AI-assisted drafting and verification; maintainer review and responsibility retained. Signed-off-by: Cole Speelman <crspeelman@gmail.com>
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Security evidence ledger
This ledger records what was actually inspected and executed. It is a maintainer-led self-assessment, not an independent audit, certification, formal verification, or guarantee that no vulnerability exists.
Assessment identity
| Field | Value |
|---|---|
| Assessment date | 2026-08-12 |
| Evidence sets | Clean security self-assessment plus exact-commit Beta 1 platform, release, signing, and installation checks |
| Public commit | b7a84054d755e42285e50298e41e47f06a8325a5 |
| Public tree | be9e118e38dfebed19f60403ededdadabe07d2aa |
| Maintainer-run environments | Windows 11/amd64 on NTFS; Ubuntu 20.04/amd64 under WSL2 on ext4; supplementary pre-beta Linux/amd64 server containers |
| Supported Go lanes exercised | Go 1.25.12 and Go 1.26.5 |
| Declared minimum Go | Go 1.25 |
| Assessor | Project maintainer with AI-assisted code review; human responsibility retained |
The named Windows and WSL2 platform runs used the exact public commit and tree above. The isolated server-container matrix preceded the final candidate and is retained only as supplementary Linux evidence. Hostnames, network addresses, account names, private paths, private repository identities, and private commit mappings are intentionally absent from this public ledger. Native macOS execution remains pending and is provisional for the beta.
Beta 2 compiler publication addendum
This addendum records the additive language-server release without replacing
the Beta 1 assessment identity above. Compiler tag v1.0.0-beta.2 is a signed
annotated tag whose peeled public commit is
1082d9d61eb84e67ca4012ff9ee3898ee37ac6fd and whose public tree is
01d5702928f3d9c9fb0e3d2213530add7ff94745. The tag object is
f091cd67f688ba5ee784b18f5a407a9326df7ab2.
Beta 2 changed only the development compiler. No sando/v1.0.0-beta.2 tag was
created. The release preflight compared the retained runtime tag
sando/v1.0.0-beta.1 with the Beta 2 commit and verified that their sando
subtrees were byte-identical at tree
3035e948f77f160d399089be3ae80c88bab3fed2.
The exact public Beta 2 source passed the full race-enabled verifier and the
compiler-only release preflight on executed Linux with Go 1.26.5. Fresh native
Windows checkouts on NTFS passed the full race-enabled PowerShell verifier,
focused process-tree/watcher/consumer tests, candidate-stamped version checks,
and deterministic generation on Go 1.25.12 and Go 1.26.5. Clean isolated
GOPROXY=direct and public-proxy-only installs produced
features:["lsp-stdio"]; the public-proxy path also verified the retained
runtime through sum.golang.org. Native macOS execution remains provisional.
The Beta 2 language server is additive development tooling. Its tested
security boundary includes protocol-only stdout; bounded header and message
framing; integer/string JSON-RPC identifiers; full-document in-memory overlays;
UTF-16 conversion at the protocol boundary; cancellation and shutdown;
workspace, nested-module, VCS, symlink, and file-count boundaries; and explicit
no-write/no-network/no-Go-tool execution tests. Fuzz targets exercise bounded
JSON-RPC framing and document changes. These checks do not make an untrusted
workspace safe to execute: himesan dev and project commands remain trusted
local-code operations, while himesan lsp --stdio performs analysis only.
Observed security self-assessment evidence
These commands were observed on clean remediated source during the dated assessment. Except where the exact-commit platform matrix below says otherwise, the table does not claim that every command was rerun on the named public baseline commit.
| Property examined | Enforcement or test surface | Result observed on 2026-08-12 |
|---|---|---|
| Root correctness | go test -count=1 ./... |
Pass |
| Concurrent access | go test -race -count=1 ./... |
Pass |
| Runtime concurrency | (cd sando && go test -race -count=1 ./...) |
Pass |
| Standard static analysis | go vet ./... and runtime equivalent |
Pass |
| Reachable known vulnerabilities | govulncheck@v1.6.0 on both modules |
No vulnerabilities found on 2026-08-12 |
| Dependency surface | go list -m -json all in both modules |
Zero third-party module requirements |
| Statement coverage | Go cover profiles on remediated source | compiler 75.2%; devserver 80.2%; runtime 96.6% |
| Parser robustness smoke | Two bounded Go fuzz targets | Pass; no panic found |
| Deterministic generation | repeated generate/check/hash/mtime gates | Pass |
| Writer failures | runtime error/short-write/nil-writer tests | Pass |
| HTML text/attribute/RCDATA escaping | compiler and runtime adversarial cases | Pass for enumerated cases |
| URL scheme handling | ordinary/trusted URL test matrix | Pass for enumerated cases |
| Filesystem boundaries | symlink, nested-module, VCS, ownership, stale-output tests | Pass for tested cases; see open findings |
| Development proxy browser boundary | Host, Origin, Fetch Metadata, CSP, fragment and response tests | Pass for tested cases |
| Platform behavior | Exact-candidate native Windows and executed Linux matrices; macOS cross-compilation | Windows/Linux pass for tested lanes; native macOS pending |
Coverage measures statements executed by tests. It is not branch completeness and is not evidence that the executed behavior is secure.
govulncheck reports vulnerabilities known to the Go vulnerability database
and reachable through its analysis. A clean result cannot detect unknown flaws,
design errors, or vulnerabilities outside its model.
Beta 1 native compatibility matrix
These are maintainer-run, point-in-time results, not continuous CI and not an independent audit.
| Environment | Go lanes | Commands and focused evidence | Result and limits |
|---|---|---|---|
| Windows 11/amd64, NTFS | 1.25.12, 1.26.5 | Native PowerShell verifier with race; root/runtime tests, vet, trimpath build, freshness, two generation passes, process-tree cleanup, watcher boundaries, and temporary consumer compilation | Pass. Symlink-output rejection skipped because the test account lacked symlink privilege; the read-only-directory case is POSIX-only |
| Ubuntu 20.04/amd64 under WSL2, native ext4 checkout | 1.25.12, 1.26.5 | Race-enabled verifier; root/runtime tests, vet, build, two generation passes, ten focused filesystem cases, five focused development-process/watcher cases, and license check | Pass. This is Linux execution under WSL2, not bare-metal or Linux/arm64 evidence |
| Linux/amd64 server containers | 1.25.12, 1.26.5 | Earlier pre-beta root/runtime tests, vet, builds, race, licensing, and deterministic generation in sequential isolated official Go containers | Pass on the earlier baseline only. Container resources were capped at 1 CPU and 2 GiB; this is supplementary evidence, not an exact Beta 1 lane or Linux/arm64 evidence |
| macOS | — | Cross-compilation only | Native maintainer execution pending; provisional for Beta 1 |
The generated golden basic.sando.go was 1,399 bytes and had SHA-256
63fa75a3049a3a8a12d769d7f9b6b510dfe763baacf706775b75cef2c57a984f
on every tested Windows and Linux lane. Repeated generation also preserved its
timestamp. This demonstrates cross-host agreement for one compiler-owned
fixture, not equivalence for every possible template.
Mac learners and Go developers are warmly invited to report ordinary
compatibility results with macOS version, architecture, go version, exact
command, and a minimal reproduction. Suspected vulnerabilities use the private
route in SECURITY.md. Community reports help find gaps;
maintainers remain responsible for reproducing security-relevant behavior,
triage, remediation, and release decisions.
Security-relevant design evidence
Production boundary
The production sando module contains rendering contracts and contextual write
helpers. It contains no HTTP server, router, middleware, template discovery,
development proxy, plugin loader, or production process manager. Both compiler
and runtime modules currently have no third-party Go module requirements.
Compiler behavior
Compilation builds and formats outputs in memory before generation writes. Recursive discovery rejects or skips observed symlinks, nested modules, VCS trees, vendor trees, and detected filesystem crossings. Existing non-owned, symlink, and non-regular output files are rejected. Each changed file uses an atomic replacement primitive; the whole set is not a filesystem transaction if a later replacement fails.
generate and check do not run project code, invoke the Go toolchain, fetch
dependencies, or edit module metadata. himesan dev is intentionally separate:
it builds and executes trusted project code and may fetch modules under the
user's normal Go configuration.
Output contexts
The compiler accepts dynamic values only in its enumerated contexts. It rejects dynamic markup construction, unquoted attributes, event-handler values, dynamic style attributes, unsupported URL lists, foreign content, meta refresh, malformed tags, and unbalanced generated components. Runtime helpers escape ordinary text/attributes, validate ordinary whole-URL schemes before writing, and escape every trusted wrapper in RCDATA.
Script and style output require opaque trusted types. Those types deliberately move responsibility to trusted application code; they are not sanitizers.
Reproduction commands
Run from a clean canonical checkout. Networked scans contact the Go module proxy and vulnerability database.
go version
git status --short
git rev-parse HEAD^{commit} HEAD^{tree}
./scripts/check-licenses.sh
HIMESAN_RACE=1 ./scripts/verify.sh
go test -count=1 -cover ./...
(cd sando && go test -count=1 -cover ./...)
go run golang.org/x/vuln/cmd/govulncheck@v1.6.0 ./...
(cd sando && go run golang.org/x/vuln/cmd/govulncheck@v1.6.0 ./...)
go test ./internal/compiler -run '^$' \
-fuzz '^FuzzCompileNeverPanics$' -fuzztime=20s
go test ./internal/compiler -run '^$' \
-fuzz '^FuzzGoDelimiterNeverPanics$' -fuzztime=20s
./scripts/release-check.sh --version v1.0.0-beta.1
./scripts/verify-public-install.sh --version v1.0.0-beta.1
The fuzz targets currently assert process robustness and result bounds. They do not yet prove semantic HTML safety.
Assessment findings and remediation status
The 2026-08-12 assessment identified six concrete gaps. Their status in the named public Beta 1 source is recorded here:
| Finding | Current remediation | Executable evidence |
|---|---|---|
| Generated code named an ABI but did not enforce the exact contract | Generated code now requires the version-specific sando.ABISandoV1 symbol |
TestGeneratedCodeRequiresVersionedRuntimeABIMarker; TestRuntimeABIMarker |
Deleted or renamed sources could leave owned .sando.go orphans invisible to directory-level check |
Directory discovery now reports owned outputs whose adjacent source is absent or non-regular and blocks the operation before writes | TestDirectoryOperationsRejectOrphanedOwnedOutputBeforeWrites |
| Component-context prose included arbitrary handwritten implementations in the generated-component guarantee | Runtime documentation, policy, and threat model now classify handwritten components as trusted output capabilities | API documentation plus policy review; generated-balance tests retain their narrower scope |
| An exited development child left its former upstream selected | Exit notification now clears only the matching active target immediately, independent of the watcher poll interval | TestClearTargetOnlyClearsSelectedUpstream; TestSupervisorClearsTargetWhenCurrentApplicationExits |
| Trusted-value warnings were described more broadly than their analysis supports | Policy and threat-model copy now call them best-effort lexical audit hints rather than type or taint analysis | Documentation assertion and review |
Public copy implied a completed systematic html/template differential campaign |
Policy and public security copy now describe fixed adversarial cases and list systematic differential work as open | Documentation assertion and review |
The exact public Beta 1 source passed the race-enabled repository verifier, sanitized-snapshot tests, both bounded fuzz-smoke targets, compiler/runtime known-vulnerability scans, candidate-version provenance checks, native Windows and executed Linux matrices, and Windows/macOS cross-compilation on 2026-08-12. Signed annotated runtime and compiler tags were then published from that commit in that order. Fresh runtime-first installation passed through both direct Git resolution and the public Go proxy after normal proxy propagation. Native macOS and the other gaps below remain separate release decisions.
Open assurance gaps
- delivery to
security@sandwichhime.comis owner-confirmed through a controlled domain catch-all; encrypted reporting, documented backup, and recovery rehearsal remain incomplete; - the signed annotated Beta tags and their common peeled commit were verified; prebuilt-artifact signing, checksums, SBOM, reproducible provenance, and key recovery remain incomplete;
- native macOS, Linux/arm64, and Windows/arm64 execution remain outstanding;
- Windows symlink rejection was not natively exercised because the test account lacked symlink privilege;
- browser-parser differential and semantic property testing need expansion;
- compiler input size, CPU, and memory have no built-in hard budget;
- filesystem checks do not defend against a hostile local actor racing path components between inspection and use;
- the watcher is a convenience mechanism, not a filesystem-integrity monitor;
- human-readable diagnostics can include hostile local filenames or child-tool output and should not be treated as a sanitized log protocol;
- development CSP rewriting is convenience, not production CSP validation;
- deliberately detached child descendants may evade process-tree cleanup;
- rendering has no built-in recursion, output-size, allocation, CPU, panic, or deadline enforcement;
- static cycle detection and trust-use warnings are best-effort analyses; and
- the project has no independent security audit or bug-bounty program.
Interpreting this ledger
“Pass” means the named command or case produced its expected result in the named environment on the assessment date. It does not mean “secure.” Confidence comes from keeping the boundary small, making risky capabilities explicit, preserving ordinary generated Go for review, publishing reproducible tests, recording failures, and correcting claims when evidence is weaker than the prose.