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734 lines
21 KiB
734 lines
21 KiB
3 years ago
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package yaml
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import (
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"context"
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"encoding"
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"fmt"
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"io"
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"math"
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"reflect"
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"sort"
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"strconv"
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"strings"
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"time"
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"github.com/goccy/go-yaml/ast"
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"github.com/goccy/go-yaml/internal/errors"
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"github.com/goccy/go-yaml/parser"
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"github.com/goccy/go-yaml/printer"
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"github.com/goccy/go-yaml/token"
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"golang.org/x/xerrors"
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)
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const (
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// DefaultIndentSpaces default number of space for indent
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DefaultIndentSpaces = 2
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)
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// Encoder writes YAML values to an output stream.
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type Encoder struct {
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writer io.Writer
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opts []EncodeOption
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indent int
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indentSequence bool
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singleQuote bool
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isFlowStyle bool
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isJSONStyle bool
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useJSONMarshaler bool
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anchorCallback func(*ast.AnchorNode, interface{}) error
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anchorPtrToNameMap map[uintptr]string
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useLiteralStyleIfMultiline bool
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commentMap map[*Path]*Comment
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line int
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column int
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offset int
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indentNum int
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indentLevel int
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}
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// NewEncoder returns a new encoder that writes to w.
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// The Encoder should be closed after use to flush all data to w.
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func NewEncoder(w io.Writer, opts ...EncodeOption) *Encoder {
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return &Encoder{
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writer: w,
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opts: opts,
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indent: DefaultIndentSpaces,
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anchorPtrToNameMap: map[uintptr]string{},
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line: 1,
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column: 1,
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offset: 0,
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}
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}
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// Close closes the encoder by writing any remaining data.
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// It does not write a stream terminating string "...".
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func (e *Encoder) Close() error {
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return nil
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}
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// Encode writes the YAML encoding of v to the stream.
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// If multiple items are encoded to the stream,
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// the second and subsequent document will be preceded with a "---" document separator,
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// but the first will not.
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//
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// See the documentation for Marshal for details about the conversion of Go values to YAML.
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func (e *Encoder) Encode(v interface{}) error {
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return e.EncodeContext(context.Background(), v)
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}
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// EncodeContext writes the YAML encoding of v to the stream with context.Context.
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func (e *Encoder) EncodeContext(ctx context.Context, v interface{}) error {
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node, err := e.EncodeToNodeContext(ctx, v)
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if err != nil {
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return errors.Wrapf(err, "failed to encode to node")
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}
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if err := e.setCommentByCommentMap(node); err != nil {
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return errors.Wrapf(err, "failed to set comment by comment map")
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}
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var p printer.Printer
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e.writer.Write(p.PrintNode(node))
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return nil
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}
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// EncodeToNode convert v to ast.Node.
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func (e *Encoder) EncodeToNode(v interface{}) (ast.Node, error) {
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return e.EncodeToNodeContext(context.Background(), v)
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}
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// EncodeToNodeContext convert v to ast.Node with context.Context.
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func (e *Encoder) EncodeToNodeContext(ctx context.Context, v interface{}) (ast.Node, error) {
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for _, opt := range e.opts {
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if err := opt(e); err != nil {
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return nil, errors.Wrapf(err, "failed to run option for encoder")
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}
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}
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node, err := e.encodeValue(ctx, reflect.ValueOf(v), 1)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to encode value")
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}
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return node, nil
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}
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func (e *Encoder) setCommentByCommentMap(node ast.Node) error {
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if e.commentMap == nil {
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return nil
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}
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for path, comment := range e.commentMap {
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n, err := path.FilterNode(node)
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if err != nil {
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return errors.Wrapf(err, "failed to filter node")
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}
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comments := []*token.Token{}
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for _, text := range comment.Texts {
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comments = append(comments, token.New(text, text, nil))
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}
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commentGroup := ast.CommentGroup(comments)
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switch comment.Position {
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case CommentLinePosition:
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if err := n.SetComment(commentGroup); err != nil {
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return errors.Wrapf(err, "failed to set comment")
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}
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case CommentHeadPosition:
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parent := ast.Parent(node, n)
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if parent == nil {
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return ErrUnsupportedHeadPositionType(node)
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}
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switch node := parent.(type) {
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case *ast.MappingValueNode:
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if err := node.SetComment(commentGroup); err != nil {
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return errors.Wrapf(err, "failed to set comment")
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}
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case *ast.MappingNode:
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if err := node.SetComment(commentGroup); err != nil {
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return errors.Wrapf(err, "failed to set comment")
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}
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default:
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return ErrUnsupportedHeadPositionType(node)
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}
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default:
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return ErrUnknownCommentPositionType
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}
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}
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return nil
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}
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func (e *Encoder) encodeDocument(doc []byte) (ast.Node, error) {
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f, err := parser.ParseBytes(doc, 0)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to parse yaml")
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}
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for _, docNode := range f.Docs {
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if docNode.Body != nil {
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return docNode.Body, nil
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}
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}
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return nil, nil
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}
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func (e *Encoder) isInvalidValue(v reflect.Value) bool {
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if !v.IsValid() {
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return true
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}
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kind := v.Type().Kind()
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if kind == reflect.Ptr && v.IsNil() {
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return true
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}
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if kind == reflect.Interface && v.IsNil() {
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return true
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}
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return false
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}
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type jsonMarshaler interface {
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MarshalJSON() ([]byte, error)
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}
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func (e *Encoder) canEncodeByMarshaler(v reflect.Value) bool {
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if !v.CanInterface() {
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return false
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}
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iface := v.Interface()
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switch iface.(type) {
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case BytesMarshalerContext:
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return true
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case BytesMarshaler:
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return true
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case InterfaceMarshalerContext:
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return true
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case InterfaceMarshaler:
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return true
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case time.Time:
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return true
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case time.Duration:
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return true
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case encoding.TextMarshaler:
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return true
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case jsonMarshaler:
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return e.useJSONMarshaler
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}
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return false
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}
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func (e *Encoder) encodeByMarshaler(ctx context.Context, v reflect.Value, column int) (ast.Node, error) {
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iface := v.Interface()
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if marshaler, ok := iface.(BytesMarshalerContext); ok {
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doc, err := marshaler.MarshalYAML(ctx)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to MarshalYAML")
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}
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node, err := e.encodeDocument(doc)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to encode document")
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}
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return node, nil
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}
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if marshaler, ok := iface.(BytesMarshaler); ok {
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doc, err := marshaler.MarshalYAML()
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if err != nil {
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return nil, errors.Wrapf(err, "failed to MarshalYAML")
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}
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node, err := e.encodeDocument(doc)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to encode document")
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}
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return node, nil
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}
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if marshaler, ok := iface.(InterfaceMarshalerContext); ok {
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marshalV, err := marshaler.MarshalYAML(ctx)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to MarshalYAML")
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}
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return e.encodeValue(ctx, reflect.ValueOf(marshalV), column)
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}
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if marshaler, ok := iface.(InterfaceMarshaler); ok {
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marshalV, err := marshaler.MarshalYAML()
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if err != nil {
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return nil, errors.Wrapf(err, "failed to MarshalYAML")
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}
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return e.encodeValue(ctx, reflect.ValueOf(marshalV), column)
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}
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if t, ok := iface.(time.Time); ok {
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return e.encodeTime(t, column), nil
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}
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if t, ok := iface.(time.Duration); ok {
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return e.encodeDuration(t, column), nil
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}
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if marshaler, ok := iface.(encoding.TextMarshaler); ok {
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doc, err := marshaler.MarshalText()
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if err != nil {
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return nil, errors.Wrapf(err, "failed to MarshalText")
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}
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node, err := e.encodeDocument(doc)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to encode document")
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}
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return node, nil
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}
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if e.useJSONMarshaler {
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if marshaler, ok := iface.(jsonMarshaler); ok {
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jsonBytes, err := marshaler.MarshalJSON()
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if err != nil {
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return nil, errors.Wrapf(err, "failed to MarshalJSON")
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}
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doc, err := JSONToYAML(jsonBytes)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to convert json to yaml")
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}
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node, err := e.encodeDocument(doc)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to encode document")
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|
}
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return node, nil
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|
}
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}
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return nil, xerrors.Errorf("does not implemented Marshaler")
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}
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func (e *Encoder) encodeValue(ctx context.Context, v reflect.Value, column int) (ast.Node, error) {
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if e.isInvalidValue(v) {
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return e.encodeNil(), nil
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}
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if e.canEncodeByMarshaler(v) {
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node, err := e.encodeByMarshaler(ctx, v, column)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to encode by marshaler")
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}
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return node, nil
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}
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switch v.Type().Kind() {
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case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64:
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return e.encodeInt(v.Int()), nil
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case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64:
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return e.encodeUint(v.Uint()), nil
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case reflect.Float32:
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return e.encodeFloat(v.Float(), 32), nil
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|
case reflect.Float64:
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return e.encodeFloat(v.Float(), 64), nil
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case reflect.Ptr:
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anchorName := e.anchorPtrToNameMap[v.Pointer()]
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if anchorName != "" {
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aliasName := anchorName
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alias := ast.Alias(token.New("*", "*", e.pos(column)))
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alias.Value = ast.String(token.New(aliasName, aliasName, e.pos(column)))
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return alias, nil
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}
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return e.encodeValue(ctx, v.Elem(), column)
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|
case reflect.Interface:
|
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|
return e.encodeValue(ctx, v.Elem(), column)
|
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|
case reflect.String:
|
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|
return e.encodeString(v.String(), column), nil
|
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|
case reflect.Bool:
|
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|
return e.encodeBool(v.Bool()), nil
|
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|
case reflect.Slice:
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if mapSlice, ok := v.Interface().(MapSlice); ok {
|
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return e.encodeMapSlice(ctx, mapSlice, column)
|
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}
|
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|
return e.encodeSlice(ctx, v)
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|
case reflect.Array:
|
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|
return e.encodeArray(ctx, v)
|
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|
case reflect.Struct:
|
||
|
if v.CanInterface() {
|
||
|
if mapItem, ok := v.Interface().(MapItem); ok {
|
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|
return e.encodeMapItem(ctx, mapItem, column)
|
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|
}
|
||
|
if t, ok := v.Interface().(time.Time); ok {
|
||
|
return e.encodeTime(t, column), nil
|
||
|
}
|
||
|
}
|
||
|
return e.encodeStruct(ctx, v, column)
|
||
|
case reflect.Map:
|
||
|
return e.encodeMap(ctx, v, column), nil
|
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|
default:
|
||
|
return nil, xerrors.Errorf("unknown value type %s", v.Type().String())
|
||
|
}
|
||
|
return nil, nil
|
||
|
}
|
||
|
|
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|
func (e *Encoder) pos(column int) *token.Position {
|
||
|
return &token.Position{
|
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|
Line: e.line,
|
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|
Column: column,
|
||
|
Offset: e.offset,
|
||
|
IndentNum: e.indentNum,
|
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|
IndentLevel: e.indentLevel,
|
||
|
}
|
||
|
}
|
||
|
|
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|
func (e *Encoder) encodeNil() ast.Node {
|
||
|
value := "null"
|
||
|
return ast.Null(token.New(value, value, e.pos(e.column)))
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeInt(v int64) ast.Node {
|
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|
value := fmt.Sprint(v)
|
||
|
return ast.Integer(token.New(value, value, e.pos(e.column)))
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeUint(v uint64) ast.Node {
|
||
|
value := fmt.Sprint(v)
|
||
|
return ast.Integer(token.New(value, value, e.pos(e.column)))
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeFloat(v float64, bitSize int) ast.Node {
|
||
|
if v == math.Inf(0) {
|
||
|
value := ".inf"
|
||
|
return ast.Infinity(token.New(value, value, e.pos(e.column)))
|
||
|
} else if v == math.Inf(-1) {
|
||
|
value := "-.inf"
|
||
|
return ast.Infinity(token.New(value, value, e.pos(e.column)))
|
||
|
} else if math.IsNaN(v) {
|
||
|
value := ".nan"
|
||
|
return ast.Nan(token.New(value, value, e.pos(e.column)))
|
||
|
}
|
||
|
value := strconv.FormatFloat(v, 'g', -1, bitSize)
|
||
|
if !strings.Contains(value, ".") && !strings.Contains(value, "e") {
|
||
|
// append x.0 suffix to keep float value context
|
||
|
value = fmt.Sprintf("%s.0", value)
|
||
|
}
|
||
|
return ast.Float(token.New(value, value, e.pos(e.column)))
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) isNeedQuoted(v string) bool {
|
||
|
if e.isJSONStyle {
|
||
|
return true
|
||
|
}
|
||
|
if e.useLiteralStyleIfMultiline && strings.ContainsAny(v, "\n\r") {
|
||
|
return false
|
||
|
}
|
||
|
if token.IsNeedQuoted(v) {
|
||
|
return true
|
||
|
}
|
||
|
return false
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeString(v string, column int) ast.Node {
|
||
|
if e.isNeedQuoted(v) {
|
||
|
if e.singleQuote {
|
||
|
v = quoteWith(v, '\'')
|
||
|
} else {
|
||
|
v = strconv.Quote(v)
|
||
|
}
|
||
|
}
|
||
|
return ast.String(token.New(v, v, e.pos(column)))
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeBool(v bool) ast.Node {
|
||
|
value := fmt.Sprint(v)
|
||
|
return ast.Bool(token.New(value, value, e.pos(e.column)))
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeSlice(ctx context.Context, value reflect.Value) (ast.Node, error) {
|
||
|
if e.indentSequence {
|
||
|
e.column += e.indent
|
||
|
}
|
||
|
column := e.column
|
||
|
sequence := ast.Sequence(token.New("-", "-", e.pos(column)), e.isFlowStyle)
|
||
|
for i := 0; i < value.Len(); i++ {
|
||
|
node, err := e.encodeValue(ctx, value.Index(i), column)
|
||
|
if err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to encode value for slice")
|
||
|
}
|
||
|
sequence.Values = append(sequence.Values, node)
|
||
|
}
|
||
|
if e.indentSequence {
|
||
|
e.column -= e.indent
|
||
|
}
|
||
|
return sequence, nil
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeArray(ctx context.Context, value reflect.Value) (ast.Node, error) {
|
||
|
if e.indentSequence {
|
||
|
e.column += e.indent
|
||
|
}
|
||
|
column := e.column
|
||
|
sequence := ast.Sequence(token.New("-", "-", e.pos(column)), e.isFlowStyle)
|
||
|
for i := 0; i < value.Len(); i++ {
|
||
|
node, err := e.encodeValue(ctx, value.Index(i), column)
|
||
|
if err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to encode value for array")
|
||
|
}
|
||
|
sequence.Values = append(sequence.Values, node)
|
||
|
}
|
||
|
if e.indentSequence {
|
||
|
e.column -= e.indent
|
||
|
}
|
||
|
return sequence, nil
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeMapItem(ctx context.Context, item MapItem, column int) (*ast.MappingValueNode, error) {
|
||
|
k := reflect.ValueOf(item.Key)
|
||
|
v := reflect.ValueOf(item.Value)
|
||
|
value, err := e.encodeValue(ctx, v, column)
|
||
|
if err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to encode MapItem")
|
||
|
}
|
||
|
if m, ok := value.(*ast.MappingNode); ok {
|
||
|
m.AddColumn(e.indent)
|
||
|
}
|
||
|
return ast.MappingValue(
|
||
|
token.New("", "", e.pos(column)),
|
||
|
e.encodeString(k.Interface().(string), column),
|
||
|
value,
|
||
|
), nil
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeMapSlice(ctx context.Context, value MapSlice, column int) (ast.Node, error) {
|
||
|
node := ast.Mapping(token.New("", "", e.pos(column)), e.isFlowStyle)
|
||
|
for _, item := range value {
|
||
|
value, err := e.encodeMapItem(ctx, item, column)
|
||
|
if err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to encode MapItem for MapSlice")
|
||
|
}
|
||
|
node.Values = append(node.Values, value)
|
||
|
}
|
||
|
return node, nil
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeMap(ctx context.Context, value reflect.Value, column int) ast.Node {
|
||
|
node := ast.Mapping(token.New("", "", e.pos(column)), e.isFlowStyle)
|
||
|
keys := make([]interface{}, len(value.MapKeys()))
|
||
|
for i, k := range value.MapKeys() {
|
||
|
keys[i] = k.Interface()
|
||
|
}
|
||
|
sort.Slice(keys, func(i, j int) bool {
|
||
|
return fmt.Sprint(keys[i]) < fmt.Sprint(keys[j])
|
||
|
})
|
||
|
for _, key := range keys {
|
||
|
k := reflect.ValueOf(key)
|
||
|
v := value.MapIndex(k)
|
||
|
value, err := e.encodeValue(ctx, v, column)
|
||
|
if err != nil {
|
||
|
return nil
|
||
|
}
|
||
|
if value.Type() == ast.MappingType || value.Type() == ast.MappingValueType {
|
||
|
value.AddColumn(e.indent)
|
||
|
}
|
||
|
node.Values = append(node.Values, ast.MappingValue(
|
||
|
nil,
|
||
|
e.encodeString(fmt.Sprint(key), column),
|
||
|
value,
|
||
|
))
|
||
|
}
|
||
|
return node
|
||
|
}
|
||
|
|
||
|
// IsZeroer is used to check whether an object is zero to determine
|
||
|
// whether it should be omitted when marshaling with the omitempty flag.
|
||
|
// One notable implementation is time.Time.
|
||
|
type IsZeroer interface {
|
||
|
IsZero() bool
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) isZeroValue(v reflect.Value) bool {
|
||
|
kind := v.Kind()
|
||
|
if z, ok := v.Interface().(IsZeroer); ok {
|
||
|
if (kind == reflect.Ptr || kind == reflect.Interface) && v.IsNil() {
|
||
|
return true
|
||
|
}
|
||
|
return z.IsZero()
|
||
|
}
|
||
|
switch kind {
|
||
|
case reflect.String:
|
||
|
return len(v.String()) == 0
|
||
|
case reflect.Interface, reflect.Ptr:
|
||
|
return v.IsNil()
|
||
|
case reflect.Slice:
|
||
|
return v.Len() == 0
|
||
|
case reflect.Map:
|
||
|
return v.Len() == 0
|
||
|
case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64:
|
||
|
return v.Int() == 0
|
||
|
case reflect.Float32, reflect.Float64:
|
||
|
return v.Float() == 0
|
||
|
case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uintptr:
|
||
|
return v.Uint() == 0
|
||
|
case reflect.Bool:
|
||
|
return !v.Bool()
|
||
|
case reflect.Struct:
|
||
|
vt := v.Type()
|
||
|
for i := v.NumField() - 1; i >= 0; i-- {
|
||
|
if vt.Field(i).PkgPath != "" {
|
||
|
continue // private field
|
||
|
}
|
||
|
if !e.isZeroValue(v.Field(i)) {
|
||
|
return false
|
||
|
}
|
||
|
}
|
||
|
return true
|
||
|
}
|
||
|
return false
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeTime(v time.Time, column int) ast.Node {
|
||
|
value := v.Format(time.RFC3339Nano)
|
||
|
if e.isJSONStyle {
|
||
|
value = strconv.Quote(value)
|
||
|
}
|
||
|
return ast.String(token.New(value, value, e.pos(column)))
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeDuration(v time.Duration, column int) ast.Node {
|
||
|
value := v.String()
|
||
|
if e.isJSONStyle {
|
||
|
value = strconv.Quote(value)
|
||
|
}
|
||
|
return ast.String(token.New(value, value, e.pos(column)))
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeAnchor(anchorName string, value ast.Node, fieldValue reflect.Value, column int) (ast.Node, error) {
|
||
|
anchorNode := ast.Anchor(token.New("&", "&", e.pos(column)))
|
||
|
anchorNode.Name = ast.String(token.New(anchorName, anchorName, e.pos(column)))
|
||
|
anchorNode.Value = value
|
||
|
if e.anchorCallback != nil {
|
||
|
if err := e.anchorCallback(anchorNode, fieldValue.Interface()); err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to marshal anchor")
|
||
|
}
|
||
|
if snode, ok := anchorNode.Name.(*ast.StringNode); ok {
|
||
|
anchorName = snode.Value
|
||
|
}
|
||
|
}
|
||
|
if fieldValue.Kind() == reflect.Ptr {
|
||
|
e.anchorPtrToNameMap[fieldValue.Pointer()] = anchorName
|
||
|
}
|
||
|
return anchorNode, nil
|
||
|
}
|
||
|
|
||
|
func (e *Encoder) encodeStruct(ctx context.Context, value reflect.Value, column int) (ast.Node, error) {
|
||
|
node := ast.Mapping(token.New("", "", e.pos(column)), e.isFlowStyle)
|
||
|
structType := value.Type()
|
||
|
structFieldMap, err := structFieldMap(structType)
|
||
|
if err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to get struct field map")
|
||
|
}
|
||
|
hasInlineAnchorField := false
|
||
|
var inlineAnchorValue reflect.Value
|
||
|
for i := 0; i < value.NumField(); i++ {
|
||
|
field := structType.Field(i)
|
||
|
if isIgnoredStructField(field) {
|
||
|
continue
|
||
|
}
|
||
|
fieldValue := value.FieldByName(field.Name)
|
||
|
structField := structFieldMap[field.Name]
|
||
|
if structField.IsOmitEmpty && e.isZeroValue(fieldValue) {
|
||
|
// omit encoding
|
||
|
continue
|
||
|
}
|
||
|
value, err := e.encodeValue(ctx, fieldValue, column)
|
||
|
if err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to encode value")
|
||
|
}
|
||
|
if m, ok := value.(*ast.MappingNode); ok {
|
||
|
if !e.isFlowStyle && structField.IsFlow {
|
||
|
m.SetIsFlowStyle(true)
|
||
|
}
|
||
|
value.AddColumn(e.indent)
|
||
|
} else if s, ok := value.(*ast.SequenceNode); ok {
|
||
|
if !e.isFlowStyle && structField.IsFlow {
|
||
|
s.SetIsFlowStyle(true)
|
||
|
}
|
||
|
}
|
||
|
key := e.encodeString(structField.RenderName, column)
|
||
|
switch {
|
||
|
case structField.AnchorName != "":
|
||
|
anchorNode, err := e.encodeAnchor(structField.AnchorName, value, fieldValue, column)
|
||
|
if err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to encode anchor")
|
||
|
}
|
||
|
value = anchorNode
|
||
|
case structField.IsAutoAlias:
|
||
|
if fieldValue.Kind() != reflect.Ptr {
|
||
|
return nil, xerrors.Errorf(
|
||
|
"%s in struct is not pointer type. but required automatically alias detection",
|
||
|
structField.FieldName,
|
||
|
)
|
||
|
}
|
||
|
anchorName := e.anchorPtrToNameMap[fieldValue.Pointer()]
|
||
|
if anchorName == "" {
|
||
|
return nil, xerrors.Errorf(
|
||
|
"cannot find anchor name from pointer address for automatically alias detection",
|
||
|
)
|
||
|
}
|
||
|
aliasName := anchorName
|
||
|
alias := ast.Alias(token.New("*", "*", e.pos(column)))
|
||
|
alias.Value = ast.String(token.New(aliasName, aliasName, e.pos(column)))
|
||
|
value = alias
|
||
|
if structField.IsInline {
|
||
|
// if both used alias and inline, output `<<: *alias`
|
||
|
key = ast.MergeKey(token.New("<<", "<<", e.pos(column)))
|
||
|
}
|
||
|
case structField.AliasName != "":
|
||
|
aliasName := structField.AliasName
|
||
|
alias := ast.Alias(token.New("*", "*", e.pos(column)))
|
||
|
alias.Value = ast.String(token.New(aliasName, aliasName, e.pos(column)))
|
||
|
value = alias
|
||
|
if structField.IsInline {
|
||
|
// if both used alias and inline, output `<<: *alias`
|
||
|
key = ast.MergeKey(token.New("<<", "<<", e.pos(column)))
|
||
|
}
|
||
|
case structField.IsInline:
|
||
|
isAutoAnchor := structField.IsAutoAnchor
|
||
|
if !hasInlineAnchorField {
|
||
|
hasInlineAnchorField = isAutoAnchor
|
||
|
}
|
||
|
if isAutoAnchor {
|
||
|
inlineAnchorValue = fieldValue
|
||
|
}
|
||
|
mapNode, ok := value.(ast.MapNode)
|
||
|
if !ok {
|
||
|
return nil, xerrors.Errorf("inline value is must be map or struct type")
|
||
|
}
|
||
|
mapIter := mapNode.MapRange()
|
||
|
for mapIter.Next() {
|
||
|
key := mapIter.Key()
|
||
|
value := mapIter.Value()
|
||
|
keyName := key.GetToken().Value
|
||
|
if structFieldMap.isIncludedRenderName(keyName) {
|
||
|
// if declared same key name, skip encoding this field
|
||
|
continue
|
||
|
}
|
||
|
key.AddColumn(-e.indent)
|
||
|
value.AddColumn(-e.indent)
|
||
|
node.Values = append(node.Values, ast.MappingValue(nil, key, value))
|
||
|
}
|
||
|
continue
|
||
|
case structField.IsAutoAnchor:
|
||
|
anchorNode, err := e.encodeAnchor(structField.RenderName, value, fieldValue, column)
|
||
|
if err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to encode anchor")
|
||
|
}
|
||
|
value = anchorNode
|
||
|
}
|
||
|
node.Values = append(node.Values, ast.MappingValue(nil, key, value))
|
||
|
}
|
||
|
if hasInlineAnchorField {
|
||
|
node.AddColumn(e.indent)
|
||
|
anchorName := "anchor"
|
||
|
anchorNode := ast.Anchor(token.New("&", "&", e.pos(column)))
|
||
|
anchorNode.Name = ast.String(token.New(anchorName, anchorName, e.pos(column)))
|
||
|
anchorNode.Value = node
|
||
|
if e.anchorCallback != nil {
|
||
|
if err := e.anchorCallback(anchorNode, value.Addr().Interface()); err != nil {
|
||
|
return nil, errors.Wrapf(err, "failed to marshal anchor")
|
||
|
}
|
||
|
if snode, ok := anchorNode.Name.(*ast.StringNode); ok {
|
||
|
anchorName = snode.Value
|
||
|
}
|
||
|
}
|
||
|
if inlineAnchorValue.Kind() == reflect.Ptr {
|
||
|
e.anchorPtrToNameMap[inlineAnchorValue.Pointer()] = anchorName
|
||
|
}
|
||
|
return anchorNode, nil
|
||
|
}
|
||
|
return node, nil
|
||
|
}
|