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Beispiel

google.golang.org/protobuf v1.36.11: prototext.Unmarshal

Verifiziertes Beispiel für golang google.golang.org/protobuf v1.36.11: prototext.Unmarshal. Der Vertrag lief auf go 1.26 · linux debian/x64 · docker und…

sha256:b0260f6a2ceda20e0639956fb3a3371bf7ab72cd3dd489bdc09082884c98a1df

Dieses Netzwerk bietet eine Sache: ein Sample, das baut. Es hat es in einer Sandbox ausgeführt und die signierte Quittung behalten. Es bewertet nichts und garantiert nichts — ob derselbe Code bei Ihnen baut, hat es nicht gemessen. Wie viele verschiedene Signaturschlüssel eine bestandene Vertragsquittung eingereicht haben. Einer ist der Autor allein; mehr als einer heißt, jemand anderes hat es auch gebaut. Ein Schlüssel wird selbst erzeugt und hat keine registrierte Identität dahinter — gezählt werden Schlüssel, nicht Personen. MIT-0

Ausführungsbelege

Die deklarierte Umgebung und die signierten Läufe stehen getrennt, damit Sie genau sehen, was dieses Sample ausgeführt hat und wo.

Beleggrundlage
Signierter Vertrag bestanden
Verifizierungsbelege
1
Signaturschlüssel, die es gebaut haben
1
Deklarierte Umgebung go linux 24 · ubuntu · glibc 2.39 x64 go go go

Umgebungen der Verifizierungsläufe

Umgebung Contract Stufen Lauf
go 1.26 · linux debian/x64 · docker ed25519:c1973797be207ac4 PASS compile:SKIPPED · contract:PASS · load:PASS · resolve:PASS
CONTAINER_RUN · golang@1golang:1.26@sha256:e30143be198a…
2026-09-02

Fall

HOW
Ziel
verify prototext.Unmarshal in pkg:golang/google.golang.org/protobuf@v1.36.11
Pakete
Symbole
  • prototext.Unmarshal
Umgebung
go
Erstellt
2026-09-02T08:51:27Z

Contract

  1. prototext.Unmarshal parses scalar fields, enums, repeated elements, and nested submessages using either brace or angle-bracket syntax.
  2. prototext.Unmarshal supports comments and list notation for repeated fields in text format representations.
  3. prototext.UnmarshalOptions.DiscardUnknown ignores unrecognized fields when true and returns an error by default when false.
  4. prototext.Unmarshal parses map entries and Google well-known types such as Timestamp and Duration.
  5. prototext.Unmarshal returns an error when encountering syntax errors or type mismatches.

Dateien

  • NOTES.md
  • PROMPT.md
  • csx.json
  • go.mod
  • go.sum
  • prototext_unmarshal_test.go
  • spec.json

Quellartefakt herunterladen (tar.gz)

Quelltext

NOTES.md
# Protocol Buffers Text Format Deserialization with prototext.Unmarshal

This sample demonstrates and verifies text format unmarshaling semantics in `google.golang.org/protobuf/encoding/prototext` pinned to version `v1.36.11`.

## Verified Behaviors

1. **Basic Field Deserialization and Comments**:
   - `prototext.Unmarshal` parses standard scalar fields (int64, string, bool, double).
   - Text format supports comments starting with `#`.

2. **Enums and Nested Submessages**:
   - Enum fields can be populated using their symbolic identifier names (e.g. `STATUS_ACTIVE`).
   - Nested submessages can be parsed using either curly braces `{ ... }` or angle brackets `< ... >`.

3. **Repeated Fields**:
   - Repeated fields are parsed from multiple consecutive field declarations or from list brackets `[...]`.

4. **Map Entries**:
   - Protocol buffer maps are parsed from sequence entries with `key` and `value` fields.

5. **UnmarshalOptions.DiscardUnknown**:
   - By default, unmarshaling returns an error when encountering unknown/unrecognized fields.
   - Setting `prototext.UnmarshalOptions{DiscardUnknown: true}` ignores unknown fields and populates known fields.

6. **Syntax Errors and Well-Known Types**:
   - Malformed text input (e.g. unclosed braces or invalid scalar types) produces an error.
   - Google well-known types (`timestamppb.Timestamp`, `durationpb.Duration`) are deserialized properly.
PROMPT.md
Clean-room public code sample — generation instructions

Write a brand-new, minimal, self-contained code sample in this clean-room directory.
Do not copy, paraphrase, or reference any existing project source. Work only from this spec.

A csx.json manifest scaffold already exists. Do not recreate it from memory. Preserve its case.goal, packages and symbols; fill its empty case.contract with exact assertions and correct its environment, commands and verifierAdapter for the files you generate.

Goal: verify prototext.Unmarshal in pkg:golang/google.golang.org/protobuf@v1.36.11
Kind: HOW

Use EXACTLY these public packages and versions:
  - pkg:golang/google.golang.org/protobuf@v1.36.11
Demonstrate these symbols/APIs:
  - prototext.Unmarshal

Rules:
  - One focused purpose; the smallest project that proves the goal.
  - Include a contract test (test/contract.*) that runs OFFLINE and exits 0 exactly when the goal behavior works.
  - Pin every dependency with a lockfile so resolution is reproducible.
  - No secrets, credentials, or tokens. No real URLs (only example.com or localhost). No absolute paths.
  - No personal names, emails, company names, or project identifiers of any kind.
  - No binaries and no generated output (node_modules, dist, target, venv, .git, .env).
  - Keep it under 200 files and 256KB packed.
csx.json
{"case":{"caseId":"case:sha256:ad9c8d1bae3fde3a0e3ab7b0838a91759efb6861e3f11425c4048f96ad11f6e6","contract":["prototext.Unmarshal parses scalar fields, enums, repeated elements, and nested submessages using either brace or angle-bracket syntax.","prototext.Unmarshal supports comments and list notation for repeated fields in text format representations.","prototext.UnmarshalOptions.DiscardUnknown ignores unrecognized fields when true and returns an error by default when false.","prototext.Unmarshal parses map entries and Google well-known types such as Timestamp and Duration.","prototext.Unmarshal returns an error when encountering syntax errors or type mismatches."],"goal":"verify prototext.Unmarshal in pkg:golang/google.golang.org/protobuf@v1.36.11","kind":"HOW","packages":["pkg:golang/google.golang.org/protobuf@v1.36.11"],"schemaVersion":1,"symbols":["prototext.Unmarshal"]},"contractCommand":["go","test","./..."],"environment":{"arch":"x64","distro":"ubuntu","ecosystem":"golang","language":"go","libc":"glibc","libcVersion":"2.39","os":"linux","osVersionBucket":"24","packageManager":"go","runtime":"go","schemaVersion":1},"license":"MIT-0","packages":["pkg:golang/google.golang.org/protobuf@v1.36.11"],"schemaVersion":1,"subject":"pkg:golang/google.golang.org/protobuf@v1.36.11","symbols":["prototext.Unmarshal"],"verifierAdapter":"golang@1"}
go.mod
module example.com/prototextunmarshal

go 1.23

require google.golang.org/protobuf v1.36.11
go.sum
github.com/google/go-cmp v0.7.0 h1:wk8382ETsv4JYUZwIsn6YpYiWiBsYLSJiTsyBybVuN8=
github.com/google/go-cmp v0.7.0/go.mod h1:pXiqmnSA92OHEEa9HXL2W4E7lf9JzCmGVUdgjX3N/iU=
google.golang.org/protobuf v1.36.11 h1:fV6ZwhNocDyBLK0dj+fg8ektcVegBBuEolpbTQyBNVE=
google.golang.org/protobuf v1.36.11/go.mod h1:HTf+CrKn2C3g5S8VImy6tdcUvCska2kB7j23XfzDpco=
prototext_unmarshal_test.go
package main

import (
	"testing"
	"time"

	"google.golang.org/protobuf/encoding/prototext"
	"google.golang.org/protobuf/proto"
	"google.golang.org/protobuf/reflect/protodesc"
	"google.golang.org/protobuf/reflect/protoreflect"
	"google.golang.org/protobuf/types/descriptorpb"
	"google.golang.org/protobuf/types/dynamicpb"
	"google.golang.org/protobuf/types/known/durationpb"
	"google.golang.org/protobuf/types/known/timestamppb"
)

func buildDescriptors(t *testing.T) (protoreflect.MessageDescriptor, protoreflect.MessageDescriptor, protoreflect.EnumDescriptor) {
	t.Helper()
	fd := &descriptorpb.FileDescriptorProto{
		Name:    proto.String("sample.proto"),
		Syntax:  proto.String("proto3"),
		Package: proto.String("sample"),
		EnumType: []*descriptorpb.EnumDescriptorProto{
			{
				Name: proto.String("Status"),
				Value: []*descriptorpb.EnumValueDescriptorProto{
					{Name: proto.String("STATUS_UNSPECIFIED"), Number: proto.Int32(0)},
					{Name: proto.String("STATUS_ACTIVE"), Number: proto.Int32(1)},
					{Name: proto.String("STATUS_SUSPENDED"), Number: proto.Int32(2)},
				},
			},
		},
		MessageType: []*descriptorpb.DescriptorProto{
			{
				Name: proto.String("Profile"),
				Field: []*descriptorpb.FieldDescriptorProto{
					{
						Name:   proto.String("bio"),
						Number: proto.Int32(1),
						Label:  descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
						Type:   descriptorpb.FieldDescriptorProto_TYPE_STRING.Enum(),
					},
					{
						Name:   proto.String("avatar_url"),
						Number: proto.Int32(2),
						Label:  descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
						Type:   descriptorpb.FieldDescriptorProto_TYPE_STRING.Enum(),
					},
				},
			},
			{
				Name: proto.String("User"),
				Field: []*descriptorpb.FieldDescriptorProto{
					{
						Name:   proto.String("user_id"),
						Number: proto.Int32(1),
						Label:  descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
						Type:   descriptorpb.FieldDescriptorProto_TYPE_INT64.Enum(),
					},
					{
						Name:   proto.String("username"),
						Number: proto.Int32(2),
						Label:  descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
						Type:   descriptorpb.FieldDescriptorProto_TYPE_STRING.Enum(),
					},
					{
						Name:   proto.String("is_active"),
						Number: proto.Int32(3),
						Label:  descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
						Type:   descriptorpb.FieldDescriptorProto_TYPE_BOOL.Enum(),
					},
					{
						Name:   proto.String("score"),
						Number: proto.Int32(4),
						Label:  descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
						Type:   descriptorpb.FieldDescriptorProto_TYPE_DOUBLE.Enum(),
					},
					{
						Name:     proto.String("status"),
						Number:   proto.Int32(5),
						Label:    descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
						Type:     descriptorpb.FieldDescriptorProto_TYPE_ENUM.Enum(),
						TypeName: proto.String(".sample.Status"),
					},
					{
						Name:     proto.String("profile"),
						Number:   proto.Int32(6),
						Label:    descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
						Type:     descriptorpb.FieldDescriptorProto_TYPE_MESSAGE.Enum(),
						TypeName: proto.String(".sample.Profile"),
					},
					{
						Name:   proto.String("tags"),
						Number: proto.Int32(7),
						Label:  descriptorpb.FieldDescriptorProto_LABEL_REPEATED.Enum(),
						Type:   descriptorpb.FieldDescriptorProto_TYPE_STRING.Enum(),
					},
				},
			},
			{
				Name: proto.String("ConfigMap"),
				NestedType: []*descriptorpb.DescriptorProto{
					{
						Name: proto.String("AttributesEntry"),
						Field: []*descriptorpb.FieldDescriptorProto{
							{
								Name:   proto.String("key"),
								Number: proto.Int32(1),
								Label:  descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
								Type:   descriptorpb.FieldDescriptorProto_TYPE_STRING.Enum(),
							},
							{
								Name:   proto.String("value"),
								Number: proto.Int32(2),
								Label:  descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum(),
								Type:   descriptorpb.FieldDescriptorProto_TYPE_STRING.Enum(),
							},
						},
						Options: &descriptorpb.MessageOptions{
							MapEntry: proto.Bool(true),
						},
					},
				},
				Field: []*descriptorpb.FieldDescriptorProto{
					{
						Name:     proto.String("attributes"),
						Number:   proto.Int32(1),
						Label:    descriptorpb.FieldDescriptorProto_LABEL_REPEATED.Enum(),
						Type:     descriptorpb.FieldDescriptorProto_TYPE_MESSAGE.Enum(),
						TypeName: proto.String(".sample.ConfigMap.AttributesEntry"),
					},
				},
			},
		},
	}

	file, err := protodesc.NewFile(fd, nil)
	if err != nil {
		t.Fatalf("protodesc.NewFile failed: %v", err)
	}

	userMsg := file.Messages().ByName("User")
	configMapMsg := file.Messages().ByName("ConfigMap")
	statusEnum := file.Enums().ByName("Status")
	return userMsg, configMapMsg, statusEnum
}

func TestPrototextUnmarshalBasicFieldsAndComments(t *testing.T) {
	userMsg, _, _ := buildDescriptors(t)

	inputText := `
		# User account configuration
		user_id: 1001
		username: "alice"
		is_active: true
		score: 98.5
	`

	msg := dynamicpb.NewMessage(userMsg)
	if err := prototext.Unmarshal([]byte(inputText), msg); err != nil {
		t.Fatalf("prototext.Unmarshal failed: %v", err)
	}

	if msg.Get(userMsg.Fields().ByName("user_id")).Int() != 1001 {
		t.Fatalf("expected user_id 1001, got %v", msg.Get(userMsg.Fields().ByName("user_id")).Int())
	}
	if msg.Get(userMsg.Fields().ByName("username")).String() != "alice" {
		t.Fatalf("expected username 'alice', got %v", msg.Get(userMsg.Fields().ByName("username")).String())
	}
	if !msg.Get(userMsg.Fields().ByName("is_active")).Bool() {
		t.Fatalf("expected is_active true, got false")
	}
	if msg.Get(userMsg.Fields().ByName("score")).Float() != 98.5 {
		t.Fatalf("expected score 98.5, got %v", msg.Get(userMsg.Fields().ByName("score")).Float())
	}
}

func TestPrototextUnmarshalEnumsAndSubmessages(t *testing.T) {
	userMsg, _, statusEnum := buildDescriptors(t)

	// Test nested submessage with curly braces and enum identifier
	inputTextBraces := `
		user_id: 2002
		status: STATUS_ACTIVE
		profile: {
			bio: "Engineer and builder"
			avatar_url: "https://example.com/avatar.png"
		}
	`

	msg1 := dynamicpb.NewMessage(userMsg)
	if err := prototext.Unmarshal([]byte(inputTextBraces), msg1); err != nil {
		t.Fatalf("prototext.Unmarshal with braces failed: %v", err)
	}

	activeVal := statusEnum.Values().ByName("STATUS_ACTIVE").Number()
	if msg1.Get(userMsg.Fields().ByName("status")).Enum() != activeVal {
		t.Fatalf("expected status STATUS_ACTIVE (%d), got %v", activeVal, msg1.Get(userMsg.Fields().ByName("status")).Enum())
	}

	profileMsg1 := msg1.Get(userMsg.Fields().ByName("profile")).Message()
	bioField := userMsg.Fields().ByName("profile").Message().Fields().ByName("bio")
	if profileMsg1.Get(bioField).String() != "Engineer and builder" {
		t.Fatalf("expected bio 'Engineer and builder', got %s", profileMsg1.Get(bioField).String())
	}

	// Test nested submessage with angle brackets (<>) syntax
	inputTextAngleBrackets := `
		user_id: 3003
		status: STATUS_SUSPENDED
		profile: <
			bio: "Temporary account"
			avatar_url: "https://example.com/suspended.png"
		>
	`

	msg2 := dynamicpb.NewMessage(userMsg)
	if err := prototext.Unmarshal([]byte(inputTextAngleBrackets), msg2); err != nil {
		t.Fatalf("prototext.Unmarshal with angle brackets failed: %v", err)
	}

	suspendedVal := statusEnum.Values().ByName("STATUS_SUSPENDED").Number()
	if msg2.Get(userMsg.Fields().ByName("status")).Enum() != suspendedVal {
		t.Fatalf("expected status STATUS_SUSPENDED (%d), got %v", suspendedVal, msg2.Get(userMsg.Fields().ByName("status")).Enum())
	}

	profileMsg2 := msg2.Get(userMsg.Fields().ByName("profile")).Message()
	if profileMsg2.Get(bioField).String() != "Temporary account" {
		t.Fatalf("expected bio 'Temporary account', got %s", profileMsg2.Get(bioField).String())
	}
}

func TestPrototextUnmarshalRepeatedFieldsAndListNotation(t *testing.T) {
	userMsg, _, _ := buildDescriptors(t)

	// Repeated fields specified as consecutive entries
	inputConsecutive := `
		tags: "golang"
		tags: "protobuf"
		tags: "grpc"
	`

	msg1 := dynamicpb.NewMessage(userMsg)
	if err := prototext.Unmarshal([]byte(inputConsecutive), msg1); err != nil {
		t.Fatalf("prototext.Unmarshal consecutive repeated failed: %v", err)
	}

	tagsList1 := msg1.Get(userMsg.Fields().ByName("tags")).List()
	if tagsList1.Len() != 3 {
		t.Fatalf("expected 3 tags, got %d", tagsList1.Len())
	}
	if tagsList1.Get(0).String() != "golang" || tagsList1.Get(1).String() != "protobuf" || tagsList1.Get(2).String() != "grpc" {
		t.Fatalf("unexpected tags: %v", tagsList1)
	}

	// Repeated fields specified with list bracket notation [...]
	inputListBracket := `
		tags: ["backend", "distributed", "networking"]
	`

	msg2 := dynamicpb.NewMessage(userMsg)
	if err := prototext.Unmarshal([]byte(inputListBracket), msg2); err != nil {
		t.Fatalf("prototext.Unmarshal bracket list notation failed: %v", err)
	}

	tagsList2 := msg2.Get(userMsg.Fields().ByName("tags")).List()
	if tagsList2.Len() != 3 {
		t.Fatalf("expected 3 tags, got %d", tagsList2.Len())
	}
	if tagsList2.Get(0).String() != "backend" || tagsList2.Get(1).String() != "distributed" || tagsList2.Get(2).String() != "networking" {
		t.Fatalf("unexpected tags: %v", tagsList2)
	}
}

func TestPrototextUnmarshalMaps(t *testing.T) {
	_, configMapMsg, _ := buildDescriptors(t)

	inputMapText := `
		attributes: { key: "environment" value: "production" }
		attributes: { key: "cluster" value: "us-central1" }
	`

	msg := dynamicpb.NewMessage(configMapMsg)
	if err := prototext.Unmarshal([]byte(inputMapText), msg); err != nil {
		t.Fatalf("prototext.Unmarshal map entries failed: %v", err)
	}

	attrsMap := msg.Get(configMapMsg.Fields().ByName("attributes")).Map()
	if attrsMap.Len() != 2 {
		t.Fatalf("expected map length 2, got %d", attrsMap.Len())
	}

	envVal := attrsMap.Get(protoreflect.ValueOfString("environment").MapKey())
	if envVal.String() != "production" {
		t.Fatalf("expected environment 'production', got %s", envVal.String())
	}

	clusterVal := attrsMap.Get(protoreflect.ValueOfString("cluster").MapKey())
	if clusterVal.String() != "us-central1" {
		t.Fatalf("expected cluster 'us-central1', got %s", clusterVal.String())
	}
}

func TestPrototextUnmarshalOptionsDiscardUnknown(t *testing.T) {
	userMsg, _, _ := buildDescriptors(t)

	inputWithUnknown := `
		user_id: 5050
		username: "charlie"
		unknown_legacy_field: "should_fail_unless_discarded"
	`

	// Default unmarshal returns error when encountering unknown field
	msgDefault := dynamicpb.NewMessage(userMsg)
	if err := prototext.Unmarshal([]byte(inputWithUnknown), msgDefault); err == nil {
		t.Fatalf("expected prototext.Unmarshal to fail on unknown field by default")
	}

	// UnmarshalOptions with DiscardUnknown: true succeeds
	opts := prototext.UnmarshalOptions{
		DiscardUnknown: true,
	}

	msgDiscard := dynamicpb.NewMessage(userMsg)
	if err := opts.Unmarshal([]byte(inputWithUnknown), msgDiscard); err != nil {
		t.Fatalf("opts.Unmarshal with DiscardUnknown=true failed: %v", err)
	}

	if msgDiscard.Get(userMsg.Fields().ByName("user_id")).Int() != 5050 {
		t.Fatalf("expected user_id 5050, got %v", msgDiscard.Get(userMsg.Fields().ByName("user_id")).Int())
	}
	if msgDiscard.Get(userMsg.Fields().ByName("username")).String() != "charlie" {
		t.Fatalf("expected username 'charlie', got %v", msgDiscard.Get(userMsg.Fields().ByName("username")).String())
	}
}

func TestPrototextUnmarshalSyntaxErrors(t *testing.T) {
	userMsg, _, _ := buildDescriptors(t)

	// Unclosed braces syntax error
	invalidBraceInput := `
		user_id: 100
		profile: {
			bio: "missing closing brace"
	`
	msg := dynamicpb.NewMessage(userMsg)
	if err := prototext.Unmarshal([]byte(invalidBraceInput), msg); err == nil {
		t.Fatalf("expected unclosed brace input to produce syntax error")
	}

	// Invalid scalar type (string provided for integer field)
	invalidTypeInput := `
		user_id: "not_a_valid_number"
	`
	if err := prototext.Unmarshal([]byte(invalidTypeInput), msg); err == nil {
		t.Fatalf("expected type mismatch input to produce error")
	}
}

func TestPrototextUnmarshalWellKnownTypes(t *testing.T) {
	// Timestamp text representation
	tsText := `seconds: 1725264000 nanos: 500000`
	ts := &timestamppb.Timestamp{}
	if err := prototext.Unmarshal([]byte(tsText), ts); err != nil {
		t.Fatalf("prototext.Unmarshal Timestamp failed: %v", err)
	}
	if ts.Seconds != 1725264000 || ts.Nanos != 500000 {
		t.Fatalf("expected seconds=1725264000, nanos=500000, got seconds=%d, nanos=%d", ts.Seconds, ts.Nanos)
	}

	// Duration text representation
	durText := `seconds: 120 nanos: 0`
	dur := &durationpb.Duration{}
	if err := prototext.Unmarshal([]byte(durText), dur); err != nil {
		t.Fatalf("prototext.Unmarshal Duration failed: %v", err)
	}
	if dur.AsDuration() != 2*time.Minute {
		t.Fatalf("expected duration 2m, got %v", dur.AsDuration())
	}
}
spec.json
{
  "schemaVersion": 1,
  "goal": "verify prototext.Unmarshal in pkg:golang/google.golang.org/protobuf@v1.36.11",
  "kind": "HOW",
  "packages": [
    "pkg:golang/google.golang.org/protobuf@v1.36.11"
  ],
  "symbols": [
    "prototext.Unmarshal"
  ]
}

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