mutter/cogl/cogl/cogl-bitmap-packing.h

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/*
* Cogl
*
This re-licenses Cogl 1.18 under the MIT license Since the Cogl 1.18 branch is actively maintained in parallel with the master branch; this is a counter part to commit 1b83ef938fc16b which re-licensed the master branch to use the MIT license. This re-licensing is a follow up to the proposal that was sent to the Cogl mailing list: http://lists.freedesktop.org/archives/cogl/2013-December/001465.html Note: there was a copyright assignment policy in place for Clutter (and therefore Cogl which was part of Clutter at the time) until the 11th of June 2010 and so we only checked the details after that point (commit 0bbf50f905) For each file, authors were identified via this Git command: $ git blame -p -C -C -C20 -M -M10 0bbf50f905..HEAD We received blanket approvals for re-licensing all Red Hat and Collabora contributions which reduced how many people needed to be contacted individually: - http://lists.freedesktop.org/archives/cogl/2013-December/001470.html - http://lists.freedesktop.org/archives/cogl/2014-January/001536.html Individual approval requests were sent to all the other identified authors who all confirmed the re-license on the Cogl mailinglist: http://lists.freedesktop.org/archives/cogl/2014-January As well as updating the copyright header in all sources files, the COPYING file has been updated to reflect the license change and also document the other licenses used in Cogl such as the SGI Free Software License B, version 2.0 and the 3-clause BSD license. This patch was not simply cherry-picked from master; but the same methodology was used to check the source files.
2014-02-22 01:28:54 +00:00
* A Low Level GPU Graphics and Utilities API
*
* Copyright (C) 2012 Intel Corporation.
*
This re-licenses Cogl 1.18 under the MIT license Since the Cogl 1.18 branch is actively maintained in parallel with the master branch; this is a counter part to commit 1b83ef938fc16b which re-licensed the master branch to use the MIT license. This re-licensing is a follow up to the proposal that was sent to the Cogl mailing list: http://lists.freedesktop.org/archives/cogl/2013-December/001465.html Note: there was a copyright assignment policy in place for Clutter (and therefore Cogl which was part of Clutter at the time) until the 11th of June 2010 and so we only checked the details after that point (commit 0bbf50f905) For each file, authors were identified via this Git command: $ git blame -p -C -C -C20 -M -M10 0bbf50f905..HEAD We received blanket approvals for re-licensing all Red Hat and Collabora contributions which reduced how many people needed to be contacted individually: - http://lists.freedesktop.org/archives/cogl/2013-December/001470.html - http://lists.freedesktop.org/archives/cogl/2014-January/001536.html Individual approval requests were sent to all the other identified authors who all confirmed the re-license on the Cogl mailinglist: http://lists.freedesktop.org/archives/cogl/2014-January As well as updating the copyright header in all sources files, the COPYING file has been updated to reflect the license change and also document the other licenses used in Cogl such as the SGI Free Software License B, version 2.0 and the 3-clause BSD license. This patch was not simply cherry-picked from master; but the same methodology was used to check the source files.
2014-02-22 01:28:54 +00:00
* 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, sublicense, 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:
*
This re-licenses Cogl 1.18 under the MIT license Since the Cogl 1.18 branch is actively maintained in parallel with the master branch; this is a counter part to commit 1b83ef938fc16b which re-licensed the master branch to use the MIT license. This re-licensing is a follow up to the proposal that was sent to the Cogl mailing list: http://lists.freedesktop.org/archives/cogl/2013-December/001465.html Note: there was a copyright assignment policy in place for Clutter (and therefore Cogl which was part of Clutter at the time) until the 11th of June 2010 and so we only checked the details after that point (commit 0bbf50f905) For each file, authors were identified via this Git command: $ git blame -p -C -C -C20 -M -M10 0bbf50f905..HEAD We received blanket approvals for re-licensing all Red Hat and Collabora contributions which reduced how many people needed to be contacted individually: - http://lists.freedesktop.org/archives/cogl/2013-December/001470.html - http://lists.freedesktop.org/archives/cogl/2014-January/001536.html Individual approval requests were sent to all the other identified authors who all confirmed the re-license on the Cogl mailinglist: http://lists.freedesktop.org/archives/cogl/2014-January As well as updating the copyright header in all sources files, the COPYING file has been updated to reflect the license change and also document the other licenses used in Cogl such as the SGI Free Software License B, version 2.0 and the 3-clause BSD license. This patch was not simply cherry-picked from master; but the same methodology was used to check the source files.
2014-02-22 01:28:54 +00:00
* The above copyright notice and this permission notice shall be
* included in all copies or substantial portions of the Software.
*
This re-licenses Cogl 1.18 under the MIT license Since the Cogl 1.18 branch is actively maintained in parallel with the master branch; this is a counter part to commit 1b83ef938fc16b which re-licensed the master branch to use the MIT license. This re-licensing is a follow up to the proposal that was sent to the Cogl mailing list: http://lists.freedesktop.org/archives/cogl/2013-December/001465.html Note: there was a copyright assignment policy in place for Clutter (and therefore Cogl which was part of Clutter at the time) until the 11th of June 2010 and so we only checked the details after that point (commit 0bbf50f905) For each file, authors were identified via this Git command: $ git blame -p -C -C -C20 -M -M10 0bbf50f905..HEAD We received blanket approvals for re-licensing all Red Hat and Collabora contributions which reduced how many people needed to be contacted individually: - http://lists.freedesktop.org/archives/cogl/2013-December/001470.html - http://lists.freedesktop.org/archives/cogl/2014-January/001536.html Individual approval requests were sent to all the other identified authors who all confirmed the re-license on the Cogl mailinglist: http://lists.freedesktop.org/archives/cogl/2014-January As well as updating the copyright header in all sources files, the COPYING file has been updated to reflect the license change and also document the other licenses used in Cogl such as the SGI Free Software License B, version 2.0 and the 3-clause BSD license. This patch was not simply cherry-picked from master; but the same methodology was used to check the source files.
2014-02-22 01:28:54 +00:00
* 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
* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
* 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.
*
*
*/
/* This file is included multiple times with different definitions for
the component_type type (either uint8_t or uint16_t). The code ends
up exactly the same for both but we only want to end up hitting the
16-bit path when one of the types in the conversion is > 8 bits per
component. */
/* Unpacking to RGBA */
#define UNPACK_1(b) ((b) * ((1 << (sizeof (component_type) * 8)) - 1))
#define UNPACK_2(b) (((b) * ((1 << (sizeof (component_type) * 8)) - 1) + \
1) / 3)
#define UNPACK_4(b) (((b) * ((1 << (sizeof (component_type) * 8)) - 1) + \
7) / 15)
#define UNPACK_5(b) (((b) * ((1 << (sizeof (component_type) * 8)) - 1) + \
15) / 31)
#define UNPACK_6(b) (((b) * ((1 << (sizeof (component_type) * 8)) - 1) + \
31) / 63)
#define UNPACK_10(b) (((b) * ((1 << (sizeof (component_type) * 8)) - 1) + \
511) / 1023)
inline static void
G_PASTE (_cogl_unpack_a_8_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
dst[0] = 0;
dst[1] = 0;
dst[2] = 0;
dst[3] = UNPACK_BYTE (*src);
dst += 4;
src++;
}
}
inline static void
G_PASTE (_cogl_unpack_g_8_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
/* FIXME: I'm not sure if this is right. It looks like Nvidia and
Mesa handle luminance textures differently. Maybe we should
consider just removing luminance textures for Cogl 2.0 because
they have been removed in GL 3.0 */
while (width-- > 0)
{
component_type v = UNPACK_BYTE (src[0]);
dst[0] = v;
dst[1] = v;
dst[2] = v;
dst[3] = UNPACK_BYTE (255);
dst += 4;
src++;
}
}
inline static void
G_PASTE (_cogl_unpack_rg_88_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
dst[0] = UNPACK_BYTE (src[0]);
dst[1] = UNPACK_BYTE (src[1]);
dst[2] = 0;
dst[3] = UNPACK_BYTE (255);
dst += 4;
src += 2;
}
}
inline static void
G_PASTE (_cogl_unpack_rgb_888_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
dst[0] = UNPACK_BYTE (src[0]);
dst[1] = UNPACK_BYTE (src[1]);
dst[2] = UNPACK_BYTE (src[2]);
dst[3] = UNPACK_BYTE (255);
dst += 4;
src += 3;
}
}
inline static void
G_PASTE (_cogl_unpack_bgr_888_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
dst[0] = UNPACK_BYTE (src[2]);
dst[1] = UNPACK_BYTE (src[1]);
dst[2] = UNPACK_BYTE (src[0]);
dst[3] = UNPACK_BYTE (255);
dst += 4;
src += 3;
}
}
inline static void
G_PASTE (_cogl_unpack_bgra_8888_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
dst[0] = UNPACK_BYTE (src[2]);
dst[1] = UNPACK_BYTE (src[1]);
dst[2] = UNPACK_BYTE (src[0]);
dst[3] = UNPACK_BYTE (src[3]);
dst += 4;
src += 4;
}
}
inline static void
G_PASTE (_cogl_unpack_argb_8888_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
dst[0] = UNPACK_BYTE (src[1]);
dst[1] = UNPACK_BYTE (src[2]);
dst[2] = UNPACK_BYTE (src[3]);
dst[3] = UNPACK_BYTE (src[0]);
dst += 4;
src += 4;
}
}
inline static void
G_PASTE (_cogl_unpack_abgr_8888_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
dst[0] = UNPACK_BYTE (src[3]);
dst[1] = UNPACK_BYTE (src[2]);
dst[2] = UNPACK_BYTE (src[1]);
dst[3] = UNPACK_BYTE (src[0]);
dst += 4;
src += 4;
}
}
inline static void
G_PASTE (_cogl_unpack_rgba_8888_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
dst[0] = UNPACK_BYTE (src[0]);
dst[1] = UNPACK_BYTE (src[1]);
dst[2] = UNPACK_BYTE (src[2]);
dst[3] = UNPACK_BYTE (src[3]);
dst += 4;
src += 4;
}
}
inline static void
G_PASTE (_cogl_unpack_rgb_565_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
uint16_t v = *(const uint16_t *) src;
dst[0] = UNPACK_5 (v >> 11);
dst[1] = UNPACK_6 ((v >> 5) & 63);
dst[2] = UNPACK_5 (v & 31);
dst[3] = UNPACK_BYTE (255);
dst += 4;
src += 2;
}
}
inline static void
G_PASTE (_cogl_unpack_rgba_4444_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
uint16_t v = *(const uint16_t *) src;
dst[0] = UNPACK_4 (v >> 12);
dst[1] = UNPACK_4 ((v >> 8) & 15);
dst[2] = UNPACK_4 ((v >> 4) & 15);
dst[3] = UNPACK_4 (v & 15);
dst += 4;
src += 2;
}
}
inline static void
G_PASTE (_cogl_unpack_rgba_5551_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
uint16_t v = *(const uint16_t *) src;
dst[0] = UNPACK_5 (v >> 11);
dst[1] = UNPACK_5 ((v >> 6) & 31);
dst[2] = UNPACK_5 ((v >> 1) & 31);
dst[3] = UNPACK_1 (v & 1);
dst += 4;
src += 2;
}
}
inline static void
G_PASTE (_cogl_unpack_rgba_1010102_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
uint32_t v = *(const uint32_t *) src;
dst[0] = UNPACK_10 (v >> 22);
dst[1] = UNPACK_10 ((v >> 12) & 1023);
dst[2] = UNPACK_10 ((v >> 2) & 1023);
dst[3] = UNPACK_2 (v & 3);
dst += 4;
src += 2;
}
}
inline static void
G_PASTE (_cogl_unpack_bgra_1010102_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
uint32_t v = *(const uint32_t *) src;
dst[2] = UNPACK_10 (v >> 22);
dst[1] = UNPACK_10 ((v >> 12) & 1023);
dst[0] = UNPACK_10 ((v >> 2) & 1023);
dst[3] = UNPACK_2 (v & 3);
dst += 4;
src += 2;
}
}
inline static void
G_PASTE (_cogl_unpack_argb_2101010_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
uint32_t v = *(const uint32_t *) src;
dst[3] = UNPACK_2 (v >> 30);
dst[0] = UNPACK_10 ((v >> 20) & 1023);
dst[1] = UNPACK_10 ((v >> 10) & 1023);
dst[2] = UNPACK_10 (v & 1023);
dst += 4;
src += 2;
}
}
inline static void
G_PASTE (_cogl_unpack_abgr_2101010_, component_size) (const uint8_t *src,
component_type *dst,
int width)
{
while (width-- > 0)
{
uint32_t v = *(const uint32_t *) src;
dst[3] = UNPACK_2 (v >> 30);
dst[2] = UNPACK_10 ((v >> 20) & 1023);
dst[1] = UNPACK_10 ((v >> 10) & 1023);
dst[0] = UNPACK_10 (v & 1023);
dst += 4;
src += 2;
}
}
#undef UNPACK_1
#undef UNPACK_2
#undef UNPACK_4
#undef UNPACK_5
#undef UNPACK_6
#undef UNPACK_10
inline static void
G_PASTE (_cogl_unpack_, component_size) (CoglPixelFormat format,
const uint8_t *src,
component_type *dst,
int width)
{
switch (format)
{
case COGL_PIXEL_FORMAT_A_8:
G_PASTE (_cogl_unpack_a_8_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_G_8:
G_PASTE (_cogl_unpack_g_8_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RG_88:
G_PASTE (_cogl_unpack_rg_88_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGB_888:
G_PASTE (_cogl_unpack_rgb_888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_BGR_888:
G_PASTE (_cogl_unpack_bgr_888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGBA_8888:
case COGL_PIXEL_FORMAT_RGBA_8888_PRE:
G_PASTE (_cogl_unpack_rgba_8888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_BGRA_8888:
case COGL_PIXEL_FORMAT_BGRA_8888_PRE:
G_PASTE (_cogl_unpack_bgra_8888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_ARGB_8888:
case COGL_PIXEL_FORMAT_ARGB_8888_PRE:
G_PASTE (_cogl_unpack_argb_8888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_ABGR_8888:
case COGL_PIXEL_FORMAT_ABGR_8888_PRE:
G_PASTE (_cogl_unpack_abgr_8888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGB_565:
G_PASTE (_cogl_unpack_rgb_565_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGBA_4444:
case COGL_PIXEL_FORMAT_RGBA_4444_PRE:
G_PASTE (_cogl_unpack_rgba_4444_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGBA_5551:
case COGL_PIXEL_FORMAT_RGBA_5551_PRE:
G_PASTE (_cogl_unpack_rgba_5551_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGBA_1010102:
case COGL_PIXEL_FORMAT_RGBA_1010102_PRE:
G_PASTE (_cogl_unpack_rgba_1010102_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_BGRA_1010102:
case COGL_PIXEL_FORMAT_BGRA_1010102_PRE:
G_PASTE (_cogl_unpack_bgra_1010102_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_ARGB_2101010:
case COGL_PIXEL_FORMAT_ARGB_2101010_PRE:
G_PASTE (_cogl_unpack_argb_2101010_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_ABGR_2101010:
case COGL_PIXEL_FORMAT_ABGR_2101010_PRE:
G_PASTE (_cogl_unpack_abgr_2101010_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_DEPTH_16:
case COGL_PIXEL_FORMAT_DEPTH_32:
case COGL_PIXEL_FORMAT_DEPTH_24_STENCIL_8:
case COGL_PIXEL_FORMAT_ANY:
case COGL_PIXEL_FORMAT_YUV:
g_assert_not_reached ();
}
}
/* Packing from RGBA */
/* Pack and round to nearest */
#define PACK_SIZE(b, max) \
(((b) * (max) + (1 << (sizeof (component_type) * 8 - 1)) - 1) / \
((1 << (sizeof (component_type) * 8)) - 1))
#define PACK_1(b) PACK_SIZE (b, 1)
#define PACK_2(b) PACK_SIZE (b, 3)
#define PACK_4(b) PACK_SIZE (b, 15)
#define PACK_5(b) PACK_SIZE (b, 31)
#define PACK_6(b) PACK_SIZE (b, 63)
#define PACK_10(b) PACK_SIZE (b, 1023)
inline static void
G_PASTE (_cogl_pack_a_8_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
*dst = PACK_BYTE (src[3]);
src += 4;
dst++;
}
}
inline static void
G_PASTE (_cogl_pack_g_8_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
/* FIXME: I'm not sure if this is right. It looks like Nvidia and
Mesa handle luminance textures differently. Maybe we should
consider just removing luminance textures for Cogl 2.0 because
they have been removed in GL 3.0 */
while (width-- > 0)
{
component_type v = (src[0] + src[1] + src[2]) / 3;
*dst = PACK_BYTE (v);
src += 4;
dst++;
}
}
inline static void
G_PASTE (_cogl_pack_rg_88_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
dst[0] = PACK_BYTE (src[0]);
dst[1] = PACK_BYTE (src[1]);
src += 4;
dst += 2;
}
}
inline static void
G_PASTE (_cogl_pack_rgb_888_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
dst[0] = PACK_BYTE (src[0]);
dst[1] = PACK_BYTE (src[1]);
dst[2] = PACK_BYTE (src[2]);
src += 4;
dst += 3;
}
}
inline static void
G_PASTE (_cogl_pack_bgr_888_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
dst[2] = PACK_BYTE (src[0]);
dst[1] = PACK_BYTE (src[1]);
dst[0] = PACK_BYTE (src[2]);
src += 4;
dst += 3;
}
}
inline static void
G_PASTE (_cogl_pack_bgra_8888_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
dst[2] = PACK_BYTE (src[0]);
dst[1] = PACK_BYTE (src[1]);
dst[0] = PACK_BYTE (src[2]);
dst[3] = PACK_BYTE (src[3]);
src += 4;
dst += 4;
}
}
inline static void
G_PASTE (_cogl_pack_argb_8888_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
dst[1] = PACK_BYTE (src[0]);
dst[2] = PACK_BYTE (src[1]);
dst[3] = PACK_BYTE (src[2]);
dst[0] = PACK_BYTE (src[3]);
src += 4;
dst += 4;
}
}
inline static void
G_PASTE (_cogl_pack_abgr_8888_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
dst[3] = PACK_BYTE (src[0]);
dst[2] = PACK_BYTE (src[1]);
dst[1] = PACK_BYTE (src[2]);
dst[0] = PACK_BYTE (src[3]);
src += 4;
dst += 4;
}
}
inline static void
G_PASTE (_cogl_pack_rgba_8888_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
dst[0] = PACK_BYTE (src[0]);
dst[1] = PACK_BYTE (src[1]);
dst[2] = PACK_BYTE (src[2]);
dst[3] = PACK_BYTE (src[3]);
src += 4;
dst += 4;
}
}
inline static void
G_PASTE (_cogl_pack_rgb_565_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
uint16_t *v = (uint16_t *) dst;
*v = ((PACK_5 (src[0]) << 11) |
(PACK_6 (src[1]) << 5) |
PACK_5 (src[2]));
src += 4;
dst += 2;
}
}
inline static void
G_PASTE (_cogl_pack_rgba_4444_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
uint16_t *v = (uint16_t *) dst;
*v = ((PACK_4 (src[0]) << 12) |
(PACK_4 (src[1]) << 8) |
(PACK_4 (src[2]) << 4) |
PACK_4 (src[3]));
src += 4;
dst += 2;
}
}
inline static void
G_PASTE (_cogl_pack_rgba_5551_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
uint16_t *v = (uint16_t *) dst;
*v = ((PACK_5 (src[0]) << 11) |
(PACK_5 (src[1]) << 6) |
(PACK_5 (src[2]) << 1) |
PACK_1 (src[3]));
src += 4;
dst += 2;
}
}
inline static void
G_PASTE (_cogl_pack_rgba_1010102_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
uint32_t *v = (uint32_t *) dst;
*v = ((PACK_10 (src[0]) << 22) |
(PACK_10 (src[1]) << 12) |
(PACK_10 (src[2]) << 2) |
PACK_2 (src[3]));
src += 4;
dst += 4;
}
}
inline static void
G_PASTE (_cogl_pack_bgra_1010102_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
uint32_t *v = (uint32_t *) dst;
*v = ((PACK_10 (src[2]) << 22) |
(PACK_10 (src[1]) << 12) |
(PACK_10 (src[0]) << 2) |
PACK_2 (src[3]));
src += 4;
dst += 4;
}
}
inline static void
G_PASTE (_cogl_pack_argb_2101010_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
uint32_t *v = (uint32_t *) dst;
*v = ((PACK_2 (src[3]) << 30) |
(PACK_10 (src[0]) << 20) |
(PACK_10 (src[1]) << 10) |
PACK_10 (src[2]));
src += 4;
dst += 4;
}
}
inline static void
G_PASTE (_cogl_pack_abgr_2101010_, component_size) (const component_type *src,
uint8_t *dst,
int width)
{
while (width-- > 0)
{
uint32_t *v = (uint32_t *) dst;
*v = ((PACK_2 (src[3]) << 30) |
(PACK_10 (src[2]) << 20) |
(PACK_10 (src[1]) << 10) |
PACK_10 (src[0]));
src += 4;
dst += 4;
}
}
#undef PACK_SIZE
#undef PACK_1
#undef PACK_2
#undef PACK_4
#undef PACK_5
#undef PACK_6
#undef PACK_10
inline static void
G_PASTE (_cogl_pack_, component_size) (CoglPixelFormat format,
const component_type *src,
uint8_t *dst,
int width)
{
switch (format)
{
case COGL_PIXEL_FORMAT_A_8:
G_PASTE (_cogl_pack_a_8_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_G_8:
G_PASTE (_cogl_pack_g_8_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RG_88:
G_PASTE (_cogl_pack_rg_88_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGB_888:
G_PASTE (_cogl_pack_rgb_888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_BGR_888:
G_PASTE (_cogl_pack_bgr_888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGBA_8888:
case COGL_PIXEL_FORMAT_RGBA_8888_PRE:
G_PASTE (_cogl_pack_rgba_8888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_BGRA_8888:
case COGL_PIXEL_FORMAT_BGRA_8888_PRE:
G_PASTE (_cogl_pack_bgra_8888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_ARGB_8888:
case COGL_PIXEL_FORMAT_ARGB_8888_PRE:
G_PASTE (_cogl_pack_argb_8888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_ABGR_8888:
case COGL_PIXEL_FORMAT_ABGR_8888_PRE:
G_PASTE (_cogl_pack_abgr_8888_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGB_565:
G_PASTE (_cogl_pack_rgb_565_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGBA_4444:
case COGL_PIXEL_FORMAT_RGBA_4444_PRE:
G_PASTE (_cogl_pack_rgba_4444_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGBA_5551:
case COGL_PIXEL_FORMAT_RGBA_5551_PRE:
G_PASTE (_cogl_pack_rgba_5551_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_RGBA_1010102:
case COGL_PIXEL_FORMAT_RGBA_1010102_PRE:
G_PASTE (_cogl_pack_rgba_1010102_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_BGRA_1010102:
case COGL_PIXEL_FORMAT_BGRA_1010102_PRE:
G_PASTE (_cogl_pack_bgra_1010102_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_ARGB_2101010:
case COGL_PIXEL_FORMAT_ARGB_2101010_PRE:
G_PASTE (_cogl_pack_argb_2101010_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_ABGR_2101010:
case COGL_PIXEL_FORMAT_ABGR_2101010_PRE:
G_PASTE (_cogl_pack_abgr_2101010_, component_size) (src, dst, width);
break;
case COGL_PIXEL_FORMAT_DEPTH_16:
case COGL_PIXEL_FORMAT_DEPTH_32:
case COGL_PIXEL_FORMAT_DEPTH_24_STENCIL_8:
case COGL_PIXEL_FORMAT_ANY:
case COGL_PIXEL_FORMAT_YUV:
g_assert_not_reached ();
}
}