// Code generated by github.com/vektah/dataloaden, DO NOT EDIT. package dataloader import ( "sync" "time" "github.com/barasher/go-exiftool" ) // ExiftoolLoaderConfig captures the config to create a new ExiftoolLoader type ExiftoolLoaderConfig struct { // Fetch is a method that provides the data for the loader Fetch func(keys []string) ([]exiftool.FileMetadata, []error) // Wait is how long wait before sending a batch Wait time.Duration // MaxBatch will limit the maximum number of keys to send in one batch, 0 = not limit MaxBatch int } // NewExiftoolLoader creates a new ExiftoolLoader given a fetch, wait, and maxBatch // func NewExiftoolLoader(config ExiftoolLoaderConfig) *ExiftoolLoader { // return &ExiftoolLoader{ // fetch: config.Fetch, // wait: config.Wait, // maxBatch: config.MaxBatch, // } // } // ExiftoolLoader batches and caches requests type ExiftoolLoader struct { // this method provides the data for the loader fetch func(keys []string) ([]exiftool.FileMetadata, []error) // how long to done before sending a batch wait time.Duration // this will limit the maximum number of keys to send in one batch, 0 = no limit maxBatch int // INTERNAL // lazily created cache cache map[string]exiftool.FileMetadata // the current batch. keys will continue to be collected until timeout is hit, // then everything will be sent to the fetch method and out to the listeners batch *exiftoolLoaderBatch // mutex to prevent races mu sync.Mutex } type exiftoolLoaderBatch struct { keys []string data []exiftool.FileMetadata error []error closing bool done chan struct{} } // Load a exiftool.FileMetadata by key, batching and caching will be applied automatically func (l *ExiftoolLoader) Load(key string) (exiftool.FileMetadata, error) { return l.LoadThunk(key)() } // LoadThunk returns a function that when called will block waiting for a exiftool.FileMetadata. // This method should be used if you want one goroutine to make requests to many // different data loaders without blocking until the thunk is called. func (l *ExiftoolLoader) LoadThunk(key string) func() (exiftool.FileMetadata, error) { l.mu.Lock() if it, ok := l.cache[key]; ok { l.mu.Unlock() return func() (exiftool.FileMetadata, error) { return it, nil } } if l.batch == nil { l.batch = &exiftoolLoaderBatch{done: make(chan struct{})} } batch := l.batch pos := batch.keyIndex(l, key) l.mu.Unlock() return func() (exiftool.FileMetadata, error) { <-batch.done var data exiftool.FileMetadata if pos < len(batch.data) { data = batch.data[pos] } var err error // its convenient to be able to return a single error for everything if len(batch.error) == 1 { err = batch.error[0] } else if batch.error != nil { err = batch.error[pos] } if err == nil { l.mu.Lock() l.unsafeSet(key, data) l.mu.Unlock() } return data, err } } // LoadAll fetches many keys at once. It will be broken into appropriate sized // sub batches depending on how the loader is configured func (l *ExiftoolLoader) LoadAll(keys []string) ([]exiftool.FileMetadata, []error) { results := make([]func() (exiftool.FileMetadata, error), len(keys)) for i, key := range keys { results[i] = l.LoadThunk(key) } FileMetadatas := make([]exiftool.FileMetadata, len(keys)) errors := make([]error, len(keys)) for i, thunk := range results { FileMetadatas[i], errors[i] = thunk() } return FileMetadatas, errors } // LoadAllThunk returns a function that when called will block waiting for a FileMetadatas. // This method should be used if you want one goroutine to make requests to many // different data loaders without blocking until the thunk is called. func (l *ExiftoolLoader) LoadAllThunk(keys []string) func() ([]exiftool.FileMetadata, []error) { results := make([]func() (exiftool.FileMetadata, error), len(keys)) for i, key := range keys { results[i] = l.LoadThunk(key) } return func() ([]exiftool.FileMetadata, []error) { FileMetadatas := make([]exiftool.FileMetadata, len(keys)) errors := make([]error, len(keys)) for i, thunk := range results { FileMetadatas[i], errors[i] = thunk() } return FileMetadatas, errors } } // Prime the cache with the provided key and value. If the key already exists, no change is made // and false is returned. // (To forcefully prime the cache, clear the key first with loader.clear(key).prime(key, value).) func (l *ExiftoolLoader) Prime(key string, value exiftool.FileMetadata) bool { l.mu.Lock() var found bool if _, found = l.cache[key]; !found { l.unsafeSet(key, value) } l.mu.Unlock() return !found } // Clear the value at key from the cache, if it exists func (l *ExiftoolLoader) Clear(key string) { l.mu.Lock() delete(l.cache, key) l.mu.Unlock() } func (l *ExiftoolLoader) unsafeSet(key string, value exiftool.FileMetadata) { if l.cache == nil { l.cache = map[string]exiftool.FileMetadata{} } l.cache[key] = value } // keyIndex will return the location of the key in the batch, if its not found // it will add the key to the batch func (b *exiftoolLoaderBatch) keyIndex(l *ExiftoolLoader, key string) int { for i, existingKey := range b.keys { if key == existingKey { return i } } pos := len(b.keys) b.keys = append(b.keys, key) if pos == 0 { go b.startTimer(l) } if l.maxBatch != 0 && pos >= l.maxBatch-1 { if !b.closing { b.closing = true l.batch = nil go b.end(l) } } return pos } func (b *exiftoolLoaderBatch) startTimer(l *ExiftoolLoader) { time.Sleep(l.wait) l.mu.Lock() // we must have hit a batch limit and are already finalizing this batch if b.closing { l.mu.Unlock() return } l.batch = nil l.mu.Unlock() b.end(l) } func (b *exiftoolLoaderBatch) end(l *ExiftoolLoader) { b.data, b.error = l.fetch(b.keys) close(b.done) }