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CVE-2026-44594
Path Traversal in github.com/esm-dev/esm.sh (CVE-2026-44594)
Summary
path traversal in github.com/esm-dev/esm.sh (CVE-2026-44594). Risk of unauthorized operations or information disclosure. Exploitable via ``browser``. Mitigation: upgrade to `0.0.0-20250616164159-0593516c4cfa` or later.
AI summary snake-internal / snake-material-v2
A vulnerability tracked as **CVE-2026-44594** has been found in github.com/esm-dev/esm.sh.
Attackers can target a specific entry point like ``browser`` over the network to misuse the product.
Risk of unauthorized operations or information disclosure. CVSS score: ?/10.
What to do: upgrade github.com/esm-dev/esm.sh to **0.0.0-20250616164159-0593516c4cfa** or later.
If unsure, ask your IT team or search "github.com/esm-dev/esm.sh CVE-2026-44594" on the vendor's site.
CVE-2026-44594 (github.com/esm-dev/esm.sh) — CWE-22 /
Attack surface: `browser` / `OnResolve` / `sourcesContent`
Patched: `0.0.0-20250616164159-0593516c4cfa` — apply immediately
Plan: 1) Audit SBOM/dependencies, 2) Stage→prod upgrade, 3) Add WAF/proxy monitoring on affected endpoints, 4) Hunt IOCs in logs.
Refs: see the GHSA / vendor advisory / patched release linked on this page.
❓ What is the problem
**Path traversal** (CWE-22) exists in github.com/esm-dev/esm.sh. Attackers reach the vulnerable code path via ``browser`` without authentication.
📍 Affected scope
github.com/esm-dev/esm.sh — . Attack surface: `browser` / `OnResolve` / `sourcesContent`.
🔥 Severity
Severity: ?. Risk of unauthorized operations or information disclosure
🔧 How to fix
Update to **0.0.0-20250616164159-0593516c4cfa**.
🛡️ Workaround
Until the patch is applied: disable the affected feature, apply WAF rules, or restrict access via network ACLs.
🔍 Detection
Search webserver/proxy logs for unusual request patterns matching this CVE's known IOCs. Run `grep -r 'github.com/esm-dev/esm.sh' .` against your dependency files (package-lock.json, requirements.txt, go.sum) to find affected services.
Response Actions (7 steps)
Concrete steps and command examples for SOC/SRE teams to execute in order
-
1Identify exposure identify
grep -r 'github.com/esm-dev/esm.sh' . | grep -v node_modulesリポジトリと本番環境の依存ファイル (package-lock.json / requirements.txt / go.sum / Gemfile.lock 等) で `github.com/esm-dev/esm.sh` を grep し、稼働しているサービス・バージョンを把握する。
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6Apply patch patch
Upgrade github.com/esm-dev/esm.sh to 0.0.0-20250616164159-0593516c4cfaステージング環境で 0.0.0-20250616164159-0593516c4cfa に上げて回帰テスト → 本番反映。回帰テストはアプリの主要ハッピーパスと、Step 3 で見つけた異常検知の続報チェックを含めること。
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7Post-deployment verification verify
Confirm patched version is live in productionパッチ適用後、ステージングで PoC または同等の悪用パターンを再現して脆弱性が閉じたことを確認。本番では Step 3 と同じログクエリでアラート再発が無いか継続監視。
Affected packages
go
github.com/esm-dev/esm.sh
[{"type":"ECOSYSTEM","events":[{"introduced":"0"},{"fixed":"0.0.0-20250616164159-0593516c4cfa"}]}]