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GHSA-7j72-f6wg-cxw6
CVE: This vulnerability corresponds to CVE-2026-68584.
Summary
SiYuan's publish mode defines a "protected" access level: a document that is publicly listed but requires a password to read (per the product's own UI help text, protected = "Publicly visible, requires password to access"). The password is enforced on the primary content path (getDoc, via FilterContentByPublishAccess).
Several other content-returning endpoints getHeadingChildrenDOM, getHeadingDeleteTransaction/getHeadingLevelTransaction/ getHeadingInsertTransaction, and getBacklinkDoc/getBackmentionDoc return rendered block DOM with no password check at all. Combined with reader-reachable endpoints that leak a protected document's internal block IDs, an anonymous reader can retrieve the full body of a password-protected document without the password. This has been reproduced end-to-end on a live instance.
Details
The password control and where it is enforced. Publish access has five levels encoded in visible/password/disable: public, protected (password), hidden, private (password), forbidden. getDoc correctly enforces the password for protected/private documents via FilterContentByPublishAccess. The bug is that other content endpoints do not.
Content endpoints with no password check (all CheckAuth-only):
getHeadingChildrenDOMreturns rendered DOM of a heading subtree.getHeadingDeleteTransaction/getHeadingLevelTransaction/getHeadingInsertTransactionreturn rendered heading DOM in the computed transaction payload (no mutation occurs on this path).getBacklinkDoc/getBackmentionDocreturn rendered DOM of referencing blocks.
None of these invokes the publish-password check that getDoc applies. Each converts a block ID into full rendered content regardless of the containing document's protected/password status.
The ID-leak that removes the precondition. A protected document is, by design, publicly listed (listDocsByPath filters on visible, and protected documents are visible), so an anonymous reader obtains the document's root ID. The document's internal block/heading IDs are then obtainable from reader-reachable endpoints notably the searchEmbedBlock endpoint (reported separately), whose post-query filter FilterEmbedBlocksByPublishAccess replaces the content string but retains the block ID. So the "filtered" search still yields the protected document's internal heading IDs. (Other reader-reachable endpoints also leak block IDs, the vulnerability does not depend on any single ID source.)
The chain, reproduced on a live instance. Against a real protected document (password set), an anonymous reader on port 6808 with no token and no password:
getDoc(protectedDoc)→ returns the password-required placeholder (correctly blocked).searchEmbedBlockwith a statement selecting heading blocks for the document's root ID → returns the heading IDs (content filtered, IDs retained).getHeadingChildrenDOM(headingId)→ returns the full rendered body of the protected document, including its protected content.
The password gate that step 1 enforces is entirely bypassed by step 3.
Proof of Concept
Reproduced on a local instance (SiYuan running locally, publish mode enabled on port 6808, publish Basic Auth disabled). Setup: a document marked "protected" with password, whose body contains the unique marker TOP_SECRET_CRITICAL_123.
1. Confirm the password gate blocks the primary path (anonymous, port 6808):
POST http://127.0.0.1:6808/api/filetree/getDoc
{"id":"PROTECTED_DOC"}
Returns the password-required placeholder correctly blocked.
2. Leak the protected document's heading ID (anonymous, port 6808):
POST http://127.0.0.1:6808/api/search/searchEmbedBlock
{"stmt":"SELECT * FROM blocks WHERE root_id='PROTECTED_DOC' AND type='h'"}
Returns heading blocks with their IDs; the content field is filtered but the block ID is retained.
3. Retrieve the protected content without the password (anonymous, port 6808):
POST http://127.0.0.1:6808/api/block/getHeadingChildrenDOM
{"id":"HEADING_ID"}
Returns HTTP 200 with the rendered body of the protected document, including TOP_SECRET_CRITICAL_123 retrieved with no token and no password.
getHeadingDeleteTransaction/getHeadingLevelTransaction/getHeadingInsertTransaction and getBacklinkDoc/ getBackmentionDoc provide the same password-free content retrieval given a block ID from the protected document.
Impact
An anonymous reader (publish mode with auth disabled) or any publish RoleReader can read the full content of a password-protected published document without the password, defeating the "protected" access control the product documents as a password gate. The core defect is that these content-returning endpoints perform no publish-password check; the ID-leak endpoints (multiple sources) supply the block IDs that make the bypass reachable anonymously and untargeted. Impact is confidentiality-only (content disclosure); no modification occurs on these paths. Encrypted notebooks are out of scope.
Suggested fix
Apply the publish-password/publish-access check that getDoc uses (FilterContentByPublishAccess/IsReadOnlyRoleContext plus the password-cookie check) to every content-returning endpoint: getHeadingChildrenDOM, the three getHeading*Transaction handlers, and getBacklinkDoc/getBackmentionDoc. Separately, FilterEmbedBlocksByPublishAccess should omit filtered blocks entirely rather than blanking the content while retaining the ID, so that filtered results cannot be used to enumerate a protected document's internal block IDs. The durable fix is to enforce the publish boundary in the shared render/DOM path rather than per-handler, since any content endpoint that omits the check reintroduces this class.
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The vulnerability can be exploited over the network without needing physical access. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The vulnerability can affect other systems as well, not just the initial system. There is a high impact on the confidentiality of the information.
Exploitation activity has been observed. Apply available patches or mitigations urgently.
The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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