mirror of https://github.com/docker/cli.git
286 lines
10 KiB
Go
286 lines
10 KiB
Go
package trust
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import (
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"bytes"
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"encoding/json"
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"io"
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"runtime"
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"testing"
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"github.com/docker/cli/cli/config"
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"github.com/docker/cli/cli/trust"
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"github.com/docker/cli/internal/test"
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notaryfake "github.com/docker/cli/internal/test/notary"
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"github.com/theupdateframework/notary"
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"github.com/theupdateframework/notary/client"
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"github.com/theupdateframework/notary/client/changelist"
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"github.com/theupdateframework/notary/passphrase"
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"github.com/theupdateframework/notary/trustpinning"
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"github.com/theupdateframework/notary/tuf/data"
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"gotest.tools/v3/assert"
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is "gotest.tools/v3/assert/cmp"
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"gotest.tools/v3/skip"
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)
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const passwd = "password"
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func TestTrustSignCommandErrors(t *testing.T) {
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testCases := []struct {
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name string
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args []string
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expectedError string
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}{
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{
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name: "not-enough-args",
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expectedError: "requires exactly 1 argument",
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},
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{
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name: "too-many-args",
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args: []string{"image", "tag"},
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expectedError: "requires exactly 1 argument",
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},
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{
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name: "sha-reference",
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args: []string{"870d292919d01a0af7e7f056271dc78792c05f55f49b9b9012b6d89725bd9abd"},
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expectedError: "invalid repository name",
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},
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{
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name: "invalid-img-reference",
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args: []string{"ALPINE:latest"},
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expectedError: "invalid reference format",
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},
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{
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name: "no-tag",
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args: []string{"reg/img"},
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expectedError: "no tag specified for reg/img",
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},
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{
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name: "digest-reference",
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args: []string{"ubuntu@sha256:45b23dee08af5e43a7fea6c4cf9c25ccf269ee113168c19722f87876677c5cb2"},
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expectedError: "cannot use a digest reference for IMAGE:TAG",
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},
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}
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// change to a tmpdir
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config.SetDir(t.TempDir())
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for _, tc := range testCases {
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cmd := newSignCommand(
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test.NewFakeCli(&fakeClient{}))
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cmd.SetArgs(tc.args)
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cmd.SetOut(io.Discard)
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cmd.SetErr(io.Discard)
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assert.ErrorContains(t, cmd.Execute(), tc.expectedError)
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}
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}
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func TestTrustSignCommandOfflineErrors(t *testing.T) {
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cli := test.NewFakeCli(&fakeClient{})
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cli.SetNotaryClient(notaryfake.GetOfflineNotaryRepository)
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cmd := newSignCommand(cli)
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cmd.SetArgs([]string{"reg-name.io/image:tag"})
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cmd.SetOut(io.Discard)
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cmd.SetErr(io.Discard)
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assert.ErrorContains(t, cmd.Execute(), "client is offline")
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}
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func TestGetOrGenerateNotaryKey(t *testing.T) {
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notaryRepo, err := client.NewFileCachedRepository(t.TempDir(), "gun", "https://localhost", nil, passphrase.ConstantRetriever(passwd), trustpinning.TrustPinConfig{})
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assert.NilError(t, err)
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// repo is empty, try making a root key
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rootKeyA, err := getOrGenerateNotaryKey(notaryRepo, data.CanonicalRootRole)
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assert.NilError(t, err)
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assert.Check(t, rootKeyA != nil)
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// we should only have one newly generated key
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allKeys := notaryRepo.GetCryptoService().ListAllKeys()
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assert.Check(t, is.Len(allKeys, 1))
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assert.Check(t, notaryRepo.GetCryptoService().GetKey(rootKeyA.ID()) != nil)
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// this time we should get back the same key if we ask for another root key
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rootKeyB, err := getOrGenerateNotaryKey(notaryRepo, data.CanonicalRootRole)
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assert.NilError(t, err)
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assert.Check(t, rootKeyB != nil)
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// we should only have one newly generated key
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allKeys = notaryRepo.GetCryptoService().ListAllKeys()
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assert.Check(t, is.Len(allKeys, 1))
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assert.Check(t, notaryRepo.GetCryptoService().GetKey(rootKeyB.ID()) != nil)
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// The key we retrieved should be identical to the one we generated
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assert.Check(t, is.DeepEqual(rootKeyA.Public(), rootKeyB.Public()))
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// Now also try with a delegation key
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releasesKey, err := getOrGenerateNotaryKey(notaryRepo, trust.ReleasesRole)
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assert.NilError(t, err)
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assert.Check(t, releasesKey != nil)
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// we should now have two keys
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allKeys = notaryRepo.GetCryptoService().ListAllKeys()
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assert.Check(t, is.Len(allKeys, 2))
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assert.Check(t, notaryRepo.GetCryptoService().GetKey(releasesKey.ID()) != nil)
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// The key we retrieved should be identical to the one we generated
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assert.Check(t, releasesKey != rootKeyA)
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assert.Check(t, releasesKey != rootKeyB)
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}
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func TestAddStageSigners(t *testing.T) {
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skip.If(t, runtime.GOOS == "windows", "FIXME: not supported currently")
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notaryRepo, err := client.NewFileCachedRepository(t.TempDir(), "gun", "https://localhost", nil, passphrase.ConstantRetriever(passwd), trustpinning.TrustPinConfig{})
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assert.NilError(t, err)
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// stage targets/user
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userRole := data.RoleName("targets/user")
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userKey := data.NewPublicKey("algoA", []byte("a"))
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err = addStagedSigner(notaryRepo, userRole, []data.PublicKey{userKey})
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assert.NilError(t, err)
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// check the changelist for four total changes: two on targets/releases and two on targets/user
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cl, err := notaryRepo.GetChangelist()
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assert.NilError(t, err)
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changeList := cl.List()
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assert.Check(t, is.Len(changeList, 4))
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// ordering is deterministic:
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// first change is for targets/user key creation
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newSignerKeyChange := changeList[0]
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expectedJSON, err := json.Marshal(&changelist.TUFDelegation{
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NewThreshold: notary.MinThreshold,
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AddKeys: data.KeyList([]data.PublicKey{userKey}),
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})
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assert.NilError(t, err)
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expectedChange := changelist.NewTUFChange(
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changelist.ActionCreate,
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userRole,
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changelist.TypeTargetsDelegation,
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"", // no path for delegations
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expectedJSON,
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)
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assert.Check(t, is.DeepEqual(expectedChange, newSignerKeyChange))
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// second change is for targets/user getting all paths
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newSignerPathsChange := changeList[1]
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expectedJSON, err = json.Marshal(&changelist.TUFDelegation{
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AddPaths: []string{""},
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})
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assert.NilError(t, err)
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expectedChange = changelist.NewTUFChange(
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changelist.ActionCreate,
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userRole,
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changelist.TypeTargetsDelegation,
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"", // no path for delegations
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expectedJSON,
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)
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assert.Check(t, is.DeepEqual(expectedChange, newSignerPathsChange))
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releasesRole := data.RoleName("targets/releases")
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// third change is for targets/releases key creation
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releasesKeyChange := changeList[2]
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expectedJSON, err = json.Marshal(&changelist.TUFDelegation{
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NewThreshold: notary.MinThreshold,
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AddKeys: data.KeyList([]data.PublicKey{userKey}),
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})
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assert.NilError(t, err)
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expectedChange = changelist.NewTUFChange(
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changelist.ActionCreate,
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releasesRole,
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changelist.TypeTargetsDelegation,
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"", // no path for delegations
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expectedJSON,
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)
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assert.Check(t, is.DeepEqual(expectedChange, releasesKeyChange))
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// fourth change is for targets/releases getting all paths
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releasesPathsChange := changeList[3]
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expectedJSON, err = json.Marshal(&changelist.TUFDelegation{
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AddPaths: []string{""},
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})
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assert.NilError(t, err)
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expectedChange = changelist.NewTUFChange(
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changelist.ActionCreate,
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releasesRole,
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changelist.TypeTargetsDelegation,
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"", // no path for delegations
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expectedJSON,
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)
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assert.Check(t, is.DeepEqual(expectedChange, releasesPathsChange))
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}
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func TestGetSignedManifestHashAndSize(t *testing.T) {
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notaryRepo, err := client.NewFileCachedRepository(t.TempDir(), "gun", "https://localhost", nil, passphrase.ConstantRetriever(passwd), trustpinning.TrustPinConfig{})
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assert.NilError(t, err)
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_, _, err = getSignedManifestHashAndSize(notaryRepo, "test")
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assert.Error(t, err, "client is offline")
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}
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func TestGetReleasedTargetHashAndSize(t *testing.T) {
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oneReleasedTgt := []client.TargetSignedStruct{}
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// make and append 3 non-released signatures on the "unreleased" target
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unreleasedTgt := client.Target{Name: "unreleased", Hashes: data.Hashes{notary.SHA256: []byte("hash")}}
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for _, unreleasedRole := range []string{"targets/a", "targets/b", "targets/c"} {
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oneReleasedTgt = append(oneReleasedTgt, client.TargetSignedStruct{Role: mockDelegationRoleWithName(unreleasedRole), Target: unreleasedTgt})
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}
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_, _, err := getReleasedTargetHashAndSize(oneReleasedTgt, "unreleased")
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assert.Error(t, err, "No valid trust data for unreleased")
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releasedTgt := client.Target{Name: "released", Hashes: data.Hashes{notary.SHA256: []byte("released-hash")}}
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oneReleasedTgt = append(oneReleasedTgt, client.TargetSignedStruct{Role: mockDelegationRoleWithName("targets/releases"), Target: releasedTgt})
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hash, _, _ := getReleasedTargetHashAndSize(oneReleasedTgt, "unreleased")
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assert.Check(t, is.DeepEqual(data.Hashes{notary.SHA256: []byte("released-hash")}, hash))
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}
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func TestCreateTarget(t *testing.T) {
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notaryRepo, err := client.NewFileCachedRepository(t.TempDir(), "gun", "https://localhost", nil, passphrase.ConstantRetriever(passwd), trustpinning.TrustPinConfig{})
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assert.NilError(t, err)
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_, err = createTarget(notaryRepo, "")
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assert.Error(t, err, "no tag specified")
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_, err = createTarget(notaryRepo, "1")
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assert.Error(t, err, "client is offline")
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}
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func TestGetExistingSignatureInfoForReleasedTag(t *testing.T) {
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notaryRepo, err := client.NewFileCachedRepository(t.TempDir(), "gun", "https://localhost", nil, passphrase.ConstantRetriever(passwd), trustpinning.TrustPinConfig{})
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assert.NilError(t, err)
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_, err = getExistingSignatureInfoForReleasedTag(notaryRepo, "test")
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assert.Error(t, err, "client is offline")
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}
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func TestPrettyPrintExistingSignatureInfo(t *testing.T) {
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buf := bytes.NewBuffer(nil)
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signers := []string{"Bob", "Alice", "Carol"}
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existingSig := trustTagRow{trustTagKey{"tagName", "abc123"}, signers}
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prettyPrintExistingSignatureInfo(buf, existingSig)
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assert.Check(t, is.Contains(buf.String(), "Existing signatures for tag tagName digest abc123 from:\nAlice, Bob, Carol"))
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}
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func TestSignCommandChangeListIsCleanedOnError(t *testing.T) {
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tmpDir := t.TempDir()
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config.SetDir(tmpDir)
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cli := test.NewFakeCli(&fakeClient{})
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cli.SetNotaryClient(notaryfake.GetLoadedNotaryRepository)
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cmd := newSignCommand(cli)
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cmd.SetArgs([]string{"ubuntu:latest"})
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cmd.SetOut(io.Discard)
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cmd.SetErr(io.Discard)
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err := cmd.Execute()
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assert.Assert(t, err != nil)
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notaryRepo, err := client.NewFileCachedRepository(tmpDir, "docker.io/library/ubuntu", "https://localhost", nil, passphrase.ConstantRetriever(passwd), trustpinning.TrustPinConfig{})
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assert.NilError(t, err)
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cl, err := notaryRepo.GetChangelist()
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assert.NilError(t, err)
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assert.Check(t, is.Equal(len(cl.List()), 0))
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}
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func TestSignCommandLocalFlag(t *testing.T) {
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cli := test.NewFakeCli(&fakeClient{})
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cli.SetNotaryClient(notaryfake.GetEmptyTargetsNotaryRepository)
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cmd := newSignCommand(cli)
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cmd.SetArgs([]string{"--local", "reg-name.io/image:red"})
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cmd.SetOut(io.Discard)
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cmd.SetErr(io.Discard)
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assert.ErrorContains(t, cmd.Execute(), "error contacting notary server: dial tcp: lookup reg-name.io")
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}
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