command whose only behaviour
// is printing "Please use: dws <target>" and returning nil. All args/flags are
// accepted and ignored so users running the old command path get the redirect
// message instead of a parse error.
//
// See discovery-schema-v3 §2.6 (CLIOverlay.RedirectTo).
func buildOverlayRedirect(name, description, target string) *cobra.Command {
target = strings.TrimSpace(target)
short := strings.TrimSpace(description)
if short == "" {
if target != "" {
short = fmt.Sprintf("moved → %s", target)
} else {
short = "command relocated; see --help for the canonical path"
}
}
cmd := &cobra.Command{
Use: name,
Short: short,
Long: fmt.Sprintf("This command has moved. Please use: dws %s", target),
DisableFlagParsing: true,
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
if target == "" {
_ = cmd.Help()
return nil
}
fmt.Fprintf(cmd.OutOrStdout(), "Please use: dws %s\n", target)
return nil
},
}
return cmd
}
+107
View File
@@ -0,0 +1,107 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package compat
import (
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
)
// buildOutputTransform compiles a CLIOutputFormat into a payload-shaping
// function applied to executor.Result.Response before the formatter runs.
// See discovery-schema-v3 §2.5.
//
// Apply order (deterministic): drop → rename → columns.
// Columns filter only takes effect under --format=table (the formatter
// consults it via the "_columns" marker key this function injects).
// Returns nil when the spec is empty so callers can skip wiring.
func buildOutputTransform(spec market.CLIOutputFormat) func(map[string]any) map[string]any {
if len(spec.Drop) == 0 && len(spec.Rename) == 0 && len(spec.Columns) == 0 {
return nil
}
dropped := append([]string(nil), spec.Drop...)
renamed := make(map[string]string, len(spec.Rename))
for k, v := range spec.Rename {
renamed[k] = v
}
columns := append([]string(nil), spec.Columns...)
return func(resp map[string]any) map[string]any {
if resp == nil {
return resp
}
applyDrop(resp, dropped)
applyRename(resp, renamed)
if len(columns) > 0 {
resp["_columns"] = append([]string(nil), columns...)
}
return resp
}
}
// applyDrop removes the named keys at the top level and one level of nested
// object. Missing keys are silently ignored. Keys with "." are treated as a
// two-part path (parent.child).
func applyDrop(m map[string]any, keys []string) {
for _, key := range keys {
if key == "" {
continue
}
delete(m, key)
}
for _, v := range m {
if inner, ok := v.(map[string]any); ok {
for _, key := range keys {
if key == "" {
continue
}
delete(inner, key)
}
}
}
}
// applyRename moves fields from src key to dst key at top level and one level
// of nested object. Collisions overwrite silently. Missing src keys are
// no-ops.
func applyRename(m map[string]any, mapping map[string]string) {
if len(mapping) == 0 {
return
}
// First pass: top level.
for src, dst := range mapping {
if src == "" || dst == "" || src == dst {
continue
}
if v, ok := m[src]; ok {
m[dst] = v
delete(m, src)
}
}
// Second pass: one level nested.
for _, v := range m {
inner, ok := v.(map[string]any)
if !ok {
continue
}
for src, dst := range mapping {
if src == "" || dst == "" || src == dst {
continue
}
if val, ok := inner[src]; ok {
inner[dst] = val
delete(inner, src)
}
}
}
}
+447 -38
View File
@@ -56,11 +56,27 @@ type Target struct {
type FlagBinding struct {
FlagName string
Alias string
// Aliases are additional hidden flag names that map to the same MCP
// parameter. Any of them being set satisfies Required, and the value
// is resolved via firstChangedFlag(FlagName, Alias, Aliases...).
// Mirrors cmdutil.ValidateRequiredFlagWithAliases / FlagOrFallback.
Aliases []string
Short string
Property string
Kind ValueKind
Usage string
Required bool
// Default is the cobra-level flag default value as a string. Parsed
// into the Kind-appropriate primitive at registration time. Empty
// string keeps the existing zero-value default. This only affects
// what cobra renders in --help (the "(default ...)" suffix); it does
// NOT inject the value into MCP params on its own — CollectBindings
// still gates writes by user-changed flags via firstChangedFlag.
Default string
// Positional binds this parameter to a positional CLI argument rather
// than a --flag. PositionalIndex is the 0-based slot.
Positional bool
PositionalIndex int
}
type Normalizer func(cmd *cobra.Command, params map[string]any) error
@@ -75,6 +91,10 @@ type Route struct {
Target Target
Bindings []FlagBinding
Normalizer Normalizer
// OutputTransform, when non-nil, post-processes the MCP response payload
// (rename / drop / columns) before the formatter emits it. Wired up from
// CLIToolOverride.OutputFormat. See discovery-schema-v3 §2.5.
OutputTransform func(map[string]any) map[string]any
}
type CommandFactory func(runner executor.Runner) *cobra.Command
@@ -109,14 +129,87 @@ func NewFallbackCommands(runner executor.Runner) []*cobra.Command {
var NewGroupCommand = cobracmd.NewGroupCommand
func NewDirectCommand(route Route, runner executor.Runner) *cobra.Command {
// Compute positional arity. Two counts:
// - totalMax: the highest PositionalIndex+1 across all positional bindings
// (caps how many trailing args cobra accepts).
// - strictMin: the highest PositionalIndex+1 among "pure" positional
// bindings (no flag aliases). Backward-compat: any pure positional
// binding implies required arity at parse time, regardless of Required.
//
// Dual-mode positional bindings (positional + envelope-declared flag
// aliases, e.g. `{positional:true, alias:"query", aliases:["keyword"]}`)
// are counted into totalMax but excluded from strictMin so a flag-only
// invocation parses; their required-presence is enforced by
// validateRequiredPositionalBindings inside RunE.
//
// For positional bindings, buildOverrideBindings populates FlagName /
// Aliases only when the envelope explicitly declared them, so the
// dual-mode detection here is unambiguous.
strictMin := 0
totalMax := 0
for _, b := range route.Bindings {
if !b.Positional {
continue
}
if b.PositionalIndex+1 > totalMax {
totalMax = b.PositionalIndex + 1
}
hasFlagAlias := strings.TrimSpace(b.Alias) != "" || strings.TrimSpace(b.FlagName) != "" || len(b.Aliases) > 0
if !hasFlagAlias && b.PositionalIndex+1 > strictMin {
strictMin = b.PositionalIndex + 1
}
}
var argsValidator cobra.PositionalArgs = cobra.NoArgs
switch {
case totalMax == 0:
argsValidator = cobra.NoArgs
case strictMin > 0 && strictMin == totalMax:
argsValidator = cobra.MinimumNArgs(strictMin)
case strictMin > 0:
argsValidator = cobra.RangeArgs(strictMin, totalMax)
default:
argsValidator = cobra.MaximumNArgs(totalMax)
}
// Extend Use with [<placeholder>] tokens for positional bindings so
// `--help` renders `cmd [arg1] [arg2] [flags]`, matching hardcoded
// helper commands' style (e.g. devdoc article search [keyword]).
use := route.Use
if totalMax > 0 {
ordered := make([]FlagBinding, 0, totalMax)
for _, b := range route.Bindings {
if b.Positional {
ordered = append(ordered, b)
}
}
sort.SliceStable(ordered, func(i, j int) bool {
return ordered[i].PositionalIndex < ordered[j].PositionalIndex
})
var sb strings.Builder
sb.WriteString(use)
for _, b := range ordered {
name := strings.TrimSpace(b.Property)
if name == "" {
name = strings.TrimSpace(b.FlagName)
}
if name == "" {
continue
}
sb.WriteString(" [")
sb.WriteString(name)
sb.WriteString("]")
}
use = sb.String()
}
cmd := &cobra.Command{
Use: route.Use,
Use: use,
Aliases: append([]string(nil), route.Aliases...),
Short: route.Short,
Long: route.Long,
Example: route.Example,
Hidden: route.Hidden,
Args: cobra.NoArgs,
Args: argsValidator,
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
jsonPayload, err := cmd.Flags().GetString("json")
@@ -141,10 +234,27 @@ func NewDirectCommand(route Route, runner executor.Runner) *cobra.Command {
params[key] = value
}
// Inject positional args into params according to each binding's
// PositionalIndex. Pure positional bindings are not registered as
// flags; dual-mode positional bindings (positional + alias) only
// fall through to positional injection when their flag aliases
// were not used (collectPositionalBindings skips when params
// already contains the property).
if err := collectPositionalBindings(args, route.Bindings, params); err != nil {
return err
}
// Collect schema-derived flags (from buildFlagsFromDetailSchema)
// that are not covered by explicit bindings.
collectSchemaFlags(cmd, route.Bindings, params)
// Required-presence check for positional bindings — must run after
// both flag (CollectBindings) and positional (collectPositionalBindings)
// have had a chance to populate params.
if err := validateRequiredPositionalBindings(cmd, route.Bindings, params); err != nil {
return err
}
if route.Normalizer != nil {
if err := route.Normalizer(cmd, params); err != nil {
return err
@@ -180,6 +290,9 @@ func NewDirectCommand(route Route, runner executor.Runner) *cobra.Command {
if err != nil {
return err
}
if route.OutputTransform != nil && result.Response != nil {
result.Response = route.OutputTransform(result.Response)
}
return output.WriteCommandPayload(cmd, result, output.FormatJSON)
},
}
@@ -196,8 +309,64 @@ func NewCuratedCommand(route Route, runner executor.Runner) *cobra.Command {
return cmd
}
// parseFlagDefault converts a string-form envelope default into the typed
// primitives used by pflag's *P helpers. Unparseable values silently fall
// back to the type's zero value so a malformed envelope downgrades to
// "no default in --help" rather than a panic at startup. The slice form
// splits on commas and trims whitespace, mirroring pflag.StringSlice
// behavior; empty/whitespace-only segments are dropped.
func parseFlagDefault(kind ValueKind, raw string) (defStr string, defInt int, defFloat float64, defBool bool, defSlice []string) {
trimmed := strings.TrimSpace(raw)
switch kind {
case ValueString, ValueJSON:
// Preserve raw (not trimmed) so explicitly-padded defaults survive.
defStr = raw
case ValueInt:
if trimmed != "" {
if v, err := strconv.Atoi(trimmed); err == nil {
defInt = v
}
}
case ValueFloat:
if trimmed != "" {
if v, err := strconv.ParseFloat(trimmed, 64); err == nil {
defFloat = v
}
}
case ValueBool:
if trimmed != "" {
if v, err := strconv.ParseBool(trimmed); err == nil {
defBool = v
}
}
case ValueStringSlice, ValueIntSlice, ValueFloatSlice, ValueBoolSlice:
if trimmed != "" {
for _, p := range strings.Split(trimmed, ",") {
if t := strings.TrimSpace(p); t != "" {
defSlice = append(defSlice, t)
}
}
}
}
return
}
func ApplyBindings(cmd *cobra.Command, bindings []FlagBinding) {
for _, binding := range bindings {
// Positional bindings are collected from cobra args rather than flags.
// Exception: dual-mode bindings (positional + envelope-declared flag
// aliases) also register the aliases so users can pass either
// `cmd VALUE` or `cmd --primary VALUE`. Required-presence is enforced
// later by validateRequiredPositionalBindings instead of MarkFlagRequired.
if binding.Positional {
primary := strings.TrimSpace(binding.FlagName)
alias := strings.TrimSpace(binding.Alias)
if primary == "" && alias == "" && len(binding.Aliases) == 0 {
continue
}
registerPositionalAliasFlags(cmd, binding)
continue
}
primary := strings.TrimSpace(binding.FlagName)
if primary == "" {
continue
@@ -206,43 +375,77 @@ func ApplyBindings(cmd *cobra.Command, bindings []FlagBinding) {
if alias == primary {
alias = ""
}
// Dedupe extra aliases against primary + single alias and each other.
var extras []string
if len(binding.Aliases) > 0 {
seen := map[string]bool{primary: true, "json": true, "params": true}
if alias != "" {
seen[alias] = true
}
extras = make([]string, 0, len(binding.Aliases))
for _, a := range binding.Aliases {
a = strings.TrimSpace(a)
if a == "" || seen[a] {
continue
}
seen[a] = true
extras = append(extras, a)
}
}
// Parse binding.Default once per binding into Kind-typed values used
// by both the primary and hidden-alias registrations below. Hidden
// aliases share the same default so users typing the legacy alias
// see consistent --help text and zero-value behavior.
defStr, defInt, defFloat, defBool, defSlice := parseFlagDefault(binding.Kind, binding.Default)
registerHidden := func(name string, suffix string) {
if name == "" {
return
}
switch binding.Kind {
case ValueString:
cmd.Flags().String(name, defStr, binding.Usage+suffix)
case ValueInt:
cmd.Flags().Int(name, defInt, binding.Usage+suffix)
case ValueFloat:
cmd.Flags().Float64(name, defFloat, binding.Usage+suffix)
case ValueBool:
cmd.Flags().Bool(name, defBool, binding.Usage+suffix)
case ValueStringSlice, ValueIntSlice, ValueFloatSlice, ValueBoolSlice:
cmd.Flags().StringSlice(name, defSlice, binding.Usage+suffix)
case ValueJSON:
cmd.Flags().String(name, defStr, binding.Usage+suffix)
}
_ = cmd.Flags().MarkHidden(name)
}
switch binding.Kind {
case ValueString:
cmd.Flags().StringP(primary, binding.Short, "", binding.Usage)
if alias != "" {
cmd.Flags().String(alias, "", binding.Usage+" (alias)")
_ = cmd.Flags().MarkHidden(alias)
}
cmd.Flags().StringP(primary, binding.Short, defStr, binding.Usage)
case ValueInt:
cmd.Flags().IntP(primary, binding.Short, 0, binding.Usage)
if alias != "" {
cmd.Flags().Int(alias, 0, binding.Usage+" (alias)")
_ = cmd.Flags().MarkHidden(alias)
}
cmd.Flags().IntP(primary, binding.Short, defInt, binding.Usage)
case ValueFloat:
cmd.Flags().Float64P(primary, binding.Short, 0, binding.Usage)
if alias != "" {
cmd.Flags().Float64(alias, 0, binding.Usage+" (alias)")
_ = cmd.Flags().MarkHidden(alias)
}
cmd.Flags().Float64P(primary, binding.Short, defFloat, binding.Usage)
case ValueBool:
cmd.Flags().BoolP(primary, binding.Short, false, binding.Usage)
if alias != "" {
cmd.Flags().Bool(alias, false, binding.Usage+" (alias)")
_ = cmd.Flags().MarkHidden(alias)
}
cmd.Flags().BoolP(primary, binding.Short, defBool, binding.Usage)
case ValueStringSlice, ValueIntSlice, ValueFloatSlice, ValueBoolSlice:
cmd.Flags().StringSliceP(primary, binding.Short, nil, binding.Usage)
if alias != "" {
cmd.Flags().StringSlice(alias, nil, binding.Usage+" (alias)")
_ = cmd.Flags().MarkHidden(alias)
}
cmd.Flags().StringSliceP(primary, binding.Short, defSlice, binding.Usage)
case ValueJSON:
cmd.Flags().StringP(primary, binding.Short, "", binding.Usage+" (JSON)")
if alias != "" {
cmd.Flags().String(alias, "", binding.Usage+" (alias, JSON)")
_ = cmd.Flags().MarkHidden(alias)
cmd.Flags().StringP(primary, binding.Short, defStr, binding.Usage+" (JSON)")
}
registerHidden(alias, " (alias)")
for _, extra := range extras {
registerHidden(extra, " (alias)")
}
if binding.Required {
// When no hidden aliases exist, lean on cobra's native required
// validation for the best UX (colored error, shown in --help).
// When aliases exist, CollectBindings does its own "any-of-these
// is set" check so users who type the hidden alias do not hit
// cobra yelling about the primary being missing.
if alias == "" && len(extras) == 0 {
_ = cmd.MarkFlagRequired(primary)
}
}
}
@@ -252,6 +455,165 @@ func ApplyBindings(cmd *cobra.Command, bindings []FlagBinding) {
_ = cmd.Flags().MarkHidden("params")
}
// registerPositionalAliasFlags registers the visible primary flag and any
// hidden aliases for a "dual-mode" positional binding (envelope:
// `{positional:true, alias:"X", aliases:["Y"]}`). Required-presence is
// intentionally deferred to validateRequiredPositionalBindings — cobra's
// MarkFlagRequired would yell even when the user supplied the value as a
// positional arg.
func registerPositionalAliasFlags(cmd *cobra.Command, binding FlagBinding) {
primary := strings.TrimSpace(binding.FlagName)
alias := strings.TrimSpace(binding.Alias)
if alias == primary {
alias = ""
}
// Dedupe extras against primary + alias and reserved internal names.
seen := map[string]bool{"json": true, "params": true}
if primary != "" {
seen[primary] = true
}
if alias != "" {
seen[alias] = true
}
extras := make([]string, 0, len(binding.Aliases))
for _, a := range binding.Aliases {
a = strings.TrimSpace(a)
if a == "" || seen[a] {
continue
}
seen[a] = true
extras = append(extras, a)
}
defStr, defInt, defFloat, defBool, defSlice := parseFlagDefault(binding.Kind, binding.Default)
register := func(name string, withShort bool, hidden bool, usageSuffix string) {
if name == "" {
return
}
short := ""
if withShort {
short = binding.Short
}
usage := binding.Usage + usageSuffix
switch binding.Kind {
case ValueString:
cmd.Flags().StringP(name, short, defStr, usage)
case ValueInt:
cmd.Flags().IntP(name, short, defInt, usage)
case ValueFloat:
cmd.Flags().Float64P(name, short, defFloat, usage)
case ValueBool:
cmd.Flags().BoolP(name, short, defBool, usage)
case ValueStringSlice, ValueIntSlice, ValueFloatSlice, ValueBoolSlice:
cmd.Flags().StringSliceP(name, short, defSlice, usage)
case ValueJSON:
cmd.Flags().StringP(name, short, defStr, usage+" (JSON)")
default:
cmd.Flags().StringP(name, short, defStr, usage)
}
if hidden {
_ = cmd.Flags().MarkHidden(name)
}
}
register(primary, true, false, "")
register(alias, false, true, " (alias)")
for _, e := range extras {
register(e, false, true, " (alias)")
}
}
// collectPositionalBindings pulls positional args according to the bindings
// and injects them into params[property]. Missing slots are skipped (cobra
// arity validation already ran before RunE).
func collectPositionalBindings(args []string, bindings []FlagBinding, params map[string]any) error {
for _, binding := range bindings {
if !binding.Positional {
continue
}
property := strings.TrimSpace(binding.Property)
if property == "" {
continue
}
// Dual-mode positional: if the user already provided the value via a
// flag alias (CollectBindings wrote it), honor flag > positional.
if _, ok := params[property]; ok {
continue
}
if binding.PositionalIndex < 0 || binding.PositionalIndex >= len(args) {
continue
}
raw := args[binding.PositionalIndex]
switch binding.Kind {
case ValueInt:
v, err := strconv.Atoi(strings.TrimSpace(raw))
if err != nil {
return apperrors.NewValidation(fmt.Sprintf("positional argument %d (%s) must be int", binding.PositionalIndex, property))
}
params[property] = v
case ValueFloat:
v, err := strconv.ParseFloat(strings.TrimSpace(raw), 64)
if err != nil {
return apperrors.NewValidation(fmt.Sprintf("positional argument %d (%s) must be float", binding.PositionalIndex, property))
}
params[property] = v
case ValueBool:
v, err := strconv.ParseBool(strings.TrimSpace(raw))
if err != nil {
return apperrors.NewValidation(fmt.Sprintf("positional argument %d (%s) must be bool", binding.PositionalIndex, property))
}
params[property] = v
default:
params[property] = raw
}
}
return nil
}
// validateRequiredPositionalBindings enforces required-presence for positional
// bindings whose original envelope spec set required=true. The arity validator
// for dual-mode positionals is intentionally relaxed (MaximumNArgs / RangeArgs
// excluding the dual slot) so a flag-only invocation is permitted; this check
// closes the loop by rejecting the case where neither the positional arg nor
// any flag alias was supplied.
func validateRequiredPositionalBindings(cmd *cobra.Command, bindings []FlagBinding, params map[string]any) error {
for _, binding := range bindings {
if !binding.Positional || !binding.Required {
continue
}
property := strings.TrimSpace(binding.Property)
if property == "" {
continue
}
if v, ok := params[property]; ok {
if s, isStr := v.(string); !isStr || strings.TrimSpace(s) != "" {
continue
}
}
// Compose candidate flag names so the error message points users at
// the first writable label even for flag-only invocations.
primary := strings.TrimSpace(binding.FlagName)
alias := strings.TrimSpace(binding.Alias)
if _, changed := firstChangedFlag(cmd, append([]string{primary, alias}, binding.Aliases...)...); changed {
continue
}
display := primary
if display == "" {
display = alias
}
if display == "" && len(binding.Aliases) > 0 {
display = binding.Aliases[0]
}
if display == "" {
return apperrors.NewValidation(fmt.Sprintf("positional argument <%s> is required", property))
}
return apperrors.NewValidation(fmt.Sprintf("--%s (or positional <%s>) is required", display, property))
}
return nil
}
// collectSchemaFlags picks up flags created by buildFlagsFromDetailSchema that
// have no explicit FlagBinding. This bridges the gap for plugin-defined tools
// whose parameters come from the MCP inputSchema rather than CLIToolOverride.Flags.
@@ -265,6 +627,11 @@ func collectSchemaFlags(cmd *cobra.Command, bindings []FlagBinding, params map[s
if a := strings.TrimSpace(b.Alias); a != "" {
bound[a] = true
}
for _, extra := range b.Aliases {
if e := strings.TrimSpace(extra); e != "" {
bound[e] = true
}
}
}
// Reserved/internal flags that should never be forwarded as tool params.
@@ -316,36 +683,78 @@ func toOriginalParamName(flagName string) string {
return strings.ReplaceAll(flagName, "-", "_")
}
// firstChangedFlag returns the first name (in order) whose cobra flag has
// been set by the user. Whitespace-only or empty entries are skipped.
// Mirrors wukong cmdutil.FlagOrFallback precedence: primary > alias >
// extraAliases in declaration order.
func firstChangedFlag(cmd *cobra.Command, names ...string) (name string, changed bool) {
for _, n := range names {
n = strings.TrimSpace(n)
if n == "" {
continue
}
if cobracmd.FlagChanged(cmd, n) {
return n, true
}
}
return "", false
}
func CollectBindings(cmd *cobra.Command, bindings []FlagBinding, existing map[string]any) (map[string]any, error) {
if existing == nil {
existing = map[string]any{}
}
params := make(map[string]any)
for _, binding := range bindings {
if binding.Positional {
// Pure positional (no flag aliases) is handled by
// collectPositionalBindings. Dual-mode positional bindings
// (envelope: positional + alias/aliases) fall through so any
// user-supplied flag value wins over the positional arg.
primary := strings.TrimSpace(binding.FlagName)
alias := strings.TrimSpace(binding.Alias)
if primary == "" && alias == "" && len(binding.Aliases) == 0 {
continue
}
}
primaryName := strings.TrimSpace(binding.FlagName)
if primaryName == "" {
continue
}
aliasName := strings.TrimSpace(binding.Alias)
primaryChanged := cobracmd.FlagChanged(cmd, primaryName)
aliasChanged := aliasName != "" && cobracmd.FlagChanged(cmd, aliasName)
flagName := primaryName
if aliasChanged {
flagName = aliasName
// Candidate flag names in precedence order: primary, single alias,
// then extra aliases. Whichever is set first wins; mirrors the
// semantics of cmdutil.FlagOrFallback.
candidates := make([]string, 0, 2+len(binding.Aliases))
candidates = append(candidates, primaryName)
if aliasName != "" && aliasName != primaryName {
candidates = append(candidates, aliasName)
}
for _, extra := range binding.Aliases {
e := strings.TrimSpace(extra)
if e == "" || e == primaryName || e == aliasName {
continue
}
candidates = append(candidates, e)
}
flagName, anyChanged := firstChangedFlag(cmd, candidates...)
if !anyChanged {
flagName = primaryName
}
flag := cmd.Flags().Lookup(flagName)
if flag == nil {
continue
}
if binding.Required && !primaryChanged && !aliasChanged {
if binding.Required && !anyChanged && !binding.Positional {
if _, ok := existing[binding.Property]; ok {
continue
}
return nil, apperrors.NewValidation(fmt.Sprintf("--%s is required", primaryName))
}
if !primaryChanged && !aliasChanged {
if !anyChanged {
continue
}
+65
View File
@@ -21,6 +21,71 @@ import (
"github.com/spf13/cobra"
)
func TestApplyBindings_PositionalWithFlagAliases(t *testing.T) {
t.Parallel()
// envelope shape: { keyword: { alias: "query", aliases: ["keyword"], positional: true } }
bindings := []FlagBinding{
{
FlagName: "query",
Aliases: []string{"keyword"},
Property: "keyword",
Kind: ValueString,
Usage: "搜索关键词",
Required: true,
Positional: true,
PositionalIndex: 0,
},
}
cmd := &cobra.Command{Use: "search"}
ApplyBindings(cmd, bindings)
primary := cmd.Flags().Lookup("query")
if primary == nil {
t.Fatal("--query flag should be registered for dual-mode positional")
}
if primary.Hidden {
t.Fatal("--query flag should be visible")
}
hidden := cmd.Flags().Lookup("keyword")
if hidden == nil {
t.Fatal("--keyword alias flag should be registered")
}
if !hidden.Hidden {
t.Fatal("--keyword alias flag should be hidden")
}
// --query should NOT be marked required at cobra level — that would
// break flag-only invocation when arity is relaxed.
if _, ok := primary.Annotations[cobra.BashCompOneRequiredFlag]; ok {
t.Fatal("--query should not be MarkFlagRequired (validation happens in RunE)")
}
}
func TestApplyBindings_PurePositionalSkipsFlagRegistration(t *testing.T) {
t.Parallel()
// Pure positional (no Alias / no Aliases) → no flag should be registered;
// arity validator (set in NewDirectCommand) handles required-presence.
bindings := []FlagBinding{
{
Property: "text",
Kind: ValueString,
Required: true,
Positional: true,
PositionalIndex: 0,
},
}
cmd := &cobra.Command{Use: "send"}
ApplyBindings(cmd, bindings)
if f := cmd.Flags().Lookup("text"); f != nil {
t.Fatalf("pure positional should not register a flag, got %+v", f)
}
}
func TestCollectBindingsParsesTypedValuesAndAcceptsAliasFlags(t *testing.T) {
t.Parallel()
+28 -3
View File
@@ -20,6 +20,8 @@ import (
"strings"
"time"
"gopkg.in/yaml.v3"
apperrors "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/errors"
)
@@ -110,6 +112,18 @@ func transformCSVToArray(value any) (any, error) {
return result, nil
}
// transformJSONParse parses a CLI string into a structured value so callers can
// pass complex payloads (JSON arrays/objects) through a single flag.
//
// Two input dialects are accepted, in order:
// 1. Strict JSON — `[{"fieldName":"x","type":"text"}]`
// 2. YAML (flow) — `[{fieldName: x, type: text}]`
//
// YAML is a superset of JSON that permits unquoted keys and strings, which
// dramatically reduces the need for shell-level escaping. Users can therefore
// write `--fields '[{fieldName: 标题, type: text}]'` instead of piling quotes
// around every token. The output shape is the same either way; downstream
// consumers see the parsed Go value, not the original dialect.
func transformJSONParse(value any) (any, error) {
s, ok := toString(value)
if !ok {
@@ -119,11 +133,22 @@ func transformJSONParse(value any) (any, error) {
if s == "" {
return value, nil
}
// Strict JSON first — fast path and unambiguous type promotion (numbers
// stay numbers, etc.).
var parsed any
if err := json.Unmarshal([]byte(s), &parsed); err != nil {
return nil, apperrors.NewValidation(fmt.Sprintf("json_parse: invalid JSON: %v", err))
if err := json.Unmarshal([]byte(s), &parsed); err == nil {
return parsed, nil
}
return parsed, nil
// YAML (flow) fallback — accepts `{key: value}` without surrounding
// quotes, which is the natural form when typing at a shell prompt.
if err := yaml.Unmarshal([]byte(s), &parsed); err == nil {
return parsed, nil
}
return nil, apperrors.NewValidation(
"json_parse: input is not valid JSON or YAML; " +
"quote the whole value and use `[{key: value, ...}]` for ad-hoc input, " +
"or pass `@path/to/file.json` to read from a file",
)
}
func transformEnumMap(value any, args map[string]any) (any, error) {
+125
View File
@@ -0,0 +1,125 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package compat
import (
"reflect"
"testing"
)
// TestJSONParse_StrictJSON covers the primary path: callers passing
// canonical JSON (as generated programmatically or by agents).
func TestJSONParse_StrictJSON(t *testing.T) {
t.Parallel()
input := `[{"fieldName":"title","type":"text"},{"fieldName":"count","type":"number"}]`
got, err := ApplyTransform(input, "json_parse", nil)
if err != nil {
t.Fatalf("strict JSON should parse, got err: %v", err)
}
arr, ok := got.([]any)
if !ok || len(arr) != 2 {
t.Fatalf("expected []any of length 2, got %T %v", got, got)
}
}
// TestJSONParse_YAMLFlowFallback is the motivating case: a user types an
// ad-hoc JSON-shaped array without quoting every key and value. YAML flow
// syntax accepts it and the parsed output is indistinguishable from the
// strict-JSON equivalent.
func TestJSONParse_YAMLFlowFallback(t *testing.T) {
t.Parallel()
// Intentionally unquoted keys, unquoted string values, and Chinese
// identifiers — typical of what humans type at a shell.
input := `[{fieldName: 标题, type: text}, {fieldName: 数量, type: number, config: {formatter: INT}}, {fieldName: 状态, type: singleSelect, config: {options: [{name: 待办}, {name: 进行中}, {name: 已完成}]}}, {fieldName: 已确认, type: checkbox}]`
got, err := ApplyTransform(input, "json_parse", nil)
if err != nil {
t.Fatalf("YAML-flow input should parse, got err: %v", err)
}
arr, ok := got.([]any)
if !ok {
t.Fatalf("expected []any, got %T", got)
}
if len(arr) != 4 {
t.Fatalf("expected 4 field definitions, got %d", len(arr))
}
// Spot-check the third entry, which is the most deeply nested.
third, ok := arr[2].(map[string]any)
if !ok {
t.Fatalf("arr[2] expected map[string]any, got %T", arr[2])
}
if third["fieldName"] != "状态" {
t.Errorf("arr[2].fieldName: want 状态, got %v", third["fieldName"])
}
config, ok := third["config"].(map[string]any)
if !ok {
t.Fatalf("arr[2].config expected map, got %T", third["config"])
}
options, ok := config["options"].([]any)
if !ok || len(options) != 3 {
t.Fatalf("arr[2].config.options: want 3 items, got %v", config["options"])
}
}
// TestJSONParse_EmptyString preserves the legacy behaviour of returning the
// original value untouched when the caller passes an empty / whitespace-only
// string, matching how other transforms treat empty input.
func TestJSONParse_EmptyString(t *testing.T) {
t.Parallel()
cases := []string{"", " ", "\n\t"}
for _, in := range cases {
got, err := ApplyTransform(in, "json_parse", nil)
if err != nil {
t.Errorf("empty input %q should not error: %v", in, err)
continue
}
if !reflect.DeepEqual(got, in) {
t.Errorf("empty input %q should pass through, got %v", in, got)
}
}
}
// TestJSONParse_NonString passes through non-string inputs (already-parsed
// values flowing through the pipeline).
func TestJSONParse_NonString(t *testing.T) {
t.Parallel()
preParsed := []any{map[string]any{"k": "v"}}
got, err := ApplyTransform(preParsed, "json_parse", nil)
if err != nil {
t.Fatalf("non-string should pass through: %v", err)
}
if !reflect.DeepEqual(got, preParsed) {
t.Errorf("non-string should pass through unchanged, got %v", got)
}
}
// TestJSONParse_InvalidInput verifies that genuine garbage is still rejected
// with a user-facing validation error that nudges towards `@file` syntax.
func TestJSONParse_InvalidInput(t *testing.T) {
t.Parallel()
// Unterminated bracket — neither valid JSON nor valid YAML flow.
_, err := ApplyTransform("[{fieldName:", "json_parse", nil)
if err == nil {
t.Fatal("expected error for malformed input")
}
if msg := err.Error(); msg == "" {
t.Fatal("error message should be non-empty")
}
}
+171
View File
@@ -0,0 +1,171 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
package compat
import (
"context"
"strings"
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
// TestKindFromTypeName covers the schema v3 explicit Type field → ValueKind map.
func TestKindFromTypeName(t *testing.T) {
t.Parallel()
cases := []struct {
in string
want ValueKind
}{
{"", ValueString},
{"string", ValueString},
{"STRING", ValueString},
{"int", ValueInt},
{"integer", ValueInt},
{"number", ValueInt},
{"bool", ValueBool},
{"boolean", ValueBool},
{"stringSlice", ValueStringSlice},
{"string_slice", ValueStringSlice},
{"[]string", ValueStringSlice},
{"weird-unknown-type", ValueString},
}
for _, tc := range cases {
if got := kindFromTypeName(tc.in); got != tc.want {
t.Errorf("kindFromTypeName(%q) = %v, want %v", tc.in, got, tc.want)
}
}
}
// TestApplyOmitWhen verifies all three modes plus zero-detection.
func TestApplyOmitWhen(t *testing.T) {
t.Parallel()
t.Run("mode_zero_drops_zero_values", func(t *testing.T) {
params := map[string]any{
"a": 0,
"b": "",
"c": false,
"d": []any{},
"e": map[string]any{},
"f": "non-empty",
"g": 42,
}
for k := range params {
applyOmitWhen(params, k, "zero")
}
for _, k := range []string{"a", "b", "c", "d", "e"} {
if _, ok := params[k]; ok {
t.Errorf("expected key %q to be dropped by omitWhen=zero", k)
}
}
for _, k := range []string{"f", "g"} {
if _, ok := params[k]; !ok {
t.Errorf("expected key %q to be preserved", k)
}
}
})
t.Run("mode_never_preserves_zero_values", func(t *testing.T) {
params := map[string]any{"explicitFalse": false, "explicitZero": 0}
applyOmitWhen(params, "explicitFalse", "never")
applyOmitWhen(params, "explicitZero", "never")
if len(params) != 2 {
t.Errorf("expected both keys preserved under 'never', got %v", params)
}
})
t.Run("mode_empty_is_noop", func(t *testing.T) {
params := map[string]any{"a": ""}
applyOmitWhen(params, "a", "empty")
if _, ok := params["a"]; !ok {
t.Errorf("empty mode should not drop keys here (upstream CollectBindings does)")
}
})
t.Run("missing_key_safe", func(t *testing.T) {
params := map[string]any{}
applyOmitWhen(params, "nope", "zero")
if len(params) != 0 {
t.Errorf("expected no-op on missing key, got %v", params)
}
})
}
// TestIsZeroValue covers every branch of the helper.
func TestIsZeroValue(t *testing.T) {
t.Parallel()
zeros := []any{
nil,
"",
" ",
false,
0,
int64(0),
float64(0),
[]any{},
[]string{},
map[string]any{},
}
for i, z := range zeros {
if !isZeroValue(z) {
t.Errorf("case %d: expected zero value for %#v", i, z)
}
}
nonZeros := []any{"x", true, 1, int64(1), float64(1.5), []any{1}, []string{"a"}, map[string]any{"k": 1}}
for i, nz := range nonZeros {
if isZeroValue(nz) {
t.Errorf("case %d: expected non-zero for %#v", i, nz)
}
}
}
// TestRuntimeDefaultResolvers_BuiltIns asserts $now and $today always resolve.
func TestRuntimeDefaultResolvers_BuiltIns(t *testing.T) {
// NOTE: not t.Parallel — edition.Get() global state is shared.
resolvers := runtimeDefaultResolvers()
now := resolvers["$now"]
if now == nil {
t.Fatal("$now resolver missing")
}
if v, ok := now(context.Background()); !ok || v == "" {
t.Errorf("$now returned empty value: %q ok=%v", v, ok)
}
today := resolvers["$today"]
if today == nil {
t.Fatal("$today resolver missing")
}
if v, ok := today(context.Background()); !ok || !strings.Contains(v, "-") {
t.Errorf("$today returned unexpected value: %q ok=%v", v, ok)
}
}
// TestRuntimeDefaultResolvers_OverlayMerge covers the edition overlay hook.
func TestRuntimeDefaultResolvers_OverlayMerge(t *testing.T) {
prev := edition.Get()
defer edition.Override(prev)
edition.Override(&edition.Hooks{
RuntimeDefaults: func() map[string]edition.RuntimeDefaultFn {
return map[string]edition.RuntimeDefaultFn{
"$currentUserId": func(ctx context.Context) (string, bool) {
return "test-user-001", true
},
}
},
})
resolvers := runtimeDefaultResolvers()
fn := resolvers["$currentUserId"]
if fn == nil {
t.Fatal("$currentUserId missing after overlay install")
}
if v, ok := fn(context.Background()); !ok || v != "test-user-001" {
t.Errorf("$currentUserId=%q ok=%v", v, ok)
}
}
+87
View File
@@ -0,0 +1,87 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
// Package editionmerge converts edition.ServerInfo hooks into
// market.ServerDescriptor values and merges them into discovery results.
//
// This package exists so both internal/cli (runtime catalog loader) and
// internal/app (command-tree loader) can apply the edition's
// SupplementServers / FallbackServers hooks consistently against the same
// discovery pipeline, instead of the hooks being wired only at the
// command-tree layer. Keeping the logic here avoids an import cycle
// between internal/cli ↔ internal/app.
package editionmerge
import (
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
// MergeSupplement returns servers augmented with the active edition's
// SupplementServers hook. Discovery entries always win on ID collision —
// the supplement only fills gaps that discovery did not cover.
func MergeSupplement(servers []market.ServerDescriptor) []market.ServerDescriptor {
fn := edition.Get().SupplementServers
if fn == nil {
return servers
}
existing := make(map[string]bool, len(servers))
for _, s := range servers {
if id := s.CLI.ID; id != "" {
existing[id] = true
}
if s.Key != "" {
existing[s.Key] = true
}
}
for _, sup := range fn() {
if sup.ID == "" || existing[sup.ID] {
continue
}
servers = append(servers, ToDescriptor(sup, "edition_supplement"))
}
return servers
}
// FallbackToDescriptors converts the edition's FallbackServers hook into
// market.ServerDescriptor values. Callers should only invoke this when
// live discovery returned zero servers and the cache is also empty.
func FallbackToDescriptors(servers []edition.ServerInfo) []market.ServerDescriptor {
out := make([]market.ServerDescriptor, 0, len(servers))
for _, s := range servers {
out = append(out, ToDescriptor(s, "edition_fallback"))
}
return out
}
// ToDescriptor is the shared conversion from edition.ServerInfo to the
// market descriptor shape expected by downstream consumers.
//
// Source carries the origin tag for diagnostics / metrics. Supplement and
// fallback entries intentionally carry no ToolOverrides — that keeps
// internal/compat.BuildDynamicCommands from materialising parallel
// command trees for products already owned by hardcoded overlays (see
// internal/compat/dynamic_commands.go's CLIOverlay gate).
func ToDescriptor(s edition.ServerInfo, source string) market.ServerDescriptor {
return market.ServerDescriptor{
Key: s.ID,
DisplayName: s.Name,
Endpoint: s.Endpoint,
Source: source,
CLI: market.CLIOverlay{
ID: s.ID,
Command: s.ID,
Prefixes: s.Prefixes,
},
}
}
+123
View File
@@ -0,0 +1,123 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package editionmerge
import (
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/market"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
func restoreEdition(t *testing.T) {
t.Helper()
prev := edition.Get()
t.Cleanup(func() { edition.Override(prev) })
}
func TestMergeSupplement_DiscoveryWinsOnCollision(t *testing.T) {
restoreEdition(t)
edition.Override(&edition.Hooks{
SupplementServers: func() []edition.ServerInfo {
return []edition.ServerInfo{
{ID: "conference", Name: "会议", Endpoint: "https://hardcoded/conference"},
{ID: "doc", Name: "文档(overridden)", Endpoint: "https://hardcoded/doc"},
}
},
})
servers := []market.ServerDescriptor{
{
Key: "doc",
DisplayName: "文档",
Endpoint: "https://live/doc",
CLI: market.CLIOverlay{ID: "doc", Command: "doc"},
},
}
merged := MergeSupplement(servers)
if len(merged) != 2 {
t.Fatalf("merged len = %d, want 2", len(merged))
}
byID := make(map[string]market.ServerDescriptor, len(merged))
for _, m := range merged {
byID[m.CLI.ID] = m
}
if got := byID["doc"].Endpoint; got != "https://live/doc" {
t.Errorf("doc endpoint = %q, want live endpoint (discovery wins)", got)
}
if got := byID["conference"].Endpoint; got != "https://hardcoded/conference" {
t.Errorf("conference endpoint = %q, want supplement endpoint", got)
}
if got := byID["conference"].Source; got != "edition_supplement" {
t.Errorf("conference Source = %q, want edition_supplement", got)
}
}
func TestMergeSupplement_NilHookIsNoop(t *testing.T) {
restoreEdition(t)
edition.Override(&edition.Hooks{})
servers := []market.ServerDescriptor{
{Key: "doc", DisplayName: "文档", Endpoint: "https://live/doc",
CLI: market.CLIOverlay{ID: "doc", Command: "doc"}},
}
merged := MergeSupplement(servers)
if len(merged) != 1 {
t.Fatalf("merged len = %d, want 1 (no supplement hook registered)", len(merged))
}
}
func TestMergeSupplement_EmptyIDSkipped(t *testing.T) {
restoreEdition(t)
edition.Override(&edition.Hooks{
SupplementServers: func() []edition.ServerInfo {
return []edition.ServerInfo{
{ID: "", Name: "empty", Endpoint: "https://example.invalid/empty"},
{ID: "valid", Name: "valid", Endpoint: "https://example.invalid/valid"},
}
},
})
merged := MergeSupplement(nil)
if len(merged) != 1 {
t.Fatalf("merged len = %d, want 1 (empty ID must be skipped)", len(merged))
}
if merged[0].CLI.ID != "valid" {
t.Errorf("merged[0].CLI.ID = %q, want valid", merged[0].CLI.ID)
}
}
func TestFallbackToDescriptors(t *testing.T) {
got := FallbackToDescriptors([]edition.ServerInfo{
{ID: "conference", Name: "会议", Endpoint: "https://example.invalid/conference", Prefixes: []string{"conference", "meeting"}},
})
if len(got) != 1 {
t.Fatalf("len = %d, want 1", len(got))
}
g := got[0]
if g.CLI.ID != "conference" || g.CLI.Command != "conference" {
t.Errorf("CLI overlay not wired: %+v", g.CLI)
}
if g.Source != "edition_fallback" {
t.Errorf("Source = %q, want edition_fallback", g.Source)
}
if len(g.CLI.ToolOverrides) != 0 {
t.Errorf("fallback descriptor must not carry ToolOverrides; got %v", g.CLI.ToolOverrides)
}
}
+5 -1
View File
@@ -65,6 +65,10 @@ func (e *Error) Unwrap() error {
type Option func(*Error)
// ExitCode returns the documented process exit code for the error category.
// exit=4 is reserved exclusively for PATError (see internal/errors/pat.go
// ExitCodePermission and the exit-code table in docs/reference.md);
// Discovery therefore uses 6 so hosts can tell "catalog lookup broke"
// apart from "PAT permission insufficient".
func (e *Error) ExitCode() int {
switch e.Category {
case CategoryAPI:
@@ -74,7 +78,7 @@ func (e *Error) ExitCode() int {
case CategoryValidation:
return 3
case CategoryDiscovery:
return 4
return 6
default:
return 5
}
+1 -1
View File
@@ -178,7 +178,7 @@ func TestExitCode_AllCategories(t *testing.T) {
{CategoryAPI, 1},
{CategoryAuth, 2},
{CategoryValidation, 3},
{CategoryDiscovery, 4},
{CategoryDiscovery, 6},
{CategoryInternal, 5},
}
for _, tt := range tests {
+1 -1
View File
@@ -29,7 +29,7 @@ func TestExitCodeByCategory(t *testing.T) {
{err: NewAPI("api"), want: 1},
{err: NewAuth("auth"), want: 2},
{err: NewValidation("validation"), want: 3},
{err: NewDiscovery("discovery"), want: 4},
{err: NewDiscovery("discovery"), want: 6},
{err: NewInternal("internal"), want: 5},
{err: stderrors.New("plain"), want: 5},
}
+175 -29
View File
@@ -18,15 +18,95 @@ import (
stderrors "errors"
"fmt"
"strings"
"sync"
)
// hostControlProvider returns the host-owned clawType for the current
// process, or empty string when CLI is in default (CLI-owned) mode.
// Injected lazily via SetHostControlProvider to avoid an
// internal/errors → internal/auth import cycle.
//
// Access is serialized by hostControlMu so that tests can swap the provider
// without triggering the race detector against parallel classifier callers.
var (
hostControlMu sync.RWMutex
hostControlProvider func() string
patBrowserMu sync.RWMutex
patBrowserProvider func() bool
)
// SetHostControlProvider wires up the classifier's hostControl injection.
// It MUST be called once during CLI bootstrap (e.g. from internal/app
// init()) so that the first cleanPATJSON call observes a valid provider.
// Passing nil disables injection (useful for isolated tests).
func SetHostControlProvider(fn func() string) {
hostControlMu.Lock()
defer hostControlMu.Unlock()
hostControlProvider = fn
}
// SetPATOpenBrowserProvider wires the PAT JSON serializer to the current
// browser policy. Passing nil restores the open-source fallback (true).
func SetPATOpenBrowserProvider(fn func() bool) {
patBrowserMu.Lock()
defer patBrowserMu.Unlock()
patBrowserProvider = fn
}
// PATOpenBrowserValue returns the effective browser-open recommendation to
// embed in PAT JSON payloads. The open-source fallback is true to preserve
// historical behavior when no provider is wired.
func PATOpenBrowserValue() bool {
patBrowserMu.RLock()
provider := patBrowserProvider
patBrowserMu.RUnlock()
if provider == nil {
return true
}
return provider()
}
// HostControlBlock returns the canonical hostControl map injected into
// PAT stderr JSON when the CLI is operating in host-owned mode, or nil
// when it is not. The returned map is safe for the caller to mutate
// because a new map is constructed on each call.
//
// callbackOwner is kept as a legacy compatibility key for hosts that adopted
// it before the contract converged on the hostControl single injection point.
func HostControlBlock() map[string]any {
hostControlMu.RLock()
provider := hostControlProvider
hostControlMu.RUnlock()
if provider == nil {
return nil
}
claw := provider()
if claw == "" {
return nil
}
return map[string]any{
"clawType": claw,
"callbackOwner": "host",
"mode": "host",
"pollingOwner": "host",
"retryOwner": "host",
}
}
// ExitCodePermission is the process exit code for PAT authorisation failures.
const ExitCodePermission = 4
// PATError represents a PAT (Personal Action Token) authorization failure
// that should be passed through to stderr as raw JSON without any CLI-layer
// wrapping. The host application (e.g. RewindDesktop) parses the JSON to
// display its own authorisation UI.
// wrapping. The host application parses the JSON to display its own
// authorization UI. The wire schema is fixed: a single-line, directly
// json.Unmarshal-able payload of the form
// {"success":false,"code":<frozen enum>,"data":{...}}.
//
// When the payload includes data.uri, that URL is the authoritative
// server-provided authorization link. Hosts must treat it as opaque and open
// it verbatim instead of parsing and reconstructing it locally, because
// required parameters may live in query, encoded hash, or fragment sections.
type PATError struct {
RawJSON string
}
@@ -49,9 +129,21 @@ var patNoPermissionCodes = map[string]bool{
}
// patAuthRequiredCodes are error codes that trigger the PAT authorization
// flow (e.g. the server auto-created a CLI app and returned auth details).
// flow (e.g. the server auto-created a CLI app and returned auth details,
// or the caller's OAuth token lacks a scope that must be re-acquired via
// `dws auth login --scope <missing>`).
//
// Keep keys in alphabetical order so diffs are stable. Both codes below are
// part of the frozen PAT-family selector and MUST be surfaced as *PATError
// (exit=4) so hosts can act on them:
// - AGENT_CODE_NOT_EXISTS: data.agentCode tells the host which agent
// registration is missing.
// - PAT_SCOPE_AUTH_REQUIRED: data.missingScope tells the host which
// OAuth scope to re-acquire via
// `dws auth login --scope <data.missingScope>`.
var patAuthRequiredCodes = map[string]bool{
"AGENT_CODE_NOT_EXISTS": true,
"AGENT_CODE_NOT_EXISTS": true,
"PAT_SCOPE_AUTH_REQUIRED": true,
}
// IsPATError reports whether err is a *PATError.
@@ -65,6 +157,35 @@ func IsPATNoPermissionCode(code string) bool {
return patNoPermissionCodes[code]
}
// errCodeKeys is the canonical priority order in which we look up
// upstream error code fields. Servers historically rotated between camel
// and snake case; we accept all three and pick the first that resolves to
// a recognised value.
var errCodeKeys = []string{"code", "errorCode", "error_code"}
// lookupCodeIn returns the first value in body[errCodeKeys] that is a
// non-empty string AND is a member of accept. Used by the PAT and DWS
// gateway classifiers, which differ only in their accept-set.
func lookupCodeIn(body map[string]any, accept map[string]bool) (string, bool) {
for _, key := range errCodeKeys {
if code, ok := body[key].(string); ok && accept[code] {
return code, true
}
}
return "", false
}
// getPATErrorCode extracts any PAT-intercept code from a map. PAT
// intercepts include both permission denials and auth-required selectors:
// callers on the text/tool-result path must preserve both families as
// *PATError so exit=4 + raw stderr JSON survives all the way to the host/CLI.
func getPATErrorCode(body map[string]any) (string, bool) {
if code, ok := lookupCodeIn(body, patNoPermissionCodes); ok {
return code, true
}
return lookupCodeIn(body, patAuthRequiredCodes)
}
// ---- DWS gateway auth errors (shared between PAT & general auth) ----------
// dwsGatewayErrors is the set of DWS gateway-level auth error codes.
@@ -73,20 +194,18 @@ var dwsGatewayErrors = map[string]bool{
"DWS_AUTH_SERVICE_FAILED": true,
}
// getDWSGatewayErrorCode extracts a DWS gateway error code from errBody
// (supports both errorCode and error_code field names).
// getDWSGatewayErrorCode extracts a DWS gateway error code from errBody.
func getDWSGatewayErrorCode(errBody map[string]any) (string, bool) {
for _, key := range []string{"errorCode", "error_code"} {
if code, ok := errBody[key].(string); ok && dwsGatewayErrors[code] {
return code, true
}
}
return "", false
return lookupCodeIn(errBody, dwsGatewayErrors)
}
// isNotLoggedInError checks if the error body indicates missing authentication.
func isNotLoggedInError(body map[string]any) bool {
if errMsg, ok := body["error"].(string); ok {
for _, key := range []string{"error", "message", "errorMsg"} {
errMsg, ok := body[key].(string)
if !ok {
continue
}
if strings.Contains(errMsg, "Missing service_id or access_key") {
return true
}
@@ -124,10 +243,8 @@ func ClassifyToolResultContent(content map[string]any) error {
WithHint(authExpiredHint()),
)
}
for _, key := range []string{"code", "errorCode"} {
if code, ok := content[key].(string); ok && patNoPermissionCodes[code] {
return &PATError{RawJSON: cleanPATJSON(content, code)}
}
if code, ok := getPATErrorCode(content); ok {
return &PATError{RawJSON: cleanPATJSON(content, code)}
}
return nil
}
@@ -158,10 +275,8 @@ func ClassifyMCPResponseText(text string) error {
)
}
for _, key := range []string{"code", "errorCode"} {
if code, ok := body[key].(string); ok && patNoPermissionCodes[code] {
return &PATError{RawJSON: cleanPATJSON(body, code)}
}
if code, ok := getPATErrorCode(body); ok {
return &PATError{RawJSON: cleanPATJSON(body, code)}
}
if isBusinessError(body) {
@@ -214,12 +329,42 @@ var patTopLevelStrip = map[string]bool{
"message": true, "error": true, "trace_id": true, "class": true,
}
// ApplyHostMutations writes the two stderr-JSON fields the host integration
// contract requires onto out["data"]:
// - data.hostControl: present iff the CLI is in host-owned mode (i.e.
// HostControlBlock returns non-nil); legacy data.callbacks is stripped
// in the same pass so passive classifier and active retry paths stay
// byte-for-byte aligned.
// - data.openBrowser: always present; reflects the user's PAT browser
// policy.
//
// Centralizing the two writes here is the single-injection invariant —
// any caller that produces a PAT-shaped stderr payload (cleanPATJSON,
// active-retry enrichers, scope-required builders) MUST go through this
// function instead of writing the fields directly. out["data"] is
// promoted to map[string]any if missing or of the wrong type.
func ApplyHostMutations(out map[string]any) {
data, ok := out["data"].(map[string]any)
if !ok || data == nil {
data = map[string]any{}
out["data"] = data
}
if block := HostControlBlock(); block != nil {
delete(data, "callbacks")
data["hostControl"] = block
}
data["openBrowser"] = PATOpenBrowserValue()
}
func cleanPATJSON(body map[string]any, code string) string {
out := map[string]any{
"success": false,
"code": code,
}
if data, ok := body["data"]; ok {
// Keep data.uri exactly as returned by the service. Host consumers open
// that link directly, so local normalization would risk dropping
// parameters embedded in query/hash/fragment sections.
out["data"] = stripClassFields(data)
} else {
fallback := map[string]any{}
@@ -232,7 +377,12 @@ func cleanPATJSON(body map[string]any, code string) string {
out["data"] = stripClassFields(fallback)
}
}
b, err := json.MarshalIndent(out, "", " ")
ApplyHostMutations(out)
// stderr JSON MUST be a single-line, directly json.Unmarshal-able
// payload — pretty-printing would break naïve host parsers that read
// stderr line-by-line and fail on leading whitespace.
b, err := json.Marshal(out)
if err != nil {
return fmt.Sprintf(`{"success":false,"code":"%s"}`, code)
}
@@ -244,15 +394,11 @@ func cleanPATJSON(body map[string]any, code string) string {
// framework (ClassifyPatAuthCheck / AsPatAuthCheckError).
// ClassifyPatAuthCheck is the open-source fallback that checks a tool-call
// Content map for PAT permission codes and auth-required codes. Returns a
// Content map for PAT permission codes and auth-required codes. Returns a
// non-nil *PATError when the content carries a recognised PAT/auth error.
func ClassifyPatAuthCheck(content map[string]any) *PATError {
for _, key := range []string{"code", "errorCode"} {
if code, ok := content[key].(string); ok {
if patNoPermissionCodes[code] || patAuthRequiredCodes[code] {
return &PATError{RawJSON: cleanPATJSON(content, code)}
}
}
if code, ok := getPATErrorCode(content); ok {
return &PATError{RawJSON: cleanPATJSON(content, code)}
}
return nil
}
+298 -2
View File
@@ -14,6 +14,7 @@
package errors
import (
"encoding/json"
stderrors "errors"
"strings"
"testing"
@@ -143,8 +144,17 @@ func TestIsNotLoggedInError_False(t *testing.T) {
func TestIsNotLoggedInError_NoErrorField(t *testing.T) {
t.Parallel()
body := map[string]any{"message": "Missing service_id or access_key"}
if isNotLoggedInError(body) {
t.Fatal("expected false when error field is absent")
if !isNotLoggedInError(body) {
t.Fatal("expected true when equivalent auth message is present in message")
}
}
func TestGetDWSGatewayErrorCode_CodeField(t *testing.T) {
t.Parallel()
body := map[string]any{"code": "DWS_SERVICE_UNAUTHORIZED"}
code, ok := getDWSGatewayErrorCode(body)
if !ok || code != "DWS_SERVICE_UNAUTHORIZED" {
t.Fatalf("getDWSGatewayErrorCode() = (%q, %t), want DWS_SERVICE_UNAUTHORIZED, true", code, ok)
}
}
@@ -234,6 +244,44 @@ func TestClassifyToolResultContent_PATPermission(t *testing.T) {
}
}
func TestClassifyToolResultContent_PATPermissionLegacyErrorCode(t *testing.T) {
t.Parallel()
content := map[string]any{
"error_code": "PAT_LOW_RISK_NO_PERMISSION",
"data": map[string]any{"desc": "需要授权"},
}
err := ClassifyToolResultContent(content)
if err == nil {
t.Fatal("expected non-nil error for legacy error_code PAT permission")
}
var patErr *PATError
if !stderrors.As(err, &patErr) {
t.Fatalf("expected *PATError, got %T", err)
}
if !strings.Contains(patErr.RawJSON, "PAT_LOW_RISK_NO_PERMISSION") {
t.Errorf("RawJSON should contain PAT_LOW_RISK_NO_PERMISSION, got: %s", patErr.RawJSON)
}
}
func TestClassifyToolResultContent_PATAuthRequired(t *testing.T) {
t.Parallel()
content := map[string]any{
"errorCode": "AGENT_CODE_NOT_EXISTS",
"data": map[string]any{"agentCode": "agt-missing"},
}
err := ClassifyToolResultContent(content)
if err == nil {
t.Fatal("expected non-nil error for PAT auth-required selector")
}
var patErr *PATError
if !stderrors.As(err, &patErr) {
t.Fatalf("expected *PATError, got %T", err)
}
if !strings.Contains(patErr.RawJSON, "AGENT_CODE_NOT_EXISTS") {
t.Errorf("RawJSON should contain AGENT_CODE_NOT_EXISTS, got: %s", patErr.RawJSON)
}
}
func TestClassifyToolResultContent_NoError(t *testing.T) {
t.Parallel()
content := map[string]any{"success": true, "data": "ok"}
@@ -294,6 +342,41 @@ func TestClassifyMCPResponseText_PATPermission(t *testing.T) {
}
}
func TestClassifyMCPResponseText_PATPermissionLegacyErrorCode(t *testing.T) {
t.Parallel()
text := `{"error_code":"PAT_MEDIUM_RISK_NO_PERMISSION","data":{"desc":"legacy"}}`
err := ClassifyMCPResponseText(text)
if err == nil {
t.Fatal("expected non-nil error")
}
var patErr *PATError
if !stderrors.As(err, &patErr) {
t.Fatalf("expected *PATError, got %T", err)
}
if !strings.Contains(patErr.RawJSON, "PAT_MEDIUM_RISK_NO_PERMISSION") {
t.Errorf("RawJSON should contain legacy code, got: %s", patErr.RawJSON)
}
}
func TestClassifyMCPResponseText_PATAuthRequired(t *testing.T) {
t.Parallel()
text := `{"success":false,"code":"PAT_SCOPE_AUTH_REQUIRED","data":{"missingScope":"mail:send"}}`
err := ClassifyMCPResponseText(text)
if err == nil {
t.Fatal("expected non-nil error")
}
var patErr *PATError
if !stderrors.As(err, &patErr) {
t.Fatalf("expected *PATError, got %T", err)
}
if !strings.Contains(patErr.RawJSON, "PAT_SCOPE_AUTH_REQUIRED") {
t.Errorf("RawJSON should contain PAT_SCOPE_AUTH_REQUIRED, got: %s", patErr.RawJSON)
}
if !strings.Contains(patErr.RawJSON, "missingScope") {
t.Errorf("RawJSON should preserve missingScope, got: %s", patErr.RawJSON)
}
}
func TestClassifyMCPResponseText_BusinessError(t *testing.T) {
t.Parallel()
text := `{"success":false,"errorMsg":"搜索内容不能为空"}`
@@ -345,6 +428,18 @@ func TestClassifyPatAuthCheck_PATNoPermission(t *testing.T) {
}
}
func TestClassifyPatAuthCheck_LegacyErrorCode(t *testing.T) {
t.Parallel()
content := map[string]any{"error_code": "PAT_HIGH_RISK_NO_PERMISSION", "data": map[string]any{"flowId": "f1"}}
patErr := ClassifyPatAuthCheck(content)
if patErr == nil {
t.Fatal("expected non-nil *PATError for legacy error_code")
}
if !strings.Contains(patErr.RawJSON, "PAT_HIGH_RISK_NO_PERMISSION") {
t.Errorf("RawJSON should contain PAT_HIGH_RISK_NO_PERMISSION, got: %s", patErr.RawJSON)
}
}
func TestClassifyPatAuthCheck_AgentCodeNotExists(t *testing.T) {
t.Parallel()
content := map[string]any{"errorCode": "AGENT_CODE_NOT_EXISTS", "data": map[string]any{"clientId": "c1"}}
@@ -357,6 +452,43 @@ func TestClassifyPatAuthCheck_AgentCodeNotExists(t *testing.T) {
}
}
// TestClassifyPatAuthCheck_scope_auth_required pins the PAT_SCOPE_AUTH_REQUIRED
// selector (part of the frozen PAT-family enum; see patAuthRequiredCodes in
// internal/errors/pat.go) as a PATError with exit=4 so hosts can kick the
// `dws auth login --scope <data.missingScope>` branch.
func TestClassifyPatAuthCheck_scope_auth_required(t *testing.T) {
t.Parallel()
content := map[string]any{
"success": false,
"code": "PAT_SCOPE_AUTH_REQUIRED",
"data": map[string]any{"missingScope": "mail:send"},
}
patErr := ClassifyPatAuthCheck(content)
if patErr == nil {
t.Fatal("expected non-nil *PATError for PAT_SCOPE_AUTH_REQUIRED")
}
// Error value MUST satisfy the ExitCoder contract (exit=4) so the
// process exits with the PAT Frozen code regardless of wrapping.
var ec interface{ ExitCode() int } = patErr
if ec.ExitCode() != ExitCodePermission {
t.Errorf("ExitCode() = %d, want %d", ec.ExitCode(), ExitCodePermission)
}
// Host-visible RawStderr must carry the selector and, crucially, the
// missingScope field that drives `dws auth login --scope <x>`.
raw := patErr.RawStderr()
if !strings.Contains(raw, "PAT_SCOPE_AUTH_REQUIRED") {
t.Errorf("RawStderr missing selector, got: %s", raw)
}
if !strings.Contains(raw, "missingScope") {
t.Errorf("RawStderr missing missingScope field, got: %s", raw)
}
if !strings.Contains(raw, "mail:send") {
t.Errorf("RawStderr missing missingScope value, got: %s", raw)
}
}
func TestClassifyPatAuthCheck_NoMatch(t *testing.T) {
t.Parallel()
content := map[string]any{"code": "SOME_BUSINESS_ERROR", "message": "oops"}
@@ -423,6 +555,9 @@ func TestCleanPATJSON_WithData(t *testing.T) {
if strings.Contains(result, "class") {
t.Errorf("expected class field to be stripped, got: %s", result)
}
if !strings.Contains(result, `"openBrowser":true`) {
t.Errorf("expected openBrowser default in output, got: %s", result)
}
}
func TestCleanPATJSON_WithoutData(t *testing.T) {
@@ -443,6 +578,167 @@ func TestCleanPATJSON_WithoutData(t *testing.T) {
}
}
// TestCleanPATJSON_InjectsHostControlWhenClawSet verifies the
// single-injection invariant: when the bootstrap wires a non-empty
// clawType provider, cleanPATJSON MUST emit data.hostControl.
func TestCleanPATJSON_InjectsHostControlWhenClawSet(t *testing.T) {
// Not parallel: mutates the package-level provider.
t.Cleanup(func() { SetHostControlProvider(nil) })
SetHostControlProvider(func() string { return "my-copilot" })
body := map[string]any{
"success": false,
"code": "PAT_NO_PERMISSION",
"data": map[string]any{
"desc": "需要授权",
"flowId": "f-1",
"callbacks": []any{"cb1", "cb2"},
},
}
raw := cleanPATJSON(body, "PAT_NO_PERMISSION")
var parsed map[string]any
if err := json.Unmarshal([]byte(raw), &parsed); err != nil {
t.Fatalf("unmarshal cleanPATJSON output: %v\nraw=%s", err, raw)
}
data, ok := parsed["data"].(map[string]any)
if !ok {
t.Fatalf("expected data object, got %T", parsed["data"])
}
hc, ok := data["hostControl"].(map[string]any)
if !ok {
t.Fatalf("expected data.hostControl to be a map, got %T\nraw=%s", data["hostControl"], raw)
}
if got, _ := hc["clawType"].(string); got != "my-copilot" {
t.Errorf("hostControl.clawType = %q, want %q", got, "my-copilot")
}
if got, _ := hc["callbackOwner"].(string); got != "host" {
t.Errorf("hostControl.callbackOwner = %q, want %q", got, "host")
}
if got, _ := hc["mode"].(string); got != "host" {
t.Errorf("hostControl.mode = %q, want %q", got, "host")
}
if _, ok := data["callbacks"]; ok {
t.Fatalf("cleanPATJSON should strip callbacks in host-owned mode, got: %v", data["callbacks"])
}
}
// TestCleanPATJSON_OmitsHostControlByDefault verifies that cleanPATJSON
// does NOT include a hostControl block when the provider is unset or
// returns empty (default CLI-owned mode).
func TestCleanPATJSON_OmitsHostControlByDefault(t *testing.T) {
// Not parallel: reads the package-level provider.
t.Cleanup(func() { SetHostControlProvider(nil) })
SetHostControlProvider(nil)
body := map[string]any{
"success": false,
"code": "PAT_NO_PERMISSION",
"data": map[string]any{
"desc": "need auth",
},
}
raw := cleanPATJSON(body, "PAT_NO_PERMISSION")
if strings.Contains(raw, `"hostControl"`) {
t.Fatalf("cleanPATJSON should omit hostControl in default mode, got: %s", raw)
}
SetHostControlProvider(func() string { return "" })
raw = cleanPATJSON(body, "PAT_NO_PERMISSION")
if strings.Contains(raw, `"hostControl"`) {
t.Fatalf("cleanPATJSON should omit hostControl when provider returns empty, got: %s", raw)
}
}
func TestCleanPATJSON_UsesBrowserPolicyProvider(t *testing.T) {
t.Cleanup(func() {
SetHostControlProvider(nil)
SetPATOpenBrowserProvider(nil)
})
SetHostControlProvider(nil)
SetPATOpenBrowserProvider(func() bool { return false })
body := map[string]any{
"success": false,
"code": "PAT_NO_PERMISSION",
"data": map[string]any{
"desc": "need auth",
},
}
raw := cleanPATJSON(body, "PAT_NO_PERMISSION")
var parsed map[string]any
if err := json.Unmarshal([]byte(raw), &parsed); err != nil {
t.Fatalf("unmarshal cleanPATJSON output: %v\nraw=%s", err, raw)
}
data, _ := parsed["data"].(map[string]any)
if got, ok := data["openBrowser"].(bool); !ok || got {
t.Fatalf("data.openBrowser = %#v, want false", data["openBrowser"])
}
}
// TestCleanPATJSON_SingleLineOutput pins down the wire invariant: stderr
// JSON MUST be emitted as a single line (no embedded \n, no pretty-print
// indentation) so that naïve host parsers reading stderr line-by-line stay
// correct. Regression guard against accidental reintroduction of
// json.MarshalIndent.
func TestCleanPATJSON_SingleLineOutput(t *testing.T) {
t.Parallel()
body := map[string]any{
"success": false,
"code": "PAT_LOW_RISK_NO_PERMISSION",
"data": map[string]any{
"requiredScopes": []any{"aitable.record:read"},
"grantOptions": []any{"session", "permanent"},
"displayName": "读取记录",
"productName": "AI 表格",
},
}
raw := cleanPATJSON(body, "PAT_LOW_RISK_NO_PERMISSION")
if strings.Contains(raw, "\n") {
t.Fatalf("cleanPATJSON output must be single-line, got embedded newline:\n%s", raw)
}
if strings.HasPrefix(raw, " ") || strings.HasPrefix(raw, "\t") {
t.Fatalf("cleanPATJSON output must not be indented, got leading whitespace: %q", raw)
}
// Contract: the payload must remain a directly json.Unmarshal-able
// object, even after the single-line constraint is enforced.
var parsed map[string]any
if err := json.Unmarshal([]byte(raw), &parsed); err != nil {
t.Fatalf("single-line output must round-trip via json.Unmarshal: %v\nraw=%s", err, raw)
}
if code, _ := parsed["code"].(string); code != "PAT_LOW_RISK_NO_PERMISSION" {
t.Errorf("code = %q, want %q", code, "PAT_LOW_RISK_NO_PERMISSION")
}
}
func TestCleanPATJSON_PreservesOpaqueURIVerbatim(t *testing.T) {
t.Parallel()
rawURI := "https://open-dev.dingtalk.com/fe/old?hash=%23%2FpersonalAuthorization%3FflowId%3D50dff7654b7444e88ced7489b07cce8d%26userCode%3DQ8RY-X6E9#/personalAuthorization?flowId=50dff7654b7444e88ced7489b07cce8d&userCode=Q8RY-X6E9"
body := map[string]any{
"success": false,
"code": "PAT_MEDIUM_RISK_NO_PERMISSION",
"data": map[string]any{
"desc": "在浏览器中打开以下链接进行认证",
"flowId": "50dff7654b7444e88ced7489b07cce8d",
"uri": rawURI,
},
}
result := cleanPATJSON(body, "PAT_MEDIUM_RISK_NO_PERMISSION")
var parsed map[string]any
if err := json.Unmarshal([]byte(result), &parsed); err != nil {
t.Fatalf("unmarshal cleanPATJSON output: %v\nraw=%s", err, result)
}
data, _ := parsed["data"].(map[string]any)
if got, _ := data["uri"].(string); got != rawURI {
t.Fatalf("data.uri = %q, want verbatim %q", got, rawURI)
}
}
// ---------------------------------------------------------------------------
// stripClassFields
// ---------------------------------------------------------------------------
+17 -4
View File
@@ -268,15 +268,20 @@ func newAttendanceShiftListCommand(runner executor.Runner) *cobra.Command {
func newAttendanceSummaryCommand(runner executor.Runner) *cobra.Command {
cmd := &cobra.Command{
Use: "summary",
Short: "查询某个人的考勤统计摘要",
Long: "查询某个人的考勤统计摘要。--user 与 --date 均必填。",
Example: ` dws attendance summary --user USER_ID --date "2026-03-12 15:00:00"`,
Use: "summary",
Short: "查询某个人的考勤统计摘要",
Long: `查询某个人的考勤统计摘要。
--user、--date、--stats-type 均必填。
钉钉服务端业务层强制要求 --stats-type(week/month),不填会返回 C0002 统计类型错误。`,
Example: ` dws attendance summary --user USER_ID --date "2026-03-12 15:00:00" --stats-type month
dws attendance summary --user USER_ID --date "2026-03-12 15:00:00" --stats-type week`,
Args: cobra.NoArgs,
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
userID, _ := cmd.Flags().GetString("user")
workDateStr, _ := cmd.Flags().GetString("date")
statsType, _ := cmd.Flags().GetString("stats-type")
if userID == "" {
return apperrors.NewValidation("--user is required, provide DingTalk user ID")
}
@@ -287,10 +292,17 @@ func newAttendanceSummaryCommand(runner executor.Runner) *cobra.Command {
if err != nil {
return apperrors.NewValidation("--date format error, use yyyy-MM-dd HH:mm:ss")
}
if statsType == "" {
return apperrors.NewValidation(`--stats-type is required (week|month), enforced by DingTalk server`)
}
if statsType != "week" && statsType != "month" {
return apperrors.NewValidation(`--stats-type must be "week" or "month"`)
}
// Build nested structure QueryUserAttendVO
vo := map[string]any{
"userId": userID,
"queryDate": workDateStr,
"statsType": statsType,
}
params := map[string]any{
"QueryUserAttendVO": vo,
@@ -311,6 +323,7 @@ func newAttendanceSummaryCommand(runner executor.Runner) *cobra.Command {
}
cmd.Flags().String("user", "", "钉钉用户 ID(必填)")
cmd.Flags().String("date", "", "工作日期,格式 yyyy-MM-dd HH:mm:ss,如 2026-03-12 15:00:00(必填)")
cmd.Flags().String("stats-type", "", "统计类型:week(周统计)或 month(月统计)(必填,钉钉服务端业务层强制要求)")
preferLegacyLeaf(cmd)
return cmd
}
+189 -31
View File
@@ -60,6 +60,7 @@ func (chatHandler) Command(runner executor.Runner) *cobra.Command {
},
}
message.AddCommand(
newChatMessageSendCommand(runner),
newChatMessageSendByBotCommand(runner),
newChatMessageRecallByBotCommand(runner),
newChatMessageSendByWebhookCommand(runner),
@@ -81,18 +82,31 @@ func (chatHandler) Command(runner executor.Runner) *cobra.Command {
return root
}
func newChatMessageSendByBotCommand(runner executor.Runner) *cobra.Command {
func newChatMessageSendCommand(runner executor.Runner) *cobra.Command {
cmd := &cobra.Command{
Use: "send-by-bot",
Short: "机器人发送消息(--group 群聊 / --users 单聊)",
Args: cobra.NoArgs,
Use: "send",
Short: "以当前用户身份发送消息 (--group 群聊 / --user 或 --open-dingtalk-id 单聊)",
Long: `以当前用户身份发送群消息或单聊消息。
--group 指定群聊 openConversationId 发群消息;--user 指定 userId 发单聊;
--open-dingtalk-id 指定 openDingTalkId 发单聊 (适用于无法获取 userId 的场景)。
三者只能选其一,不能同时指定。
消息内容通过 --text 传入,也可作为位置参数;支持 Markdown。必须提供 --title 作为消息标题。
群聊场景下可用 --at-all / --at-users / --at-mobiles 进行 @ 提醒(仅 --group 时生效)。
注意 --text 中需包含对应的 <@userId> / <@all> 占位符才能在客户端渲染出 @ 效果。`,
Example: ` dws chat message send --group <openconversation_id> --text "hello"
dws chat message send --user <userId> --text "请查收"
dws chat message send --open-dingtalk-id <openDingTalkId> --title "提醒" --text "请确认"
dws chat message send --group <openconversation_id> --title "拉群通知" --text "<@uid> 你被 @ 了" --at-users uid`,
Args: cobra.MaximumNArgs(1),
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
params, tool, err := buildChatMessageSendByBotInvocation(cmd)
params, tool, err := buildChatMessageSendInvocation(cmd, args)
if err != nil {
return err
}
invocation := executor.NewHelperInvocation(
cobracmd.LegacyCommandPath(cmd),
"chat",
@@ -109,10 +123,138 @@ func newChatMessageSendByBotCommand(runner executor.Runner) *cobra.Command {
}
preferLegacyLeaf(cmd)
cmd.Flags().String("group", "", "群会话 openConversationId (群聊三选一)")
cmd.Flags().String("user", "", "接收人 userId (单聊三选一)")
cmd.Flags().String("open-dingtalk-id", "", "接收人 openDingTalkId (单聊三选一)")
cmd.Flags().String("text", "", "消息内容,支持 Markdown (也可作位置参数)")
cmd.Flags().String("title", "", "消息标题 (可选)")
cmd.Flags().Bool("at-all", false, "@所有人 (仅 --group 群聊生效)")
cmd.Flags().String("at-users", "", "按 userId @ 指定成员,逗号分隔 (仅 --group 群聊生效)")
cmd.Flags().String("at-mobiles", "", "按手机号 @ 指定成员,逗号分隔 (仅 --group 群聊生效)")
return cmd
}
func buildChatMessageSendInvocation(cmd *cobra.Command, args []string) (map[string]any, string, error) {
guard := cli.NewStdinGuard()
group, err := cmd.Flags().GetString("group")
if err != nil {
return nil, "", apperrors.NewInternal("failed to read --group")
}
user, err := cmd.Flags().GetString("user")
if err != nil {
return nil, "", apperrors.NewInternal("failed to read --user")
}
openID, err := cmd.Flags().GetString("open-dingtalk-id")
if err != nil {
return nil, "", apperrors.NewInternal("failed to read --open-dingtalk-id")
}
title, err := resolveStringFlag(cmd, "title", guard, false)
if err != nil {
return nil, "", err
}
// --text is the primary content flag: receives stdin pipe and positional
// fallback when empty.
text, err := resolveStringFlag(cmd, "text", guard, true)
if err != nil {
return nil, "", err
}
if strings.TrimSpace(text) == "" && len(args) > 0 {
text = args[0]
}
hasGroup := strings.TrimSpace(group) != ""
hasUser := strings.TrimSpace(user) != ""
hasOpenID := strings.TrimSpace(openID) != ""
specified := 0
if hasGroup {
specified++
}
if hasUser {
specified++
}
if hasOpenID {
specified++
}
switch specified {
case 0:
return nil, "", apperrors.NewValidation("one of --group, --user, or --open-dingtalk-id is required")
case 1:
default:
return nil, "", apperrors.NewValidation("--group, --user, and --open-dingtalk-id are mutually exclusive")
}
if strings.TrimSpace(text) == "" {
return nil, "", apperrors.NewValidation("--text (or positional argument) is required")
}
atAll, _ := cmd.Flags().GetBool("at-all")
atUsers, _ := cmd.Flags().GetString("at-users")
atMobiles, _ := cmd.Flags().GetString("at-mobiles")
hasAtUsers := strings.TrimSpace(atUsers) != ""
hasAtMobiles := strings.TrimSpace(atMobiles) != ""
if !hasGroup && (atAll || hasAtUsers || hasAtMobiles) {
return nil, "", apperrors.NewValidation("--at-all / --at-users / --at-mobiles only apply when --group is set")
}
params := map[string]any{"text": text}
if strings.TrimSpace(title) != "" {
params["title"] = title
}
switch {
case hasGroup:
params["openConversation_id"] = group
if atAll {
params["isAtAll"] = true
}
if hasAtUsers {
params["atUserIds"] = splitCSV(atUsers)
}
if hasAtMobiles {
params["atMobiles"] = splitCSV(atMobiles)
}
return params, "send_message_as_user", nil
case hasUser:
params["receiverUserId"] = user
return params, "send_direct_message_as_user", nil
default:
params["receiverOpenDingTalkId"] = openID
return params, "send_direct_message_as_user", nil
}
}
func newChatMessageSendByBotCommand(runner executor.Runner) *cobra.Command {
cmd := &cobra.Command{
Use: "send-by-bot",
Short: "机器人发送消息(--group 群聊 / --users 单聊)",
Args: cobra.NoArgs,
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
params, tool, err := buildChatMessageSendByBotInvocation(cmd)
if err != nil {
return err
}
invocation := executor.NewHelperInvocation(
cobracmd.LegacyCommandPath(cmd),
"bot",
tool,
params,
)
invocation.DryRun = commandDryRun(cmd)
result, err := runner.Run(cmd.Context(), invocation)
if err != nil {
return err
}
return writeCommandPayload(cmd, result)
},
}
preferLegacyLeaf(cmd)
cmd.Flags().String("group", "", "群会话 openConversationId (群聊必填)")
cmd.Flags().String("robot-code", "", "机器人 Code")
cmd.Flags().String("text", "", "消息内容 (Markdown)")
cmd.Flags().String("title", "", "消息标题")
cmd.Flags().String("robot-code", "", "机器人 Code (必填)")
cmd.Flags().String("text", "", "消息内容 Markdown (必填)")
cmd.Flags().String("title", "", "消息标题 (必填)")
cmd.Flags().String("users", "", "接收者 userId 列表,逗号分隔,最多 20 个 (单聊必填)")
return cmd
}
@@ -180,13 +322,18 @@ func newChatGroupCommand(runner executor.Runner) *cobra.Command {
Args: cobra.NoArgs,
TraverseChildren: true,
DisableAutoGenTag: true,
RunE: newChatGroupMembersListRunE(runner),
RunE: func(cmd *cobra.Command, args []string) error {
return cmd.Help()
},
}
members.Flags().String("id", "", "群 ID / openconversation_id (必填)")
members.Flags().String("cursor", "", "分页游标")
// Keeps the helper-restructured group winning over the dynamic envelope's
// `members` leaf (which only exposes `get_group_members`); without this
// the merge layer treats the shape mismatch as "envelope is authority"
// and drops the entire helper subtree (issue #164).
preferLegacyLeaf(members)
members.AddCommand(
newChatGroupMembersListCommand(runner),
newChatGroupMemberAddCommand(runner),
newChatGroupMemberRemoveCommand(runner),
newChatGroupMembersAddBotCommand(runner),
@@ -557,26 +704,37 @@ func newChatMessageSendByWebhookCommand(runner executor.Runner) *cobra.Command {
// ── group members list ─────────────────────────────────────
func newChatGroupMembersListRunE(runner executor.Runner) func(*cobra.Command, []string) error {
return func(cmd *cobra.Command, args []string) error {
groupID, _ := cmd.Flags().GetString("id")
if strings.TrimSpace(groupID) == "" {
return apperrors.NewValidation("--id is required")
}
params := map[string]any{
"openconversation_id": groupID,
}
if v, _ := cmd.Flags().GetString("cursor"); v != "" {
params["cursor"] = v
}
result, err := runner.Run(cmd.Context(), executor.NewHelperInvocation(
cobracmd.LegacyCommandPath(cmd), "chat", "get_group_members", params,
))
if err != nil {
return err
}
return writeCommandPayload(cmd, result)
func newChatGroupMembersListCommand(runner executor.Runner) *cobra.Command {
cmd := &cobra.Command{
Use: "list",
Short: "查询群成员列表",
Example: ` dws chat group members list --id <openconversation_id>`,
Args: cobra.NoArgs,
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
groupID, _ := cmd.Flags().GetString("id")
if strings.TrimSpace(groupID) == "" {
return apperrors.NewValidation("--id is required")
}
params := map[string]any{
"openconversation_id": groupID,
}
if v, _ := cmd.Flags().GetString("cursor"); v != "" {
params["cursor"] = v
}
result, err := runner.Run(cmd.Context(), executor.NewHelperInvocation(
cobracmd.LegacyCommandPath(cmd), "chat", "get_group_members", params,
))
if err != nil {
return err
}
return writeCommandPayload(cmd, result)
},
}
preferLegacyLeaf(cmd)
cmd.Flags().String("id", "", "群 ID / openconversation_id (必填)")
cmd.Flags().String("cursor", "", "分页游标 (首页留空)")
return cmd
}
// ── group rename ───────────────────────────────────────────
+365
View File
@@ -3,9 +3,11 @@ package helpers
import (
"bytes"
"context"
"strings"
"testing"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/executor"
"github.com/spf13/cobra"
)
type captureRunner struct {
@@ -43,4 +45,367 @@ func TestChatMessageSendByBotIgnoresLegacyRealBuildModeEnv(t *testing.T) {
if got := runner.last.Params["robotCode"]; got != "robot-001" {
t.Fatalf("robotCode = %#v, want robot-001", got)
}
if got := runner.last.CanonicalProduct; got != "bot" {
t.Fatalf("CanonicalProduct = %q, want bot", got)
}
}
func TestChatMessageSendRoutesByDestination(t *testing.T) {
cases := []struct {
name string
args []string
wantTool string
wantKey string
wantValue string
}{
{
name: "group",
args: []string{"--group", "cid-xyz", "--text", "hello"},
wantTool: "send_message_as_user",
wantKey: "openConversation_id",
wantValue: "cid-xyz",
},
{
name: "user-direct",
args: []string{"--user", "034766", "--text", "hi"},
wantTool: "send_direct_message_as_user",
wantKey: "receiverUserId",
wantValue: "034766",
},
{
name: "open-dingtalk-id-direct",
args: []string{"--open-dingtalk-id", "OP123", "--text", "hi"},
wantTool: "send_direct_message_as_user",
wantKey: "receiverOpenDingTalkId",
wantValue: "OP123",
},
{
name: "positional-text",
args: []string{"--group", "cid-xyz", "hello from positional"},
wantTool: "send_message_as_user",
wantKey: "text",
wantValue: "hello from positional",
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
runner := &captureRunner{}
cmd := newChatMessageSendCommand(runner)
var out bytes.Buffer
cmd.SetOut(&out)
cmd.SetErr(&out)
cmd.SetArgs(tc.args)
if err := cmd.Execute(); err != nil {
t.Fatalf("Execute() error = %v\noutput:\n%s", err, out.String())
}
if got := runner.last.Tool; got != tc.wantTool {
t.Fatalf("Tool = %q, want %q", got, tc.wantTool)
}
if got := runner.last.CanonicalProduct; got != "chat" {
t.Fatalf("CanonicalProduct = %q, want chat", got)
}
if got, ok := runner.last.Params[tc.wantKey]; !ok || got != tc.wantValue {
t.Fatalf("Params[%q] = %#v, want %q", tc.wantKey, got, tc.wantValue)
}
})
}
}
func TestChatMessageSendRejectsInvalidDestination(t *testing.T) {
cases := []struct {
name string
args []string
wantErr string
}{
{
name: "no-destination",
args: []string{"--text", "hi"},
wantErr: "one of --group, --user, or --open-dingtalk-id is required",
},
{
name: "group-and-user",
args: []string{"--group", "cid-x", "--user", "034766", "--text", "hi"},
wantErr: "--group, --user, and --open-dingtalk-id are mutually exclusive",
},
{
name: "empty-text",
args: []string{"--group", "cid-x"},
wantErr: "--text (or positional argument) is required",
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
runner := &captureRunner{}
cmd := newChatMessageSendCommand(runner)
var out bytes.Buffer
cmd.SetOut(&out)
cmd.SetErr(&out)
cmd.SetArgs(tc.args)
err := cmd.Execute()
if err == nil {
t.Fatalf("expected error, got nil; output: %s", out.String())
}
if got := err.Error(); !strings.Contains(got, tc.wantErr) {
t.Fatalf("error = %q, want to contain %q", got, tc.wantErr)
}
})
}
}
// TestChatMessageSendForwardsAtMentions guards the regression introduced
// alongside the destination-based routing in PR #170: the hardcoded helper
// declared --group / --user / --open-dingtalk-id / --text / --title but
// dropped the v1.0.15 envelope's --at-users / --at-all / --at-mobiles flags,
// so `dws chat message send --group ... --at-users ...` failed with
// `unknown flag: --at-users` (issue #177).
func TestChatMessageSendForwardsAtMentions(t *testing.T) {
cases := []struct {
name string
args []string
wantParams map[string]any
}{
{
name: "group-with-at-users",
args: []string{
"--group", "cid-xyz",
"--title", "拉群通知",
"--text", "<@uid-1> <@uid-2> 请关注",
"--at-users", "uid-1,uid-2",
},
wantParams: map[string]any{
"openConversation_id": "cid-xyz",
"title": "拉群通知",
"text": "<@uid-1> <@uid-2> 请关注",
"atUserIds": []any{"uid-1", "uid-2"},
},
},
{
name: "group-with-at-all",
args: []string{
"--group", "cid-xyz",
"--title", "全员通知",
"--text", "<@all> 请关注",
"--at-all",
},
wantParams: map[string]any{
"openConversation_id": "cid-xyz",
"title": "全员通知",
"text": "<@all> 请关注",
"isAtAll": true,
},
},
{
name: "group-with-at-mobiles",
args: []string{
"--group", "cid-xyz",
"--title", "提醒",
"--text", "请 13800000000 确认",
"--at-mobiles", "13800000000,13900000000",
},
wantParams: map[string]any{
"openConversation_id": "cid-xyz",
"title": "提醒",
"text": "请 13800000000 确认",
"atMobiles": []any{"13800000000", "13900000000"},
},
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
runner := &captureRunner{}
cmd := newChatMessageSendCommand(runner)
var out bytes.Buffer
cmd.SetOut(&out)
cmd.SetErr(&out)
cmd.SetArgs(tc.args)
if err := cmd.Execute(); err != nil {
t.Fatalf("Execute() error = %v\noutput:\n%s", err, out.String())
}
if got := runner.last.Tool; got != "send_message_as_user" {
t.Fatalf("Tool = %q, want send_message_as_user", got)
}
for key, want := range tc.wantParams {
got, ok := runner.last.Params[key]
if !ok {
t.Fatalf("Params missing %q; got %#v", key, runner.last.Params)
}
if !equalAny(got, want) {
t.Fatalf("Params[%q] = %#v, want %#v", key, got, want)
}
}
})
}
}
// TestChatMessageSendRejectsAtMentionsOutsideGroup ensures we do not silently
// drop user intent when --at-* is combined with --user / --open-dingtalk-id
// (single-chat tools have no @-mention semantics, so the flag would never
// take effect — fail loudly instead of swallowing).
func TestChatMessageSendRejectsAtMentionsOutsideGroup(t *testing.T) {
cases := []struct {
name string
args []string
}{
{
name: "user-with-at-users",
args: []string{"--user", "034766", "--text", "hi", "--at-users", "uid-1"},
},
{
name: "open-dingtalk-id-with-at-all",
args: []string{"--open-dingtalk-id", "OP123", "--text", "hi", "--at-all"},
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
runner := &captureRunner{}
cmd := newChatMessageSendCommand(runner)
var out bytes.Buffer
cmd.SetOut(&out)
cmd.SetErr(&out)
cmd.SetArgs(tc.args)
err := cmd.Execute()
if err == nil {
t.Fatalf("expected error, got nil; output: %s", out.String())
}
if !strings.Contains(err.Error(), "only apply when --group is set") {
t.Fatalf("error = %q, want '...only apply when --group is set'", err.Error())
}
})
}
}
func equalAny(a, b any) bool {
switch av := a.(type) {
case []any:
bv, ok := b.([]any)
if !ok || len(av) != len(bv) {
return false
}
for i := range av {
if av[i] != bv[i] {
return false
}
}
return true
default:
return a == b
}
}
// TestChatGroupMembersListSubcommand pins the explicit `list` subcommand
// added for issue #164: previously the bare `chat group members --id` was
// the list path, but it shape-mismatched the dynamic envelope's `members`
// leaf and got eaten by the merge layer. Now `dws chat group members list
// --id <cid>` is a proper leaf siblings of add/remove/add-bot.
func TestChatGroupMembersListSubcommand(t *testing.T) {
runner := &captureRunner{}
groupCmd := newChatGroupCommand(runner)
var members *cobra.Command
for _, sub := range groupCmd.Commands() {
if sub.Name() == "members" {
members = sub
break
}
}
if members == nil {
t.Fatalf("members subcommand missing under chat group")
}
want := map[string]bool{"list": false, "add": false, "remove": false, "add-bot": false}
for _, leaf := range members.Commands() {
if _, ok := want[leaf.Name()]; ok {
want[leaf.Name()] = true
}
}
for name, seen := range want {
if !seen {
t.Errorf("expected `chat group members %s` subcommand, missing", name)
}
}
if members.Flags().Lookup("id") != nil {
t.Errorf("members container should not declare --id (moved to `list` subcommand to avoid shape-mismatch with dynamic envelope)")
}
var listCmd *cobra.Command
for _, leaf := range members.Commands() {
if leaf.Name() == "list" {
listCmd = leaf
break
}
}
if listCmd == nil {
t.Fatalf("`list` subcommand not found")
}
if listCmd.Flags().Lookup("id") == nil {
t.Errorf("`list` subcommand must declare --id")
}
if listCmd.Flags().Lookup("cursor") == nil {
t.Errorf("`list` subcommand must declare --cursor")
}
// Drive execution via the group root so cobra resolves the subcommand
// path properly (calling Execute() on a child directly would re-enter
// the root help branch).
var out bytes.Buffer
groupCmd.SetOut(&out)
groupCmd.SetErr(&out)
groupCmd.SetArgs([]string{"members", "list", "--id", "cid-xyz"})
if err := groupCmd.Execute(); err != nil {
t.Fatalf("members list Execute error = %v\noutput: %s", err, out.String())
}
if got := runner.last.Tool; got != "get_group_members" {
t.Fatalf("Tool = %q, want get_group_members", got)
}
if got := runner.last.Params["openconversation_id"]; got != "cid-xyz" {
t.Fatalf("openconversation_id = %#v, want cid-xyz", got)
}
}
func TestChatMessageSendByBotRoutesToBotProduct(t *testing.T) {
cases := []struct {
name string
args []string
wantTool string
}{
{
name: "single-chat",
args: []string{
"--users", "user-001",
"--robot-code", "robot-001",
"--title", "t",
"--text", "x",
},
wantTool: "batch_send_robot_msg_to_users",
},
{
name: "group-chat",
args: []string{
"--group", "cid-xyz",
"--robot-code", "robot-001",
"--title", "t",
"--text", "x",
},
wantTool: "send_robot_group_message",
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
runner := &captureRunner{}
cmd := newChatMessageSendByBotCommand(runner)
var out bytes.Buffer
cmd.SetOut(&out)
cmd.SetErr(&out)
cmd.SetArgs(tc.args)
if err := cmd.Execute(); err != nil {
t.Fatalf("Execute() error = %v\noutput:\n%s", err, out.String())
}
if got := runner.last.CanonicalProduct; got != "bot" {
t.Fatalf("CanonicalProduct = %q, want bot", got)
}
if got := runner.last.Tool; got != tc.wantTool {
t.Fatalf("Tool = %q, want %q", got, tc.wantTool)
}
})
}
}
+13 -3
View File
@@ -204,8 +204,18 @@ func newReportCreateCommand(runner executor.Runner) *cobra.Command {
Use: "create",
Short: "创建日志",
Long: `按模版创建一条日志。--contents 为 JSON 数组,每项需含 key、sort、content、contentType、type,
与远程 create_report 一致;可先通过 report template list / template detail 取得 templateId 与控件定义。`,
Example: ` dws report create --template-id TPL_ID --contents '[{"content":"完成开发","sort":"0","key":"今日完成","contentType":"markdown","type":"1"}]'
与远程 create_report 一致;可先通过 report template list / template detail 取得 templateId 与控件定义。
注意:每个 contents 项的 key 必须精确等于模板的 field_name(中文/英文逐字匹配,不是控件 ID 或别名)。
key 与 field_name 不一致时钉钉 API 会返回 SYSTEM_ERROR (success=false),CLI 层不会预先拦截。
请先用 report template detail 查到 report_template_fields[].field_name 后再填。`,
Example: ` # Step 1:查模板,取 report_template_fields[].field_name 当作 contents[].key
dws report template detail --name "周报"
# Step 2:用上一步拿到的 field_name 作为 key 创建日志
dws report create --template-id TPL_ID --contents '[{"key":"<field_name>","sort":"0","content":"完成开发","contentType":"markdown","type":"1"}]'
# 同时通知到接收人单聊
dws report create --template-id TPL_ID --contents '[...]' --to-chat --to-user-ids userId1,userId2`,
Args: cobra.NoArgs,
DisableAutoGenTag: true,
@@ -251,7 +261,7 @@ func newReportCreateCommand(runner executor.Runner) *cobra.Command {
},
}
cmd.Flags().String("template-id", "", "日志模版 ID (必填)")
cmd.Flags().String("contents", "", "日志内容 JSON 数组 (必填),每项含 key/sort/content/contentType/type")
cmd.Flags().String("contents", "", "日志内容 JSON 数组 (必填),每项含 key/sort/content/contentType/type;key 必须精确等于模板 field_name (用 report template detail --name <模板名> 查询)")
cmd.Flags().String("dd-from", "dws", "创建来源标识")
cmd.Flags().Bool("to-chat", false, "是否发送到日志接收人单聊")
cmd.Flags().String("to-user-ids", "", "接收人 userId,逗号分隔 (可选)")
+34 -5
View File
@@ -83,7 +83,7 @@ func newTodoTaskCreateCommand(runner executor.Runner) *cobra.Command {
Example: ` dws todo task create --title "修复线上Bug" --executors userId1,userId2 --priority 40
dws todo task create --title "提交报告" --executors userId1 --due "2026-03-10T18:00:00+08:00"
# 查询 userId: dws contact user search --keyword "姓名"`,
# 查询 userId: dws contact user search --query "姓名"`,
Args: cobra.NoArgs,
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
@@ -135,7 +135,7 @@ func newTodoTaskCreateCommand(runner executor.Runner) *cobra.Command {
preferLegacyLeaf(cmd)
cmd.Flags().String("title", "", i18n.T("待办标题 (必填)"))
cmd.Flags().String("executors", "", i18n.T("执行者 userId 列表 (必填)"))
cmd.Flags().String("executors", "", i18n.T("执行者 userId 列表,逗号分隔 (必填)。注意: 此处是通讯录 userId,可通过 dws contact user search --query 姓名 查询"))
cmd.Flags().String("due", "", i18n.T("截止时间 ISO-8601 (如 2026-03-10T18:00:00+08:00)"))
cmd.Flags().String("priority", "", i18n.T("优先级: 10低/20普通/30较高/40紧急"))
cmd.Flags().String("recurrence", "", i18n.T("循环待办 (需先设置 --due); 格式: DTSTART:...\\nRRULE:FREQ=DAILY;INTERVAL=1"))
@@ -152,8 +152,20 @@ func newTodoTaskCreateCommand(runner executor.Runner) *cobra.Command {
func newTodoTaskListCommand(runner executor.Runner) *cobra.Command {
cmd := &cobra.Command{
Use: "list",
Short: i18n.T("查询待办列表"),
Use: "list",
Short: i18n.T("查询待办列表"),
Long: i18n.T(`查询当前用户在当前企业的待办列表。
覆盖范围:
返回当前用户作为"执行者"(executor) 的待办。
仅参与但不执行的待办、自己创建但交给他人执行的待办不在返回范围内。
当前列表能力面向"个人待办",即钉钉待办模块中展示的待办任务,
不包含 OA 审批流待办、Teambition 项目任务等其他业务线的待办。
分页:
默认每页 20 条。--size 超过 20 时,CLI 会自动进行多次 API 调用
并合并结果(自动分页),无需手动翻页。`),
Example: ` dws todo task list --page 1 --size 20 --status false`,
Args: cobra.NoArgs,
DisableAutoGenTag: true,
@@ -362,6 +374,23 @@ func newTodoTaskGetCommand(runner executor.Runner) *cobra.Command {
cmd := &cobra.Command{
Use: "get",
Short: i18n.T("待办详情"),
Long: i18n.T(`查看待办任务详情。
返回字段说明:
creatorId / executorIds / participantIds / modifierId
待办系统内部人员标识(短数字 ID,如 6380165826),
不是通讯录 userId(如 035551044606950179)或 unionid。
这些 ID 在待办系统内对同一用户稳定,但无法直接用于通讯录 API 查询。
如需获取人员姓名,可参考返回中的 creatorInfo / executorInfos /
participantInfos 字段(包含 name 属性)。
bizTag / source
底层待办引擎的实现标识。即使是在钉钉客户端直接创建的普通个人待办,
也会返回 "teambition",这是内核实现细节,不代表来自 Teambition 产品。
tenantId / tenantType
待办所属的租户标识,非企业 corpId。tenantType 为 "user" 时
tenantId 是用户维度标识;为 "org" 时是组织维度标识。`),
Example: ` dws todo task get --task-id <taskId>
# 查询 taskId: dws todo task list`,
@@ -379,7 +408,7 @@ func newTodoTaskGetCommand(runner executor.Runner) *cobra.Command {
invocation := executor.NewHelperInvocation(
cobracmd.LegacyCommandPath(cmd),
"todo",
"query_todo_detail",
"get_todo_detail",
params,
)
invocation.DryRun = commandDryRun(cmd)
+117
View File
@@ -49,6 +49,29 @@ type CLIFlagHint struct {
Alias string `json:"alias,omitempty"`
}
// FlagOverlay carries CLI-layer transformation metadata for a single
// MCP parameter: the flag alias the user types, the transform applied
// before dispatch, env-var fallback, default value, and whether the flag
// is hidden from help. Sourced from market.CLIToolOverride.Flags.
type FlagOverlay struct {
Alias string `json:"alias,omitempty"`
Transform string `json:"transform,omitempty"`
TransformArgs map[string]any `json:"transform_args,omitempty"`
EnvDefault string `json:"env_default,omitempty"`
Default string `json:"default,omitempty"`
Hidden bool `json:"hidden,omitempty"`
}
// ToolAnnotations mirrors MCP 2025+ tool annotations. All hints are
// nullable: absence means "unknown", not "false". Populate only when the
// source has a clear signal — don't guess.
type ToolAnnotations struct {
DestructiveHint *bool `json:"destructive_hint,omitempty"`
ReadOnlyHint *bool `json:"read_only_hint,omitempty"`
IdempotentHint *bool `json:"idempotent_hint,omitempty"`
OpenWorldHint *bool `json:"open_world_hint,omitempty"`
}
type CanonicalProduct struct {
ID string `json:"id"`
DisplayName string `json:"display_name"`
@@ -67,13 +90,16 @@ type CanonicalProduct struct {
type ToolDescriptor struct {
RPCName string `json:"rpc_name"`
CLIName string `json:"cli_name,omitempty"`
Group string `json:"group,omitempty"`
Title string `json:"title,omitempty"`
Description string `json:"description,omitempty"`
InputSchema map[string]any `json:"input_schema,omitempty"`
OutputSchema map[string]any `json:"output_schema,omitempty"`
Sensitive bool `json:"sensitive"`
Annotations *ToolAnnotations `json:"annotations,omitempty"`
Hidden bool `json:"hidden,omitempty"`
FlagHints map[string]CLIFlagHint `json:"flag_hints,omitempty"`
FlagOverlay map[string]FlagOverlay `json:"flag_overlay,omitempty"`
SourceServerKey string `json:"source_server_key"`
CanonicalPath string `json:"canonical_path"`
}
@@ -105,10 +131,58 @@ func BuildCatalog(runtimeServers []discovery.RuntimeServer) Catalog {
sensitiveByTool := make(map[string]bool, len(runtimeServer.Server.CLI.Tools))
hasSensitiveOverride := make(map[string]bool, len(runtimeServer.Server.CLI.Tools))
toolCLIName := make(map[string]string, len(runtimeServer.Server.CLI.Tools))
toolGroup := make(map[string]string)
toolHidden := make(map[string]bool, len(runtimeServer.Server.CLI.Tools))
toolTitleOverride := make(map[string]string, len(runtimeServer.Server.CLI.Tools))
toolDescriptionOverride := make(map[string]string, len(runtimeServer.Server.CLI.Tools))
toolFlagHints := make(map[string]map[string]CLIFlagHint, len(runtimeServer.Server.CLI.Tools))
toolFlagOverlay := make(map[string]map[string]FlagOverlay)
// Merge richer market.CLIToolOverride data (group, cliName, flag
// transforms/aliases/env-defaults) that the dynamic compat layer
// already consumes but the IR previously dropped.
for name, override := range runtimeServer.Server.CLI.ToolOverrides {
trimmed := strings.TrimSpace(name)
if trimmed == "" {
continue
}
if cn := strings.TrimSpace(override.CLIName); cn != "" {
toolCLIName[trimmed] = cn
}
if gp := strings.TrimSpace(override.Group); gp != "" {
toolGroup[trimmed] = gp
}
if override.Hidden {
toolHidden[trimmed] = true
}
if override.IsSensitive {
sensitiveByTool[trimmed] = true
hasSensitiveOverride[trimmed] = true
}
if desc := strings.TrimSpace(override.Description); desc != "" && toolDescriptionOverride[trimmed] == "" {
toolDescriptionOverride[trimmed] = desc
}
if len(override.Flags) > 0 {
overlay := make(map[string]FlagOverlay, len(override.Flags))
for paramName, flagOverride := range override.Flags {
paramTrim := strings.TrimSpace(paramName)
if paramTrim == "" {
continue
}
overlay[paramTrim] = FlagOverlay{
Alias: strings.TrimSpace(flagOverride.Alias),
Transform: strings.TrimSpace(flagOverride.Transform),
TransformArgs: cloneTransformArgs(flagOverride.TransformArgs),
EnvDefault: strings.TrimSpace(flagOverride.EnvDefault),
Default: strings.TrimSpace(flagOverride.Default),
Hidden: flagOverride.Hidden,
}
}
if len(overlay) > 0 {
toolFlagOverlay[trimmed] = overlay
}
}
}
for _, cliTool := range runtimeServer.Server.CLI.Tools {
name := strings.TrimSpace(cliTool.Name)
if name == "" {
@@ -164,13 +238,16 @@ func BuildCatalog(runtimeServers []discovery.RuntimeServer) Catalog {
tools = append(tools, ToolDescriptor{
RPCName: tool.Name,
CLIName: cliName,
Group: strings.TrimSpace(toolGroup[tool.Name]),
Title: title,
Description: description,
InputSchema: cloneMap(tool.InputSchema),
OutputSchema: cloneMap(tool.OutputSchema),
Sensitive: sensitive,
Annotations: deriveAnnotations(sensitive),
Hidden: toolHidden[tool.Name],
FlagHints: cloneFlagHints(toolFlagHints[tool.Name]),
FlagOverlay: cloneFlagOverlay(toolFlagOverlay[tool.Name]),
SourceServerKey: runtimeServer.Server.Key,
CanonicalPath: fmt.Sprintf("%s.%s", productID, tool.Name),
})
@@ -363,3 +440,43 @@ func cloneFlagHints(value map[string]CLIFlagHint) map[string]CLIFlagHint {
}
return out
}
func cloneFlagOverlay(value map[string]FlagOverlay) map[string]FlagOverlay {
if len(value) == 0 {
return nil
}
out := make(map[string]FlagOverlay, len(value))
for key, overlay := range value {
overlay.TransformArgs = cloneTransformArgs(overlay.TransformArgs)
out[key] = overlay
}
return out
}
func cloneTransformArgs(value map[string]any) map[string]any {
if len(value) == 0 {
return nil
}
data, err := json.Marshal(value)
if err != nil {
return nil
}
var cloned map[string]any
if err := json.Unmarshal(data, &cloned); err != nil {
return nil
}
return cloned
}
// deriveAnnotations maps the coarse-grained Sensitive bool onto MCP 2025+
// annotation hints. Only DestructiveHint is populated — the other hints
// (read_only, idempotent, open_world) stay nil until the upstream tool
// manifest advertises them explicitly. Guessing from name prefixes
// ("list_", "get_") risks false signals for AI agents.
func deriveAnnotations(sensitive bool) *ToolAnnotations {
if !sensitive {
return nil
}
destructive := true
return &ToolAnnotations{DestructiveHint: &destructive}
}
+108
View File
@@ -216,6 +216,114 @@ func TestBuildCatalogFallsBackToRuntimeSensitiveMetadata(t *testing.T) {
}
}
func TestBuildCatalogCarriesToolOverrideGroupAndFlagOverlay(t *testing.T) {
t.Parallel()
catalog := BuildCatalog([]discovery.RuntimeServer{
{
Server: market.ServerDescriptor{
Key: "ding-key",
DisplayName: "DING",
Endpoint: "https://example.com/server/ding",
CLI: market.CLIOverlay{
Command: "ding",
ToolOverrides: map[string]market.CLIToolOverride{
"send_ding_message": {
CLIName: "send",
Group: "message",
IsSensitive: true,
Flags: map[string]market.CLIFlagOverride{
"receiverUserIdList": {
Alias: "users",
Transform: "csv_to_array",
},
"robotCode": {
Alias: "robot-code",
EnvDefault: "DINGTALK_DING_ROBOT_CODE",
},
"remindType": {
Alias: "type",
Transform: "enum_map",
TransformArgs: map[string]any{
"_default": float64(1),
"app": float64(1),
},
},
},
},
},
},
},
Tools: []transport.ToolDescriptor{
{Name: "send_ding_message", Title: "发送DING消息", InputSchema: map[string]any{"type": "object"}},
},
},
})
if len(catalog.Products) != 1 {
t.Fatalf("products len = %d, want 1", len(catalog.Products))
}
product := catalog.Products[0]
if product.ID != "ding" {
t.Fatalf("product ID = %q, want ding", product.ID)
}
tool, ok := product.FindTool("send_ding_message")
if !ok {
t.Fatalf("tool not found")
}
if tool.CLIName != "send" {
t.Fatalf("CLIName = %q, want send", tool.CLIName)
}
if tool.Group != "message" {
t.Fatalf("Group = %q, want message", tool.Group)
}
if !tool.Sensitive {
t.Fatalf("Sensitive = false, want true (from overlay)")
}
if tool.Annotations == nil || tool.Annotations.DestructiveHint == nil || !*tool.Annotations.DestructiveHint {
t.Fatalf("DestructiveHint not propagated, got %#v", tool.Annotations)
}
if tool.Annotations.ReadOnlyHint != nil {
t.Fatalf("ReadOnlyHint should be nil when source is unknown, got %#v", *tool.Annotations.ReadOnlyHint)
}
users := tool.FlagOverlay["receiverUserIdList"]
if users.Alias != "users" || users.Transform != "csv_to_array" {
t.Fatalf("receiverUserIdList overlay = %#v", users)
}
robot := tool.FlagOverlay["robotCode"]
if robot.Alias != "robot-code" || robot.EnvDefault != "DINGTALK_DING_ROBOT_CODE" {
t.Fatalf("robotCode overlay = %#v", robot)
}
remind := tool.FlagOverlay["remindType"]
if remind.Transform != "enum_map" {
t.Fatalf("remindType.Transform = %q, want enum_map", remind.Transform)
}
if v, _ := remind.TransformArgs["app"].(float64); v != 1 {
t.Fatalf("remindType.TransformArgs[app] = %v, want 1", remind.TransformArgs["app"])
}
}
func TestBuildCatalogLeavesAnnotationsNilForNonSensitive(t *testing.T) {
t.Parallel()
catalog := BuildCatalog([]discovery.RuntimeServer{
{
Server: market.ServerDescriptor{
Key: "doc-key",
DisplayName: "文档",
Endpoint: "https://example.com/server/doc",
},
Tools: []transport.ToolDescriptor{
{Name: "list_documents", InputSchema: map[string]any{"type": "object"}},
},
},
})
tool := catalog.Products[0].Tools[0]
if tool.Annotations != nil {
t.Fatalf("Annotations = %#v, want nil for non-sensitive tool", tool.Annotations)
}
}
func TestBuildCatalogConsumesCLIRouteMetadata(t *testing.T) {
t.Parallel()
+7
View File
@@ -23,6 +23,13 @@ const (
// AccountToken is the account key for storing auth token data.
AccountToken = "auth-token"
// StorageDirEnv overrides the on-disk keychain storage root on
// platforms that use file-backed storage (macOS, Linux). It is
// intended for tests that need to isolate keychain state from the
// real user environment and from sibling test packages running in
// parallel. When empty, the platform default applies.
StorageDirEnv = "DWS_KEYCHAIN_DIR"
)
// KeychainAccess abstracts keychain Get/Set/Remove for dependency injection.
+5
View File
@@ -40,7 +40,12 @@ const (
// StorageDir returns the storage directory for a given service name on macOS.
// Uses ~/Library/Application Support/<service> following Apple conventions.
// When the DWS_KEYCHAIN_DIR environment variable is set (used by tests for
// isolation), the storage root is taken from that env var instead.
func StorageDir(service string) string {
if override := os.Getenv(StorageDirEnv); override != "" {
return filepath.Join(override, service)
}
home, err := os.UserHomeDir()
if err != nil || home == "" {
return filepath.Join(".dws", "keychain", service)
+6 -1
View File
@@ -34,8 +34,13 @@ const (
)
// StorageDir returns the storage directory for a given service name.
// Follows XDG Base Directory Specification: ~/.local/share/<service>
// Follows XDG Base Directory Specification: ~/.local/share/<service>.
// When the DWS_KEYCHAIN_DIR environment variable is set (used by tests for
// isolation), the storage root is taken from that env var instead.
func StorageDir(service string) string {
if override := os.Getenv(StorageDirEnv); override != "" {
return filepath.Join(override, service)
}
home, err := os.UserHomeDir()
if err != nil || home == "" {
fmt.Fprintf(os.Stderr, "warning: unable to determine home directory: %v\n", err)
+152 -8
View File
@@ -38,6 +38,7 @@ const (
type Client struct {
BaseURL string
HTTPClient *http.Client
Headers map[string]string
}
type ListResponse struct {
@@ -48,6 +49,26 @@ type ListResponse struct {
type ListMetadata struct {
Count int `json:"count"`
NextCursor string `json:"nextCursor"`
// Warnings is populated by the Portal merge service when envelopes are
// dropped (e.g. missing serverDeps, status != active) or when a dangling
// serverDeps / toolOverrides.*.serverOverride reference is detected.
// Old Portals without the field simply leave this nil. CLI side should
// treat any non-empty slice as non-fatal informational output: print to
// stderr so cache refreshes expose Portal drift to the user, but do not
// fail the discovery load.
//
// See plan fix-wukong-discovery-missing-servers Phase 4.2/4.3.
Warnings []ListWarning `json:"warnings,omitempty"`
}
// ListWarning describes one envelope that was filtered out of the merged
// response or flagged for dangling references. Fields mirror the JSON emitted
// by WukongDiscoveryRegistry.buildWarning on the Portal side; unknown reason
// codes are passed through verbatim for forward compatibility.
type ListWarning struct {
ProductID string `json:"productId"`
Reason string `json:"reason"`
Detail string `json:"detail"`
}
type ServerEnvelope struct {
@@ -97,6 +118,37 @@ type CLIOverlay struct {
Tools []CLITool `json:"tools"`
Groups map[string]CLIGroupDef `json:"groups,omitempty"`
ToolOverrides map[string]CLIToolOverride `json:"toolOverrides,omitempty"`
// ServerDeps declares other product IDs that this overlay depends on at
// runtime (e.g. chat depends on bot for cross-server tool routing).
// Consumed by the portal merge service for fail-fast validation; CLI side
// currently only stores the value for tooling/introspection.
ServerDeps []string `json:"serverDeps,omitempty"`
// Hints registers stub sub-commands under the overlay root that only
// print a redirect message pointing to the canonical command path. Used
// for deprecated command aliases and "did-you-mean" style hints.
// Key is the sub-command name; value describes the target path.
Hints map[string]CLIHintDef `json:"hintCommands,omitempty"`
// RedirectTo, when non-empty, turns the entire top-level product into a
// stub that prints "Please use: dws <target>" and performs no work. Used
// for deprecated top-level products migrated to new paths (e.g.
// `bot → chat bot`, `message → chat message`). See schema v3 §2.6.
RedirectTo string `json:"redirectTo,omitempty"`
}
// CLIHintDef declares a stub sub-command that prints a redirect message.
// The command takes no bindings and calls no tool; its sole purpose is to
// help users migrate from an old command path to the new one.
type CLIHintDef struct {
// Target is the canonical command path shown in the redirect message
// (e.g. "dws chat message list").
Target string `json:"target"`
// Description overrides the Short/Long help text for the hint command.
// Empty falls back to a generic "use: <target>" string.
Description string `json:"description,omitempty"`
// Group optionally nests the hint under a named sub-group (same syntax
// as CLIToolOverride.Group with dot-separated paths). Empty means the
// hint is attached directly to the overlay root.
Group string `json:"group,omitempty"`
}
// CLIGroupDef defines a sub-command group within a CLI module.
@@ -104,25 +156,111 @@ type CLIGroupDef struct {
Description string `json:"description"`
}
// CLIOutputFormat declares structured post-processing applied to the MCP tool
// response before the formatter prints it. See schema v3 §2.5.
//
// Apply order: Drop → Rename → Columns. All three are optional.
type CLIOutputFormat struct {
// Rename moves fields from src key to dst key at top level and one level
// of nested objects. Missing src keys are silently ignored.
Rename map[string]string `json:"rename,omitempty"`
// Drop removes these keys from the response (top level + one level deep).
Drop []string `json:"drop,omitempty"`
// Columns controls column order and subset for --format=table. Ignored in
// JSON output mode.
Columns []string `json:"columns,omitempty"`
}
// CLIToolOverride maps an MCP tool to a CLI command with flag aliases and transforms.
type CLIToolOverride struct {
CLIName string `json:"cliName"`
Description string `json:"description,omitempty"`
Group string `json:"group,omitempty"`
IsSensitive bool `json:"isSensitive,omitempty"`
Hidden bool `json:"hidden,omitempty"`
Flags map[string]CLIFlagOverride `json:"flags,omitempty"`
OutputFormat map[string]any `json:"outputFormat,omitempty"`
CLIName string `json:"cliName"`
Description string `json:"description,omitempty"`
// Example, when non-empty, is wired to cobra.Command.Example to render
// the "Examples:" section in --help. Mirrors hardcoded helper commands'
// Example field (e.g. wukong/products/oa.go list-forms). Empty value
// produces no Examples section. Multi-line strings keep "\n" literally.
Example string `json:"example,omitempty"`
Group string `json:"group,omitempty"`
IsSensitive bool `json:"isSensitive,omitempty"`
Hidden bool `json:"hidden,omitempty"`
Flags map[string]CLIFlagOverride `json:"flags,omitempty"`
// OutputFormat declares structured response post-processing. v3 typed form
// supersedes v2's untyped map[string]any, but parsing stays lenient so v2
// envelopes continue to deserialize (unknown keys are ignored).
OutputFormat CLIOutputFormat `json:"outputFormat,omitempty"`
// ServerOverride routes this leaf command's tool invocation to a different
// product's MCP server (e.g. `chat bot ...` leaves live under the `chat`
// command tree but call the `bot` endpoint). Empty means use the enclosing
// overlay's server.
ServerOverride string `json:"serverOverride,omitempty"`
// BodyWrapper, when non-empty, wraps the collected params map under this
// single key before the invocation is dispatched. Useful when the upstream
// tool expects a typed DTO wrapper (e.g. `PersonalTodoCreateVO`). Only
// user-provided params are wrapped; internal control keys starting with
// '_' (e.g. `_blocked`, `_yes`) are preserved at the top level.
BodyWrapper string `json:"bodyWrapper,omitempty"`
// MutuallyExclusive groups flag aliases that must not be set together.
// Each inner slice becomes one cobra.MarkFlagsMutuallyExclusive call.
// Example: [["group","user","open-dingtalk-id"]] for `chat message list`.
MutuallyExclusive [][]string `json:"mutuallyExclusive,omitempty"`
// RequireOneOf groups flag aliases where at least one must be set. Each
// inner slice becomes one cobra.MarkFlagsOneRequired call. Typically
// paired with MutuallyExclusive to enforce "exactly one of".
RequireOneOf [][]string `json:"requireOneOf,omitempty"`
// RedirectTo, when non-empty, turns this entry into a stub command that
// prints the redirect target instead of invoking a tool. All other
// fields (Flags / BodyWrapper / IsSensitive / ServerOverride) are
// ignored. Use for deprecated leaf commands that moved to a new path.
RedirectTo string `json:"redirectTo,omitempty"`
}
// CLIFlagOverride describes how to map an MCP parameter to a CLI flag.
type CLIFlagOverride struct {
Alias string `json:"alias"`
Alias string `json:"alias"`
// Aliases registers additional hidden CLI flag names for the same MCP
// parameter. Use to preserve legacy flag names when migrating from
// hardcoded commands (mirrors cmdutil.ValidateRequiredFlagWithAliases /
// cmdutil.FlagOrFallback). All entries are registered as hidden flags
// (not shown in --help); values are deduped against the primary flag
// name and Alias, and reserved names ("json", "params") are skipped.
// When any alias is set by the user, the binding's Required check is
// satisfied and the value is written to params[Property].
Aliases []string `json:"aliases,omitempty"`
Transform string `json:"transform,omitempty"`
TransformArgs map[string]any `json:"transformArgs,omitempty"`
EnvDefault string `json:"envDefault,omitempty"`
Hidden bool `json:"hidden,omitempty"`
Default string `json:"default,omitempty"`
// Shorthand registers a single-char flag alias (cobra StringP etc.).
Shorthand string `json:"shorthand,omitempty"`
// Required marks this flag as mandatory via cobra.MarkFlagRequired.
// Ignored when Positional is true (positional args have their own arity rules).
Required bool `json:"required,omitempty"`
// Description overrides the usage string displayed in --help; takes
// priority over the Detail API's toolDesc when non-empty.
Description string `json:"description,omitempty"`
// Positional, when true, binds this parameter to a positional CLI argument
// instead of a --flag. PositionalIndex (0-based) selects which arg slot.
Positional bool `json:"positional,omitempty"`
PositionalIndex int `json:"positionalIndex,omitempty"`
// Type explicitly declares the flag's type: "string" (default) / "int" /
// "bool" / "stringSlice". When set, overrides the type inferred from MCP
// tools/list inputSchema. See schema v3 §2.1.
Type string `json:"type,omitempty"`
// OmitWhen declares empty-value handling when building the invocation body:
//
// "empty" (default): empty string / zero-length slice-or-map → omit
// "zero": + zero numbers / false booleans → omit
// "never": always send, even at zero value (explicit-zero semantics)
//
// See schema v3 §2.2.
OmitWhen string `json:"omitWhen,omitempty"`
// RuntimeDefault, when non-empty, injects a runtime-resolved value if the
// user omits the flag. Allowed placeholders: "$currentUserId" / "$unionId"
// / "$corpId" / "$now" / "$today". Unknown placeholders → warning + skip.
// Resolution comes from edition.Hooks.RuntimeDefaults; open-source core
// only recognises the placeholder set. See schema v3 §2.3.
RuntimeDefault string `json:"runtimeDefault,omitempty"`
}
type CLITool struct {
@@ -256,6 +394,9 @@ func (c *Client) FetchServersFromURL(ctx context.Context, fullURL string) (ListR
if err != nil {
return ListResponse{}, apperrors.NewDiscovery("failed to create servers request")
}
for k, v := range c.Headers {
req.Header.Set(k, v)
}
resp, err := c.HTTPClient.Do(req)
if err != nil {
return ListResponse{}, apperrors.NewDiscovery(fmt.Sprintf("servers request failed: %v", err))
@@ -289,6 +430,9 @@ func (c *Client) fetchServersPage(ctx context.Context, limit int, cursor string)
if err != nil {
return ListResponse{}, apperrors.NewDiscovery("failed to create market servers request")
}
for k, v := range c.Headers {
req.Header.Set(k, v)
}
resp, err := c.HTTPClient.Do(req)
if err != nil {
return ListResponse{}, apperrors.NewDiscovery(fmt.Sprintf("market servers request failed: %v", err))
+8 -3
View File
@@ -29,9 +29,10 @@ import (
type Format string
const (
FormatJSON Format = "json"
FormatTable Format = "table"
FormatRaw Format = "raw"
FormatJSON Format = "json"
FormatTable Format = "table"
FormatRaw Format = "raw"
FormatPretty Format = "pretty"
)
var preferredListKeys = []string{"items", "results", "data", "list", "records", "tools", "servers", "products"}
@@ -75,6 +76,8 @@ func Write(w io.Writer, format Format, payload any) error {
return writeRaw(w, payload)
case FormatTable:
return writeTableish(w, payload)
case FormatPretty:
return writePretty(w, payload)
default:
return WriteJSON(w, payload)
}
@@ -123,6 +126,8 @@ func normalizeFormat(raw string, fallback Format) Format {
return FormatRaw
case string(FormatTable):
return FormatTable
case string(FormatPretty):
return FormatPretty
default:
return fallback
}
+302
View File
@@ -0,0 +1,302 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package output
import (
"encoding/json"
"fmt"
"io"
"sort"
"strings"
"github.com/fatih/color"
)
// writePretty renders the payload as ANSI-colored, human-readable text.
// If the payload looks like a `dws schema` response (has `kind: "schema"`),
// a schema-specific hierarchical renderer runs. Anything else falls back
// to the table renderer so `--format pretty` is safe on any command.
func writePretty(w io.Writer, payload any) error {
normalized, err := normalizePayload(payload)
if err != nil {
return err
}
if m, ok := normalized.(map[string]any); ok {
if kind, _ := m["kind"].(string); kind == "schema" {
return writeSchemaPretty(w, m)
}
}
return writeTableish(w, normalized)
}
// writeSchemaPretty handles both the list-all shape (has `products`) and
// the single-tool shape (has `tool`). Colours are on by default via fatih/color,
// auto-disabled when stdout is not a TTY or when NO_COLOR is set.
func writeSchemaPretty(w io.Writer, payload map[string]any) error {
bold := color.New(color.Bold).SprintFunc()
cyan := color.New(color.FgCyan).SprintFunc()
green := color.New(color.FgGreen).SprintFunc()
yellow := color.New(color.FgYellow).SprintFunc()
red := color.New(color.FgRed, color.Bold).SprintFunc()
dim := color.New(color.Faint).SprintFunc()
if tool, ok := payload["tool"].(map[string]any); ok {
return writeSchemaToolPretty(w, payload, tool, bold, cyan, green, yellow, red, dim)
}
if products, ok := payload["products"].([]any); ok {
return writeSchemaListPretty(w, payload, products, bold, cyan, dim)
}
if degraded, _ := payload["degraded"].(bool); degraded {
reason, _ := payload["reason"].(string)
hint, _ := payload["hint"].(string)
fmt.Fprintf(w, "%s discovery degraded: %s\n", red("!"), yellow(reason))
if hint != "" {
fmt.Fprintf(w, " %s %s\n", dim("hint:"), hint)
}
return nil
}
return writeTableish(w, payload)
}
func writeSchemaListPretty(
w io.Writer,
payload map[string]any,
products []any,
bold, cyan, dim func(...any) string,
) error {
count, _ := payload["count"].(float64)
if count == 0 {
count = float64(len(products))
}
fmt.Fprintf(w, "%s %s products discovered\n", bold("Catalog"), cyan(fmt.Sprintf("%d", int(count))))
for _, raw := range products {
p, ok := raw.(map[string]any)
if !ok {
continue
}
id, _ := p["id"].(string)
name, _ := p["name"].(string)
desc, _ := p["description"].(string)
tools, _ := p["tools"].([]any)
fmt.Fprintf(w, "\n%s %s %s\n", bold("▸"), bold(id), dim(name))
if desc != "" && desc != name {
fmt.Fprintf(w, " %s\n", dim(desc))
}
fmt.Fprintf(w, " %s %s\n", dim("tools:"), cyan(fmt.Sprintf("%d", len(tools))))
shown := 0
for _, t := range tools {
tm, ok := t.(map[string]any)
if !ok {
continue
}
rpc, _ := tm["name"].(string)
cli, _ := tm["cli_name"].(string)
if cli == "" || cli == rpc {
fmt.Fprintf(w, " - %s\n", rpc)
} else {
fmt.Fprintf(w, " - %s %s\n", rpc, dim("→ "+cli))
}
shown++
if shown >= 6 && len(tools) > 8 {
fmt.Fprintf(w, " %s\n", dim(fmt.Sprintf("… %d more", len(tools)-shown)))
break
}
}
}
return nil
}
func writeSchemaToolPretty(
w io.Writer,
payload map[string]any,
tool map[string]any,
bold, cyan, green, yellow, red, dim func(...any) string,
) error {
rpc, _ := tool["name"].(string)
cli, _ := tool["cli_name"].(string)
title, _ := tool["title"].(string)
desc, _ := tool["description"].(string)
group, _ := tool["group"].(string)
canonical, _ := tool["canonical_path"].(string)
header := rpc
if title != "" && title != rpc {
header = fmt.Sprintf("%s %s", rpc, dim(title))
}
fmt.Fprintf(w, "%s %s\n", bold("Tool"), header)
var productID string
if product, ok := payload["product"].(map[string]any); ok {
pid, _ := product["id"].(string)
pname, _ := product["name"].(string)
productID = pid
fmt.Fprintf(w, " %s %s %s\n", dim("product:"), pid, dim(pname))
}
if canonical != "" {
fmt.Fprintf(w, " %s %s\n", dim("canonical:"), canonical)
}
if cli != "" {
parts := []string{}
if productID != "" {
parts = append(parts, productID)
}
if group != "" {
parts = append(parts, strings.Split(group, ".")...)
}
parts = append(parts, cli)
fmt.Fprintf(w, " %s %s\n", dim("cli path:"), cyan(strings.Join(parts, " ")))
}
// Sensitivity + annotations in one line.
sensitive, _ := tool["sensitive"].(bool)
if sensitive {
fmt.Fprintf(w, " %s %s\n", dim("sensitive:"), red("yes (needs --yes)"))
}
if ann, ok := tool["annotations"].(map[string]any); ok && len(ann) > 0 {
var parts []string
for _, key := range sortedMapKeys(ann) {
parts = append(parts, fmt.Sprintf("%s=%v", key, ann[key]))
}
fmt.Fprintf(w, " %s %s\n", dim("annotations:"), yellow(strings.Join(parts, " ")))
}
if desc != "" && desc != title {
fmt.Fprintln(w)
for _, line := range strings.Split(strings.TrimSpace(desc), "\n") {
fmt.Fprintf(w, " %s\n", dim(line))
}
}
// Parameters section.
if params, ok := tool["parameters"].(map[string]any); ok && len(params) > 0 {
required := map[string]bool{}
if req, ok := tool["required"].([]any); ok {
for _, r := range req {
if s, ok := r.(string); ok {
required[s] = true
}
}
}
overlay := map[string]map[string]any{}
if ov, ok := tool["flag_overlay"].(map[string]any); ok {
for name, v := range ov {
if m, ok := v.(map[string]any); ok {
overlay[name] = m
}
}
}
fmt.Fprintln(w)
fmt.Fprintf(w, "%s\n", bold("Parameters"))
for _, name := range sortedMapKeys(params) {
prop, _ := params[name].(map[string]any)
writeParamPretty(w, name, prop, required[name], overlay[name],
bold, cyan, green, yellow, red, dim)
}
}
// Output schema, if any.
if out, ok := tool["output_schema"].(map[string]any); ok && len(out) > 0 {
fmt.Fprintln(w)
fmt.Fprintf(w, "%s\n", bold("Output schema"))
b, _ := json.MarshalIndent(out, " ", " ")
fmt.Fprintf(w, " %s\n", string(b))
}
return nil
}
func writeParamPretty(
w io.Writer,
name string,
prop map[string]any,
required bool,
overlay map[string]any,
bold, cyan, green, yellow, red, dim func(...any) string,
) {
typeStr := describeType(prop)
marker := " "
if required {
marker = red("*")
}
alias, _ := overlay["alias"].(string)
line := fmt.Sprintf(" %s %s", marker, bold(name))
if alias != "" && alias != name {
line += fmt.Sprintf(" %s", cyan("--"+alias))
}
line += fmt.Sprintf(" %s", dim(typeStr))
fmt.Fprintln(w, line)
if d, _ := prop["description"].(string); d != "" {
for _, ln := range strings.Split(strings.TrimSpace(d), "\n") {
fmt.Fprintf(w, " %s\n", dim(ln))
}
}
// enum values — render inline.
if enum, ok := prop["enum"].([]any); ok && len(enum) > 0 {
vals := make([]string, 0, len(enum))
for _, v := range enum {
vals = append(vals, fmt.Sprintf("%v", v))
}
fmt.Fprintf(w, " %s %s\n", dim("enum:"), green(strings.Join(vals, ", ")))
}
// overlay — transform / env default / default.
if transform, _ := overlay["transform"].(string); transform != "" {
extras := transform
if args, ok := overlay["transform_args"].(map[string]any); ok && len(args) > 0 {
kvs := make([]string, 0, len(args))
for _, k := range sortedMapKeys(args) {
kvs = append(kvs, fmt.Sprintf("%s=%v", k, args[k]))
}
extras += "(" + strings.Join(kvs, ", ") + ")"
}
fmt.Fprintf(w, " %s %s\n", dim("transform:"), yellow(extras))
}
if env, _ := overlay["env_default"].(string); env != "" {
fmt.Fprintf(w, " %s %s\n", dim("env default:"), green("$"+env))
}
if def, _ := overlay["default"].(string); def != "" {
fmt.Fprintf(w, " %s %s\n", dim("default:"), green(def))
}
}
func describeType(prop map[string]any) string {
t, _ := prop["type"].(string)
if t == "array" {
if items, ok := prop["items"].(map[string]any); ok {
if inner, _ := items["type"].(string); inner != "" {
return inner + "[]"
}
}
return "array"
}
if t == "" {
return "any"
}
return t
}
func sortedMapKeys(m map[string]any) []string {
keys := make([]string, 0, len(m))
for k := range m {
keys = append(keys, k)
}
sort.Strings(keys)
return keys
}
+221
View File
@@ -0,0 +1,221 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package output
import (
"bytes"
"strings"
"testing"
"github.com/fatih/color"
)
// forceNoColor disables ANSI codes for assertion simplicity. fatih/color
// would already do this when writing to a non-TTY, but tests use bytes.Buffer
// so we flip the flag explicitly.
func forceNoColor(t *testing.T) {
t.Helper()
prev := color.NoColor
color.NoColor = true
t.Cleanup(func() { color.NoColor = prev })
}
func TestPretty_SchemaListRendersProducts(t *testing.T) {
forceNoColor(t)
payload := map[string]any{
"kind": "schema",
"count": 2,
"products": []any{
map[string]any{
"id": "ding",
"name": "DING消息",
"description": "DING 消息 / 发送 / 撤回",
"tools": []any{
map[string]any{"name": "send_ding_message", "cli_name": "send"},
map[string]any{"name": "recall_ding_message", "cli_name": "recall"},
},
},
map[string]any{
"id": "doc",
"name": "钉钉文档",
"tools": []any{map[string]any{"name": "create_document", "cli_name": "create"}},
},
},
}
var buf bytes.Buffer
if err := writePretty(&buf, payload); err != nil {
t.Fatalf("writePretty() error = %v", err)
}
out := buf.String()
wants := []string{
"Catalog",
"2 products discovered",
"ding",
"send_ding_message",
"→ send",
"recall_ding_message",
"doc",
"create_document",
}
for _, want := range wants {
if !strings.Contains(out, want) {
t.Errorf("pretty list missing %q; got:\n%s", want, out)
}
}
}
func TestPretty_SchemaToolRendersAllSections(t *testing.T) {
forceNoColor(t)
payload := map[string]any{
"kind": "schema",
"path": "ding.send_ding_message",
"product": map[string]any{
"id": "ding",
"name": "DING消息",
},
"tool": map[string]any{
"name": "send_ding_message",
"cli_name": "send",
"canonical_path": "ding.send_ding_message",
"group": "message",
"title": "发送DING消息",
"description": "使用企业内机器人发送DING消息",
"sensitive": true,
"annotations": map[string]any{
"destructive_hint": true,
},
"parameters": map[string]any{
"robotCode": map[string]any{
"type": "string",
"description": "机器人Code",
},
"receiverUserIdList": map[string]any{
"type": "array",
"items": map[string]any{"type": "string"},
"description": "接收者用户ID列表",
},
"remindType": map[string]any{
"type": "number",
"description": "提醒类型",
},
},
"required": []any{"robotCode", "receiverUserIdList", "remindType"},
"flag_overlay": map[string]any{
"receiverUserIdList": map[string]any{
"alias": "users",
"transform": "csv_to_array",
},
"robotCode": map[string]any{
"alias": "robot-code",
"env_default": "DINGTALK_DING_ROBOT_CODE",
},
"remindType": map[string]any{
"alias": "type",
"transform": "enum_map",
"transform_args": map[string]any{
"app": 1,
"sms": 2,
"call": 3,
"_default": 1,
},
},
},
},
}
var buf bytes.Buffer
if err := writePretty(&buf, payload); err != nil {
t.Fatalf("writePretty() error = %v", err)
}
out := buf.String()
wants := []string{
"Tool send_ding_message", // header
"canonical:", // meta section
"ding.send_ding_message",
"cli path:",
"ding message send",
"sensitive:",
"yes (needs --yes)",
"annotations:",
"destructive_hint=true",
"Parameters",
"robotCode",
"--robot-code", // overlay alias rendered
"env default:",
"$DINGTALK_DING_ROBOT_CODE",
"receiverUserIdList",
"--users",
"transform:",
"csv_to_array",
"string[]", // array<string> shorthand
"remindType",
"--type",
"enum_map(", // with args inlined
"app=1",
}
for _, want := range wants {
if !strings.Contains(out, want) {
t.Errorf("pretty tool missing %q; full output:\n%s", want, out)
}
}
// required params must show the red asterisk marker (even with color disabled
// the literal '*' still appears).
for _, req := range []string{"robotCode", "receiverUserIdList", "remindType"} {
// format: " * <name>"
if !strings.Contains(out, "* "+req) {
t.Errorf("required marker missing for %q", req)
}
}
}
func TestPretty_NonSchemaFallsBackToTableish(t *testing.T) {
forceNoColor(t)
// Payload that doesn't have kind="schema" should fall through to
// the tableish renderer, not error or render a schema header.
payload := map[string]any{"items": []any{
map[string]any{"id": "a", "name": "Alice"},
map[string]any{"id": "b", "name": "Bob"},
}}
var buf bytes.Buffer
if err := writePretty(&buf, payload); err != nil {
t.Fatalf("writePretty() error = %v", err)
}
out := buf.String()
if strings.Contains(out, "Catalog") || strings.Contains(out, "Tool ") {
t.Errorf("pretty wrongly ran schema renderer on non-schema payload:\n%s", out)
}
// tableish should produce header + rows
for _, want := range []string{"id", "name", "Alice", "Bob"} {
if !strings.Contains(out, want) {
t.Errorf("tableish fallback missing %q:\n%s", want, out)
}
}
}
func TestNormalizeFormat_RecognisesPretty(t *testing.T) {
if got := normalizeFormat("pretty", FormatJSON); got != FormatPretty {
t.Errorf("normalizeFormat(pretty) = %q, want %q", got, FormatPretty)
}
if got := normalizeFormat("PRETTY", FormatJSON); got != FormatPretty {
t.Errorf("normalizeFormat(PRETTY) = %q, want %q", got, FormatPretty)
}
}
+228
View File
@@ -0,0 +1,228 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package pat
import (
"encoding/json"
"fmt"
"os"
"path/filepath"
"strings"
"github.com/spf13/cobra"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/helpers"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/output"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
const browserPolicyFile = "pat_policy.json"
type browserPolicyValue struct {
OpenBrowser bool `json:"openBrowser"`
}
type BrowserPolicy struct {
Default *browserPolicyValue `json:"default,omitempty"`
Agents map[string]browserPolicyValue `json:"agents,omitempty"`
}
type BrowserPolicySelection struct {
Scope string `json:"scope"`
AgentCode string `json:"agentCode,omitempty"`
OpenBrowser bool `json:"openBrowser"`
Source string `json:"source"`
}
func patPolicyPath(configDir string) string {
return filepath.Join(configDir, browserPolicyFile)
}
func patConfigDir() string {
if envDir := os.Getenv("DWS_CONFIG_DIR"); envDir != "" {
return envDir
}
if fn := edition.Get().ConfigDir; fn != nil {
return fn()
}
homeDir, err := os.UserHomeDir()
if err != nil {
return ".dws"
}
return filepath.Join(homeDir, ".dws")
}
func LoadBrowserPolicy(configDir string) (*BrowserPolicy, error) {
path := patPolicyPath(configDir)
data, err := os.ReadFile(path)
if err != nil {
if os.IsNotExist(err) {
return &BrowserPolicy{}, nil
}
return nil, fmt.Errorf("reading PAT browser policy: %w", err)
}
var policy BrowserPolicy
if err := json.Unmarshal(data, &policy); err != nil {
return nil, fmt.Errorf("parsing PAT browser policy: %w", err)
}
if policy.Agents == nil {
policy.Agents = map[string]browserPolicyValue{}
}
return &policy, nil
}
func saveBrowserPolicy(configDir string, policy *BrowserPolicy) error {
if policy == nil {
policy = &BrowserPolicy{}
}
if policy.Agents == nil {
policy.Agents = map[string]browserPolicyValue{}
}
data, err := json.MarshalIndent(policy, "", " ")
if err != nil {
return fmt.Errorf("marshaling PAT browser policy: %w", err)
}
data = append(data, '\n')
if err := helpers.AtomicWriteJSON(patPolicyPath(configDir), data); err != nil {
return fmt.Errorf("writing PAT browser policy: %w", err)
}
return nil
}
func ResolveBrowserPolicy(configDir, explicitAgentCode string) (BrowserPolicySelection, error) {
agentCode, err := resolveAgentCode(explicitAgentCode, false)
if err != nil {
return BrowserPolicySelection{}, err
}
policy, err := LoadBrowserPolicy(configDir)
if err != nil {
return BrowserPolicySelection{}, err
}
if agentCode != "" {
if entry, ok := policy.Agents[agentCode]; ok {
return BrowserPolicySelection{
Scope: "agent",
AgentCode: agentCode,
OpenBrowser: entry.OpenBrowser,
Source: "agent",
}, nil
}
}
if policy.Default != nil {
return BrowserPolicySelection{
Scope: "default",
OpenBrowser: policy.Default.OpenBrowser,
Source: "default",
}, nil
}
return BrowserPolicySelection{
Scope: "builtin_default",
AgentCode: agentCode,
OpenBrowser: true,
Source: "builtin_default",
}, nil
}
func EffectiveOpenBrowser(configDir string) bool {
selection, err := ResolveBrowserPolicy(configDir, "")
if err != nil {
return true
}
return selection.OpenBrowser
}
func resolveBrowserPolicyWriteAgentCode(explicitAgentCode string) (string, error) {
agentCode := strings.TrimSpace(explicitAgentCode)
if agentCode == "" {
return "", nil
}
if err := validateAgentCode(agentCode); err != nil {
return "", err
}
return agentCode, nil
}
func SetBrowserPolicy(configDir, explicitAgentCode string, enabled bool) (BrowserPolicySelection, error) {
agentCode, err := resolveBrowserPolicyWriteAgentCode(explicitAgentCode)
if err != nil {
return BrowserPolicySelection{}, err
}
policy, err := LoadBrowserPolicy(configDir)
if err != nil {
return BrowserPolicySelection{}, err
}
if policy.Agents == nil {
policy.Agents = map[string]browserPolicyValue{}
}
if agentCode != "" {
policy.Agents[agentCode] = browserPolicyValue{OpenBrowser: enabled}
if err := saveBrowserPolicy(configDir, policy); err != nil {
return BrowserPolicySelection{}, err
}
return BrowserPolicySelection{
Scope: "agent",
AgentCode: agentCode,
OpenBrowser: enabled,
Source: "agent",
}, nil
}
policy.Default = &browserPolicyValue{OpenBrowser: enabled}
if err := saveBrowserPolicy(configDir, policy); err != nil {
return BrowserPolicySelection{}, err
}
return BrowserPolicySelection{
Scope: "default",
OpenBrowser: enabled,
Source: "default",
}, nil
}
func newBrowserPolicyCommand() *cobra.Command {
cmd := &cobra.Command{
Use: "browser-policy",
Short: "配置 PAT 授权时是否打开浏览器",
DisableAutoGenTag: true,
RunE: func(cmd *cobra.Command, args []string) error {
if !cmd.Flags().Changed("enabled") {
return fmt.Errorf("--enabled is required")
}
enabled, err := cmd.Flags().GetBool("enabled")
if err != nil {
return err
}
agentCode, err := cmd.Flags().GetString("agentCode")
if err != nil {
return err
}
selection, err := SetBrowserPolicy(patConfigDir(), agentCode, enabled)
if err != nil {
return err
}
return output.WriteJSON(cmd.OutOrStdout(), selection)
},
}
cmd.Flags().Bool("enabled", false, "PAT 撞墙时是否允许本地打开浏览器")
cmd.Flags().String("agentCode", "", "Agent 唯一标识(可选;不填则写入全局默认策略,不从 env DINGTALK_DWS_AGENTCODE 回退)")
return cmd
}
+237
View File
@@ -0,0 +1,237 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package pat
import (
"bytes"
"encoding/json"
"testing"
)
func TestBrowserPolicy_DefaultRoundTrip(t *testing.T) {
t.Parallel()
configDir := t.TempDir()
saved, err := SetBrowserPolicy(configDir, "", false)
if err != nil {
t.Fatalf("SetBrowserPolicy(default) error = %v", err)
}
if saved.Scope != "default" {
t.Fatalf("saved.Scope = %q, want default", saved.Scope)
}
if saved.OpenBrowser {
t.Fatal("saved.OpenBrowser = true, want false")
}
loaded, err := ResolveBrowserPolicy(configDir, "")
if err != nil {
t.Fatalf("ResolveBrowserPolicy(default) error = %v", err)
}
if loaded.Scope != "default" {
t.Fatalf("loaded.Scope = %q, want default", loaded.Scope)
}
if loaded.OpenBrowser {
t.Fatal("loaded.OpenBrowser = true, want false")
}
}
func TestSetBrowserPolicy_EmptyAgentCodeIgnoresEnvAndWritesDefault(t *testing.T) {
t.Setenv(agentCodeEnv, "agt-env")
configDir := t.TempDir()
saved, err := SetBrowserPolicy(configDir, "", false)
if err != nil {
t.Fatalf("SetBrowserPolicy(default) error = %v", err)
}
if saved.Scope != "default" {
t.Fatalf("saved.Scope = %q, want default", saved.Scope)
}
if saved.AgentCode != "" {
t.Fatalf("saved.AgentCode = %q, want empty", saved.AgentCode)
}
policy, err := LoadBrowserPolicy(configDir)
if err != nil {
t.Fatalf("LoadBrowserPolicy error = %v", err)
}
if policy.Default == nil {
t.Fatal("policy.Default is nil, want default policy")
}
if got := len(policy.Agents); got != 0 {
t.Fatalf("len(policy.Agents) = %d, want 0", got)
}
loaded, err := ResolveBrowserPolicy(configDir, "")
if err != nil {
t.Fatalf("ResolveBrowserPolicy(default under env) error = %v", err)
}
if loaded.Scope != "default" {
t.Fatalf("loaded.Scope = %q, want default", loaded.Scope)
}
if loaded.AgentCode != "" {
t.Fatalf("loaded.AgentCode = %q, want empty", loaded.AgentCode)
}
if loaded.OpenBrowser {
t.Fatal("loaded.OpenBrowser = true, want false")
}
}
func TestBrowserPolicy_AgentOverridesDefault(t *testing.T) {
t.Parallel()
configDir := t.TempDir()
if _, err := SetBrowserPolicy(configDir, "", true); err != nil {
t.Fatalf("SetBrowserPolicy(default) error = %v", err)
}
if _, err := SetBrowserPolicy(configDir, "agt-sales", false); err != nil {
t.Fatalf("SetBrowserPolicy(agent) error = %v", err)
}
agentLoaded, err := ResolveBrowserPolicy(configDir, "agt-sales")
if err != nil {
t.Fatalf("ResolveBrowserPolicy(agent) error = %v", err)
}
if agentLoaded.Scope != "agent" {
t.Fatalf("agentLoaded.Scope = %q, want agent", agentLoaded.Scope)
}
if agentLoaded.AgentCode != "agt-sales" {
t.Fatalf("agentLoaded.AgentCode = %q, want agt-sales", agentLoaded.AgentCode)
}
if agentLoaded.OpenBrowser {
t.Fatal("agentLoaded.OpenBrowser = true, want false")
}
defaultLoaded, err := ResolveBrowserPolicy(configDir, "agt-other")
if err != nil {
t.Fatalf("ResolveBrowserPolicy(default fallback) error = %v", err)
}
if defaultLoaded.Scope != "default" {
t.Fatalf("defaultLoaded.Scope = %q, want default", defaultLoaded.Scope)
}
if !defaultLoaded.OpenBrowser {
t.Fatal("defaultLoaded.OpenBrowser = false, want true")
}
}
func TestResolveBrowserPolicy_EnvFallback(t *testing.T) {
t.Setenv(agentCodeEnv, "agt-env")
configDir := t.TempDir()
if _, err := SetBrowserPolicy(configDir, "agt-env", false); err != nil {
t.Fatalf("SetBrowserPolicy(agent) error = %v", err)
}
loaded, err := ResolveBrowserPolicy(configDir, "")
if err != nil {
t.Fatalf("ResolveBrowserPolicy(env fallback) error = %v", err)
}
if loaded.Scope != "agent" {
t.Fatalf("loaded.Scope = %q, want agent", loaded.Scope)
}
if loaded.AgentCode != "agt-env" {
t.Fatalf("loaded.AgentCode = %q, want agt-env", loaded.AgentCode)
}
if loaded.OpenBrowser {
t.Fatal("loaded.OpenBrowser = true, want false")
}
}
func TestResolveBrowserPolicy_FallsBackToOpenSourceDefault(t *testing.T) {
t.Parallel()
loaded, err := ResolveBrowserPolicy(t.TempDir(), "")
if err != nil {
t.Fatalf("ResolveBrowserPolicy(fallback) error = %v", err)
}
if loaded.Scope != "builtin_default" {
t.Fatalf("loaded.Scope = %q, want builtin_default", loaded.Scope)
}
if !loaded.OpenBrowser {
t.Fatal("loaded.OpenBrowser = false, want true")
}
}
func TestBrowserPolicyCommand_WritesAgentPolicy(t *testing.T) {
configDir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", configDir)
cmd := newBrowserPolicyCommand()
var stdout bytes.Buffer
cmd.SetOut(&stdout)
cmd.SetErr(&stdout)
cmd.SetArgs([]string{"--enabled=false", "--agentCode", "agt-command"})
if err := cmd.Execute(); err != nil {
t.Fatalf("browser-policy Execute() error = %v", err)
}
var payload map[string]any
if err := json.Unmarshal(stdout.Bytes(), &payload); err != nil {
t.Fatalf("json.Unmarshal(command output) error = %v\nraw=%s", err, stdout.String())
}
if got, _ := payload["scope"].(string); got != "agent" {
t.Fatalf("scope = %q, want agent", got)
}
if got, _ := payload["agentCode"].(string); got != "agt-command" {
t.Fatalf("agentCode = %q, want agt-command", got)
}
if got, _ := payload["openBrowser"].(bool); got {
t.Fatal("openBrowser = true, want false")
}
loaded, err := ResolveBrowserPolicy(configDir, "agt-command")
if err != nil {
t.Fatalf("ResolveBrowserPolicy(agent) error = %v", err)
}
if loaded.OpenBrowser {
t.Fatal("loaded.OpenBrowser = true, want false")
}
}
func TestBrowserPolicyCommand_NoAgentCodeWritesDefaultEvenWhenEnvSet(t *testing.T) {
configDir := t.TempDir()
t.Setenv("DWS_CONFIG_DIR", configDir)
t.Setenv(agentCodeEnv, "agt-env")
cmd := newBrowserPolicyCommand()
var stdout bytes.Buffer
cmd.SetOut(&stdout)
cmd.SetErr(&stdout)
cmd.SetArgs([]string{"--enabled=false"})
if err := cmd.Execute(); err != nil {
t.Fatalf("browser-policy Execute() error = %v", err)
}
var payload map[string]any
if err := json.Unmarshal(stdout.Bytes(), &payload); err != nil {
t.Fatalf("json.Unmarshal(command output) error = %v\nraw=%s", err, stdout.String())
}
if got, _ := payload["scope"].(string); got != "default" {
t.Fatalf("scope = %q, want default", got)
}
if _, ok := payload["agentCode"]; ok {
t.Fatalf("unexpected agentCode in default policy output: %v", payload["agentCode"])
}
policy, err := LoadBrowserPolicy(configDir)
if err != nil {
t.Fatalf("LoadBrowserPolicy error = %v", err)
}
if policy.Default == nil {
t.Fatal("policy.Default is nil, want default policy")
}
if got := len(policy.Agents); got != 0 {
t.Fatalf("len(policy.Agents) = %d, want 0", got)
}
}
+309 -21
View File
@@ -16,8 +16,11 @@ package pat
import (
"context"
"encoding/json"
stderrors "errors"
"fmt"
"os"
"regexp"
"strings"
"github.com/fatih/color"
"github.com/spf13/cobra"
@@ -26,13 +29,132 @@ import (
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
// resolveSessionIDFromEnv returns the effective session id from environment
// variables. Resolution order:
// 1. DWS_SESSION_ID (primary, stable env name).
// 2. REWIND_SESSION_ID (compatibility alias; kept only so hosts that
// already inject the legacy trace triple keep working without code
// churn).
//
// When both are set to different non-empty values, DWS_SESSION_ID wins
// silently. We deliberately do NOT log either raw session id value or
// any derived fingerprint: this resolver is invoked by `dws pat chmod`
// session grants, and any stderr / ~/.dws/logs capture of those
// identifiers can land verbatim in attached troubleshooting bundles.
// Hosts that need to detect a mismatch between the two env vars must do
// so on the host side before invoking the CLI.
func resolveSessionIDFromEnv() string {
if dws := os.Getenv("DWS_SESSION_ID"); dws != "" {
return dws
}
return os.Getenv("REWIND_SESSION_ID")
}
// agentCodeEnv is the canonical (and only) environment variable name
// used as a per-shell fallback for the --agentCode flag on `dws pat *`
// commands.
//
// Why: agent hosts typically set their business agent code once when
// spawning a long-lived shell / sub-process; requiring `--agentCode` on
// every command in that shell forces the host to rewrite every argv.
// Exposing DINGTALK_DWS_AGENTCODE lets the host export the code once and
// let the CLI resolve it on every pat subcommand. The flag always wins
// when both are set so scripted one-offs remain deterministic.
//
// Namespace note: DWS_AGENTCODE / DINGTALK_AGENTCODE / REWIND_AGENTCODE
// are explicitly NOT consumed. The legacy DWS_AGENTCODE alias was
// hard-removed once the public integration surface landed on
// DINGTALK_DWS_AGENTCODE; hosts must migrate rather than rely on a
// silent fallback.
const agentCodeEnv = "DINGTALK_DWS_AGENTCODE"
// agentCodePattern is the validation regex for any --agentCode value
// resolved from either the flag or the agent-code env var. It matches
// documented agent-code generation schemes (e.g. md5 digests, uuid-like
// ids, short host-assigned slugs) while rejecting shell metacharacters
// and whitespace that would otherwise flow unescaped into an MCP tool
// argument.
var agentCodePattern = regexp.MustCompile(`^[A-Za-z0-9_-]{1,64}$`)
// resolveAgentCodeFromEnv returns the fallback agent code from the
// canonical DINGTALK_DWS_AGENTCODE env var. The second return value
// reports the env name that was consumed (for error attribution); it
// is "" when the env is unset or blank. No legacy aliases are honored.
func resolveAgentCodeFromEnv() (string, string) {
primary := strings.TrimSpace(os.Getenv(agentCodeEnv))
if primary != "" {
return primary, agentCodeEnv
}
return "", ""
}
// validateAgentCode rejects agent codes that would be ambiguous or unsafe
// once spliced into a shell / MCP argv. Allowed character set is
// [A-Za-z0-9_-], length 1..64 — see agentCodePattern above.
func validateAgentCode(code string) error {
if code == "" {
return fmt.Errorf("--agentCode must not be empty")
}
if !agentCodePattern.MatchString(code) {
return fmt.Errorf(
"invalid agentCode %q: must match %s (A-Z, a-z, 0-9, _, -; 1..64 chars)",
code, agentCodePattern.String())
}
return nil
}
// resolveAgentCode implements the canonical two-tier lookup for
// --agentCode:
//
// 1. explicit --agentCode flag value (highest priority; wins over env)
// 2. DINGTALK_DWS_AGENTCODE env var (per-shell primary fallback)
// 3. empty ("") when required=false; typed error when required=true.
//
// Any non-empty resolved value is validated via validateAgentCode, so
// callers never have to re-validate.
func resolveAgentCode(flagVal string, required bool) (string, error) {
code := strings.TrimSpace(flagVal)
envSource := ""
if code == "" {
code, envSource = resolveAgentCodeFromEnv()
}
if code == "" {
if required {
return "", fmt.Errorf(
"flag --agentCode is required (or set env %s)\n hint: dws pat chmod <scope>... --agentCode <id>\n hint: export %s=<id>",
agentCodeEnv, agentCodeEnv)
}
return "", nil
}
if err := validateAgentCode(code); err != nil {
if envSource != "" {
return "", fmt.Errorf("%s env: %w", envSource, err)
}
return "", err
}
return code, nil
}
const (
// patGrantToolName is the English-first wire name for the PAT grant tool.
patGrantToolName = "pat.grant"
// patGrantToolNameLegacyAlias is retained for server builds that still
// expose only the legacy Chinese display name.
patGrantToolNameLegacyAlias = "个人授权"
)
var validGrantTypes = map[string]bool{
"once": true,
"session": true,
"permanent": true,
}
func newChmodCommand(caller edition.ToolCaller) *cobra.Command {
// newChmodCommand builds a fresh `dws pat chmod` cobra.Command wired to
// the supplied ToolCaller. A factory is used (instead of a package-level
// var) so multiple RegisterCommands invocations never share mutable flag /
// RunE state across concurrent tests.
func newChmodCommand(c edition.ToolCaller) *cobra.Command {
chmodCmd := &cobra.Command{
Use: "chmod <scope>...",
Short: "授予指定权限",
@@ -50,9 +172,10 @@ grantType 规则:
dws pat chmod chat.message:list --grant-type once --agentCode agt-xxxx
dws pat chmod aitable.record:read aitable.record:write --agentCode agt-xxxx --grant-type permanent`,
RunE: func(cmd *cobra.Command, args []string) error {
agentCode, _ := cmd.Flags().GetString("agentCode")
if agentCode == "" {
return fmt.Errorf("flag --agentCode is required\n hint: dws pat chmod <scope>... --agentCode <id>")
flagVal, _ := cmd.Flags().GetString("agentCode")
agentCode, err := resolveAgentCode(flagVal, true)
if err != nil {
return err
}
scopes := args
grantType, _ := cmd.Flags().GetString("grant-type")
@@ -62,14 +185,14 @@ grantType 规则:
return fmt.Errorf("invalid --grant-type %q, must be one of: once, session, permanent", grantType)
}
if grantType == "session" && sessionID == "" && os.Getenv("DWS_SESSION_ID") == "" {
if grantType == "session" && sessionID == "" && resolveSessionIDFromEnv() == "" {
return fmt.Errorf("--session-id is required when --grant-type is session\n hint: dws pat chmod <scope> --agentCode <id> --grant-type session --session-id <id>")
}
if caller != nil && caller.DryRun() {
if c != nil && c.DryRun() {
bold := color.New(color.FgYellow, color.Bold)
bold.Println("[DRY-RUN] Preview only, not executed:")
fmt.Printf("%-16s%s\n", "Tool:", "个人授权")
fmt.Printf("%-16s%s\n", "Tool:", patGrantToolName)
fmt.Printf("%-16s%s\n", "AgentCode:", agentCode)
fmt.Printf("%-16s%v\n", "Scope:", scopes)
fmt.Printf("%-16s%s\n", "GrantType:", grantType)
@@ -79,24 +202,35 @@ grantType 规则:
return nil
}
if caller == nil {
if c == nil {
return fmt.Errorf("internal error: tool runtime not initialized")
}
if sessionID == "" {
sessionID = resolveSessionIDFromEnv()
}
toolArgs := map[string]any{
"agentCode": agentCode,
"scope": scopes,
"scopes": scopes,
"grantType": grantType,
}
if sessionID == "" {
sessionID = os.Getenv("DWS_SESSION_ID")
}
if sessionID != "" {
toolArgs["sessionId"] = sessionID
}
// Legacy server schema accepted singular "scope"; clone the
// canonical argv and rename the key so the two payloads stay
// in lock-step on every other field.
legacyToolArgs := make(map[string]any, len(toolArgs))
for k, v := range toolArgs {
if k == "scopes" {
legacyToolArgs["scope"] = v
continue
}
legacyToolArgs[k] = v
}
ctx := context.Background()
result, err := caller.CallTool(ctx, "pat", "个人授权", toolArgs)
result, err := callPATToolWithLegacyFallback(ctx, c, "pat", patGrantToolName, patGrantToolNameLegacyAlias, toolArgs, legacyToolArgs)
if err != nil {
return fmt.Errorf("pat chmod failed: %w", err)
}
@@ -105,14 +239,172 @@ grantType 规则:
},
}
chmodCmd.Flags().String("agentCode", "", "Agent 唯一标识(必填)")
_ = chmodCmd.MarkFlagRequired("agentCode")
// --agentCode is required, but we deliberately do NOT call
// MarkFlagRequired here. The agent code may also come from the
// DINGTALK_DWS_AGENTCODE env var; cobra's MarkFlagRequired would
// refuse to run before our resolver has a chance to consume the env.
chmodCmd.Flags().String("agentCode", "",
"Agent 唯一标识(必填;亦可通过 env DINGTALK_DWS_AGENTCODE 注入,flag 优先)")
chmodCmd.Flags().String("grant-type", "session", "授权策略: once|session|permanent")
chmodCmd.Flags().String("session-id", "", "会话标识(session 模式下必填)")
return chmodCmd
}
// callPATToolWithLegacyFallback invokes the canonical PAT grant tool first,
// then silently retries the legacy Chinese alias when the server has not
// registered the canonical tool yet. The retry intentionally emits no stderr
// banner because host-owned PAT callers parse stderr as machine JSON.
func callPATToolWithLegacyFallback(ctx context.Context, c edition.ToolCaller, productID, toolName, legacyAlias string, toolArgs, legacyArgs map[string]any) (*edition.ToolResult, error) {
if c == nil {
return nil, fmt.Errorf("internal error: tool runtime not initialized")
}
result, err := c.CallTool(ctx, productID, toolName, toolArgs)
if err == nil {
return result, nil
}
if legacyAlias == "" {
return nil, err
}
if !isToolNotRegisteredError(err) && !isLegacyGrantSchemaMismatchError(err, toolArgs, legacyArgs) {
return nil, err
}
return c.CallTool(ctx, productID, legacyAlias, legacyArgs)
}
func isEmptyToolResult(result *edition.ToolResult) bool {
if result == nil || len(result.Content) == 0 {
return true
}
for _, block := range result.Content {
if block.Type == "text" && strings.TrimSpace(block.Text) != "" {
return false
}
}
return true
}
// isToolNotRegisteredError reports whether err looks like a server-side
// tool-not-registered / tool-not-found classification. We match on a few
// conservative substrings rather than a structured error type because the
// upstream runner surfaces the server message as plain text.
func isToolNotRegisteredError(err error) bool {
if err == nil {
return false
}
msg := normalizedPATErrorText(err)
needles := []string{
"tool_not_found",
"mcp_tool_not_found",
"tool not found",
"tool not registered",
"tool not exist",
"tool does not exist",
"unknown tool",
"no such tool",
"未找到指定工具",
"未找到工具",
"工具不存在",
}
for _, needle := range needles {
if strings.Contains(msg, needle) {
return true
}
}
return false
}
func isLegacyGrantSchemaMismatchError(err error, toolArgs, legacyArgs map[string]any) bool {
if err == nil || !hasScopeKeyShapeMismatch(toolArgs, legacyArgs) {
return false
}
if apperrors.IsPATError(err) {
return false
}
msg := normalizedPATErrorText(err)
if containsAny(msg,
"pat_no_permission",
"pat_low_risk_no_permission",
"pat_medium_risk_no_permission",
"pat_high_risk_no_permission",
"pat_scope_auth_required",
"agent_code_not_exists",
"requiredscopes",
"missingscope",
"missing_scope",
"insufficient_scope",
) {
return false
}
if !containsAny(msg, "scope", "scopes") {
return false
}
if !containsAny(msg,
"param_error",
"参数错误",
"parameter",
"validation",
"required",
"missing",
"unknown",
"unexpected",
"invalid",
"unmarshal",
) {
return false
}
if containsAny(msg,
"permission denied",
"no permission",
"forbidden",
"unauthorized",
"auth required",
"无权限",
"未授权",
"pat_medium_risk_no_permission",
) {
return false
}
return true
}
func hasScopeKeyShapeMismatch(toolArgs, legacyArgs map[string]any) bool {
if toolArgs == nil || legacyArgs == nil {
return false
}
_, hasCanonicalPlural := toolArgs["scopes"]
_, hasCanonicalSingular := toolArgs["scope"]
_, hasLegacyPlural := legacyArgs["scopes"]
_, hasLegacySingular := legacyArgs["scope"]
return hasCanonicalPlural && !hasCanonicalSingular && hasLegacySingular && !hasLegacyPlural
}
func normalizedPATErrorText(err error) string {
if err == nil {
return ""
}
parts := []string{strings.ToLower(err.Error())}
var typed *apperrors.Error
if stderrors.As(err, &typed) && typed != nil {
parts = append(parts,
strings.ToLower(typed.Reason),
strings.ToLower(typed.ServerDiag.ServerErrorCode),
strings.ToLower(typed.ServerDiag.TechnicalDetail),
strings.ToLower(typed.Hint),
)
}
return strings.Join(parts, " ")
}
func containsAny(msg string, needles ...string) bool {
for _, needle := range needles {
if strings.Contains(msg, needle) {
return true
}
}
return false
}
// handleToolResult processes a ToolResult and writes output to stdout.
func handleToolResult(result *edition.ToolResult) error {
if result == nil {
@@ -128,10 +420,6 @@ func handleToolResult(result *edition.ToolResult) error {
fmt.Println(c.Text)
return nil
}
data, err := json.MarshalIndent(result, "", " ")
if err != nil {
return fmt.Errorf("failed to marshal result: %w", err)
}
fmt.Println(string(data))
return nil
data, _ := json.Marshal(result)
return fmt.Errorf("empty PAT authorization result: %s", string(data))
}
+613
View File
@@ -0,0 +1,613 @@
// Copyright 2026 Alibaba Group
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package pat
import (
"context"
"errors"
"strings"
"sync"
"testing"
"github.com/spf13/cobra"
apperrors "github.com/DingTalk-Real-AI/dingtalk-workspace-cli/internal/errors"
"github.com/DingTalk-Real-AI/dingtalk-workspace-cli/pkg/edition"
)
// fakeToolCaller captures the toolArgs passed to CallTool so tests can
// assert how the two-tier --agentCode / DINGTALK_DWS_AGENTCODE / error
// resolver feeds into the outgoing MCP argv.
type fakeToolCaller struct {
mu sync.Mutex
dryRun bool
gotTool string
gotArgs map[string]any
callN int
resultOK bool
}
func (f *fakeToolCaller) CallTool(_ context.Context, _ string, toolName string, args map[string]any) (*edition.ToolResult, error) {
f.mu.Lock()
defer f.mu.Unlock()
f.callN++
f.gotTool = toolName
// defensive copy — RunE / runApply may mutate the map after return
f.gotArgs = make(map[string]any, len(args))
for k, v := range args {
f.gotArgs[k] = v
}
// Empty success payload keeps handleToolResult / emitApplyResult happy
// without triggering PAT classification in errors.ClassifyMCPResponseText.
if f.resultOK {
return &edition.ToolResult{Content: []edition.ContentBlock{{Type: "text", Text: `{"success":true,"data":{}}`}}}, nil
}
return &edition.ToolResult{Content: []edition.ContentBlock{{Type: "text", Text: `{"success":true,"data":{"authRequestId":"req-ok"}}`}}}, nil
}
func (f *fakeToolCaller) Format() string { return "json" }
func (f *fakeToolCaller) DryRun() bool { return f.dryRun }
type recordedToolCall struct {
tool string
args map[string]any
}
type fallbackToolCaller struct {
calls []recordedToolCall
}
func (f *fallbackToolCaller) CallTool(_ context.Context, _ string, toolName string, args map[string]any) (*edition.ToolResult, error) {
copied := make(map[string]any, len(args))
for k, v := range args {
copied[k] = v
}
f.calls = append(f.calls, recordedToolCall{tool: toolName, args: copied})
if len(f.calls) == 1 {
return &edition.ToolResult{}, nil
}
return &edition.ToolResult{Content: []edition.ContentBlock{{Type: "text", Text: `{"success":true,"data":{"authRequestId":"req-ok"}}`}}}, nil
}
func (f *fallbackToolCaller) Format() string { return "json" }
func (f *fallbackToolCaller) DryRun() bool { return false }
type fallbackErrorToolCaller struct {
calls []recordedToolCall
}
func (f *fallbackErrorToolCaller) CallTool(_ context.Context, _ string, toolName string, args map[string]any) (*edition.ToolResult, error) {
copied := make(map[string]any, len(args))
for k, v := range args {
copied[k] = v
}
f.calls = append(f.calls, recordedToolCall{tool: toolName, args: copied})
if len(f.calls) == 1 {
return nil, errors.New("pat chmod failed: business error: PARAM_ERROR - 未找到指定工具")
}
return &edition.ToolResult{Content: []edition.ContentBlock{{Type: "text", Text: `{"success":true,"data":{"authRequestId":"req-ok"}}`}}}, nil
}
func (f *fallbackErrorToolCaller) Format() string { return "json" }
func (f *fallbackErrorToolCaller) DryRun() bool { return false }
type fallbackSchemaMismatchToolCaller struct {
calls []recordedToolCall
}
func (f *fallbackSchemaMismatchToolCaller) CallTool(_ context.Context, _ string, toolName string, args map[string]any) (*edition.ToolResult, error) {
copied := make(map[string]any, len(args))
for k, v := range args {
copied[k] = v
}
f.calls = append(f.calls, recordedToolCall{tool: toolName, args: copied})
if len(f.calls) == 1 {
return nil, apperrors.NewAPI("business error: success=false",
apperrors.WithReason("business_error"),
apperrors.WithServerDiag(apperrors.ServerDiagnostics{
ServerErrorCode: "PARAM_ERROR",
TechnicalDetail: `input schema validation failed: unknown field "scopes"; missing required field "scope"`,
}),
)
}
return &edition.ToolResult{Content: []edition.ContentBlock{{Type: "text", Text: `{"success":true,"data":{"authRequestId":"req-ok"}}`}}}, nil
}
func (f *fallbackSchemaMismatchToolCaller) Format() string { return "json" }
func (f *fallbackSchemaMismatchToolCaller) DryRun() bool { return false }
type fallbackPermissionDeniedToolCaller struct {
calls []recordedToolCall
}
func (f *fallbackPermissionDeniedToolCaller) CallTool(_ context.Context, _ string, toolName string, args map[string]any) (*edition.ToolResult, error) {
copied := make(map[string]any, len(args))
for k, v := range args {
copied[k] = v
}
f.calls = append(f.calls, recordedToolCall{tool: toolName, args: copied})
return nil, apperrors.NewAPI("business error: success=false",
apperrors.WithReason("business_error"),
apperrors.WithServerDiag(apperrors.ServerDiagnostics{
ServerErrorCode: "PAT_MEDIUM_RISK_NO_PERMISSION",
TechnicalDetail: "permission denied for scope chat.message:send",
}),
)
}
func (f *fallbackPermissionDeniedToolCaller) Format() string { return "json" }
func (f *fallbackPermissionDeniedToolCaller) DryRun() bool { return false }
type fallbackPATErrorToolCaller struct {
calls []recordedToolCall
}
func (f *fallbackPATErrorToolCaller) CallTool(_ context.Context, _ string, toolName string, args map[string]any) (*edition.ToolResult, error) {
copied := make(map[string]any, len(args))
for k, v := range args {
copied[k] = v
}
f.calls = append(f.calls, recordedToolCall{tool: toolName, args: copied})
return nil, &apperrors.PATError{RawJSON: `{"success":false,"code":"PAT_SCOPE_AUTH_REQUIRED","data":{"missingScope":"mail:send"}}`}
}
func (f *fallbackPATErrorToolCaller) Format() string { return "json" }
func (f *fallbackPATErrorToolCaller) DryRun() bool { return false }
type fallbackPATContractErrorToolCaller struct {
calls []recordedToolCall
}
func (f *fallbackPATContractErrorToolCaller) CallTool(_ context.Context, _ string, toolName string, args map[string]any) (*edition.ToolResult, error) {
copied := make(map[string]any, len(args))
for k, v := range args {
copied[k] = v
}
f.calls = append(f.calls, recordedToolCall{tool: toolName, args: copied})
return nil, apperrors.NewAPI("business error: success=false",
apperrors.WithReason("business_error"),
apperrors.WithServerDiag(apperrors.ServerDiagnostics{
ServerErrorCode: "PAT_SCOPE_AUTH_REQUIRED",
TechnicalDetail: `missingScope mail:send`,
}),
)
}
func (f *fallbackPATContractErrorToolCaller) Format() string { return "json" }
func (f *fallbackPATContractErrorToolCaller) DryRun() bool { return false }
func stringSliceArgEqual(got any, want []string) bool {
gotSlice, ok := got.([]string)
if !ok || len(gotSlice) != len(want) {
return false
}
for i := range want {
if gotSlice[i] != want[i] {
return false
}
}
return true
}
// buildChmod returns a freshly constructed chmod cobra.Command wired to
// fake. Using the factory (instead of a package-level var) keeps every
// subtest hermetic and matches the upstream shared-state fix in PR #129.
func buildChmod(t *testing.T, fake *fakeToolCaller) *cobra.Command {
t.Helper()
return newChmodCommand(fake)
}
// ---------------------------------------------------------------------------
// T1 · Agent-code env fallback tests
// ---------------------------------------------------------------------------
// TestChmod_agentCode_env_fallback verifies that when --agentCode is
// omitted but DINGTALK_DWS_AGENTCODE is exported, the resolver picks
// the env value up and forwards it verbatim in the MCP argv.
func TestChmod_agentCode_env_fallback(t *testing.T) {
t.Setenv(agentCodeEnv, "qoderwork")
fake := &fakeToolCaller{resultOK: true}
cmd := buildChmod(t, fake)
// grant-type=once → no session-id needed; keeps the test hermetic.
_ = cmd.Flags().Set("grant-type", "once")
if err := cmd.RunE(cmd, []string{"aitable.record:read"}); err != nil {
t.Fatalf("chmod RunE error = %v (must not report flag missing)", err)
}
if got := fake.gotArgs["agentCode"]; got != "qoderwork" {
t.Fatalf("agentCode in argv = %v, want %q (env fallback)", got, "qoderwork")
}
if got := fake.gotArgs["scopes"]; !stringSliceArgEqual(got, []string{"aitable.record:read"}) {
t.Fatalf("scopes in argv = %#v, want %#v", got, []string{"aitable.record:read"})
}
if _, ok := fake.gotArgs["scope"]; ok {
t.Fatalf("unexpected legacy singular scope arg in argv: %#v", fake.gotArgs)
}
}
func TestCallPATToolWithLegacyFallback_emptyCanonicalResultDoesNotRetryLegacyAlias(t *testing.T) {
fake := &fallbackToolCaller{}
canonicalArgs := map[string]any{
"agentCode": "qoderwork",
"scopes": []string{"aitable.record:read"},
"grantType": "permanent",
}
legacyArgs := map[string]any{
"agentCode": "qoderwork",
"scope": []string{"aitable.record:read"},
"grantType": "permanent",
}
result, err := callPATToolWithLegacyFallback(context.Background(), fake, "pat", patGrantToolName, patGrantToolNameLegacyAlias, canonicalArgs, legacyArgs)
if err != nil {
t.Fatalf("callPATToolWithLegacyFallback error = %v", err)
}
if !isEmptyToolResult(result) {
t.Fatalf("expected original empty canonical result, got %#v", result)
}
if len(fake.calls) != 1 {
t.Fatalf("CallTool call count = %d, want 1", len(fake.calls))
}
if fake.calls[0].tool != patGrantToolName {
t.Fatalf("first tool = %q, want %q", fake.calls[0].tool, patGrantToolName)
}
if _, ok := fake.calls[0].args["scopes"]; !ok {
t.Fatalf("canonical args missing scopes: %#v", fake.calls[0].args)
}
if _, ok := fake.calls[0].args["scope"]; ok {
t.Fatalf("canonical args should not use legacy scope: %#v", fake.calls[0].args)
}
}
func TestChmod_emptyCanonicalResultReturnsError(t *testing.T) {
fake := &fallbackToolCaller{}
cmd := newChmodCommand(fake)
_ = cmd.Flags().Set("agentCode", "qoderwork")
_ = cmd.Flags().Set("grant-type", "permanent")
err := cmd.RunE(cmd, []string{"aitable.record:read"})
if err == nil {
t.Fatal("chmod RunE error = nil, want empty PAT authorization result")
}
if !strings.Contains(err.Error(), "empty PAT authorization result") {
t.Fatalf("chmod RunE error = %q, want empty PAT authorization result", err.Error())
}
if len(fake.calls) != 1 {
t.Fatalf("CallTool call count = %d, want 1", len(fake.calls))
}
if fake.calls[0].tool != patGrantToolName {
t.Fatalf("first tool = %q, want %q", fake.calls[0].tool, patGrantToolName)
}
}
func TestCallPATToolWithLegacyFallback_toolNotFoundRetriesLegacyAlias(t *testing.T) {
fake := &fallbackErrorToolCaller{}
canonicalArgs := map[string]any{
"agentCode": "qoderwork",
"scopes": []string{"aitable.record:read"},
"grantType": "permanent",
}
legacyArgs := map[string]any{
"agentCode": "qoderwork",
"scope": []string{"aitable.record:read"},
"grantType": "permanent",
}
result, err := callPATToolWithLegacyFallback(context.Background(), fake, "pat", patGrantToolName, patGrantToolNameLegacyAlias, canonicalArgs, legacyArgs)
if err != nil {
t.Fatalf("callPATToolWithLegacyFallback error = %v", err)
}
if isEmptyToolResult(result) {
t.Fatalf("fallback result is empty: %#v", result)
}
if len(fake.calls) != 2 {
t.Fatalf("CallTool call count = %d, want 2", len(fake.calls))
}
if fake.calls[0].tool != patGrantToolName {
t.Fatalf("first tool = %q, want %q", fake.calls[0].tool, patGrantToolName)
}
if fake.calls[1].tool != patGrantToolNameLegacyAlias {
t.Fatalf("fallback tool = %q, want %q", fake.calls[1].tool, patGrantToolNameLegacyAlias)
}
if _, ok := fake.calls[1].args["scope"]; !ok {
t.Fatalf("legacy args missing scope: %#v", fake.calls[1].args)
}
if _, ok := fake.calls[1].args["scopes"]; ok {
t.Fatalf("legacy args should not use canonical scopes: %#v", fake.calls[1].args)
}
}
func TestCallPATToolWithLegacyFallback_schemaMismatchRetriesLegacyAlias(t *testing.T) {
fake := &fallbackSchemaMismatchToolCaller{}
canonicalArgs := map[string]any{
"agentCode": "qoderwork",
"scopes": []string{"aitable.record:read"},
"grantType": "permanent",
}
legacyArgs := map[string]any{
"agentCode": "qoderwork",
"scope": []string{"aitable.record:read"},
"grantType": "permanent",
}
result, err := callPATToolWithLegacyFallback(context.Background(), fake, "pat", patGrantToolName, patGrantToolNameLegacyAlias, canonicalArgs, legacyArgs)
if err != nil {
t.Fatalf("callPATToolWithLegacyFallback error = %v", err)
}
if isEmptyToolResult(result) {
t.Fatalf("fallback result is empty: %#v", result)
}
if len(fake.calls) != 2 {
t.Fatalf("CallTool call count = %d, want 2", len(fake.calls))
}
if fake.calls[0].tool != patGrantToolName {
t.Fatalf("first tool = %q, want %q", fake.calls[0].tool, patGrantToolName)
}
if fake.calls[1].tool != patGrantToolNameLegacyAlias {
t.Fatalf("fallback tool = %q, want %q", fake.calls[1].tool, patGrantToolNameLegacyAlias)
}
if _, ok := fake.calls[1].args["scope"]; !ok {
t.Fatalf("legacy args missing scope: %#v", fake.calls[1].args)
}
}
func TestCallPATToolWithLegacyFallback_permissionDeniedDoesNotRetryLegacyAlias(t *testing.T) {
fake := &fallbackPermissionDeniedToolCaller{}
canonicalArgs := map[string]any{
"agentCode": "qoderwork",
"scopes": []string{"chat.message:send"},
"grantType": "once",
}
legacyArgs := map[string]any{
"agentCode": "qoderwork",
"scope": []string{"chat.message:send"},
"grantType": "once",
}
_, err := callPATToolWithLegacyFallback(context.Background(), fake, "pat", patGrantToolName, patGrantToolNameLegacyAlias, canonicalArgs, legacyArgs)
if err == nil {
t.Fatal("callPATToolWithLegacyFallback error = nil, want original permission denial")
}
var typed *apperrors.Error
if !errors.As(err, &typed) {
t.Fatalf("error type = %T, want *errors.Error", err)
}
if typed.ServerDiag.ServerErrorCode != "PAT_MEDIUM_RISK_NO_PERMISSION" {
t.Fatalf("ServerErrorCode = %q, want PAT_MEDIUM_RISK_NO_PERMISSION", typed.ServerDiag.ServerErrorCode)
}
if len(fake.calls) != 1 {
t.Fatalf("CallTool call count = %d, want 1", len(fake.calls))
}
}
func TestCallPATToolWithLegacyFallback_patErrorDoesNotRetryLegacyAlias(t *testing.T) {
fake := &fallbackPATErrorToolCaller{}
canonicalArgs := map[string]any{
"agentCode": "qoderwork",
"scopes": []string{"mail:send"},
"grantType": "once",
}
legacyArgs := map[string]any{
"agentCode": "qoderwork",
"scope": []string{"mail:send"},
"grantType": "once",
}
_, err := callPATToolWithLegacyFallback(context.Background(), fake, "pat", patGrantToolName, patGrantToolNameLegacyAlias, canonicalArgs, legacyArgs)
if err == nil {
t.Fatal("callPATToolWithLegacyFallback error = nil, want PATError")
}
if !apperrors.IsPATError(err) {
t.Fatalf("expected PATError, got %T", err)
}
if len(fake.calls) != 1 {
t.Fatalf("CallTool call count = %d, want 1", len(fake.calls))
}
}
func TestCallPATToolWithLegacyFallback_patContractErrorDoesNotRetryLegacyAlias(t *testing.T) {
fake := &fallbackPATContractErrorToolCaller{}
canonicalArgs := map[string]any{
"agentCode": "qoderwork",
"scopes": []string{"mail:send"},
"grantType": "once",
}
legacyArgs := map[string]any{
"agentCode": "qoderwork",
"scope": []string{"mail:send"},
"grantType": "once",
}
_, err := callPATToolWithLegacyFallback(context.Background(), fake, "pat", patGrantToolName, patGrantToolNameLegacyAlias, canonicalArgs, legacyArgs)
if err == nil {
t.Fatal("callPATToolWithLegacyFallback error = nil, want original PAT contract error")
}
var typed *apperrors.Error
if !errors.As(err, &typed) {
t.Fatalf("error type = %T, want *errors.Error", err)
}
if typed.ServerDiag.ServerErrorCode != "PAT_SCOPE_AUTH_REQUIRED" {
t.Fatalf("ServerErrorCode = %q, want PAT_SCOPE_AUTH_REQUIRED", typed.ServerDiag.ServerErrorCode)
}
if len(fake.calls) != 1 {
t.Fatalf("CallTool call count = %d, want 1", len(fake.calls))
}
}
func TestIsToolNotRegisteredError_ChineseGatewayMessage(t *testing.T) {
err := errors.New("pat chmod failed: business error: PARAM_ERROR - 未找到指定工具")
if !isToolNotRegisteredError(err) {
t.Fatalf("isToolNotRegisteredError(%q) = false, want true", err.Error())
}
}
func TestIsToolNotRegisteredError_ChineseGatewayDiagnostics(t *testing.T) {
err := apperrors.NewAPI("business error: success=false",
apperrors.WithReason("business_error"),
apperrors.WithServerDiag(apperrors.ServerDiagnostics{
ServerErrorCode: "PARAM_ERROR",
TechnicalDetail: "Tool metadata API error: PARAM_ERROR - 未找到指定工具",
}),
)
if !isToolNotRegisteredError(err) {
t.Fatalf("isToolNotRegisteredError(%q) = false, want true", err.Error())
}
}
func TestHandleToolResult_emptyResultReturnsError(t *testing.T) {
err := handleToolResult(&edition.ToolResult{})
if err == nil {
t.Fatal("handleToolResult error = nil, want empty PAT authorization result error")
}
if !strings.Contains(err.Error(), "empty PAT authorization result") {
t.Fatalf("handleToolResult error = %q, want empty PAT authorization result", err.Error())
}
}
// TestChmod_agentCode_env_invalid verifies that a malformed
// DINGTALK_DWS_AGENTCODE value (whitespace, shell metacharacters) is
// rejected by the regex gate in validateAgentCode before any MCP call
// is attempted.
func TestChmod_agentCode_env_invalid(t *testing.T) {
t.Setenv(agentCodeEnv, "bad value with space!")
fake := &fakeToolCaller{resultOK: true}
cmd := buildChmod(t, fake)
_ = cmd.Flags().Set("grant-type", "once")
err := cmd.RunE(cmd, []string{"aitable.record:read"})
if err == nil {
t.Fatalf("expected validateAgentCode error, got nil")
}
if !strings.Contains(err.Error(), "invalid agentCode") {
t.Fatalf("error = %q, want to mention 'invalid agentCode'", err.Error())
}
if !strings.Contains(err.Error(), agentCodeEnv) {
t.Fatalf("error = %q, want to attribute to %s env", err.Error(), agentCodeEnv)
}
if fake.callN != 0 {
t.Fatalf("CallTool was invoked %d times; validator must short-circuit before MCP", fake.callN)
}
}
// TestChmod_agentCode_flag_wins_over_env verifies the Priority-1 contract
// of resolveAgentCode: when both the flag and the env are set, the flag
// wins and env is silently ignored (no warning needed because the flag is
// the explicit, scripted intent).
func TestChmod_agentCode_flag_wins_over_env(t *testing.T) {
t.Setenv(agentCodeEnv, "envval")
fake := &fakeToolCaller{resultOK: true}
cmd := buildChmod(t, fake)
_ = cmd.Flags().Set("grant-type", "once")
_ = cmd.Flags().Set("agentCode", "flagval")
if err := cmd.RunE(cmd, []string{"aitable.record:read"}); err != nil {
t.Fatalf("chmod RunE error = %v", err)
}
if got := fake.gotArgs["agentCode"]; got != "flagval" {
t.Fatalf("agentCode in argv = %v, want %q (flag must win over env)", got, "flagval")
}
}
// TestChmod_agentCode_legacy_env_not_recognized is a reverse-guard: after
// the SSOT hard-removal of the DWS_AGENTCODE alias, exporting only the
// legacy env MUST NOT satisfy the --agentCode requirement. The command
// is expected to fail with an error that explicitly names the canonical
// DINGTALK_DWS_AGENTCODE env, and MUST NOT mention DWS_AGENTCODE as a
// usable fallback. No MCP call is permitted.
func TestChmod_agentCode_legacy_env_not_recognized(t *testing.T) {
t.Setenv(agentCodeEnv, "")
t.Setenv("DWS_AGENTCODE", "legacyval")
fake := &fakeToolCaller{resultOK: true}
cmd := buildChmod(t, fake)
_ = cmd.Flags().Set("grant-type", "once")
err := cmd.RunE(cmd, []string{"aitable.record:read"})
if err == nil {
t.Fatalf("expected hard error when only legacy DWS_AGENTCODE is set, got nil")
}
if !strings.Contains(err.Error(), "DINGTALK_DWS_AGENTCODE") {
t.Fatalf("error = %q, want to name canonical DINGTALK_DWS_AGENTCODE env", err.Error())
}
// Defensive: the canonical env naturally contains the substring
// "DWS_AGENTCODE" as part of "DINGTALK_DWS_AGENTCODE"; the above
// assertion plus the absence check below precisely guard against
// advertising the legacy alias as usable.
hint := strings.ReplaceAll(err.Error(), "DINGTALK_DWS_AGENTCODE", "")
if strings.Contains(hint, "DWS_AGENTCODE") {
t.Fatalf("error = %q must not advertise DWS_AGENTCODE as usable", err.Error())
}
if fake.callN != 0 {
t.Fatalf("CallTool was invoked %d times; legacy env must not satisfy --agentCode", fake.callN)
}
}
// ---------------------------------------------------------------------------
// validateAgentCode / resolveAgentCodeFromEnv unit tests
// ---------------------------------------------------------------------------
func TestValidateAgentCode(t *testing.T) {
t.Parallel()
cases := []struct {
in string
wantErr bool
}{
{"qoderwork", false},
{"agt-abc123", false},
{"Agt_Xyz-09", false},
{"abcdef0123456789abcdef0123456789abcdef0123456789abcdef0123456789", false}, // 64 chars
{"", true},
{"bad value", true},
{"bad!chars", true},
{"中文不行", true},
{"abcdef0123456789abcdef0123456789abcdef0123456789abcdef0123456789X", true}, // 65
}
for _, tc := range cases {
err := validateAgentCode(tc.in)
if (err != nil) != tc.wantErr {
t.Errorf("validateAgentCode(%q) err=%v, wantErr=%v", tc.in, err, tc.wantErr)
}
}
}
func TestResolveAgentCodeFromEnv(t *testing.T) {
// Not parallel: mutates process env.
// DINGTALK_DWS_AGENTCODE is honoured and trimmed.
t.Setenv(agentCodeEnv, " qoderwork ")
if code, src := resolveAgentCodeFromEnv(); code != "qoderwork" || src != agentCodeEnv {
t.Errorf("resolveAgentCodeFromEnv() = (%q, %q), want (%q, %q)",
code, src, "qoderwork", agentCodeEnv)
}
// Empty primary → ("", "").
t.Setenv(agentCodeEnv, "")
if code, src := resolveAgentCodeFromEnv(); code != "" || src != "" {
t.Errorf("resolveAgentCodeFromEnv() = (%q, %q), want empty", code, src)
}
// Reverse-guard: legacy DWS_AGENTCODE MUST NOT be picked up when the
// canonical env is unset — it was hard-removed as a legacy alias.
t.Setenv(agentCodeEnv, "")
t.Setenv("DWS_AGENTCODE", "legacy")
if code, src := resolveAgentCodeFromEnv(); code != "" || src != "" {
t.Errorf("resolveAgentCodeFromEnv() = (%q, %q), want empty — legacy DWS_AGENTCODE must be ignored",
code, src)
}
}
+28 -1
View File
@@ -30,10 +30,37 @@ func RegisterCommands(root *cobra.Command, c edition.ToolCaller) {
Long: `管理行为授权(PAT)。
命令结构:
dws pat chmod <scope>... 授予指定权限`,
dws pat chmod <scope>... 授予指定权限
dws pat browser-policy 配置 PAT 浏览器打开策略
能力说明:
--format 只控制 PAT 撞墙时的输出形态;当 --format json 时,
CLI 只返回结构化 JSON,不混入非结构化文本。
浏览器是否打开由本地 PAT 策略单独决定,与 json / non-json 独立。
生效时会优先按 DINGTALK_DWS_AGENTCODE 读取 agent 策略,再回退到默认策略。
写入 agent 策略需显式传 --agentCode;不传则写入全局默认策略。
Host-owned PAT 开关:
当且仅当环境变量 DINGTALK_DWS_AGENTCODE 非空时,CLI 命中 PAT
固定以 stderr JSON + exit=4 的 host-owned 形式返回,
由宿主处理全部 UI / 交互 / 回调节奏 / 重试逻辑,
CLI 侧不再拉起任何本地浏览器 / 轮询。
服务端路由标签 claw-type(开源构建硬编码):
开源构建在所有出站 MCP 请求上恒定注入 claw-type: openClaw,
与 DINGTALK_AGENT / 宿主环境解耦,与历史 main 行为一致。
hostControl.clawType 也会回填该值,便于宿主侧审计/路由。
DINGTALK_AGENT(可选,仅供 x-dingtalk-agent 使用):
如设置,将原样注入 HTTP 请求头 x-dingtalk-agent,
便于上游按业务 Agent 名称区分流量。
它不参与 claw-type 派生,也不参与 host-owned PAT 判定。
DWS_CHANNEL 只用于上游 channelCode。`,
RunE: cmdutil.GroupRunE,
}
patCmd.AddCommand(newChmodCommand(c))
patCmd.AddCommand(newBrowserPolicyCommand())
root.AddCommand(patCmd)
}

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