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install: let --ca / --cafile replace the config file's CA settings instead of being shadowed by its cafile - #41898

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@robobun

@robobun robobun commented Sep 8, 2026 •

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Problem

  • bun install --ca "$(cat R.crt)" with cafile = "S.crt" in bunfig.toml (or .npmrc) fails with UNABLE_TO_VERIFY_LEAF_SIGNATURE: the CLI certificate is silently ignored, so a CLI flag loses to a config file. The same happens for bunfig ca next to an .npmrc cafile.
  • Cause: every layer overlays ca and cafile per field (overlay_bunfig_install in src/install/PackageManager.rs:1434, Options::load in src/install/PackageManager/PackageManagerOptions.rs:901), both reach the HTTP thread, and the TLS layer uses only cafile when both are set (openssl.c:1351, if (ca_file_name) … else if (ca)).

Fix

  • Treat ca + cafile as one setting at every layer: --ca/--cafile replace both from config, bunfig replaces both from .npmrc, a local bunfig replaces both from the global one, and a project .npmrc replaces both from the user one. Within one layer cafile still wins, and bunfig.mdx / npmrc.mdx now say so.
  • Correct because it is how npm resolves the pair: config levels flatten in priority order and the CA value of the winning level replaces the lower one (@npmcli/config, cafile's flatten assigns over ca). No TLS code changes, so nothing else that builds an SSL_CTX is affected.
  • Verified: test/cli/install/bun-install-registry.test.ts ("--ca replaces a cafile from bunfig", "bunfig ca over .npmrc cafile", "project .npmrc ca over user .npmrc cafile"; all three fail on stock bun with DEPTH_ZERO_SELF_SIGNED_CERT). Also ran the rest of the certificate authority block and test/js/bun/ini/ini.test.ts.

Background

  • bun install builds its CA configuration from four layers, lowest first: user .npmrc, project .npmrc, global then local bunfig.toml, then --ca / --cafile. They all land in one BunInstall struct and then in PackageManager options.
  • The HTTP thread passes both the inline list and the file path to usockets, which loads the file and skips the inline list when a path is present.
Notes

Earlier versions of this PR merged the inline ca and the caFile into one trust list inside us_ssl_ctx_build_raw and made cert+certFile / key+keyFile throw in SSLConfig::from_js. Review pointed out that #40984 removes the path-based loaders from usockets entirely ("hand usockets the bytes"), so a second file loader in that hunk would be thrown away, and that the identity-pair throw is a separate API decision that reaches node:tls option bags. Both were dropped; the runtime tls: { ca, caFile } case is noted on #40984, where the file bytes are read in Rust and the replace-vs-append choice is one line.

An earlier PR body also said npm unions ca and cafile; that was wrong. npm replaces, by level, which is what this change does.


no test proof · iteration 1 · platform-specific test(s) that do not run on this machine, deferring to CI, which covers all platforms: test/cli/install/bun-install-registry.test.ts

us_ssl_ctx_build_raw loaded trust anchors with `if (ca_file_name) ... else
if (ca ...)`, so when both were given the inline `ca` was silently dropped
and never parsed. The same shadowing applied to bun install: a bunfig or
npmrc `cafile` made `--ca` (and bunfig `ca`) a no-op.

Collect the file's certificates and the inline entries into one list and
install them together. An invalid inline `ca` is now rejected even when a
`caFile` is present.

cert+certFile and key+keyFile cannot be merged (one identity per key type),
so SSLConfig.from_js throws instead of serving whichever the builder loads.
@robobun

robobun commented Sep 8, 2026 •

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Updated 8:56 AM PT - Sep 8th, 2026

❌ @robobun, your commit ac2671b has 1 failures in Build #112947 (All Failures):


🧪   To try this PR locally:

bunx bun-pr 41898

That installs a local version of the PR into your bun-41898 executable, so you can run:

bun-41898 --bun

Comment thread src/runtime/socket/SSLConfig.rs Outdated
@coderabbitai

coderabbitai Bot commented Sep 8, 2026 •

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Review Change Stack

Walkthrough

The TLS configuration now combines inline and file-based CA certificates, preserves source-specific errors, rejects empty CA files, and rejects simultaneous inline and file certificate or key options. Tests cover registry installation and HTTP TLS behavior.

Changes

TLS configuration

Layer / File(s) Summary
CA collection helpers
packages/bun-usockets/src/crypto/openssl.c
A shared BIO-based collector validates PEM certificates and collects DER data from inline content and CA files.
Combined CA trust installation
packages/bun-usockets/src/crypto/openssl.c, test/cli/install/bun-install-registry.test.ts
SSL context construction combines caFile and inline ca entries. Registry installation tests verify that --ca works with a configured cafile.
TLS option validation and coverage
src/runtime/socket/SSLConfig.rs, test/js/bun/http/bun-serve-ssl.test.ts
Conflicting key/keyFile and cert/certFile options now throw errors. HTTP TLS tests cover combined CA sources and invalid inline CA content.

Suggested reviewers: jarred-sumner, cirospaciari, dylan-conway

Merge Risk: 🔵 Low · up to 325a5

TLS behavior is covered, but the new parameterized test should use the repository-required test structure before merge.

🚥 Pre-merge checks | ✅ 3 | ❌ 1

❌ Failed checks (1 warning)

Check name Status Explanation Resolution
Description check ⚠️ Warning The description provides detailed problem, fix, background, and verification information, but it does not use the required headings and conflicts with the changeset. It states that no TLS code changes… Update the description to use the required “What does this PR do?” and “How did you verify your code works?” headings. Describe the actual TLS changes, including combined ca and caFile handling, invalid inline CA rejection, and cert/key con…
✅ Passed checks (3 passed)
Check name Status Explanation
Linked Issues check ✅ Passed Check skipped because no linked issues were found for this pull request.
Out of Scope Changes check ✅ Passed Check skipped because no linked issues were found for this pull request.
Title check ✅ Passed The title clearly describes the install CA precedence change. It is specific and related to a significant part of the pull request.
Full details: Description check

Explanation

The description provides detailed problem, fix, background, and verification information, but it does not use the required headings and conflicts with the changeset. It states that no TLS code changes were made, while the pull request changes openssl.c and SSLConfig.rs and adds runtime TLS tests.

Resolution

Update the description to use the required “What does this PR do?” and “How did you verify your code works?” headings. Describe the actual TLS changes, including combined ca and caFile handling, invalid inline CA rejection, and cert/key conflict validation. Remove statements that contradict the changeset, such as “No TLS code changes.”

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🛠️ Fix failing CI checks 💡
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Actionable comments posted: 1

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only still-valid issues, skip the rest with a brief reason, keep changes
minimal, and validate.

Inline comments:
In `@test/js/bun/http/bun-serve-ssl.test.ts`:
- Around line 194-195: Replace the order iteration for the parameterized SSL
trust-list tests with describe.each(["ca first", "caFile first"]), preserving
the existing test body and order-specific behavior.

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📒 Files selected for processing (4)
  • packages/bun-usockets/src/crypto/openssl.c
  • src/runtime/socket/SSLConfig.rs
  • test/cli/install/bun-install-registry.test.ts
  • test/js/bun/http/bun-serve-ssl.test.ts

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Comment thread test/js/bun/http/bun-serve-ssl.test.ts Outdated

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Code review found no issues

No high-confidence issues detected in this change.

@robobun

robobun commented Sep 8, 2026 •

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Status: reproduced on bun 1.4.3: bun install --ca <registry cert> with an unrelated cafile in bunfig.toml fails with DEPTH_ZERO_SELF_SIGNED_CERT because the CLI certificate is ignored. The new test ("--ca replaces a cafile from bunfig" in test/cli/install/bun-install-registry.test.ts) fails on stock bun and passes with this branch.

Self-reviewed: 3 concerns raised, 3 addressed (no new C loader ahead of #40984, no bundled cert/key throw, the npm comparison corrected to replace-by-level). The change is now install config only.

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Code review found no issues

No high-confidence issues detected in this change.

… the C merge

Review: the usockets change added a second path-based CA loader to the
exact hunk that #40984 removes ("hand usockets the bytes"), and the
cert+certFile/key+keyFile throw is a separate API decision reachable from
node:tls option bags. Both are reverted here.

What remains is the bun install precedence bug: a bunfig or .npmrc cafile
shadowed --ca because each layer overlaid ca and cafile per field and the
TLS layer uses only cafile when both are set. Treat the pair as one setting
at every layer: --ca/--cafile replace both from config, a local bunfig
replaces both from the global one, a project .npmrc replaces both from the
user one, and bunfig replaces both from .npmrc. Within one layer cafile
still wins, which is now documented.
Comment thread src/bunfig/bunfig.rs Outdated
Comment thread src/ini/lib.rs Outdated
Comment thread src/install/PackageManager.rs Outdated
Comment thread src/install/PackageManager/PackageManagerOptions.rs Outdated
@robobun robobun changed the title tls: trust ca and caFile together instead of silently dropping the inline ca install: let --ca / --cafile replace the config file's CA settings instead of being shadowed by its cafile Sep 8, 2026
@robobun

robobun commented Sep 8, 2026

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Reworked after review (863efdb):

  • The usockets change is gone. It added a second path-based CA loader to the exact us_ssl_ctx_build_raw hunk that tls: resolve relative file paths at parse time and read them from Rust when the SSL_CTX is built #40984 removes, so it would have been thrown away. The runtime tls: { ca, caFile } case belongs with tls: resolve relative file paths at parse time and read them from Rust when the SSL_CTX is built #40984, where the file is read in Rust and replace-vs-append is one line; noted there.
  • The cert+certFile / key+keyFile throw is gone too. It is a separate API decision and reaches node:tls option bags through the options spread, so it should not ride along here.
  • What remains is the bun install precedence bug, fixed at the config layer: ca + cafile are one setting at every layer (CLI over bunfig over project .npmrc over user .npmrc), so --ca is no longer shadowed by a config file's cafile. Within one layer cafile still wins, now documented in bunfig.mdx and npmrc.mdx. This matches how npm resolves the pair (by level, replace), which an earlier version of this description got wrong.

Title and description are updated to match.

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Nothing blocking. The comments below are optional suggestions. There is no need to push a fix for them before merging.

Comment thread test/cli/install/bun-install-registry.test.ts

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LGTM — thanks for adding the bunfig-over-.npmrc and project-over-user-.npmrc precedence tests.

Checked the four overlay sites treat ca/cafile as one unit and each clears the other when only one is set (CLI empty-string / empty-collect, bunfig None assignment, per-file pre-clear).
Verified the user-.npmrc test path is live: PackageManager.rs reads $XDG_CONFIG_HOME/.npmrc when present, so the fixture is actually consumed.
Tests carry a positive assertion (+ no-deps@) beyond the error-string checks, so they can't pass vacuously.

Extended reasoning...

Overview

This PR fixes a config-precedence bug where --ca on the CLI (or ca in a higher-precedence config layer) was silently shadowed by a lower layer's cafile, because the two fields were overlaid independently and the TLS layer prefers cafile when both are present. The fix treats ca + cafile as a single logical setting at all four overlay points: bunfig.rs (local bunfig over global), ini/lib.rs (project .npmrc over user .npmrc), PackageManager.rs::overlay_bunfig_install (bunfig over .npmrc), and PackageManagerOptions.rs (CLI over config). Docs in npmrc.mdx and bunfig.mdx document the within-layer tie-break and the replace-both semantics.

Security risks

None introduced. The change affects which user-supplied CA bundle is passed to the existing TLS path; it does not weaken verification, add new trust, or touch the OpenSSL context builder. The only behavioral difference is that an explicitly-passed higher-precedence CA now wins instead of losing — which is the less-surprising and safer direction (a CLI flag the user typed is honored rather than silently ignored).

Level of scrutiny

Low-to-medium. Each of the four code hunks is ~5 lines and mechanically identical in intent: "if either is set here, replace both." I traced each to confirm the "clear the other" half is correct — the CLI branch assigns an empty collect / empty string when only one flag is passed, the bunfig-overlay branch assigns None for the absent field, and the two per-file parsers pre-clear both before applying. No overlay! macro entries were left behind for ca/cafile in PackageManager.rs.

Other factors

My previous (optional) inline comment asked for tests pinning the non-CLI overlay sites. The author added a test.each covering bunfig-over-.npmrc and project-.npmrc-over-user-.npmrc; combined with the existing --ca test, three of the four sites are now regression-guarded (only the rare local-bunfig-over-global-bunfig case is untested, which I'd flagged as optional). I confirmed the user-.npmrc fixture is actually read via XDG_CONFIG_HOME per PackageManager.rs:1940-1942, so that test is not vacuous. Tests use port: 0, a local self-signed server, positive stdout assertions before exit code, and match the surrounding file's spawn/drain pattern. No outstanding third-party CHANGES_REQUESTED reviews.

Jarred-Sumner added a commit that referenced this pull request Oct 10, 2026
…ps, WebSocket, SQL) (#44618)

### What does this PR do?

Consolidates the open TLS pull requests into one. Each was reproduced on
`main` and, for `node:*` behavior, on Node v26.3.0 first. About a third
are ported as written, the rest are rewritten smaller or merged into one
fix where several PRs patched the same cause. One commit per fix, so it
can be read commit by commit.

Fixes #43520, fixes #31396, fixes #43635, fixes #37193, fixes #43846,
fixes #17932, fixes #41061, fixes #36887, fixes #31810, fixes #35240,
fixes #32234, fixes #44365, fixes #43807, fixes #42280, fixes #44517.
Addresses #41856 (SNI and `servername`; not `checkServerIdentity` for
SQL), #24845 (the spin is gone, shown with fault injection on Linux; not
run on macOS), #19754 (node-fetch forwards the agent's TLS options; the
Kubernetes client itself was not run).

#### The ones that matter most

| | On `main` | PRs |
|---|---|---|
| Client certificate disclosure | `https.request()` with a client
certificate sends it to a server it then refuses (wrong name,
`checkServerIdentity`, `destroy()` in `'secureConnect'`, `terminate()`
in `handshake`). A server can force it with a junk record behind its
Finished | #43946 |
| False `authorized` | Over a Duplex, `secureConnect` with `authorized
=== true` for a peer that failed the key proof; `secureConnect` for a
plaintext peer with `rejectUnauthorized: false` | #44422, #32929 |
| Cleartext https | `https.createServer()` without a usable key/cert
answers plain HTTP | #41672, #33539 |
| Revoked client certificates | An https mTLS server never sees `crl`,
so a revoked client is `authorized` | #41641 |
| Pooled sockets | Requests with different client certificates or CAs
share an `https.Agent` socket and session | #42498 |
| Silent plaintext | `tls: [...]` given to `Bun.listen` / `Bun.connect`
is plain TCP | #41490 |
| Server weakened by a client knob | `NODE_TLS_REJECT_UNAUTHORIZED=0`
turns off a server's client-certificate enforcement | #35245 |
| Pins never checked | `WebSocket` never calls `tls.checkServerIdentity`
and ignores `tls.serverName` | #41648 |
| `verify-full` dropped | `PGSSLMODE=verify-*` is lost next to a `TLS_*`
URL variable; `tls: true` sends no SNI | #44498 |
| Crashes | use-after-free from `destroy()` in `ALPNCallback` over a
Duplex; `abort()` on a late `setSession()`; SIGABRT in `fetch` with an
https proxy from the environment and a `Bun.file()` body | #44462,
#41671, #44458 |
| Stream corruption | A TLS `write()` can lose 16 KiB it reported as
written while another socket on the loop is stalled | #44529 |
| Hangs and spins | 100% CPU on a failing `send()`; a fatal `SSL_write`
leaves the socket open forever; `idleTimeout` never sheds a TLS client
that ignores `close_notify` | #34510, #38176, #42336 |
| Wrong certificate (regression since 1.3.14) | Connections accepted
before `stop()` / `close()` get the default certificate and skip their
entry's `requestCert` / `ca` | #42355 |
| Quadratic Duplex / proxy tunnel | Reading one chunk over a Duplex,
CPU: 8 MB 0.88 s → 0.14 s, 16 MB 3.18 s → 0.23 s, 32 MB 11.75 s → 0.39
s; `fetch` upload through CONNECT: 1.7 s → 0.18 s (debug build) | #44464
|

#### By area

- **fd engine, write path** (`openssl.c`, `socket.c`): #42352, #34510 +
#38176 + #42336 as one change, #44529, #44458, #44192. A rejected
`send()` ends the write side only and closes at the next writable event
unless the peer's bytes are still queued (a 413 sent before a reset is
still read). No new per-socket state. Also, on kqueue, **a FIN no longer
ends a socket that waits in the low-priority queue** (`loop.c`): with
more than 5 TLS handshakes at once, a client that ended right after its
handshake could be reset and its server socket report `socket hang up`,
because the eof that the sentinel read knote reports was acted on ahead
of the unread Finished. That is on `main` too (the macOS entry for
`node-tls-server.test.ts` in `test/flaky-tests.txt`: 7 of 48 recent
builds of other branches), and this branch made it likelier (6 of 8
builds), since Finished now leaves in one segment with the close_notify.
- **Error reporting, both engines**: #44422, #32929, #44516, #37094,
#41272 + #42324 + #44223 as one change, #44021, #37472, #43946, #33630.
One channel: a fatal error on an established session is reported, then
**the engine closes the connection itself**, whatever the owner does
with the report. `test/js/bun/net/tls-fatal-error-closes.test.ts`
asserts closed-and-nothing-delivered for every owner (node:tls,
`Bun.connect`, `Bun.listen`, `fetch` direct and through CONNECT,
`Bun.serve`, `WebSocket` direct and through a proxy, Postgres, MySQL,
Valkey, Duplex).
- **Duplex engine** (`SSLWrapper`, `UpgradedDuplex`): #44462, #43529,
#42332, #44464. #43877 + #44394 were in and are **out again**, see
"Worth a look" 5.
- **node:tls wrap lifecycle** (`net.ts`, `tls.ts`): #38007, #38058,
#38028 + #38122 + #38076 as one change (six copies of the attach code
become two helpers), #38311, #39008, #38154, #42340 + #42343 + #42339 +
#42453 as one change, #43791, #42425, #44085, #42683, #39088, #39040,
#40375, and what was still real of #36534.
- **SNI, ALPN, server contexts**: #43080, #42050, #37195 + #43849 as one
change (**one** SNI matcher for TCP and HTTP/3), #42355, #42285, #33253,
part of #37896, part of #37013. A `tls.Server` has one `SSL_CTX`.
- **Verification and options**: #44738, #41490, #37005 + the cwd pin of
#40984, #31811, #43982, #33483 + #35245, #41810, #32235, #44441, #38092.
- **node:tls API and CA store**: #41671, #38145, #32824, #43594, #39997,
#41696, #33534, #34748, #42991, #42996, #42970.
- **node:https, Agent, `ws`, node-fetch**: #41672 (https half), #41641,
#38261, #42498, #44346, #35609, #31397, #42325.
- **WebSocket client**: #41648, #37487 + #43048 as one change.
- **SQL, Redis**: #33666, #41711, #44498, part of #42054.
- **Tests only**: #41426, #40040, #44395, #44016, #37860, #40591,
#44440, #41424.

Found on the way and fixed here: an upload that a TLS 1.2 server
interrupts with a renegotiation never completes on `main` (0 of 32 runs
over `https.request`, `fetch`, `node:tls` and `Bun.connect`: the
renegotiation ClientHello lands inside an application record that is
still unsent, or the socket gets no `drain` again) and completes here,
with two tests from robobun; the fix for #40653 (final flight and first
write in one segment) stopped working whenever another TLS socket on the
loop was stalled, on `main` too; the `tls.Server` prototype pinned the
last server constructed and every `SSL_CTX` it owned;
`Object.create(process.env).NODE_TLS_REJECT_UNAUTHORIZED = "0"` turned
verification off process-wide once a `SHARE_ENV` worker existed; two
debug panics when wrapping a shut-down or still-connecting socket; a
`fetch` POST through a proxy sent its headers twice when the origin
renegotiated; `BlockList` ignored IPv6 zone ids; a test now ties
`root_certs.der` to `certdata.txt`.

#### Behavior changes

- **A server's `ca` without `requestCert` no longer asks for a client
certificate** (`Bun.serve`, `Bun.listen`, HTTP/3, node:tls). It matches
the docs and Node. On `main` such a server refused clients with no
certificate but served any unrelated self-signed one, so it was never
authentication. **Set `requestCert: true` to require a certificate.** A
matrix test pins that `requestCert: true` still refuses no certificate
and an untrusted one on 8 kinds of server, TLS 1.2 and 1.3, with
`NODE_TLS_REJECT_UNAUTHORIZED` unset and `0`.
- `NODE_TLS_REJECT_UNAUTHORIZED=0` no longer relaxes a server.
- `Bun.connect` / `Bun.listen` hear of a fatal TLS error after the
handshake through `error(socket, err)`. With no `error` handler the
socket just closes.
- HTTP/3 server names match like TCP: `*.` covers exactly one label,
case is ignored, a trailing dot is ignored, the last registration of a
name wins.
- `requestCert` on node:https is `=== true`, as in Node.
- An array where a generated options dictionary is expected throws
(`tls: []`, `jest.useFakeTimers([])`).
- `key` / `cert` arrays serve every identity. A client that can use both
gets ECDSA, where `main` served whichever pair came last.
- `ecdhCurve` is forwarded by node:https, `ws` and node-fetch now, so a
group BoringSSL lacks (`X448`) throws there as it already does in
`tls.createServer`.
- A wrapped socket's error is re-emitted on the TLS socket as in Node,
so `raw.destroy(err)` with a listener on `raw` only is uncaught, as in
Node.
- `sql.options.tls` is always an object, never `true`. `RedisClient`
sends SNI.
- `tls: { secureContext }` alone asks for TLS on `Bun.listen` /
`Bun.connect` (it was plain TCP), and a value that is not a
`SecureContext` throws. The context is served as it is: the
`requestCert` / `rejectUnauthorized` it was created with hold whatever
the options next to it say, and `requestCert` in the options over a
context that does not ask throws at `listen()`.
- `tls.DEFAULT_CIPHERS` reaches every client once assigned (`fetch`,
`WebSocket`, `Bun.connect`, `RedisClient`, `Bun.SQL`, `S3Client`, proxy
tunnels) and servers again. A list that selects no cipher throws
`ERR_SSL_NO_CIPHER_MATCH` at the assignment. `fetch.preconnect()` dials
nothing after an assignment.
- The warning for an unreadable `NODE_EXTRA_CA_CERTS` is Node's one
line, without the `warn:` prefix.
- `BUN_CONFIG_WS_CLOSE_TIMEOUT` (default 30 s): how long a `WebSocket`
client waits for the server to close the connection after the closing
handshake.

#### Worth a look in review

1. **#44529**: the kernel-refused remainder of a TLS write moves from
the loop's one slot onto the connection (in the existing rare struct),
so the write BIO never refuses a sealed record. Nothing is allocated on
an unstalled path (200 writes: 0 appends, same `send()` count as
`main`), memory with 16 stalled writers is lower than on `main` (276 KB
vs 340 KB, which `main` holds inside BoringSSL's buffers), `us_socket_t`
stays 80 bytes. It needs a bound on how long a deferred close waits, or
a peer that stops reading pins the fd past `destroy()`:
`US_SSL_CLOSE_AFTER_SPILL_TIMEOUT` is a fixed 10 s, not re-armed on
progress. Separate commits, but the fix that keeps the client
certificate off the wire beside a stalled socket builds on them.
2. **The default name check of node:tls also runs inside the
handshake**, so a wrong-name server gets no client certificate on TLS
1.2 either. JS still runs it after every successful handshake, so a
difference between the two matchers can only refuse. Error objects are
byte-identical.
3. **#44441** widens trust by design: a self-issued leaf whose
`keyUsage` lacks `keyCertSign` (`dotnet dev-certs`) is its own anchor
when the store holds a byte-identical copy. No BoringSSL change. Expired
pin, same subject with another key, wrong EKU and a pinned intermediate
are tested to fail.
4. **#32235** only adds Ed25519 and ECDSA P-521 to the verify list. A
captured ClientHello shows `main`'s list with the two inserted;
`rsa_pkcs1_sha1` stays.

5. **A stream that a TLS socket wraps, when that TLS socket closes.** An
earlier state of this branch lost data here while CI was green (found by
#44709's report): with the peer closing first, 4 of 8 MiB arrived with
TLS in TLS, 4 of 32 MiB on the http2 `emit("connection")` path, and a
`write()` with no `'error'` listener ended the process. Three
Node-parity changes only hold together: destroying the wrapped stream at
the close (#38028 + #38122 + #38076, #38154) is safe only if every write
has really completed (#43877), which in turn needs Node's handling of
the peer's close_notify, which needs half-open sockets that the GC can
collect. So:
- #43877 + #44394 are reverted and reopened. A write over a stream
completes once the stream has taken the ciphertext, as on `main`.
- Until the verdict on the peer lets the session through, the
application cannot have written over it. There the wrapped stream is
destroyed as in Node, with the sessions below it. That keeps the release
of the connection after a failed handshake, a rejected certificate and
an early `destroy()`. The same for an http2 socket the application never
got, and for `resetAndDestroy()`.
- After that it is `main`'s teardown: a `net.Socket` only gets the
engine's `end()`, closes at its peer's FIN, keeps its own timeout and
reports its own errors. Any other stream is destroyed with the TLS
socket.

The regular suites cannot see any of this (999 files were green on every
broken variant), so it was steered by eleven seeded differential fuzzers
run on this build, `main`, Node v26.3.0 and the earlier state: close,
`end()`, `destroy()`, `destroySoon()`, resets, hung and half-open peers,
paused writers, timeouts, two and three sessions deep, over TCP and over
Duplexes, before, at and after the handshake, and http2 requests. See
"How did you verify".

#### Known limits

- `fetch` with a `checkServerIdentity` function still sends the client
certificate (not the request) to a server the function refuses. On TLS
1.2 any verdict a JS callback gives is too late, as in Node.
- `addContext()` / `SNICallback` still do not apply to a server-side
socket on the stream engine (`emit("connection", duplex)`, TLS in TLS,
unflushed writes, named pipes), as on `main`.
- A CA bundled in a pfx extends an explicit `ca` only, for `ws` /
node-fetch / `WebSocket`: the native `ca` can only replace the default
store, and that store keeps `SSL_CERT_FILE` / `SSL_CERT_DIR`.
- P-521 leaves work on TLS 1.3 only. TLS 1.2 needs secp521r1 in every
ClientHello (`it.todo`).
- Once `tls.DEFAULT_CIPHERS` is assigned, `fetch(url, { protocol:
"http3" })` is `HTTP3Unsupported`, as with an explicit `ciphers`.
- `addCACert()` by hand does not extend the chains of a context with
several identities.
- A throwing `ALPNCallback` sends `no_application_protocol` on both
engines. Node sends nothing and its client sees `ECONNRESET`.
- TLS in TLS, peer FIN while the outer handshake runs: the inner socket
gets one `write EPIPE`, where Node gives `ECONNRESET` (`main` gives it
no error at all).
- `@SECLEVEL` in `ciphers` is dropped by the `ws` / node-fetch shims,
which used to ignore `ciphers`. node:tls keeps throwing
`ERR_SSL_INVALID_COMMAND`.
- Beside a stalled TLS socket only the first record (16 KiB) of the
first write leaves with the handshake flight. The rest goes record by
record, which is what bounds the memory of stalled writers.
- After a fatal error on an established session the socket emits
`'error'` and then `'close'`. Node emits `'error'` and leaves the socket
open.
- A paused reader whose own write the kernel rejects loses what it had
not read yet, with an `EPIPE`, as on Node. `main` reports no error there
and delivers it.
- On `main` too: a `Bun.listen` socket without `allowHalfOpen` that has
unsent ciphertext when the client's `shutdown()` arrives loses that
ciphertext (32 KiB), and over plain TCP `end()` with the peer still
sending is a close over unread input, so a reset.
- Differences from both `main` and Node that the differential runs below
found and that stay, all with a peer that aborts: `ECONNRESET` instead
of a clean `'end'` after the socket's own `'finish'` when the peer
destroyed with unread data; under TLS 1.2, a zero-length `write()`
followed by `destroy()` in `'secureConnection'` leaves the client
without `'secureConnect'` (a plain `destroy()` there matches Node); a
TLS 1.2 client that destroys in `'secureConnect'` gets no `'session'`; a
`ClientRequest` whose handshake fails with an alert emits `'error'` and
`'close'` but no `'finish'` (`writableFinished` is true).
- Once `tls.DEFAULT_CIPHERS` is assigned, `fetch.preconnect()` opens
nothing: `fetch()` then uses a context of its own, and a socket warmed
under the default one would never be picked up.
- A TLS `send()` that the kernel refuses outside a `write()` call (the
drain of unsent ciphertext) is reported with the close, as `read EPIPE`
/ `read ECONNRESET`. Node says `write EPIPE`. `main` does not report it
at all.
- Once the application has a session over a `net.Socket` (TLS in TLS,
http2 `emit("connection")`), a peer that never sends its FIN holds that
socket after the TLS socket closed, as on `main`. Node destroys it. Two
tests of #38154 are `todo` for this. Closing it any earlier (at its
`'finish'`, say) makes the kernel drop what it has not sent yet as soon
as the peer's close_notify arrives.
- Plaintext that was queued on a socket before it was wrapped (STARTTLS
with a backlog) is dropped when the TLS socket is destroyed, or its
handshake fails, before the session is accepted. Node drops it too,
except on `destroySoon()`. `main` sends it.
- Over a stream that is no `net.Socket`, `end()` can still cut what that
stream has buffered, and there is no backpressure, both as on `main`
(#43877).
- `tls.secureContext` (the undocumented door node:tls uses) is not read
by a Windows named pipe listener, which builds its context from the
options. On `upgradeTLS({ isServer: true })` the options next to it are
the policy, as with Node's `SetVerifyMode`.
- `selectServerName()` rebuilds the name tree per ClientHello for
injected sockets of a server with `addContext()` entries: 0.4 µs for 1
entry, 3.7 µs for 10, 41 µs for 100, against 631–1111 µs for a
handshake.

#### Not included

Left open, because they need a decision or are not TLS: #43877 + #44394
(see "Worth a look" 5; #43874 stays open with them), #38548, #38591
(both shrink who is trusted), #41589 (`verify-full` vs
`NODE_TLS_REJECT_UNAUTHORIZED=0`), #37197, #41706, #43216, #33487,
#33545, #36707, #32435, #37255, #28691, #40275, #30314 (features),
#38120 (needs the BoringSSL fork, as did #33517, which the stale bot has
closed since), #38529 (needs a Windows measurement), #34342, #38232,
#43089, #44454, #40451, #42710, #44527, #38088, #38093, #41898. #37896,
#42054 and #37013 stay open for the halves not taken.
`http.createServer({ key, cert })` keeps serving TLS on purpose.

One open question: `tls: {}` (an object that names no TLS option) is
plain TCP on `Bun.listen` / `Bun.connect`, here and on `main`. It is the
same trap as `tls: []`, but changing it changes a Bun default, so it is
left alone.

### How did you verify your code works?

- Every new test fails on `main` for the stated reason and passes here,
except guards that pin existing behavior, each shown to fail when its
clause is removed. `node:*` tests also pass on Node v26.3.0; the few
that cannot say which Node version has the behavior.
- 212 test files that touch TLS, sockets, http, http2, fetch, WebSocket,
SQL, Valkey and workers: 6154 pass, 2 fail. Both are seen on `main` too:
`serve.test.ts` "root range port" (the box runs as root), and
`worker_threads.test.ts` "terminate(): nothing of the worker's runs
after the request", which is flaky there and passed in the run below.
- 58 of those files the way the ASAN lane runs them (LeakSanitizer +
`BUN_JSC_validateExceptionChecks`): 58 files, 48 of them with leak
checking, 4132 pass, 3 fail. All three also fail on `main`:
`serve.test.ts` "root range port", `node-net.test.ts` "should not leak
when connect({path}) fails synchronously on a reused handle" (times out
under this environment), `worker_threads.test.ts` "process.exit() with a
shell cp in flight" (a `ShellCpTask` leak).
- 647 vendored `test-tls-*`, `test-https-*`, `test-net-*`,
`test-http2-*`: the only two failures also fail on `main`.
- The SNI matcher was diffed against both old matchers: 3 seeds × 1.23 M
lookups × 3 registration flavours, every difference in one of the
intended classes, TCP and HTTP/3 identical on every lookup.
- The headline rows were also driven by hand with scripts against this
build, `main` and Node v26.3.0: cleartext https, `crl`, `tls: []` / `{
secureContext }`, the `ca` / `requestCert` matrix, the client
certificate on a wrong-name server, late `setSession()`, `destroy()` in
`ALPNCallback`, `[rsa, ec]` identities with an intermediate from `ca`,
`WebSocket` `checkServerIdentity`, a corrupted record, the Duplex read
above, `tls.DEFAULT_CIPHERS`.
- The `setSession()` guard was checked against the real `abort()` at 43
handshake states.
- `bun run rust:check-all`: 12 of 12 targets. `tsc`, oxlint, source
lints, prettier, rustfmt, mordant clean.
- usockets' `_Nonnull` is compiled out of debug builds, so 105 of those
files were also run on a local release ASAN build with the CI runner's
environment (92 with leak checking): 4595 pass, 1 fail,
`child_process.test.ts` "spawn reports EPERM after dropping privileges",
which cannot pass as root and fails on `main` too.
- The close of a TLS socket over another stream ("Worth a look" 5):
eleven seeded differential fuzzers, 8,424 scenarios compared, each run
on a release ASAN build of this branch, on `main`, on Node v26.3.0 and
on the earlier state of the branch. Against `main`:
- Data that `main` delivers in full is cut in 5 scenarios, and about 150
that `main` cuts arrive in full. Of the 5, in 2 `main` never notices the
peer's close and keeps the socket for good, 2 call `end()` on the middle
one of three sessions over an in-memory Duplex, and 1 does the same on
Node.
- No dead timeout, no silent reset and no uncaught error that `main`
does not have (4 uncaught errors fewer).
- A socket stays open where `main` closes it in 109, and closes where
`main` keeps it in 295. 92 of the 109 do the same on Node or on the
earlier state (a `destroy()` that an in-memory Duplex does not show its
peer, half-open peers). 14 wait for a peer that paused reading and so
does not read the FIN (#42332's backpressure, as in Node); the socket's
own timeout fires there. 3 are left: one on a 5 ms timer, two with three
sessions over an in-memory Duplex.
- The earlier state of the branch cut data in 173 of the 400 scenarios
of one of them, where `main` cuts none and this cuts none.
- 23 new tests pin what they found. Each earlier attempt at this fix
fails the ones that describe it, the earlier state of the branch fails
7, and all pass on Node.
- After that change: 999 test files on the release ASAN build (20,246
pass; the 11 files that fail need a database, Docker, DNS or a non-root
user, or share a temp directory with a parallel run and pass alone), 61
on the debug build.
- TLS over a file descriptor (`openssl.c`, the path of `fetch`,
`Bun.serve`, `tls.connect`, `Bun.connect`) got the same treatment after
the rebase: seeded differential fuzzers on CI's release build of this
branch, on `main` and, for `node:*`, on Node v26.3.0. Every runtime also
against itself for the noise floor, injected faults and known bugs of
`main` as positive controls, and a difference counts only if it shows in
5 of 5 fresh processes.
- `node:tls` over TCP: 11,500 scenarios (one connection with Node as the
oracle line by line; 2 to 60 connections beside stalled neighbours; raw
peers that break the handshake). HTTPS: about 136,000 runs over
`Bun.serve` + `fetch`, `node:https`, `node:http2` and `wss://`, also
with the two ends in different runtimes. `Bun.connect` / `Bun.listen` /
`upgradeTLS`: 11,500 scenarios and 720 slow connections, with writers
driven by what `write()` returns, beside up to 6 stalled, dripping,
closing or resetting neighbours, and plain TCP as a second oracle. No
crash, hang, duplication, reordering or silent truncation, and no change
in time or in connection reuse.
- They found six things that `main` does better, none of which any test
showed. All are fixed, each with a test that fails on the build before:
what the peer sent lost behind a rejected `send()` (23 scenarios, and an
early HTTPS response lost with only `EPIPE`), the same silently for a
paused reader, `server.close()` never calling back on a half-open server
after a ClientHello and a reset (17), `closeAllConnections()` taking 12
s with a stalled client, `end()` losing up to 1.3 of 4 MiB that
`write()` had reported while the peer still uploads, and `end()` a
little after a stall never closing beside other stalled TLS sockets. The
last two fixes also deliver the 1 to 2 MiB that `main` loses there, and
close the socket that `main` keeps for good without such neighbours.
- All of them again after every fix, on CI's release build of it. That
caught one regression of a fix itself (a reader stopped for backpressure
lost 86,385 bytes, 1 of 6,000 scenarios), fixed too. On the last build:
scenarios that lose data where `main` does not 23 → 2, and Node loses it
in both, with the same `EPIPE`; `server.close()` that never calls back
17 → 0; connections held 4 → 0; requests that end in an error only where
`main` has a response 6 → 0. With a Node server in another process, a
request ends in an error only in 8 and 10 of 1,500 scenarios here, 5 and
3 on `main`, 10 with Node as the client.
- `Bun.connect` / `Bun.listen` on the last build against `main`, in
scenarios: hangs 0 against 1,031, sockets and fds never released 0
against 965, corrupted data 0 against 345, `abort()` 0 against 26
(`setSession()` after the handshake), writers that never close 0 against
101 of 720 connections. No kind of failure shows here and not on `main`.
About a third of the slow connections close later than on `main`, in 1
to 16 s instead of at once, waiting for unsent ciphertext or for the
peer's close_notify, and 79 more of them deliver all that `write()`
reported. RSS and time with 16 to 256 stalled writers are the same.
- What they found that `main` does worse: a `WebSocket` that calls
`close()` with sends pending loses messages in 81 of 999 scenarios (0
here), 37 server sockets left open, 10 `server.close()` that never call
back, 20 write callbacks that never run.
- The kqueue fix cannot be run on Linux. The `connectionListener` count
test now says what became of a missing connection, which is how the
cause was found (`'tlsClientError'` "socket hang up", then `read
ECONNRESET` at the client of the same port, after its
`'secureConnect'`). On macOS x64 it failed every attempt of the three
builds before the fix and passed at the first attempt of the build with
it.
- Windows and macOS were only run by CI. Four new tests asserted what
only the Linux kernel does (a FIN read ahead of a reset, unread bytes
surviving a reset, loopback buffer sizes, `fstat()` on a socket) and now
say so per platform.

---------

Co-authored-by: autofix-ci[bot] <114827586+autofix-ci[bot]@users.noreply.github.com>
Co-authored-by: robobun <117481402+robobun@users.noreply.github.com>

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