OSV 1.4.0 · github-reviewed · 修改于 2026-09-04 06:23
发布时间
2026-09-04 06:23
GitHub 审查时间
2026-09-04 06:23
NVD 发布时间
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源文件
advisories/github-reviewed/2026/09/GHSA-wgwx-479j-23vq/GHSA-wgwx-479j-23vq.json
CVE: This vulnerability corresponds to CVE-2026-72812.
The /api/ref/refreshBacklink endpoint is gated by CheckAuth only. Unlike its mutating siblings, it carries no CheckAdminRole, no CheckReadonly, and no inline reader-role guard so it falls through all three authorization mechanisms the codebase uses to protect write operations. A publish RoleReader or the anonymous account when Publish.Auth.Enable is false can invoke it, forcing the server to flush its pending write-transaction queue, scan all references globally, load and parse referencing trees from disk, and enqueue database writes. This violates the read-only invariant (it writes even in a globally read-only workspace), provides an unauthenticated resource-amplification/DoS primitive, and applies no per-object access check to the caller-supplied ID.
Route / auth tier. router.go: Handle("POST", "/api/ref/refreshBacklink", model.CheckAuth, refreshBacklink), CheckAuth only. CheckAuth admits RoleReader; the publish proxy forwards port-6808 traffic with a Reader JWT (anonymous account when publish auth is disabled). Anonymous/reader reachable.
Guard fall-through. SiYuan protects write handlers with one of three mechanisms: route-level CheckAdminRole (AV/riff/repo/sync/setting/snippet/notebook mutations), route-level CheckReadonly (filetree/block/attr/tag mutations), or an inline IsReadOnlyRoleContext check (e.g. updateEmbedBlock, updateRecentDoc*Time). refreshBacklink has none of the three.
Write path reached. refreshBacklink calls model.RefreshBacklink(id):
FlushTxQueue() — forces the pending write-transaction queue to disk.refreshRefsByDefID(defID) → QueryRefsByDefID(defID) (global scan with encrypted-box fallback loop) → (disk read and Lute parse of every referencing tree) → (enqueues DB writes) → ref-count task update.filesys.LoadTrees(rootIDs)sql.UpdateRefsTreeQueue(tree)The handler also does not consult util.ReadOnly, so it executes its writes even when the workspace is configured globally read-only.
No per-object authorization. defID is attacker-controlled and receives no publish-access or ownership check, so a reader can force a reference reindex of any document, including publish-forbidden/unpublished ones (cross-scope).
Reproduced on a local instance (SiYuan running locally, publish mode enabled on port 6808, publish Basic Auth disabled), as an anonymous reader (no token):
Target endpoint executes the full write path:
POST http://127.0.0.1:6808/api/ref/refreshBacklink
{"id":"<any block id>"}
Returns {"code":0,"msg":"","data":null} HTTP 200 the handler ran to completion, flushing the transaction queue and enqueuing ref writes.
Controls: the guarded mutating siblings correctly reject the same anonymous session:
POST http://127.0.0.1:6808/api/tag/renameTag → 403 (CheckAdminRole and CheckReadonly)
POST http://127.0.0.1:6808/api/block/foldBlock → 403
POST http://127.0.0.1:6808/api/block/updateEmbedBlock → code 0 no-op (inline IsReadOnlyRoleContext blocks the write)
The 200-vs-403 contrast confirms refreshBacklink is reachable and executes where its siblings are blocked.
An anonymous reader (publish mode with auth disabled) or any publish RoleReader can:
id and no rate limiting, a DoS primitive.defID receives no publish-access check, so a reader can force reindexing of documents outside their publish scope. This is an integrity-invariant violation and a resource-amplification vector, not data corruption or injection, the caller cannot control the content of the writes, only trigger them. Impact is integrity-low and availability-low; no confidentiality impact and no attacker-controlled data reaches storage.Apply the same guard its mutating siblings use, add CheckReadonly (and CheckAdminRole if reference refresh is intended to be an authenticated operation) to the route, or an inline IsReadOnlyRoleContext check consistent with updateEmbedBlock. The endpoint should also honor util.ReadOnly and apply a publish-access check to defID so a reader cannot force cross-scope reindexing. More broadly, the three-way guard strategy (route middleware vs. inline check vs. none) is what allowed this handler to receive no gate at all; a structural backstop, a role-scoped route group for the mutation surface would prevent recurrence.