xref: /aosp_15_r20/external/mesa3d/src/gallium/drivers/d3d12/d3d12_video_encoder_nalu_writer_hevc.cpp (revision 6104692788411f58d303aa86923a9ff6ecaded22)
1 /*
2  * Copyright © Microsoft Corporation
3  *
4  * Permission is hereby granted, free of charge, to any person obtaining a
5  * copy of this software and associated documentation files (the "Software"),
6  * to deal in the Software without restriction, including without limitation
7  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8  * and/or sell copies of the Software, and to permit persons to whom the
9  * Software is furnished to do so, subject to the following conditions:
10  *
11  * The above copyright notice and this permission notice (including the next
12  * paragraph) shall be included in all copies or substantial portions of the
13  * Software.
14  *
15  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
18  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20  * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
21  * IN THE SOFTWARE.
22  */
23 
24 #include "d3d12_video_encoder_nalu_writer_hevc.h"
25 #include <algorithm>
26 
27 // Writes the HEVC VPS structure into a bitstream passed in headerBitstream
28 // Function resizes bitstream accordingly and puts result in byte vector
29 void
vps_to_nalu_bytes(HevcVideoParameterSet * pVPS,std::vector<BYTE> & headerBitstream,std::vector<BYTE>::iterator placingPositionStart,size_t & writtenBytes)30 d3d12_video_nalu_writer_hevc::vps_to_nalu_bytes(HevcVideoParameterSet *pVPS,
31                     std::vector<BYTE> &headerBitstream,
32                     std::vector<BYTE>::iterator placingPositionStart,
33                     size_t &writtenBytes) {
34     generic_write_bytes(headerBitstream, placingPositionStart, writtenBytes, pVPS);
35 }
36 
37 // Writes the HEVC pSPS structure into a bitstream passed in headerBitstream
38 // Function resizes bitstream accordingly and puts result in byte vector
39 void
sps_to_nalu_bytes(HevcSeqParameterSet * pSPS,std::vector<BYTE> & headerBitstream,std::vector<BYTE>::iterator placingPositionStart,size_t & writtenBytes)40 d3d12_video_nalu_writer_hevc::sps_to_nalu_bytes(HevcSeqParameterSet *pSPS,
41                     std::vector<BYTE> &headerBitstream,
42                     std::vector<BYTE>::iterator placingPositionStart,
43                     size_t &writtenBytes) {
44     generic_write_bytes(headerBitstream, placingPositionStart, writtenBytes, pSPS);
45 }
46 
47 // Writes the HEVC PPS structure into a bitstream passed in headerBitstream
48 // Function resizes bitstream accordingly and puts result in byte vector
49 void
pps_to_nalu_bytes(HevcPicParameterSet * pPPS,std::vector<BYTE> & headerBitstream,std::vector<BYTE>::iterator placingPositionStart,size_t & writtenBytes)50 d3d12_video_nalu_writer_hevc::pps_to_nalu_bytes(HevcPicParameterSet *pPPS,
51                     std::vector<BYTE> &headerBitstream,
52                     std::vector<BYTE>::iterator placingPositionStart,
53                     size_t &writtenBytes) {
54     generic_write_bytes(headerBitstream, placingPositionStart, writtenBytes, pPPS);
55 }
56 
57 void
write_end_of_stream_nalu(std::vector<BYTE> & headerBitstream,std::vector<BYTE>::iterator placingPositionStart,size_t & writtenBytes)58 d3d12_video_nalu_writer_hevc::write_end_of_stream_nalu(std::vector<BYTE> &headerBitstream,
59                                 std::vector<BYTE>::iterator placingPositionStart,
60                                 size_t &writtenBytes) {
61     HEVCNaluHeader endOfStreamNALU =
62     {
63         // uint8_t forbidden_zero_bit;
64         static_cast<uint8_t>(0u),
65         // uint8_t nal_unit_type
66         static_cast<uint8_t>(HEVC_NALU_EOB_NUT),
67         // uint8_t nuh_layer_id
68         static_cast<uint8_t>(0u),
69         // uint8_t nuh_temporal_id_plus1
70         static_cast<uint8_t>(1u)
71     };
72     generic_write_bytes(headerBitstream, placingPositionStart, writtenBytes, &endOfStreamNALU);
73 }
74 
75 void
write_end_of_sequence_nalu(std::vector<BYTE> & headerBitstream,std::vector<BYTE>::iterator placingPositionStart,size_t & writtenBytes)76 d3d12_video_nalu_writer_hevc::write_end_of_sequence_nalu(std::vector<BYTE> &headerBitstream,
77                                 std::vector<BYTE>::iterator placingPositionStart,
78                                 size_t &writtenBytes) {
79     HEVCNaluHeader endOfSeqNALU =
80     {
81         // uint8_t forbidden_zero_bit;
82         static_cast<uint8_t>(0u),
83         // uint8_t nal_unit_type
84         static_cast<uint8_t>(HEVC_NALU_EOS_NUT),
85         // uint8_t nuh_layer_id
86         static_cast<uint8_t>(0u),
87         // uint8_t nuh_temporal_id_plus1
88         static_cast<uint8_t>(1u)
89     };
90     generic_write_bytes(headerBitstream, placingPositionStart, writtenBytes, &endOfSeqNALU);
91 }
92 
93 void
write_aud(std::vector<BYTE> & headerBitstream,std::vector<BYTE>::iterator placingPositionStart,D3D12_VIDEO_ENCODER_FRAME_TYPE_HEVC frameType,size_t & writtenBytes)94 d3d12_video_nalu_writer_hevc::write_aud(std::vector<BYTE> &headerBitstream,
95                                         std::vector<BYTE>::iterator placingPositionStart,
96                                         D3D12_VIDEO_ENCODER_FRAME_TYPE_HEVC frameType,
97                                         size_t &writtenBytes) {
98     HevcAccessUnitDelimiter AUD = {};
99 
100     AUD.nalu =
101     {
102         // uint8_t forbidden_zero_bit;
103         static_cast<uint8_t>(0u),
104         // uint8_t nal_unit_type
105         static_cast<uint8_t>(HEVC_NALU_AUD_NUT),
106         // uint8_t nuh_layer_id
107         static_cast<uint8_t>(0u),
108         // uint8_t nuh_temporal_id_plus1
109         static_cast<uint8_t>(1u)
110     };
111 
112     // pic_type slice_type values that may be present in the coded picture
113     switch (frameType)
114     {
115         case D3D12_VIDEO_ENCODER_FRAME_TYPE_HEVC_IDR_FRAME:
116         case D3D12_VIDEO_ENCODER_FRAME_TYPE_HEVC_I_FRAME:
117         {
118             AUD.pic_type = 0u; // 0 I
119         } break;
120         case D3D12_VIDEO_ENCODER_FRAME_TYPE_HEVC_P_FRAME:
121         {
122             AUD.pic_type = 1u; // 1 P, I
123         } break;
124         case D3D12_VIDEO_ENCODER_FRAME_TYPE_HEVC_B_FRAME:
125         {
126             AUD.pic_type = 2u; // 2 B, P, I
127         } break;
128         default:
129         {
130             debug_printf("d3d12_video_nalu_writer_hevc::write_aud failed: Invalid D3D12_VIDEO_ENCODER_FRAME_TYPE_HEVC frameType argument \n");
131             assert(false);
132         } break;
133     }
134 
135     generic_write_bytes(headerBitstream, placingPositionStart, writtenBytes, &AUD);
136 }
137 
138 void
generic_write_bytes(std::vector<BYTE> & headerBitstream,std::vector<BYTE>::iterator placingPositionStart,size_t & writtenBytes,void * pStructure)139 d3d12_video_nalu_writer_hevc::generic_write_bytes( std::vector<BYTE> &headerBitstream,
140                                                 std::vector<BYTE>::iterator placingPositionStart,
141                                                 size_t &writtenBytes,
142                                                 void *pStructure)
143 {
144     // Wrap pSPS into NALU and copy full NALU into output byte array
145     d3d12_video_encoder_bitstream rbsp, nalu;
146 
147     /*HEVCNaluHeader nalu is in all Hevc*ParameterSet structures at the beggining*/
148     HEVCNaluHeader* nal_header = ((HEVCNaluHeader *) pStructure);
149 
150     if (!rbsp.create_bitstream(MAX_COMPRESSED_NALU)) {
151         debug_printf("rbsp.create_bitstream(MAX_COMPRESSED_NALU) failed\n");
152         assert(false);
153     }
154 
155     if (!nalu.create_bitstream(2 * MAX_COMPRESSED_NALU)) {
156         debug_printf("nalu.create_bitstream(2 * MAX_COMPRESSED_NALU) failed\n");
157         assert(false);
158     }
159 
160     rbsp.set_start_code_prevention(true);
161     if (write_bytes_from_struct(&rbsp, pStructure, nal_header->nal_unit_type) <= 0u) {
162         debug_printf("write_bytes_from_struct(&rbsp, pStructure, nal_header->nal_unit_type) didn't write any bytes.\n");
163         assert(false);
164     }
165 
166     if (wrap_rbsp_into_nalu(&nalu, &rbsp, nal_header) <= 0u) {
167         debug_printf("wrap_rbsp_into_nalu(&nalu, &rbsp, nal_header) didn't write any bytes.\n");
168         assert(false);
169     }
170 
171     // Deep copy nalu into headerBitstream, nalu gets out of scope here and its destructor frees the nalu object buffer
172     // memory.
173     uint8_t *naluBytes    = nalu.get_bitstream_buffer();
174     size_t   naluByteSize = nalu.get_byte_count();
175 
176     auto startDstIndex = std::distance(headerBitstream.begin(), placingPositionStart);
177     if (headerBitstream.size() < (startDstIndex + naluByteSize)) {
178         headerBitstream.resize(startDstIndex + naluByteSize);
179     }
180 
181     std::copy_n(&naluBytes[0], naluByteSize, &headerBitstream.data()[startDstIndex]);
182 
183     writtenBytes = naluByteSize;
184 }
185 
186 uint32_t
write_bytes_from_struct(d3d12_video_encoder_bitstream * pBitstream,void * pData,uint8_t nal_unit_type)187 d3d12_video_nalu_writer_hevc::write_bytes_from_struct(d3d12_video_encoder_bitstream *pBitstream, void *pData, uint8_t nal_unit_type)
188 {
189     switch(nal_unit_type)
190     {
191         case HEVC_NALU_VPS_NUT:
192         {
193             return write_vps_bytes(pBitstream, (HevcVideoParameterSet *) pData);
194         } break;
195         case HEVC_NALU_SPS_NUT:
196         {
197             return write_sps_bytes(pBitstream, (HevcSeqParameterSet *) pData);
198         } break;
199         case HEVC_NALU_PPS_NUT:
200         {
201             return write_pps_bytes(pBitstream, (HevcPicParameterSet *) pData);
202         } break;
203         case HEVC_NALU_EOS_NUT:
204         case HEVC_NALU_EOB_NUT:
205         {
206             // Do nothing for these two, just the header suffices
207             return 1;
208         } break;
209         case HEVC_NALU_AUD_NUT:
210         {
211             return write_aud_bytes(pBitstream, (HevcAccessUnitDelimiter *) pData);
212         } break;
213         default:
214         {
215             unreachable("Unsupported NALU value");
216         } break;
217     }
218 }
219 
220 uint32_t
write_aud_bytes(d3d12_video_encoder_bitstream * pBitstream,HevcAccessUnitDelimiter * pAUD)221 d3d12_video_nalu_writer_hevc::write_aud_bytes(d3d12_video_encoder_bitstream *pBitstream, HevcAccessUnitDelimiter *pAUD)
222 {
223     int32_t iBytesWritten = pBitstream->get_byte_count();
224 
225     pBitstream->put_bits(3, pAUD->pic_type);
226 
227     rbsp_trailing(pBitstream);
228     pBitstream->flush();
229 
230     iBytesWritten = pBitstream->get_byte_count() - iBytesWritten;
231     return (uint32_t) iBytesWritten;
232 }
233 
234 uint32_t
write_vps_bytes(d3d12_video_encoder_bitstream * pBitstream,HevcVideoParameterSet * vps)235 d3d12_video_nalu_writer_hevc::write_vps_bytes(d3d12_video_encoder_bitstream *pBitstream, HevcVideoParameterSet *vps)
236 {
237     int32_t iBytesWritten = pBitstream->get_byte_count();
238 
239     pBitstream->put_bits(4, vps->vps_video_parameter_set_id);
240     pBitstream->put_bits(2, 3); //vps_reserved_three_2bits
241     pBitstream->put_bits(6, vps->vps_max_layers_minus1);
242     pBitstream->put_bits(3, vps->vps_max_sub_layers_minus1);
243     pBitstream->put_bits(1, vps->vps_temporal_id_nesting_flag);
244     pBitstream->put_bits(16, 0xffff); //vps_reserved_ffff_16bits
245 
246     write_profile_tier_level(pBitstream, &vps->ptl);
247 
248     pBitstream->put_bits(1,vps->vps_sub_layer_ordering_info_present_flag);
249 
250     for (int i = 0; i <= vps->vps_max_sub_layers_minus1; i++) {
251         pBitstream->exp_Golomb_ue(vps->vps_max_dec_pic_buffering_minus1[i]);
252         pBitstream->exp_Golomb_ue(vps->vps_max_num_reorder_pics[i]);
253         pBitstream->exp_Golomb_ue(vps->vps_max_latency_increase_plus1[i]);
254     }
255 
256     pBitstream->put_bits(6, vps->vps_max_layer_id);
257     pBitstream->exp_Golomb_ue(vps->vps_num_layer_sets_minus1);
258     pBitstream->put_bits(1, vps->vps_timing_info_present_flag);
259 
260     pBitstream->put_bits(1, 0); // vps_extension_flag
261 
262     rbsp_trailing(pBitstream);
263     pBitstream->flush();
264 
265     iBytesWritten = pBitstream->get_byte_count() - iBytesWritten;
266     return (uint32_t) iBytesWritten;
267 }
268 
269 uint32_t
write_sps_bytes(d3d12_video_encoder_bitstream * pBitstream,HevcSeqParameterSet * pSPS)270 d3d12_video_nalu_writer_hevc::write_sps_bytes(d3d12_video_encoder_bitstream *pBitstream,
271                                             HevcSeqParameterSet *pSPS)
272 {
273     int32_t iBytesWritten = pBitstream->get_byte_count();
274 
275     pBitstream->put_bits(4, pSPS->sps_video_parameter_set_id);
276     pBitstream->put_bits(3, pSPS->sps_max_sub_layers_minus1);
277     pBitstream->put_bits(1, pSPS->sps_temporal_id_nesting_flag);
278 
279     write_profile_tier_level(pBitstream, &pSPS->ptl);
280 
281     pBitstream->exp_Golomb_ue(pSPS->sps_seq_parameter_set_id);
282 
283     pBitstream->exp_Golomb_ue(pSPS->chroma_format_idc);
284 
285     pBitstream->exp_Golomb_ue(pSPS->pic_width_in_luma_samples);
286     pBitstream->exp_Golomb_ue(pSPS->pic_height_in_luma_samples);
287 
288     pBitstream->put_bits(1, pSPS->conformance_window_flag);
289     if (pSPS->conformance_window_flag) {
290         pBitstream->exp_Golomb_ue(pSPS->conf_win_left_offset);
291         pBitstream->exp_Golomb_ue(pSPS->conf_win_right_offset);
292         pBitstream->exp_Golomb_ue(pSPS->conf_win_top_offset);
293         pBitstream->exp_Golomb_ue(pSPS->conf_win_bottom_offset);
294     }
295 
296     pBitstream->exp_Golomb_ue(pSPS->bit_depth_luma_minus8);
297     pBitstream->exp_Golomb_ue(pSPS->bit_depth_chroma_minus8);
298 
299     pBitstream->exp_Golomb_ue(pSPS->log2_max_pic_order_cnt_lsb_minus4);
300 
301     pBitstream->put_bits(1, pSPS->sps_sub_layer_ordering_info_present_flag);
302 
303     for (int i = 0; i <= pSPS->sps_max_sub_layers_minus1; i++) {
304         pBitstream->exp_Golomb_ue(pSPS->sps_max_dec_pic_buffering_minus1[i]);
305         pBitstream->exp_Golomb_ue(pSPS->sps_max_num_reorder_pics[i]);
306         pBitstream->exp_Golomb_ue(pSPS->sps_max_latency_increase_plus1[i]);
307     }
308 
309     pBitstream->exp_Golomb_ue(pSPS->log2_min_luma_coding_block_size_minus3);
310     pBitstream->exp_Golomb_ue(pSPS->log2_diff_max_min_luma_coding_block_size);
311     pBitstream->exp_Golomb_ue(pSPS->log2_min_transform_block_size_minus2);
312     pBitstream->exp_Golomb_ue(pSPS->log2_diff_max_min_transform_block_size);
313 
314     pBitstream->exp_Golomb_ue(pSPS->max_transform_hierarchy_depth_inter);
315     pBitstream->exp_Golomb_ue(pSPS->max_transform_hierarchy_depth_intra);
316 
317     pBitstream->put_bits(1, pSPS->scaling_list_enabled_flag);
318 
319     pBitstream->put_bits(1, pSPS->amp_enabled_flag);
320     pBitstream->put_bits(1, pSPS->sample_adaptive_offset_enabled_flag);
321 
322     pBitstream->put_bits(1, pSPS->pcm_enabled_flag);
323     if (pSPS->pcm_enabled_flag) {
324     pBitstream->put_bits(4, pSPS->bit_depth_luma_minus8 + 7);
325     pBitstream->put_bits(4, pSPS->bit_depth_chroma_minus8 + 7);
326         pBitstream->exp_Golomb_ue(pSPS->log2_min_luma_coding_block_size_minus3);
327         pBitstream->exp_Golomb_ue(pSPS->log2_diff_max_min_luma_coding_block_size);
328     pBitstream->put_bits(1, pSPS->pcm_loop_filter_disabled_flag);
329     }
330 
331     pBitstream->exp_Golomb_ue(pSPS->num_short_term_ref_pic_sets);
332     for (int i = 0; i < pSPS->num_short_term_ref_pic_sets; i++) {
333         write_rps(pBitstream, pSPS, i, false);
334     }
335 
336     pBitstream->put_bits(1, pSPS->long_term_ref_pics_present_flag);
337     if (pSPS->long_term_ref_pics_present_flag) {
338         pBitstream->exp_Golomb_ue(pSPS->num_long_term_ref_pics_sps);
339         for (int i = 0; i < pSPS->num_long_term_ref_pics_sps; i++) {
340             pBitstream->put_bits(pSPS->log2_max_pic_order_cnt_lsb_minus4 + 4, pSPS->lt_ref_pic_poc_lsb_sps[i]);
341             pBitstream->put_bits(1, pSPS->used_by_curr_pic_lt_sps_flag[i]);
342         }
343     }
344 
345     pBitstream->put_bits(1, pSPS->sps_temporal_mvp_enabled_flag);
346     pBitstream->put_bits(1, pSPS->strong_intra_smoothing_enabled_flag);
347     pBitstream->put_bits(1, pSPS->vui_parameters_present_flag);
348 
349     pBitstream->put_bits(1, pSPS->vui.aspect_ratio_info_present_flag);
350     if (pSPS->vui.aspect_ratio_info_present_flag) {
351         pBitstream->put_bits(8, pSPS->vui.aspect_ratio_idc);
352         if (pSPS->vui.aspect_ratio_idc == 255) {
353             pBitstream->put_bits(16, pSPS->vui.sar_width);
354             pBitstream->put_bits(16, pSPS->vui.sar_height);
355         }
356     }
357 
358     pBitstream->put_bits(1, pSPS->vui.overscan_info_present_flag);
359     if (pSPS->vui.overscan_info_present_flag) {
360         pBitstream->put_bits(1, pSPS->vui.overscan_appropriate_flag);
361     }
362 
363     pBitstream->put_bits(1, pSPS->vui.video_signal_type_present_flag);
364     if (pSPS->vui.video_signal_type_present_flag) {
365         pBitstream->put_bits(3, pSPS->vui.video_format);
366         pBitstream->put_bits(1, pSPS->vui.video_full_range_flag);
367         pBitstream->put_bits(1, pSPS->vui.colour_description_present_flag);
368         if (pSPS->vui.colour_description_present_flag) {
369             pBitstream->put_bits(8, pSPS->vui.colour_primaries);
370             pBitstream->put_bits(8, pSPS->vui.transfer_characteristics);
371             pBitstream->put_bits(8, pSPS->vui.matrix_coeffs);
372         }
373     }
374 
375     pBitstream->put_bits(1, pSPS->vui.chroma_loc_info_present_flag);
376     if (pSPS->vui.chroma_loc_info_present_flag) {
377         pBitstream->exp_Golomb_ue(pSPS->vui.chroma_sample_loc_type_top_field);
378         pBitstream->exp_Golomb_ue(pSPS->vui.chroma_sample_loc_type_bottom_field);
379     }
380 
381     pBitstream->put_bits(1, pSPS->vui.neutral_chroma_indication_flag);
382     pBitstream->put_bits(1, pSPS->vui.field_seq_flag);
383     pBitstream->put_bits(1, pSPS->vui.frame_field_info_present_flag);
384     pBitstream->put_bits(1, pSPS->vui.default_display_window_flag);
385     if (pSPS->vui.default_display_window_flag) {
386         pBitstream->exp_Golomb_ue(pSPS->vui.def_disp_win_left_offset);
387         pBitstream->exp_Golomb_ue(pSPS->vui.def_disp_win_right_offset);
388         pBitstream->exp_Golomb_ue(pSPS->vui.def_disp_win_top_offset);
389         pBitstream->exp_Golomb_ue(pSPS->vui.def_disp_win_bottom_offset);
390     }
391 
392     pBitstream->put_bits(1, pSPS->vui.timing_info_present_flag);
393     if (pSPS->vui.timing_info_present_flag) {
394         pBitstream->put_bits(16, pSPS->vui.num_units_in_tick >> 16);
395         pBitstream->put_bits(16, pSPS->vui.num_units_in_tick & 0xffff);
396         pBitstream->put_bits(16, pSPS->vui.time_scale >> 16);
397         pBitstream->put_bits(16, pSPS->vui.time_scale & 0xffff);
398         pBitstream->put_bits(1, pSPS->vui.poc_proportional_to_timing_flag);
399         if (pSPS->vui.poc_proportional_to_timing_flag) {
400             pBitstream->exp_Golomb_ue(pSPS->vui.num_ticks_poc_diff_one_minus1);
401         }
402 
403         assert(pSPS->vui.hrd_parameters_present_flag == 0);
404         pBitstream->put_bits(1, 0); // hrd_parameters_present_flag = 0 until implementing HRD params
405     }
406 
407     pBitstream->put_bits(1, pSPS->vui.bitstream_restriction_flag);
408     if (pSPS->vui.bitstream_restriction_flag) {
409         pBitstream->put_bits(1, pSPS->vui.tiles_fixed_structure_flag);
410         pBitstream->put_bits(1, pSPS->vui.motion_vectors_over_pic_boundaries_flag);
411         pBitstream->put_bits(1, pSPS->vui.restricted_ref_pic_lists_flag);
412         pBitstream->exp_Golomb_ue(pSPS->vui.min_spatial_segmentation_idc);
413         pBitstream->exp_Golomb_ue(pSPS->vui.max_bytes_per_pic_denom);
414         pBitstream->exp_Golomb_ue(pSPS->vui.max_bits_per_min_cu_denom);
415         pBitstream->exp_Golomb_ue(pSPS->vui.log2_max_mv_length_horizontal);
416         pBitstream->exp_Golomb_ue(pSPS->vui.log2_max_mv_length_vertical);
417     }
418 
419     // Set sps_extension_present_flag if sps_range_extension_flag present
420     pSPS->sps_extension_present_flag = pSPS->sps_range_extension.sps_range_extension_flag ? 1u : 0u;
421 
422     pBitstream->put_bits(1, pSPS->sps_extension_present_flag);
423     if (pSPS->sps_extension_present_flag)
424     {
425         pBitstream->put_bits(1, pSPS->sps_range_extension.sps_range_extension_flag);
426         pBitstream->put_bits(1, 0);// sps_multilayer_extension_flag u(1)
427         pBitstream->put_bits(1, 0);// sps_3d_extension_flag u(1)
428         pBitstream->put_bits(1, 0);// sps_scc_extension_flag u(1)
429         pBitstream->put_bits(4, 0);// sps_extension_4bits u(4)
430     }
431 
432     if (pSPS->sps_range_extension.sps_range_extension_flag)
433     {
434         // sps_range_extension( )
435         pBitstream->put_bits(1, pSPS->sps_range_extension.transform_skip_rotation_enabled_flag);
436         pBitstream->put_bits(1, pSPS->sps_range_extension.transform_skip_context_enabled_flag);
437         pBitstream->put_bits(1, pSPS->sps_range_extension.implicit_rdpcm_enabled_flag);
438         pBitstream->put_bits(1, pSPS->sps_range_extension.explicit_rdpcm_enabled_flag);
439         pBitstream->put_bits(1, pSPS->sps_range_extension.extended_precision_processing_flag);
440         pBitstream->put_bits(1, pSPS->sps_range_extension.intra_smoothing_disabled_flag);
441         pBitstream->put_bits(1, pSPS->sps_range_extension.high_precision_offsets_enabled_flag);
442         pBitstream->put_bits(1, pSPS->sps_range_extension.persistent_rice_adaptation_enabled_flag);
443         pBitstream->put_bits(1, pSPS->sps_range_extension.cabac_bypass_alignment_enabled_flag);
444     }
445 
446     rbsp_trailing(pBitstream);
447     pBitstream->flush();
448 
449     iBytesWritten = pBitstream->get_byte_count() - iBytesWritten;
450     return (uint32_t) iBytesWritten;
451 }
452 
453 uint32_t
write_pps_bytes(d3d12_video_encoder_bitstream * pBitstream,HevcPicParameterSet * pPPS)454 d3d12_video_nalu_writer_hevc::write_pps_bytes(d3d12_video_encoder_bitstream *pBitstream,
455                                             HevcPicParameterSet *pPPS)
456 {
457     int32_t iBytesWritten = pBitstream->get_byte_count();
458 
459     pBitstream->exp_Golomb_ue(pPPS->pps_pic_parameter_set_id);
460     pBitstream->exp_Golomb_ue(pPPS->pps_seq_parameter_set_id);
461 
462     pBitstream->put_bits(1, pPPS->dependent_slice_segments_enabled_flag);
463 
464     pBitstream->put_bits(1, pPPS->output_flag_present_flag);
465     pBitstream->put_bits(3, pPPS->num_extra_slice_header_bits);
466 
467     pBitstream->put_bits(1, pPPS->sign_data_hiding_enabled_flag);
468     pBitstream->put_bits(1, pPPS->cabac_init_present_flag);
469 
470     pBitstream->exp_Golomb_ue(pPPS->num_ref_idx_lx_default_active_minus1[0]);
471     pBitstream->exp_Golomb_ue(pPPS->num_ref_idx_lx_default_active_minus1[1]);
472 
473     pBitstream->exp_Golomb_se(pPPS->init_qp_minus26);
474 
475     pBitstream->put_bits(1, pPPS->constrained_intra_pred_flag);
476     pBitstream->put_bits(1, pPPS->transform_skip_enabled_flag);
477     pBitstream->put_bits(1, pPPS->cu_qp_delta_enabled_flag);
478 
479     if (pPPS->cu_qp_delta_enabled_flag) {
480         pBitstream->exp_Golomb_se(pPPS->diff_cu_qp_delta_depth);
481     }
482 
483     pBitstream->exp_Golomb_se(pPPS->pps_cb_qp_offset);
484     pBitstream->exp_Golomb_se(pPPS->pps_cr_qp_offset);
485 
486     pBitstream->put_bits(1, pPPS->pps_slice_chroma_qp_offsets_present_flag);
487 
488     pBitstream->put_bits(1, pPPS->weighted_pred_flag);
489     pBitstream->put_bits(1, pPPS->weighted_bipred_flag);
490     pBitstream->put_bits(1, pPPS->transquant_bypass_enabled_flag);
491 
492     pBitstream->put_bits(1, pPPS->tiles_enabled_flag);
493     pBitstream->put_bits(1, pPPS->entropy_coding_sync_enabled_flag);
494 
495     if (pPPS->tiles_enabled_flag) {
496         pBitstream->exp_Golomb_ue(pPPS->num_tile_columns_minus1);
497         pBitstream->exp_Golomb_ue(pPPS->num_tile_rows_minus1);
498         pBitstream->put_bits(1, pPPS->uniform_spacing_flag);
499         if (!pPPS->uniform_spacing_flag) {
500             for (int i = 0; i < pPPS->num_tile_columns_minus1; i++) {
501                 pBitstream->exp_Golomb_ue(pPPS->column_width_minus1[i]);
502             }
503             for (int i = 0; i < pPPS->num_tile_rows_minus1; i++) {
504                 pBitstream->exp_Golomb_ue(pPPS->row_height_minus1[i]);
505             }
506         }
507         pBitstream->put_bits(1, pPPS->loop_filter_across_tiles_enabled_flag);
508     }
509 
510     pBitstream->put_bits(1, pPPS->pps_loop_filter_across_slices_enabled_flag);
511     pBitstream->put_bits(1, pPPS->deblocking_filter_control_present_flag);
512     if (pPPS->deblocking_filter_control_present_flag) {
513         pBitstream->put_bits(1, pPPS->deblocking_filter_override_enabled_flag);
514         pBitstream->put_bits(1, pPPS->pps_deblocking_filter_disabled_flag);
515         if (!pPPS->pps_deblocking_filter_disabled_flag) {
516             pBitstream->exp_Golomb_se(pPPS->pps_beta_offset_div2);
517             pBitstream->exp_Golomb_se(pPPS->pps_tc_offset_div2);
518         }
519     }
520 
521     pBitstream->put_bits(1, pPPS->pps_scaling_list_data_present_flag);
522     if (pPPS->pps_scaling_list_data_present_flag) {
523         assert(0); //, "scaling list syntax is not implemented yet");
524     }
525 
526     pBitstream->put_bits(1, pPPS->lists_modification_present_flag);
527     pBitstream->exp_Golomb_ue(pPPS->log2_parallel_merge_level_minus2);
528     pBitstream->put_bits(1, pPPS->slice_segment_header_extension_present_flag);
529 
530     // Set pps_extension_present_flag if sps_range_extension_flag present
531     pPPS->pps_extension_present_flag = pPPS->pps_range_extension.pps_range_extension_flag ? 1u : 0u;
532 
533     pBitstream->put_bits(1, pPPS->pps_extension_present_flag);
534     if (pPPS->pps_extension_present_flag)
535     {
536         pBitstream->put_bits(1, pPPS->pps_range_extension.pps_range_extension_flag);
537         pBitstream->put_bits(1, 0);// pps_multilayer_extension_flag u(1)
538         pBitstream->put_bits(1, 0);// pps_3d_extension_flag u(1)
539         pBitstream->put_bits(1, 0);// pps_scc_extension_flag u(1)
540         pBitstream->put_bits(4, 0);// pps_extension_4bits u(4)
541     }
542 
543     if (pPPS->pps_range_extension.pps_range_extension_flag)
544     {
545         // pps_range_extension( )
546         if( pPPS->transform_skip_enabled_flag )
547             pBitstream->exp_Golomb_ue(pPPS->pps_range_extension.log2_max_transform_skip_block_size_minus2);
548         pBitstream->put_bits(1, pPPS->pps_range_extension.cross_component_prediction_enabled_flag);
549         pBitstream->put_bits(1, pPPS->pps_range_extension.chroma_qp_offset_list_enabled_flag);
550         if(pPPS->pps_range_extension.chroma_qp_offset_list_enabled_flag) {
551             pBitstream->exp_Golomb_ue(pPPS->pps_range_extension.diff_cu_chroma_qp_offset_depth);
552             pBitstream->exp_Golomb_ue(pPPS->pps_range_extension.chroma_qp_offset_list_len_minus1);
553             for( unsigned i = 0; i <= pPPS->pps_range_extension.chroma_qp_offset_list_len_minus1; i++ ) {
554                 pBitstream->exp_Golomb_se(pPPS->pps_range_extension.cb_qp_offset_list[i]);
555                 pBitstream->exp_Golomb_se(pPPS->pps_range_extension.cr_qp_offset_list[i]);
556             }
557         }
558         pBitstream->exp_Golomb_ue(pPPS->pps_range_extension.log2_sao_offset_scale_luma);
559         pBitstream->exp_Golomb_ue(pPPS->pps_range_extension.log2_sao_offset_scale_chroma);
560     }
561 
562     rbsp_trailing(pBitstream);
563     pBitstream->flush();
564 
565     iBytesWritten = pBitstream->get_byte_count() - iBytesWritten;
566     return (uint32_t) iBytesWritten;
567 }
568 
569 uint32_t
wrap_rbsp_into_nalu(d3d12_video_encoder_bitstream * pNALU,d3d12_video_encoder_bitstream * pRBSP,HEVCNaluHeader * pHeader)570 d3d12_video_nalu_writer_hevc::wrap_rbsp_into_nalu(d3d12_video_encoder_bitstream *pNALU,
571                     d3d12_video_encoder_bitstream *pRBSP,
572                     HEVCNaluHeader *pHeader)
573 {
574     ASSERTED bool isAligned = pRBSP->is_byte_aligned();   // causes side-effects in object state, don't put inside assert()
575     assert(isAligned);
576 
577     int32_t iBytesWritten = pNALU->get_byte_count();
578 
579     pNALU->set_start_code_prevention(false);
580 
581     // NAL start code
582     pNALU->put_bits(24, 0);
583     pNALU->put_bits(8, 1);
584 
585     // NAL header
586     pNALU->put_bits(1, pHeader->forbidden_zero_bit);
587     pNALU->put_bits(6, pHeader->nal_unit_type);
588     pNALU->put_bits(6, pHeader->nuh_layer_id);
589     pNALU->put_bits(3, pHeader->nuh_temporal_id_plus1);
590     pNALU->flush();
591 
592     // NAL body
593     pRBSP->flush();
594 
595     if (pRBSP->get_start_code_prevention_status()) {
596         // Direct copying.
597         pNALU->append_byte_stream(pRBSP);
598     } else {
599         // Copy with start code prevention.
600         pNALU->set_start_code_prevention(true);
601         int32_t  iLength = pRBSP->get_byte_count();
602         uint8_t *pBuffer = pRBSP->get_bitstream_buffer();
603 
604         for (int32_t i = 0; i < iLength; i++) {
605             pNALU->put_bits(8, pBuffer[i]);
606         }
607     }
608 
609     isAligned = pNALU->is_byte_aligned();   // causes side-effects in object state, don't put inside assert()
610     assert(isAligned);
611     write_nalu_end(pNALU);
612 
613     pNALU->flush();
614 
615     iBytesWritten = pNALU->get_byte_count() - iBytesWritten;
616     return (uint32_t) iBytesWritten;
617 }
618 
619 void
write_nalu_end(d3d12_video_encoder_bitstream * pNALU)620 d3d12_video_nalu_writer_hevc::write_nalu_end(d3d12_video_encoder_bitstream *pNALU)
621 {
622     pNALU->flush();
623     pNALU->set_start_code_prevention(false);
624     int32_t iNALUnitLen = pNALU->get_byte_count();
625 
626     if (false == pNALU->m_bBufferOverflow && 0x00 == pNALU->get_bitstream_buffer()[iNALUnitLen - 1]) {
627         pNALU->put_bits(8, 0x03);
628         pNALU->flush();
629     }
630 }
631 
632 void
rbsp_trailing(d3d12_video_encoder_bitstream * pBitstream)633 d3d12_video_nalu_writer_hevc::rbsp_trailing(d3d12_video_encoder_bitstream *pBitstream)
634 {
635     pBitstream->put_bits(1, 1);
636     int32_t iLeft = pBitstream->get_num_bits_for_byte_align();
637 
638     if (iLeft) {
639         pBitstream->put_bits(iLeft, 0);
640     }
641 
642     ASSERTED bool isAligned = pBitstream->is_byte_aligned();   // causes side-effects in object state, don't put inside assert()
643     assert(isAligned);
644 }
645 
646 void
write_profile_tier_level(d3d12_video_encoder_bitstream * rbsp,HEVCProfileTierLevel * ptl)647 d3d12_video_nalu_writer_hevc::write_profile_tier_level(d3d12_video_encoder_bitstream* rbsp, HEVCProfileTierLevel* ptl)
648 {
649     rbsp->put_bits(2, ptl->general_profile_space);
650     rbsp->put_bits(1, ptl->general_tier_flag);
651     rbsp->put_bits(5, ptl->general_profile_idc);
652 
653     for (int j = 0; j < 32; j++) {
654         rbsp->put_bits(1, ptl->general_profile_compatibility_flag[j]);
655     }
656 
657     rbsp->put_bits(1, ptl->general_progressive_source_flag);
658     rbsp->put_bits(1, ptl->general_interlaced_source_flag);
659     rbsp->put_bits(1, ptl->general_non_packed_constraint_flag);
660     rbsp->put_bits(1, ptl->general_frame_only_constraint_flag);
661     if( (ptl->general_profile_idc == 4) || ptl->general_profile_compatibility_flag[4]  ||
662         (ptl->general_profile_idc == 5) || ptl->general_profile_compatibility_flag[5]  ||
663         (ptl->general_profile_idc == 6) || ptl->general_profile_compatibility_flag[6]  ||
664         (ptl->general_profile_idc == 7) || ptl->general_profile_compatibility_flag[7]  ||
665         (ptl->general_profile_idc == 8) || ptl->general_profile_compatibility_flag[8]  ||
666         (ptl->general_profile_idc == 9) || ptl->general_profile_compatibility_flag[9]  ||
667         (ptl->general_profile_idc == 10) || ptl->general_profile_compatibility_flag[10] ||
668         (ptl->general_profile_idc == 11) || ptl->general_profile_compatibility_flag[11])
669     {
670         rbsp->put_bits(1, ptl->general_max_12bit_constraint_flag);
671         rbsp->put_bits(1, ptl->general_max_10bit_constraint_flag);
672         rbsp->put_bits(1, ptl->general_max_8bit_constraint_flag);
673         rbsp->put_bits(1, ptl->general_max_422chroma_constraint_flag);
674         rbsp->put_bits(1, ptl->general_max_420chroma_constraint_flag);
675         rbsp->put_bits(1, ptl->general_max_monochrome_constraint_flag);
676         rbsp->put_bits(1, ptl->general_intra_constraint_flag);
677         rbsp->put_bits(1, ptl->general_one_picture_only_constraint_flag);
678         rbsp->put_bits(1, ptl->general_lower_bit_rate_constraint_flag);
679         if( (ptl->general_profile_idc == 5) || ptl->general_profile_compatibility_flag[5] ||
680             (ptl->general_profile_idc == 9) || ptl->general_profile_compatibility_flag[9] ||
681             (ptl->general_profile_idc == 10) || ptl->general_profile_compatibility_flag[10] ||
682             (ptl->general_profile_idc == 11) || ptl->general_profile_compatibility_flag[11])
683             {
684                 rbsp->put_bits(1, ptl->general_max_14bit_constraint_flag);
685                 rbsp->put_bits(33, 0); // general_reserved_zero_33bits u(33)
686             }
687             else
688             {
689                 rbsp->put_bits(32, 0); // general_reserved_zero_34bits u(34)
690                 rbsp->put_bits(2, 0); // general_reserved_zero_34bits u(34)
691             }
692 
693     }
694     else if( (ptl->general_profile_idc == 2) || ptl->general_profile_compatibility_flag[2])
695     {
696         rbsp->put_bits(7, 0); // general_reserved_zero_7bits
697         rbsp->put_bits(1, ptl->general_one_picture_only_constraint_flag);
698         rbsp->put_bits(32, 0); // general_reserved_zero_35bits u(35)
699         rbsp->put_bits(3, 0); // general_reserved_zero_35bits u(35)
700     }
701     else
702     {
703         rbsp->put_bits(32, 0); // general_reserved_zero_43bits u(43)
704         rbsp->put_bits(11, 0); // general_reserved_zero_43bits u(43)
705     }
706 
707     if( (ptl->general_profile_idc == 1) || ptl->general_profile_compatibility_flag[ 1 ] ||
708         (ptl->general_profile_idc == 2) || ptl->general_profile_compatibility_flag[ 2 ] ||
709         (ptl->general_profile_idc == 3) || ptl->general_profile_compatibility_flag[ 3 ] ||
710         (ptl->general_profile_idc == 4) || ptl->general_profile_compatibility_flag[ 4 ] ||
711         (ptl->general_profile_idc == 5) || ptl->general_profile_compatibility_flag[ 5 ] ||
712         (ptl->general_profile_idc == 9) || ptl->general_profile_compatibility_flag[ 9 ] ||
713         (ptl->general_profile_idc == 11) || ptl->general_profile_compatibility_flag[ 11 ] )
714     {
715         rbsp->put_bits(1, ptl->general_inbld_flag);
716     }
717     else
718     {
719         rbsp->put_bits(1, 0); // general_reserved_zero_bit u(1)
720     }
721 
722     rbsp->put_bits(8, ptl->general_level_idc);
723 }
724 
725 void
write_rps(d3d12_video_encoder_bitstream * rbsp,HevcSeqParameterSet * pSPS,int stRpsIdx,bool sliceRPS)726 d3d12_video_nalu_writer_hevc::write_rps(d3d12_video_encoder_bitstream* rbsp, HevcSeqParameterSet* pSPS, int stRpsIdx, bool sliceRPS)
727 {
728     HEVCReferencePictureSet* rps = &(pSPS->rpsShortTerm[stRpsIdx]);
729 
730     if (stRpsIdx != 0) {
731         rbsp->put_bits(1, rps->inter_ref_pic_set_prediction_flag);
732     }
733 
734     if (rps->inter_ref_pic_set_prediction_flag) {
735         if (sliceRPS) {
736             rbsp->exp_Golomb_ue(rps->delta_idx_minus1);
737         }
738         int RefRpsIdx = stRpsIdx - (rps->delta_idx_minus1 + 1);
739         rbsp->put_bits(1, rps->delta_rps_sign);
740         rbsp->exp_Golomb_ue(rps->abs_delta_rps_minus1);
741 
742         HEVCReferencePictureSet* rpsRef = &(pSPS->rpsShortTerm[RefRpsIdx]);
743         auto numDeltaPocs = rpsRef->num_negative_pics + rpsRef->num_positive_pics;
744         for (int j = 0; j <= numDeltaPocs; j++) {
745             rbsp->put_bits(1, rps->used_by_curr_pic_flag[j]);
746             if (!rps->used_by_curr_pic_flag[j]) {
747                 rbsp->put_bits(1, rps->use_delta_flag[j]);
748             }
749         }
750     } else {
751         rbsp->exp_Golomb_ue(rps->num_negative_pics);
752         rbsp->exp_Golomb_ue(rps->num_positive_pics);
753 
754         for (int i = 0; i < rps->num_negative_pics; i++) {
755             rbsp->exp_Golomb_ue(rps->delta_poc_s0_minus1[i]);
756             rbsp->put_bits(1, rps->used_by_curr_pic_s0_flag[i]);
757         }
758 
759         for (int i = 0; i < rps->num_positive_pics; i++) {
760             rbsp->exp_Golomb_ue(rps->delta_poc_s1_minus1[i]);
761             rbsp->put_bits(1, rps->used_by_curr_pic_s1_flag[i]);
762         }
763     }
764 }
765