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path: root/src/gallium/auxiliary/util/u_debug_image.c
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/*
 * Copyright (c) 2008-2016 VMware, Inc.
 * All Rights Reserved.
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the
 * "Software"), to deal in the Software without restriction, including
 * without limitation the rights to use, copy, modify, merge, publish,
 * distribute, sub license, and/or sell copies of the Software, and to
 * permit persons to whom the Software is furnished to do so, subject to
 * the following conditions:
 *
 * The above copyright notice and this permission notice (including the
 * next paragraph) shall be included in all copies or substantial portions
 * of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
 * IN NO EVENT SHALL VMWARE AND/OR ITS SUPPLIERS BE LIABLE FOR
 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
 */


#include "util/u_debug_image.h"
#include "util/u_format.h"
#include "util/u_inlines.h"
#include "util/u_memory.h"
#include "util/u_string.h"
#include "util/u_surface.h"
#include "util/u_tile.h"

#include <stdio.h>


#ifdef DEBUG

/**
 * Dump an image to .ppm file.
 * \param format  PIPE_FORMAT_x
 * \param cpp  bytes per pixel
 * \param width  width in pixels
 * \param height height in pixels
 * \param stride  row stride in bytes
 */
void
debug_dump_image(const char *prefix,
                 enum pipe_format format, unsigned cpp,
                 unsigned width, unsigned height,
                 unsigned stride,
                 const void *data)
{
   /* write a ppm file */
   char filename[256];
   unsigned char *rgb8;
   FILE *f;

   util_snprintf(filename, sizeof(filename), "%s.ppm", prefix);

   rgb8 = MALLOC(height * width * 3);
   if (!rgb8) {
      return;
   }

   util_format_translate(
         PIPE_FORMAT_R8G8B8_UNORM,
         rgb8, width * 3,
         0, 0,
         format,
         data, stride,
         0, 0, width, height);

   /* Must be opened in binary mode or DOS line ending causes data
    * to be read with one byte offset.
    */
   f = fopen(filename, "wb");
   if (f) {
      fprintf(f, "P6\n");
      fprintf(f, "# ppm-file created by gallium\n");
      fprintf(f, "%i %i\n", width, height);
      fprintf(f, "255\n");
      fwrite(rgb8, 1, height * width * 3, f);
      fclose(f);
   }
   else {
      fprintf(stderr, "Can't open %s for writing\n", filename);
   }

   FREE(rgb8);
}


/* FIXME: dump resources, not surfaces... */
void
debug_dump_surface(struct pipe_context *pipe,
                   const char *prefix,
                   struct pipe_surface *surface)
{
   struct pipe_resource *texture;
   struct pipe_transfer *transfer;
   void *data;

   if (!surface)
      return;

   /* XXX: this doesn't necessarily work, as the driver may be using
    * temporary storage for the surface which hasn't been propagated
    * back into the texture.  Need to nail down the semantics of views
    * and transfers a bit better before we can say if extra work needs
    * to be done here:
    */
   texture = surface->texture;

   data = pipe_transfer_map(pipe, texture, surface->u.tex.level,
                            surface->u.tex.first_layer,
                            PIPE_TRANSFER_READ,
                            0, 0, surface->width, surface->height, &transfer);
   if (!data)
      return;

   debug_dump_image(prefix,
                    texture->format,
                    util_format_get_blocksize(texture->format),
                    util_format_get_nblocksx(texture->format, surface->width),
                    util_format_get_nblocksy(texture->format, surface->height),
                    transfer->stride,
                    data);

   pipe->transfer_unmap(pipe, transfer);
}


void
debug_dump_texture(struct pipe_context *pipe,
                   const char *prefix,
                   struct pipe_resource *texture)
{
   struct pipe_surface *surface, surf_tmpl;

   if (!texture)
      return;

   /* XXX for now, just dump image for layer=0, level=0 */
   u_surface_default_template(&surf_tmpl, texture);
   surface = pipe->create_surface(pipe, texture, &surf_tmpl);
   if (surface) {
      debug_dump_surface(pipe, prefix, surface);
      pipe->surface_destroy(pipe, surface);
   }
}


#pragma pack(push,2)
struct bmp_file_header {
   uint16_t bfType;
   uint32_t bfSize;
   uint16_t bfReserved1;
   uint16_t bfReserved2;
   uint32_t bfOffBits;
};
#pragma pack(pop)

struct bmp_info_header {
   uint32_t biSize;
   int32_t biWidth;
   int32_t biHeight;
   uint16_t biPlanes;
   uint16_t biBitCount;
   uint32_t biCompression;
   uint32_t biSizeImage;
   int32_t biXPelsPerMeter;
   int32_t biYPelsPerMeter;
   uint32_t biClrUsed;
   uint32_t biClrImportant;
};

struct bmp_rgb_quad {
   uint8_t rgbBlue;
   uint8_t rgbGreen;
   uint8_t rgbRed;
   uint8_t rgbAlpha;
};

void
debug_dump_surface_bmp(struct pipe_context *pipe,
                       const char *filename,
                       struct pipe_surface *surface)
{
   struct pipe_transfer *transfer;
   struct pipe_resource *texture = surface->texture;
   void *ptr;

   ptr = pipe_transfer_map(pipe, texture, surface->u.tex.level,
                           surface->u.tex.first_layer, PIPE_TRANSFER_READ,
                           0, 0, surface->width, surface->height, &transfer);

   debug_dump_transfer_bmp(pipe, filename, transfer, ptr);

   pipe->transfer_unmap(pipe, transfer);
}

void
debug_dump_transfer_bmp(struct pipe_context *pipe,
                        const char *filename,
                        struct pipe_transfer *transfer, void *ptr)
{
   float *rgba;

   if (!transfer)
      goto error1;

   rgba = MALLOC(transfer->box.width *
		 transfer->box.height *
		 transfer->box.depth *
		 4*sizeof(float));
   if (!rgba)
      goto error1;

   pipe_get_tile_rgba(transfer, ptr, 0, 0,
                      transfer->box.width, transfer->box.height,
                      rgba);

   debug_dump_float_rgba_bmp(filename,
                             transfer->box.width, transfer->box.height,
                             rgba, transfer->box.width);

   FREE(rgba);
error1:
   ;
}

void
debug_dump_float_rgba_bmp(const char *filename,
                          unsigned width, unsigned height,
                          float *rgba, unsigned stride)
{
   FILE *stream;
   struct bmp_file_header bmfh;
   struct bmp_info_header bmih;
   unsigned x, y;

   if (!rgba)
      goto error1;

   bmfh.bfType = 0x4d42;
   bmfh.bfSize = 14 + 40 + height*width*4;
   bmfh.bfReserved1 = 0;
   bmfh.bfReserved2 = 0;
   bmfh.bfOffBits = 14 + 40;

   bmih.biSize = 40;
   bmih.biWidth = width;
   bmih.biHeight = height;
   bmih.biPlanes = 1;
   bmih.biBitCount = 32;
   bmih.biCompression = 0;
   bmih.biSizeImage = height*width*4;
   bmih.biXPelsPerMeter = 0;
   bmih.biYPelsPerMeter = 0;
   bmih.biClrUsed = 0;
   bmih.biClrImportant = 0;

   stream = fopen(filename, "wb");
   if (!stream)
      goto error1;

   fwrite(&bmfh, 14, 1, stream);
   fwrite(&bmih, 40, 1, stream);

   y = height;
   while (y--) {
      float *ptr = rgba + (stride * y * 4);
      for (x = 0; x < width; ++x) {
         struct bmp_rgb_quad pixel;
         pixel.rgbRed   = float_to_ubyte(ptr[x*4 + 0]);
         pixel.rgbGreen = float_to_ubyte(ptr[x*4 + 1]);
         pixel.rgbBlue  = float_to_ubyte(ptr[x*4 + 2]);
         pixel.rgbAlpha = float_to_ubyte(ptr[x*4 + 3]);
         fwrite(&pixel, 1, 4, stream);
      }
   }

   fclose(stream);
error1:
   ;
}

void
debug_dump_ubyte_rgba_bmp(const char *filename,
                          unsigned width, unsigned height,
                          const ubyte *rgba, unsigned stride)
{
   FILE *stream;
   struct bmp_file_header bmfh;
   struct bmp_info_header bmih;
   unsigned x, y;

   assert(rgba);
   if (!rgba)
      goto error1;

   bmfh.bfType = 0x4d42;
   bmfh.bfSize = 14 + 40 + height*width*4;
   bmfh.bfReserved1 = 0;
   bmfh.bfReserved2 = 0;
   bmfh.bfOffBits = 14 + 40;

   bmih.biSize = 40;
   bmih.biWidth = width;
   bmih.biHeight = height;
   bmih.biPlanes = 1;
   bmih.biBitCount = 32;
   bmih.biCompression = 0;
   bmih.biSizeImage = height*width*4;
   bmih.biXPelsPerMeter = 0;
   bmih.biYPelsPerMeter = 0;
   bmih.biClrUsed = 0;
   bmih.biClrImportant = 0;

   stream = fopen(filename, "wb");
   assert(stream);
   if (!stream)
      goto error1;

   fwrite(&bmfh, 14, 1, stream);
   fwrite(&bmih, 40, 1, stream);

   y = height;
   while (y--) {
      const ubyte *ptr = rgba + (stride * y * 4);
      for (x = 0; x < width; ++x) {
         struct bmp_rgb_quad pixel;
         pixel.rgbRed   = ptr[x*4 + 0];
         pixel.rgbGreen = ptr[x*4 + 1];
         pixel.rgbBlue  = ptr[x*4 + 2];
         pixel.rgbAlpha = ptr[x*4 + 3];
         fwrite(&pixel, 1, 4, stream);
      }
   }

   fclose(stream);
error1:
   ;
}

#endif