chore(deps): update go toolchain directive to v1.27.2 [security] #199

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renovate merged 1 commits from renovate/golang-version-go-vulnerability into master 2026-10-09 01:07:43 +00:00
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This PR contains the following updates:

Package Type Update Change
go (source) toolchain patch 1.27.1 → 1.27.2

Reset context tracking on consecutive template expressions in html/template

CVE-2026-94448 / GO-2026-6599

More information

Details

When a JavaScript template literal contains consecutive expressions, the context tracking state was not properly reset upon entering a new expression.

We now ensure that template-literal expression entries correctly reset context variables so all subsequent regular expression literals are accurately recognized and escaped.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


Recognize yield as regexp preceder keyword in html/template

CVE-2026-97030 / GO-2026-6600

More information

Details

A trusted template author may have previously written a valid template wherein the use of the 'yield' keyword would not be correctly escaped.

We now ensure that valid keyword uses are escaped and non-keyword uses are not escaped.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


HTTP/2 server memory exhaustion due to Trailer headers in net/http

CVE-2026-78659 / GO-2026-6603

More information

Details

When "Trailer" headers are sent by a client, the HTTP server internally uses the header values to populate the Request.Trailer map passed to the server handler. Because Request.Trailer is a map, each entry incurs memory overhead. For HTTP/2 servers, a malicious client can exploit this by sending a "Trailer" header that declares a large number of fields, causing the server to allocate a disproportionate amount of memory while bypassing Server.MaxHeaderValueCount and Server.MaxHeaderBytes limits. This exploit is not applicable for HTTP/1 servers, which do not support multiplexing a large number of requests over one TCP connection, and whose Server.MaxHeaderBytes are calculated differently.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


Root.Mkdir(All) can follow junctions out of the root on Windows in os

CVE-2026-56857 / GO-2026-6604

More information

Details

On Windows, when the target of Root.Mkdir or Root.MkdirAll is a junction pointing to an empty location, the operation can create a directory at the junction target even when that target is located outside the root. This only applies to operations where the last path component is a junction (path/to/junction, but not path/junction/target).

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


HTTP/1 client connection desynchronization after CONNECT rejection in net/http

CVE-2026-56866 / GO-2026-6605

More information

Details

When http.Transport sends an HTTP/1 CONNECT request with a non-empty Request.Body, it writes the body directly to the connection without framing after the request headers. If the server rejects the CONNECT request with a non-2xx keep-alive response, Transport returns the connection to the idle pool. Because CONNECT requests do not have a request body, the server may interpret the trailing body bytes as a subsequent pipelined HTTP/1.1 request on the connection, leaving the pooled connection desynchronized and causing the next caller that reuses it to read the response to the injected request. In reverse proxies (including httputil.ReverseProxy) that forward CONNECT requests through a shared Transport, this can lead to cross-user response poisoning.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


Reject malformed ECH outer extension references in crypto/tls

CVE-2026-97031 / GO-2026-6607

More information

Details

Multiple ECH outer extension references are not permitted under RFC 9849; previously, a client could send a well-crafted packet that could trigger memory exhaustion in the server process by specifying multiple references.

We now reject these as malformed and curb the memory amplification vector as a result.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


Memory limit bypass when parsing MIME headers in net/textproto, mime/multipart

CVE-2026-94440 / GO-2026-6608

More information

Details

Parsing a multipart form can bypass memory limits and read an arbitrarily long line into memory when the remaining limit at the start of a part is less than 400 bytes.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


Lack of limit on size of parsed Range headers in net/http

CVE-2026-78667 / GO-2026-6609

More information

Details

When parsing a Range header containing a large number of small ranges, FileServer(FS), ServeContent, and ServeFile(FS) can consume an excessive amount of CPU.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


HTTP/2 transport accepts malformed framing-related headers in net/http

CVE-2026-78660 / GO-2026-6610

More information

Details

Historically, we have been rather lax about malformed framing-related headers in our HTTP/2 implementation, as they cannot interfere with HTTP/2 framing. However, this makes it possible for our HTTP/2 implementation to forward responses containing such headers to an HTTP/1 client when acting as a reverse proxy. If the HTTP/1 client also does not behave strictly enough, this can result in response smuggling.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


Excessive CPU consumption from repeated initial window changes in net/http

CVE-2026-78669 / GO-2026-6611

More information

Details

A malicious HTTP/2 peer can cause excessive CPU consumption in the client or server by opening a large number of streams and then sending many small SETTINGS frames containing SETTINGS_INITIAL_WINDOW_SIZE values.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


Double flow control refund on HTTP/2 server streams in net/http

CVE-2026-78663 / GO-2026-6612

More information

Details

The HTTP/2 server can refund connection-level flow control twice for the same data: Once when a client resets a stream (refunding data for any sent-but-unread portion of the stream), and again when a request handler reads the buffered data. A malicious client can exploit this to bypass the configured connection-level flow control limit (MaxReceiveBufferPerConnection). Total buffered data is still limited by the concurrent stream limit and stream-level flow control.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


HTTP/1 server connection desynchronization after 2xx CONNECT response in net/http

CVE-2026-94439 / GO-2026-6613

More information

Details

When an HTTP server handler sends a 2xx response to an HTTP/1 CONNECT request and returns without hijacking the connection, the server improperly continues to read and serve requests from the connection. Since a 2xx response to an HTTP/1 CONNECT converts the connection into a tunnel, the server should not treat the connection as continuing to contain HTTP.

The impact of this misbehavior is mostly limited to potential request smuggling, where an intermediate proxy considers the data on the connection to be tunneled and the server considers it to be HTTP.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


HTTP/2 server crash due to HPACK encoder race in net/http

CVE-2026-97032 / GO-2026-6617

More information

Details

HTTP/2 servers could end up crashing due to inadvertently modifying its HPACK encoder concurrently. This happens because the server modifies the HPACK encoder from two goroutines without synchronization: one uses the encoder to encode a HEADERS frame as part of a response sent to a client and the other modifies the encoder's table size when handling a SETTINGS frame containing SETTINGS_HEADER_TABLE_SIZE that a client sends. A malicious client can repeatedly send a request while changing the header table size to crash the server.

Severity

Unknown

References

This data is provided by OSV and the Go Vulnerability Database (CC-BY 4.0).


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This PR contains the following updates: | Package | Type | Update | Change | |---|---|---|---| | [go](https://go.dev/) ([source](https://github.com/golang/go)) | toolchain | patch | `1.27.1` → `1.27.2` | --- ### Reset context tracking on consecutive template expressions in html/template [CVE-2026-94448](https://nvd.nist.gov/vuln/detail/CVE-2026-94448) / [GO-2026-6599](https://pkg.go.dev/vuln/GO-2026-6599) <details> <summary>More information</summary> #### Details When a JavaScript template literal contains consecutive expressions, the context tracking state was not properly reset upon entering a new expression. We now ensure that template-literal expression entries correctly reset context variables so all subsequent regular expression literals are accurately recognized and escaped. #### Severity Unknown #### References - [https://go.dev/cl/839866](https://go.dev/cl/839866) - [https://go.dev/issue/81821](https://go.dev/issue/81821) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6599) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### Recognize yield as regexp preceder keyword in html/template [CVE-2026-97030](https://nvd.nist.gov/vuln/detail/CVE-2026-97030) / [GO-2026-6600](https://pkg.go.dev/vuln/GO-2026-6600) <details> <summary>More information</summary> #### Details A trusted template author may have previously written a valid template wherein the use of the 'yield' keyword would not be correctly escaped. We now ensure that valid keyword uses are escaped and non-keyword uses are not escaped. #### Severity Unknown #### References - [https://go.dev/cl/840925](https://go.dev/cl/840925) - [https://go.dev/issue/81823](https://go.dev/issue/81823) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6600) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### HTTP/2 server memory exhaustion due to Trailer headers in net/http [CVE-2026-78659](https://nvd.nist.gov/vuln/detail/CVE-2026-78659) / [GO-2026-6603](https://pkg.go.dev/vuln/GO-2026-6603) <details> <summary>More information</summary> #### Details When "Trailer" headers are sent by a client, the HTTP server internally uses the header values to populate the Request.Trailer map passed to the server handler. Because Request.Trailer is a map, each entry incurs memory overhead. For HTTP/2 servers, a malicious client can exploit this by sending a "Trailer" header that declares a large number of fields, causing the server to allocate a disproportionate amount of memory while bypassing Server.MaxHeaderValueCount and Server.MaxHeaderBytes limits. This exploit is not applicable for HTTP/1 servers, which do not support multiplexing a large number of requests over one TCP connection, and whose Server.MaxHeaderBytes are calculated differently. #### Severity Unknown #### References - [https://go.dev/cl/847185](https://go.dev/cl/847185) - [https://go.dev/cl/847314](https://go.dev/cl/847314) - [https://go.dev/issue/81857](https://go.dev/issue/81857) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) - [https://groups.google.com/g/golang-announce/c/ZPwCyRUuGBs](https://groups.google.com/g/golang-announce/c/ZPwCyRUuGBs) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6603) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### Root.Mkdir(All) can follow junctions out of the root on Windows in os [CVE-2026-56857](https://nvd.nist.gov/vuln/detail/CVE-2026-56857) / [GO-2026-6604](https://pkg.go.dev/vuln/GO-2026-6604) <details> <summary>More information</summary> #### Details On Windows, when the target of Root.Mkdir or Root.MkdirAll is a junction pointing to an empty location, the operation can create a directory at the junction target even when that target is located outside the root. This only applies to operations where the last path component is a junction (path/to/junction, but not path/junction/target). #### Severity Unknown #### References - [https://go.dev/cl/847305](https://go.dev/cl/847305) - [https://go.dev/issue/81739](https://go.dev/issue/81739) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6604) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### HTTP/1 client connection desynchronization after CONNECT rejection in net/http [CVE-2026-56866](https://nvd.nist.gov/vuln/detail/CVE-2026-56866) / [GO-2026-6605](https://pkg.go.dev/vuln/GO-2026-6605) <details> <summary>More information</summary> #### Details When http.Transport sends an HTTP/1 CONNECT request with a non-empty Request.Body, it writes the body directly to the connection without framing after the request headers. If the server rejects the CONNECT request with a non-2xx keep-alive response, Transport returns the connection to the idle pool. Because CONNECT requests do not have a request body, the server may interpret the trailing body bytes as a subsequent pipelined HTTP/1.1 request on the connection, leaving the pooled connection desynchronized and causing the next caller that reuses it to read the response to the injected request. In reverse proxies (including httputil.ReverseProxy) that forward CONNECT requests through a shared Transport, this can lead to cross-user response poisoning. #### Severity Unknown #### References - [https://go.dev/cl/847306](https://go.dev/cl/847306) - [https://go.dev/issue/81740](https://go.dev/issue/81740) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6605) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### Reject malformed ECH outer extension references in crypto/tls [CVE-2026-97031](https://nvd.nist.gov/vuln/detail/CVE-2026-97031) / [GO-2026-6607](https://pkg.go.dev/vuln/GO-2026-6607) <details> <summary>More information</summary> #### Details Multiple ECH outer extension references are not permitted under RFC 9849; previously, a client could send a well-crafted packet that could trigger memory exhaustion in the server process by specifying multiple references. We now reject these as malformed and curb the memory amplification vector as a result. #### Severity Unknown #### References - [https://go.dev/cl/847312](https://go.dev/cl/847312) - [https://go.dev/issue/81855](https://go.dev/issue/81855) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6607) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### Memory limit bypass when parsing MIME headers in net/textproto, mime/multipart [CVE-2026-94440](https://nvd.nist.gov/vuln/detail/CVE-2026-94440) / [GO-2026-6608](https://pkg.go.dev/vuln/GO-2026-6608) <details> <summary>More information</summary> #### Details Parsing a multipart form can bypass memory limits and read an arbitrarily long line into memory when the remaining limit at the start of a part is less than 400 bytes. #### Severity Unknown #### References - [https://go.dev/cl/847307](https://go.dev/cl/847307) - [https://go.dev/issue/81741](https://go.dev/issue/81741) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6608) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### Lack of limit on size of parsed Range headers in net/http [CVE-2026-78667](https://nvd.nist.gov/vuln/detail/CVE-2026-78667) / [GO-2026-6609](https://pkg.go.dev/vuln/GO-2026-6609) <details> <summary>More information</summary> #### Details When parsing a Range header containing a large number of small ranges, FileServer(FS), ServeContent, and ServeFile(FS) can consume an excessive amount of CPU. #### Severity Unknown #### References - [https://go.dev/cl/847309](https://go.dev/cl/847309) - [https://go.dev/issue/81858](https://go.dev/issue/81858) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6609) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### HTTP/2 transport accepts malformed framing-related headers in net/http [CVE-2026-78660](https://nvd.nist.gov/vuln/detail/CVE-2026-78660) / [GO-2026-6610](https://pkg.go.dev/vuln/GO-2026-6610) <details> <summary>More information</summary> #### Details Historically, we have been rather lax about malformed framing-related headers in our HTTP/2 implementation, as they cannot interfere with HTTP/2 framing. However, this makes it possible for our HTTP/2 implementation to forward responses containing such headers to an HTTP/1 client when acting as a reverse proxy. If the HTTP/1 client also does not behave strictly enough, this can result in response smuggling. #### Severity Unknown #### References - [https://go.dev/cl/835145](https://go.dev/cl/835145) - [https://go.dev/cl/836385](https://go.dev/cl/836385) - [https://go.dev/issue/81115](https://go.dev/issue/81115) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6610) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### Excessive CPU consumption from repeated initial window changes in net/http [CVE-2026-78669](https://nvd.nist.gov/vuln/detail/CVE-2026-78669) / [GO-2026-6611](https://pkg.go.dev/vuln/GO-2026-6611) <details> <summary>More information</summary> #### Details A malicious HTTP/2 peer can cause excessive CPU consumption in the client or server by opening a large number of streams and then sending many small SETTINGS frames containing SETTINGS_INITIAL_WINDOW_SIZE values. #### Severity Unknown #### References - [https://go.dev/cl/847186](https://go.dev/cl/847186) - [https://go.dev/cl/847308](https://go.dev/cl/847308) - [https://go.dev/issue/81742](https://go.dev/issue/81742) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) - [https://groups.google.com/g/golang-announce/c/ZPwCyRUuGBs](https://groups.google.com/g/golang-announce/c/ZPwCyRUuGBs) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6611) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### Double flow control refund on HTTP/2 server streams in net/http [CVE-2026-78663](https://nvd.nist.gov/vuln/detail/CVE-2026-78663) / [GO-2026-6612](https://pkg.go.dev/vuln/GO-2026-6612) <details> <summary>More information</summary> #### Details The HTTP/2 server can refund connection-level flow control twice for the same data: Once when a client resets a stream (refunding data for any sent-but-unread portion of the stream), and again when a request handler reads the buffered data. A malicious client can exploit this to bypass the configured connection-level flow control limit (MaxReceiveBufferPerConnection). Total buffered data is still limited by the concurrent stream limit and stream-level flow control. #### Severity Unknown #### References - [https://go.dev/cl/847187](https://go.dev/cl/847187) - [https://go.dev/cl/847310](https://go.dev/cl/847310) - [https://go.dev/issue/81743](https://go.dev/issue/81743) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) - [https://groups.google.com/g/golang-announce/c/ZPwCyRUuGBs](https://groups.google.com/g/golang-announce/c/ZPwCyRUuGBs) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6612) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### HTTP/1 server connection desynchronization after 2xx CONNECT response in net/http [CVE-2026-94439](https://nvd.nist.gov/vuln/detail/CVE-2026-94439) / [GO-2026-6613](https://pkg.go.dev/vuln/GO-2026-6613) <details> <summary>More information</summary> #### Details When an HTTP server handler sends a 2xx response to an HTTP/1 CONNECT request and returns without hijacking the connection, the server improperly continues to read and serve requests from the connection. Since a 2xx response to an HTTP/1 CONNECT converts the connection into a tunnel, the server should not treat the connection as continuing to contain HTTP. The impact of this misbehavior is mostly limited to potential request smuggling, where an intermediate proxy considers the data on the connection to be tunneled and the server considers it to be HTTP. #### Severity Unknown #### References - [https://go.dev/cl/847311](https://go.dev/cl/847311) - [https://go.dev/issue/81744](https://go.dev/issue/81744) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6613) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### HTTP/2 server crash due to HPACK encoder race in net/http [CVE-2026-97032](https://nvd.nist.gov/vuln/detail/CVE-2026-97032) / [GO-2026-6617](https://pkg.go.dev/vuln/GO-2026-6617) <details> <summary>More information</summary> #### Details HTTP/2 servers could end up crashing due to inadvertently modifying its HPACK encoder concurrently. This happens because the server modifies the HPACK encoder from two goroutines without synchronization: one uses the encoder to encode a HEADERS frame as part of a response sent to a client and the other modifies the encoder's table size when handling a SETTINGS frame containing SETTINGS_HEADER_TABLE_SIZE that a client sends. A malicious client can repeatedly send a request while changing the header table size to crash the server. #### Severity Unknown #### References - [https://go.dev/cl/847188](https://go.dev/cl/847188) - [https://go.dev/cl/847313](https://go.dev/cl/847313) - [https://go.dev/issue/81867](https://go.dev/issue/81867) - [https://groups.google.com/g/golang-announce/c/U2fTuyDJznI](https://groups.google.com/g/golang-announce/c/U2fTuyDJznI) - [https://groups.google.com/g/golang-announce/c/ZPwCyRUuGBs](https://groups.google.com/g/golang-announce/c/ZPwCyRUuGBs) This data is provided by [OSV](https://osv.dev/vulnerability/GO-2026-6617) and the [Go Vulnerability Database](https://github.com/golang/vulndb) ([CC-BY 4.0](https://github.com/golang/vulndb#license)). </details> --- ### Configuration 📅 **Schedule**: (UTC) - Branch creation - At any time (no schedule defined) - Automerge - At any time (no schedule defined) 🚦 **Automerge**: Enabled. ♻ **Rebasing**: Whenever PR is behind base branch, or you tick the rebase/retry checkbox. 🔕 **Ignore**: Close this PR and you won't be reminded about this update again. --- - [ ] <!-- rebase-check -->If you want to rebase/retry this PR, check this box --- This PR has been generated by [Mend Renovate CLI](https://github.com/renovatebot/renovate). <!--renovate-debug:eyJjcmVhdGVkSW5WZXIiOiI0NC4xMzMuMCIsInVwZGF0ZWRJblZlciI6IjQ0LjEzMy4wIiwidGFyZ2V0QnJhbmNoIjoibWFzdGVyIiwibGFiZWxzIjpbXX0=-->
renovate added 1 commit 2026-10-09 01:04:18 +00:00
chore(deps): update go toolchain directive to v1.27.2 [security]
dancefetcher / build (pull_request) Successful in 3m15s
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renovate scheduled this pull request to auto merge when all checks succeed 2026-10-09 01:04:27 +00:00
renovate merged commit a794b16063 into master 2026-10-09 01:07:43 +00:00
renovate deleted branch renovate/golang-version-go-vulnerability 2026-10-09 01:07:44 +00:00
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