Files
multica/server/internal/daemon/execenv/codex_sandbox.go
Bohan Jiang fbe00ca164 fix(daemon): run Codex unsandboxed on Windows to stop reject-by-policy (MUL-4957) (#5672)
* fix(daemon): run Codex unsandboxed on Windows to stop reject-by-policy (MUL-4957)

Windows has no Landlock/Seatbelt-equivalent filesystem sandbox that the
daemon configures, so the per-task `sandbox_mode = "workspace-write"` it
wrote was unenforceable. Worse than having no sandbox, it pushed Codex
into rejecting non-safe mutation commands "by policy": `multica issue
create` fails with "was rejected by policy" because Codex can neither
sandbox the command nor (under approval_policy = "never") escalate it to
the daemon's auto-approver, so the request never reaches the approver.

Mirror the existing macOS fallback and give Windows danger-full-access so
those commands run. Also generalize the danger-full-access warn log so it
no longer hardcodes "on macOS" and only surfaces the macOS-specific
upgrade hint on macOS (new codexSandboxPolicy.Hint field).

Co-authored-by: multica-agent <github@multica.ai>

* fix(daemon): correct Windows sandbox rationale and respect user windows.sandbox (MUL-4957)

Addresses two review must-fixes on #5672:

1. Correct a false security fact. The comments and log Reason claimed
   Windows has no filesystem sandbox backend. Codex 0.144.5 does ship a
   native Windows sandbox (windows.sandbox = "unelevated"/"elevated"); it
   is experimental with open upstream reliability bugs, so the daemon
   defaults to danger-full-access as a deliberate compatibility choice.
   Enabling the native sandbox is tracked as separate follow-up work.

2. Stop silently downgrading users who opted into isolation. The fallback
   was unconditional. Add codexSandboxPolicyForConfig: on Windows an
   explicit windows.sandbox = unelevated|elevated keeps workspace-write so
   Codex enforces task isolation with the user's chosen backend;
   danger-full-access applies only when windows.sandbox is absent,
   disabled, or unparseable. This is also the branch point for a future
   native-sandbox rollout (flip the default; callers unchanged).

Adds fixture tests locking the priority (user opt-in kept vs. unconfigured
fallback) plus predicate coverage for codexSandboxPolicyForConfig.

Co-authored-by: multica-agent <github@multica.ai>

* fix(daemon): fail closed on undecidable Windows sandbox config, honor -c windows.sandbox (MUL-4957)

Second review round on #5672. Two must-fixes.

1. Undecidable config no longer fails open. The old bool detector collapsed
   "unparseable / invalid value / failed copy" into "unconfigured" and then
   loosened to danger-full-access. Replaced with a tri-state
   (absent/native/undecidable): only exact-lowercase unelevated|elevated (the
   sole values Codex accepts — verified: any other value makes Codex refuse to
   load the config) counts as native; any other present value, unparseable
   TOML, a read error, or a missing per-task config when a shared
   ~/.codex/config.toml exists (i.e. the copy failed) is undecidable and fails
   closed to workspace-write — it never loosens — logged at error level.

2. windows.sandbox set via `-c`/`--config` custom args is now honored. Such
   args never land in config.toml, so config-only detection silently
   downgraded those users' isolation. The effective Codex args (daemon
   defaults + profile-fixed + per-agent custom_args) are threaded through
   PrepareParams/ReuseParams/CodexHomeOptions into the sandbox decision and
   scanned for a windows.sandbox override (inline, two-token, quoted, spaced;
   last-wins).

Also drops issue-status-bound source comments (openai/codex#24098 has since
closed). Adds unit coverage for config/args classification, the fold
precedence (undecidable > native > absent), and the copy-failed fail-closed
path.

Co-authored-by: multica-agent <github@multica.ai>

* fix(daemon): fail closed on config-sync errors and honor shell-quoted -c windows.sandbox (MUL-4957)

Round-3 review must-fixes:

1. resolveWindowsSandboxState now takes the config.toml sync error and a
   tri-state shared-config presence instead of re-stat-ing inside. A failed
   sync (stale/absent per-task copy) or an un-stat-able shared source is
   undecidable and keeps workspace-write, closing the fail-open where a failed
   sync was read as "unconfigured". Splits IO from the decision so the paths
   are unit-testable without faulting the filesystem.

2. The Windows sandbox decision consumes agent.NormalizeCodexLaunchArgs (the
   shared helper buildCodexArgs now uses) so a shell-quoted -c windows.sandbox
   opt-in is normalized identically to launch, instead of being missed by a
   raw-token scan and silently downgraded.

Co-authored-by: multica-agent <github@multica.ai>

* fix(daemon): abort when the Codex sandbox block cannot be written (MUL-4957)

Round-4 review must-fix: ensureCodexSandboxConfig failures were warn-and-continue,
so a computed fail-closed workspace-write policy could stay only in memory while
config.toml kept a stale danger-full-access from a prior run — the decision
failed closed but the effective config failed open.

prepareCodexHomeWithOpts now returns the error, which blocks startup on both
paths: fresh Prepare fails the task, and Reuse leaves env.CodexHome unset, which
configureCodexTaskShellEnvironment already refuses to start.

Regression covers the full reuse scenario (stale danger-full-access + failed
config sync + failed managed-block write); it fails with "got nil" without the
fix.

Co-authored-by: multica-agent <github@multica.ai>

---------

Co-authored-by: Bohan-J <bohan@devv.ai>
Co-authored-by: multica-agent <github@multica.ai>
Co-authored-by: J <j@multica.ai>
2026-07-21 15:18:44 +08:00

516 lines
20 KiB
Go

package execenv
import (
"fmt"
"log/slog"
"os"
"regexp"
"runtime"
"strconv"
"strings"
"github.com/pelletier/go-toml/v2"
)
// Background
//
// On macOS, Codex's Seatbelt sandbox in the `workspace-write` mode silently
// ignores `[sandbox_workspace_write] network_access = true`. DNS resolution is
// blocked at the syscall layer, so processes inside the sandbox see
// `no such host` errors when calling out (for example, `multica issue get`
// hitting the Multica API). See upstream issue openai/codex#10390.
//
// Until a fixed Codex release ships, the per-task Codex config on macOS needs
// to fall back to `sandbox_mode = "danger-full-access"` so the agent can
// actually reach the Multica API. On Linux (and on macOS once the upstream
// fix is released), the normal `workspace-write` + `network_access = true`
// combo is preferred because it keeps the filesystem sandbox intact.
//
// CodexDarwinNetworkAccessFixedVersion is the earliest Codex CLI version in
// which `network_access = true` is honored under Seatbelt on macOS. Bump this
// constant when the upstream fix ships. Empty string means "no known fixed
// release yet — always treat macOS Codex as broken for network access".
const CodexDarwinNetworkAccessFixedVersion = ""
// codexSandboxPolicy describes how the per-task Codex config.toml should
// configure the sandbox.
type codexSandboxPolicy struct {
// Mode is the value written as `sandbox_mode = "..."`.
Mode string
// NetworkAccess controls `[sandbox_workspace_write] network_access`.
// Only meaningful when Mode is "workspace-write".
NetworkAccess bool
// WritableRoots are extra absolute paths added to
// `[sandbox_workspace_write] writable_roots`, granting write access outside
// the sandbox cwd (the task workdir). Under workspace-write (Linux Landlock)
// everything outside the cwd is read-only, which breaks tools that write to
// $HOME (npm, Prisma). The daemon points this at the per-task writable HOME.
// Only emitted when Mode is "workspace-write"; empty on darwin
// danger-full-access, where the filesystem is not sandboxed at all. See
// task_home.go.
WritableRoots []string
// Reason is a short human-readable label used in warn-level logs.
Reason string
// Hint is an optional, actionable remediation surfaced in warn-level logs
// when Mode is danger-full-access. It is empty when there is no generic
// action to surface (e.g. the Windows compatibility fallback, where
// enabling Codex's native sandbox is deferred follow-up work rather than a
// version bump), so the log omits the hint instead of showing an irrelevant
// one.
Hint string
}
// resolveGOOS returns goos, or runtime.GOOS when goos is empty. Callers pass an
// explicit goos in tests; production leaves it empty to use the host platform.
func resolveGOOS(goos string) string {
if goos == "" {
return runtime.GOOS
}
return goos
}
// codexSandboxPolicyFor picks the default policy for the given platform and
// detected Codex CLI version. It is the platform baseline; per-task user config
// can refine it (see codexSandboxPolicyForConfig).
//
// - Linux: workspace-write with network access. Landlock enforces the
// filesystem sandbox and is not affected by the macOS Seatbelt bug.
// - Windows: danger-full-access, as a deliberate compatibility choice.
// Codex ships a native Windows sandbox (windows.sandbox = "unelevated" via
// a Restricted Token, or "elevated"), but it is still experimental with
// known reliability limitations, so the daemon does not enable it by
// default. When no native windows.sandbox is configured, Codex cannot
// enforce workspace-write on Windows (it downgrades to read-only) and then
// rejects non-safe mutation commands "by policy" — e.g. `multica issue
// create` fails — because under approval_policy = "never" the request never
// reaches the daemon's auto-approver. danger-full-access sidesteps that.
// Enabling the native sandbox is tracked as separate follow-up work. See
// MUL-4957. A user who has opted into windows.sandbox (via config.toml or a
// `-c` custom arg) keeps workspace-write instead of this fallback, and an
// undecidable config fails closed; that logic lives in
// codexSandboxPolicyForConfig / resolveWindowsSandboxState.
// - darwin with a version at or above CodexDarwinNetworkAccessFixedVersion:
// workspace-write with network access (upstream bug fixed).
// - darwin otherwise (including when the version is unknown): fall back to
// danger-full-access so the Multica CLI can reach the API.
func codexSandboxPolicyFor(goos, detectedVersion string) codexSandboxPolicy {
if goos == "" {
goos = runtime.GOOS
}
if goos == "windows" {
return codexSandboxPolicy{
Mode: "danger-full-access",
Reason: "codex on windows: compatibility fallback; no native windows.sandbox configured, so workspace-write cannot be enforced (MUL-4957)",
}
}
if goos != "darwin" {
return codexSandboxPolicy{
Mode: "workspace-write",
NetworkAccess: true,
Reason: "non-darwin platform — seatbelt bug does not apply",
}
}
if codexDarwinNetworkAccessFixed(detectedVersion) {
return codexSandboxPolicy{
Mode: "workspace-write",
NetworkAccess: true,
Reason: "codex version includes macOS network_access fix",
}
}
reason := "codex on macOS: seatbelt ignores sandbox_workspace_write.network_access (openai/codex#10390)"
if detectedVersion == "" {
reason += " — version unknown, assuming broken"
}
return codexSandboxPolicy{
Mode: "danger-full-access",
NetworkAccess: false,
Reason: reason,
Hint: codexUpgradeHint(),
}
}
// windowsSandboxConfig is the tri-state of a native Codex Windows sandbox
// selection. It is three-valued (not a bool) so an undecidable config fails
// closed — the daemon never loosens to danger-full-access when it cannot
// confirm the user's intent. See MUL-4957.
type windowsSandboxConfig int
const (
// windowsSandboxAbsent: confidently no native sandbox is selected anywhere,
// so the danger-full-access compatibility fallback is safe to apply.
windowsSandboxAbsent windowsSandboxConfig = iota
// windowsSandboxNative: a valid windows.sandbox = "unelevated"|"elevated"
// is selected, so keep workspace-write and let Codex enforce isolation.
windowsSandboxNative
// windowsSandboxUndecidable: the config could not be read/parsed, or holds
// a windows.sandbox value Codex does not accept. The daemon cannot tell
// whether the user asked for isolation, so it must NOT loosen — fail closed.
windowsSandboxUndecidable
)
// codexSandboxPolicyForConfig returns the platform default from
// codexSandboxPolicyFor for linux/darwin. On Windows it applies the resolved
// native-sandbox state (see resolveWindowsSandboxState): a user who opted into
// windows.sandbox keeps workspace-write, an undecidable config fails closed to
// workspace-write, and only a confidently absent sandbox gets the
// danger-full-access compatibility fallback. See MUL-4957.
//
// This is intentionally the branch point for the eventual native-sandbox
// rollout: flipping the Windows default later means writing windows.sandbox
// ourselves and defaulting winState to native, not restructuring callers.
func codexSandboxPolicyForConfig(goos, detectedVersion string, winState windowsSandboxConfig) codexSandboxPolicy {
if goos == "" {
goos = runtime.GOOS
}
if goos == "windows" {
return codexSandboxPolicyForWindows(winState)
}
return codexSandboxPolicyFor(goos, detectedVersion)
}
// codexSandboxPolicyForWindows maps a resolved native-sandbox state to a
// policy. Native and Undecidable both keep workspace-write (Undecidable is the
// fail-closed case — it never loosens on doubt); only a confidently absent
// native sandbox gets the danger-full-access compatibility fallback.
func codexSandboxPolicyForWindows(state windowsSandboxConfig) codexSandboxPolicy {
switch state {
case windowsSandboxNative:
return codexSandboxPolicy{
Mode: "workspace-write",
NetworkAccess: true,
Reason: "codex on windows: native windows.sandbox configured; keeping workspace-write so Codex enforces task isolation",
}
case windowsSandboxUndecidable:
return codexSandboxPolicy{
Mode: "workspace-write",
NetworkAccess: true,
Reason: "codex on windows: windows.sandbox config undecidable (unreadable/unparseable/invalid); failing closed to workspace-write rather than loosening (MUL-4957)",
}
default: // windowsSandboxAbsent
return codexSandboxPolicy{
Mode: "danger-full-access",
Reason: "codex on windows: compatibility fallback; no native windows.sandbox configured (MUL-4957)",
}
}
}
// windowsSandboxFromConfig classifies the windows.sandbox selection in a
// config.toml body. Codex accepts only the exact-lowercase variants
// "unelevated"/"elevated" and refuses to load a config with any other value, so
// anything else present is treated as undecidable (fail closed) rather than a
// safe "absent". Unparseable TOML is likewise undecidable — Codex would reject
// the same file. An absent windows.sandbox key is a genuine "absent".
func windowsSandboxFromConfig(config string) windowsSandboxConfig {
var probe struct {
Windows struct {
Sandbox string `toml:"sandbox"`
} `toml:"windows"`
}
if err := toml.Unmarshal([]byte(config), &probe); err != nil {
return windowsSandboxUndecidable
}
return classifyWindowsSandboxValue(probe.Windows.Sandbox)
}
// codexConfigOverrideValueRe matches the value token of a Codex `-c` /
// `--config` windows.sandbox override, e.g. `windows.sandbox = "unelevated"`.
// It tolerates whitespace around the dotted key and the `=`, matching Codex's
// own lenient `-c` parsing.
var codexWindowsSandboxOverrideRe = regexp.MustCompile(`^\s*windows\s*\.\s*sandbox\s*=`)
// windowsSandboxFromCustomArgs classifies a native Windows sandbox selection
// passed via Codex `-c windows.sandbox=...` / `--config windows.sandbox=...`
// args. These never land in config.toml (they stay in argv and are applied on
// top of it), so config-only detection would miss them — the MUL-4957 review's
// second must-fix. Mirrors the override-parsing shape in server/pkg/agent's
// buildCodexArgs: inline (`-c=windows.sandbox=x`) and two-token
// (`-c windows.sandbox=x`) forms, last occurrence winning (Codex is last-wins).
func windowsSandboxFromCustomArgs(args []string) windowsSandboxConfig {
state := windowsSandboxAbsent
for i := 0; i < len(args); i++ {
arg := args[i]
flag := arg
value := ""
hasInlineValue := false
if idx := strings.Index(arg, "="); idx > 0 {
flag = arg[:idx]
value = arg[idx+1:]
hasInlineValue = true
}
if flag != "-c" && flag != "--config" {
continue
}
if !hasInlineValue {
if i+1 >= len(args) {
continue
}
i++
value = args[i]
}
if !codexWindowsSandboxOverrideRe.MatchString(value) {
continue
}
// A windows.sandbox override token: take the part after its first `=`.
if eq := strings.Index(value, "="); eq >= 0 {
state = classifyWindowsSandboxValue(value[eq+1:])
}
}
return state
}
// classifyWindowsSandboxValue maps a raw windows.sandbox value (from config.toml
// or a `-c` arg, possibly surrounded by whitespace/quotes) to a tri-state. Only
// the exact-lowercase variants Codex accepts count as native; a present but
// unaccepted value is undecidable (Codex would refuse the config); an empty
// value is absent.
func classifyWindowsSandboxValue(raw string) windowsSandboxConfig {
v := strings.TrimSpace(raw)
v = strings.Trim(v, `"'`)
v = strings.TrimSpace(v)
switch v {
case "":
return windowsSandboxAbsent
case "unelevated", "elevated":
return windowsSandboxNative
default:
return windowsSandboxUndecidable
}
}
// resolveWindowsSandbox folds per-layer states into one. Undecidable wins over
// everything (any broken/ambiguous layer means fail closed), then Native over
// Absent (an opt-in in any layer keeps isolation).
func resolveWindowsSandbox(states ...windowsSandboxConfig) windowsSandboxConfig {
result := windowsSandboxAbsent
for _, s := range states {
if s == windowsSandboxUndecidable {
return windowsSandboxUndecidable
}
if s == windowsSandboxNative {
result = windowsSandboxNative
}
}
return result
}
// codexDarwinNetworkAccessFixed returns true if the given detected version is
// known to honor `network_access = true` under Seatbelt on macOS.
func codexDarwinNetworkAccessFixed(detectedVersion string) bool {
if CodexDarwinNetworkAccessFixedVersion == "" || detectedVersion == "" {
return false
}
fixed, err := parseCodexSemver(CodexDarwinNetworkAccessFixedVersion)
if err != nil {
return false
}
got, err := parseCodexSemver(detectedVersion)
if err != nil {
return false
}
return !got.lessThan(fixed)
}
// codexUpgradeHint returns a short, actionable hint for users running a Codex
// version that suffers from the macOS network_access bug.
func codexUpgradeHint() string {
return "upgrade Codex CLI (e.g. `brew upgrade codex` or `npm i -g @openai/codex`) once a release including openai/codex#10390 is available to restore workspace-write + network_access"
}
// multicaManagedBeginMarker / multicaManagedEndMarker delimit the block the
// daemon writes into the per-task config.toml. Everything between the markers
// is owned by the daemon and will be rewritten idempotently; anything outside
// the markers is preserved as-is.
const (
multicaManagedBeginMarker = "# BEGIN multica-managed (do not edit; regenerated by daemon)"
multicaManagedEndMarker = "# END multica-managed"
)
// renderMulticaManagedBlock produces the managed block for the given policy.
//
// The block contains only top-level key=value assignments — no `[table]`
// headers — and uses TOML dotted-key syntax for nested values. This is
// important because the block is inserted into a user-owned config.toml:
//
// - If the block opened a `[sandbox_workspace_write]` header, any user
// content that happened to sit below it would be silently reparented into
// that table.
// - If the block were appended after a file that already ends inside some
// other table (e.g. `[permissions.multica]`), a bare `sandbox_mode = ...`
// key would be parsed as a child of that preceding table.
//
// Keeping the block as pure top-level dotted-key assignments, and placing it
// at the top of the file (see upsertMulticaManagedBlock), avoids both traps.
func renderMulticaManagedBlock(policy codexSandboxPolicy) string {
var b strings.Builder
b.WriteString(multicaManagedBeginMarker)
b.WriteString("\n")
b.WriteString(fmt.Sprintf("sandbox_mode = %q\n", policy.Mode))
if policy.Mode == "workspace-write" {
b.WriteString(fmt.Sprintf("sandbox_workspace_write.network_access = %t\n", policy.NetworkAccess))
if len(policy.WritableRoots) > 0 {
b.WriteString("sandbox_workspace_write.writable_roots = ")
b.WriteString(renderTomlStringArray(policy.WritableRoots))
b.WriteString("\n")
}
}
b.WriteString(multicaManagedEndMarker)
b.WriteString("\n")
return b.String()
}
// renderTomlStringArray renders a TOML inline array of basic strings, e.g.
// ["/a/b", "/c d"]. Each element is quoted with Go's %q, whose escaping (\\,
// \", \n, …) is a subset of TOML basic-string escaping, so ordinary
// filesystem paths — including ones with spaces — round-trip safely.
func renderTomlStringArray(vals []string) string {
parts := make([]string, len(vals))
for i, v := range vals {
parts[i] = fmt.Sprintf("%q", v)
}
return "[" + strings.Join(parts, ", ") + "]"
}
// managedBlockRe captures the daemon-owned block (including the surrounding
// markers and any trailing blank lines) so it can be replaced idempotently.
// `\n*` rather than `\n?` so reruns don't accumulate blank lines when the
// block coexists with another managed block (e.g. multi-agent) in the file.
var managedBlockRe = regexp.MustCompile(
`(?ms)^` + regexp.QuoteMeta(multicaManagedBeginMarker) +
`.*?^` + regexp.QuoteMeta(multicaManagedEndMarker) + `\n*`)
// upsertMulticaManagedBlock returns the config content with the multica-managed
// block placed at the very top of the file. Any previously written managed
// block is removed in place; user content outside the markers is preserved.
//
// The block is always hoisted to the top (rather than replaced in place or
// appended to EOF) so that its top-level keys are parsed at the TOML root,
// regardless of whether the user's config ends inside a table like
// `[permissions.multica]` or `[profiles.foo]`. Combined with the dotted-key
// form used by renderMulticaManagedBlock, this means the managed block neither
// leaks into nor inherits from any surrounding table scope.
func upsertMulticaManagedBlock(content string, policy codexSandboxPolicy) string {
// Drop any previously written managed block (wherever it sits).
content = managedBlockRe.ReplaceAllString(content, "")
block := renderMulticaManagedBlock(policy)
// Trim leading blank lines left behind by the removal so we don't grow
// the file on every idempotent rewrite.
content = strings.TrimLeft(content, "\n")
if content == "" {
return block
}
return block + "\n" + content
}
// stripLegacySandboxDirectives removes top-level `sandbox_mode = ...` lines
// and any `[sandbox_workspace_write]` section that would otherwise conflict
// with the managed block. This lets the daemon migrate tasks whose config.toml
// was produced by an older daemon that wrote those values inline.
//
// Only top-level entries are stripped; anything under an unrelated section
// header (like `[permissions.foo]`) is preserved untouched.
func stripLegacySandboxDirectives(content string) string {
lines := strings.Split(content, "\n")
out := make([]string, 0, len(lines))
inLegacyWorkspaceWrite := false
for _, line := range lines {
trimmed := strings.TrimSpace(line)
if strings.HasPrefix(trimmed, "[") {
// Entering a new section. Exit legacy-tracking if we were in one.
inLegacyWorkspaceWrite = trimmed == "[sandbox_workspace_write]"
if inLegacyWorkspaceWrite {
continue
}
out = append(out, line)
continue
}
if inLegacyWorkspaceWrite {
// Drop the legacy section body until the next section.
continue
}
if strings.HasPrefix(trimmed, "sandbox_mode") {
// Drop legacy top-level sandbox_mode declarations.
continue
}
out = append(out, line)
}
return strings.Join(out, "\n")
}
// ensureCodexSandboxConfig writes the multica-managed sandbox block into the
// given config.toml according to the policy. It is idempotent: running it
// twice produces the same file contents. The file is created if it doesn't
// exist.
//
// The function logs (at warn level) when it falls back to danger-full-access
// on macOS so the incident is visible in daemon logs.
func ensureCodexSandboxConfig(configPath string, policy codexSandboxPolicy, detectedVersion string, logger *slog.Logger) error {
data, err := os.ReadFile(configPath)
if err != nil && !os.IsNotExist(err) {
return fmt.Errorf("read config.toml: %w", err)
}
existing := string(data)
// Drop inline sandbox_mode / [sandbox_workspace_write] from older daemon
// versions so they don't collide with the managed block.
if existing != "" && !managedBlockRe.MatchString(existing) {
existing = stripLegacySandboxDirectives(existing)
}
updated := upsertMulticaManagedBlock(existing, policy)
if updated == string(data) {
return nil
}
if policy.Mode == "danger-full-access" && logger != nil {
version := detectedVersion
if version == "" {
version = "unknown"
}
attrs := []any{
"reason", policy.Reason,
"codex_version", version,
"config_path", configPath,
}
if policy.Hint != "" {
attrs = append(attrs, "hint", policy.Hint)
}
logger.Warn("codex sandbox: running unsandboxed with danger-full-access", attrs...)
}
if err := os.WriteFile(configPath, []byte(updated), 0o644); err != nil {
return fmt.Errorf("write config.toml: %w", err)
}
return nil
}
// --- small semver helper, scoped to this package to avoid an import cycle
// with server/pkg/agent. The agent package already has a similar parser; we
// duplicate the minimal bits here because execenv cannot depend on agent.
type codexSemver struct {
Major, Minor, Patch int
}
var codexSemverRe = regexp.MustCompile(`v?(\d+)\.(\d+)\.(\d+)`)
func parseCodexSemver(raw string) (codexSemver, error) {
m := codexSemverRe.FindStringSubmatch(raw)
if m == nil {
return codexSemver{}, fmt.Errorf("cannot parse version %q", raw)
}
maj, _ := strconv.Atoi(m[1])
min, _ := strconv.Atoi(m[2])
pat, _ := strconv.Atoi(m[3])
return codexSemver{Major: maj, Minor: min, Patch: pat}, nil
}
func (v codexSemver) lessThan(o codexSemver) bool {
if v.Major != o.Major {
return v.Major < o.Major
}
if v.Minor != o.Minor {
return v.Minor < o.Minor
}
return v.Patch < o.Patch
}