xref: /linux/drivers/gpu/drm/amd/display/dc/resource/dcn302/dcn302_resource.c (revision 1fc5a74b108fc90951890ec513ac81869f5eaff1)
1 /*
2  * Copyright 2020 Advanced Micro Devices, Inc.
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 shall be included in
12  * all copies or substantial portions of the Software.
13  *
14  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
17  * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18  * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19  * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20  * OTHER DEALINGS IN THE SOFTWARE.
21  *
22  * Authors: AMD
23  *
24  */
25 
26 #include "dcn302/dcn302_init.h"
27 #include "dcn302_resource.h"
28 #include "dcn302/dcn302_dccg.h"
29 #include "irq/dcn302/irq_service_dcn302.h"
30 #include "basics/conversion.h"
31 
32 #include "dcn30/dcn30_dio_link_encoder.h"
33 #include "dcn30/dcn30_dio_stream_encoder.h"
34 #include "dcn30/dcn30_dwb.h"
35 #include "dcn30/dcn30_dpp.h"
36 #include "dcn30/dcn30_hpo_frl_link_encoder.h"
37 #include "dcn30/dcn30_hpo_frl_stream_encoder.h"
38 #include "dcn30/dcn30_hubbub.h"
39 #include "dcn30/dcn30_hubp.h"
40 #include "dcn30/dcn30_mmhubbub.h"
41 #include "dcn30/dcn30_mpc.h"
42 #include "dcn30/dcn30_opp.h"
43 #include "dcn30/dcn30_optc.h"
44 #include "dcn30/dcn30_resource.h"
45 
46 #include "dcn20/dcn20_dsc.h"
47 #include "dcn20/dcn20_resource.h"
48 
49 #include "dml/dcn30/dcn30_fpu.h"
50 
51 #include "dcn10/dcn10_resource.h"
52 #include "dio/dcn10/dcn10_dio.h"
53 
54 #include "link_service.h"
55 
56 #include "dce/dce_abm.h"
57 #include "dce/dce_audio.h"
58 #include "dce/dce_aux.h"
59 #include "dce/dce_clock_source.h"
60 #include "dce/dce_hwseq.h"
61 #include "dce/dce_i2c_hw.h"
62 #include "dce/dce_panel_cntl.h"
63 #include "dce/dmub_abm.h"
64 #include "dce/dmub_psr.h"
65 #include "clk_mgr.h"
66 
67 #include "hw_sequencer_private.h"
68 #include "reg_helper.h"
69 #include "resource.h"
70 #include "vm_helper.h"
71 
72 #include "dml/dcn302/dcn302_fpu.h"
73 
74 #include "dimgrey_cavefish_ip_offset.h"
75 #include "dcn/dcn_3_0_2_offset.h"
76 #include "dcn/dcn_3_0_2_sh_mask.h"
77 #include "dpcs/dpcs_3_0_0_offset.h"
78 #include "dpcs/dpcs_3_0_0_sh_mask.h"
79 #include "nbio/nbio_7_4_offset.h"
80 #include "amdgpu_socbb.h"
81 
82 #define DC_LOGGER \
83 	dc->ctx->logger
84 #define DC_LOGGER_INIT(logger)
85 
86 static const struct dc_debug_options debug_defaults_drv = {
87 		.limit_ffe = 3,
88 		.disable_dmcu = true,
89 		.force_abm_enable = false,
90 		.clock_trace = true,
91 		.disable_pplib_clock_request = true,
92 		.pipe_split_policy = MPC_SPLIT_DYNAMIC,
93 		.force_single_disp_pipe_split = false,
94 		.disable_dcc = DCC_ENABLE,
95 		.vsr_support = true,
96 		.performance_trace = false,
97 		.max_downscale_src_width = 7680,/*upto 8K*/
98 		.disable_pplib_wm_range = false,
99 		.scl_reset_length10 = true,
100 		.sanity_checks = false,
101 		.underflow_assert_delay_us = 0xFFFFFFFF,
102 		.dwb_fi_phase = -1, // -1 = disable,
103 		.dmub_command_table = true,
104 		.use_max_lb = true,
105 		.exit_idle_opt_for_cursor_updates = true,
106 		.using_dml2 = false,
107 };
108 
109 static const struct dc_check_config config_defaults = {
110 		.enable_legacy_fast_update = false,
111 };
112 
113 static const struct dc_panel_config panel_config_defaults = {
114 		.psr = {
115 			.disable_psr = false,
116 			.disallow_psrsu = false,
117 			.disallow_replay = false,
118 		},
119 };
120 
121 enum dcn302_clk_src_array_id {
122 	DCN302_CLK_SRC_PLL0,
123 	DCN302_CLK_SRC_PLL1,
124 	DCN302_CLK_SRC_PLL2,
125 	DCN302_CLK_SRC_PLL3,
126 	DCN302_CLK_SRC_PLL4,
127 	DCN302_CLK_SRC_TOTAL
128 };
129 
130 static const struct resource_caps res_cap_dcn302 = {
131 		.num_timing_generator = 5,
132 		.num_opp = 5,
133 		.num_video_plane = 5,
134 		.num_audio = 5,
135 		.num_stream_encoder = 5,
136 		.num_hpo_frl = 1,
137 		.num_dwb = 1,
138 		.num_ddc = 5,
139 		.num_vmid = 16,
140 		.num_mpc_3dlut = 2,
141 		.num_dsc = 5,
142 };
143 
144 static const struct dc_plane_cap plane_cap = {
145 		.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
146 		.per_pixel_alpha = true,
147 		.pixel_format_support = {
148 				.argb8888 = true,
149 				.nv12 = true,
150 				.fp16 = true,
151 				.p010 = true,
152 				.ayuv = false,
153 		},
154 		.max_upscale_factor = {
155 				.argb8888 = 16000,
156 				.nv12 = 16000,
157 				.fp16 = 16000
158 		},
159 		/* 6:1 downscaling ratio: 1000/6 = 166.666 */
160 		.max_downscale_factor = {
161 				.argb8888 = 167,
162 				.nv12 = 167,
163 				.fp16 = 167
164 		},
165 		16,
166 		16
167 };
168 
169 /* NBIO */
170 #define NBIO_BASE_INNER(seg) \
171 		NBIO_BASE__INST0_SEG ## seg
172 
173 #define NBIO_BASE(seg) \
174 		NBIO_BASE_INNER(seg)
175 
176 #define NBIO_SR(reg_name)\
177 		.reg_name = NBIO_BASE(mm ## reg_name ## _BASE_IDX) + \
178 		mm ## reg_name
179 
180 /* DCN */
181 #define BASE_INNER(seg) DCN_BASE__INST0_SEG ## seg
182 
183 #define BASE(seg) BASE_INNER(seg)
184 
185 #define SR(reg_name)\
186 		.reg_name = BASE(mm ## reg_name ## _BASE_IDX) + mm ## reg_name
187 
188 #define SF(reg_name, field_name, post_fix)\
189 		.field_name = reg_name ## __ ## field_name ## post_fix
190 
191 #define SRI(reg_name, block, id)\
192 		.reg_name = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + mm ## block ## id ## _ ## reg_name
193 
194 #define SRI2(reg_name, block, id)\
195 		.reg_name = BASE(mm ## reg_name ## _BASE_IDX) + mm ## reg_name
196 
197 #define SRII(reg_name, block, id)\
198 		.reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
199 		mm ## block ## id ## _ ## reg_name
200 
201 #define DCCG_SRII(reg_name, block, id)\
202 		.block ## _ ## reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
203 		mm ## block ## id ## _ ## reg_name
204 
205 #define VUPDATE_SRII(reg_name, block, id)\
206 		.reg_name[id] = BASE(mm ## reg_name ## _ ## block ## id ## _BASE_IDX) + \
207 		mm ## reg_name ## _ ## block ## id
208 
209 #define SRII_DWB(reg_name, temp_name, block, id)\
210 		.reg_name[id] = BASE(mm ## block ## id ## _ ## temp_name ## _BASE_IDX) + \
211 		mm ## block ## id ## _ ## temp_name
212 
213 #define SF_DWB2(reg_name, block, id, field_name, post_fix)	\
214 	.field_name = reg_name ## __ ## field_name ## post_fix
215 
216 #define SRII_MPC_RMU(reg_name, block, id)\
217 		.RMU##_##reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
218 		mm ## block ## id ## _ ## reg_name
219 
220 static const struct dcn_hubbub_registers hubbub_reg = {
221 		HUBBUB_REG_LIST_DCN30(0)
222 };
223 
224 static const struct dcn_hubbub_shift hubbub_shift = {
225 		HUBBUB_MASK_SH_LIST_DCN30(__SHIFT)
226 };
227 
228 static const struct dcn_hubbub_mask hubbub_mask = {
229 		HUBBUB_MASK_SH_LIST_DCN30(_MASK)
230 };
231 
232 #define vmid_regs(id)\
233 		[id] = { DCN20_VMID_REG_LIST(id) }
234 
235 static const struct dcn_vmid_registers vmid_regs[] = {
236 		vmid_regs(0),
237 		vmid_regs(1),
238 		vmid_regs(2),
239 		vmid_regs(3),
240 		vmid_regs(4),
241 		vmid_regs(5),
242 		vmid_regs(6),
243 		vmid_regs(7),
244 		vmid_regs(8),
245 		vmid_regs(9),
246 		vmid_regs(10),
247 		vmid_regs(11),
248 		vmid_regs(12),
249 		vmid_regs(13),
250 		vmid_regs(14),
251 		vmid_regs(15)
252 };
253 
254 static const struct dcn20_vmid_shift vmid_shifts = {
255 		DCN20_VMID_MASK_SH_LIST(__SHIFT)
256 };
257 
258 static const struct dcn20_vmid_mask vmid_masks = {
259 		DCN20_VMID_MASK_SH_LIST(_MASK)
260 };
261 
262 static const struct dcn_dio_registers dio_regs = {
263 		DIO_REG_LIST_DCN10()
264 };
265 
266 #define DIO_MASK_SH_LIST(mask_sh)\
267 		HWS_SF(, DIO_MEM_PWR_CTRL, I2C_LIGHT_SLEEP_FORCE, mask_sh)
268 
269 static const struct dcn_dio_shift dio_shift = {
270 		DIO_MASK_SH_LIST(__SHIFT)
271 };
272 
273 static const struct dcn_dio_mask dio_mask = {
274 		DIO_MASK_SH_LIST(_MASK)
275 };
276 
dcn302_dio_create(struct dc_context * ctx)277 static struct dio *dcn302_dio_create(struct dc_context *ctx)
278 {
279 	struct dcn10_dio *dio10 = kzalloc_obj(struct dcn10_dio);
280 
281 	if (!dio10)
282 		return NULL;
283 
284 	dcn10_dio_construct(dio10, ctx, &dio_regs, &dio_shift, &dio_mask);
285 
286 	return &dio10->base;
287 }
288 
dcn302_hubbub_create(struct dc_context * ctx)289 static struct hubbub *dcn302_hubbub_create(struct dc_context *ctx)
290 {
291 	int i;
292 
293 	struct dcn20_hubbub *hubbub3 = kzalloc_obj(struct dcn20_hubbub);
294 
295 	if (!hubbub3)
296 		return NULL;
297 
298 	hubbub3_construct(hubbub3, ctx, &hubbub_reg, &hubbub_shift, &hubbub_mask);
299 
300 	for (i = 0; i < res_cap_dcn302.num_vmid; i++) {
301 		struct dcn20_vmid *vmid = &hubbub3->vmid[i];
302 
303 		vmid->ctx = ctx;
304 
305 		vmid->regs = &vmid_regs[i];
306 		vmid->shifts = &vmid_shifts;
307 		vmid->masks = &vmid_masks;
308 	}
309 
310 	return &hubbub3->base;
311 }
312 
313 #define vpg_regs(id)\
314 		[id] = { VPG_DCN3_REG_LIST(id) }
315 
316 static const struct dcn30_vpg_registers vpg_regs[] = {
317 		vpg_regs(0),
318 		vpg_regs(1),
319 		vpg_regs(2),
320 		vpg_regs(3),
321 		vpg_regs(4),
322 		vpg_regs(5)
323 };
324 
325 static const struct dcn30_vpg_shift vpg_shift = {
326 		DCN3_VPG_MASK_SH_LIST(__SHIFT)
327 };
328 
329 static const struct dcn30_vpg_mask vpg_mask = {
330 		DCN3_VPG_MASK_SH_LIST(_MASK)
331 };
332 
dcn302_vpg_create(struct dc_context * ctx,uint32_t inst)333 static struct vpg *dcn302_vpg_create(struct dc_context *ctx, uint32_t inst)
334 {
335 	struct dcn30_vpg *vpg3 = kzalloc_obj(struct dcn30_vpg);
336 
337 	if (!vpg3)
338 		return NULL;
339 
340 	vpg3_construct(vpg3, ctx, inst, &vpg_regs[inst], &vpg_shift, &vpg_mask);
341 
342 	return &vpg3->base;
343 }
344 
345 #define afmt_regs(id)\
346 		[id] = { AFMT_DCN3_REG_LIST(id) }
347 
348 static const struct dcn30_afmt_registers afmt_regs[] = {
349 		afmt_regs(0),
350 		afmt_regs(1),
351 		afmt_regs(2),
352 		afmt_regs(3),
353 		afmt_regs(4),
354 		afmt_regs(5)
355 };
356 
357 static const struct dcn30_afmt_shift afmt_shift = {
358 		DCN3_AFMT_MASK_SH_LIST(__SHIFT)
359 };
360 
361 static const struct dcn30_afmt_mask afmt_mask = {
362 		DCN3_AFMT_MASK_SH_LIST(_MASK)
363 };
364 
dcn302_afmt_create(struct dc_context * ctx,uint32_t inst)365 static struct afmt *dcn302_afmt_create(struct dc_context *ctx, uint32_t inst)
366 {
367 	struct dcn30_afmt *afmt3 = kzalloc_obj(struct dcn30_afmt);
368 
369 	if (!afmt3)
370 		return NULL;
371 
372 	afmt3_construct(afmt3, ctx, inst, &afmt_regs[inst], &afmt_shift, &afmt_mask);
373 
374 	return &afmt3->base;
375 }
376 
377 #define audio_regs(id)\
378 		[id] = { AUD_COMMON_REG_LIST(id) }
379 
380 static const struct dce_audio_registers audio_regs[] = {
381 		audio_regs(0),
382 		audio_regs(1),
383 		audio_regs(2),
384 		audio_regs(3),
385 		audio_regs(4),
386 		audio_regs(5),
387 		audio_regs(6)
388 };
389 
390 #define DCE120_AUD_COMMON_MASK_SH_LIST(mask_sh)\
391 		SF(AZF0ENDPOINT0_AZALIA_F0_CODEC_ENDPOINT_INDEX, AZALIA_ENDPOINT_REG_INDEX, mask_sh),\
392 		SF(AZF0ENDPOINT0_AZALIA_F0_CODEC_ENDPOINT_DATA, AZALIA_ENDPOINT_REG_DATA, mask_sh),\
393 		AUD_COMMON_MASK_SH_LIST_BASE(mask_sh)
394 
395 static const struct dce_audio_shift audio_shift = {
396 		DCE120_AUD_COMMON_MASK_SH_LIST(__SHIFT)
397 };
398 
399 static const struct dce_audio_mask audio_mask = {
400 		DCE120_AUD_COMMON_MASK_SH_LIST(_MASK)
401 };
402 
dcn302_create_audio(struct dc_context * ctx,unsigned int inst)403 static struct audio *dcn302_create_audio(struct dc_context *ctx, unsigned int inst)
404 {
405 	return dce_audio_create(ctx, inst, &audio_regs[inst], &audio_shift, &audio_mask);
406 }
407 
408 #define stream_enc_regs(id)\
409 		[id] = { SE_DCN3_REG_LIST(id) }
410 
411 static const struct dcn10_stream_enc_registers stream_enc_regs[] = {
412 		stream_enc_regs(0),
413 		stream_enc_regs(1),
414 		stream_enc_regs(2),
415 		stream_enc_regs(3),
416 		stream_enc_regs(4)
417 };
418 
419 static const struct dcn10_stream_encoder_shift se_shift = {
420 		SE_COMMON_MASK_SH_LIST_DCN30(__SHIFT)
421 };
422 
423 static const struct dcn10_stream_encoder_mask se_mask = {
424 		SE_COMMON_MASK_SH_LIST_DCN30(_MASK)
425 };
426 
dcn302_stream_encoder_create(enum engine_id eng_id,struct dc_context * ctx)427 static struct stream_encoder *dcn302_stream_encoder_create(enum engine_id eng_id, struct dc_context *ctx)
428 {
429 	struct dcn10_stream_encoder *enc1;
430 	struct vpg *vpg;
431 	struct afmt *afmt;
432 	int vpg_inst;
433 	int afmt_inst;
434 
435 	/* Mapping of VPG, AFMT, DME register blocks to DIO block instance */
436 	if (eng_id <= ENGINE_ID_DIGE) {
437 		vpg_inst = eng_id;
438 		afmt_inst = eng_id;
439 	} else
440 		return NULL;
441 
442 	enc1 = kzalloc_obj(struct dcn10_stream_encoder);
443 	vpg = dcn302_vpg_create(ctx, vpg_inst);
444 	afmt = dcn302_afmt_create(ctx, afmt_inst);
445 
446 	if (!enc1 || !vpg || !afmt) {
447 		kfree(enc1);
448 		kfree(vpg);
449 		kfree(afmt);
450 		return NULL;
451 	}
452 
453 	dcn30_dio_stream_encoder_construct(enc1, ctx, ctx->dc_bios, eng_id, vpg, afmt, &stream_enc_regs[eng_id],
454 			&se_shift, &se_mask);
455 
456 	return &enc1->base;
457 }
458 
459 #define hpo_frl_stream_encoder_reg_list(id)\
460 		[id] = { DCN3_0_HPO_FRL_STREAM_ENC_REG_LIST(id) }
461 
462 #define hpo_frl_stream_encoder_dme_reg_list(id)\
463 		DCN3_0_HPO_STREAM_ENC_DME_REG_LIST(id, 5)
464 
465 static const struct dcn30_hpo_frl_stream_enc_registers hpo_frl_stream_enc_regs[] = {
466 		hpo_frl_stream_encoder_reg_list(0),
467 		hpo_frl_stream_encoder_dme_reg_list(5),
468 };
469 
470 static const struct dcn30_hpo_frl_stream_encoder_shift hpo_se_shift = {
471 		DCN3_0_HPO_STREAM_ENC_MASK_SH_LIST(__SHIFT)
472 };
473 
474 static const struct dcn30_hpo_frl_stream_encoder_mask hpo_se_mask = {
475 		DCN3_0_HPO_STREAM_ENC_MASK_SH_LIST(_MASK)
476 };
477 
dcn302_hpo_frl_stream_encoder_create(enum engine_id eng_id,struct dc_context * ctx)478 static struct hpo_frl_stream_encoder *dcn302_hpo_frl_stream_encoder_create(enum engine_id eng_id,
479 		struct dc_context *ctx)
480 {
481 	struct dcn30_hpo_frl_stream_encoder *hpo_enc3;
482 	struct vpg *vpg;
483 	struct afmt *afmt;
484 	int vpg_inst;
485 	int afmt_inst;
486 
487 	/* Mapping of VPG, AFMT, DME register blocks to HPO block instance */
488 	if (eng_id == ENGINE_ID_HPO_0) {
489 		vpg_inst = 5;
490 		afmt_inst = 5;
491 	} else
492 		return NULL;
493 
494 	/* allocate HPO stream encoder and create VPG sub-block */
495 	hpo_enc3 = kzalloc_obj(struct dcn30_hpo_frl_stream_encoder);
496 	vpg = dcn302_vpg_create(ctx, vpg_inst);
497 	afmt = dcn302_afmt_create(ctx, afmt_inst);
498 
499 	if (!hpo_enc3 || !vpg || !afmt) {
500 		kfree(hpo_enc3);
501 		kfree(vpg);
502 		kfree(afmt);
503 		return NULL;
504 	}
505 
506 	dcn30_hpo_frl_stream_encoder_construct(hpo_enc3, ctx, ctx->dc_bios, eng_id, vpg, afmt,
507 			&hpo_frl_stream_enc_regs[eng_id-ENGINE_ID_HPO_0], &hpo_se_shift, &hpo_se_mask);
508 
509 	return &hpo_enc3->base;
510 }
511 
512 #define hpo_frl_link_encoder_reg_list(id)\
513 		[id] = { DCN3_0_HPO_FRL_LINK_ENC_REG_LIST(id) }
514 
515 static const struct dcn30_hpo_frl_link_encoder_registers hpo_frl_link_enc_regs[] = {
516 		hpo_frl_link_encoder_reg_list(0),
517 };
518 
519 static const struct dcn30_hpo_frl_link_encoder_shift hpo_le_shift = {
520 		DCN3_0_HPO_FRL_LINK_ENC_MASK_SH_LIST(__SHIFT)
521 };
522 
523 static const struct dcn30_hpo_frl_link_encoder_mask hpo_le_mask = {
524 		DCN3_0_HPO_FRL_LINK_ENC_MASK_SH_LIST(_MASK)
525 };
526 
dcn302_hpo_frl_link_encoder_create(enum engine_id eng_id,struct dc_context * ctx)527 static struct hpo_frl_link_encoder *dcn302_hpo_frl_link_encoder_create(enum engine_id eng_id, struct dc_context *ctx)
528 {
529 	struct dcn30_hpo_frl_link_encoder *hpo_enc3;
530 
531 	ASSERT((eng_id == ENGINE_ID_HPO_0) || (eng_id == ENGINE_ID_HPO_1));
532 
533 	/* allocate HPO link encoder */
534 	hpo_enc3 = kzalloc_obj(struct dcn30_hpo_frl_link_encoder);
535 	if (!hpo_enc3)
536 		return NULL; /* out of memory */
537 
538 	hpo_frl_link_encoder3_construct(hpo_enc3, ctx, eng_id-ENGINE_ID_HPO_0,
539 			&hpo_frl_link_enc_regs[eng_id-ENGINE_ID_HPO_0], &hpo_le_shift, &hpo_le_mask);
540 
541 	return &hpo_enc3->base;
542 }
543 
544 #define clk_src_regs(index, pllid)\
545 		[index] = { CS_COMMON_REG_LIST_DCN3_02(index, pllid) }
546 
547 static const struct dce110_clk_src_regs clk_src_regs[] = {
548 		clk_src_regs(0, A),
549 		clk_src_regs(1, B),
550 		clk_src_regs(2, C),
551 		clk_src_regs(3, D),
552 		clk_src_regs(4, E)
553 };
554 
555 static const struct dce110_clk_src_shift cs_shift = {
556 		CS_COMMON_MASK_SH_LIST_DCN2_0(__SHIFT)
557 };
558 
559 static const struct dce110_clk_src_mask cs_mask = {
560 		CS_COMMON_MASK_SH_LIST_DCN2_0(_MASK)
561 };
562 
dcn302_clock_source_create(struct dc_context * ctx,struct dc_bios * bios,enum clock_source_id id,const struct dce110_clk_src_regs * regs,bool dp_clk_src)563 static struct clock_source *dcn302_clock_source_create(struct dc_context *ctx, struct dc_bios *bios,
564 		enum clock_source_id id, const struct dce110_clk_src_regs *regs, bool dp_clk_src)
565 {
566 	struct dce110_clk_src *clk_src = kzalloc_obj(struct dce110_clk_src);
567 
568 	if (!clk_src)
569 		return NULL;
570 
571 	if (dcn3_clk_src_construct(clk_src, ctx, bios, id, regs, &cs_shift, &cs_mask)) {
572 		clk_src->base.dp_clk_src = dp_clk_src;
573 		return &clk_src->base;
574 	}
575 
576 	kfree(clk_src);
577 	BREAK_TO_DEBUGGER();
578 	return NULL;
579 }
580 
581 static const struct dce_hwseq_registers hwseq_reg = {
582 		HWSEQ_DCN302_REG_LIST()
583 };
584 
585 static const struct dce_hwseq_shift hwseq_shift = {
586 		HWSEQ_DCN302_MASK_SH_LIST(__SHIFT)
587 };
588 
589 static const struct dce_hwseq_mask hwseq_mask = {
590 		HWSEQ_DCN302_MASK_SH_LIST(_MASK)
591 };
592 
dcn302_hwseq_create(struct dc_context * ctx)593 static struct dce_hwseq *dcn302_hwseq_create(struct dc_context *ctx)
594 {
595 	struct dce_hwseq *hws = kzalloc_obj(struct dce_hwseq);
596 
597 	if (hws) {
598 		hws->ctx = ctx;
599 		hws->regs = &hwseq_reg;
600 		hws->shifts = &hwseq_shift;
601 		hws->masks = &hwseq_mask;
602 	}
603 	return hws;
604 }
605 
606 #define hubp_regs(id)\
607 		[id] = { HUBP_REG_LIST_DCN30(id) }
608 
609 static const struct dcn_hubp2_registers hubp_regs[] = {
610 		hubp_regs(0),
611 		hubp_regs(1),
612 		hubp_regs(2),
613 		hubp_regs(3),
614 		hubp_regs(4)
615 };
616 
617 static const struct dcn_hubp2_shift hubp_shift = {
618 		HUBP_MASK_SH_LIST_DCN30(__SHIFT)
619 };
620 
621 static const struct dcn_hubp2_mask hubp_mask = {
622 		HUBP_MASK_SH_LIST_DCN30(_MASK)
623 };
624 
dcn302_hubp_create(struct dc_context * ctx,uint32_t inst)625 static struct hubp *dcn302_hubp_create(struct dc_context *ctx, uint32_t inst)
626 {
627 	struct dcn20_hubp *hubp2 = kzalloc_obj(struct dcn20_hubp);
628 
629 	if (!hubp2)
630 		return NULL;
631 
632 	if (hubp3_construct(hubp2, ctx, inst, &hubp_regs[inst], &hubp_shift, &hubp_mask))
633 		return &hubp2->base;
634 
635 	BREAK_TO_DEBUGGER();
636 	kfree(hubp2);
637 	return NULL;
638 }
639 
640 #define dpp_regs(id)\
641 		[id] = { DPP_REG_LIST_DCN30(id) }
642 
643 static const struct dcn3_dpp_registers dpp_regs[] = {
644 		dpp_regs(0),
645 		dpp_regs(1),
646 		dpp_regs(2),
647 		dpp_regs(3),
648 		dpp_regs(4)
649 };
650 
651 static const struct dcn3_dpp_shift tf_shift = {
652 		DPP_REG_LIST_SH_MASK_DCN30(__SHIFT)
653 };
654 
655 static const struct dcn3_dpp_mask tf_mask = {
656 		DPP_REG_LIST_SH_MASK_DCN30(_MASK)
657 };
658 
dcn302_dpp_create(struct dc_context * ctx,uint32_t inst)659 static struct dpp *dcn302_dpp_create(struct dc_context *ctx, uint32_t inst)
660 {
661 	struct dcn3_dpp *dpp = kzalloc_obj(struct dcn3_dpp);
662 
663 	if (!dpp)
664 		return NULL;
665 
666 	if (dpp3_construct(dpp, ctx, inst, &dpp_regs[inst], &tf_shift, &tf_mask))
667 		return &dpp->base;
668 
669 	BREAK_TO_DEBUGGER();
670 	kfree(dpp);
671 	return NULL;
672 }
673 
674 #define opp_regs(id)\
675 		[id] = { OPP_REG_LIST_DCN30(id) }
676 
677 static const struct dcn20_opp_registers opp_regs[] = {
678 		opp_regs(0),
679 		opp_regs(1),
680 		opp_regs(2),
681 		opp_regs(3),
682 		opp_regs(4)
683 };
684 
685 static const struct dcn20_opp_shift opp_shift = {
686 		OPP_MASK_SH_LIST_DCN20(__SHIFT)
687 };
688 
689 static const struct dcn20_opp_mask opp_mask = {
690 		OPP_MASK_SH_LIST_DCN20(_MASK)
691 };
692 
dcn302_opp_create(struct dc_context * ctx,uint32_t inst)693 static struct output_pixel_processor *dcn302_opp_create(struct dc_context *ctx, uint32_t inst)
694 {
695 	struct dcn20_opp *opp = kzalloc_obj(struct dcn20_opp);
696 
697 	if (!opp) {
698 		BREAK_TO_DEBUGGER();
699 		return NULL;
700 	}
701 
702 	dcn20_opp_construct(opp, ctx, inst, &opp_regs[inst], &opp_shift, &opp_mask);
703 	return &opp->base;
704 }
705 
706 #define optc_regs(id)\
707 		[id] = { OPTC_COMMON_REG_LIST_DCN3_0(id) }
708 
709 static const struct dcn_optc_registers optc_regs[] = {
710 		optc_regs(0),
711 		optc_regs(1),
712 		optc_regs(2),
713 		optc_regs(3),
714 		optc_regs(4)
715 };
716 
717 static const struct dcn_optc_shift optc_shift = {
718 		OPTC_COMMON_MASK_SH_LIST_DCN30(__SHIFT)
719 };
720 
721 static const struct dcn_optc_mask optc_mask = {
722 		OPTC_COMMON_MASK_SH_LIST_DCN30(_MASK)
723 };
724 
dcn302_timing_generator_create(struct dc_context * ctx,uint32_t instance)725 static struct timing_generator *dcn302_timing_generator_create(struct dc_context *ctx, uint32_t instance)
726 {
727 	struct optc *tgn10 = kzalloc_obj(struct optc);
728 
729 	if (!tgn10)
730 		return NULL;
731 
732 	tgn10->base.inst = instance;
733 	tgn10->base.ctx = ctx;
734 
735 	tgn10->tg_regs = &optc_regs[instance];
736 	tgn10->tg_shift = &optc_shift;
737 	tgn10->tg_mask = &optc_mask;
738 
739 	dcn30_timing_generator_init(tgn10);
740 
741 	return &tgn10->base;
742 }
743 
744 static const struct dcn30_mpc_registers mpc_regs = {
745 		MPC_REG_LIST_DCN3_0(0),
746 		MPC_REG_LIST_DCN3_0(1),
747 		MPC_REG_LIST_DCN3_0(2),
748 		MPC_REG_LIST_DCN3_0(3),
749 		MPC_REG_LIST_DCN3_0(4),
750 		MPC_OUT_MUX_REG_LIST_DCN3_0(0),
751 		MPC_OUT_MUX_REG_LIST_DCN3_0(1),
752 		MPC_OUT_MUX_REG_LIST_DCN3_0(2),
753 		MPC_OUT_MUX_REG_LIST_DCN3_0(3),
754 		MPC_OUT_MUX_REG_LIST_DCN3_0(4),
755 		MPC_RMU_GLOBAL_REG_LIST_DCN3AG,
756 		MPC_RMU_REG_LIST_DCN3AG(0),
757 		MPC_RMU_REG_LIST_DCN3AG(1),
758 		MPC_RMU_REG_LIST_DCN3AG(2),
759 		MPC_DWB_MUX_REG_LIST_DCN3_0(0),
760 };
761 
762 static const struct dcn30_mpc_shift mpc_shift = {
763 		MPC_COMMON_MASK_SH_LIST_DCN30(__SHIFT)
764 };
765 
766 static const struct dcn30_mpc_mask mpc_mask = {
767 		MPC_COMMON_MASK_SH_LIST_DCN30(_MASK)
768 };
769 
dcn302_mpc_create(struct dc_context * ctx,int num_mpcc,int num_rmu)770 static struct mpc *dcn302_mpc_create(struct dc_context *ctx, int num_mpcc, int num_rmu)
771 {
772 	struct dcn30_mpc *mpc30 = kzalloc_obj(struct dcn30_mpc);
773 
774 	if (!mpc30)
775 		return NULL;
776 
777 	dcn30_mpc_construct(mpc30, ctx, &mpc_regs, &mpc_shift, &mpc_mask, num_mpcc, num_rmu);
778 
779 	return &mpc30->base;
780 }
781 
782 #define dsc_regsDCN20(id)\
783 [id] = { DSC_REG_LIST_DCN20(id) }
784 
785 static const struct dcn20_dsc_registers dsc_regs[] = {
786 		dsc_regsDCN20(0),
787 		dsc_regsDCN20(1),
788 		dsc_regsDCN20(2),
789 		dsc_regsDCN20(3),
790 		dsc_regsDCN20(4)
791 };
792 
793 static const struct dcn20_dsc_shift dsc_shift = {
794 		DSC_REG_LIST_SH_MASK_DCN20(__SHIFT)
795 };
796 
797 static const struct dcn20_dsc_mask dsc_mask = {
798 		DSC_REG_LIST_SH_MASK_DCN20(_MASK)
799 };
800 
dcn302_dsc_create(struct dc_context * ctx,uint32_t inst)801 static struct display_stream_compressor *dcn302_dsc_create(struct dc_context *ctx, uint32_t inst)
802 {
803 	struct dcn20_dsc *dsc = kzalloc_obj(struct dcn20_dsc);
804 
805 	if (!dsc) {
806 		BREAK_TO_DEBUGGER();
807 		return NULL;
808 	}
809 
810 	dsc2_construct(dsc, ctx, inst, &dsc_regs[inst], &dsc_shift, &dsc_mask);
811 	return &dsc->base;
812 }
813 
814 #define dwbc_regs_dcn3(id)\
815 [id] = { DWBC_COMMON_REG_LIST_DCN30(id) }
816 
817 static const struct dcn30_dwbc_registers dwbc30_regs[] = {
818 		dwbc_regs_dcn3(0)
819 };
820 
821 static const struct dcn30_dwbc_shift dwbc30_shift = {
822 		DWBC_COMMON_MASK_SH_LIST_DCN30(__SHIFT)
823 };
824 
825 static const struct dcn30_dwbc_mask dwbc30_mask = {
826 		DWBC_COMMON_MASK_SH_LIST_DCN30(_MASK)
827 };
828 
dcn302_dwbc_create(struct dc_context * ctx,struct resource_pool * pool)829 static bool dcn302_dwbc_create(struct dc_context *ctx, struct resource_pool *pool)
830 {
831 	unsigned int i;
832 	uint32_t pipe_count = pool->res_cap->num_dwb;
833 
834 	for (i = 0; i < pipe_count; i++) {
835 		struct dcn30_dwbc *dwbc30 = kzalloc_obj(struct dcn30_dwbc);
836 
837 		if (!dwbc30) {
838 			dm_error("DC: failed to create dwbc30!\n");
839 			return false;
840 		}
841 
842 		dcn30_dwbc_construct(dwbc30, ctx, &dwbc30_regs[i], &dwbc30_shift, &dwbc30_mask, i);
843 
844 		pool->dwbc[i] = &dwbc30->base;
845 	}
846 	return true;
847 }
848 
849 #define mcif_wb_regs_dcn3(id)\
850 [id] = { MCIF_WB_COMMON_REG_LIST_DCN30(id) }
851 
852 static const struct dcn30_mmhubbub_registers mcif_wb30_regs[] = {
853 		mcif_wb_regs_dcn3(0)
854 };
855 
856 static const struct dcn30_mmhubbub_shift mcif_wb30_shift = {
857 		MCIF_WB_COMMON_MASK_SH_LIST_DCN30(__SHIFT)
858 };
859 
860 static const struct dcn30_mmhubbub_mask mcif_wb30_mask = {
861 		MCIF_WB_COMMON_MASK_SH_LIST_DCN30(_MASK)
862 };
863 
dcn302_mmhubbub_create(struct dc_context * ctx,struct resource_pool * pool)864 static bool dcn302_mmhubbub_create(struct dc_context *ctx, struct resource_pool *pool)
865 {
866 	unsigned int i;
867 	uint32_t pipe_count = pool->res_cap->num_dwb;
868 
869 	for (i = 0; i < pipe_count; i++) {
870 		struct dcn30_mmhubbub *mcif_wb30 = kzalloc_obj(struct dcn30_mmhubbub);
871 
872 		if (!mcif_wb30) {
873 			dm_error("DC: failed to create mcif_wb30!\n");
874 			return false;
875 		}
876 
877 		dcn30_mmhubbub_construct(mcif_wb30, ctx, &mcif_wb30_regs[i], &mcif_wb30_shift, &mcif_wb30_mask, i);
878 
879 		pool->mcif_wb[i] = &mcif_wb30->base;
880 	}
881 	return true;
882 }
883 
884 #define aux_engine_regs(id)\
885 [id] = {\
886 		AUX_COMMON_REG_LIST0(id), \
887 		.AUXN_IMPCAL = 0, \
888 		.AUXP_IMPCAL = 0, \
889 		.AUX_RESET_MASK = DP_AUX0_AUX_CONTROL__AUX_RESET_MASK, \
890 }
891 
892 static const struct dce110_aux_registers aux_engine_regs[] = {
893 		aux_engine_regs(0),
894 		aux_engine_regs(1),
895 		aux_engine_regs(2),
896 		aux_engine_regs(3),
897 		aux_engine_regs(4)
898 };
899 
900 static const struct dce110_aux_registers_shift aux_shift = {
901 		DCN_AUX_MASK_SH_LIST(__SHIFT)
902 };
903 
904 static const struct dce110_aux_registers_mask aux_mask = {
905 		DCN_AUX_MASK_SH_LIST(_MASK)
906 };
907 
dcn302_aux_engine_create(struct dc_context * ctx,uint32_t inst)908 static struct dce_aux *dcn302_aux_engine_create(struct dc_context *ctx, uint32_t inst)
909 {
910 	struct aux_engine_dce110 *aux_engine = kzalloc_obj(struct aux_engine_dce110);
911 
912 	if (!aux_engine)
913 		return NULL;
914 
915 	dce110_aux_engine_construct(aux_engine, ctx, inst, SW_AUX_TIMEOUT_PERIOD_MULTIPLIER * AUX_TIMEOUT_PERIOD,
916 			&aux_engine_regs[inst], &aux_mask, &aux_shift, ctx->dc->caps.extended_aux_timeout_support);
917 
918 	return &aux_engine->base;
919 }
920 
921 #define i2c_inst_regs(id) { I2C_HW_ENGINE_COMMON_REG_LIST(id) }
922 
923 static const struct dce_i2c_registers i2c_hw_regs[] = {
924 		i2c_inst_regs(1),
925 		i2c_inst_regs(2),
926 		i2c_inst_regs(3),
927 		i2c_inst_regs(4),
928 		i2c_inst_regs(5)
929 };
930 
931 static const struct dce_i2c_shift i2c_shifts = {
932 		I2C_COMMON_MASK_SH_LIST_DCN2(__SHIFT)
933 };
934 
935 static const struct dce_i2c_mask i2c_masks = {
936 		I2C_COMMON_MASK_SH_LIST_DCN2(_MASK)
937 };
938 
dcn302_i2c_hw_create(struct dc_context * ctx,uint32_t inst)939 static struct dce_i2c_hw *dcn302_i2c_hw_create(struct dc_context *ctx, uint32_t inst)
940 {
941 	struct dce_i2c_hw *dce_i2c_hw = kzalloc_obj(struct dce_i2c_hw);
942 
943 	if (!dce_i2c_hw)
944 		return NULL;
945 
946 	dcn2_i2c_hw_construct(dce_i2c_hw, ctx, inst, &i2c_hw_regs[inst], &i2c_shifts, &i2c_masks);
947 
948 	return dce_i2c_hw;
949 }
950 
951 static const struct encoder_feature_support link_enc_feature = {
952 		.max_hdmi_deep_color = COLOR_DEPTH_121212,
953 		.max_hdmi_pixel_clock = 600000,
954 		.hdmi_ycbcr420_supported = true,
955 		.dp_ycbcr420_supported = true,
956 		.fec_supported = true,
957 		.flags.bits.IS_HBR2_CAPABLE = true,
958 		.flags.bits.IS_HBR3_CAPABLE = true,
959 		.flags.bits.IS_TPS3_CAPABLE = true,
960 		.flags.bits.IS_TPS4_CAPABLE = true
961 };
962 
963 #define link_regs(id, phyid)\
964 		[id] = {\
965 				LE_DCN3_REG_LIST(id), \
966 				UNIPHY_DCN2_REG_LIST(phyid), \
967 				DPCS_DCN2_REG_LIST(id), \
968 				SRI(DP_DPHY_INTERNAL_CTRL, DP, id) \
969 		}
970 
971 static const struct dcn10_link_enc_registers link_enc_regs[] = {
972 		link_regs(0, A),
973 		link_regs(1, B),
974 		link_regs(2, C),
975 		link_regs(3, D),
976 		link_regs(4, E)
977 };
978 
979 static const struct dcn10_link_enc_shift le_shift = {
980 		LINK_ENCODER_MASK_SH_LIST_DCN30(__SHIFT),
981 		DPCS_DCN2_MASK_SH_LIST(__SHIFT)
982 };
983 
984 static const struct dcn10_link_enc_mask le_mask = {
985 		LINK_ENCODER_MASK_SH_LIST_DCN30(_MASK),
986 		DPCS_DCN2_MASK_SH_LIST(_MASK)
987 };
988 
989 #define aux_regs(id)\
990 		[id] = { DCN2_AUX_REG_LIST(id) }
991 
992 static const struct dcn10_link_enc_aux_registers link_enc_aux_regs[] = {
993 		aux_regs(0),
994 		aux_regs(1),
995 		aux_regs(2),
996 		aux_regs(3),
997 		aux_regs(4)
998 };
999 
1000 #define hpd_regs(id)\
1001 		[id] = { HPD_REG_LIST(id) }
1002 
1003 static const struct dcn10_link_enc_hpd_registers link_enc_hpd_regs[] = {
1004 		hpd_regs(0),
1005 		hpd_regs(1),
1006 		hpd_regs(2),
1007 		hpd_regs(3),
1008 		hpd_regs(4)
1009 };
1010 
dcn302_link_encoder_create(struct dc_context * ctx,const struct encoder_init_data * enc_init_data)1011 static struct link_encoder *dcn302_link_encoder_create(
1012 	struct dc_context *ctx,
1013 	const struct encoder_init_data *enc_init_data)
1014 {
1015 	(void)ctx;
1016 	struct dcn20_link_encoder *enc20 = kzalloc_obj(struct dcn20_link_encoder);
1017 
1018 	if (!enc20 || enc_init_data->hpd_source >= ARRAY_SIZE(link_enc_hpd_regs))
1019 		return NULL;
1020 
1021 	dcn30_link_encoder_construct(enc20, enc_init_data, &link_enc_feature,
1022 			&link_enc_regs[enc_init_data->transmitter], &link_enc_aux_regs[enc_init_data->channel - 1],
1023 			&link_enc_hpd_regs[enc_init_data->hpd_source], &le_shift, &le_mask);
1024 
1025 	return &enc20->enc10.base;
1026 }
1027 
1028 static const struct dce_panel_cntl_registers panel_cntl_regs[] = {
1029 		{ DCN_PANEL_CNTL_REG_LIST() }
1030 };
1031 
1032 static const struct dce_panel_cntl_shift panel_cntl_shift = {
1033 		DCE_PANEL_CNTL_MASK_SH_LIST(__SHIFT)
1034 };
1035 
1036 static const struct dce_panel_cntl_mask panel_cntl_mask = {
1037 		DCE_PANEL_CNTL_MASK_SH_LIST(_MASK)
1038 };
1039 
dcn302_panel_cntl_create(const struct panel_cntl_init_data * init_data)1040 static struct panel_cntl *dcn302_panel_cntl_create(const struct panel_cntl_init_data *init_data)
1041 {
1042 	struct dce_panel_cntl *panel_cntl = kzalloc_obj(struct dce_panel_cntl);
1043 
1044 	if (!panel_cntl)
1045 		return NULL;
1046 
1047 	dce_panel_cntl_construct(panel_cntl, init_data, &panel_cntl_regs[init_data->inst],
1048 			&panel_cntl_shift, &panel_cntl_mask);
1049 
1050 	return &panel_cntl->base;
1051 }
1052 
read_dce_straps(struct dc_context * ctx,struct resource_straps * straps)1053 static void read_dce_straps(struct dc_context *ctx, struct resource_straps *straps)
1054 {
1055 	generic_reg_get(ctx, mmDC_PINSTRAPS + BASE(mmDC_PINSTRAPS_BASE_IDX),
1056 			FN(DC_PINSTRAPS, DC_PINSTRAPS_AUDIO), &straps->dc_pinstraps_audio);
1057 }
1058 
1059 static const struct resource_create_funcs res_create_funcs = {
1060 		.read_dce_straps = read_dce_straps,
1061 		.create_audio = dcn302_create_audio,
1062 		.create_stream_encoder = dcn302_stream_encoder_create,
1063 		.create_hpo_frl_stream_encoder = dcn302_hpo_frl_stream_encoder_create,
1064 		.create_hwseq = dcn302_hwseq_create,
1065 };
1066 
is_soc_bounding_box_valid(struct dc * dc)1067 static bool is_soc_bounding_box_valid(struct dc *dc)
1068 {
1069 	uint32_t hw_internal_rev = dc->ctx->asic_id.hw_internal_rev;
1070 
1071 	if (ASICREV_IS_DIMGREY_CAVEFISH_P(hw_internal_rev))
1072 		return true;
1073 
1074 	return false;
1075 }
1076 
init_soc_bounding_box(struct dc * dc,struct resource_pool * pool)1077 static bool init_soc_bounding_box(struct dc *dc,  struct resource_pool *pool)
1078 {
1079 	struct _vcs_dpi_soc_bounding_box_st *loaded_bb = &dcn3_02_soc;
1080 	struct _vcs_dpi_ip_params_st *loaded_ip = &dcn3_02_ip;
1081 
1082 	DC_LOGGER_INIT(dc->ctx->logger);
1083 
1084 	if (!is_soc_bounding_box_valid(dc)) {
1085 		DC_LOG_ERROR("%s: not valid soc bounding box\n", __func__);
1086 		return false;
1087 	}
1088 
1089 	loaded_ip->max_num_otg = pool->pipe_count;
1090 	loaded_ip->max_num_dpp = pool->pipe_count;
1091 	loaded_ip->clamp_min_dcfclk = dc->config.clamp_min_dcfclk;
1092 	DC_FP_START();
1093 	dcn20_patch_bounding_box(dc, loaded_bb);
1094 	DC_FP_END();
1095 
1096 	if (dc->ctx->dc_bios->funcs->get_soc_bb_info) {
1097 		struct bp_soc_bb_info bb_info = { 0 };
1098 
1099 		if (dc->ctx->dc_bios->funcs->get_soc_bb_info(
1100 			    dc->ctx->dc_bios, &bb_info) == BP_RESULT_OK) {
1101 
1102 				DC_FP_START();
1103 				dcn302_fpu_init_soc_bounding_box(bb_info);
1104 				DC_FP_END();
1105 		}
1106 	}
1107 
1108 	return true;
1109 }
1110 
dcn302_resource_destruct(struct resource_pool * pool)1111 static void dcn302_resource_destruct(struct resource_pool *pool)
1112 {
1113 	unsigned int i;
1114 
1115 	for (i = 0; i < pool->stream_enc_count; i++) {
1116 		if (pool->stream_enc[i] != NULL) {
1117 			if (pool->stream_enc[i]->vpg != NULL) {
1118 				kfree(DCN30_VPG_FROM_VPG(pool->stream_enc[i]->vpg));
1119 				pool->stream_enc[i]->vpg = NULL;
1120 			}
1121 			if (pool->stream_enc[i]->afmt != NULL) {
1122 				kfree(DCN30_AFMT_FROM_AFMT(pool->stream_enc[i]->afmt));
1123 				pool->stream_enc[i]->afmt = NULL;
1124 			}
1125 			kfree(DCN10STRENC_FROM_STRENC(pool->stream_enc[i]));
1126 			pool->stream_enc[i] = NULL;
1127 		}
1128 	}
1129 
1130 	for (i = 0; i < pool->hpo_frl_stream_enc_count; i++) {
1131 		if (pool->hpo_frl_stream_enc[i] != NULL) {
1132 			if (pool->hpo_frl_stream_enc[i]->vpg != NULL) {
1133 				kfree(DCN30_VPG_FROM_VPG(pool->hpo_frl_stream_enc[i]->vpg));
1134 				pool->hpo_frl_stream_enc[i]->vpg = NULL;
1135 			}
1136 
1137 			if (pool->hpo_frl_stream_enc[i]->afmt != NULL) {
1138 				kfree(DCN30_AFMT_FROM_AFMT(pool->hpo_frl_stream_enc[i]->afmt));
1139 				pool->hpo_frl_stream_enc[i]->afmt = NULL;
1140 			}
1141 
1142 			kfree(DCN30_HPO_FRL_STRENC_FROM_HPO_FRL_STRENC(pool->hpo_frl_stream_enc[i]));
1143 			pool->hpo_frl_stream_enc[i] = NULL;
1144 		}
1145 	}
1146 
1147 	for (i = 0; i < (unsigned int)pool->res_cap->num_dsc; i++) {
1148 		if (pool->dscs[i] != NULL)
1149 			dcn20_dsc_destroy(&pool->dscs[i]);
1150 	}
1151 
1152 	if (pool->mpc != NULL) {
1153 		kfree(TO_DCN20_MPC(pool->mpc));
1154 		pool->mpc = NULL;
1155 	}
1156 
1157 	if (pool->hubbub != NULL) {
1158 		kfree(pool->hubbub);
1159 		pool->hubbub = NULL;
1160 	}
1161 
1162 	if (pool->dio != NULL) {
1163 		kfree(TO_DCN10_DIO(pool->dio));
1164 		pool->dio = NULL;
1165 	}
1166 
1167 	for (i = 0; i < pool->pipe_count; i++) {
1168 		if (pool->dpps[i] != NULL) {
1169 			kfree(TO_DCN20_DPP(pool->dpps[i]));
1170 			pool->dpps[i] = NULL;
1171 		}
1172 
1173 		if (pool->hubps[i] != NULL) {
1174 			kfree(TO_DCN20_HUBP(pool->hubps[i]));
1175 			pool->hubps[i] = NULL;
1176 		}
1177 
1178 		if (pool->irqs != NULL)
1179 			dal_irq_service_destroy(&pool->irqs);
1180 	}
1181 
1182 	for (i = 0; i < (unsigned int)pool->res_cap->num_ddc; i++) {
1183 		if (pool->engines[i] != NULL)
1184 			dce110_engine_destroy(&pool->engines[i]);
1185 		if (pool->hw_i2cs[i] != NULL) {
1186 			kfree(pool->hw_i2cs[i]);
1187 			pool->hw_i2cs[i] = NULL;
1188 		}
1189 		if (pool->sw_i2cs[i] != NULL) {
1190 			kfree(pool->sw_i2cs[i]);
1191 			pool->sw_i2cs[i] = NULL;
1192 		}
1193 	}
1194 
1195 	for (i = 0; i < (unsigned int)pool->res_cap->num_opp; i++) {
1196 		if (pool->opps[i] != NULL)
1197 			pool->opps[i]->funcs->opp_destroy(&pool->opps[i]);
1198 	}
1199 
1200 	for (i = 0; i < (unsigned int)pool->res_cap->num_timing_generator; i++) {
1201 		if (pool->timing_generators[i] != NULL)	{
1202 			kfree(DCN10TG_FROM_TG(pool->timing_generators[i]));
1203 			pool->timing_generators[i] = NULL;
1204 		}
1205 	}
1206 
1207 	for (i = 0; i < (unsigned int)pool->res_cap->num_dwb; i++) {
1208 		if (pool->dwbc[i] != NULL) {
1209 			kfree(TO_DCN30_DWBC(pool->dwbc[i]));
1210 			pool->dwbc[i] = NULL;
1211 		}
1212 		if (pool->mcif_wb[i] != NULL) {
1213 			kfree(TO_DCN30_MMHUBBUB(pool->mcif_wb[i]));
1214 			pool->mcif_wb[i] = NULL;
1215 		}
1216 	}
1217 
1218 	for (i = 0; i < pool->audio_count; i++) {
1219 		if (pool->audios[i])
1220 			dce_aud_destroy(&pool->audios[i]);
1221 	}
1222 
1223 	for (i = 0; i < pool->clk_src_count; i++) {
1224 		if (pool->clock_sources[i] != NULL)
1225 			dcn20_clock_source_destroy(&pool->clock_sources[i]);
1226 	}
1227 
1228 	if (pool->dp_clock_source != NULL)
1229 		dcn20_clock_source_destroy(&pool->dp_clock_source);
1230 
1231 	for (i = 0; i < (unsigned int)pool->res_cap->num_mpc_3dlut; i++) {
1232 		if (pool->mpc_lut[i] != NULL) {
1233 			dc_3dlut_func_release(pool->mpc_lut[i]);
1234 			pool->mpc_lut[i] = NULL;
1235 		}
1236 		if (pool->mpc_shaper[i] != NULL) {
1237 			dc_transfer_func_release(pool->mpc_shaper[i]);
1238 			pool->mpc_shaper[i] = NULL;
1239 		}
1240 	}
1241 
1242 	for (i = 0; i < pool->pipe_count; i++) {
1243 		if (pool->multiple_abms[i] != NULL)
1244 			dce_abm_destroy(&pool->multiple_abms[i]);
1245 	}
1246 
1247 	if (pool->psr != NULL)
1248 		dmub_psr_destroy(&pool->psr);
1249 
1250 	if (pool->dccg != NULL)
1251 		dcn_dccg_destroy(&pool->dccg);
1252 
1253 	if (pool->oem_device != NULL) {
1254 		struct dc *dc = pool->oem_device->ctx->dc;
1255 
1256 		dc->link_srv->destroy_ddc_service(&pool->oem_device);
1257 	}
1258 }
1259 
dcn302_destroy_resource_pool(struct resource_pool ** pool)1260 static void dcn302_destroy_resource_pool(struct resource_pool **pool)
1261 {
1262 	dcn302_resource_destruct(*pool);
1263 	kfree(*pool);
1264 	*pool = NULL;
1265 }
1266 
dcn302_update_bw_bounding_box(struct dc * dc,struct clk_bw_params * bw_params)1267 void dcn302_update_bw_bounding_box(struct dc *dc, struct clk_bw_params *bw_params)
1268 {
1269 	DC_FP_START();
1270 	dcn302_fpu_update_bw_bounding_box(dc, bw_params);
1271 	DC_FP_END();
1272 }
1273 
dcn302_get_panel_config_defaults(struct dc_panel_config * panel_config)1274 static void dcn302_get_panel_config_defaults(struct dc_panel_config *panel_config)
1275 {
1276 	*panel_config = panel_config_defaults;
1277 }
1278 
1279 static struct resource_funcs dcn302_res_pool_funcs = {
1280 		.destroy = dcn302_destroy_resource_pool,
1281 		.link_enc_create = dcn302_link_encoder_create,
1282 		.panel_cntl_create = dcn302_panel_cntl_create,
1283 		.hpo_frl_link_enc_create = dcn302_hpo_frl_link_encoder_create,
1284 		.validate_bandwidth = dcn30_validate_bandwidth,
1285 		.calculate_wm_and_dlg = dcn30_calculate_wm_and_dlg,
1286 		.update_soc_for_wm_a = dcn30_update_soc_for_wm_a,
1287 		.populate_dml_pipes = dcn30_populate_dml_pipes_from_context,
1288 		.acquire_free_pipe_as_secondary_dpp_pipe = dcn20_acquire_free_pipe_for_layer,
1289 		.release_pipe = dcn20_release_pipe,
1290 		.add_stream_to_ctx = dcn30_add_stream_to_ctx,
1291 		.add_dsc_to_stream_resource = dcn20_add_dsc_to_stream_resource,
1292 		.remove_stream_from_ctx = dcn20_remove_stream_from_ctx,
1293 		.populate_dml_writeback_from_context = dcn30_populate_dml_writeback_from_context,
1294 		.set_mcif_arb_params = dcn30_set_mcif_arb_params,
1295 		.find_first_free_match_stream_enc_for_link = dcn10_find_first_free_match_stream_enc_for_link,
1296 		.acquire_post_bldn_3dlut = dcn30_acquire_post_bldn_3dlut,
1297 		.release_post_bldn_3dlut = dcn30_release_post_bldn_3dlut,
1298 		.update_bw_bounding_box = dcn302_update_bw_bounding_box,
1299 		.patch_unknown_plane_state = dcn20_patch_unknown_plane_state,
1300 		.get_panel_config_defaults = dcn302_get_panel_config_defaults,
1301 		.get_vstartup_for_pipe = dcn10_get_vstartup_for_pipe,
1302 		.get_default_tiling_info = dcn10_get_default_tiling_info
1303 };
1304 
1305 static struct dc_cap_funcs cap_funcs = {
1306 		.get_dcc_compression_cap = dcn20_get_dcc_compression_cap
1307 };
1308 
1309 static const struct bios_registers bios_regs = {
1310 		NBIO_SR(BIOS_SCRATCH_3),
1311 		NBIO_SR(BIOS_SCRATCH_6)
1312 };
1313 
1314 static const struct dccg_registers dccg_regs = {
1315 		DCCG_REG_LIST_DCN3_02()
1316 };
1317 
1318 static const struct dccg_shift dccg_shift = {
1319 		DCCG_MASK_SH_LIST_DCN3_02(__SHIFT)
1320 };
1321 
1322 static const struct dccg_mask dccg_mask = {
1323 		DCCG_MASK_SH_LIST_DCN3_02(_MASK)
1324 };
1325 
1326 #define abm_regs(id)\
1327 		[id] = { ABM_DCN302_REG_LIST(id) }
1328 
1329 static const struct dce_abm_registers abm_regs[] = {
1330 		abm_regs(0),
1331 		abm_regs(1),
1332 		abm_regs(2),
1333 		abm_regs(3),
1334 		abm_regs(4)
1335 };
1336 
1337 static const struct dce_abm_shift abm_shift = {
1338 		ABM_MASK_SH_LIST_DCN30(__SHIFT)
1339 };
1340 
1341 static const struct dce_abm_mask abm_mask = {
1342 		ABM_MASK_SH_LIST_DCN30(_MASK)
1343 };
1344 
dcn302_resource_construct(uint8_t num_virtual_links,struct dc * dc,struct resource_pool * pool)1345 static bool dcn302_resource_construct(
1346 		uint8_t num_virtual_links,
1347 		struct dc *dc,
1348 		struct resource_pool *pool)
1349 {
1350 	int i;
1351 	struct dc_context *ctx = dc->ctx;
1352 	struct irq_service_init_data init_data;
1353 	struct ddc_service_init_data ddc_init_data = {0};
1354 
1355 	ctx->dc_bios->regs = &bios_regs;
1356 
1357 	pool->res_cap = &res_cap_dcn302;
1358 
1359 	pool->funcs = &dcn302_res_pool_funcs;
1360 
1361 	/*************************************************
1362 	 *  Resource + asic cap harcoding                *
1363 	 *************************************************/
1364 	pool->underlay_pipe_index = (unsigned int)NO_UNDERLAY_PIPE;
1365 	pool->pipe_count = pool->res_cap->num_timing_generator;
1366 	pool->mpcc_count = pool->res_cap->num_timing_generator;
1367 	dc->caps.max_downscale_ratio = 600;
1368 	dc->caps.i2c_speed_in_khz = 100;
1369 	dc->caps.i2c_speed_in_khz_hdcp = 5; /*1.4 w/a applied by derfault*/
1370 	dc->caps.max_cursor_size = 256;
1371 	dc->caps.min_horizontal_blanking_period = 80;
1372 	dc->caps.dmdata_alloc_size = 2048;
1373 	dc->caps.mall_size_per_mem_channel = 4;
1374 	/* total size = mall per channel * num channels * 1024 * 1024 */
1375 	dc->caps.mall_size_total = dc->caps.mall_size_per_mem_channel * dc->ctx->dc_bios->vram_info.num_chans * 1048576;
1376 	dc->caps.cursor_cache_size = dc->caps.max_cursor_size * dc->caps.max_cursor_size * 8;
1377 	dc->caps.max_slave_planes = 2;
1378 	dc->caps.max_slave_yuv_planes = 2;
1379 	dc->caps.max_slave_rgb_planes = 2;
1380 	dc->caps.post_blend_color_processing = true;
1381 	dc->caps.force_dp_tps4_for_cp2520 = true;
1382 	dc->caps.hdmi_hpo = true;
1383 	dc->caps.extended_aux_timeout_support = true;
1384 	dc->caps.dmcub_support = true;
1385 	dc->caps.max_v_total = (1 << 15) - 1;
1386 	dc->caps.vtotal_limited_by_fp2 = true;
1387 
1388 	/* Color pipeline capabilities */
1389 	dc->caps.color.dpp.dcn_arch = 1;
1390 	dc->caps.color.dpp.input_lut_shared = 0;
1391 	dc->caps.color.dpp.icsc = 1;
1392 	dc->caps.color.dpp.dgam_ram = 0; // must use gamma_corr
1393 	dc->caps.color.dpp.dgam_rom_caps.srgb = 1;
1394 	dc->caps.color.dpp.dgam_rom_caps.bt2020 = 1;
1395 	dc->caps.color.dpp.dgam_rom_caps.gamma2_2 = 1;
1396 	dc->caps.color.dpp.dgam_rom_caps.pq = 1;
1397 	dc->caps.color.dpp.dgam_rom_caps.hlg = 1;
1398 	dc->caps.color.dpp.post_csc = 1;
1399 	dc->caps.color.dpp.gamma_corr = 1;
1400 	dc->caps.color.dpp.dgam_rom_for_yuv = 0;
1401 	dc->caps.color.dpp.upsp_pre_scaler = 0;
1402 
1403 	dc->caps.color.dpp.hw_3d_lut = 1;
1404 	dc->caps.color.dpp.ogam_ram = 1;
1405 	// no OGAM ROM on DCN3
1406 	dc->caps.color.dpp.ogam_rom_caps.srgb = 0;
1407 	dc->caps.color.dpp.ogam_rom_caps.bt2020 = 0;
1408 	dc->caps.color.dpp.ogam_rom_caps.gamma2_2 = 0;
1409 	dc->caps.color.dpp.ogam_rom_caps.pq = 0;
1410 	dc->caps.color.dpp.ogam_rom_caps.hlg = 0;
1411 	dc->caps.color.dpp.ocsc = 0;
1412 
1413 	dc->caps.color.mpc.gamut_remap = 1;
1414 	dc->caps.color.mpc.num_3dluts = (uint16_t)pool->res_cap->num_mpc_3dlut;
1415 	dc->caps.color.mpc.ogam_ram = 1;
1416 	dc->caps.color.mpc.ogam_rom_caps.srgb = 0;
1417 	dc->caps.color.mpc.ogam_rom_caps.bt2020 = 0;
1418 	dc->caps.color.mpc.ogam_rom_caps.gamma2_2 = 0;
1419 	dc->caps.color.mpc.ogam_rom_caps.pq = 0;
1420 	dc->caps.color.mpc.ogam_rom_caps.hlg = 0;
1421 	dc->caps.color.mpc.ocsc = 1;
1422 	dc->caps.color.mpc.max_gamut_remap_coeff = dc_fixpt_from_fraction(S3D12_MAX, DIVIDER);
1423 
1424 	dc->caps.dp_hdmi21_pcon_support = true;
1425 
1426 	/* read VBIOS LTTPR caps */
1427 	if (ctx->dc_bios->funcs->get_lttpr_caps) {
1428 		enum bp_result bp_query_result;
1429 		uint8_t is_vbios_lttpr_enable = 0;
1430 
1431 		bp_query_result = ctx->dc_bios->funcs->get_lttpr_caps(ctx->dc_bios, &is_vbios_lttpr_enable);
1432 		dc->caps.vbios_lttpr_enable = (bp_query_result == BP_RESULT_OK) && !!is_vbios_lttpr_enable;
1433 	}
1434 
1435 	if (ctx->dc_bios->funcs->get_lttpr_interop) {
1436 		enum bp_result bp_query_result;
1437 		uint8_t is_vbios_interop_enabled = 0;
1438 
1439 		bp_query_result = ctx->dc_bios->funcs->get_lttpr_interop(ctx->dc_bios,
1440 				&is_vbios_interop_enabled);
1441 		dc->caps.vbios_lttpr_aware = (bp_query_result == BP_RESULT_OK) && !!is_vbios_interop_enabled;
1442 	}
1443 	dc->check_config = config_defaults;
1444 
1445 	if (dc->ctx->dce_environment == DCE_ENV_PRODUCTION_DRV)
1446 		dc->debug = debug_defaults_drv;
1447 
1448 	// Init the vm_helper
1449 	if (dc->vm_helper)
1450 		vm_helper_init(dc->vm_helper, 16);
1451 
1452 	/*************************************************
1453 	 *  Create resources                             *
1454 	 *************************************************/
1455 
1456 	/* Clock Sources for Pixel Clock*/
1457 	pool->clock_sources[DCN302_CLK_SRC_PLL0] =
1458 			dcn302_clock_source_create(ctx, ctx->dc_bios,
1459 					CLOCK_SOURCE_COMBO_PHY_PLL0,
1460 					&clk_src_regs[0], false);
1461 	pool->clock_sources[DCN302_CLK_SRC_PLL1] =
1462 			dcn302_clock_source_create(ctx, ctx->dc_bios,
1463 					CLOCK_SOURCE_COMBO_PHY_PLL1,
1464 					&clk_src_regs[1], false);
1465 	pool->clock_sources[DCN302_CLK_SRC_PLL2] =
1466 			dcn302_clock_source_create(ctx, ctx->dc_bios,
1467 					CLOCK_SOURCE_COMBO_PHY_PLL2,
1468 					&clk_src_regs[2], false);
1469 	pool->clock_sources[DCN302_CLK_SRC_PLL3] =
1470 			dcn302_clock_source_create(ctx, ctx->dc_bios,
1471 					CLOCK_SOURCE_COMBO_PHY_PLL3,
1472 					&clk_src_regs[3], false);
1473 	pool->clock_sources[DCN302_CLK_SRC_PLL4] =
1474 			dcn302_clock_source_create(ctx, ctx->dc_bios,
1475 					CLOCK_SOURCE_COMBO_PHY_PLL4,
1476 					&clk_src_regs[4], false);
1477 
1478 	pool->clk_src_count = DCN302_CLK_SRC_TOTAL;
1479 
1480 	/* todo: not reuse phy_pll registers */
1481 	pool->dp_clock_source =
1482 			dcn302_clock_source_create(ctx, ctx->dc_bios,
1483 					CLOCK_SOURCE_ID_DP_DTO,
1484 					&clk_src_regs[0], true);
1485 
1486 	for (i = 0; i < (int)pool->clk_src_count; i++) {
1487 		if (pool->clock_sources[i] == NULL) {
1488 			dm_error("DC: failed to create clock sources!\n");
1489 			BREAK_TO_DEBUGGER();
1490 			goto create_fail;
1491 		}
1492 	}
1493 
1494 	/* DCCG */
1495 	pool->dccg = dccg30_create(ctx, &dccg_regs, &dccg_shift, &dccg_mask);
1496 	if (pool->dccg == NULL) {
1497 		dm_error("DC: failed to create dccg!\n");
1498 		BREAK_TO_DEBUGGER();
1499 		goto create_fail;
1500 	}
1501 
1502 	/* PP Lib and SMU interfaces */
1503 	init_soc_bounding_box(dc, pool);
1504 
1505 	/* DML */
1506 	dml_init_instance(&dc->dml, &dcn3_02_soc, &dcn3_02_ip, DML_PROJECT_DCN30);
1507 
1508 	/* IRQ */
1509 	init_data.ctx = dc->ctx;
1510 	pool->irqs = dal_irq_service_dcn302_create(&init_data);
1511 	if (!pool->irqs)
1512 		goto create_fail;
1513 
1514 	/* HUBBUB */
1515 	pool->hubbub = dcn302_hubbub_create(ctx);
1516 	if (pool->hubbub == NULL) {
1517 		BREAK_TO_DEBUGGER();
1518 		dm_error("DC: failed to create hubbub!\n");
1519 		goto create_fail;
1520 	}
1521 
1522 	/* DIO */
1523 	pool->dio = dcn302_dio_create(ctx);
1524 	if (pool->dio == NULL) {
1525 		BREAK_TO_DEBUGGER();
1526 		dm_error("DC: failed to create dio!\n");
1527 		goto create_fail;
1528 	}
1529 
1530 	/* HUBPs, DPPs, OPPs and TGs */
1531 	for (i = 0; i < (int)pool->pipe_count; i++) {
1532 		pool->hubps[i] = dcn302_hubp_create(ctx, i);
1533 		if (pool->hubps[i] == NULL) {
1534 			BREAK_TO_DEBUGGER();
1535 			dm_error("DC: failed to create hubps!\n");
1536 			goto create_fail;
1537 		}
1538 
1539 		pool->dpps[i] = dcn302_dpp_create(ctx, i);
1540 		if (pool->dpps[i] == NULL) {
1541 			BREAK_TO_DEBUGGER();
1542 			dm_error("DC: failed to create dpps!\n");
1543 			goto create_fail;
1544 		}
1545 	}
1546 
1547 	for (i = 0; i < pool->res_cap->num_opp; i++) {
1548 		pool->opps[i] = dcn302_opp_create(ctx, i);
1549 		if (pool->opps[i] == NULL) {
1550 			BREAK_TO_DEBUGGER();
1551 			dm_error("DC: failed to create output pixel processor!\n");
1552 			goto create_fail;
1553 		}
1554 	}
1555 
1556 	for (i = 0; i < pool->res_cap->num_timing_generator; i++) {
1557 		pool->timing_generators[i] = dcn302_timing_generator_create(ctx, i);
1558 		if (pool->timing_generators[i] == NULL) {
1559 			BREAK_TO_DEBUGGER();
1560 			dm_error("DC: failed to create tg!\n");
1561 			goto create_fail;
1562 		}
1563 	}
1564 	pool->timing_generator_count = i;
1565 
1566 	/* PSR */
1567 	pool->psr = dmub_psr_create(ctx);
1568 	if (pool->psr == NULL) {
1569 		dm_error("DC: failed to create psr!\n");
1570 		BREAK_TO_DEBUGGER();
1571 		goto create_fail;
1572 	}
1573 
1574 	/* ABMs */
1575 	for (i = 0; i < pool->res_cap->num_timing_generator; i++) {
1576 		pool->multiple_abms[i] = dmub_abm_create(ctx, &abm_regs[i], &abm_shift, &abm_mask);
1577 		if (pool->multiple_abms[i] == NULL) {
1578 			dm_error("DC: failed to create abm for pipe %d!\n", i);
1579 			BREAK_TO_DEBUGGER();
1580 			goto create_fail;
1581 		}
1582 	}
1583 
1584 	/* MPC and DSC */
1585 	pool->mpc = dcn302_mpc_create(ctx, pool->mpcc_count, pool->res_cap->num_mpc_3dlut);
1586 	if (pool->mpc == NULL) {
1587 		BREAK_TO_DEBUGGER();
1588 		dm_error("DC: failed to create mpc!\n");
1589 		goto create_fail;
1590 	}
1591 
1592 	for (i = 0; i < pool->res_cap->num_dsc; i++) {
1593 		pool->dscs[i] = dcn302_dsc_create(ctx, i);
1594 		if (pool->dscs[i] == NULL) {
1595 			BREAK_TO_DEBUGGER();
1596 			dm_error("DC: failed to create display stream compressor %d!\n", i);
1597 			goto create_fail;
1598 		}
1599 	}
1600 
1601 	/* DWB and MMHUBBUB */
1602 	if (!dcn302_dwbc_create(ctx, pool)) {
1603 		BREAK_TO_DEBUGGER();
1604 		dm_error("DC: failed to create dwbc!\n");
1605 		goto create_fail;
1606 	}
1607 
1608 	if (!dcn302_mmhubbub_create(ctx, pool)) {
1609 		BREAK_TO_DEBUGGER();
1610 		dm_error("DC: failed to create mcif_wb!\n");
1611 		goto create_fail;
1612 	}
1613 
1614 	/* AUX and I2C */
1615 	for (i = 0; i < pool->res_cap->num_ddc; i++) {
1616 		pool->engines[i] = dcn302_aux_engine_create(ctx, i);
1617 		if (pool->engines[i] == NULL) {
1618 			BREAK_TO_DEBUGGER();
1619 			dm_error("DC:failed to create aux engine!!\n");
1620 			goto create_fail;
1621 		}
1622 		pool->hw_i2cs[i] = dcn302_i2c_hw_create(ctx, i);
1623 		if (pool->hw_i2cs[i] == NULL) {
1624 			BREAK_TO_DEBUGGER();
1625 			dm_error("DC:failed to create hw i2c!!\n");
1626 			goto create_fail;
1627 		}
1628 		pool->sw_i2cs[i] = NULL;
1629 	}
1630 
1631 	/* Audio, Stream Encoders including HPO and virtual, MPC 3D LUTs */
1632 	if (!resource_construct(num_virtual_links, dc, pool,
1633 			&res_create_funcs))
1634 		goto create_fail;
1635 
1636 	/* HW Sequencer and Plane caps */
1637 	dcn302_hw_sequencer_construct(dc);
1638 
1639 	dc->caps.max_planes =  pool->pipe_count;
1640 
1641 	for (i = 0; i < (int)dc->caps.max_planes; ++i)
1642 		dc->caps.planes[i] = plane_cap;
1643 
1644 	dc->caps.max_odm_combine_factor = 4;
1645 
1646 	dc->cap_funcs = cap_funcs;
1647 
1648 	if (dc->ctx->dc_bios->fw_info.oem_i2c_present) {
1649 		ddc_init_data.ctx = dc->ctx;
1650 		ddc_init_data.link = NULL;
1651 		ddc_init_data.id.id = dc->ctx->dc_bios->fw_info.oem_i2c_obj_id;
1652 		ddc_init_data.id.enum_id = 0;
1653 		ddc_init_data.id.type = OBJECT_TYPE_GENERIC;
1654 		pool->oem_device = dc->link_srv->create_ddc_service(&ddc_init_data);
1655 	} else {
1656 		pool->oem_device = NULL;
1657 	}
1658 
1659 	return true;
1660 
1661 create_fail:
1662 
1663 	dcn302_resource_destruct(pool);
1664 
1665 	return false;
1666 }
1667 
dcn302_create_resource_pool(const struct dc_init_data * init_data,struct dc * dc)1668 struct resource_pool *dcn302_create_resource_pool(const struct dc_init_data *init_data, struct dc *dc)
1669 {
1670 	struct resource_pool *pool = kzalloc_obj(struct resource_pool);
1671 
1672 	if (!pool)
1673 		return NULL;
1674 
1675 	if (dcn302_resource_construct((uint8_t)init_data->num_virtual_links, dc, pool))
1676 		return pool;
1677 
1678 	BREAK_TO_DEBUGGER();
1679 	kfree(pool);
1680 	return NULL;
1681 }
1682