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source_test.go
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source_test.go
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package dalec
import (
"context"
"encoding/json"
"fmt"
"net"
"os"
"path"
"path/filepath"
"reflect"
"slices"
"strings"
"testing"
"github.com/moby/buildkit/client/llb"
"github.com/moby/buildkit/client/llb/sourceresolver"
"github.com/moby/buildkit/frontend/dockerfile/dockerfile2llb"
"github.com/moby/buildkit/solver/pb"
"github.com/opencontainers/go-digest"
v1 "github.com/opencontainers/image-spec/specs-go/v1"
"gotest.tools/v3/assert"
"gotest.tools/v3/assert/cmp"
)
func TestSourceGitSSH(t *testing.T) {
t.Parallel()
ctx := context.Background()
// buildkit's llb.Git currently directly runs an ssh keyscan (connects to the specified host and port to get the host key)
// This is not ideal for our test setup here because we need to use a real server.
// Thankfully when there is an error it is ignored so we don't actually need to setup a full SSH server here.
addr := stubListener(t)
src := Source{
Git: &SourceGit{
URL: fmt.Sprintf("user@%s:test.git", addr),
Commit: t.Name(),
},
}
ops := getSourceOp(ctx, t, src)
checkGitOp(t, ops, &src)
t.Run("with subdir", func(t *testing.T) {
src := src
src.Path = "subdir"
ops2 := getSourceOp(ctx, t, src)
checkGitOp(t, ops2, &src)
// git ops require extra filtering to get the correct subdir, so we should have an extra op
if len(ops2) != len(ops)+1 {
t.Fatalf("expected %d ops, got %d", len(ops)+1, len(ops2))
}
checkFilter(t, ops2[1].GetFile(), &src)
})
t.Run("with include-exclude", func(t *testing.T) {
src := src
src.Includes = []string{"foo", "bar"}
src.Excludes = []string{"baz"}
ops2 := getSourceOp(ctx, t, src)
checkGitOp(t, ops2, &src)
// git ops require extra filtering to get the correct subdir, so we should have an extra op
if len(ops2) != len(ops)+1 {
t.Fatalf("expected %d ops, got %d", len(ops)+1, len(ops2))
}
checkFilter(t, ops2[1].GetFile(), &src)
})
t.Run("with include-exclude and subpath", func(t *testing.T) {
src := src
src.Includes = []string{"foo", "bar"}
src.Excludes = []string{"baz"}
src.Path = "subdir"
ops2 := getSourceOp(ctx, t, src)
checkGitOp(t, ops2, &src)
// git ops require extra filtering to get the correct subdir, so we should have an extra op
if len(ops2) != len(ops)+1 {
t.Fatalf("expected %d ops, got %d", len(ops)+1, len(ops2))
}
checkFilter(t, ops2[1].GetFile(), &src)
})
t.Run("auth", func(t *testing.T) {
src := Source{
Git: &SourceGit{
URL: fmt.Sprintf("user@%s:test.git", addr),
Commit: t.Name(),
},
}
ops := getSourceOp(ctx, t, src)
checkGitOp(t, ops, &src)
})
}
func TestSourceGitHTTP(t *testing.T) {
t.Parallel()
src := Source{
Git: &SourceGit{
URL: "https://localhost/test.git",
Commit: t.Name(),
},
}
ctx := context.Background()
ops := getSourceOp(ctx, t, src)
checkGitOp(t, ops, &src)
t.Run("with subdir", func(t *testing.T) {
src := src
src.Path = "subdir"
ops2 := getSourceOp(ctx, t, src)
checkGitOp(t, ops2, &src)
// git ops require extra filtering to get the correct subdir, so we should have an extra op
if len(ops2) != len(ops)+1 {
t.Fatalf("expected %d ops, got %d", len(ops)+1, len(ops2))
}
checkFilter(t, ops2[1].GetFile(), &src)
})
t.Run("with include-exclude", func(t *testing.T) {
src := src
src.Includes = []string{"foo", "bar"}
src.Excludes = []string{"baz"}
ops2 := getSourceOp(ctx, t, src)
checkGitOp(t, ops2, &src)
// git ops require extra filtering to get the correct subdir, so we should have an extra op
if len(ops2) != len(ops)+1 {
t.Fatalf("expected %d ops, got %d", len(ops)+1, len(ops2))
}
checkFilter(t, ops2[1].GetFile(), &src)
})
t.Run("with include-exclude and subpath", func(t *testing.T) {
src := src
src.Includes = []string{"foo", "bar"}
src.Excludes = []string{"baz"}
src.Path = "subdir"
ops2 := getSourceOp(ctx, t, src)
checkGitOp(t, ops2, &src)
// git ops require extra filtering to get the correct subdir, so we should have an extra op
if len(ops2) != len(ops)+1 {
t.Fatalf("expected %d ops, got %d", len(ops)+1, len(ops2))
}
checkFilter(t, ops2[1].GetFile(), &src)
})
t.Run("auth", func(t *testing.T) {
src := Source{
Git: &SourceGit{
URL: "https://localhost/test.git",
Commit: t.Name(),
Auth: GitAuth{
Header: "some header",
Token: "some token",
},
},
}
ops := getSourceOp(ctx, t, src)
checkGitOp(t, ops, &src)
})
}
func TestSourceHTTP(t *testing.T) {
src := Source{
HTTP: &SourceHTTP{
URL: "https://localhost/test.tar.gz",
},
}
ctx := context.Background()
ops := getSourceOp(ctx, t, src)
op := ops[0].GetSource()
xID := "https://localhost/test.tar.gz"
if op.Identifier != xID {
t.Errorf("expected identifier %q, got %q", xID, op.Identifier)
}
if len(op.Attrs) != 1 {
t.Errorf("expected 1 attribute, got %d", len(op.Attrs))
}
// For http sources we expect the filename to be the name of the source not the filename in the URL.
xFilename := "test"
const httpFilename = "http.filename"
if op.Attrs[httpFilename] != "test" {
t.Errorf("expected http.filename %q, got %q", xFilename, op.Attrs[httpFilename])
}
t.Run("with digest", func(t *testing.T) {
dgst := digest.Canonical.FromBytes(nil)
src.HTTP.Digest = dgst
ops := getSourceOp(ctx, t, src)
op := ops[0].GetSource()
if len(op.Attrs) != 2 {
t.Errorf("expected 2 attribute, got %d", len(op.Attrs))
}
if op.Attrs[httpFilename] != "test" {
t.Errorf("expected http.filename %q, got %q", xFilename, op.Attrs[httpFilename])
}
const httpChecksum = "http.checksum"
if op.Attrs[httpChecksum] != dgst.String() {
t.Errorf("expected http.checksum %q, got %q", dgst.String(), op.Attrs[httpChecksum])
}
})
}
func toImageRef(ref string) string {
return "docker-image://" + ref
}
var (
noMountCheck = []expectMount{}
rootMount = expectMount{dest: "/", selector: "", typ: pb.MountType_BIND}
)
func TestSourceDockerImage(t *testing.T) {
imgRef := "localhost:0/does/not/exist:latest"
src := Source{
DockerImage: &SourceDockerImage{
Ref: imgRef,
},
}
ctx := context.Background()
ops := getSourceOp(ctx, t, src)
op := ops[0].GetSource()
xID := toImageRef(imgRef)
if op.Identifier != xID {
t.Errorf("expected identifier %q, got %q", xID, op.Identifier)
}
contextMount := SourceMount{
Dest: "/dst",
Spec: Source{
Context: &SourceContext{
Name: "."},
},
}
imageMount := SourceMount{
Dest: "/dst",
Spec: Source{
DockerImage: &SourceDockerImage{
Ref: "localhost:0/some/image:latest",
Cmd: &Command{
Steps: []*BuildStep{
{
Command: "mkdir /nested/dir && echo 'some file contents' > /nested/dir/foo.txt",
},
},
},
},
},
}
fileMount := SourceMount{
Dest: "/filedest",
Spec: Source{
Inline: &SourceInline{
File: &SourceInlineFile{
Contents: "some file contents",
},
},
},
}
t.Run("with cmd", func(t *testing.T) {
src := Source{
DockerImage: &SourceDockerImage{
Ref: imgRef,
Cmd: &Command{
Dir: "/tmp",
Steps: []*BuildStep{
{Command: "echo hello 1", Env: map[string]string{"FOO": "bar1"}},
{Command: "echo hello 2", Env: map[string]string{"FOO": "bar2"}},
},
},
},
}
ctx := context.Background()
ops := getSourceOp(ctx, t, src)
imgBaseOp := ops[0].GetSource()
if imgBaseOp.Identifier != xID {
t.Errorf("expected identifier %q, got %q", xID, imgBaseOp.Identifier)
}
checkCmd(t, ops[1:], &src, [][]expectMount{noMountCheck, noMountCheck})
t.Run("with file mount", func(t *testing.T) {
src := src
img := *src.DockerImage
cmd := *img.Cmd
cmd.Mounts = []SourceMount{fileMount}
img.Cmd = &cmd
src.DockerImage = &img
ops := getSourceOp(ctx, t, src)
fileMountCheck := []expectMount{{dest: "/filedest", selector: internalMountSourceName, typ: pb.MountType_BIND}}
checkCmd(t, ops[2:], &src, [][]expectMount{noMountCheck, fileMountCheck})
})
t.Run("with filters", func(t *testing.T) {
t.Run("include and exclude", func(t *testing.T) {
src := src
src.Includes = []string{"foo", "bar"}
src.Excludes = []string{"baz"}
ops := getSourceOp(ctx, t, src)
checkCmd(t, ops[1:len(ops)-1], &src, [][]expectMount{noMountCheck, noMountCheck})
// When include/exclude are used, we are expecting a copy operation to be last.
checkFilter(t, ops[len(ops)-1].GetFile(), &src)
})
t.Run("subpath", func(t *testing.T) {
src := src
src.Path = "subdir"
ops := getSourceOp(ctx, t, src)
img := ops[0].GetSource()
if img.Identifier != xID {
t.Errorf("expected identifier %q, got %q", xID, img.Identifier)
}
checkCmd(t, ops[1:], &src, [][]expectMount{{rootMount}, {rootMount}})
})
t.Run("mount beneath subpath", func(t *testing.T) {
src := src
src.Path = "subpath"
img := *src.DockerImage
cmd := *img.Cmd
img.Cmd = &cmd
src.DockerImage = &img
img.Cmd.Mounts = []SourceMount{
{
Dest: src.Path,
Spec: Source{
Inline: &SourceInline{
Dir: &SourceInlineDir{},
},
},
},
}
_, err := src.AsState("test", SourceOpts{})
assert.ErrorIs(t, err, errInvalidMountConfig)
})
t.Run("subpath with include-exclude", func(t *testing.T) {
src := src
src.Path = "subdir"
src.Includes = []string{"foo", "bar"}
src.Excludes = []string{"baz"}
ops := getSourceOp(ctx, t, src)
img := ops[0].GetSource()
if img.Identifier != xID {
t.Errorf("expected identifier %q, got %q", xID, img.Identifier)
}
ops = ops[1:]
// When a subpath is used, we expect a mount to be applied.
// There should be 2 mounts, one for the rootfs and one for our subdir
checkCmd(t, ops[:len(ops)-1], &src, [][]expectMount{{rootMount, {dest: "subdir"}}, {rootMount, {dest: "subdir"}}})
// last op is (should be) the include/exclude filter and not a cmd
// When include/exclude are used, we are expecting a copy operation to be last.
checkFilter(t, ops[len(ops)-1].GetFile(), &src)
})
t.Run("subpath within context mount", func(t *testing.T) {
src := src
contextMount := contextMount
contextMount.Spec.Path = "subdir"
// Add source to mounts
img := *src.DockerImage
cmd := *img.Cmd
cmd.Mounts = []SourceMount{contextMount}
img.Cmd = &cmd
src.DockerImage = &img
ops := getSourceOp(ctx, t, src)
var contextOp *pb.Op
// we must scan through the sources to find one with a matching id,
// since the order of the source ops isn't always deterministic
// (possible buildkit marshaling bug)
if imageOp := findMatchingSource(ops, src); imageOp == nil {
t.Errorf("could not find source with identifier %q", imgBaseOp.Identifier)
return
}
if contextOp = findMatchingSource(ops, contextMount.Spec); contextOp == nil {
t.Errorf("could not find source with identifier %q", contextMount.Spec.Path)
return
}
checkContext(t, contextOp.GetSource(), &contextMount.Spec)
// there should be no copy operation, since we have no includes and excludes,
// so we can simply extract the dest path with a mount
checkCmd(t, ops[2:], &src,
[][]expectMount{{{dest: "/dst", selector: "subdir"}},
{{dest: "/dst", selector: "subdir"}}})
})
t.Run("subpath within cmd mount", func(t *testing.T) {
src := src
imageMount := imageMount
imageMount.Spec.Path = "/subdir"
img := *src.DockerImage
cmd := *img.Cmd
cmd.Mounts = []SourceMount{imageMount}
img.Cmd = &cmd
src.DockerImage = &img
src.DockerImage.Cmd.Mounts = []SourceMount{imageMount}
ops := getSourceOp(ctx, t, src)
var imgOp, subImg *pb.Op
if imgOp = findMatchingSource(ops, src); imgOp == nil {
t.Errorf("could not find source with identifier %q", src.DockerImage.Ref)
}
if subImg = findMatchingSource(ops, imageMount.Spec); subImg == nil {
t.Errorf("could not find source with identifier %q", imageMount.Spec.DockerImage.Ref)
}
dMap := toDigestMap(ops)
childOps := getChildren(subImg, ops, dMap)
if len(childOps) != 1 {
t.Fatalf("expecting single child op for %v\n", subImg.GetSource())
}
cmdOp := childOps[0]
checkCmd(t, []*pb.Op{cmdOp}, &imageMount.Spec, [][]expectMount{noMountCheck, noMountCheck})
nextCmd1 := getChildren(cmdOp, ops, dMap)
nextCmd2 := getChildren(nextCmd1[0], ops, dMap)
checkCmd(t, []*pb.Op{nextCmd1[0], nextCmd2[0]}, &src, [][]expectMount{{{dest: "/dst", selector: ""}}, noMountCheck})
})
})
})
}
func getChildren(op *pb.Op, ops []*pb.Op, digests map[*pb.Op]digest.Digest) []*pb.Op {
children := make([]*pb.Op, 0, len(ops))
for _, maybeChild := range ops {
for _, input := range maybeChild.Inputs {
if digest.Digest(input.Digest) == digests[op] {
children = append(children, maybeChild)
}
}
}
return children
}
func toDigestMap(ops []*pb.Op) map[*pb.Op]digest.Digest {
hashes := make(map[*pb.Op]digest.Digest)
for _, op := range ops {
bytes, err := op.Marshal()
if err != nil {
panic(err)
}
hashes[op] = digest.FromBytes(bytes)
}
return hashes
}
func toContextRef(ctxRef string) string {
return "local://" + ctxRef
}
func sourcesMatch(src Source, op *pb.SourceOp) bool {
switch {
case src.DockerImage != nil:
return op.Identifier == toImageRef(src.DockerImage.Ref)
case src.Context != nil:
return op.Identifier == toContextRef(src.Context.Name)
default:
panic("unsupported source")
}
}
func findMatchingSource(sOps []*pb.Op, src Source) *pb.Op {
for _, s := range sOps {
sOp := s.GetSource()
if sOp == nil {
continue
}
if sourcesMatch(src, sOp) {
return s
}
}
return nil
}
func TestSourceContext(t *testing.T) {
ctx := context.Background()
testWithFilters := func(t *testing.T, src Source) {
t.Run("with filters", func(t *testing.T) {
t.Run("subdir", func(t *testing.T) {
src := src
src.Path = "subdir"
ops := getSourceOp(ctx, t, src)
checkContext(t, ops[0].GetSource(), &src)
// for context source, we expect to have a copy operation as the last op when subdir is used
checkFilter(t, ops[1].GetFile(), &src)
})
t.Run("include and exclude", func(t *testing.T) {
src := src
src.Includes = []string{"foo", "bar"}
src.Excludes = []string{"baz"}
ops := getSourceOp(ctx, t, src)
checkContext(t, ops[0].GetSource(), &src)
// With include/exclude only, this should be handled with just one op.
// except... there are optimizations to prevent fetching the same context multiple times
// As such we need to make sure filters are applied correctly.
if len(ops) != 2 {
t.Fatalf("expected 1 op, got %d\n%s", len(ops), ops)
}
checkFilter(t, ops[1].GetFile(), &src)
})
t.Run("subpath with include-exclude", func(t *testing.T) {
src := src
src.Path = "subdir"
src.Includes = []string{"foo", "bar"}
src.Excludes = []string{"baz"}
ops := getSourceOp(ctx, t, src)
checkContext(t, ops[0].GetSource(), &src)
// for context source, we expect to have a copy operation as the last op when subdir is used
checkFilter(t, ops[1].GetFile(), &src)
})
})
}
t.Run("default", func(t *testing.T) {
src := Source{
Context: &SourceContext{},
}
ops := getSourceOp(ctx, t, src)
checkContext(t, ops[0].GetSource(), &src)
testWithFilters(t, src)
})
t.Run("with custom name", func(t *testing.T) {
src := Source{
Context: &SourceContext{Name: "some-name"},
}
ops := getSourceOp(ctx, t, src)
checkContext(t, ops[0].GetSource(), &src)
testWithFilters(t, src)
})
}
func TestSourceInlineFile(t *testing.T) {
ctx := context.Background()
for name, f := range testFiles() {
f := f
t.Run(name, func(t *testing.T) {
src := Source{Inline: &SourceInline{File: f}}
ops := getSourceOp(ctx, t, src)
if len(ops) != 1 {
t.Fatalf("expected 1 op, got %d:\n%s", len(ops), ops)
}
checkMkfile(t, ops[0].GetFile(), src.Inline.File, "/test")
})
}
}
func testFiles() map[string]*SourceInlineFile {
empty := func() *SourceInlineFile {
return &SourceInlineFile{}
}
modify := func(mods ...func(*SourceInlineFile)) *SourceInlineFile {
src := empty()
for _, mod := range mods {
mod(src)
}
return src
}
withUID := func(uid int) func(*SourceInlineFile) {
return func(s *SourceInlineFile) {
s.UID = uid
}
}
withGID := func(gid int) func(*SourceInlineFile) {
return func(s *SourceInlineFile) {
s.GID = gid
}
}
withContents := func(contents string) func(*SourceInlineFile) {
return func(s *SourceInlineFile) {
s.Contents = contents
}
}
return map[string]*SourceInlineFile{
"empty file": modify(),
"empty file with uid": modify(withUID(1000)),
"empty file with gid": modify(withGID(1000)),
"empty file with uid and gid": modify(withUID(1000), withGID(1000)),
"with contents": modify(withContents("hello world 1")),
"with uid and contents": modify(withUID(1000), withContents("hello world 2")),
"with gid and contents": modify(withGID(1000), withContents("hello world 3")),
"with uid, gid, and contents": modify(withUID(1000), withGID(1000), withContents("hello world 4")),
}
}
func TestSourceInlineDir(t *testing.T) {
ctx := context.Background()
empty := func() *SourceInlineDir {
return &SourceInlineDir{}
}
modify := func(mods ...func(*SourceInlineDir)) *SourceInlineDir {
src := empty()
for _, mod := range mods {
mod(src)
}
return src
}
withDirUID := func(uid int) func(*SourceInlineDir) {
return func(s *SourceInlineDir) {
s.UID = uid
}
}
withDirGID := func(gid int) func(*SourceInlineDir) {
return func(s *SourceInlineDir) {
s.GID = gid
}
}
testDirs := map[string]*SourceInlineDir{
"default": modify(),
"with uid": modify(withDirUID(1000)),
"with gid": modify(withDirGID(1000)),
"with uid and gid": modify(withDirUID(1000), withDirGID(1001)),
}
for name, dir := range testDirs {
dir := dir
t.Run(name, func(t *testing.T) {
src := Source{Inline: &SourceInline{Dir: dir}}
ops := getSourceOp(ctx, t, src)
checkMkdir(t, ops[0].GetFile(), src.Inline.Dir)
t.Run("with files", func(t *testing.T) {
src.Inline.Dir.Files = testFiles()
ops := getSourceOp(ctx, t, src)
checkMkdir(t, ops[0].GetFile(), src.Inline.Dir)
if len(ops) != len(src.Inline.Dir.Files)+1 {
t.Fatalf("expected %d ops, got %d\n%s", len(src.Inline.Dir.Files)+1, len(ops), ops)
}
sorted := SortMapKeys(src.Inline.Dir.Files)
for i, name := range sorted {
ops := getSourceOp(ctx, t, src)
f := src.Inline.Dir.Files[name]
checkMkfile(t, ops[i+1].GetFile(), f, name)
}
})
})
}
}
func checkMkdir(t *testing.T, op *pb.FileOp, src *SourceInlineDir) {
if op == nil {
t.Fatal("expected dir op")
}
if len(op.Actions) != 1 {
t.Fatalf("expected 1 action, got %d", len(op.Actions))
}
mkdir := op.Actions[0].GetMkdir()
if mkdir == nil {
t.Fatalf("expected mkdir action: %v", op.Actions[0])
}
if mkdir.MakeParents {
t.Error("expected make parents to be false")
}
if mkdir.GetOwner().User.GetByID() != uint32(src.UID) {
t.Errorf("expected uid %d, got %d", src.UID, mkdir.GetOwner().User.GetByID())
}
if mkdir.GetOwner().Group.GetByID() != uint32(src.GID) {
t.Errorf("expected gid %d, got %d", src.GID, mkdir.GetOwner().Group.GetByID())
}
xPerms := src.Permissions
if xPerms == 0 {
xPerms = defaultDirPerms
}
if os.FileMode(mkdir.Mode) != xPerms {
t.Errorf("expected mode %O, got %O", xPerms, os.FileMode(mkdir.Mode))
}
if mkdir.Path != "/" {
t.Errorf("expected path %q, got %q", "/", mkdir.Path)
}
}
func checkMkfile(t *testing.T, op *pb.FileOp, src *SourceInlineFile, name string) {
if op == nil {
t.Fatal("expected file op")
}
if len(op.Actions) != 1 {
t.Fatalf("expected 1 action, got %d", len(op.Actions))
}
mkfile := op.Actions[0].GetMkfile()
if mkfile == nil {
t.Fatalf("expected mkfile action: %v", op.Actions[0])
}
uid := mkfile.Owner.User.GetByID()
if uid != uint32(src.UID) {
t.Errorf("expected uid %d, got %d", src.UID, uid)
}
gid := mkfile.Owner.Group.GetByID()
if gid != uint32(src.GID) {
t.Errorf("expected gid %d, got %d", src.GID, gid)
}
mode := os.FileMode(mkfile.Mode).Perm()
xMode := src.Permissions
if xMode == 0 {
xMode = defaultFilePerms
}
if mode != xMode {
t.Errorf("expected mode %O, got %O", xMode, mode)
}
if string(mkfile.Data) != src.Contents {
t.Errorf("expected data %q, got %q", src.Contents, mkfile.Data)
}
xPath := filepath.Join("/", name)
if mkfile.Path != xPath {
t.Errorf("expected path %q, got %q", xPath, mkfile.Path)
}
}
func stubListener(t *testing.T) net.Addr {
l, err := net.Listen("tcp", "localhost:0")
if err != nil {
t.Fatal(err)
}
t.Cleanup(func() {
_ = l.Close()
})
go func() {
defer l.Close()
for {
conn, err := l.Accept()
if err != nil {
return
}
conn.Close()
}
}()
return l.Addr()
}
// 1. Generates the LLB for a source using Source2LLBGetter (the function we are testing)
// 2. Marshals the LLB to a protobuf (since we don't have access to the data in LLB directly)
// 3. Unmarshals the protobuf to get the [pb.Op]s which is what buildkit would act on to get the actual source data during build.
func getSourceOp(ctx context.Context, t *testing.T, src Source) []*pb.Op {
t.Helper()
fillDefaults(&src)
var sOpt SourceOpts
if src.Build != nil {
if src.Build.Source.Inline == nil || src.Build.Source.Inline.File == nil {
t.Fatal("Cannot test from a Dockerfile without inline content")
}
sOpt.Forward = func(_ llb.State, build *SourceBuild) (llb.State, error) {
// Note, we can't really test anything other than inline here because we don't have access to the actual buildkit client,
// so we can't extract extract the dockerfile from the input state (nor do we have any input state)
src := []byte(src.Build.Source.Inline.File.Contents)
st, _, _, _, err := dockerfile2llb.Dockerfile2LLB(ctx, src, dockerfile2llb.ConvertOpt{
MetaResolver: stubMetaResolver{},
})
return *st, err
}
}
sOpt.GetContext = func(name string, opts ...llb.LocalOption) (*llb.State, error) {
st := llb.Local(name, opts...)
return &st, nil
}
st, err := src.AsState("test", sOpt)
if err != nil {
t.Fatal(err)
}
def, err := st.Marshal(ctx)
if err != nil {
t.Fatal(err)
}
out := make([]*pb.Op, 0, len(def.Def)-1)
// We'll drop the last op which is a "return" op, which doesn't matter for our tests.
for _, dt := range def.Def[:len(def.Def)-1] {
op := &pb.Op{}
if err := op.Unmarshal(dt); err != nil {
t.Fatal(err)
}
out = append(out, op)
}
return out
}
func checkGitOp(t *testing.T, ops []*pb.Op, src *Source) {
op := ops[0].GetSource()
var bkAddr string
_, other, ok := strings.Cut(src.Git.URL, "@")
if ok {
// ssh
// buildkit replaces the `:` between host and port with a `/` in the identifier
bkAddr = "git://" + strings.Replace(other, ":", "/", 1)
} else {
// not ssh
_, other, ok := strings.Cut(src.Git.URL, "://")
if !ok {
t.Fatal("invalid git URL")
}
bkAddr = "git://" + other
}
xID := bkAddr + "#" + src.Git.Commit
if op.Identifier != xID {
t.Errorf("expected identifier %q, got %q", xID, op.Identifier)
}
if op.Attrs["git.fullurl"] != src.Git.URL {
t.Errorf("expected git.fullurl %q, got %q", src.Git.URL, op.Attrs["git.fullurl"])
}
const (
defaultAuthHeader = "GIT_AUTH_HEADER"
defaultAuthToken = "GIT_AUTH_TOKEN"
defaultAuthSSH = "default"
)
hdr := defaultAuthHeader
if src.Git.Auth.Header != "" {
hdr = src.Git.Auth.Header
}
assert.Check(t, cmp.Equal(op.Attrs["git.authheadersecret"], hdr), op.Attrs)
token := defaultAuthToken
if src.Git.Auth.Token != "" {
token = src.Git.Auth.Token
}
assert.Check(t, cmp.Equal(op.Attrs["git.authtokensecret"], token), op.Attrs)
if !strings.HasPrefix(src.Git.URL, "http") {
// ssh settings are only set when using ssh based auth
ssh := defaultAuthSSH
if src.Git.Auth.SSH != "" {
ssh = src.Git.Auth.SSH
}
assert.Check(t, cmp.Equal(op.Attrs["git.mountsshsock"], ssh), op)
}
}
func checkFilter(t *testing.T, op *pb.FileOp, src *Source) {
t.Helper()
if op == nil {
t.Fatal("expected file op")
}
cpAction := op.Actions[0].GetCopy()
if cpAction == nil {
t.Fatal("expected copy action")
}
if cpAction.Dest != "/" {
t.Errorf("expected dest \"/\", got %q", cpAction.Dest)
}
p := src.Path
if src.DockerImage != nil {
// DockerImage handles subpaths itself
p = "/"
}
if !filepath.IsAbs(p) {
p = "/" + p
}
if cpAction.Src != p {
t.Errorf("expected src %q, got %q", p, cpAction.Src)
}
if !cpAction.DirCopyContents {
t.Error("expected dir copy contents")
}
if !reflect.DeepEqual(cpAction.IncludePatterns, src.Includes) {
t.Fatalf("expected include patterns %v, got %v", src.Includes, cpAction.IncludePatterns)
}
if !reflect.DeepEqual(cpAction.ExcludePatterns, src.Excludes) {
t.Fatalf("expected exclude patterns %v, got %v", src.Excludes, cpAction.ExcludePatterns)
}
}
type expectMount struct {
dest string
selector string
typ pb.MountType
}
func mountMatches(gotMount *pb.Mount, wantMount expectMount) bool {
return wantMount.dest == gotMount.Dest && wantMount.selector == gotMount.Selector &&
wantMount.typ == gotMount.MountType
}
func checkContainsMount(t *testing.T, mounts []*pb.Mount, expect expectMount) {
t.Helper()
for _, mnt := range mounts {
if mountMatches(mnt, expect) {
return
}
}
t.Errorf("could not find mount with dest=%s selector=%s type=%q in mounts %v", expect.dest, expect.selector, expect.typ, mounts)
}
func checkCmd(t *testing.T, ops []*pb.Op, src *Source, expectMounts [][]expectMount) {
t.Helper()
if len(ops) != len(src.DockerImage.Cmd.Steps) {