File: GmmUtility.cpp

package info (click to toggle)
intel-gmmlib 22.7.2%2Bds1-1
  • links: PTS, VCS
  • area: main
  • in suites: forky, trixie
  • size: 5,444 kB
  • sloc: cpp: 59,645; ansic: 11,358; makefile: 6
file content (668 lines) | stat: -rw-r--r-- 23,505 bytes parent folder | download | duplicates (3)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
630
631
632
633
634
635
636
637
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
/*==============================================================================
Copyright(c) 2017 Intel Corporation

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:

The above copyright notice and this permission notice 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 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.
============================================================================*/

#include "Internal/Common/GmmLibInc.h"
#ifdef _WIN32
#include <intrin.h>
#endif

//64KB Undefined Swizzle Descriptors #########################################
// !! TODO (critical): Provide mapping helper function to UMD to map in non-TR
//                     Undefined64KBSwizzle resources. Also check if support
//                     for it is needed in GmmResCpuBlt.
//
// Note: These 64KB swizzles are not really hardware tile swizzles, so leave
//       them out of the CpuSwizzleBlt.c

/*  On systems that do not support Std Swizzle (IGFX_GEN7_5_CORE / IGFX_GEN8_CORE),
we still have to support 64KB tiles. These 64KB tiles will be made of 16 4KB
tiles -- we'll be using TileY to create these 64KB tiles. The table below shows
how the 64KB tile shape changes depending on the bpp and how we need to arrange
(in columns X rows) the 4KB tiles to fit that shape.

    bpp     Tile Size (in pixels)   Tile Size (in bytes)      4K tile config
    ---     --------------------    --------------------      --------------
    8bpp        256x256                 256x256                     2x8
    16bpp       256x128                 512x128                     4x4
    32bpp       128x128                 512x128                     4x4
    64bpp       128x64                  1024x64                     8x2
    128bpp      64x64                   1024x64                     8x2

We need 3 different swizzle pattern to support all configs above.  The swizzle
patterns are:

          |-Rows-|  |-Column-|   |-TileY Swizzle-|
8bpp:       YYY         X          XXXYYYYYXXXX
16/32bpp:   YY          XX         XXXYYYYYXXXX
64/128bpp:  Y           XXX        XXXYYYYYXXXX

The translation of these Xs and Ys to bitmap is shown below */
extern const SWIZZLE_DESCRIPTOR INTEL_64KB_UNDEFINED_8bpp      = {0x1E0F, 0xE1F0, 0};
extern const SWIZZLE_DESCRIPTOR INTEL_64KB_UNDEFINED_16_32bpp  = {0x3E0F, 0xC1F0, 0};
extern const SWIZZLE_DESCRIPTOR INTEL_64KB_UNDEFINED_64_128bpp = {0x7E0F, 0x81F0, 0};
//#############################################################################

//=============================================================================
// Function:
//    GmmIsRedecribedPlanes
//
// Description:
//     Checks if the resource has redescribed planes
//
// Arguments: <Look at Function Header)
//
// Return:
//    1 or 0
//-----------------------------------------------------------------------------
uint8_t GMM_STDCALL GmmIsRedecribedPlanes(GMM_RESOURCE_INFO *pGmmResource)
{
    return pGmmResource->GetResFlags().Info.RedecribedPlanes;
}

//=============================================================================
// Function:
//    GmmGetLosslessCompressionType
//
// Description:
//     Returns the format's E2E compression format.
//
// Arguments: <Look at Function Header)
//
// Return:
//    GMM_E2ECOMP_FORMAT
//-----------------------------------------------------------------------------
uint8_t GMM_STDCALL GmmGetLosslessCompressionType(void *pLibContext, GMM_RESOURCE_FORMAT Format)
{
    GMM_LIB_CONTEXT *pGmmLibContext = (GMM_LIB_CONTEXT *)pLibContext;
    __GMM_ASSERT((Format > GMM_FORMAT_INVALID) && (Format < GMM_RESOURCE_FORMATS));

    return pGmmLibContext->GetPlatformInfo().FormatTable[Format].CompressionFormat.AuxL1eFormat;
}

//=============================================================================
// Function:
//    GmmIsUVPacked
//
// Description:
//     Checks if format has packed UV plane
//
// Arguments: <Look at Function Header)
//
// Return:
//    1 or 0
//-----------------------------------------------------------------------------
uint8_t GMM_STDCALL GmmIsUVPacked(GMM_RESOURCE_FORMAT Format)
{
    uint8_t Status = 0;

    switch(Format)
    {
        case GMM_FORMAT_NV11:
        case GMM_FORMAT_NV12:
        case GMM_FORMAT_NV21:
        case GMM_FORMAT_P010:
        case GMM_FORMAT_P012:
        case GMM_FORMAT_P016:
        case GMM_FORMAT_P208:
        case GMM_FORMAT_P216:
            Status = 1;
            break;
        default:
            Status = 0;
            break;
    }
    return Status;
}

/////////////////////////////////////////////////////////////////////////////////////
/// Checks if format can be accessed by LCU
///
/// @param[in]  pSurf: ptr to ::GMM_TEXTURE_INFO of main surface
/// @param[in]  pAuxTexInfo: ptr to ::GMM_TEXTURE_INFO of Aux surface
///
/////////////////////////////////////////////////////////////////////////////////////
bool GMM_STDCALL GmmIsYUVFormatLCUAligned(GMM_RESOURCE_FORMAT Format)
{
    bool Status = 0;

    switch(Format)
    {
        case GMM_FORMAT_NV12:
        case GMM_FORMAT_P010:
        case GMM_FORMAT_P016:
        case GMM_FORMAT_YUY2:
        case GMM_FORMAT_Y210:
        case GMM_FORMAT_Y410:
        case GMM_FORMAT_Y216:
        case GMM_FORMAT_Y416:
        case GMM_FORMAT_AYUV:
            Status = true;
            break;
        default:
            Status = false;
            break;
    }
    return Status;
}

//=============================================================================
// Function:
//    GmmIsYUVPacked
//
// Description:
//     Checks if format is a YCRCB_xxx format supported by the sampler.
//
// Arguments: <Look at Function Header)
//
// Return:
//    1 or 0
//-----------------------------------------------------------------------------
uint8_t GMM_STDCALL GmmIsYUVPacked(GMM_RESOURCE_FORMAT Format)
{
    uint8_t Status = 0;

    switch(Format)
    {
        // YCRCB_xxx Format Supported by the Sampler...
        case GMM_FORMAT_YUY2:
        case GMM_FORMAT_YVYU:
        case GMM_FORMAT_UYVY:
        case GMM_FORMAT_VYUY:
        case GMM_FORMAT_YUY2_2x1:
        case GMM_FORMAT_YVYU_2x1:
        case GMM_FORMAT_UYVY_2x1:
        case GMM_FORMAT_VYUY_2x1:
        case GMM_FORMAT_Y210:
        case GMM_FORMAT_Y212:
        case GMM_FORMAT_Y216:
        case GMM_FORMAT_Y410:
        case GMM_FORMAT_Y412:
        case GMM_FORMAT_Y416:
        case GMM_FORMAT_AYUV:
            Status = 1;
            break;
        default:
            Status = 0;
            break;
    }
    return Status;
}

//=============================================================================
// Function:
//    GmmIsPlanar
//
// Description:
//     Checks if format is YUV planar
//
// Arguments: <Look at Function Header)
//
// Return:
//    1 or 0
//-----------------------------------------------------------------------------
uint8_t GMM_STDCALL GmmIsPlanar(GMM_RESOURCE_FORMAT Format)
{
    uint8_t Status = 0;

    switch(Format)
    {
        // YUV Planar Formats
        case GMM_FORMAT_BGRP:
        case GMM_FORMAT_IMC1:
        case GMM_FORMAT_IMC2:
        case GMM_FORMAT_IMC3:
        case GMM_FORMAT_IMC4:
        case GMM_FORMAT_I420: //Same as IYUV.
        case GMM_FORMAT_IYUV:
        case GMM_FORMAT_MFX_JPEG_YUV411:
        case GMM_FORMAT_MFX_JPEG_YUV411R:
        case GMM_FORMAT_MFX_JPEG_YUV420:
        case GMM_FORMAT_MFX_JPEG_YUV422H:
        case GMM_FORMAT_MFX_JPEG_YUV422V:
        case GMM_FORMAT_MFX_JPEG_YUV444:
        case GMM_FORMAT_RGBP:
        case GMM_FORMAT_YV12:
        case GMM_FORMAT_YVU9:
        // YUV Hybrid Formats - GMM treats as Planar
        case GMM_FORMAT_NV11:
        case GMM_FORMAT_NV12:
        case GMM_FORMAT_NV21:
        case GMM_FORMAT_P010:
        case GMM_FORMAT_P012:
        case GMM_FORMAT_P016:
        case GMM_FORMAT_P208:
        case GMM_FORMAT_P216:
            Status = 1;
            break;
        default:
            Status = 0;
            break;
    }
    return Status;
}

//=============================================================================
// Function:
//    GmmIsReconstructableSurface
//
// Description:
//     Checks if format is GmmIsReconstructableSurface
//
// Arguments: <Look at Function Header)
//
// Return:
//    1 or 0
//-----------------------------------------------------------------------------
uint8_t GMM_STDCALL GmmIsReconstructableSurface(GMM_RESOURCE_FORMAT Format)
{
    uint8_t Status = 0;

    switch(Format)
    {
        case GMM_FORMAT_AYUV:
        case GMM_FORMAT_P010:
        case GMM_FORMAT_P012:
        case GMM_FORMAT_P016:
        case GMM_FORMAT_Y210:
        case GMM_FORMAT_Y216:
        case GMM_FORMAT_Y212:
        case GMM_FORMAT_Y410:
        case GMM_FORMAT_Y416:
        case GMM_FORMAT_P8:
        case GMM_FORMAT_NV12:
        case GMM_FORMAT_YUY2_2x1:
        case GMM_FORMAT_YUY2:
            Status = 1;
            break;
        default:
            Status = 0;
            break;
    }
    return Status;
}

//=============================================================================
// Function:
//    GmmIsP0xx
//
// Description:
//     Checks if format is P0xx
//
// Arguments: <Look at Function Header)
//
// Return:
//    1 or 0
//-----------------------------------------------------------------------------
uint8_t GMM_STDCALL GmmIsP0xx(GMM_RESOURCE_FORMAT Format)
{
    uint8_t Status = 0;

    switch(Format)
    {
        case GMM_FORMAT_P010:
        case GMM_FORMAT_P012:
        case GMM_FORMAT_P016:
            Status = 1;
            break;
        default:
            Status = 0;
            break;
    }

    return Status;
}

//=============================================================================
// Function:
//    GmmIsCompressed
//
// Description:
//     Checks if format is compressed
//
// Arguments: <Look at Function Header)
//
// Return:
//    1 or 0
//-----------------------------------------------------------------------------
uint8_t GMM_STDCALL GmmIsCompressed(void *pLibContext, GMM_RESOURCE_FORMAT Format)
{
    GMM_LIB_CONTEXT *pGmmLibContext = (GMM_LIB_CONTEXT *)pLibContext;

    return (Format > GMM_FORMAT_INVALID) &&
           (Format < GMM_RESOURCE_FORMATS) &&
           pGmmLibContext->GetPlatformInfo().FormatTable[Format].Compressed;
}

//=============================================================================
// Function:
//     GmmGetCacheSizes
//
// Description:
//    This function returns the L3, LLC and EDRAM cache sizes.
//
// Arguments:
//    pCacheSizes ==> ptr to GMM_CACHE_SIZES struct
//
// Return:
//    void
//
//-----------------------------------------------------------------------------
void GMM_STDCALL GmmGetCacheSizes(GMM_LIB_CONTEXT *pGmmLibContext, GMM_CACHE_SIZES *pCacheSizes)
{
    const GT_SYSTEM_INFO *pGtSysInfo;
    __GMM_ASSERT(pCacheSizes != NULL);
    __GMM_ASSERT(pGmmLibContext != NULL);

    GMM_DPF_ENTER;
    pGtSysInfo                 = pGmmLibContext->GetGtSysInfoPtr();
    pCacheSizes->TotalEDRAM    = GMM_KBYTE(pGtSysInfo->EdramSizeInKb);
    pCacheSizes->TotalLLCCache = GMM_KBYTE(pGtSysInfo->LLCCacheSizeInKb);
    pCacheSizes->TotalL3Cache  = GMM_KBYTE(pGtSysInfo->L3CacheSizeInKb);

    GMM_DPF_EXIT;
}
namespace GmmLib
{
    namespace Utility
    {
        //=============================================================================
        // Function:
        //    GmmGetNumPlanes
        //
        // Description:
        //     Returns number of planes for given format
        //
        // Arguments: <Look at Function Header)
        //
        // Return:
        //    uint32_t number of planes
        //-----------------------------------------------------------------------------
        uint32_t GMM_STDCALL GmmGetNumPlanes(GMM_RESOURCE_FORMAT Format)
        {
            uint32_t Planes = 1;

            switch(Format)
            {
                // YUV Planar Formats
                case GMM_FORMAT_BGRP:
                case GMM_FORMAT_IMC1:
                case GMM_FORMAT_IMC2:
                case GMM_FORMAT_IMC3:
                case GMM_FORMAT_IMC4:
                case GMM_FORMAT_I420:
                case GMM_FORMAT_IYUV:
                case GMM_FORMAT_MFX_JPEG_YUV411:
                case GMM_FORMAT_MFX_JPEG_YUV411R:
                case GMM_FORMAT_MFX_JPEG_YUV420:
                case GMM_FORMAT_MFX_JPEG_YUV422H:
                case GMM_FORMAT_MFX_JPEG_YUV422V:
                case GMM_FORMAT_MFX_JPEG_YUV444:
                case GMM_FORMAT_RGBP:
                case GMM_FORMAT_YV12:
                case GMM_FORMAT_YVU9:
                    Planes = 3;
                    break;
                // YUV Hybrid Formats - GMM treats as Planar
                case GMM_FORMAT_NV11:
                case GMM_FORMAT_NV12:
                case GMM_FORMAT_NV21:
                case GMM_FORMAT_P010:
                case GMM_FORMAT_P012:
                case GMM_FORMAT_P016:
                case GMM_FORMAT_P208:
                case GMM_FORMAT_P216:
                    Planes = 2;
                    break;
                default:
                    Planes = 1;
                    break;
            }
            return Planes;
        }

        //==============================================================================
        //
        // Function:
        //      GmmGetFormatForASTC
        //
        // Description: See below.
        //
        // Returns:
        //      GMM_RESOURCE_FORMAT for described ASTC format or GMM_FORMAT_INVALID(0)
        //      if invalid params specified.
        //
        //-----------------------------------------------------------------------------
        GMM_RESOURCE_FORMAT GMM_STDCALL GmmGetFormatForASTC(uint8_t HDR, uint8_t Float, uint32_t BlockWidth, uint32_t BlockHeight, uint32_t BlockDepth)
        {
            // Full enums/etc. in case we ever need to typedef them...
            enum GMM_SURFACESTATE_FORMAT_ASTC_DYNAMIC_RANGE
            {
                GMM_SURFACESTATE_FORMAT_ASTC_DYNAMIC_RANGE_LDR = 0,
                GMM_SURFACESTATE_FORMAT_ASTC_DYNAMIC_RANGE_HDR = 1,
            };

            enum GMM_SURFACESTATE_FORMAT_ASTC_BLOCK_DIMENSION
            {
                GMM_SURFACESTATE_FORMAT_ASTC_BLOCK_DIMENSION_2D = 0,
                GMM_SURFACESTATE_FORMAT_ASTC_BLOCK_DIMENSION_3D = 1,
            };

            enum GMM_SURFACESTATE_FORMAT_ASTC_DECODE_FORMAT
            {
                GMM_SURFACESTATE_FORMAT_ASTC_DECODE_FORMAT_UNORM8_sRGB = 0,
                GMM_SURFACESTATE_FORMAT_ASTC_DECODE_FORMAT_FLOAT16     = 1,
            };

            enum GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE
            {
                GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_4px   = 0,
                GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_5px   = 1,
                GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_6px   = 2,
                __GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_0x3 = 3,
                GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_8px   = 4,
                __GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_0x5 = 5,
                GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_10px  = 6,
                GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_12px  = 7,
            };

            enum GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE
            {
                GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_3px = 0,
                GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_4px = 1,
                GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_5px = 2,
                GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_6px = 3,
            };

            union GMM_SURFACESTATE_FORMAT_ASTC {
                struct // Common Fields...
                {
                    uint32_t Reserved1 : 6;      // [2D/3D-Specific Fields]
                    uint32_t DecodeFormat : 1;   // GMM_SURFACESTATE_FORMAT_ASTC_DECODE_FORMAT
                    uint32_t BlockDimension : 1; // GMM_SURFACESTATE_FORMAT_ASTC_BLOCK_DIMENSION
                    uint32_t DynamicRange : 1;   // GMM_SURFACESTATE_FORMAT_ASTC_DYNAMIC_RANGE
                    uint32_t Reserved2 : 23;
                };
                struct // 2D-Specific Fields...
                {
                    uint32_t BlockHeight2D : 3; // GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE
                    uint32_t BlockWidth2D : 3;  // GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE
                    uint32_t Reserved3 : 3;     // [Common Fields]
                    uint32_t Reserved4 : 23;
                };
                struct // 3D-Specific Fields...
                {
                    uint32_t BlockDepth3D : 2;  // GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE
                    uint32_t BlockHeight3D : 2; // GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE
                    uint32_t BlockWidth3D : 2;  // GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE
                    uint32_t Reserved5 : 3;     // [Common Fields]
                    uint32_t Reserved6 : 23;
                };
                struct
                {
                    uint32_t Value : 9;
                    uint32_t Reserved7 : 23;
                };
            } Format = {0};
            C_ASSERT(sizeof(union GMM_SURFACESTATE_FORMAT_ASTC) == sizeof(uint32_t));

            // TODO(Minor): Verify and fail for invalid HDR/sRGB combinations.

            if(BlockDepth == 0)
                BlockDepth = 1;

            Format.DynamicRange = HDR ?
                                  GMM_SURFACESTATE_FORMAT_ASTC_DYNAMIC_RANGE_HDR :
                                  GMM_SURFACESTATE_FORMAT_ASTC_DYNAMIC_RANGE_LDR;

            Format.DecodeFormat = Float ?
                                  GMM_SURFACESTATE_FORMAT_ASTC_DECODE_FORMAT_FLOAT16 :
                                  GMM_SURFACESTATE_FORMAT_ASTC_DECODE_FORMAT_UNORM8_sRGB;

            // Validate Block Dimensions...
            if(!(
#define GMM_FORMAT_INCLUDE_ASTC_FORMATS_ONLY
#define GMM_FORMAT(Name, bpe, Width, Height, Depth, IsRT, IsASTC, RcsSurfaceFormat, SSCompressionFmt, Availability) \
    ((BlockWidth == (Width)) && (BlockHeight == (Height)) && (BlockDepth == (Depth))) ||
#include "External/Common/GmmFormatTable.h"
               0)) // <-- 0 benignly terminates the chain of OR expressions.
            {
                goto Invalid;
            }

            if(BlockDepth <= 1)
            {
                Format.BlockDimension = GMM_SURFACESTATE_FORMAT_ASTC_BLOCK_DIMENSION_2D;

                // clang-format off
                Format.BlockWidth2D =
                    (BlockWidth ==  4) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_4px :
                    (BlockWidth ==  5) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_5px :
                    (BlockWidth ==  6) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_6px :
                    (BlockWidth ==  8) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_8px :
                    (BlockWidth == 10) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_10px :
                    GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_12px;
                Format.BlockHeight2D =
                    (BlockHeight ==  4) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_4px :
                    (BlockHeight ==  5) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_5px :
                    (BlockHeight ==  6) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_6px :
                    (BlockHeight ==  8) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_8px :
                    (BlockHeight == 10) ? GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_10px :
                    GMM_SURFACESTATE_FORMAT_ASTC_2D_BLOCK_SIZE_12px;
                // clang-format on
            }
            else
            {
                Format.BlockDimension = GMM_SURFACESTATE_FORMAT_ASTC_BLOCK_DIMENSION_3D;
                // clang-format off
                Format.BlockWidth3D =
                    (BlockWidth == 3) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_3px :
                    (BlockWidth == 4) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_4px :
                    (BlockWidth == 5) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_5px :
                    GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_6px;
                Format.BlockHeight3D =
                    (BlockHeight == 3) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_3px :
                    (BlockHeight == 4) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_4px :
                    (BlockHeight == 5) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_5px :
                    GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_6px;
                Format.BlockDepth3D =
                    (BlockDepth == 3) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_3px :
                    (BlockDepth == 4) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_4px :
                    (BlockDepth == 5) ? GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_5px :
                    GMM_SURFACESTATE_FORMAT_ASTC_3D_BLOCK_SIZE_6px;
                // clang-format on
            }

            return ((GMM_RESOURCE_FORMAT)Format.Value);
        Invalid:
            return (GMM_FORMAT_INVALID);
        }


    } // namespace Utility
} // namespace GmmLib

//=============================================================================
//
// Function: __GmmLog2
//
// Desc: Returns Log2 of passed value. Useful for indexing into arrays.
//
// Parameters:
//      Value => Must be power of 2
//
// Returns:
//      See desc.
//      Example Value =  8 => Log2(Value) = 3
//      Example Value = 32 => Log2(Value) = 5
//-----------------------------------------------------------------------------
uint32_t __GmmLog2(uint32_t Value)
{
    uint32_t FirstSetBit = 0; // bit # of first set bit in Bpp.

#if _MSC_VER
    // Check that Value is pow2
    __GMM_ASSERT(__popcnt(Value) <= 1);
    _BitScanReverse((DWORD *)&FirstSetBit, (DWORD)Value);
#else
    // Check that Value is pow2
    __GMM_ASSERT(__builtin_popcount(Value) <= 1);
    FirstSetBit = __builtin_ctz(Value);
#endif

    // Log2(Value) = FirstSetBit.
    return FirstSetBit;
};

// Table for converting the tile layout of DirectX tiled resources
// to TileY.
const uint32_t __GmmTileYConversionTable[5][2] =
{
//WxH 256x256, of 64KB tile in texels, BPP = 8
{2, 8}, // = (W * (BPP >> 3)) / 128, H / 32
//WxH 256x128, BPP = 16
{4, 4},
//WxH 128x128, BPP = 32
{4, 4},
//WxH 128x64,  BPP = 64
{8, 2},
//WxH 64x64,   BPP = 128
{8, 2}};

// With MSAA, modify DirectX tile dimensions
// MSAA  Divide Tile Dimensions (WxH) by
// 1          1x1
// 2          2x1
// 4          2x2
// 8          4x2
//16          4x4
const uint32_t __GmmMSAAConversion[5][2] =
{
// MSAA 1x
{1, 1},
// MSAA 2x
{2, 1},
// MSAA 4x
{2, 2},
// MSAA 8x
{4, 2},
// MSAA 16x
{4, 4}};