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github-actions[bot] ff8e6ff861 release: sync v26.36.0913490 from source-build
built from source-build commit b4d3328cc1
 dated 2026-09-13 11:47:12 +0000
2026-09-13 11:49:28 +00:00
Stéphane Lesimple 4bfd452931 chore: autoupdate workflow: also update the intel affected list 2026-09-13 11:38:40 +00:00
Stéphane Lesimple dcaed638f1 chore: release workflow: use a PR to sync source-build to master 2026-07-30 16:37:00 +02:00
github-actions[bot] 8f3f295a14 release: sync v26.36.0730501 from source-build
built from source-build commit ed7f348f83
 dated 2026-07-30 12:04:02 +0000
2026-07-30 12:35:24 +00:00
Stéphane Lesimple 85e5daad8f fix: release.yml: yaml syntax 2026-07-30 14:31:04 +02:00
Stéphane Lesimple a441987adb ci: add manual path-scoped release workflow (master-only)
Add .github/workflows/release.yml, triggered manually via workflow_dispatch,
with two independent actions:

  - sync-from-source-build: copy every top-level file from source-build
    except .github/ onto master as a single commit
  - draft-github-release: create a draft GitHub release from master's current
    script, with an auto-drafted changelog assembled from source-build.

This replaces merging source-build into master that caused modify/delete
conflict of the master-only workflows.
2026-07-30 14:09:32 +02:00
4 changed files with 766 additions and 217 deletions
+90 -8
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@@ -17,25 +17,107 @@ jobs:
with:
ref: source
- name: Install prerequisites
run: sudo apt-get update && sudo apt-get install -y --no-install-recommends iucode-tool sqlite3 unzip shfmt
run: sudo apt-get update && sudo apt-get install -y --no-install-recommends iucode-tool sqlite3 unzip shfmt python3
- name: Update microcode versions
run: ./scripts/update_mcedb.sh
- name: Update Intel models
run: ./scripts/update_intel_models.sh
- name: Update Intel affected processors
run: |
git clone https://github.com/intel/Intel-affected-processor-list.git \
"$RUNNER_TEMP/Intel-affected-processor-list"
python3 scripts/intel-affected-processor-list/build_inteldb.py \
"$RUNNER_TEMP/Intel-affected-processor-list" src/db/100_inteldb.sh \
--base-db scripts/intel-affected-processor-list/historical_records.db
- name: Check git diff
id: diff
run: |
echo change="$(git diff | awk '/MCEDB/ { if(V) { print V" to "$4; exit } else { V=$4 } }')" >> "$GITHUB_OUTPUT"
echo nbdiff="$(git diff | grep -cE -- '^\+# [AI],')" >> "$GITHUB_OUTPUT"
if git diff --quiet -- src/db/200_mcedb.sh src/libs/003_intel_models.sh src/db/100_inteldb.sh; then
echo "changed=false" >> "$GITHUB_OUTPUT"
else
echo "changed=true" >> "$GITHUB_OUTPUT"
fi
python3 - <<'PY'
import os
import re
import subprocess
from pathlib import Path
def previous(path):
return subprocess.check_output(['git', 'show', f'HEAD:{path}'], text=True)
def records(text, kind):
result = {}
for line in text.splitlines():
if kind == 'microcode' and re.match(r'^# [AI],', line):
fields = line[2:].split(',')
result[tuple(fields[:3])] = tuple(fields[3:])
elif kind == 'models':
match = re.match(r'\s*readonly (INTEL_\w+)=(.*)', line)
if match:
result[match[1]] = match[2]
elif kind == 'processors' and line.startswith('# 0x'):
fields = line[2:].rstrip(',').split(',')
qualifier = fields[1] if fields[1].startswith('H=') else ''
result[(fields[0], qualifier)] = tuple(fields[2:] if qualifier else fields[1:])
return result
outputs = {}
for kind, path in (
('microcode', 'src/db/200_mcedb.sh'),
('models', 'src/libs/003_intel_models.sh'),
('processors', 'src/db/100_inteldb.sh'),
):
old_text = previous(path)
new_text = Path(path).read_text(encoding='utf-8')
old = records(old_text, kind)
new = records(new_text, kind)
added = len(new.keys() - old.keys())
removed = len(old.keys() - new.keys())
updated = sum(old[key] != new[key] for key in old.keys() & new.keys())
outputs[kind] = f'{added} added, {updated} updated, {removed} removed ({len(new)} total)'
if kind == 'microcode':
def version(text):
match = re.search(r'^# %%% MCEDB (\S+)', text, re.MULTILINE)
if not match:
raise ValueError('Missing MCEDB version marker')
return match[1]
before, after = version(old_text), version(new_text)
outputs['mcedb'] = f'{before} -> {after}' if before != after else f'{after} (unchanged)'
outputs['microcode_changes'] = added + updated + removed
outputs['intel_revision'] = subprocess.check_output(
['git', '-C', os.path.join(os.environ['RUNNER_TEMP'], 'Intel-affected-processor-list'),
'rev-parse', 'HEAD'], text=True,
).strip()
with open(os.environ['GITHUB_OUTPUT'], 'a', encoding='utf-8') as stream:
for key, value in outputs.items():
print(f'{key}={value}', file=stream)
PY
git diff
cat "$GITHUB_OUTPUT"
- name: Create Pull Request if needed
if: steps.diff.outputs.nbdiff != '0'
if: steps.diff.outputs.changed == 'true'
uses: peter-evans/create-pull-request@v7
with:
base: source
branch: autoupdate-fwdb
commit-message: "update: fwdb from ${{ steps.diff.outputs.change }}, ${{ steps.diff.outputs.nbdiff }} microcode changes"
title: "[Auto] Update fwdb from ${{ steps.diff.outputs.change }}"
add-paths: |
src/db/200_mcedb.sh
src/libs/003_intel_models.sh
src/db/100_inteldb.sh
commit-message: |
update: CPU databases, ${{ steps.diff.outputs.microcode_changes }} microcode changes
MCEDB: ${{ steps.diff.outputs.mcedb }}
Microcode records: ${{ steps.diff.outputs.microcode }}
Intel models: ${{ steps.diff.outputs.models }}
Intel affected-processor profiles: ${{ steps.diff.outputs.processors }}
Intel CSV revision: ${{ steps.diff.outputs.intel_revision }}
title: "[Auto] Update CPU databases: MCEDB ${{ steps.diff.outputs.mcedb }}, ${{ steps.diff.outputs.microcode_changes }} microcode changes"
body: |
Automated PR to update fwdb from ${{ steps.diff.outputs.change }}
Detected ${{ steps.diff.outputs.nbdiff }} microcode changes
Automated PR to refresh the CPU/microcode databases:
- **MCEDB version:** ${{ steps.diff.outputs.mcedb }}
- **Microcode records:** ${{ steps.diff.outputs.microcode }}
- **Intel CPU models:** ${{ steps.diff.outputs.models }}
- **Intel affected-processor profiles:** ${{ steps.diff.outputs.processors }}
+181
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@@ -0,0 +1,181 @@
name: release
# Manual, path-scoped release helper for master.
#
# `master` is BOTH the distribution branch (users download the script here)
# AND the default branch that hosts the scheduled CI workflows
# (autoupdate / stale / vuln-watch). `source-build` is a build-OUTPUT branch.
#
# We therefore never merge source-build into master: that would drag source-build's
# whole tree, including the *absence* of the master-only workflows.
# Instead we copy only the assembled artifact files across, and cut GitHub
# releases from master directly.
#
# Two independent manual actions to run against the `master` branch:
#
# 1. sync-from-source-build : open a PR against master carrying the assembled
# files (everything on source-build EXCEPT
# .github/). Nothing lands on master until the PR
# is reviewed and merged.
# 2. draft-github-release : create a DRAFT GitHub release from the script
# currently on master, with an auto-drafted
# changelog.
on:
workflow_dispatch:
inputs:
action:
description: What to do
type: choice
required: true
default: sync-from-source-build
options:
- sync-from-source-build
- draft-github-release
permissions:
contents: write
pull-requests: write
concurrency:
group: release-master
cancel-in-progress: false
jobs:
# ---------------------------------------------------------------------------
# 1. Copy assembled files from source-build onto master (no .github/),
# as a pull request.
# ---------------------------------------------------------------------------
sync-from-source-build:
if: inputs.action == 'sync-from-source-build'
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v6
with:
ref: master
fetch-depth: 0
persist-credentials: true
- name: sync assembled files from source-build
id: sync
run: |
set -eu
git fetch --no-tags origin source-build
# Every top-level entry on source-build EXCEPT .github/ (master keeps
# its own CI). Computed dynamically so any new top-level artifact is
# picked up automatically.
readarray -t paths < <(git ls-tree --name-only origin/source-build | grep -vxF '.github')
echo "Syncing: ${paths[*]}"
# Mirror source-build exactly for those paths, removing first so that
# deletions/renames inside doc/ etc. propagate too.
for p in "${paths[@]}"; do rm -rf -- "$p"; done
git checkout origin/source-build -- "${paths[@]}"
git add --all -- "${paths[@]}"
if git diff --cached --quiet; then
echo "master already up to date with source-build; nothing to sync."
echo "changed=false" >> "$GITHUB_OUTPUT"
exit 0
fi
{
echo "changed=true"
echo "version=$(grep -m1 "^VERSION=" spectre-meltdown-checker.sh | cut -d"'" -f2)"
echo "sb=$(git rev-parse origin/source-build)"
echo "sbdate=$(git log -1 --format=%ai origin/source-build)"
} >> "$GITHUB_OUTPUT"
# Note: the repo must have "Allow GitHub Actions to create and approve
# pull requests" enabled for this to work.
- name: open the sync pull request
if: steps.sync.outputs.changed == 'true'
uses: peter-evans/create-pull-request@v7
with:
base: master
branch: release/sync-from-source-build
delete-branch: true
committer: "github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com>"
author: "github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com>"
title: "release: sync v${{ steps.sync.outputs.version }} from source-build"
commit-message: |
release: sync v${{ steps.sync.outputs.version }} from source-build
built from source-build commit ${{ steps.sync.outputs.sb }}
dated ${{ steps.sync.outputs.sbdate }}
body: |
Assembled files copied from `source-build` onto `master` (everything
except `.github/`, which stays master-only).
- version: `${{ steps.sync.outputs.version }}`
- built from source-build commit: ${{ steps.sync.outputs.sb }}
- dated: ${{ steps.sync.outputs.sbdate }}
Once merged, run this workflow again with the `draft-github-release`
action to cut the release, if required.
# ---------------------------------------------------------------------------
# 2. Draft a GitHub release from the script currently on master.
# ---------------------------------------------------------------------------
draft-github-release:
if: inputs.action == 'draft-github-release'
runs-on: ubuntu-latest
env:
GH_TOKEN: ${{ github.token }}
steps:
- uses: actions/checkout@v6
with:
ref: master
fetch-depth: 0
persist-credentials: true
- name: draft a release from the current master script
run: |
set -eu
ver=$(grep -m1 "^VERSION=" spectre-meltdown-checker.sh | cut -d"'" -f2)
tag="v${ver}"
if gh release view "$tag" >/dev/null 2>&1; then
echo "A release for $tag already exists; refusing to recreate." >&2
echo "Delete it first if needed." >&2
exit 1
fi
# Draft the changelog from the source-build commits assembled since the
# previous published release. We locate the source-build commit whose
# built VERSION equals the last release tag, then list what came after.
git fetch --no-tags origin source-build
last_tag=$(gh release list --exclude-drafts --limit 1 --json tagName --jq '.[0].tagName // empty')
old_ver="${last_tag#v}"
base=""
if [ -n "$old_ver" ]; then
while read -r h; do
v=$(git show "$h:spectre-meltdown-checker.sh" 2>/dev/null | grep -m1 "^VERSION=" | cut -d"'" -f2 || true)
if [ "$v" = "$old_ver" ]; then base="$h"; break; fi
done < <(git rev-list --max-count=500 origin/source-build)
fi
{
echo "## ${tag}"
echo
if [ -n "$base" ]; then
git log --no-merges --format='- %s' "${base}..origin/source-build"
else
echo "_Could not determine the previous release point automatically — please fill in the changelog. Last 30 assembled commits below as a starting point:_"
echo
git log --no-merges --format='- %s' --max-count=30 origin/source-build
fi
} > notes.md
echo "----- draft notes -----"; cat notes.md; echo "-----------------------"
gh release create "$tag" \
--draft \
--target "$GITHUB_SHA" \
--title "$tag" \
--notes-file notes.md \
spectre-meltdown-checker.sh
echo "Draft release $tag created."
+34
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@@ -188,6 +188,18 @@ Observable timing discrepancy in some Intel processors allows an authenticated u
**Why out of scope:** Like CVE-2020-24511, this is a microcode-only fix with no Linux kernel sysfs entry, no CPUID bit, no MSR, and no kernel configuration option. Detection would require a per-CPU-stepping microcode version lookup table. The vulnerability has low severity (CVSS 2.8) and practical exploitation is limited. Intel dropped microcode support for Sandy Bridge and Ivy Bridge, leaving those generations permanently vulnerable.
## CVE-2021-26314 / CVE-2021-26313 — Floating-Point Value Injection (FPVI) and Speculative Code Store Bypass (SCSB)
- **Bulletin:** [AMD-SB-1003](https://www.amd.com/en/resources/product-security/bulletin/amd-sb-1003.html) (FPVI and SCSB); [AMD-SB-7050](https://www.amd.com/en/resources/product-security/bulletin/amd-sb-7050.html) (FPVI variant, informational)
- **Intel advisory:** [Floating Point Value Injection](https://www.intel.com/content/www/us/en/developer/articles/technical/software-security-guidance/advisory-guidance/floating-point-value-injection.html)
- **Research paper:** [Rage Against the Machine Clear (FPVI/SCSB) — VUSec, USENIX Security '21](https://www.vusec.net/projects/fpvi-scsb/)
- **Affected CPUs:** All supported AMD CPU products; Intel CPUs (FPVI)
- **CVSS:** 5.5 (Medium) for both
FPVI (CVE-2021-26314) lets an attacker inject arbitrary floating-point values into the transient execution window opened by a floating-point machine clear, so that dependent operations transiently compute on attacker-influenced values that can then be inferred through a microarchitectural covert channel. SCSB (CVE-2021-26313) is the companion vulnerability where overwritten instructions may still be executed speculatively. AMD-SB-7050 documents an FPVI variant (from the "TREVEX" detection-framework paper) that can be triggered without denormal inputs; AMD considers it to fall within the existing scope of CVE-2021-26314 and assigned it no new CVE, classifying it as informational only.
**Why out of scope:** The mitigation responsibility falls on individual software, not on the kernel or microcode. Both AMD and Intel recommend that software vendors analyze their code for vulnerable speculative floating-point sequences and insert an `LFENCE` to serialize execution. No microcode update, no CPUID flag, no MSR, and no kernel configuration option was issued, and there is no `/sys/devices/system/cpu/vulnerabilities/` entry for FPVI or SCSB — the kernel never added one, because the fix is not a kernel-level control. This is the same situation as [SLAM (CVE-2020-12965)](#cve-2020-12965--transient-execution-of-non-canonical-accesses-slam) and "Take A Way": the vendor's guidance is "software inserts LFENCE in its own code," leaving nothing for this tool to check. The AMD-SB-7050 variant adds nothing detectable, as it is informational and reuses the existing (software-only) FPVI guidance.
## CVE-2021-26318 — AMD Prefetch Attacks through Power and Time
- **Issue:** [#412](https://github.com/speed47/spectre-meltdown-checker/issues/412)
@@ -308,6 +320,28 @@ Exploits a synchronization failure in the AMD stack engine via an undocumented M
**Why out of scope:** Not a transient/speculative execution side channel. This is an architectural attack on AMD SEV-SNP confidential computing that requires hypervisor access, which is outside the threat model of this tool.
## CVE-2025-52533 — AMD On-Chip Debug Interface Improper Access Control
- **Advisory:** [NVD CVE-2025-52533](https://nvd.nist.gov/vuln/detail/CVE-2025-52533)
- **Affected CPUs:** AMD (various; on-chip debug/test interface)
- **CVSS:** 8.7 (High)
- **CWE:** [CWE-1191 (On-Chip Debug and Test Interface With Improper Access Control)](https://cwe.mitre.org/data/definitions/1191.html)
Improper access control in an on-chip debug interface could allow a privileged attacker to enable a debug interface and potentially compromise data confidentiality or integrity.
**Why out of scope:** Not a transient or speculative execution vulnerability — this is an access-control flaw in a hardware debug/test interface (CWE-1191), with no side-channel or speculative execution component, and it requires a privileged attacker. There is no Linux kernel sysfs entry, no CPUID flag, and no kernel-side mitigation: the fix is delivered as platform/PSP firmware and proven via remote attestation against AMD's Key Distribution Service (KDS), with several SKUs marked "no fix planned." None of this is detectable by this tool, which inspects OS-loadable microcode revisions, CPUID/MSR bits, kernel capabilities, and sysfs.
## CVE-2026-46174 — AMD Zen 2 Op Cache Improper Resource Isolation
- **Bulletin:** [AMD-SB-7052](https://www.amd.com/en/resources/product-security/bulletin/amd-sb-7052.html) (CPU OP Cache Corruption)
- **Kernel fix:** [commit 1e23b30a80b1](https://github.com/torvalds/linux/commit/1e23b30a80b14e5764657401ee2cca030525ae8e) — `x86/CPU/AMD: Prevent improper isolation of shared resources in Zen2's op cache`
- **Affected CPUs:** AMD Zen 2
- **CVSS:** 8.8 (High)
Resources in the Zen 2 micro-op (op) cache can be improperly shared, causing instruction corruption that may be leveraged to execute instructions at a higher privilege level (userspace-to-kernel escalation). The Linux fix sets a bug-fix bit (bit 33) in the AMD `BP_CFG` model-specific register (`0xc001102e`) via `msr_set_bit()` in `init_amd_zen2()`, and only on bare metal (skipped when `X86_FEATURE_HYPERVISOR` is set, as the mitigation is the host's responsibility for guests).
**Why out of scope:** Not a transient or speculative execution vulnerability — this is an op-cache resource-isolation bug that causes *instruction corruption* (an integrity/correctness erratum), with no side-channel or speculative data-leak component, which places it outside the vulnerability class this tool detects. It is also undetectable by this tool's standard framework: the kernel deliberately adds no `/sys/devices/system/cpu/vulnerabilities/` entry, no `X86_BUG_*` flag (so nothing in `/proc/cpuinfo`), no dmesg message, and no kernel command-line parameter. The mitigation is an unconditional inline MSR bit-set with no greppable named symbol, so it leaves no handle for no-runtime (kernel image / `System.map`) detection. The only possible check would be a live read of `BP_CFG` bit 33, which requires root and the `msr` module, works on bare metal only (guests report `N/A`), and would be a bespoke one-off outside the established CVE-detection model — the same situation as the [JCC Erratum](#no-cve--jump-conditional-code-jcc-erratum) below, but for AMD.
## No CVE — Jump Conditional Code (JCC) Erratum
- **Issue:** [#329](https://github.com/speed47/spectre-meltdown-checker/issues/329)
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