Insert the blank line wsl_v5 requires above `defer` and `go` statements that share no variables with the statement above them. Applied mechanically via `make lint-fix`; the diff is 60 added blank lines and nothing else.
177 lines
5.5 KiB
Go
177 lines
5.5 KiB
Go
// Package chunker splits input data into content-defined chunks using the
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// FastCDC algorithm so that identical data sequences produce identical
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// chunks regardless of their position in the file.
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package chunker
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import (
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"crypto/sha256"
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"encoding/hex"
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"errors"
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"fmt"
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"io"
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"os"
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)
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// Chunk represents a single chunk of data produced by the content-defined
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// chunking algorithm. Each chunk is identified by its SHA256 hash and
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// contains the raw data along with its position and size information from
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// the original file.
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type Chunk struct {
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Hash string // Content hash of the chunk
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Data []byte // Chunk data
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Offset int64 // Offset in the original file
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Size int64 // Size of the chunk
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}
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// Chunker provides content-defined chunking using the FastCDC algorithm.
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// It splits data into variable-sized chunks based on content patterns, ensuring
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// that identical data sequences produce identical chunks regardless of their
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// position in the file. This enables efficient deduplication.
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type Chunker struct {
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avgChunkSize int
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minChunkSize int
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maxChunkSize int
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}
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// chunkSizeSpread is the FastCDC-recommended factor between the average
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// chunk size and the minimum (avg/spread) and maximum (avg*spread) sizes.
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const chunkSizeSpread = 4
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// NewChunker creates a new chunker with the specified average chunk size.
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// The actual chunk sizes will vary between avgChunkSize/4 and avgChunkSize*4
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// as recommended by the FastCDC algorithm. Typical values for avgChunkSize
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// are 64KB (65536), 256KB (262144), or 1MB (1048576).
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func NewChunker(avgChunkSize int64) *Chunker {
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// FastCDC recommends min = avg/4 and max = avg*4
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return &Chunker{
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avgChunkSize: int(avgChunkSize),
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minChunkSize: int(avgChunkSize / chunkSizeSpread),
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maxChunkSize: int(avgChunkSize * chunkSizeSpread),
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}
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}
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// ChunkReader splits the reader into content-defined chunks and returns all
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// chunks at once. This method loads all chunk data into memory, so it should
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// only be used for reasonably sized inputs. For large files or streams, use
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// ChunkReaderStreaming instead.
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// Returns an error if chunking fails or if reading from the input fails.
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func (c *Chunker) ChunkReader(r io.Reader) ([]Chunk, error) {
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chunker := AcquireReusableChunker(
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r, c.minChunkSize, c.avgChunkSize, c.maxChunkSize)
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defer chunker.Release()
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var chunks []Chunk
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offset := int64(0)
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for {
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chunk, err := chunker.Next()
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if errors.Is(err, io.EOF) {
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break
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}
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if err != nil {
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return nil, fmt.Errorf("reading chunk: %w", err)
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}
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// Calculate hash
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hash := sha256.Sum256(chunk.Data)
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// Make a copy of the data since the chunker reuses the buffer
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chunkData := make([]byte, len(chunk.Data))
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copy(chunkData, chunk.Data)
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chunks = append(chunks, Chunk{
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Hash: hex.EncodeToString(hash[:]),
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Data: chunkData,
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Offset: offset,
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Size: int64(len(chunk.Data)),
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})
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offset += int64(len(chunk.Data))
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}
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return chunks, nil
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}
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// ChunkCallback is a function called for each chunk as it's processed.
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// The callback receives a Chunk containing the hash, data, offset, and size.
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// If the callback returns an error, chunk processing stops and the error is
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// propagated.
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type ChunkCallback func(chunk Chunk) error
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// ChunkReaderStreaming splits the reader into chunks and calls the callback
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// for each chunk. This is the preferred method for processing large files or
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// streams as it doesn't accumulate all chunks in memory. The callback is
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// invoked for each chunk as it's produced, allowing for streaming processing
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// and immediate storage or transmission.
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// Returns the SHA256 hash of the entire file content and an error if
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// chunking fails, reading fails, or if the callback returns an error.
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func (c *Chunker) ChunkReaderStreaming(
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r io.Reader, callback ChunkCallback,
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) (string, error) {
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// Create a tee reader to calculate full file hash while chunking
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fileHasher := sha256.New()
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teeReader := io.TeeReader(r, fileHasher)
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chunker := AcquireReusableChunker(
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teeReader, c.minChunkSize, c.avgChunkSize, c.maxChunkSize)
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defer chunker.Release()
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offset := int64(0)
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for {
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chunk, err := chunker.Next()
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if errors.Is(err, io.EOF) {
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break
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}
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if err != nil {
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return "", fmt.Errorf("reading chunk: %w", err)
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}
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// Calculate chunk hash
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hash := sha256.Sum256(chunk.Data)
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// Pass the data directly - caller must process it before we call
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// Next() again (chunker reuses its internal buffer, but since we
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// process synchronously and completely before continuing, no copy
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// is needed)
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err = callback(Chunk{
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Hash: hex.EncodeToString(hash[:]),
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Data: chunk.Data,
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Offset: offset,
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Size: int64(len(chunk.Data)),
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})
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if err != nil {
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return "", fmt.Errorf("callback error: %w", err)
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}
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offset += int64(len(chunk.Data))
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}
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// Return the full file hash
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return hex.EncodeToString(fileHasher.Sum(nil)), nil
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}
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// ChunkFile splits a file into content-defined chunks by reading the entire file.
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// This is a convenience method that opens the file and passes it to ChunkReader.
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// For large files, consider using ChunkReaderStreaming with a file handle instead.
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// Returns an error if the file cannot be opened or if chunking fails.
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func (c *Chunker) ChunkFile(path string) ([]Chunk, error) {
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file, err := os.Open(path) //nolint:gosec // G304: path is caller-supplied by design
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if err != nil {
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return nil, fmt.Errorf("opening file: %w", err)
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}
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defer func() {
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err := file.Close()
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if err != nil && err.Error() != "invalid argument" {
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// Log error or handle as needed
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_ = err
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}
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}()
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return c.ChunkReader(file)
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}
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