Struct-filling #14
@@ -193,9 +193,10 @@ naming a kind that holds it. The fields an embedded struct promotes are columns
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same record; a named struct field, or a pointer to one, fills from its own tags as a
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same record; a named struct field, or a pointer to one, fills from its own tags as a
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record of its own, so its references draw apart from its parent's. `fake:"-"` leaves a
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record of its own, so its references draw apart from its parent's. `fake:"-"` leaves a
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struct field, embedded or named, or a pointer to one, unfilled. Untagged fields keep
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struct field, embedded or named, or a pointer to one, unfilled. Untagged fields keep
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their values, and so does a pointer back to a struct already being filled. The first call for a type compiles its tags and reports
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their values, and so does a pointer back to a struct already being filled; a type
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what they get wrong, with the same error on every later call; a `datatype` in a tag
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whose fields reach more than 1024 structs is refused, naming `fake:"-"` to cut it. The
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names the Go type that already sets it.
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first call for a type compiles its tags and reports what they get wrong, with the same
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error on every later call; a `datatype` in a tag names the Go type that already sets it.
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A `*Generator` is safe for concurrent use; a seeded sequence is reproducible only
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A `*Generator` is safe for concurrent use; a seeded sequence is reproducible only
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when drawn from one goroutine. Changing how a value is composed shifts the seeded
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when drawn from one goroutine. Changing how a value is composed shifts the seeded
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@@ -65,7 +65,7 @@ func IsTemplate(arg string) (bool, error) {
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func isTemplate(arg string) (bool, error) {
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func isTemplate(arg string) (bool, error) {
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if strings.ContainsRune(arg, '{') || (isJSONStart(strings.TrimSpace(arg)) && json.Valid([]byte(arg))) {
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if strings.ContainsRune(arg, '{') || (isJSONStart(strings.TrimSpace(arg)) && json.Valid([]byte(arg))) {
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if path, lone := loneReference(arg); lone {
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if path, lone := loneReference(arg); lone {
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return false, fmt.Errorf("%s is the path %s written as a template; write %s", arg, path, path)
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return false, pathAdvice(path, fmt.Sprintf("%s is the path %s written as a template", arg, path))
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}
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}
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return true, nil
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return true, nil
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}
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}
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@@ -73,7 +73,7 @@ func isTemplate(arg string) (bool, error) {
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return false, fmt.Errorf("%q holds a %q, which no path may, and it is not valid JSON, so it names no template either", arg, arg[i:i+1])
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return false, fmt.Errorf("%q holds a %q, which no path may, and it is not valid JSON, so it names no template either", arg, arg[i:i+1])
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}
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}
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if path := strings.TrimLeft(arg, "/"); path != arg && path != "" {
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if path := strings.TrimLeft(arg, "/"); path != arg && path != "" {
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return false, fmt.Errorf("path %s starts with /, and every path starts at the root already; write %s", arg, path)
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return false, pathAdvice(path, fmt.Sprintf("path %s starts with /, and every path starts at the root already", arg))
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}
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}
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return false, nil
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return false, nil
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}
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}
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@@ -82,6 +82,14 @@ func isJSONStart(arg string) bool {
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return strings.HasPrefix(arg, "[") || strings.HasPrefix(arg, `"`)
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return strings.HasPrefix(arg, "[") || strings.HasPrefix(arg, `"`)
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}
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}
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// pathAdvice refuses a spelling of path, naming path to write, or why no name can spell it.
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func pathAdvice(path, refusal string) error {
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if err := checkPathNames(path); err != nil {
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return err
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}
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return fmt.Errorf("%s; write %s", refusal, path)
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}
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// loneReference is the path a template spells when the value it holds — a format string, a
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// loneReference is the path a template spells when the value it holds — a format string, a
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// JSON string, or an object holding only a format — is one reference token and nothing else.
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// JSON string, or an object holding only a format — is one reference token and nothing else.
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func loneReference(arg string) (string, bool) {
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func loneReference(arg string) (string, bool) {
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@@ -101,6 +109,9 @@ func loneReference(arg string) (string, bool) {
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if units[0].kind != 'b' || !isRef(body) || strings.ContainsAny(body, "|(") {
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if units[0].kind != 'b' || !isRef(body) || strings.ContainsAny(body, "|(") {
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return "", false
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return "", false
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}
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}
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if strings.HasPrefix(body, "/") {
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body = "/" + strings.TrimLeft(body, "/")
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}
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_, path, err := refShape(body)
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_, path, err := refShape(body)
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return path, err == nil
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return path, err == nil
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}
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}
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@@ -396,6 +396,16 @@ func checkName(name string) error {
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return nil
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return nil
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}
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}
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// checkPathNames rejects a dotted path with a segment no name may be.
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func checkPathNames(path string) error {
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for _, seg := range strings.Split(path, ".") {
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if err := checkName(seg); err != nil {
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return fmt.Errorf("path %w", err)
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}
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}
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return nil
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}
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// isOption reports whether a template key configures the node instead of naming a
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// isOption reports whether a template key configures the node instead of naming a
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// field. These names can never be fields.
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// field. These names can never be fields.
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func isOption(name string) bool {
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func isOption(name string) bool {
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@@ -36,9 +36,8 @@ type structResult struct {
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err error
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err error
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}
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}
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// maxStructRecords caps the records one struct type fills, which pointers between struct
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// maxStructs caps the structs compiling one type walks through its fields.
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// types multiply along every path.
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const maxStructs = 1 << 10
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const maxStructRecords = 1 << 10
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// structShapeOf compiles a struct type once and remembers the answer. Callers hold the
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// structShapeOf compiles a struct type once and remembers the answer. Callers hold the
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// generator's lock.
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// generator's lock.
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@@ -50,7 +49,7 @@ func (f *Generator) structShapeOf(t reflect.Type) (*structShape, error) {
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if label == "" {
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if label == "" {
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label = "struct"
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label = "struct"
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}
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}
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sc := &structCompile{root: f.categories, visiting: map[reflect.Type]bool{}, records: maxStructRecords}
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sc := &structCompile{root: f.categories, visiting: map[reflect.Type]bool{}, structs: maxStructs}
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shape, err := sc.record(t, label)
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shape, err := sc.record(t, label)
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if err == nil && shape.empty() {
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if err == nil && shape.empty() {
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err = fmt.Errorf("%s has no fake tags, so nothing to fill", t)
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err = fmt.Errorf("%s has no fake tags, so nothing to fill", t)
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@@ -79,13 +78,13 @@ type nestedStruct struct {
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func (s *structShape) empty() bool { return s.record == nil && len(s.nested) == 0 }
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func (s *structShape) empty() bool { return s.record == nil && len(s.nested) == 0 }
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// structCompile is what compiling one struct type shares across the records it reaches: the
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// structCompile is what compiling one struct type shares across the structs it reaches: the
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// loaded tree, the types compiling or embedded above, so a pointer back to one is left alone
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// loaded tree, the types compiling or embedded above, so a pointer back to one is left alone
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// rather than filled without end, and how many more records it may build.
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// rather than filled without end, and how many more structs it may walk.
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type structCompile struct {
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type structCompile struct {
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root map[string]node
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root map[string]node
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visiting map[reflect.Type]bool
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visiting map[reflect.Type]bool
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records int
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structs int
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}
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}
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// structFields gathers what one struct type fills: its tagged fields, those its embedded
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// structFields gathers what one struct type fills: its tagged fields, those its embedded
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@@ -100,8 +99,8 @@ type structFields struct {
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}
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}
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func (sc *structCompile) record(t reflect.Type, label string) (*structShape, error) {
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func (sc *structCompile) record(t reflect.Type, label string) (*structShape, error) {
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if sc.records--; sc.records < 0 {
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if err := sc.spend(label); err != nil {
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return nil, fmt.Errorf(`%s: the struct fields reach more than %d records; leave a pointer unfilled with fake:"-"`, label, maxStructRecords)
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return nil, err
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}
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}
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sc.visiting[t] = true
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sc.visiting[t] = true
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defer delete(sc.visiting, t)
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defer delete(sc.visiting, t)
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@@ -117,6 +116,13 @@ func (sc *structCompile) record(t reflect.Type, label string) (*structShape, err
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return c.shape, nil
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return c.shape, nil
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}
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}
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func (sc *structCompile) spend(label string) error {
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if sc.structs--; sc.structs >= 0 {
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return nil
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}
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return fmt.Errorf(`%s: the struct fields reach more than %d structs; leave a struct field unfilled with fake:"-"`, label, maxStructs)
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}
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// walk gathers the fields of struct type t, which sits at index within c.t.
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// walk gathers the fields of struct type t, which sits at index within c.t.
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func (c *structFields) walk(t reflect.Type, index []int) error {
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func (c *structFields) walk(t reflect.Type, index []int) error {
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for i := 0; i < t.NumField(); i++ {
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for i := 0; i < t.NumField(); i++ {
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@@ -184,6 +190,9 @@ func fieldPath(t reflect.Type, index []int) string {
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}
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}
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func (c *structFields) embed(sf reflect.StructField, elem reflect.Type) error {
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func (c *structFields) embed(sf reflect.StructField, elem reflect.Type) error {
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if err := c.spend(c.label + "." + fieldPath(c.t, sf.Index)); err != nil {
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return err
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}
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c.visiting[elem] = true
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c.visiting[elem] = true
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defer delete(c.visiting, elem)
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defer delete(c.visiting, elem)
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tags, nested := len(c.tags), len(c.shape.nested)
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tags, nested := len(c.tags), len(c.shape.nested)
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@@ -218,10 +227,8 @@ func tagValue(sf reflect.StructField, tag string) (any, error) {
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case inline:
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case inline:
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return inputValue(tag)
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return inputValue(tag)
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}
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}
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for _, seg := range strings.Split(tag, ".") {
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if err := checkPathNames(tag); err != nil {
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if err := checkName(seg); err != nil {
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return nil, err
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return nil, fmt.Errorf("path %w", err)
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}
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}
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}
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return "{/" + tag + "}", nil
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return "{/" + tag + "}", nil
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}
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}
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Reference in New Issue
Block a user