mirror of
https://github.com/python-pillow/Pillow.git
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677 lines
18 KiB
C
677 lines
18 KiB
C
/*
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* The Python Imaging Library
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* $Id$
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*
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* incremental decoding adaptor.
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*
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* Copyright (c) 2014 Coriolis Systems Limited
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* Copyright (c) 2014 Alastair Houghton
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*
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*/
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#include "Imaging.h"
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/* The idea behind this interface is simple: the actual decoding proceeds in
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a thread, which is run in lock step with the main thread. Whenever the
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ImagingIncrementalCodecRead() call runs short on data, it suspends the
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decoding thread and wakes the main thread. Conversely, the
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ImagingIncrementalCodecPushBuffer() call suspends the main thread and wakes
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the decoding thread, providing a buffer of data.
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The two threads are never running simultaneously, so there is no need for
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any addition synchronisation measures outside of this file.
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Note also that we start the thread suspended (on Windows), or make it
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immediately wait (other platforms), so that it's possible to initialise
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things before the thread starts running.
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This interface is useful to allow PIL to interact efficiently with any
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third-party imaging library that does not support suspendable reads;
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one example is OpenJPEG (which is used for J2K support). The TIFF library
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might also benefit from using this code.
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Note that if using this module, you want to set handles_eof on your
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decoder to true. Why? Because otherwise ImageFile.load() will abort,
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thinking that the image is truncated, whereas generally you want it to
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pass the EOF condition (0 bytes to read) through to your code. */
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/* Additional complication: *Some* codecs need to seek; this is fine if
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there is a file descriptor, but if we're buffering data it becomes
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awkward. The incremental adaptor now contains code to handle these
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two cases. */
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#ifdef _WIN32
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#include <process.h>
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#else
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#include <pthread.h>
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#endif
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#define DEBUG_INCREMENTAL 0
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#if DEBUG_INCREMENTAL
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#define DEBUG(...) printf(__VA_ARGS__)
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#else
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#define DEBUG(...)
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#endif
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struct ImagingIncrementalCodecStruct {
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#ifdef _WIN32
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HANDLE hCodecEvent;
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HANDLE hDataEvent;
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HANDLE hThread;
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#else
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pthread_mutex_t start_mutex;
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pthread_cond_t start_cond;
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pthread_mutex_t codec_mutex;
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pthread_cond_t codec_cond;
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pthread_mutex_t data_mutex;
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pthread_cond_t data_cond;
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pthread_t thread;
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#endif
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ImagingIncrementalCodecEntry entry;
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Imaging im;
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ImagingCodecState state;
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struct {
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int fd;
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UINT8 *buffer; /* Base of buffer */
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UINT8 *ptr; /* Current pointer in buffer */
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UINT8 *top; /* Highest point in buffer we've used */
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UINT8 *end; /* End of buffer */
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} stream;
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int read_or_write;
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int seekable;
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int started;
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int result;
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};
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static void flush_stream(ImagingIncrementalCodec codec);
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#if _WIN32
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static unsigned int __stdcall
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codec_thread(void *ptr)
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{
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ImagingIncrementalCodec codec = (ImagingIncrementalCodec)ptr;
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DEBUG("Entering thread\n");
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codec->result = codec->entry(codec->im, codec->state, codec);
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DEBUG("Leaving thread (%d)\n", codec->result);
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flush_stream(codec);
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SetEvent(codec->hCodecEvent);
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return 0;
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}
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#else
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static void *
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codec_thread(void *ptr)
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{
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ImagingIncrementalCodec codec = (ImagingIncrementalCodec)ptr;
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DEBUG("Entering thread\n");
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codec->result = codec->entry(codec->im, codec->state, codec);
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DEBUG("Leaving thread (%d)\n", codec->result);
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flush_stream(codec);
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pthread_mutex_lock(&codec->codec_mutex);
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pthread_cond_signal(&codec->codec_cond);
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pthread_mutex_unlock(&codec->codec_mutex);
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return NULL;
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}
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#endif
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static void
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flush_stream(ImagingIncrementalCodec codec)
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{
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UINT8 *buffer;
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size_t bytes;
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/* This is to flush data from the write buffer for a seekable write
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codec. */
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if (codec->read_or_write != INCREMENTAL_CODEC_WRITE
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|| codec->state->errcode != IMAGING_CODEC_END
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|| !codec->seekable
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|| codec->stream.fd >= 0)
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return;
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DEBUG("flushing data\n");
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buffer = codec->stream.buffer;
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bytes = codec->stream.ptr - codec->stream.buffer;
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codec->state->errcode = 0;
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codec->seekable = INCREMENTAL_CODEC_NOT_SEEKABLE;
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codec->stream.buffer = codec->stream.ptr = codec->stream.end
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= codec->stream.top = NULL;
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ImagingIncrementalCodecWrite(codec, buffer, bytes);
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codec->state->errcode = IMAGING_CODEC_END;
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codec->result = (int)ImagingIncrementalCodecBytesInBuffer(codec);
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free(buffer);
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}
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/**
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* Create a new incremental codec */
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ImagingIncrementalCodec
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ImagingIncrementalCodecCreate(ImagingIncrementalCodecEntry codec_entry,
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Imaging im,
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ImagingCodecState state,
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int read_or_write,
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int seekable,
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int fd)
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{
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ImagingIncrementalCodec codec = (ImagingIncrementalCodec)malloc(sizeof(struct ImagingIncrementalCodecStruct));
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codec->entry = codec_entry;
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codec->im = im;
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codec->state = state;
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codec->result = 0;
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codec->stream.fd = fd;
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codec->stream.buffer = codec->stream.ptr = codec->stream.end
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= codec->stream.top = NULL;
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codec->started = 0;
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codec->seekable = seekable;
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codec->read_or_write = read_or_write;
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if (fd >= 0)
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lseek(fd, 0, SEEK_SET);
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/* System specific set-up */
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#if _WIN32
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codec->hCodecEvent = CreateEvent(NULL, FALSE, FALSE, NULL);
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if (!codec->hCodecEvent) {
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free(codec);
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return NULL;
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}
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codec->hDataEvent = CreateEvent(NULL, FALSE, FALSE, NULL);
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if (!codec->hDataEvent) {
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CloseHandle(codec->hCodecEvent);
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free(codec);
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return NULL;
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}
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codec->hThread = _beginthreadex(NULL, 0, codec_thread, codec,
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CREATE_SUSPENDED, NULL);
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if (!codec->hThread) {
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CloseHandle(codec->hCodecEvent);
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CloseHandle(codec->hDataEvent);
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free(codec);
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return NULL;
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}
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#else
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if (pthread_mutex_init(&codec->start_mutex, NULL)) {
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free (codec);
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return NULL;
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}
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if (pthread_mutex_init(&codec->codec_mutex, NULL)) {
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pthread_mutex_destroy(&codec->start_mutex);
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free(codec);
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return NULL;
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}
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if (pthread_mutex_init(&codec->data_mutex, NULL)) {
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pthread_mutex_destroy(&codec->start_mutex);
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pthread_mutex_destroy(&codec->codec_mutex);
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free(codec);
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return NULL;
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}
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if (pthread_cond_init(&codec->start_cond, NULL)) {
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pthread_mutex_destroy(&codec->start_mutex);
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pthread_mutex_destroy(&codec->codec_mutex);
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pthread_mutex_destroy(&codec->data_mutex);
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free(codec);
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return NULL;
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}
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if (pthread_cond_init(&codec->codec_cond, NULL)) {
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pthread_mutex_destroy(&codec->start_mutex);
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pthread_mutex_destroy(&codec->codec_mutex);
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pthread_mutex_destroy(&codec->data_mutex);
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pthread_cond_destroy(&codec->start_cond);
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free(codec);
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return NULL;
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}
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if (pthread_cond_init(&codec->data_cond, NULL)) {
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pthread_mutex_destroy(&codec->start_mutex);
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pthread_mutex_destroy(&codec->codec_mutex);
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pthread_mutex_destroy(&codec->data_mutex);
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pthread_cond_destroy(&codec->start_cond);
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pthread_cond_destroy(&codec->codec_cond);
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free(codec);
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return NULL;
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}
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if (pthread_create(&codec->thread, NULL, codec_thread, codec)) {
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pthread_mutex_destroy(&codec->start_mutex);
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pthread_mutex_destroy(&codec->codec_mutex);
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pthread_mutex_destroy(&codec->data_mutex);
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pthread_cond_destroy(&codec->start_cond);
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pthread_cond_destroy(&codec->codec_cond);
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pthread_cond_destroy(&codec->data_cond);
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free(codec);
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return NULL;
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}
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#endif
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return codec;
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}
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/**
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* Destroy an incremental codec */
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void
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ImagingIncrementalCodecDestroy(ImagingIncrementalCodec codec)
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{
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DEBUG("destroying\n");
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if (!codec->started) {
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#ifdef _WIN32
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ResumeThread(codec->hThread);
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#else
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pthread_cond_signal(&codec->start_cond);
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#endif
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codec->started = 1;
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}
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#ifndef _WIN32
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pthread_mutex_lock(&codec->data_mutex);
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#endif
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if (codec->seekable && codec->stream.fd < 0)
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free (codec->stream.buffer);
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codec->stream.buffer = codec->stream.ptr = codec->stream.end
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= codec->stream.top = NULL;
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#ifdef _WIN32
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SetEvent(codec->hDataEvent);
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WaitForSingleObject(codec->hThread, INFINITE);
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CloseHandle(codec->hThread);
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CloseHandle(codec->hCodecEvent);
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CloseHandle(codec->hDataEvent);
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#else
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pthread_cond_signal(&codec->data_cond);
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pthread_mutex_unlock(&codec->data_mutex);
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pthread_join(codec->thread, NULL);
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pthread_mutex_destroy(&codec->start_mutex);
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pthread_mutex_destroy(&codec->codec_mutex);
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pthread_mutex_destroy(&codec->data_mutex);
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pthread_cond_destroy(&codec->start_cond);
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pthread_cond_destroy(&codec->codec_cond);
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pthread_cond_destroy(&codec->data_cond);
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#endif
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free (codec);
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}
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/**
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* Push a data buffer for an incremental codec */
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int
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ImagingIncrementalCodecPushBuffer(ImagingIncrementalCodec codec,
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UINT8 *buf, int bytes)
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{
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if (!codec->started) {
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DEBUG("starting\n");
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#ifdef _WIN32
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ResumeThread(codec->hThread);
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#else
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pthread_cond_signal(&codec->start_cond);
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#endif
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codec->started = 1;
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/* Wait for the thread to ask for data */
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#ifdef _WIN32
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WaitForSingleObject(codec->hCodecEvent, INFINITE);
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#else
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pthread_mutex_lock(&codec->codec_mutex);
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pthread_cond_wait(&codec->codec_cond, &codec->codec_mutex);
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pthread_mutex_unlock(&codec->codec_mutex);
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#endif
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if (codec->result < 0) {
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DEBUG("got result %d\n", codec->result);
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return codec->result;
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}
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}
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/* Codecs using an fd don't need data, so when we get here, we're done */
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if (codec->stream.fd >= 0) {
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DEBUG("got result %d\n", codec->result);
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return codec->result;
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}
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DEBUG("providing %p, %d\n", buf, bytes);
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#ifndef _WIN32
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pthread_mutex_lock(&codec->data_mutex);
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#endif
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if (codec->read_or_write == INCREMENTAL_CODEC_READ
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&& codec->seekable && codec->stream.fd < 0) {
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/* In this specific case, we append to a buffer we allocate ourselves */
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size_t old_size = codec->stream.end - codec->stream.buffer;
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size_t new_size = codec->stream.end - codec->stream.buffer + bytes;
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UINT8 *new = (UINT8 *)realloc (codec->stream.buffer, new_size);
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if (!new) {
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codec->state->errcode = IMAGING_CODEC_MEMORY;
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#ifndef _WIN32
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pthread_mutex_unlock(&codec->data_mutex);
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#endif
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return -1;
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}
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codec->stream.ptr = codec->stream.ptr - codec->stream.buffer + new;
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codec->stream.end = new + new_size;
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codec->stream.buffer = new;
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memcpy(new + old_size, buf, bytes);
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} else {
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codec->stream.buffer = codec->stream.ptr = buf;
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codec->stream.end = buf + bytes;
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}
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#ifdef _WIN32
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SetEvent(codec->hDataEvent);
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WaitForSingleObject(codec->hCodecEvent, INFINITE);
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#else
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pthread_cond_signal(&codec->data_cond);
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pthread_mutex_unlock(&codec->data_mutex);
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pthread_mutex_lock(&codec->codec_mutex);
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pthread_cond_wait(&codec->codec_cond, &codec->codec_mutex);
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pthread_mutex_unlock(&codec->codec_mutex);
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#endif
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DEBUG("got result %d\n", codec->result);
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return codec->result;
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}
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size_t
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ImagingIncrementalCodecBytesInBuffer(ImagingIncrementalCodec codec)
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{
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return codec->stream.ptr - codec->stream.buffer;
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}
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Py_ssize_t
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ImagingIncrementalCodecRead(ImagingIncrementalCodec codec,
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void *buffer, size_t bytes)
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{
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UINT8 *ptr = (UINT8 *)buffer;
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size_t done = 0;
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if (codec->read_or_write == INCREMENTAL_CODEC_WRITE) {
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DEBUG("attempt to read from write codec\n");
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return -1;
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}
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DEBUG("reading (want %llu bytes)\n", (unsigned long long)bytes);
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if (codec->stream.fd >= 0) {
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Py_ssize_t ret = read(codec->stream.fd, buffer, bytes);
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DEBUG("read %lld bytes from fd\n", (long long)ret);
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return ret;
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}
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#ifndef _WIN32
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pthread_mutex_lock(&codec->data_mutex);
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#endif
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while (bytes) {
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size_t todo = bytes;
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size_t remaining = codec->stream.end - codec->stream.ptr;
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if (!remaining) {
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DEBUG("waiting for data\n");
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#ifndef _WIN32
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pthread_mutex_lock(&codec->codec_mutex);
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#endif
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codec->result = (int)(codec->stream.ptr - codec->stream.buffer);
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#if _WIN32
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SetEvent(codec->hCodecEvent);
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WaitForSingleObject(codec->hDataEvent, INFINITE);
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#else
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pthread_cond_signal(&codec->codec_cond);
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pthread_mutex_unlock(&codec->codec_mutex);
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pthread_cond_wait(&codec->data_cond, &codec->data_mutex);
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#endif
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remaining = codec->stream.end - codec->stream.ptr;
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codec->stream.top = codec->stream.end;
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DEBUG("got %llu bytes\n", (unsigned long long)remaining);
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}
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if (todo > remaining)
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todo = remaining;
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if (!todo)
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break;
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memcpy (ptr, codec->stream.ptr, todo);
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codec->stream.ptr += todo;
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bytes -= todo;
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done += todo;
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ptr += todo;
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}
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#ifndef _WIN32
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pthread_mutex_unlock(&codec->data_mutex);
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#endif
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DEBUG("read total %llu bytes\n", (unsigned long long)done);
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return done;
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}
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off_t
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ImagingIncrementalCodecSkip(ImagingIncrementalCodec codec,
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off_t bytes)
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{
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off_t done = 0;
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DEBUG("skipping (want %llu bytes)\n", (unsigned long long)bytes);
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/* In write mode, explicitly fill with zeroes */
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if (codec->read_or_write == INCREMENTAL_CODEC_WRITE) {
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static const UINT8 zeroes[256] = { 0 };
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off_t done = 0;
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while (bytes) {
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size_t todo = (size_t)(bytes > 256 ? 256 : bytes);
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Py_ssize_t written = ImagingIncrementalCodecWrite(codec, zeroes, todo);
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if (written <= 0)
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break;
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done += written;
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bytes -= written;
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}
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return done;
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}
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if (codec->stream.fd >= 0)
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return lseek(codec->stream.fd, bytes, SEEK_CUR);
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#ifndef _WIN32
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pthread_mutex_lock(&codec->data_mutex);
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#endif
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while (bytes) {
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off_t todo = bytes;
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off_t remaining = codec->stream.end - codec->stream.ptr;
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if (!remaining) {
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DEBUG("waiting for data\n");
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#ifndef _WIN32
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pthread_mutex_lock(&codec->codec_mutex);
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#endif
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codec->result = (int)(codec->stream.ptr - codec->stream.buffer);
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#if _WIN32
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SetEvent(codec->hCodecEvent);
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WaitForSingleObject(codec->hDataEvent, INFINITE);
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#else
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pthread_cond_signal(&codec->codec_cond);
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pthread_mutex_unlock(&codec->codec_mutex);
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pthread_cond_wait(&codec->data_cond, &codec->data_mutex);
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#endif
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remaining = codec->stream.end - codec->stream.ptr;
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}
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if (todo > remaining)
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todo = remaining;
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if (!todo)
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break;
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codec->stream.ptr += todo;
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bytes -= todo;
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done += todo;
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}
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#ifndef _WIN32
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pthread_mutex_unlock(&codec->data_mutex);
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#endif
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DEBUG("skipped total %llu bytes\n", (unsigned long long)done);
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return done;
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}
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Py_ssize_t
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ImagingIncrementalCodecWrite(ImagingIncrementalCodec codec,
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const void *buffer, size_t bytes)
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{
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const UINT8 *ptr = (const UINT8 *)buffer;
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size_t done = 0;
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if (codec->read_or_write == INCREMENTAL_CODEC_READ) {
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DEBUG("attempt to write from read codec\n");
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return -1;
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}
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DEBUG("write (have %llu bytes)\n", (unsigned long long)bytes);
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if (codec->stream.fd >= 0)
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return write(codec->stream.fd, buffer, bytes);
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#ifndef _WIN32
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pthread_mutex_lock(&codec->data_mutex);
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#endif
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while (bytes) {
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size_t todo = bytes;
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size_t remaining = codec->stream.end - codec->stream.ptr;
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if (!remaining) {
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if (codec->seekable && codec->stream.fd < 0) {
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/* In this case, we maintain the stream buffer ourselves */
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size_t old_size = codec->stream.top - codec->stream.buffer;
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size_t new_size = (old_size + bytes + 65535) & ~65535;
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UINT8 *new = (UINT8 *)realloc(codec->stream.buffer, new_size);
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if (!new) {
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codec->state->errcode = IMAGING_CODEC_MEMORY;
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#ifndef _WIN32
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pthread_mutex_unlock(&codec->data_mutex);
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#endif
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return done == 0 ? -1 : done;
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}
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codec->stream.ptr = codec->stream.ptr - codec->stream.buffer + new;
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codec->stream.buffer = new;
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codec->stream.end = new + new_size;
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codec->stream.top = new + old_size;
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} else {
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DEBUG("waiting for space\n");
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#ifndef _WIN32
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pthread_mutex_lock(&codec->codec_mutex);
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#endif
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codec->result = (int)(codec->stream.ptr - codec->stream.buffer);
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#if _WIN32
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SetEvent(codec->hCodecEvent);
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WaitForSingleObject(codec->hDataEvent, INFINITE);
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#else
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pthread_cond_signal(&codec->codec_cond);
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pthread_mutex_unlock(&codec->codec_mutex);
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pthread_cond_wait(&codec->data_cond, &codec->data_mutex);
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#endif
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}
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remaining = codec->stream.end - codec->stream.ptr;
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DEBUG("got %llu bytes\n", (unsigned long long)remaining);
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}
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if (todo > remaining)
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todo = remaining;
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if (!todo)
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break;
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memcpy (codec->stream.ptr, ptr, todo);
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codec->stream.ptr += todo;
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bytes -= todo;
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done += todo;
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ptr += todo;
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}
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if (codec->stream.ptr > codec->stream.top)
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codec->stream.top = codec->stream.ptr;
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#ifndef _WIN32
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pthread_mutex_unlock(&codec->data_mutex);
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#endif
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DEBUG("wrote total %llu bytes\n", (unsigned long long)done);
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return done;
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}
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off_t
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ImagingIncrementalCodecSeek(ImagingIncrementalCodec codec,
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off_t bytes)
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{
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off_t buffered;
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DEBUG("seeking (going to %llu bytes)\n", (unsigned long long)bytes);
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if (codec->stream.fd >= 0)
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return lseek(codec->stream.fd, bytes, SEEK_SET);
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if (!codec->seekable) {
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DEBUG("attempt to seek non-seekable stream\n");
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return -1;
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}
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if (bytes < 0) {
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DEBUG("attempt to seek before stream start\n");
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return -1;
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}
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buffered = codec->stream.top - codec->stream.buffer;
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|
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if (bytes <= buffered) {
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DEBUG("seek within buffer\n");
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codec->stream.ptr = codec->stream.buffer + bytes;
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return bytes;
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}
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return buffered + ImagingIncrementalCodecSkip(codec, bytes - buffered);
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}
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