mirror of
https://github.com/shankar0123/certctl.git
synced 2026-06-07 22:51:30 +00:00
21aeed4f4e
Phase 0 closure (Path B2, post-rewrite):
addlicense sweep — adds the canonical certctl LLC copyright + BUSL-1.1
SPDX header to every production Go file. Template:
// Copyright 2026 certctl LLC. All rights reserved.
// SPDX-License-Identifier: BUSL-1.1
Coverage: 338 / 338 production Go files (cmd/ + internal/, excluding
*_test.go and **/testdata/**). Pre-sweep coverage was 22 / 338 (6.5%);
post-sweep is 338 / 338 (100%).
Normalized 22 pre-existing legacy headers (`// Copyright (c) certctl`
+ `// SPDX-License-Identifier: BSL-1.1`) and 1 file using a
`Certctl Contributors` attribution. The legacy SPDX ID `BSL-1.1`
is non-standard; the official SPDX identifier for Business Source
License 1.1 is `BUSL-1.1` (capital U). All 338 files now share the
canonical form.
Generated via:
addlicense -c "certctl LLC" -y 2026 \
-f cowork/legal/copyright-header.tpl \
-ignore '**/testdata/**' -ignore '**/*_test.go' \
cmd/ internal/
Verification:
find cmd internal -name '*.go' -not -name '*_test.go' \
-not -path '*/testdata/*' \
-exec grep -L '^// Copyright 2026 certctl LLC' {} \; | wc -l
Returns: 0
gofmt clean. Header additions are comments only, no compile impact.
Closes: cowork/certctl-architecture-diligence-audit.html#fix-RED-4
129 lines
4.0 KiB
Go
129 lines
4.0 KiB
Go
// Copyright 2026 certctl LLC. All rights reserved.
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// SPDX-License-Identifier: BUSL-1.1
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package signer
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import (
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"context"
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"crypto"
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"crypto/ecdsa"
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"crypto/rand"
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"crypto/rsa"
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"errors"
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"fmt"
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"sync"
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)
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// MemoryDriver holds keys in process memory. It is intended for tests
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// that need a Signer-shaped object without touching the filesystem
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// or any external infrastructure. It is NOT for production use:
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// keys disappear when the process exits, no hardening of any kind is
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// applied, and concurrent Generate calls have no rate limit.
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//
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// The driver is safe for concurrent use; an internal mutex guards the
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// keys map.
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type MemoryDriver struct {
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mu sync.Mutex
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keys map[string]crypto.Signer
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// nextID is incremented on every successful Generate; the returned
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// ref string is "mem-<nextID>" so multiple Generates produce
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// distinct refs even when callers don't supply one.
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nextID int
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}
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// NewMemoryDriver returns a freshly initialized MemoryDriver. Callers
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// holding multiple drivers can rely on each one being independent —
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// keys from driver A are not visible to driver B.
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func NewMemoryDriver() *MemoryDriver {
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return &MemoryDriver{keys: map[string]crypto.Signer{}}
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}
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// Name implements Driver.
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func (d *MemoryDriver) Name() string { return "memory" }
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// Load implements Driver. Returns the Signer for the given ref, or an
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// error if the ref was never produced by Generate / Adopt.
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func (d *MemoryDriver) Load(ctx context.Context, ref string) (Signer, error) {
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if ref == "" {
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return nil, errors.New("signer.MemoryDriver.Load: empty ref")
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}
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d.mu.Lock()
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defer d.mu.Unlock()
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key, ok := d.keys[ref]
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if !ok {
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return nil, fmt.Errorf("signer.MemoryDriver.Load: unknown ref %q", ref)
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}
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return Wrap(key)
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}
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// Generate implements Driver. Creates a fresh in-memory key with the
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// requested algorithm and returns the wrapped Signer plus the ref
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// string callers can pass to a subsequent Load.
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func (d *MemoryDriver) Generate(ctx context.Context, alg Algorithm) (Signer, string, error) {
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if err := ctx.Err(); err != nil {
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return nil, "", fmt.Errorf("signer.MemoryDriver.Generate: %w", err)
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}
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var key crypto.Signer
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switch alg {
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case AlgorithmRSA2048, AlgorithmRSA3072, AlgorithmRSA4096:
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bits := rsaBitsFor(alg)
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k, err := rsa.GenerateKey(rand.Reader, bits)
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if err != nil {
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return nil, "", fmt.Errorf("signer.MemoryDriver.Generate: rsa keygen %d: %w", bits, err)
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}
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key = k
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case AlgorithmECDSAP256, AlgorithmECDSAP384:
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curve := ecCurveFor(alg)
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k, err := ecdsa.GenerateKey(curve, rand.Reader)
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if err != nil {
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return nil, "", fmt.Errorf("signer.MemoryDriver.Generate: ecdsa keygen %s: %w", curve.Params().Name, err)
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}
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key = k
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default:
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return nil, "", fmt.Errorf("signer.MemoryDriver.Generate: %w: %s", ErrUnsupportedAlgorithm, alg)
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}
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d.mu.Lock()
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d.nextID++
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ref := fmt.Sprintf("mem-%d", d.nextID)
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d.keys[ref] = key
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d.mu.Unlock()
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wrapped, err := Wrap(key)
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if err != nil {
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return nil, "", fmt.Errorf("signer.MemoryDriver.Generate: wrap: %w", err)
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}
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return wrapped, ref, nil
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}
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// Adopt registers an externally-generated crypto.Signer under ref so
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// subsequent Load calls return it. Returns an error if ref is already
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// taken — keep refs unique to avoid silent override surprises.
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//
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// Useful in tests that want a deterministic key (generated outside
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// the driver, e.g. from a fixed PEM fixture) reachable through the
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// driver.
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func (d *MemoryDriver) Adopt(ref string, key crypto.Signer) error {
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if ref == "" {
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return errors.New("signer.MemoryDriver.Adopt: empty ref")
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}
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if key == nil {
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return errors.New("signer.MemoryDriver.Adopt: nil key")
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}
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d.mu.Lock()
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defer d.mu.Unlock()
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if _, exists := d.keys[ref]; exists {
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return fmt.Errorf("signer.MemoryDriver.Adopt: ref %q already exists", ref)
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}
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d.keys[ref] = key
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return nil
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}
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// _ guards that MemoryDriver implements Driver (catch interface drift
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// at build time, not test time).
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var _ Driver = (*MemoryDriver)(nil)
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// _ guards that FileDriver implements Driver.
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var _ Driver = (*FileDriver)(nil)
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