mirror of
https://github.com/smallstep/certificates.git
synced 2024-11-11 07:11:00 +00:00
232 lines
7.6 KiB
Go
232 lines
7.6 KiB
Go
package pki
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import (
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"bytes"
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"crypto/sha256"
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"crypto/x509"
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"encoding/hex"
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"encoding/json"
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"encoding/pem"
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"os"
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"strings"
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"testing"
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"github.com/google/go-cmp/cmp"
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"github.com/stretchr/testify/assert"
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"go.step.sm/crypto/jose"
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"go.step.sm/linkedca"
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"github.com/smallstep/certificates/cas/apiv1"
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)
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func TestPKI_WriteHelmTemplate(t *testing.T) {
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var preparePKI = func(t *testing.T, opts ...Option) *PKI {
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o := apiv1.Options{
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Type: "softcas",
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IsCreator: true,
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}
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// Add default WithHelm option
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opts = append(opts, WithHelm())
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// TODO(hs): invoking `New` doesn't perform all operations that are executed
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// when `ca init --helm` is executed. Ideally this logic should be handled
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// in one place and probably inside of the PKI initialization. For testing
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// purposes the missing operations to fill a Helm template fully are faked
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// by `setKeyPair`, `setCertificates` and `setSSHSigningKeys`
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p, err := New(o, opts...)
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assert.NoError(t, err)
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// setKeyPair sets a predefined JWK and a default JWK provisioner. This is one
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// of the things performed in the `ca init` code that's not part of `New`, but
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// performed after that in p.GenerateKeyPairs`. We're currently using the same
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// JWK for every test to keep test variance small: we're not testing JWK generation
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// here after all. It's a bit dangerous to redefine the function here, but it's
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// the simplest way to make this fully testable without refactoring the init now.
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// The password for the predefined encrypted key is \x01\x03\x03\x07.
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setKeyPair(t, p)
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// setCertificates sets some static intermediate and root CA certificate bytes. It
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// replaces the logic executed in `p.GenerateRootCertificate`, `p.WriteRootCertificate`,
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// and `p.GenerateIntermediateCertificate`.
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setCertificates(t, p)
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// setSSHSigningKeys sets predefined SSH user and host certificate and key bytes.
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// This replaces the logic in `p.GenerateSSHSigningKeys`
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setSSHSigningKeys(t, p)
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return p
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}
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type test struct {
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pki *PKI
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testFile string
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wantErr bool
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}
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var tests = map[string]func(t *testing.T) test{
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"ok/simple": func(t *testing.T) test {
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return test{
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pki: preparePKI(t),
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testFile: "testdata/helm/simple.yml",
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wantErr: false,
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}
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},
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"ok/with-provisioner": func(t *testing.T) test {
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return test{
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pki: preparePKI(t, WithProvisioner("a-provisioner")),
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testFile: "testdata/helm/with-provisioner.yml",
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wantErr: false,
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}
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},
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"ok/with-acme": func(t *testing.T) test {
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return test{
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pki: preparePKI(t, WithACME()),
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testFile: "testdata/helm/with-acme.yml",
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wantErr: false,
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}
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},
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"ok/with-admin": func(t *testing.T) test {
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return test{
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pki: preparePKI(t, WithAdmin()),
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testFile: "testdata/helm/with-admin.yml",
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wantErr: false,
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}
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},
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"ok/with-ssh": func(t *testing.T) test {
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return test{
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pki: preparePKI(t, WithSSH()),
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testFile: "testdata/helm/with-ssh.yml",
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wantErr: false,
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}
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},
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"ok/with-ssh-and-acme": func(t *testing.T) test {
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return test{
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pki: preparePKI(t, WithSSH(), WithACME()),
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testFile: "testdata/helm/with-ssh-and-acme.yml",
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wantErr: false,
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}
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},
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"fail/authority.ProvisionerToCertificates": func(t *testing.T) test {
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pki := preparePKI(t)
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pki.Authority.Provisioners = append(pki.Authority.Provisioners,
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&linkedca.Provisioner{
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Type: linkedca.Provisioner_JWK,
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Name: "Broken JWK",
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Details: nil,
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},
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)
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return test{
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pki: pki,
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wantErr: true,
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}
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},
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}
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for name, run := range tests {
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tc := run(t)
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t.Run(name, func(t *testing.T) {
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w := &bytes.Buffer{}
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if err := tc.pki.WriteHelmTemplate(w); (err != nil) != tc.wantErr {
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t.Errorf("PKI.WriteHelmTemplate() error = %v, wantErr %v", err, tc.wantErr)
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return
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}
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if tc.wantErr {
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// don't compare output if an error was expected on output
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return
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}
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wantBytes, err := os.ReadFile(tc.testFile)
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assert.NoError(t, err)
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if diff := cmp.Diff(wantBytes, w.Bytes()); diff != "" {
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t.Logf("Generated Helm template did not match reference %q\n", tc.testFile)
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t.Errorf("Diff follows:\n%s\n", diff)
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t.Errorf("Full output:\n%s\n", w.Bytes())
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}
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})
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}
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}
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// setKeyPair sets a predefined JWK and a default JWK provisioner.
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func setKeyPair(t *testing.T, p *PKI) {
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t.Helper()
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var err error
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p.ottPublicKey, err = jose.ParseKey([]byte(`{"use":"sig","kty":"EC","kid":"zsUmysmDVoGJ71YoPHyZ-68tNihDaDaO5Mu7xX3M-_I","crv":"P-256","alg":"ES256","x":"Pqnua4CzqKz6ua41J3yeWZ1sRkGt0UlCkbHv8H2DGuY","y":"UhoZ_2ItDen9KQTcjay-ph-SBXH0mwqhHyvrrqIFDOI"}`))
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if err != nil {
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t.Fatal(err)
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}
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p.ottPrivateKey, err = jose.ParseEncrypted("eyJhbGciOiJQQkVTMi1IUzI1NitBMTI4S1ciLCJjdHkiOiJqd2sranNvbiIsImVuYyI6IkEyNTZHQ00iLCJwMmMiOjEwMDAwMCwicDJzIjoiZjVvdGVRS2hvOXl4MmQtSGlMZi05QSJ9.eYA6tt3fNuUpoxKWDT7P0Lbn2juxhEbTxEnwEMbjlYLLQ3sxL-dYTA.ven-FhmdjlC9itH0.a2jRTarN9vPd6F_mWnNBlOn6KbfMjCApmci2t65XbAsLzYFzhI_79Ykm5ueMYTupWLTjBJctl-g51ZHmsSB55pStbpoyyLNAsUX2E1fTmHe-Ni8bRrspwLv15FoN1Xo1g0mpR-ufWIFxOsW-QIfnMmMIIkygVuHFXmg2tFpzTNNG5aS29K3dN2nyk0WJrdIq79hZSTqVkkBU25Yu3A46sgjcM86XcIJJ2XUEih_KWEa6T1YrkixGu96pebjVqbO0R6dbDckfPF7FqNnwPHVtb1ACFpEYoOJVIbUCMaARBpWsxYhjJZlEM__XA46l8snFQDkNY3CdN0p1_gF3ckA.JLmq9nmu1h9oUi1S8ZxYjA")
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if err != nil {
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t.Fatal(err)
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}
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var claims *linkedca.Claims
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if p.options.enableSSH {
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claims = &linkedca.Claims{
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Ssh: &linkedca.SSHClaims{
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Enabled: true,
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},
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}
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}
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publicKey, err := json.Marshal(p.ottPublicKey)
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if err != nil {
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t.Fatal(err)
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}
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encryptedKey, err := p.ottPrivateKey.CompactSerialize()
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if err != nil {
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t.Fatal(err)
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}
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p.Authority.Provisioners = append(p.Authority.Provisioners, &linkedca.Provisioner{
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Type: linkedca.Provisioner_JWK,
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Name: p.options.provisioner,
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Claims: claims,
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Details: &linkedca.ProvisionerDetails{
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Data: &linkedca.ProvisionerDetails_JWK{
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JWK: &linkedca.JWKProvisioner{
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PublicKey: publicKey,
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EncryptedPrivateKey: []byte(encryptedKey),
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},
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},
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},
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})
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}
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// setCertificates sets some static, gibberish intermediate and root CA certificate and key bytes.
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func setCertificates(_ *testing.T, p *PKI) {
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raw := []byte("these are just some fake root CA cert bytes")
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p.Files[p.Root[0]] = encodeCertificate(&x509.Certificate{Raw: raw})
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p.Files[p.RootKey[0]] = pem.EncodeToMemory(&pem.Block{
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Type: "EC PRIVATE KEY",
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Bytes: []byte("these are just some fake root CA key bytes"),
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})
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p.Files[p.Intermediate] = encodeCertificate(&x509.Certificate{Raw: []byte("these are just some fake intermediate CA cert bytes")})
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p.Files[p.IntermediateKey] = pem.EncodeToMemory(&pem.Block{
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Type: "EC PRIVATE KEY",
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Bytes: []byte("these are just some fake intermediate CA key bytes"),
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})
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sum := sha256.Sum256(raw)
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p.Defaults.Fingerprint = strings.ToLower(hex.EncodeToString(sum[:]))
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}
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// setSSHSigningKeys sets some static, gibberish ssh user and host CA certificate and key bytes.
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func setSSHSigningKeys(_ *testing.T, p *PKI) {
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if !p.options.enableSSH {
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return
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}
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p.Files[p.Ssh.HostKey] = pem.EncodeToMemory(&pem.Block{
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Type: "EC PRIVATE KEY",
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Bytes: []byte("fake ssh host key bytes"),
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})
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p.Files[p.Ssh.HostPublicKey] = []byte("ecdsa-sha2-nistp256 AAAAE2VjZHNhLXNoYTItbmlzdHAyNTYAAAAIbmlzdHAyNTYAAABBBJ0IdS5sZm6KITBMZLEJD6b5ROVraYHcAOr3feFel8r1Wp4DRPR1oU0W00J/zjNBRBbANlJoYN4x/8WNNVZ49Ms=")
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p.Files[p.Ssh.UserKey] = pem.EncodeToMemory(&pem.Block{
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Type: "EC PRIVATE KEY",
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Bytes: []byte("fake ssh user key bytes"),
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})
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p.Files[p.Ssh.UserPublicKey] = []byte("ecdsa-sha2-nistp256 AAAAE2VjZHNhLXNoYTItbmlzdHAyNTYAAAAIbmlzdHAyNTYAAABBBEWA1qUxaGwVNErsvEOGe2d6TvLMF+aiVpuOiIEvpMJ3JeJmecLQctjWqeIbpSvy6/gRa7c82Ge5rLlapYmOChs=")
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}
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