check / check (push) Failing after 2s
mfer gen now writes index.mf instead of .index.mf, the name fetch requests and the README calls the standard filename. Given a directory, check, freshen, list and export look only for index.mf; .index.mf is no longer recognized. Because index.mf is not hidden, gen and freshen now leave the manifest they write out of its own listing by file identity (os.SameFile), so it is recognized however its path is spelled, through a symlink included, while an ordinary file of the same name elsewhere in the tree is still listed. Model: opus-5-5
339 lines
9.0 KiB
Go
339 lines
9.0 KiB
Go
// Package cli implements the mfer command-line interface.
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package cli
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import (
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"context"
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"encoding/hex"
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"errors"
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"fmt"
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"io"
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"math"
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"path/filepath"
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"strconv"
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"strings"
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"time"
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"github.com/dustin/go-humanize"
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"github.com/spf13/afero"
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"github.com/urfave/cli/v2"
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"sneak.berlin/go/mfer/internal/log"
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"sneak.berlin/go/mfer/mfer"
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)
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// fingerprintHexLen is the length of a full GPG key fingerprint in hex
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// characters.
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const fingerprintHexLen = 40
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var (
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// errNoManifestFound indicates no manifest file was found in the
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// searched directory.
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errNoManifestFound = errors.New("no manifest found")
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// errInvalidFingerprint indicates a malformed --require-signature
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// fingerprint argument. The length is spliced in from
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// fingerprintHexLen so the two cannot drift apart.
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errInvalidFingerprint = errors.New(
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"invalid fingerprint: must be exactly " +
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strconv.Itoa(fingerprintHexLen) + " hex characters")
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// errManifestNotSigned indicates a signature was required but the
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// manifest is unsigned. It is wrapped mid-sentence so that the
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// rendered message stays exactly as mfer has always printed it.
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errManifestNotSigned = errors.New("manifest is not signed")
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// errSignerMismatch indicates the embedded signing key fingerprint
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// does not match the required signer. Its text is the mid-sentence
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// fragment of the rendered message, which users grep for in CI and
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// which must therefore not change; match it with errors.Is rather
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// than by reading it.
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errSignerMismatch = errors.New("does not match required")
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)
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// safeUint64 converts a non-negative int64 to uint64, clamping negative
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// values to zero.
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func safeUint64(n int64) uint64 {
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if n < 0 {
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return 0
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}
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return uint64(n)
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}
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// safeRateUint64 converts a bytes-per-second rate to uint64 for display.
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//
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// A rate is computed as bytes/elapsed, so it is +Inf when the elapsed
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// time rounds to zero and NaN when zero bytes were processed in zero
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// time. Neither has a defined conversion to uint64, and on amd64 +Inf
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// converts to a number that renders as "8.0 EiB/s"; both display as zero
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// instead.
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func safeRateUint64(rate float64) uint64 {
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if math.IsNaN(rate) || math.IsInf(rate, 0) || rate <= 0 {
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return 0
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}
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if rate >= math.MaxUint64 {
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return math.MaxUint64
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}
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return uint64(rate)
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}
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// findManifest returns the path of the manifest with the default name in
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// dir, or an error if there is none.
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func findManifest(fs afero.Fs, dir string) (string, error) {
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path := filepath.Join(dir, defaultManifestName)
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exists, err := afero.Exists(fs, path)
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if err != nil {
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return "", err
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}
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if !exists {
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return "", fmt.Errorf("%w in %s (looked for %s)",
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errNoManifestFound, dir, defaultManifestName)
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}
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return path, nil
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}
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// fetchManifestToTemp downloads a manifest URL to a temporary file and
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// returns the temp file path. The caller is responsible for removing it.
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func (mfa *CLIApp) fetchManifestToTemp(url string) (string, error) {
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rc, fetchErr := mfa.openManifestReader(url)
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if fetchErr != nil {
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return "", fetchErr
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}
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tmpFile, tmpErr := afero.TempFile(mfa.Fs, "", "mfer-manifest-*.mf")
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if tmpErr != nil {
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_ = rc.Close()
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return "", fmt.Errorf("failed to create temp file: %w", tmpErr)
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}
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tmpPath := tmpFile.Name()
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_, cpErr := io.Copy(tmpFile, rc)
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_ = rc.Close()
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_ = tmpFile.Close()
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if cpErr != nil {
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_ = mfa.Fs.Remove(tmpPath)
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return "", fmt.Errorf("failed to download manifest: %w", cpErr)
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}
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return tmpPath, nil
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}
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// verifyRequiredSigner enforces the --require-signature fingerprint
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// against the manifest's embedded signing key.
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func verifyRequiredSigner(
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ctx context.Context, chk *mfer.Checker, requiredSigner string,
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) error {
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// Validate fingerprint format: must be exactly 40 hex characters
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if len(requiredSigner) != fingerprintHexLen {
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return fmt.Errorf("%w, got %d", errInvalidFingerprint, len(requiredSigner))
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}
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_, err := hex.DecodeString(requiredSigner)
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if err != nil {
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return fmt.Errorf("invalid fingerprint: must be valid hex: %w", err)
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}
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if !chk.IsSigned() {
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return fmt.Errorf("%w, but signature from %s is required",
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errManifestNotSigned, requiredSigner)
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}
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// Extract fingerprint from the embedded public key (not from the
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// signer field). This validates the key is importable and gets its
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// actual fingerprint.
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embeddedFP, err := chk.ExtractEmbeddedSigningKeyFP(ctx)
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if err != nil {
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return fmt.Errorf(
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"failed to extract fingerprint from embedded signing key: %w", err)
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}
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// Compare fingerprints - must be exact match (case-insensitive)
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if !strings.EqualFold(embeddedFP, requiredSigner) {
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return fmt.Errorf("embedded signing key fingerprint %s %w %s",
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embeddedFP, errSignerMismatch, requiredSigner)
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}
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log.Infof("manifest signature verified (signer: %s)", embeddedFP)
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return nil
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}
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// reportCheckProgress renders progress updates until the channel closes.
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func reportCheckProgress(progress <-chan mfer.CheckStatus) {
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for status := range progress {
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if status.ETA > 0 {
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log.Progressf("Checking: %d/%d files, %s/s, ETA %s, %d failures",
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status.CheckedFiles,
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status.TotalFiles,
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humanize.IBytes(safeRateUint64(status.BytesPerSec)),
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status.ETA.Round(time.Second),
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status.Failures)
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} else {
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log.Progressf("Checking: %d/%d files, %s/s, %d failures",
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status.CheckedFiles,
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status.TotalFiles,
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humanize.IBytes(safeRateUint64(status.BytesPerSec)),
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status.Failures)
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}
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}
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log.ProgressDone()
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}
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// countCheckFailures consumes check results, counting and logging
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// failures, then closes done.
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func countCheckFailures(
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results <-chan mfer.Result, failures *int64, done chan<- struct{},
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) {
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for result := range results {
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if result.Status != mfer.StatusOK {
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*failures++
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log.Infof("%s: %s (%s)", result.Status, result.Path, result.Message)
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} else {
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log.Verbosef("%s: %s", result.Status, result.Path)
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}
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}
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close(done)
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}
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// findExtraFiles reports files present on disk but absent from the
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// manifest, counting each as a failure.
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func findExtraFiles(ctx *cli.Context, chk *mfer.Checker, failures *int64) error {
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extraResults := make(chan mfer.Result, 1)
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extraDone := make(chan struct{})
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go func() {
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for result := range extraResults {
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*failures++
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log.Infof("%s: %s (%s)", result.Status, result.Path, result.Message)
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}
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close(extraDone)
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}()
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err := chk.FindExtraFiles(ctx.Context, extraResults)
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if err != nil {
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return fmt.Errorf("failed to check for extra files: %w", err)
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}
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<-extraDone
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return nil
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}
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// runCheck runs the manifest check with progress and result reporting
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// and returns the number of failures.
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func runCheck(ctx *cli.Context, chk *mfer.Checker, showProgress bool) (int64, error) {
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// Set up results channel
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results := make(chan mfer.Result, 1)
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// Set up progress channel
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var progress chan mfer.CheckStatus
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if showProgress {
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progress = make(chan mfer.CheckStatus, 1)
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go reportCheckProgress(progress)
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}
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// Process results in a goroutine
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var failures int64
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done := make(chan struct{})
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go countCheckFailures(results, &failures, done)
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// Run check
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err := chk.Check(ctx.Context, results, progress)
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if err != nil {
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return 0, fmt.Errorf("check failed: %w", err)
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}
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// Wait for results processing to complete
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<-done
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// Check for extra files if requested
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if ctx.Bool("no-extra-files") {
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err = findExtraFiles(ctx, chk, &failures)
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if err != nil {
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return 0, err
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}
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}
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return failures, nil
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}
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func (mfa *CLIApp) checkManifestOperation(ctx *cli.Context) error {
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log.Debug("checkManifestOperation()")
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manifestPath, err := mfa.resolveManifestArg(ctx)
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if err != nil {
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return fmt.Errorf("check: %w", err)
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}
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// URL manifests need to be downloaded to a temp file for the checker
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if isHTTPURL(manifestPath) {
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tmpPath, tmpErr := mfa.fetchManifestToTemp(manifestPath)
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if tmpErr != nil {
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return fmt.Errorf("check: %w", tmpErr)
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}
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defer func() { _ = mfa.Fs.Remove(tmpPath) }()
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manifestPath = tmpPath
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}
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basePath := ctx.String("base")
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showProgress := ctx.Bool("progress")
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log.Infof("checking manifest %s with base %s", manifestPath, basePath)
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// Create checker
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chk, err := mfer.NewChecker(manifestPath, basePath, mfa.Fs)
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if err != nil {
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return fmt.Errorf("failed to load manifest: %w", err)
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}
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// Check signature requirement
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requiredSigner := ctx.String("require-signature")
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if requiredSigner != "" {
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err = verifyRequiredSigner(ctx.Context, chk, requiredSigner)
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if err != nil {
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return err
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}
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}
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log.Infof("manifest contains %d files, %s", chk.FileCount(),
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humanize.IBytes(safeUint64(int64(chk.TotalBytes()))))
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failures, err := runCheck(ctx, chk, showProgress)
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if err != nil {
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return err
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}
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elapsed := time.Since(mfa.startupTime).Seconds()
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rate := float64(chk.TotalBytes()) / elapsed
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if failures == 0 {
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log.Infof("checked %d files (%s) in %.1fs (%s/s): all OK",
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chk.FileCount(), humanize.IBytes(safeUint64(int64(chk.TotalBytes()))),
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elapsed, humanize.IBytes(safeRateUint64(rate)))
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} else {
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log.Infof("checked %d files (%s) in %.1fs (%s/s): %d failed",
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chk.FileCount(), humanize.IBytes(safeUint64(int64(chk.TotalBytes()))),
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elapsed, humanize.IBytes(safeRateUint64(rate)), failures)
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}
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if failures > 0 {
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mfa.exitCode = 1
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}
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return nil
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}
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