util/u_format: take normalized flag in consideration in util_format_is_rgba8_variant
[mesa.git] / src / gallium / auxiliary / util / u_format.h
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27
28
29 #ifndef U_FORMAT_H
30 #define U_FORMAT_H
31
32
33 #include "pipe/p_format.h"
34 #include "pipe/p_defines.h"
35 #include "util/u_debug.h"
36
37 union pipe_color_union;
38
39
40 #ifdef __cplusplus
41 extern "C" {
42 #endif
43
44
45 /**
46 * Describe how to pack/unpack pixels into/from the prescribed format.
47 *
48 * XXX: This could be renamed to something like util_format_pack, or broke down
49 * in flags inside util_format_block that said exactly what we want.
50 */
51 enum util_format_layout {
52 /**
53 * Formats with util_format_block::width == util_format_block::height == 1
54 * that can be described as an ordinary data structure.
55 */
56 UTIL_FORMAT_LAYOUT_PLAIN = 0,
57
58 /**
59 * Formats with sub-sampled channels.
60 *
61 * This is for formats like YVYU where there is less than one sample per
62 * pixel.
63 */
64 UTIL_FORMAT_LAYOUT_SUBSAMPLED = 3,
65
66 /**
67 * S3 Texture Compression formats.
68 */
69 UTIL_FORMAT_LAYOUT_S3TC = 4,
70
71 /**
72 * Red-Green Texture Compression formats.
73 */
74 UTIL_FORMAT_LAYOUT_RGTC = 5,
75
76 /**
77 * Ericsson Texture Compression
78 */
79 UTIL_FORMAT_LAYOUT_ETC = 6,
80
81 /**
82 * Everything else that doesn't fit in any of the above layouts.
83 */
84 UTIL_FORMAT_LAYOUT_OTHER = 7
85 };
86
87
88 struct util_format_block
89 {
90 /** Block width in pixels */
91 unsigned width;
92
93 /** Block height in pixels */
94 unsigned height;
95
96 /** Block size in bits */
97 unsigned bits;
98 };
99
100
101 enum util_format_type {
102 UTIL_FORMAT_TYPE_VOID = 0,
103 UTIL_FORMAT_TYPE_UNSIGNED = 1,
104 UTIL_FORMAT_TYPE_SIGNED = 2,
105 UTIL_FORMAT_TYPE_FIXED = 3,
106 UTIL_FORMAT_TYPE_FLOAT = 4
107 };
108
109
110 enum util_format_swizzle {
111 UTIL_FORMAT_SWIZZLE_X = 0,
112 UTIL_FORMAT_SWIZZLE_Y = 1,
113 UTIL_FORMAT_SWIZZLE_Z = 2,
114 UTIL_FORMAT_SWIZZLE_W = 3,
115 UTIL_FORMAT_SWIZZLE_0 = 4,
116 UTIL_FORMAT_SWIZZLE_1 = 5,
117 UTIL_FORMAT_SWIZZLE_NONE = 6,
118 UTIL_FORMAT_SWIZZLE_MAX = 7 /**< Number of enums counter (must be last) */
119 };
120
121
122 enum util_format_colorspace {
123 UTIL_FORMAT_COLORSPACE_RGB = 0,
124 UTIL_FORMAT_COLORSPACE_SRGB = 1,
125 UTIL_FORMAT_COLORSPACE_YUV = 2,
126 UTIL_FORMAT_COLORSPACE_ZS = 3
127 };
128
129
130 struct util_format_channel_description
131 {
132 unsigned type:5; /**< UTIL_FORMAT_TYPE_x */
133 unsigned normalized:1;
134 unsigned pure_integer:1;
135 unsigned size:9; /**< bits per channel */
136 unsigned shift:16; /** number of bits from lsb */
137 };
138
139
140 struct util_format_description
141 {
142 enum pipe_format format;
143
144 const char *name;
145
146 /**
147 * Short name, striped of the prefix, lower case.
148 */
149 const char *short_name;
150
151 /**
152 * Pixel block dimensions.
153 */
154 struct util_format_block block;
155
156 enum util_format_layout layout;
157
158 /**
159 * The number of channels.
160 */
161 unsigned nr_channels:3;
162
163 /**
164 * Whether all channels have the same number of (whole) bytes and type.
165 */
166 unsigned is_array:1;
167
168 /**
169 * Whether the pixel format can be described as a bitfield structure.
170 *
171 * In particular:
172 * - pixel depth must be 8, 16, or 32 bits;
173 * - all channels must be unsigned, signed, or void
174 */
175 unsigned is_bitmask:1;
176
177 /**
178 * Whether channels have mixed types (ignoring UTIL_FORMAT_TYPE_VOID).
179 */
180 unsigned is_mixed:1;
181
182 /**
183 * Input channel description, in the order XYZW.
184 *
185 * Only valid for UTIL_FORMAT_LAYOUT_PLAIN formats.
186 *
187 * If each channel is accessed as an individual N-byte value, X is always
188 * at the lowest address in memory, Y is always next, and so on. For all
189 * currently-defined formats, the N-byte value has native endianness.
190 *
191 * If instead a group of channels is accessed as a single N-byte value,
192 * the order of the channels within that value depends on endianness.
193 * For big-endian targets, X is the most significant subvalue,
194 * otherwise it is the least significant one.
195 *
196 * For example, if X is 8 bits and Y is 24 bits, the memory order is:
197 *
198 * 0 1 2 3
199 * little-endian: X Yl Ym Yu (l = lower, m = middle, u = upper)
200 * big-endian: X Yu Ym Yl
201 *
202 * If X is 5 bits, Y is 5 bits, Z is 5 bits and W is 1 bit, the layout is:
203 *
204 * 0 1
205 * msb lsb msb lsb
206 * little-endian: YYYXXXXX WZZZZZYY
207 * big-endian: XXXXXYYY YYZZZZZW
208 */
209 struct util_format_channel_description channel[4];
210
211 /**
212 * Output channel swizzle.
213 *
214 * The order is either:
215 * - RGBA
216 * - YUV(A)
217 * - ZS
218 * depending on the colorspace.
219 */
220 unsigned char swizzle[4];
221
222 /**
223 * Colorspace transformation.
224 */
225 enum util_format_colorspace colorspace;
226
227 /**
228 * Unpack pixel blocks to R8G8B8A8_UNORM.
229 * Note: strides are in bytes.
230 *
231 * Only defined for non-depth-stencil formats.
232 */
233 void
234 (*unpack_rgba_8unorm)(uint8_t *dst, unsigned dst_stride,
235 const uint8_t *src, unsigned src_stride,
236 unsigned width, unsigned height);
237
238 /**
239 * Pack pixel blocks from R8G8B8A8_UNORM.
240 * Note: strides are in bytes.
241 *
242 * Only defined for non-depth-stencil formats.
243 */
244 void
245 (*pack_rgba_8unorm)(uint8_t *dst, unsigned dst_stride,
246 const uint8_t *src, unsigned src_stride,
247 unsigned width, unsigned height);
248
249 /**
250 * Fetch a single pixel (i, j) from a block.
251 *
252 * XXX: Only defined for a very few select formats.
253 */
254 void
255 (*fetch_rgba_8unorm)(uint8_t *dst,
256 const uint8_t *src,
257 unsigned i, unsigned j);
258
259 /**
260 * Unpack pixel blocks to R32G32B32A32_FLOAT.
261 * Note: strides are in bytes.
262 *
263 * Only defined for non-depth-stencil formats.
264 */
265 void
266 (*unpack_rgba_float)(float *dst, unsigned dst_stride,
267 const uint8_t *src, unsigned src_stride,
268 unsigned width, unsigned height);
269
270 /**
271 * Pack pixel blocks from R32G32B32A32_FLOAT.
272 * Note: strides are in bytes.
273 *
274 * Only defined for non-depth-stencil formats.
275 */
276 void
277 (*pack_rgba_float)(uint8_t *dst, unsigned dst_stride,
278 const float *src, unsigned src_stride,
279 unsigned width, unsigned height);
280
281 /**
282 * Fetch a single pixel (i, j) from a block.
283 *
284 * Only defined for non-depth-stencil and non-integer formats.
285 */
286 void
287 (*fetch_rgba_float)(float *dst,
288 const uint8_t *src,
289 unsigned i, unsigned j);
290
291 /**
292 * Unpack pixels to Z32_UNORM.
293 * Note: strides are in bytes.
294 *
295 * Only defined for depth formats.
296 */
297 void
298 (*unpack_z_32unorm)(uint32_t *dst, unsigned dst_stride,
299 const uint8_t *src, unsigned src_stride,
300 unsigned width, unsigned height);
301
302 /**
303 * Pack pixels from Z32_FLOAT.
304 * Note: strides are in bytes.
305 *
306 * Only defined for depth formats.
307 */
308 void
309 (*pack_z_32unorm)(uint8_t *dst, unsigned dst_stride,
310 const uint32_t *src, unsigned src_stride,
311 unsigned width, unsigned height);
312
313 /**
314 * Unpack pixels to Z32_FLOAT.
315 * Note: strides are in bytes.
316 *
317 * Only defined for depth formats.
318 */
319 void
320 (*unpack_z_float)(float *dst, unsigned dst_stride,
321 const uint8_t *src, unsigned src_stride,
322 unsigned width, unsigned height);
323
324 /**
325 * Pack pixels from Z32_FLOAT.
326 * Note: strides are in bytes.
327 *
328 * Only defined for depth formats.
329 */
330 void
331 (*pack_z_float)(uint8_t *dst, unsigned dst_stride,
332 const float *src, unsigned src_stride,
333 unsigned width, unsigned height);
334
335 /**
336 * Unpack pixels to S8_UINT.
337 * Note: strides are in bytes.
338 *
339 * Only defined for stencil formats.
340 */
341 void
342 (*unpack_s_8uint)(uint8_t *dst, unsigned dst_stride,
343 const uint8_t *src, unsigned src_stride,
344 unsigned width, unsigned height);
345
346 /**
347 * Pack pixels from S8_UINT.
348 * Note: strides are in bytes.
349 *
350 * Only defined for stencil formats.
351 */
352 void
353 (*pack_s_8uint)(uint8_t *dst, unsigned dst_stride,
354 const uint8_t *src, unsigned src_stride,
355 unsigned width, unsigned height);
356
357 /**
358 * Unpack pixel blocks to R32G32B32A32_UINT.
359 * Note: strides are in bytes.
360 *
361 * Only defined for INT formats.
362 */
363 void
364 (*unpack_rgba_uint)(uint32_t *dst, unsigned dst_stride,
365 const uint8_t *src, unsigned src_stride,
366 unsigned width, unsigned height);
367
368 void
369 (*pack_rgba_uint)(uint8_t *dst, unsigned dst_stride,
370 const uint32_t *src, unsigned src_stride,
371 unsigned width, unsigned height);
372
373 /**
374 * Unpack pixel blocks to R32G32B32A32_SINT.
375 * Note: strides are in bytes.
376 *
377 * Only defined for INT formats.
378 */
379 void
380 (*unpack_rgba_sint)(int32_t *dst, unsigned dst_stride,
381 const uint8_t *src, unsigned src_stride,
382 unsigned width, unsigned height);
383
384 void
385 (*pack_rgba_sint)(uint8_t *dst, unsigned dst_stride,
386 const int32_t *src, unsigned src_stride,
387 unsigned width, unsigned height);
388
389 /**
390 * Fetch a single pixel (i, j) from a block.
391 *
392 * Only defined for unsigned (pure) integer formats.
393 */
394 void
395 (*fetch_rgba_uint)(uint32_t *dst,
396 const uint8_t *src,
397 unsigned i, unsigned j);
398
399 /**
400 * Fetch a single pixel (i, j) from a block.
401 *
402 * Only defined for signed (pure) integer formats.
403 */
404 void
405 (*fetch_rgba_sint)(int32_t *dst,
406 const uint8_t *src,
407 unsigned i, unsigned j);
408 };
409
410
411 extern const struct util_format_description
412 util_format_description_table[];
413
414
415 const struct util_format_description *
416 util_format_description(enum pipe_format format);
417
418
419 /*
420 * Format query functions.
421 */
422
423 static INLINE const char *
424 util_format_name(enum pipe_format format)
425 {
426 const struct util_format_description *desc = util_format_description(format);
427
428 assert(desc);
429 if (!desc) {
430 return "PIPE_FORMAT_???";
431 }
432
433 return desc->name;
434 }
435
436 static INLINE const char *
437 util_format_short_name(enum pipe_format format)
438 {
439 const struct util_format_description *desc = util_format_description(format);
440
441 assert(desc);
442 if (!desc) {
443 return "???";
444 }
445
446 return desc->short_name;
447 }
448
449 /**
450 * Whether this format is plain, see UTIL_FORMAT_LAYOUT_PLAIN for more info.
451 */
452 static INLINE boolean
453 util_format_is_plain(enum pipe_format format)
454 {
455 const struct util_format_description *desc = util_format_description(format);
456
457 if (!format) {
458 return FALSE;
459 }
460
461 return desc->layout == UTIL_FORMAT_LAYOUT_PLAIN ? TRUE : FALSE;
462 }
463
464 static INLINE boolean
465 util_format_is_compressed(enum pipe_format format)
466 {
467 const struct util_format_description *desc = util_format_description(format);
468
469 assert(desc);
470 if (!desc) {
471 return FALSE;
472 }
473
474 switch (desc->layout) {
475 case UTIL_FORMAT_LAYOUT_S3TC:
476 case UTIL_FORMAT_LAYOUT_RGTC:
477 case UTIL_FORMAT_LAYOUT_ETC:
478 /* XXX add other formats in the future */
479 return TRUE;
480 default:
481 return FALSE;
482 }
483 }
484
485 static INLINE boolean
486 util_format_is_s3tc(enum pipe_format format)
487 {
488 const struct util_format_description *desc = util_format_description(format);
489
490 assert(desc);
491 if (!desc) {
492 return FALSE;
493 }
494
495 return desc->layout == UTIL_FORMAT_LAYOUT_S3TC ? TRUE : FALSE;
496 }
497
498 static INLINE boolean
499 util_format_is_srgb(enum pipe_format format)
500 {
501 const struct util_format_description *desc = util_format_description(format);
502 return desc->colorspace == UTIL_FORMAT_COLORSPACE_SRGB;
503 }
504
505 static INLINE boolean
506 util_format_has_depth(const struct util_format_description *desc)
507 {
508 return desc->colorspace == UTIL_FORMAT_COLORSPACE_ZS &&
509 desc->swizzle[0] != UTIL_FORMAT_SWIZZLE_NONE;
510 }
511
512 static INLINE boolean
513 util_format_has_stencil(const struct util_format_description *desc)
514 {
515 return desc->colorspace == UTIL_FORMAT_COLORSPACE_ZS &&
516 desc->swizzle[1] != UTIL_FORMAT_SWIZZLE_NONE;
517 }
518
519 static INLINE boolean
520 util_format_is_depth_or_stencil(enum pipe_format format)
521 {
522 const struct util_format_description *desc = util_format_description(format);
523
524 assert(desc);
525 if (!desc) {
526 return FALSE;
527 }
528
529 return util_format_has_depth(desc) ||
530 util_format_has_stencil(desc);
531 }
532
533 static INLINE boolean
534 util_format_is_depth_and_stencil(enum pipe_format format)
535 {
536 const struct util_format_description *desc = util_format_description(format);
537
538 assert(desc);
539 if (!desc) {
540 return FALSE;
541 }
542
543 return util_format_has_depth(desc) &&
544 util_format_has_stencil(desc);
545 }
546
547
548 /**
549 * Calculates the MRD for the depth format. MRD is used in depth bias
550 * for UNORM and unbound depth buffers. When the depth buffer is floating
551 * point, the depth bias calculation does not use the MRD. However, the
552 * default MRD will be 1.0 / ((1 << 24) - 1).
553 */
554 double
555 util_get_depth_format_mrd(enum pipe_format format);
556
557
558 /**
559 * Return whether this is an RGBA, Z, S, or combined ZS format.
560 * Useful for initializing pipe_blit_info::mask.
561 */
562 static INLINE unsigned
563 util_format_get_mask(enum pipe_format format)
564 {
565 const struct util_format_description *desc =
566 util_format_description(format);
567
568 if (!desc)
569 return 0;
570
571 if (util_format_has_depth(desc)) {
572 if (util_format_has_stencil(desc)) {
573 return PIPE_MASK_ZS;
574 } else {
575 return PIPE_MASK_Z;
576 }
577 } else {
578 if (util_format_has_stencil(desc)) {
579 return PIPE_MASK_S;
580 } else {
581 return PIPE_MASK_RGBA;
582 }
583 }
584 }
585
586 /**
587 * Give the RGBA colormask of the channels that can be represented in this
588 * format.
589 *
590 * That is, the channels whose values are preserved.
591 */
592 static INLINE unsigned
593 util_format_colormask(const struct util_format_description *desc)
594 {
595 unsigned colormask;
596 unsigned chan;
597
598 switch (desc->colorspace) {
599 case UTIL_FORMAT_COLORSPACE_RGB:
600 case UTIL_FORMAT_COLORSPACE_SRGB:
601 case UTIL_FORMAT_COLORSPACE_YUV:
602 colormask = 0;
603 for (chan = 0; chan < 4; ++chan) {
604 if (desc->swizzle[chan] < 4) {
605 colormask |= (1 << chan);
606 }
607 }
608 return colormask;
609 case UTIL_FORMAT_COLORSPACE_ZS:
610 return 0;
611 default:
612 assert(0);
613 return 0;
614 }
615 }
616
617
618 /**
619 * Checks if color mask covers every channel for the specified format
620 *
621 * @param desc a format description to check colormask with
622 * @param colormask a bit mask for channels, matches format of PIPE_MASK_RGBA
623 */
624 static INLINE boolean
625 util_format_colormask_full(const struct util_format_description *desc, unsigned colormask)
626 {
627 return (~colormask & util_format_colormask(desc)) == 0;
628 }
629
630
631 boolean
632 util_format_is_float(enum pipe_format format);
633
634
635 boolean
636 util_format_has_alpha(enum pipe_format format);
637
638
639 boolean
640 util_format_is_luminance(enum pipe_format format);
641
642
643 boolean
644 util_format_is_luminance_alpha(enum pipe_format format);
645
646
647 boolean
648 util_format_is_intensity(enum pipe_format format);
649
650 boolean
651 util_format_is_pure_integer(enum pipe_format format);
652
653 boolean
654 util_format_is_pure_sint(enum pipe_format format);
655
656 boolean
657 util_format_is_pure_uint(enum pipe_format format);
658
659 boolean
660 util_format_is_snorm(enum pipe_format format);
661
662 /**
663 * Check if the src format can be blitted to the destination format with
664 * a simple memcpy. For example, blitting from RGBA to RGBx is OK, but not
665 * the reverse.
666 */
667 boolean
668 util_is_format_compatible(const struct util_format_description *src_desc,
669 const struct util_format_description *dst_desc);
670
671 /**
672 * Whether the format is supported by Gallium for the given bindings.
673 * This covers S3TC textures and floating-point render targets.
674 */
675 boolean
676 util_format_is_supported(enum pipe_format format, unsigned bind);
677
678 /**
679 * Whether this format is a rgab8 variant.
680 *
681 * That is, any format that matches the
682 *
683 * PIPE_FORMAT_?8?8?8?8_UNORM
684 */
685 static INLINE boolean
686 util_format_is_rgba8_variant(const struct util_format_description *desc)
687 {
688 unsigned chan;
689
690 if(desc->block.width != 1 ||
691 desc->block.height != 1 ||
692 desc->block.bits != 32)
693 return FALSE;
694
695 for(chan = 0; chan < 4; ++chan) {
696 if(desc->channel[chan].type != UTIL_FORMAT_TYPE_UNSIGNED &&
697 desc->channel[chan].type != UTIL_FORMAT_TYPE_VOID)
698 return FALSE;
699 if(desc->channel[chan].type == UTIL_FORMAT_TYPE_UNSIGNED &&
700 !desc->channel[chan].normalized)
701 return FALSE;
702 if(desc->channel[chan].size != 8)
703 return FALSE;
704 }
705
706 return TRUE;
707 }
708
709
710 /**
711 * Return total bits needed for the pixel format per block.
712 */
713 static INLINE uint
714 util_format_get_blocksizebits(enum pipe_format format)
715 {
716 const struct util_format_description *desc = util_format_description(format);
717
718 assert(desc);
719 if (!desc) {
720 return 0;
721 }
722
723 return desc->block.bits;
724 }
725
726 /**
727 * Return bytes per block (not pixel) for the given format.
728 */
729 static INLINE uint
730 util_format_get_blocksize(enum pipe_format format)
731 {
732 uint bits = util_format_get_blocksizebits(format);
733 uint bytes = bits / 8;
734
735 assert(bits % 8 == 0);
736 assert(bytes > 0);
737 if (bytes == 0) {
738 bytes = 1;
739 }
740
741 return bytes;
742 }
743
744 static INLINE uint
745 util_format_get_blockwidth(enum pipe_format format)
746 {
747 const struct util_format_description *desc = util_format_description(format);
748
749 assert(desc);
750 if (!desc) {
751 return 1;
752 }
753
754 return desc->block.width;
755 }
756
757 static INLINE uint
758 util_format_get_blockheight(enum pipe_format format)
759 {
760 const struct util_format_description *desc = util_format_description(format);
761
762 assert(desc);
763 if (!desc) {
764 return 1;
765 }
766
767 return desc->block.height;
768 }
769
770 static INLINE unsigned
771 util_format_get_nblocksx(enum pipe_format format,
772 unsigned x)
773 {
774 unsigned blockwidth = util_format_get_blockwidth(format);
775 return (x + blockwidth - 1) / blockwidth;
776 }
777
778 static INLINE unsigned
779 util_format_get_nblocksy(enum pipe_format format,
780 unsigned y)
781 {
782 unsigned blockheight = util_format_get_blockheight(format);
783 return (y + blockheight - 1) / blockheight;
784 }
785
786 static INLINE unsigned
787 util_format_get_nblocks(enum pipe_format format,
788 unsigned width,
789 unsigned height)
790 {
791 return util_format_get_nblocksx(format, width) * util_format_get_nblocksy(format, height);
792 }
793
794 static INLINE size_t
795 util_format_get_stride(enum pipe_format format,
796 unsigned width)
797 {
798 return util_format_get_nblocksx(format, width) * util_format_get_blocksize(format);
799 }
800
801 static INLINE size_t
802 util_format_get_2d_size(enum pipe_format format,
803 size_t stride,
804 unsigned height)
805 {
806 return util_format_get_nblocksy(format, height) * stride;
807 }
808
809 static INLINE uint
810 util_format_get_component_bits(enum pipe_format format,
811 enum util_format_colorspace colorspace,
812 uint component)
813 {
814 const struct util_format_description *desc = util_format_description(format);
815 enum util_format_colorspace desc_colorspace;
816
817 assert(format);
818 if (!format) {
819 return 0;
820 }
821
822 assert(component < 4);
823
824 /* Treat RGB and SRGB as equivalent. */
825 if (colorspace == UTIL_FORMAT_COLORSPACE_SRGB) {
826 colorspace = UTIL_FORMAT_COLORSPACE_RGB;
827 }
828 if (desc->colorspace == UTIL_FORMAT_COLORSPACE_SRGB) {
829 desc_colorspace = UTIL_FORMAT_COLORSPACE_RGB;
830 } else {
831 desc_colorspace = desc->colorspace;
832 }
833
834 if (desc_colorspace != colorspace) {
835 return 0;
836 }
837
838 switch (desc->swizzle[component]) {
839 case UTIL_FORMAT_SWIZZLE_X:
840 return desc->channel[0].size;
841 case UTIL_FORMAT_SWIZZLE_Y:
842 return desc->channel[1].size;
843 case UTIL_FORMAT_SWIZZLE_Z:
844 return desc->channel[2].size;
845 case UTIL_FORMAT_SWIZZLE_W:
846 return desc->channel[3].size;
847 default:
848 return 0;
849 }
850 }
851
852 /**
853 * Given a linear RGB colorspace format, return the corresponding SRGB
854 * format, or PIPE_FORMAT_NONE if none.
855 */
856 static INLINE enum pipe_format
857 util_format_srgb(enum pipe_format format)
858 {
859 switch (format) {
860 case PIPE_FORMAT_L8_UNORM:
861 return PIPE_FORMAT_L8_SRGB;
862 case PIPE_FORMAT_L8A8_UNORM:
863 return PIPE_FORMAT_L8A8_SRGB;
864 case PIPE_FORMAT_R8G8B8_UNORM:
865 return PIPE_FORMAT_R8G8B8_SRGB;
866 case PIPE_FORMAT_A8B8G8R8_UNORM:
867 return PIPE_FORMAT_A8B8G8R8_SRGB;
868 case PIPE_FORMAT_X8B8G8R8_UNORM:
869 return PIPE_FORMAT_X8B8G8R8_SRGB;
870 case PIPE_FORMAT_B8G8R8A8_UNORM:
871 return PIPE_FORMAT_B8G8R8A8_SRGB;
872 case PIPE_FORMAT_B8G8R8X8_UNORM:
873 return PIPE_FORMAT_B8G8R8X8_SRGB;
874 case PIPE_FORMAT_A8R8G8B8_UNORM:
875 return PIPE_FORMAT_A8R8G8B8_SRGB;
876 case PIPE_FORMAT_X8R8G8B8_UNORM:
877 return PIPE_FORMAT_X8R8G8B8_SRGB;
878 case PIPE_FORMAT_R8G8B8A8_UNORM:
879 return PIPE_FORMAT_R8G8B8A8_SRGB;
880 case PIPE_FORMAT_R8G8B8X8_UNORM:
881 return PIPE_FORMAT_R8G8B8X8_SRGB;
882 case PIPE_FORMAT_DXT1_RGB:
883 return PIPE_FORMAT_DXT1_SRGB;
884 case PIPE_FORMAT_DXT1_RGBA:
885 return PIPE_FORMAT_DXT1_SRGBA;
886 case PIPE_FORMAT_DXT3_RGBA:
887 return PIPE_FORMAT_DXT3_SRGBA;
888 case PIPE_FORMAT_DXT5_RGBA:
889 return PIPE_FORMAT_DXT5_SRGBA;
890 default:
891 return PIPE_FORMAT_NONE;
892 }
893 }
894
895 /**
896 * Given an sRGB format, return the corresponding linear colorspace format.
897 * For non sRGB formats, return the format unchanged.
898 */
899 static INLINE enum pipe_format
900 util_format_linear(enum pipe_format format)
901 {
902 switch (format) {
903 case PIPE_FORMAT_L8_SRGB:
904 return PIPE_FORMAT_L8_UNORM;
905 case PIPE_FORMAT_L8A8_SRGB:
906 return PIPE_FORMAT_L8A8_UNORM;
907 case PIPE_FORMAT_R8G8B8_SRGB:
908 return PIPE_FORMAT_R8G8B8_UNORM;
909 case PIPE_FORMAT_A8B8G8R8_SRGB:
910 return PIPE_FORMAT_A8B8G8R8_UNORM;
911 case PIPE_FORMAT_X8B8G8R8_SRGB:
912 return PIPE_FORMAT_X8B8G8R8_UNORM;
913 case PIPE_FORMAT_B8G8R8A8_SRGB:
914 return PIPE_FORMAT_B8G8R8A8_UNORM;
915 case PIPE_FORMAT_B8G8R8X8_SRGB:
916 return PIPE_FORMAT_B8G8R8X8_UNORM;
917 case PIPE_FORMAT_A8R8G8B8_SRGB:
918 return PIPE_FORMAT_A8R8G8B8_UNORM;
919 case PIPE_FORMAT_X8R8G8B8_SRGB:
920 return PIPE_FORMAT_X8R8G8B8_UNORM;
921 case PIPE_FORMAT_R8G8B8A8_SRGB:
922 return PIPE_FORMAT_R8G8B8A8_UNORM;
923 case PIPE_FORMAT_R8G8B8X8_SRGB:
924 return PIPE_FORMAT_R8G8B8X8_UNORM;
925 case PIPE_FORMAT_DXT1_SRGB:
926 return PIPE_FORMAT_DXT1_RGB;
927 case PIPE_FORMAT_DXT1_SRGBA:
928 return PIPE_FORMAT_DXT1_RGBA;
929 case PIPE_FORMAT_DXT3_SRGBA:
930 return PIPE_FORMAT_DXT3_RGBA;
931 case PIPE_FORMAT_DXT5_SRGBA:
932 return PIPE_FORMAT_DXT5_RGBA;
933 default:
934 return format;
935 }
936 }
937
938 /**
939 * Given a depth-stencil format, return the corresponding stencil-only format.
940 * For stencil-only formats, return the format unchanged.
941 */
942 static INLINE enum pipe_format
943 util_format_stencil_only(enum pipe_format format)
944 {
945 switch (format) {
946 /* mask out the depth component */
947 case PIPE_FORMAT_Z24_UNORM_S8_UINT:
948 return PIPE_FORMAT_X24S8_UINT;
949 case PIPE_FORMAT_S8_UINT_Z24_UNORM:
950 return PIPE_FORMAT_S8X24_UINT;
951 case PIPE_FORMAT_Z32_FLOAT_S8X24_UINT:
952 return PIPE_FORMAT_X32_S8X24_UINT;
953
954 /* stencil only formats */
955 case PIPE_FORMAT_X24S8_UINT:
956 case PIPE_FORMAT_S8X24_UINT:
957 case PIPE_FORMAT_X32_S8X24_UINT:
958 case PIPE_FORMAT_S8_UINT:
959 return format;
960
961 default:
962 assert(0);
963 return PIPE_FORMAT_NONE;
964 }
965 }
966
967 /**
968 * Converts PIPE_FORMAT_*I* to PIPE_FORMAT_*R*.
969 * This is identity for non-intensity formats.
970 */
971 static INLINE enum pipe_format
972 util_format_intensity_to_red(enum pipe_format format)
973 {
974 switch (format) {
975 case PIPE_FORMAT_I8_UNORM:
976 return PIPE_FORMAT_R8_UNORM;
977 case PIPE_FORMAT_I8_SNORM:
978 return PIPE_FORMAT_R8_SNORM;
979 case PIPE_FORMAT_I16_UNORM:
980 return PIPE_FORMAT_R16_UNORM;
981 case PIPE_FORMAT_I16_SNORM:
982 return PIPE_FORMAT_R16_SNORM;
983 case PIPE_FORMAT_I16_FLOAT:
984 return PIPE_FORMAT_R16_FLOAT;
985 case PIPE_FORMAT_I32_FLOAT:
986 return PIPE_FORMAT_R32_FLOAT;
987 case PIPE_FORMAT_I8_UINT:
988 return PIPE_FORMAT_R8_UINT;
989 case PIPE_FORMAT_I8_SINT:
990 return PIPE_FORMAT_R8_SINT;
991 case PIPE_FORMAT_I16_UINT:
992 return PIPE_FORMAT_R16_UINT;
993 case PIPE_FORMAT_I16_SINT:
994 return PIPE_FORMAT_R16_SINT;
995 case PIPE_FORMAT_I32_UINT:
996 return PIPE_FORMAT_R32_UINT;
997 case PIPE_FORMAT_I32_SINT:
998 return PIPE_FORMAT_R32_SINT;
999 default:
1000 assert(!util_format_is_intensity(format));
1001 return format;
1002 }
1003 }
1004
1005 /**
1006 * Converts PIPE_FORMAT_*L* to PIPE_FORMAT_*R*.
1007 * This is identity for non-luminance formats.
1008 */
1009 static INLINE enum pipe_format
1010 util_format_luminance_to_red(enum pipe_format format)
1011 {
1012 switch (format) {
1013 case PIPE_FORMAT_L8_UNORM:
1014 return PIPE_FORMAT_R8_UNORM;
1015 case PIPE_FORMAT_L8_SNORM:
1016 return PIPE_FORMAT_R8_SNORM;
1017 case PIPE_FORMAT_L16_UNORM:
1018 return PIPE_FORMAT_R16_UNORM;
1019 case PIPE_FORMAT_L16_SNORM:
1020 return PIPE_FORMAT_R16_SNORM;
1021 case PIPE_FORMAT_L16_FLOAT:
1022 return PIPE_FORMAT_R16_FLOAT;
1023 case PIPE_FORMAT_L32_FLOAT:
1024 return PIPE_FORMAT_R32_FLOAT;
1025 case PIPE_FORMAT_L8_UINT:
1026 return PIPE_FORMAT_R8_UINT;
1027 case PIPE_FORMAT_L8_SINT:
1028 return PIPE_FORMAT_R8_SINT;
1029 case PIPE_FORMAT_L16_UINT:
1030 return PIPE_FORMAT_R16_UINT;
1031 case PIPE_FORMAT_L16_SINT:
1032 return PIPE_FORMAT_R16_SINT;
1033 case PIPE_FORMAT_L32_UINT:
1034 return PIPE_FORMAT_R32_UINT;
1035 case PIPE_FORMAT_L32_SINT:
1036 return PIPE_FORMAT_R32_SINT;
1037
1038 case PIPE_FORMAT_LATC1_UNORM:
1039 return PIPE_FORMAT_RGTC1_UNORM;
1040 case PIPE_FORMAT_LATC1_SNORM:
1041 return PIPE_FORMAT_RGTC1_SNORM;
1042
1043 case PIPE_FORMAT_L4A4_UNORM:
1044 /* XXX A4R4 is defined as x00y in u_format.csv */
1045 return PIPE_FORMAT_A4R4_UNORM;
1046
1047 case PIPE_FORMAT_L8A8_UNORM:
1048 return PIPE_FORMAT_R8A8_UNORM;
1049 case PIPE_FORMAT_L8A8_SNORM:
1050 return PIPE_FORMAT_R8A8_SNORM;
1051 case PIPE_FORMAT_L16A16_UNORM:
1052 return PIPE_FORMAT_R16A16_UNORM;
1053 case PIPE_FORMAT_L16A16_SNORM:
1054 return PIPE_FORMAT_R16A16_SNORM;
1055 case PIPE_FORMAT_L16A16_FLOAT:
1056 return PIPE_FORMAT_R16A16_FLOAT;
1057 case PIPE_FORMAT_L32A32_FLOAT:
1058 return PIPE_FORMAT_R32A32_FLOAT;
1059 case PIPE_FORMAT_L8A8_UINT:
1060 return PIPE_FORMAT_R8A8_UINT;
1061 case PIPE_FORMAT_L8A8_SINT:
1062 return PIPE_FORMAT_R8A8_SINT;
1063 case PIPE_FORMAT_L16A16_UINT:
1064 return PIPE_FORMAT_R16A16_UINT;
1065 case PIPE_FORMAT_L16A16_SINT:
1066 return PIPE_FORMAT_R16A16_SINT;
1067 case PIPE_FORMAT_L32A32_UINT:
1068 return PIPE_FORMAT_R32A32_UINT;
1069 case PIPE_FORMAT_L32A32_SINT:
1070 return PIPE_FORMAT_R32A32_SINT;
1071
1072 /* We don't have compressed red-alpha variants for these. */
1073 case PIPE_FORMAT_LATC2_UNORM:
1074 case PIPE_FORMAT_LATC2_SNORM:
1075 return PIPE_FORMAT_NONE;
1076
1077 default:
1078 assert(!util_format_is_luminance(format) &&
1079 !util_format_is_luminance_alpha(format));
1080 return format;
1081 }
1082 }
1083
1084 /**
1085 * Return the number of components stored.
1086 * Formats with block size != 1x1 will always have 1 component (the block).
1087 */
1088 static INLINE unsigned
1089 util_format_get_nr_components(enum pipe_format format)
1090 {
1091 const struct util_format_description *desc = util_format_description(format);
1092 return desc->nr_channels;
1093 }
1094
1095 /**
1096 * Return the index of the first non-void channel
1097 * -1 if no non-void channels
1098 */
1099 static INLINE int
1100 util_format_get_first_non_void_channel(enum pipe_format format)
1101 {
1102 const struct util_format_description *desc = util_format_description(format);
1103 int i;
1104
1105 for (i = 0; i < 4; i++)
1106 if (desc->channel[i].type != UTIL_FORMAT_TYPE_VOID)
1107 break;
1108
1109 if (i == 4)
1110 return -1;
1111
1112 return i;
1113 }
1114
1115 /*
1116 * Format access functions.
1117 */
1118
1119 void
1120 util_format_read_4f(enum pipe_format format,
1121 float *dst, unsigned dst_stride,
1122 const void *src, unsigned src_stride,
1123 unsigned x, unsigned y, unsigned w, unsigned h);
1124
1125 void
1126 util_format_write_4f(enum pipe_format format,
1127 const float *src, unsigned src_stride,
1128 void *dst, unsigned dst_stride,
1129 unsigned x, unsigned y, unsigned w, unsigned h);
1130
1131 void
1132 util_format_read_4ub(enum pipe_format format,
1133 uint8_t *dst, unsigned dst_stride,
1134 const void *src, unsigned src_stride,
1135 unsigned x, unsigned y, unsigned w, unsigned h);
1136
1137 void
1138 util_format_write_4ub(enum pipe_format format,
1139 const uint8_t *src, unsigned src_stride,
1140 void *dst, unsigned dst_stride,
1141 unsigned x, unsigned y, unsigned w, unsigned h);
1142
1143 void
1144 util_format_read_4ui(enum pipe_format format,
1145 unsigned *dst, unsigned dst_stride,
1146 const void *src, unsigned src_stride,
1147 unsigned x, unsigned y, unsigned w, unsigned h);
1148
1149 void
1150 util_format_write_4ui(enum pipe_format format,
1151 const unsigned int *src, unsigned src_stride,
1152 void *dst, unsigned dst_stride,
1153 unsigned x, unsigned y, unsigned w, unsigned h);
1154
1155 void
1156 util_format_read_4i(enum pipe_format format,
1157 int *dst, unsigned dst_stride,
1158 const void *src, unsigned src_stride,
1159 unsigned x, unsigned y, unsigned w, unsigned h);
1160
1161 void
1162 util_format_write_4i(enum pipe_format format,
1163 const int *src, unsigned src_stride,
1164 void *dst, unsigned dst_stride,
1165 unsigned x, unsigned y, unsigned w, unsigned h);
1166
1167 /*
1168 * Generic format conversion;
1169 */
1170
1171 boolean
1172 util_format_fits_8unorm(const struct util_format_description *format_desc);
1173
1174 void
1175 util_format_translate(enum pipe_format dst_format,
1176 void *dst, unsigned dst_stride,
1177 unsigned dst_x, unsigned dst_y,
1178 enum pipe_format src_format,
1179 const void *src, unsigned src_stride,
1180 unsigned src_x, unsigned src_y,
1181 unsigned width, unsigned height);
1182
1183 /*
1184 * Swizzle operations.
1185 */
1186
1187 /* Compose two sets of swizzles.
1188 * If V is a 4D vector and the function parameters represent functions that
1189 * swizzle vector components, this holds:
1190 * swz2(swz1(V)) = dst(V)
1191 */
1192 void util_format_compose_swizzles(const unsigned char swz1[4],
1193 const unsigned char swz2[4],
1194 unsigned char dst[4]);
1195
1196 /* Apply the swizzle provided in \param swz (which is one of PIPE_SWIZZLE_x)
1197 * to \param src and store the result in \param dst.
1198 * \param is_integer determines the value written for PIPE_SWIZZLE_ONE.
1199 */
1200 void util_format_apply_color_swizzle(union pipe_color_union *dst,
1201 const union pipe_color_union *src,
1202 const unsigned char swz[4],
1203 const boolean is_integer);
1204
1205 void util_format_swizzle_4f(float *dst, const float *src,
1206 const unsigned char swz[4]);
1207
1208 void util_format_unswizzle_4f(float *dst, const float *src,
1209 const unsigned char swz[4]);
1210
1211 #ifdef __cplusplus
1212 } // extern "C" {
1213 #endif
1214
1215 #endif /* ! U_FORMAT_H */