Files
ragflow/internal/ingestion/component/tokenizer_unit_test.go
Jack 8546eb62bf Feat(ingestion): add canvas pipeline debug (dry-run) mode with View result log (#17538)
## Summary
Adds a side-effect-free DataFlow canvas **debug (dry-run) mode** plus a
**debug run log with a "View result" panel**, so a canvas can be
executed synchronously and inspected end-to-end (per-component progress
and parsed chunks) without persisting anything.

### Dry-run execution (inline parsed chunks)
- `task/debug.go`: `NewDebugTaskContext` builds an in-memory
`TaskContext` with **`KB.ID == ""` — the single debug signal used across
the ingestion pipeline**. A canvas debug run has no knowledgebase, and
production ingestion always supplies one, so `kb_id == ""` occurs ONLY
in debug mode. Components gate their own side effects on this signal
without any dedicated debug vocabulary (the former `CANVAS_DEBUG_DOC_ID`
marker constant is removed).
- `task/pipeline_executor.go`: `validateTaskContext` no longer requires
a KB when `KB.ID == ""` (debug); debug runs return `collectDebugOutput`
(chunks) instead of a no-op; uploaded bytes are delivered as
`inputs['binary']` for doc-less runs; `injectDebugPageCap` caps the
parser to the first pages for a fast preview via the production
`override_params` channel (Parser cpnID + family).
- `component/tokenizer.go`: `shouldHaveEmbedding` skips embedding when
`kb_id == ""` — the embedder is configured on the knowledgebase, so a
debug run has nothing to resolve against and stays side-effect free.
- `chunker/register.go`: chunk images are uploaded to MinIO only when a
KB is present (persist run). **In debug mode the raw image bytes are
intentionally dropped (`delete(ck, "image")`)** — the debug preview does
not render chunk images, and dropping the bytes keeps them out of memory
and out of the Redis-stored debug log. This is a deliberate trade-off,
not an oversight.
- `component/file.go`: pass through in-memory binary bytes, skipping
`doc_id` -> storage resolution.
- `handler/agent.go` + `agent_webhook.go`: detect `dataflow_canvas` and
run a sync debug returning chunks inline on the existing
chat/completions endpoint; reject DataFlow canvases from webhooks (fixes
the previously dead `== "DataFlow"` check; mirrors Python
`agent_api.py`).
- `parser_dispatch.go`: export `ParserFileFamily` for the executor's
page-cap injection.

### Debug run log + "View result"
Mirrors Python's debug-log contract so the front-end can replay each
component's progress and parsed output:
- `task/debug_log_sink.go`: a `DebugLogSink` records every component's
lifecycle into a `[{component_id, trace}]` array (each trace entry
carries `message`, `progress`, `timestamp`, `elapsed_time`). `Flush`
appends a terminal `END` marker whose first trace message is non-empty
so the front-end detects completion. On failure the END marker is
prefixed `[ERROR]` yet still carries the run, so the failure timeline
renders instead of being stuck empty. Timestamps and `elapsed_time` are
in seconds (matching the rest of the app).
- `task/debug_result_dsl.go`: `BuildDebugResultDSL` builds the `dsl` the
END marker carries — the Go analogue of Python's `Graph.__str__` +
END-marker `dsl` in `rag/flow/pipeline.py`. It combines the static DSL
structure (component_name / downstream / params / graph.nodes) with the
run output map (`output["state"][<id>]`) to emit, per component,
`obj.params.outputs[<format>].value` (chunks / text / json / html /
markdown) — the exact keys the front-end `dataflow-result` page reads to
render each step's parsed chunks. Raw embedding vectors (including the
dimension-scoped `q_<dim>_vec` keys) are stripped so the stored log
stays Python-scale.
- `task/pipeline_executor.go`: after the run, attach the built `dsl` to
the END marker via the `ResultSink` capability.
- `handler/agent.go`: `runCanvasPipelineDebug` generates a stable
`message_id` up-front and always flushes the log (success or failure);
`respondWithDebugResult` returns `message_id` in **both** the success
and the error envelope so the front-end can poll the log. The debug-log
endpoint `GET /agents/:id/logs/:message_id` serves the array.
- `web/src/pages/agent/hooks/use-run-dataflow.ts`: on a run failure,
also surface `message_id` via `setMessageId` so the log sheet renders
the failure timeline (the `[ERROR]` END marker is already written).
Guarded by `if (msgId)`, so it is a safe no-op when the back-end does
not return an id.

## Behavioral notes
- Debug parses only the first pages (`debugPageCapPages`) for a fast
preview; an explicit `pages` cap already present in the ParserConfig is
respected.
- Debug mode does not keep chunk images (see above) and does not compute
embeddings — it exercises parse + chunk only.

## Test plan
- Go: `debug_test.go`, `debug_log_sink_test.go` (trace pairing, END
marker, `[ERROR]` prefix, fractional-second timestamp/elapsed_time, size
caps, and a real-pipeline test asserting the END-marker `dsl` carries
non-empty per-component `params.outputs` with chunks),
`debug_result_dsl_test.go` (flat and real nested `output["state"]`
shapes, vector stripping, format priority),
`debug_pages_integration_test.go`, `pipeline_executor_persist_test.go`,
`handler/agent_pipeline_debug_test.go`, `handler/agent_logs_test.go`
(incl. `TestRunCanvasPipelineDebug_ErrorStillExposesMessageID` /
`TestRespondWithDebugResult_ErrorCarriesMessageID` locking `message_id`
on failure), plus updates to `agent_test.go` / `agent_webhook_test.go` /
`chunker/image_upload_test.go` / `tokenizer*.go`.
- `go build ./...` and `./build.sh --test` for affected packages.

🤖 Generated with [CodeBuddy Code](https://cnb.cool/codebuddy)

---------

Co-authored-by: CodeBuddy Code <noreply@tencent.com>
2026-07-31 13:10:08 +08:00

538 lines
20 KiB
Go

//
// Copyright 2026 The InfiniFlow Authors. All Rights Reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
// Unit tests for the Tokenizer component that do NOT depend on the C++ RAG
// Analyzer pool. These run under plain `go test` (no -tags integration).
// Pool-dependent tests live in tokenizer_test.go (//go:build integration).
package component
import (
"context"
"encoding/json"
"os"
"strings"
"sync/atomic"
"testing"
"time"
"ragflow/internal/agent/runtime"
"ragflow/internal/ingestion/component/schema"
)
// stubEmbedder records every call and returns canned vectors.
// Matches the Embedder contract: len(results) == len(texts).
type stubEmbedder struct {
calls atomic.Int32
dim int
maxTokens int
delay time.Duration
err error
callInputs [][]string
resultsByCall []embeddingCallResult
callTokens []int
}
type embeddingCallResult struct {
vectors [][]float64
tokenCount int
}
func (s *stubEmbedder) MaxTokens() int {
return s.maxTokens
}
func (s *stubEmbedder) Encode(ctx context.Context, texts []string) ([]EmbeddingResult, error) {
s.calls.Add(1)
copied := append([]string(nil), texts...)
s.callInputs = append(s.callInputs, copied)
if s.delay > 0 {
time.Sleep(s.delay)
}
if s.err != nil {
return nil, s.err
}
callIdx := int(s.calls.Load()) - 1
var cfg embeddingCallResult
if callIdx < len(s.resultsByCall) {
cfg = s.resultsByCall[callIdx]
}
out := make([]EmbeddingResult, len(texts))
for i := range texts {
var v []float64
if i < len(cfg.vectors) {
v = append([]float64(nil), cfg.vectors[i]...)
} else {
v = make([]float64, s.dim)
v[0] = float64(i + 1)
}
tokenCount := len(texts[i])
if callIdx < len(s.callTokens) {
tokenCount = s.callTokens[callIdx]
} else if cfg.tokenCount > 0 {
tokenCount = cfg.tokenCount
}
out[i] = EmbeddingResult{Vector: v, TokenCount: tokenCount}
}
return out, nil
}
// newStubEmbedder returns a stub embedder for instance-level resolver injection.
// maxTokens defaults to 2048 so truncateForEmbedding truncates to the first
// 2048 tokens; tests that exercise truncation set maxTokens explicitly.
func newStubEmbedder(dim int) *stubEmbedder {
return &stubEmbedder{dim: dim, maxTokens: 2048}
}
// withStubEmbedder constructs a TokenizerComponent with an instance-scoped
// stub embedder resolver. The component uses the default search_method
// (["full_text","embedding"]); callers that need a different mode construct
// the component directly via NewTokenizerComponent(NewTokenizerComponentWithResolver).
func withStubEmbedder(t *testing.T, dim int) (*TokenizerComponent, *stubEmbedder) {
t.Helper()
stub := newStubEmbedder(dim)
comp, err := NewTokenizerComponentWithResolver(nil, func(ctx context.Context, _, _, _ string) (Embedder, error) { return stub, nil })
if err != nil {
t.Fatalf("NewTokenizerComponentWithResolver: %v", err)
}
return comp.(*TokenizerComponent), stub
}
// TestTokenizerComponent_Registered verifies init() enrollment
// under runtime.CategoryIngestion (Phase 4 / API endpoint depends
// on this contract).
func TestTokenizerComponent_Registered(t *testing.T) {
factory, cat, md, ok := runtime.DefaultRegistry.Lookup("Tokenizer")
if !ok {
t.Fatal("Tokenizer not registered in runtime.DefaultRegistry")
}
if cat != runtime.CategoryIngestion {
t.Errorf("category = %q, want %q", cat, runtime.CategoryIngestion)
}
if factory == nil {
t.Error("factory is nil")
}
if len(md.Inputs) == 0 {
t.Error("metadata.Inputs empty")
}
if len(md.Outputs) == 0 {
t.Error("metadata.Outputs empty")
}
}
// TestTokenizerComponent_Invoke_EmptyChunks covers the no-op branch:
// empty chunk list -> empty output, no panic, no encoder call.
func TestTokenizerComponent_Invoke_EmptyChunks(t *testing.T) {
c, stub := withStubEmbedder(t, 4)
_ = stub
out, err := c.Invoke(context.Background(), nil, map[string]any{
"kb_id": "kb-1",
"output_format": "chunks",
"chunks": []map[string]any{},
})
if err != nil {
t.Fatalf("Invoke: %v", err)
}
chunks, _ := out["chunks"].([]map[string]any)
if len(chunks) != 0 {
t.Errorf("chunks len = %d, want 0", len(chunks))
}
if stub.calls.Load() != 0 {
t.Errorf("embedder called %d times on empty input, want 0", stub.calls.Load())
}
if got := out["embedding_token_consumption"]; got != 0 {
t.Errorf("embedding_token_consumption = %v, want 0", got)
}
if out["output_format"] != "chunks" {
t.Errorf("output_format = %v, want chunks", out["output_format"])
}
}
// TestTokenizerComponent_Invoke_NilChunks covers the nil-input
// branch: nil chunks list is treated as zero-length (matches
// python `kwargs.get("chunks")` with None).
func TestTokenizerComponent_Invoke_NilChunks(t *testing.T) {
c, stub := withStubEmbedder(t, 4)
_ = stub
out, err := c.Invoke(context.Background(), nil, map[string]any{
"output_format": "chunks",
})
if err != nil {
t.Fatalf("Invoke: %v", err)
}
chunks, _ := out["chunks"].([]map[string]any)
if len(chunks) != 0 {
t.Errorf("chunks len = %d, want 0", len(chunks))
}
}
func TestTokenizerComponent_Invoke_EmbeddingOnly(t *testing.T) {
cIntf, err := NewTokenizerComponentWithResolver(map[string]any{
"search_method": []any{"embedding"},
}, func(ctx context.Context, _, _, _ string) (Embedder, error) {
return newStubEmbedder(4), nil
})
if err != nil {
t.Fatalf("NewTokenizerComponentWithResolver: %v", err)
}
out, err := cIntf.(*TokenizerComponent).Invoke(context.Background(), nil, map[string]any{
"name": "doc.pdf",
"kb_id": "kb-1",
"output_format": "chunks",
"chunks": []map[string]any{{"text": "alpha bravo"}},
})
if err != nil {
t.Fatalf("Invoke: %v", err)
}
got, _ := out["chunks"].([]map[string]any)
if len(got) != 1 {
t.Fatalf("chunks len = %d, want 1", len(got))
}
if got[0]["q_4_vec"] == nil {
t.Fatalf("q_4_vec missing: %v", got[0])
}
if got[0]["content_ltks"] != nil || got[0]["content_sm_ltks"] != nil {
t.Fatalf("embedding-only mode should not emit full-text tokens: %v", got[0])
}
if out["embedding_token_consumption"] == nil {
t.Fatal("embedding_token_consumption missing")
}
}
// TestTokenizerComponent_Embedding_ZeroChunksStillEmitsConsumptionZero uses an
// empty chunk list, so tokenizeChunks is a no-op and the C++ pool is not needed.
func TestTokenizerComponent_Embedding_ZeroChunksStillEmitsConsumptionZero(t *testing.T) {
c, stub := withStubEmbedder(t, 2)
out, err := c.Invoke(context.Background(), nil, map[string]any{
"name": "doc.pdf",
"kb_id": "kb-1",
"output_format": "chunks",
"chunks": []map[string]any{},
})
if err != nil {
t.Fatalf("Invoke: %v", err)
}
if got := stub.calls.Load(); got != 0 {
t.Fatalf("embedder calls = %d, want 0", got)
}
if got := out["embedding_token_consumption"]; got != 0 {
t.Fatalf("embedding_token_consumption = %v, want 0", got)
}
}
// TestTokenizerComponent_InputsOutputs_NonEmpty verifies Phase 4
// API metadata shape.
func TestTokenizerComponent_InputsOutputs_NonEmpty(t *testing.T) {
c, _ := NewTokenizerComponent(map[string]any{})
ins := c.(*TokenizerComponent).Inputs()
outs := c.(*TokenizerComponent).Outputs()
if len(ins) == 0 {
t.Error("Inputs() empty")
}
if len(outs) == 0 {
t.Error("Outputs() empty")
}
for _, key := range []string{"chunks", "output_format"} {
if _, ok := outs[key]; !ok {
t.Errorf("Outputs() missing %q", key)
}
}
for _, key := range []string{"chunks", "name"} {
if _, ok := ins[key]; !ok {
t.Errorf("Inputs() missing %q", key)
}
}
}
// TestTokenizerComponent_NewTokenizerComponent_Defaults verifies
// the Python default param values propagate.
func TestTokenizerComponent_NewTokenizerComponent_Defaults(t *testing.T) {
c, err := NewTokenizerComponent(nil)
if err != nil {
t.Fatalf("NewTokenizerComponent(nil): %v", err)
}
tc := c.(*TokenizerComponent)
if tc.param.FilenameEmbdWeight != 0.1 {
t.Errorf("filename_embd_weight = %v, want 0.1", tc.param.FilenameEmbdWeight)
}
if len(tc.param.Fields) != 1 || tc.param.Fields[0] != "text" {
t.Errorf("fields = %v, want [text]", tc.param.Fields)
}
if len(tc.param.SearchMethod) != 2 {
t.Errorf("search_method len = %d, want 2", len(tc.param.SearchMethod))
}
}
// TestTokenizerComponent_NewTokenizerComponent_BadParam covers
// the param-validation branch (invalid search_method value).
func TestTokenizerComponent_NewTokenizerComponent_BadParam(t *testing.T) {
_, err := NewTokenizerComponent(map[string]any{
"search_method": []any{"unknown"},
})
if err == nil {
t.Fatal("expected param validation error, got nil")
}
}
func TestValidateTokenizerOutputs_FullTextMissingReturnsError(t *testing.T) {
err := validateTokenizerOutputs([]schema.ChunkDoc{{Text: "alpha"}}, []string{"full_text"}, []string{"text"}, "")
if err == nil || !strings.Contains(err.Error(), "missing full_text tokens") {
t.Fatalf("err = %v, want missing full_text tokens", err)
}
}
func TestValidateTokenizerOutputs_EmbeddingMissingReturnsError(t *testing.T) {
err := validateTokenizerOutputs([]schema.ChunkDoc{{Text: "alpha"}}, []string{"embedding"}, []string{"text"}, "kb-1")
if err == nil || !strings.Contains(err.Error(), "missing embedding vector") {
t.Fatalf("err = %v, want missing embedding vector", err)
}
}
func TestValidateTokenizerOutputs_BothModesFailWhenOneMissing(t *testing.T) {
ck := schema.ChunkDoc{Text: "alpha", ContentLtks: "tok", ContentSmLtks: "sm"}
err := validateTokenizerOutputs([]schema.ChunkDoc{ck}, []string{"full_text", "embedding"}, []string{"text"}, "kb-1")
if err == nil || !strings.Contains(err.Error(), "missing embedding vector") {
t.Fatalf("err = %v, want missing embedding vector", err)
}
}
func TestValidateTokenizerOutputs_SymbolOnlyContentLtksIsEmptyFails(t *testing.T) {
// Simulates a chunk whose Text is a symbol/punctuation character that
// the C++ RAGAnalyzer tokenizer cannot produce tokens for (e.g. "·", ")", "(").
// After tokenizeChunks runs, ContentLtks and ContentSmLtks remain empty,
// and validateTokenizerOutputs must detect this as a failure.
ck := schema.ChunkDoc{
Text: ")",
ContentLtks: "",
ContentSmLtks: "",
}
err := validateTokenizerOutputs([]schema.ChunkDoc{ck}, []string{"full_text"}, []string{"text"}, "")
if err == nil || !strings.Contains(err.Error(), "missing full_text tokens") {
t.Fatalf("err = %v, want missing full_text tokens", err)
}
}
// TestChunkDocsToMaps_PreservesPDFPositions is the pool-free unit test for
// Tokenizer-(T)1: the tokenizer emits chunks via schema.ChunkDocsToMaps
// (ChunkDoc.ToMap), which must carry the raw `positions` / `_pdf_positions`
// through untouched so the downstream executor stage
// (internal/ingestion/task processChunkPositions → AddPositions) can convert
// them into position_int / page_num_int / top_int exactly once. This does NOT
// require the C++ analyzer pool, so it runs under plain `go test`.
func TestChunkDocsToMaps_PreservesPDFPositions(t *testing.T) {
pos := json.RawMessage(`[[1,10,20,30,40],[2,15,25,35,45]]`)
chunks := []schema.ChunkDoc{
{Text: "PDF paragraph", DocType: "text", CKType: "text",
Positions: pos, PDFPositions: pos},
}
maps := schema.ChunkDocsToMaps(chunks)
got, ok := maps[0]["positions"].([][]float64)
if !ok || len(got) != 2 {
t.Fatalf("positions not preserved through tokenizer output mapping: %#v", maps[0]["positions"])
}
if _, ok := maps[0]["_pdf_positions"].([][]float64); !ok {
t.Errorf("_pdf_positions not preserved through tokenizer output mapping: %#v", maps[0]["_pdf_positions"])
}
// Sanity: page numbers are still raw 1-indexed, i.e. not yet converted
// to page_num_int (the executor owns that step).
if int(got[0][0]) != 1 {
t.Errorf("positions page already converted; want raw 1-indexed page 1, got %v", got[0][0])
}
}
// TestIsPhantomChunk verifies that zero-value ChunkDocs (no Text, no
// Image, no ContentWithWeight, no Summary) are identified as phantom,
// while any one of those fields being present keeps the chunk.
func TestIsPhantomChunk(t *testing.T) {
if !isPhantomChunk(schema.ChunkDoc{}) {
t.Error("empty ChunkDoc must be phantom")
}
if !isPhantomChunk(schema.ChunkDoc{Text: ""}) {
t.Error("ChunkDoc with empty Text only must be phantom")
}
if isPhantomChunk(schema.ChunkDoc{Text: "hello"}) {
t.Error("ChunkDoc with Text must not be phantom")
}
if isPhantomChunk(schema.ChunkDoc{Image: "data:image/png;base64,abc"}) {
t.Error("ChunkDoc with Image must not be phantom")
}
if isPhantomChunk(schema.ChunkDoc{ContentWithWeight: "weight"}) {
t.Error("ChunkDoc with ContentWithWeight must not be phantom")
}
if isPhantomChunk(schema.ChunkDoc{Summary: "a summary"}) {
t.Error("ChunkDoc with Summary must not be phantom")
}
}
// TestTruncateForEmbedding_SmallMaxTokens covers Tokenizer Diff-14. For any
// positive maxTokens, truncateForEmbedding keeps the first maxTokens tokens
// (non-empty) and the result is strictly shorter than the input.
//
// The unconfigured case (maxTokens <= 0) is covered separately by
// TestTruncateForEmbedding_UnconfiguredClampsToDefault: rather than mirroring
// Python's `truncate` (which returns "" for max_len <= 0 and would make the
// embeddings API reject the batch), Go clamps the limit to a safe default so
// every path still truncates instead of passing the full text through.
func TestTruncateForEmbedding_SmallMaxTokens(t *testing.T) {
// Long enough to produce well over 50 tokens, so 5/10/50 are all clearly
// below the total and truncation is observable.
long := strings.Repeat("a", 2000)
if got := truncateForEmbedding(long, 5); got == "" {
t.Error("truncateForEmbedding(maxTokens=5) returned empty, want first 5 tokens")
}
if got := truncateForEmbedding(long, 10); got == "" {
t.Error("truncateForEmbedding(maxTokens=10) returned empty, want first 10 tokens")
}
// Normal path: maxTokens > 10 should truncate (not return empty).
if got := truncateForEmbedding(long, 50); got == "" {
t.Error("truncateForEmbedding(maxTokens=50) returned empty, want truncated text")
}
if got := truncateForEmbedding(long, 50); len(got) >= len(long) {
t.Errorf("truncateForEmbedding(maxTokens=50) len = %d, want strictly shorter than %d", len(got), len(long))
}
}
// TestTruncateForEmbedding_UnconfiguredClampsToDefault is the regression gate
// for the root cause behind embedding truncation: an embedder that reports no
// token limit (maxTokens <= 0) must NOT be passed through verbatim. Before the
// central clamp, the generic model_service branch left maxTokens = 0, which
// silently disabled truncation for the whole generic path. The fix clamps
// maxTokens <= 0 to defaultEmbeddingTokenLimit (8192) inside
// truncateForEmbedding itself, so every caller — Builtin and generic alike —
// keeps truncation active.
//
// For a clearly-over-limit input and maxTokens = 0, the result must be non-empty
// AND strictly shorter than the input: proof that it was truncated to the
// default, not returned verbatim.
func TestTruncateForEmbedding_UnconfiguredClampsToDefault(t *testing.T) {
// ~10000+ CL100K tokens, comfortably above the 8192 default so truncation
// is observable.
long := strings.Repeat("hello world ", 5000)
got := truncateForEmbedding(long, 0)
if got == "" {
t.Fatal("truncateForEmbedding(maxTokens=0) returned empty; clamp must keep truncation active")
}
if len(got) >= len(long) {
t.Errorf("truncateForEmbedding(maxTokens=0) len = %d, want strictly shorter than %d; clamp to default must truncate",
len(got), len(long))
}
}
// TestEmbeddingBatchSizeEnvVar covers Tokenizer Omission-3: the batch size
// must be configurable via TOKENIZER_EMBEDDING_BATCH_SIZE env var, matching
// Python's configurable settings.EMBEDDING_BATCH_SIZE.
func TestEmbeddingBatchSizeEnvVar(t *testing.T) {
if got := embeddingBatchSize(); got != 16 {
t.Errorf("embeddingBatchSize() default = %d, want 16", got)
}
os.Setenv("TOKENIZER_EMBEDDING_BATCH_SIZE", "32")
t.Cleanup(func() { os.Unsetenv("TOKENIZER_EMBEDDING_BATCH_SIZE") })
if got := embeddingBatchSize(); got != 32 {
t.Errorf("embeddingBatchSize() after env = %d, want 32", got)
}
// Invalid value falls back to default.
os.Setenv("TOKENIZER_EMBEDDING_BATCH_SIZE", "bad")
if got := embeddingBatchSize(); got != 16 {
t.Errorf("embeddingBatchSize() invalid env = %d, want 16", got)
}
}
// TestChunkOrderInt_EmbeddingOnly covers Tokenizer Diff-8: chunk_order_int
// must be set even when search_method does not include "full_text" (i.e.
// embedding-only path). tokenizeChunks previously only set it for the
// full_text branch.
func TestChunkOrderInt_EmbeddingOnly(t *testing.T) {
stub := newStubEmbedder(3)
comp, err := NewTokenizerComponentWithResolver(
map[string]any{"search_method": []string{"embedding"}, "fields": []string{"text"}},
func(ctx context.Context, _, _, _ string) (Embedder, error) { return stub, nil },
)
if err != nil {
t.Fatalf("NewTokenizerComponentWithResolver: %v", err)
}
inputs := map[string]any{
"name": "doc.pdf",
"output_format": "json",
"json": []map[string]any{
{"text": "first chunk", "doc_type_kwd": "text"},
{"text": "second chunk", "doc_type_kwd": "text"},
},
}
out, err := comp.Invoke(context.Background(), nil, inputs)
if err != nil {
t.Fatalf("Invoke: %v", err)
}
chunks := out["chunks"].([]map[string]any)
if len(chunks) != 2 {
t.Fatalf("want 2 chunks, got %d", len(chunks))
}
for i, ck := range chunks {
coi, ok := ck["chunk_order_int"]
if !ok {
t.Errorf("chunk %d: chunk_order_int missing (embedding-only path must set it)", i)
}
if coi == nil {
t.Errorf("chunk %d: chunk_order_int is nil", i)
}
}
}
// TestChunksFromTokenizerUpstream_FiltersPhantomChunks covers Tokenizer
// Omission-2 at the pipeline level: when upstream input contains a
// zero-value ChunkDoc (no Text, no Image, no ContentWithWeight), it must
// be silently dropped from the output before tokenization and embedding.
// This mirrors Python's `if not text and not d.get("image"): continue`
// in tokenizer.py:80-82.
func TestChunksFromTokenizerUpstream_FiltersPhantomChunks(t *testing.T) {
// JSON path: three items, the middle one is a phantom.
items := []map[string]any{
{"text": "valid chunk", "doc_type_kwd": "text"},
{}, // phantom: no text, no image, no content_with_weight
{"text": "another valid", "doc_type_kwd": "text"},
}
// Use embedding-only mode to avoid CGo tokenizer dependency.
stub := newStubEmbedder(3)
comp, err := NewTokenizerComponentWithResolver(
map[string]any{"search_method": []string{"embedding"}, "fields": []string{"text"}},
func(ctx context.Context, _, _, _ string) (Embedder, error) { return stub, nil },
)
if err != nil {
t.Fatalf("NewTokenizerComponentWithResolver: %v", err)
}
out, err := comp.Invoke(context.Background(), nil, map[string]any{
"name": "doc.pdf",
"output_format": "json",
"json": items,
})
if err != nil {
t.Fatalf("Invoke: %v", err)
}
chunks := out["chunks"].([]map[string]any)
// Must drop the phantom — only 2 valid chunks remain.
if len(chunks) != 2 {
t.Fatalf("want 2 chunks (phantom filtered), got %d", len(chunks))
}
// Verify the surviving chunks are the valid ones.
if chunks[0]["text"] != "valid chunk" {
t.Errorf("chunk 0 text = %q, want %q", chunks[0]["text"], "valid chunk")
}
if chunks[1]["text"] != "another valid" {
t.Errorf("chunk 1 text = %q, want %q", chunks[1]["text"], "another valid")
}
}