radeon_miptree_unreference(&t->mt);
radeon_try_alloc_miptree(rmesa, t);
dst_miptree = t->mt;
+ if (RADEON_DEBUG & RADEON_TEXTURE) {
+ fprintf(stderr, "%s: No matching miptree found, allocated new one %p\n", __FUNCTION__, t->mt);
+ }
+ } else if (RADEON_DEBUG & RADEON_TEXTURE) {
+ fprintf(stderr, "%s: Using miptree %p\n", __FUNCTION__, t->mt);
}
const unsigned faces = texObj->Target == GL_TEXTURE_CUBE_MAP ? 6 : 1;
radeon_gl_level_to_miptree_level(texObj, level))) {
radeon_miptree_unreference(&t->mt);
radeon_try_alloc_miptree(rmesa, t);
+ if (RADEON_DEBUG & RADEON_TEXTURE) {
+ fprintf(stderr, "%s: texObj %p, texImage %p, face %d, level %d, "
+ "texObj miptree doesn't match, allocated new miptree %p\n",
+ __FUNCTION__, texObj, texImage, face, level, t->mt);
+ }
}
/* Miptree alocation may have failed,
}
}
+ if (RADEON_DEBUG & RADEON_TEXTURE) {
+ fprintf(stderr, "radeon_teximage%dd: texObj %p, texImage %p, face %d, level %d\n",
+ dims, texObj, texImage, face, level);
+ }
+
t->validated = GL_FALSE;
if (ctx->_ImageTransferState & IMAGE_CONVOLUTION_BIT) {
texImage->Height,
texImage->Depth);
texImage->Data = _mesa_alloc_texmemory(size);
+ if (RADEON_DEBUG & RADEON_TEXTURE) {
+ fprintf(stderr, "radeon_teximage%dd: texObj %p, texImage %p, "
+ " no miptree assigned, using local memory %p\n",
+ dims, texObj, texImage, texImage->Data);
+ }
}
}
}
}
+ if (RADEON_DEBUG & RADEON_TEXTURE) {
+ fprintf(stderr, "radeon_texsubimage%dd: texObj %p, texImage %p, face %d, level %d\n",
+ dims, texObj, texImage, radeon_face_for_target(target), level);
+ }
+
t->validated = GL_FALSE;
if (compressed) {
pixels = _mesa_validate_pbo_compressed_teximage(