forked from Mirrors/freeswitch
772 lines
24 KiB
C
772 lines
24 KiB
C
/*
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* Copyright (c) 2010 The WebM project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include <math.h>
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#include <stdarg.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "./tools_common.h"
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#if CONFIG_VP8_ENCODER || CONFIG_VP9_ENCODER
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#include "vpx/vp8cx.h"
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#endif
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#if CONFIG_VP8_DECODER || CONFIG_VP9_DECODER
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#include "vpx/vp8dx.h"
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#endif
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#if defined(_WIN32) || defined(__OS2__)
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#include <io.h>
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#include <fcntl.h>
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#ifdef __OS2__
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#define _setmode setmode
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#define _fileno fileno
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#define _O_BINARY O_BINARY
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#endif
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#endif
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#define LOG_ERROR(label) \
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do { \
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const char *l = label; \
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va_list ap; \
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va_start(ap, fmt); \
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if (l) fprintf(stderr, "%s: ", l); \
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vfprintf(stderr, fmt, ap); \
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fprintf(stderr, "\n"); \
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va_end(ap); \
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} while (0)
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#if CONFIG_ENCODERS
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/* Swallow warnings about unused results of fread/fwrite */
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static size_t wrap_fread(void *ptr, size_t size, size_t nmemb, FILE *stream) {
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return fread(ptr, size, nmemb, stream);
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}
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#define fread wrap_fread
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#endif
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FILE *set_binary_mode(FILE *stream) {
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(void)stream;
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#if defined(_WIN32) || defined(__OS2__)
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_setmode(_fileno(stream), _O_BINARY);
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#endif
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return stream;
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}
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void die(const char *fmt, ...) {
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LOG_ERROR(NULL);
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usage_exit();
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}
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void fatal(const char *fmt, ...) {
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LOG_ERROR("Fatal");
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exit(EXIT_FAILURE);
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}
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void warn(const char *fmt, ...) { LOG_ERROR("Warning"); }
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void die_codec(vpx_codec_ctx_t *ctx, const char *s) {
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const char *detail = vpx_codec_error_detail(ctx);
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printf("%s: %s\n", s, vpx_codec_error(ctx));
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if (detail) printf(" %s\n", detail);
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exit(EXIT_FAILURE);
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}
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int read_yuv_frame(struct VpxInputContext *input_ctx, vpx_image_t *yuv_frame) {
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FILE *f = input_ctx->file;
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struct FileTypeDetectionBuffer *detect = &input_ctx->detect;
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int plane = 0;
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int shortread = 0;
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const int bytespp = (yuv_frame->fmt & VPX_IMG_FMT_HIGHBITDEPTH) ? 2 : 1;
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for (plane = 0; plane < 3; ++plane) {
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uint8_t *ptr;
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const int w = vpx_img_plane_width(yuv_frame, plane);
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const int h = vpx_img_plane_height(yuv_frame, plane);
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int r;
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/* Determine the correct plane based on the image format. The for-loop
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* always counts in Y,U,V order, but this may not match the order of
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* the data on disk.
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*/
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switch (plane) {
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case 1:
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ptr =
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yuv_frame->planes[yuv_frame->fmt == VPX_IMG_FMT_YV12 ? VPX_PLANE_V
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: VPX_PLANE_U];
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break;
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case 2:
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ptr =
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yuv_frame->planes[yuv_frame->fmt == VPX_IMG_FMT_YV12 ? VPX_PLANE_U
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: VPX_PLANE_V];
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break;
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default: ptr = yuv_frame->planes[plane];
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}
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for (r = 0; r < h; ++r) {
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size_t needed = w * bytespp;
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size_t buf_position = 0;
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const size_t left = detect->buf_read - detect->position;
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if (left > 0) {
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const size_t more = (left < needed) ? left : needed;
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memcpy(ptr, detect->buf + detect->position, more);
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buf_position = more;
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needed -= more;
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detect->position += more;
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}
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if (needed > 0) {
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shortread |= (fread(ptr + buf_position, 1, needed, f) < needed);
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}
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ptr += yuv_frame->stride[plane];
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}
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}
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return shortread;
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}
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#if CONFIG_ENCODERS
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static const VpxInterface vpx_encoders[] = {
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#if CONFIG_VP8_ENCODER
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{ "vp8", VP8_FOURCC, &vpx_codec_vp8_cx },
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#endif
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#if CONFIG_VP9_ENCODER
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{ "vp9", VP9_FOURCC, &vpx_codec_vp9_cx },
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#endif
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};
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int get_vpx_encoder_count(void) {
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return sizeof(vpx_encoders) / sizeof(vpx_encoders[0]);
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}
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const VpxInterface *get_vpx_encoder_by_index(int i) { return &vpx_encoders[i]; }
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const VpxInterface *get_vpx_encoder_by_name(const char *name) {
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int i;
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for (i = 0; i < get_vpx_encoder_count(); ++i) {
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const VpxInterface *encoder = get_vpx_encoder_by_index(i);
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if (strcmp(encoder->name, name) == 0) return encoder;
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}
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return NULL;
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}
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#endif // CONFIG_ENCODERS
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#if CONFIG_DECODERS
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static const VpxInterface vpx_decoders[] = {
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#if CONFIG_VP8_DECODER
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{ "vp8", VP8_FOURCC, &vpx_codec_vp8_dx },
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#endif
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#if CONFIG_VP9_DECODER
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{ "vp9", VP9_FOURCC, &vpx_codec_vp9_dx },
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#endif
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};
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int get_vpx_decoder_count(void) {
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return sizeof(vpx_decoders) / sizeof(vpx_decoders[0]);
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}
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const VpxInterface *get_vpx_decoder_by_index(int i) { return &vpx_decoders[i]; }
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const VpxInterface *get_vpx_decoder_by_name(const char *name) {
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int i;
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for (i = 0; i < get_vpx_decoder_count(); ++i) {
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const VpxInterface *const decoder = get_vpx_decoder_by_index(i);
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if (strcmp(decoder->name, name) == 0) return decoder;
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}
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return NULL;
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}
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const VpxInterface *get_vpx_decoder_by_fourcc(uint32_t fourcc) {
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int i;
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for (i = 0; i < get_vpx_decoder_count(); ++i) {
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const VpxInterface *const decoder = get_vpx_decoder_by_index(i);
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if (decoder->fourcc == fourcc) return decoder;
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}
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return NULL;
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}
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#endif // CONFIG_DECODERS
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int vpx_img_plane_width(const vpx_image_t *img, int plane) {
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if (plane > 0 && img->x_chroma_shift > 0)
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return (img->d_w + 1) >> img->x_chroma_shift;
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else
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return img->d_w;
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}
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int vpx_img_plane_height(const vpx_image_t *img, int plane) {
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if (plane > 0 && img->y_chroma_shift > 0)
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return (img->d_h + 1) >> img->y_chroma_shift;
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else
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return img->d_h;
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}
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void vpx_img_write(const vpx_image_t *img, FILE *file) {
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int plane;
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for (plane = 0; plane < 3; ++plane) {
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const unsigned char *buf = img->planes[plane];
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const int stride = img->stride[plane];
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const int w = vpx_img_plane_width(img, plane) *
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((img->fmt & VPX_IMG_FMT_HIGHBITDEPTH) ? 2 : 1);
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const int h = vpx_img_plane_height(img, plane);
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int y;
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for (y = 0; y < h; ++y) {
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fwrite(buf, 1, w, file);
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buf += stride;
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}
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}
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}
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int vpx_img_read(vpx_image_t *img, FILE *file) {
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int plane;
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for (plane = 0; plane < 3; ++plane) {
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unsigned char *buf = img->planes[plane];
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const int stride = img->stride[plane];
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const int w = vpx_img_plane_width(img, plane) *
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((img->fmt & VPX_IMG_FMT_HIGHBITDEPTH) ? 2 : 1);
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const int h = vpx_img_plane_height(img, plane);
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int y;
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for (y = 0; y < h; ++y) {
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if (fread(buf, 1, w, file) != (size_t)w) return 0;
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buf += stride;
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}
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}
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return 1;
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}
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// TODO(dkovalev) change sse_to_psnr signature: double -> int64_t
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double sse_to_psnr(double samples, double peak, double sse) {
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static const double kMaxPSNR = 100.0;
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if (sse > 0.0) {
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const double psnr = 10.0 * log10(samples * peak * peak / sse);
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return psnr > kMaxPSNR ? kMaxPSNR : psnr;
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} else {
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return kMaxPSNR;
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}
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}
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#if CONFIG_ENCODERS
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int read_frame(struct VpxInputContext *input_ctx, vpx_image_t *img) {
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FILE *f = input_ctx->file;
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y4m_input *y4m = &input_ctx->y4m;
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int shortread = 0;
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if (input_ctx->file_type == FILE_TYPE_Y4M) {
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if (y4m_input_fetch_frame(y4m, f, img) < 1) return 0;
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} else {
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shortread = read_yuv_frame(input_ctx, img);
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}
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return !shortread;
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}
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int file_is_y4m(const char detect[4]) {
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if (memcmp(detect, "YUV4", 4) == 0) {
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return 1;
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}
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return 0;
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}
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int fourcc_is_ivf(const char detect[4]) {
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if (memcmp(detect, "DKIF", 4) == 0) {
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return 1;
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}
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return 0;
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}
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void open_input_file(struct VpxInputContext *input) {
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/* Parse certain options from the input file, if possible */
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input->file = strcmp(input->filename, "-") ? fopen(input->filename, "rb")
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: set_binary_mode(stdin);
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if (!input->file) fatal("Failed to open input file");
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if (!fseeko(input->file, 0, SEEK_END)) {
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/* Input file is seekable. Figure out how long it is, so we can get
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* progress info.
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*/
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input->length = ftello(input->file);
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rewind(input->file);
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}
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/* Default to 1:1 pixel aspect ratio. */
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input->pixel_aspect_ratio.numerator = 1;
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input->pixel_aspect_ratio.denominator = 1;
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/* For RAW input sources, these bytes will applied on the first frame
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* in read_frame().
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*/
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input->detect.buf_read = fread(input->detect.buf, 1, 4, input->file);
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input->detect.position = 0;
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if (input->detect.buf_read == 4 && file_is_y4m(input->detect.buf)) {
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if (y4m_input_open(&input->y4m, input->file, input->detect.buf, 4,
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input->only_i420) >= 0) {
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input->file_type = FILE_TYPE_Y4M;
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input->width = input->y4m.pic_w;
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input->height = input->y4m.pic_h;
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input->pixel_aspect_ratio.numerator = input->y4m.par_n;
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input->pixel_aspect_ratio.denominator = input->y4m.par_d;
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input->framerate.numerator = input->y4m.fps_n;
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input->framerate.denominator = input->y4m.fps_d;
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input->fmt = input->y4m.vpx_fmt;
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input->bit_depth = input->y4m.bit_depth;
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} else {
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fatal("Unsupported Y4M stream.");
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}
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} else if (input->detect.buf_read == 4 && fourcc_is_ivf(input->detect.buf)) {
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fatal("IVF is not supported as input.");
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} else {
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input->file_type = FILE_TYPE_RAW;
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}
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}
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void close_input_file(struct VpxInputContext *input) {
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fclose(input->file);
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if (input->file_type == FILE_TYPE_Y4M) y4m_input_close(&input->y4m);
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}
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#endif
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// TODO(debargha): Consolidate the functions below into a separate file.
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#if CONFIG_VP9_HIGHBITDEPTH
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static void highbd_img_upshift(vpx_image_t *dst, vpx_image_t *src,
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int input_shift) {
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// Note the offset is 1 less than half.
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const int offset = input_shift > 0 ? (1 << (input_shift - 1)) - 1 : 0;
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int plane;
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if (dst->d_w != src->d_w || dst->d_h != src->d_h ||
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dst->x_chroma_shift != src->x_chroma_shift ||
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dst->y_chroma_shift != src->y_chroma_shift || dst->fmt != src->fmt ||
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input_shift < 0) {
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fatal("Unsupported image conversion");
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}
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switch (src->fmt) {
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case VPX_IMG_FMT_I42016:
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case VPX_IMG_FMT_I42216:
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case VPX_IMG_FMT_I44416:
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case VPX_IMG_FMT_I44016: break;
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default: fatal("Unsupported image conversion"); break;
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}
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for (plane = 0; plane < 3; plane++) {
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int w = src->d_w;
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int h = src->d_h;
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int x, y;
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if (plane) {
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w = (w + src->x_chroma_shift) >> src->x_chroma_shift;
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h = (h + src->y_chroma_shift) >> src->y_chroma_shift;
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}
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for (y = 0; y < h; y++) {
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uint16_t *p_src =
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(uint16_t *)(src->planes[plane] + y * src->stride[plane]);
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uint16_t *p_dst =
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(uint16_t *)(dst->planes[plane] + y * dst->stride[plane]);
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for (x = 0; x < w; x++) *p_dst++ = (*p_src++ << input_shift) + offset;
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}
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}
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}
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static void lowbd_img_upshift(vpx_image_t *dst, vpx_image_t *src,
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int input_shift) {
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// Note the offset is 1 less than half.
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const int offset = input_shift > 0 ? (1 << (input_shift - 1)) - 1 : 0;
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int plane;
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if (dst->d_w != src->d_w || dst->d_h != src->d_h ||
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dst->x_chroma_shift != src->x_chroma_shift ||
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dst->y_chroma_shift != src->y_chroma_shift ||
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dst->fmt != src->fmt + VPX_IMG_FMT_HIGHBITDEPTH || input_shift < 0) {
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fatal("Unsupported image conversion");
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}
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switch (src->fmt) {
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case VPX_IMG_FMT_I420:
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case VPX_IMG_FMT_I422:
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case VPX_IMG_FMT_I444:
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case VPX_IMG_FMT_I440: break;
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default: fatal("Unsupported image conversion"); break;
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}
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for (plane = 0; plane < 3; plane++) {
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int w = src->d_w;
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int h = src->d_h;
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int x, y;
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if (plane) {
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w = (w + src->x_chroma_shift) >> src->x_chroma_shift;
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h = (h + src->y_chroma_shift) >> src->y_chroma_shift;
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}
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for (y = 0; y < h; y++) {
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uint8_t *p_src = src->planes[plane] + y * src->stride[plane];
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uint16_t *p_dst =
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(uint16_t *)(dst->planes[plane] + y * dst->stride[plane]);
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for (x = 0; x < w; x++) {
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*p_dst++ = (*p_src++ << input_shift) + offset;
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}
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}
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}
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}
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void vpx_img_upshift(vpx_image_t *dst, vpx_image_t *src, int input_shift) {
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if (src->fmt & VPX_IMG_FMT_HIGHBITDEPTH) {
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highbd_img_upshift(dst, src, input_shift);
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} else {
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lowbd_img_upshift(dst, src, input_shift);
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}
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}
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void vpx_img_truncate_16_to_8(vpx_image_t *dst, vpx_image_t *src) {
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int plane;
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if (dst->fmt + VPX_IMG_FMT_HIGHBITDEPTH != src->fmt || dst->d_w != src->d_w ||
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dst->d_h != src->d_h || dst->x_chroma_shift != src->x_chroma_shift ||
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dst->y_chroma_shift != src->y_chroma_shift) {
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fatal("Unsupported image conversion");
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}
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switch (dst->fmt) {
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case VPX_IMG_FMT_I420:
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case VPX_IMG_FMT_I422:
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case VPX_IMG_FMT_I444:
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case VPX_IMG_FMT_I440: break;
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default: fatal("Unsupported image conversion"); break;
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}
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for (plane = 0; plane < 3; plane++) {
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int w = src->d_w;
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int h = src->d_h;
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int x, y;
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if (plane) {
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w = (w + src->x_chroma_shift) >> src->x_chroma_shift;
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h = (h + src->y_chroma_shift) >> src->y_chroma_shift;
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}
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for (y = 0; y < h; y++) {
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uint16_t *p_src =
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(uint16_t *)(src->planes[plane] + y * src->stride[plane]);
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uint8_t *p_dst = dst->planes[plane] + y * dst->stride[plane];
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for (x = 0; x < w; x++) {
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*p_dst++ = (uint8_t)(*p_src++);
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}
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}
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}
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}
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static void highbd_img_downshift(vpx_image_t *dst, vpx_image_t *src,
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int down_shift) {
|
|
int plane;
|
|
if (dst->d_w != src->d_w || dst->d_h != src->d_h ||
|
|
dst->x_chroma_shift != src->x_chroma_shift ||
|
|
dst->y_chroma_shift != src->y_chroma_shift || dst->fmt != src->fmt ||
|
|
down_shift < 0) {
|
|
fatal("Unsupported image conversion");
|
|
}
|
|
switch (src->fmt) {
|
|
case VPX_IMG_FMT_I42016:
|
|
case VPX_IMG_FMT_I42216:
|
|
case VPX_IMG_FMT_I44416:
|
|
case VPX_IMG_FMT_I44016: break;
|
|
default: fatal("Unsupported image conversion"); break;
|
|
}
|
|
for (plane = 0; plane < 3; plane++) {
|
|
int w = src->d_w;
|
|
int h = src->d_h;
|
|
int x, y;
|
|
if (plane) {
|
|
w = (w + src->x_chroma_shift) >> src->x_chroma_shift;
|
|
h = (h + src->y_chroma_shift) >> src->y_chroma_shift;
|
|
}
|
|
for (y = 0; y < h; y++) {
|
|
uint16_t *p_src =
|
|
(uint16_t *)(src->planes[plane] + y * src->stride[plane]);
|
|
uint16_t *p_dst =
|
|
(uint16_t *)(dst->planes[plane] + y * dst->stride[plane]);
|
|
for (x = 0; x < w; x++) *p_dst++ = *p_src++ >> down_shift;
|
|
}
|
|
}
|
|
}
|
|
|
|
static void lowbd_img_downshift(vpx_image_t *dst, vpx_image_t *src,
|
|
int down_shift) {
|
|
int plane;
|
|
if (dst->d_w != src->d_w || dst->d_h != src->d_h ||
|
|
dst->x_chroma_shift != src->x_chroma_shift ||
|
|
dst->y_chroma_shift != src->y_chroma_shift ||
|
|
src->fmt != dst->fmt + VPX_IMG_FMT_HIGHBITDEPTH || down_shift < 0) {
|
|
fatal("Unsupported image conversion");
|
|
}
|
|
switch (dst->fmt) {
|
|
case VPX_IMG_FMT_I420:
|
|
case VPX_IMG_FMT_I422:
|
|
case VPX_IMG_FMT_I444:
|
|
case VPX_IMG_FMT_I440: break;
|
|
default: fatal("Unsupported image conversion"); break;
|
|
}
|
|
for (plane = 0; plane < 3; plane++) {
|
|
int w = src->d_w;
|
|
int h = src->d_h;
|
|
int x, y;
|
|
if (plane) {
|
|
w = (w + src->x_chroma_shift) >> src->x_chroma_shift;
|
|
h = (h + src->y_chroma_shift) >> src->y_chroma_shift;
|
|
}
|
|
for (y = 0; y < h; y++) {
|
|
uint16_t *p_src =
|
|
(uint16_t *)(src->planes[plane] + y * src->stride[plane]);
|
|
uint8_t *p_dst = dst->planes[plane] + y * dst->stride[plane];
|
|
for (x = 0; x < w; x++) {
|
|
*p_dst++ = *p_src++ >> down_shift;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void vpx_img_downshift(vpx_image_t *dst, vpx_image_t *src, int down_shift) {
|
|
if (dst->fmt & VPX_IMG_FMT_HIGHBITDEPTH) {
|
|
highbd_img_downshift(dst, src, down_shift);
|
|
} else {
|
|
lowbd_img_downshift(dst, src, down_shift);
|
|
}
|
|
}
|
|
#endif // CONFIG_VP9_HIGHBITDEPTH
|
|
|
|
int compare_img(const vpx_image_t *const img1, const vpx_image_t *const img2) {
|
|
uint32_t l_w = img1->d_w;
|
|
uint32_t c_w = (img1->d_w + img1->x_chroma_shift) >> img1->x_chroma_shift;
|
|
const uint32_t c_h =
|
|
(img1->d_h + img1->y_chroma_shift) >> img1->y_chroma_shift;
|
|
uint32_t i;
|
|
int match = 1;
|
|
|
|
match &= (img1->fmt == img2->fmt);
|
|
match &= (img1->d_w == img2->d_w);
|
|
match &= (img1->d_h == img2->d_h);
|
|
#if CONFIG_VP9_HIGHBITDEPTH
|
|
if (img1->fmt & VPX_IMG_FMT_HIGHBITDEPTH) {
|
|
l_w *= 2;
|
|
c_w *= 2;
|
|
}
|
|
#endif
|
|
|
|
for (i = 0; i < img1->d_h; ++i)
|
|
match &= (memcmp(img1->planes[VPX_PLANE_Y] + i * img1->stride[VPX_PLANE_Y],
|
|
img2->planes[VPX_PLANE_Y] + i * img2->stride[VPX_PLANE_Y],
|
|
l_w) == 0);
|
|
|
|
for (i = 0; i < c_h; ++i)
|
|
match &= (memcmp(img1->planes[VPX_PLANE_U] + i * img1->stride[VPX_PLANE_U],
|
|
img2->planes[VPX_PLANE_U] + i * img2->stride[VPX_PLANE_U],
|
|
c_w) == 0);
|
|
|
|
for (i = 0; i < c_h; ++i)
|
|
match &= (memcmp(img1->planes[VPX_PLANE_V] + i * img1->stride[VPX_PLANE_V],
|
|
img2->planes[VPX_PLANE_V] + i * img2->stride[VPX_PLANE_V],
|
|
c_w) == 0);
|
|
|
|
return match;
|
|
}
|
|
|
|
#define mmin(a, b) ((a) < (b) ? (a) : (b))
|
|
|
|
#if CONFIG_VP9_HIGHBITDEPTH
|
|
void find_mismatch_high(const vpx_image_t *const img1,
|
|
const vpx_image_t *const img2, int yloc[4], int uloc[4],
|
|
int vloc[4]) {
|
|
uint16_t *plane1, *plane2;
|
|
uint32_t stride1, stride2;
|
|
const uint32_t bsize = 64;
|
|
const uint32_t bsizey = bsize >> img1->y_chroma_shift;
|
|
const uint32_t bsizex = bsize >> img1->x_chroma_shift;
|
|
const uint32_t c_w =
|
|
(img1->d_w + img1->x_chroma_shift) >> img1->x_chroma_shift;
|
|
const uint32_t c_h =
|
|
(img1->d_h + img1->y_chroma_shift) >> img1->y_chroma_shift;
|
|
int match = 1;
|
|
uint32_t i, j;
|
|
yloc[0] = yloc[1] = yloc[2] = yloc[3] = -1;
|
|
plane1 = (uint16_t *)img1->planes[VPX_PLANE_Y];
|
|
plane2 = (uint16_t *)img2->planes[VPX_PLANE_Y];
|
|
stride1 = img1->stride[VPX_PLANE_Y] / 2;
|
|
stride2 = img2->stride[VPX_PLANE_Y] / 2;
|
|
for (i = 0, match = 1; match && i < img1->d_h; i += bsize) {
|
|
for (j = 0; match && j < img1->d_w; j += bsize) {
|
|
int k, l;
|
|
const int si = mmin(i + bsize, img1->d_h) - i;
|
|
const int sj = mmin(j + bsize, img1->d_w) - j;
|
|
for (k = 0; match && k < si; ++k) {
|
|
for (l = 0; match && l < sj; ++l) {
|
|
if (*(plane1 + (i + k) * stride1 + j + l) !=
|
|
*(plane2 + (i + k) * stride2 + j + l)) {
|
|
yloc[0] = i + k;
|
|
yloc[1] = j + l;
|
|
yloc[2] = *(plane1 + (i + k) * stride1 + j + l);
|
|
yloc[3] = *(plane2 + (i + k) * stride2 + j + l);
|
|
match = 0;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
uloc[0] = uloc[1] = uloc[2] = uloc[3] = -1;
|
|
plane1 = (uint16_t *)img1->planes[VPX_PLANE_U];
|
|
plane2 = (uint16_t *)img2->planes[VPX_PLANE_U];
|
|
stride1 = img1->stride[VPX_PLANE_U] / 2;
|
|
stride2 = img2->stride[VPX_PLANE_U] / 2;
|
|
for (i = 0, match = 1; match && i < c_h; i += bsizey) {
|
|
for (j = 0; match && j < c_w; j += bsizex) {
|
|
int k, l;
|
|
const int si = mmin(i + bsizey, c_h - i);
|
|
const int sj = mmin(j + bsizex, c_w - j);
|
|
for (k = 0; match && k < si; ++k) {
|
|
for (l = 0; match && l < sj; ++l) {
|
|
if (*(plane1 + (i + k) * stride1 + j + l) !=
|
|
*(plane2 + (i + k) * stride2 + j + l)) {
|
|
uloc[0] = i + k;
|
|
uloc[1] = j + l;
|
|
uloc[2] = *(plane1 + (i + k) * stride1 + j + l);
|
|
uloc[3] = *(plane2 + (i + k) * stride2 + j + l);
|
|
match = 0;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
vloc[0] = vloc[1] = vloc[2] = vloc[3] = -1;
|
|
plane1 = (uint16_t *)img1->planes[VPX_PLANE_V];
|
|
plane2 = (uint16_t *)img2->planes[VPX_PLANE_V];
|
|
stride1 = img1->stride[VPX_PLANE_V] / 2;
|
|
stride2 = img2->stride[VPX_PLANE_V] / 2;
|
|
for (i = 0, match = 1; match && i < c_h; i += bsizey) {
|
|
for (j = 0; match && j < c_w; j += bsizex) {
|
|
int k, l;
|
|
const int si = mmin(i + bsizey, c_h - i);
|
|
const int sj = mmin(j + bsizex, c_w - j);
|
|
for (k = 0; match && k < si; ++k) {
|
|
for (l = 0; match && l < sj; ++l) {
|
|
if (*(plane1 + (i + k) * stride1 + j + l) !=
|
|
*(plane2 + (i + k) * stride2 + j + l)) {
|
|
vloc[0] = i + k;
|
|
vloc[1] = j + l;
|
|
vloc[2] = *(plane1 + (i + k) * stride1 + j + l);
|
|
vloc[3] = *(plane2 + (i + k) * stride2 + j + l);
|
|
match = 0;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
#endif // CONFIG_VP9_HIGHBITDEPTH
|
|
|
|
void find_mismatch(const vpx_image_t *const img1, const vpx_image_t *const img2,
|
|
int yloc[4], int uloc[4], int vloc[4]) {
|
|
const uint32_t bsize = 64;
|
|
const uint32_t bsizey = bsize >> img1->y_chroma_shift;
|
|
const uint32_t bsizex = bsize >> img1->x_chroma_shift;
|
|
const uint32_t c_w =
|
|
(img1->d_w + img1->x_chroma_shift) >> img1->x_chroma_shift;
|
|
const uint32_t c_h =
|
|
(img1->d_h + img1->y_chroma_shift) >> img1->y_chroma_shift;
|
|
int match = 1;
|
|
uint32_t i, j;
|
|
yloc[0] = yloc[1] = yloc[2] = yloc[3] = -1;
|
|
for (i = 0, match = 1; match && i < img1->d_h; i += bsize) {
|
|
for (j = 0; match && j < img1->d_w; j += bsize) {
|
|
int k, l;
|
|
const int si = mmin(i + bsize, img1->d_h) - i;
|
|
const int sj = mmin(j + bsize, img1->d_w) - j;
|
|
for (k = 0; match && k < si; ++k) {
|
|
for (l = 0; match && l < sj; ++l) {
|
|
if (*(img1->planes[VPX_PLANE_Y] +
|
|
(i + k) * img1->stride[VPX_PLANE_Y] + j + l) !=
|
|
*(img2->planes[VPX_PLANE_Y] +
|
|
(i + k) * img2->stride[VPX_PLANE_Y] + j + l)) {
|
|
yloc[0] = i + k;
|
|
yloc[1] = j + l;
|
|
yloc[2] = *(img1->planes[VPX_PLANE_Y] +
|
|
(i + k) * img1->stride[VPX_PLANE_Y] + j + l);
|
|
yloc[3] = *(img2->planes[VPX_PLANE_Y] +
|
|
(i + k) * img2->stride[VPX_PLANE_Y] + j + l);
|
|
match = 0;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
uloc[0] = uloc[1] = uloc[2] = uloc[3] = -1;
|
|
for (i = 0, match = 1; match && i < c_h; i += bsizey) {
|
|
for (j = 0; match && j < c_w; j += bsizex) {
|
|
int k, l;
|
|
const int si = mmin(i + bsizey, c_h - i);
|
|
const int sj = mmin(j + bsizex, c_w - j);
|
|
for (k = 0; match && k < si; ++k) {
|
|
for (l = 0; match && l < sj; ++l) {
|
|
if (*(img1->planes[VPX_PLANE_U] +
|
|
(i + k) * img1->stride[VPX_PLANE_U] + j + l) !=
|
|
*(img2->planes[VPX_PLANE_U] +
|
|
(i + k) * img2->stride[VPX_PLANE_U] + j + l)) {
|
|
uloc[0] = i + k;
|
|
uloc[1] = j + l;
|
|
uloc[2] = *(img1->planes[VPX_PLANE_U] +
|
|
(i + k) * img1->stride[VPX_PLANE_U] + j + l);
|
|
uloc[3] = *(img2->planes[VPX_PLANE_U] +
|
|
(i + k) * img2->stride[VPX_PLANE_U] + j + l);
|
|
match = 0;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
vloc[0] = vloc[1] = vloc[2] = vloc[3] = -1;
|
|
for (i = 0, match = 1; match && i < c_h; i += bsizey) {
|
|
for (j = 0; match && j < c_w; j += bsizex) {
|
|
int k, l;
|
|
const int si = mmin(i + bsizey, c_h - i);
|
|
const int sj = mmin(j + bsizex, c_w - j);
|
|
for (k = 0; match && k < si; ++k) {
|
|
for (l = 0; match && l < sj; ++l) {
|
|
if (*(img1->planes[VPX_PLANE_V] +
|
|
(i + k) * img1->stride[VPX_PLANE_V] + j + l) !=
|
|
*(img2->planes[VPX_PLANE_V] +
|
|
(i + k) * img2->stride[VPX_PLANE_V] + j + l)) {
|
|
vloc[0] = i + k;
|
|
vloc[1] = j + l;
|
|
vloc[2] = *(img1->planes[VPX_PLANE_V] +
|
|
(i + k) * img1->stride[VPX_PLANE_V] + j + l);
|
|
vloc[3] = *(img2->planes[VPX_PLANE_V] +
|
|
(i + k) * img2->stride[VPX_PLANE_V] + j + l);
|
|
match = 0;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|