1 /*
2 * Copyright 2016 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 "dm_services.h"
27 #include "dc.h"
28 
29 #include "dcn201/dcn201_init.h"
30 #include "dml/dcn20/dcn20_fpu.h"
31 #include "resource.h"
32 #include "include/irq_service_interface.h"
33 #include "dcn201_resource.h"
34 
35 #include "dcn20/dcn20_resource.h"
36 
37 #include "dcn10/dcn10_hubp.h"
38 #include "dcn10/dcn10_ipp.h"
39 #include "dcn201/dcn201_mpc.h"
40 #include "dcn201/dcn201_hubp.h"
41 #include "irq/dcn201/irq_service_dcn201.h"
42 #include "dcn201/dcn201_dpp.h"
43 #include "dcn201/dcn201_hubbub.h"
44 #include "dcn201/dcn201_dccg.h"
45 #include "dcn201/dcn201_optc.h"
46 #include "dcn201/dcn201_hwseq.h"
47 #include "dce110/dce110_hwseq.h"
48 #include "dcn201/dcn201_opp.h"
49 #include "dcn201/dcn201_link_encoder.h"
50 #include "dcn20/dcn20_stream_encoder.h"
51 #include "dce/dce_clock_source.h"
52 #include "dce/dce_audio.h"
53 #include "dce/dce_hwseq.h"
54 #include "virtual/virtual_stream_encoder.h"
55 #include "dce110/dce110_resource.h"
56 #include "dce/dce_aux.h"
57 #include "dce/dce_i2c.h"
58 #include "dcn10/dcn10_resource.h"
59 
60 #include "cyan_skillfish_ip_offset.h"
61 
62 #include "dcn/dcn_2_0_1_offset.h"
63 #include "dcn/dcn_2_0_1_sh_mask.h"
64 #include "dpcs/dpcs_2_0_3_offset.h"
65 #include "dpcs/dpcs_2_0_3_sh_mask.h"
66 
67 #include "mmhub/mmhub_2_0_0_offset.h"
68 #include "mmhub/mmhub_2_0_0_sh_mask.h"
69 #include "nbio/nbio_7_4_offset.h"
70 
71 #include "reg_helper.h"
72 
73 #define MIN_DISP_CLK_KHZ 100000
74 #define MIN_DPP_CLK_KHZ 100000
75 
76 static struct _vcs_dpi_ip_params_st dcn201_ip = {
77 	.gpuvm_enable = 0,
78 	.hostvm_enable = 0,
79 	.gpuvm_max_page_table_levels = 4,
80 	.hostvm_max_page_table_levels = 4,
81 	.hostvm_cached_page_table_levels = 0,
82 	.pte_group_size_bytes = 2048,
83 	.rob_buffer_size_kbytes = 168,
84 	.det_buffer_size_kbytes = 164,
85 	.dpte_buffer_size_in_pte_reqs_luma = 84,
86 	.pde_proc_buffer_size_64k_reqs = 48,
87 	.dpp_output_buffer_pixels = 2560,
88 	.opp_output_buffer_lines = 1,
89 	.pixel_chunk_size_kbytes = 8,
90 	.pte_chunk_size_kbytes = 2,
91 	.meta_chunk_size_kbytes = 2,
92 	.writeback_chunk_size_kbytes = 2,
93 	.line_buffer_size_bits = 789504,
94 	.is_line_buffer_bpp_fixed = 0,
95 	.line_buffer_fixed_bpp = 0,
96 	.dcc_supported = true,
97 	.max_line_buffer_lines = 12,
98 	.writeback_luma_buffer_size_kbytes = 12,
99 	.writeback_chroma_buffer_size_kbytes = 8,
100 	.writeback_chroma_line_buffer_width_pixels = 4,
101 	.writeback_max_hscl_ratio = 1,
102 	.writeback_max_vscl_ratio = 1,
103 	.writeback_min_hscl_ratio = 1,
104 	.writeback_min_vscl_ratio = 1,
105 	.writeback_max_hscl_taps = 12,
106 	.writeback_max_vscl_taps = 12,
107 	.writeback_line_buffer_luma_buffer_size = 0,
108 	.writeback_line_buffer_chroma_buffer_size = 9600,
109 	.cursor_buffer_size = 8,
110 	.cursor_chunk_size = 2,
111 	.max_num_otg = 2,
112 	.max_num_dpp = 4,
113 	.max_num_wb = 0,
114 	.max_dchub_pscl_bw_pix_per_clk = 4,
115 	.max_pscl_lb_bw_pix_per_clk = 2,
116 	.max_lb_vscl_bw_pix_per_clk = 4,
117 	.max_vscl_hscl_bw_pix_per_clk = 4,
118 	.max_hscl_ratio = 8,
119 	.max_vscl_ratio = 8,
120 	.hscl_mults = 4,
121 	.vscl_mults = 4,
122 	.max_hscl_taps = 8,
123 	.max_vscl_taps = 8,
124 	.dispclk_ramp_margin_percent = 1,
125 	.underscan_factor = 1.10,
126 	.min_vblank_lines = 30,
127 	.dppclk_delay_subtotal = 77,
128 	.dppclk_delay_scl_lb_only = 16,
129 	.dppclk_delay_scl = 50,
130 	.dppclk_delay_cnvc_formatter = 8,
131 	.dppclk_delay_cnvc_cursor = 6,
132 	.dispclk_delay_subtotal = 87,
133 	.dcfclk_cstate_latency = 10,
134 	.max_inter_dcn_tile_repeaters = 8,
135 	.number_of_cursors = 1,
136 };
137 
138 static struct _vcs_dpi_soc_bounding_box_st dcn201_soc = {
139 	.clock_limits = {
140 			{
141 				.state = 0,
142 				.dscclk_mhz = 400.0,
143 				.dcfclk_mhz = 1000.0,
144 				.fabricclk_mhz = 200.0,
145 				.dispclk_mhz = 300.0,
146 				.dppclk_mhz = 300.0,
147 				.phyclk_mhz = 810.0,
148 				.socclk_mhz = 1254.0,
149 				.dram_speed_mts = 2000.0,
150 			},
151 			{
152 				.state = 1,
153 				.dscclk_mhz = 400.0,
154 				.dcfclk_mhz = 1000.0,
155 				.fabricclk_mhz = 250.0,
156 				.dispclk_mhz = 1200.0,
157 				.dppclk_mhz = 1200.0,
158 				.phyclk_mhz = 810.0,
159 				.socclk_mhz = 1254.0,
160 				.dram_speed_mts = 3600.0,
161 			},
162 			{
163 				.state = 2,
164 				.dscclk_mhz = 400.0,
165 				.dcfclk_mhz = 1000.0,
166 				.fabricclk_mhz = 750.0,
167 				.dispclk_mhz = 1200.0,
168 				.dppclk_mhz = 1200.0,
169 				.phyclk_mhz = 810.0,
170 				.socclk_mhz = 1254.0,
171 				.dram_speed_mts = 6800.0,
172 			},
173 			{
174 				.state = 3,
175 				.dscclk_mhz = 400.0,
176 				.dcfclk_mhz = 1000.0,
177 				.fabricclk_mhz = 250.0,
178 				.dispclk_mhz = 1200.0,
179 				.dppclk_mhz = 1200.0,
180 				.phyclk_mhz = 810.0,
181 				.socclk_mhz = 1254.0,
182 				.dram_speed_mts = 14000.0,
183 			},
184 			/* state4 is not an actual state, just defines unsupported for dml*/
185 			{
186 				.state = 4,
187 				.dscclk_mhz = 400.0,
188 				.dcfclk_mhz = 1000.0,
189 				.fabricclk_mhz = 750.0,
190 				.dispclk_mhz = 1200.0,
191 				.dppclk_mhz = 1200.0,
192 				.phyclk_mhz = 810.0,
193 				.socclk_mhz = 1254.0,
194 				.dram_speed_mts = 14000.0,
195 			}
196 		},
197 	.num_states = 4,
198 	.sr_exit_time_us = 9.0,
199 	.sr_enter_plus_exit_time_us = 11.0,
200 	.urgent_latency_us = 4.0,
201 	.urgent_latency_pixel_data_only_us = 4.0,
202 	.urgent_latency_pixel_mixed_with_vm_data_us = 4.0,
203 	.urgent_latency_vm_data_only_us = 4.0,
204 	.urgent_out_of_order_return_per_channel_pixel_only_bytes = 256,
205 	.urgent_out_of_order_return_per_channel_pixel_and_vm_bytes = 256,
206 	.urgent_out_of_order_return_per_channel_vm_only_bytes = 256,
207 	.pct_ideal_dram_sdp_bw_after_urgent_pixel_only = 80.0,
208 	.pct_ideal_dram_sdp_bw_after_urgent_pixel_and_vm = 80.0,
209 	.pct_ideal_dram_sdp_bw_after_urgent_vm_only = 80.0,
210 	.max_avg_sdp_bw_use_normal_percent = 80.0,
211 	.max_avg_dram_bw_use_normal_percent = 69.0,
212 	.writeback_latency_us = 12.0,
213 	.ideal_dram_bw_after_urgent_percent = 80.0,
214 	.max_request_size_bytes = 256,
215 	.dram_channel_width_bytes = 2,
216 	.fabric_datapath_to_dcn_data_return_bytes = 64,
217 	.dcn_downspread_percent = 0.3,
218 	.downspread_percent = 0.3,
219 	.dram_page_open_time_ns = 50.0,
220 	.dram_rw_turnaround_time_ns = 17.5,
221 	.dram_return_buffer_per_channel_bytes = 8192,
222 	.round_trip_ping_latency_dcfclk_cycles = 128,
223 	.urgent_out_of_order_return_per_channel_bytes = 256,
224 	.channel_interleave_bytes = 256,
225 	.num_banks = 8,
226 	.num_chans = 16,
227 	.vmm_page_size_bytes = 4096,
228 	.dram_clock_change_latency_us = 250.0,
229 	.writeback_dram_clock_change_latency_us = 23.0,
230 	.return_bus_width_bytes = 64,
231 	.dispclk_dppclk_vco_speed_mhz = 3000,
232 	.use_urgent_burst_bw = 0,
233 };
234 
235 enum dcn20_clk_src_array_id {
236 	DCN20_CLK_SRC_PLL0,
237 	DCN20_CLK_SRC_PLL1,
238 	DCN20_CLK_SRC_TOTAL_DCN201
239 };
240 
241 /* begin *********************
242  * macros to expend register list macro defined in HW object header file */
243 
244 /* DCN */
245 
246 #undef BASE_INNER
247 #define BASE_INNER(seg) DMU_BASE__INST0_SEG ## seg
248 
249 #define BASE(seg) BASE_INNER(seg)
250 
251 #define SR(reg_name)\
252 		.reg_name = BASE(mm ## reg_name ## _BASE_IDX) +  \
253 					mm ## reg_name
254 
255 #define SRI(reg_name, block, id)\
256 	.reg_name = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
257 					mm ## block ## id ## _ ## reg_name
258 
259 #define SRIR(var_name, reg_name, block, id)\
260 	.var_name = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
261 					mm ## block ## id ## _ ## reg_name
262 
263 #define SRII(reg_name, block, id)\
264 	.reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
265 					mm ## block ## id ## _ ## reg_name
266 
267 #define SRI_IX(reg_name, block, id)\
268 	.reg_name = ix ## block ## id ## _ ## reg_name
269 
270 #define DCCG_SRII(reg_name, block, id)\
271 	.block ## _ ## reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \
272 					mm ## block ## id ## _ ## reg_name
273 
274 #define VUPDATE_SRII(reg_name, block, id)\
275 	.reg_name[id] = BASE(mm ## reg_name ## _ ## block ## id ## _BASE_IDX) + \
276 					mm ## reg_name ## _ ## block ## id
277 
278 /* NBIO */
279 #define NBIO_BASE_INNER(seg) \
280 	NBIO_BASE__INST0_SEG ## seg
281 
282 #define NBIO_BASE(seg) \
283 	NBIO_BASE_INNER(seg)
284 
285 #define NBIO_SR(reg_name)\
286 		.reg_name = NBIO_BASE(mm ## reg_name ## _BASE_IDX) + \
287 					mm ## reg_name
288 
289 /* MMHUB */
290 #define MMHUB_BASE_INNER(seg) \
291 	MMHUB_BASE__INST0_SEG ## seg
292 
293 #define MMHUB_BASE(seg) \
294 	MMHUB_BASE_INNER(seg)
295 
296 #define MMHUB_SR(reg_name)\
297 		.reg_name = MMHUB_BASE(mmMM ## reg_name ## _BASE_IDX) + \
298 					mmMM ## reg_name
299 
300 static const struct bios_registers bios_regs = {
301 		NBIO_SR(BIOS_SCRATCH_3),
302 		NBIO_SR(BIOS_SCRATCH_6)
303 };
304 
305 #define clk_src_regs(index, pllid)\
306 [index] = {\
307 	CS_COMMON_REG_LIST_DCN201(index, pllid),\
308 }
309 
310 static const struct dce110_clk_src_regs clk_src_regs[] = {
311 	clk_src_regs(0, A),
312 	clk_src_regs(1, B)
313 };
314 
315 static const struct dce110_clk_src_shift cs_shift = {
316 		CS_COMMON_MASK_SH_LIST_DCN2_0(__SHIFT)
317 };
318 
319 static const struct dce110_clk_src_mask cs_mask = {
320 		CS_COMMON_MASK_SH_LIST_DCN2_0(_MASK)
321 };
322 
323 #define audio_regs(id)\
324 [id] = {\
325 		AUD_COMMON_REG_LIST(id)\
326 }
327 
328 static const struct dce_audio_registers audio_regs[] = {
329 	audio_regs(0),
330 	audio_regs(1),
331 };
332 
333 #define DCE120_AUD_COMMON_MASK_SH_LIST(mask_sh)\
334 		SF(AZF0ENDPOINT0_AZALIA_F0_CODEC_ENDPOINT_INDEX, AZALIA_ENDPOINT_REG_INDEX, mask_sh),\
335 		SF(AZF0ENDPOINT0_AZALIA_F0_CODEC_ENDPOINT_DATA, AZALIA_ENDPOINT_REG_DATA, mask_sh),\
336 		AUD_COMMON_MASK_SH_LIST_BASE(mask_sh)
337 
338 static const struct dce_audio_shift audio_shift = {
339 		DCE120_AUD_COMMON_MASK_SH_LIST(__SHIFT)
340 };
341 
342 static const struct dce_audio_mask audio_mask = {
343 		DCE120_AUD_COMMON_MASK_SH_LIST(_MASK)
344 };
345 
346 #define stream_enc_regs(id)\
347 [id] = {\
348 	SE_DCN2_REG_LIST(id)\
349 }
350 
351 static const struct dcn10_stream_enc_registers stream_enc_regs[] = {
352 	stream_enc_regs(0),
353 	stream_enc_regs(1)
354 };
355 
356 static const struct dcn10_stream_encoder_shift se_shift = {
357 		SE_COMMON_MASK_SH_LIST_DCN20(__SHIFT)
358 };
359 
360 static const struct dcn10_stream_encoder_mask se_mask = {
361 		SE_COMMON_MASK_SH_LIST_DCN20(_MASK)
362 };
363 
364 static const struct dce110_aux_registers_shift aux_shift = {
365 	DCN_AUX_MASK_SH_LIST(__SHIFT)
366 };
367 
368 static const struct dce110_aux_registers_mask aux_mask = {
369 	DCN_AUX_MASK_SH_LIST(_MASK)
370 };
371 
372 #define aux_regs(id)\
373 [id] = {\
374 	DCN2_AUX_REG_LIST(id)\
375 }
376 
377 static const struct dcn10_link_enc_aux_registers link_enc_aux_regs[] = {
378 		aux_regs(0),
379 		aux_regs(1),
380 };
381 
382 #define hpd_regs(id)\
383 [id] = {\
384 	HPD_REG_LIST(id)\
385 }
386 
387 static const struct dcn10_link_enc_hpd_registers link_enc_hpd_regs[] = {
388 		hpd_regs(0),
389 		hpd_regs(1),
390 };
391 
392 #define link_regs(id, phyid)\
393 [id] = {\
394 	LE_DCN_COMMON_REG_LIST(id), \
395 	UNIPHY_DCN2_REG_LIST(phyid) \
396 }
397 
398 static const struct dcn10_link_enc_registers link_enc_regs[] = {
399 	link_regs(0, A),
400 	link_regs(1, B),
401 };
402 
403 #define LINK_ENCODER_MASK_SH_LIST_DCN201(mask_sh)\
404 	LINK_ENCODER_MASK_SH_LIST_DCN20(mask_sh)
405 
406 static const struct dcn10_link_enc_shift le_shift = {
407 		LINK_ENCODER_MASK_SH_LIST_DCN201(__SHIFT)
408 };
409 
410 static const struct dcn10_link_enc_mask le_mask = {
411 		LINK_ENCODER_MASK_SH_LIST_DCN201(_MASK)
412 };
413 
414 #define ipp_regs(id)\
415 [id] = {\
416 		IPP_REG_LIST_DCN201(id),\
417 }
418 
419 static const struct dcn10_ipp_registers ipp_regs[] = {
420 	ipp_regs(0),
421 	ipp_regs(1),
422 	ipp_regs(2),
423 	ipp_regs(3),
424 };
425 
426 static const struct dcn10_ipp_shift ipp_shift = {
427 		IPP_MASK_SH_LIST_DCN201(__SHIFT)
428 };
429 
430 static const struct dcn10_ipp_mask ipp_mask = {
431 		IPP_MASK_SH_LIST_DCN201(_MASK)
432 };
433 
434 #define opp_regs(id)\
435 [id] = {\
436 	OPP_REG_LIST_DCN201(id),\
437 }
438 
439 static const struct dcn201_opp_registers opp_regs[] = {
440 	opp_regs(0),
441 	opp_regs(1),
442 };
443 
444 static const struct dcn201_opp_shift opp_shift = {
445 		OPP_MASK_SH_LIST_DCN201(__SHIFT)
446 };
447 
448 static const struct dcn201_opp_mask opp_mask = {
449 		OPP_MASK_SH_LIST_DCN201(_MASK)
450 };
451 
452 #define aux_engine_regs(id)\
453 [id] = {\
454 	AUX_COMMON_REG_LIST0(id), \
455 	.AUX_RESET_MASK = 0 \
456 }
457 
458 static const struct dce110_aux_registers aux_engine_regs[] = {
459 		aux_engine_regs(0),
460 		aux_engine_regs(1)
461 };
462 
463 #define tf_regs(id)\
464 [id] = {\
465 	TF_REG_LIST_DCN201(id),\
466 }
467 
468 static const struct dcn201_dpp_registers tf_regs[] = {
469 	tf_regs(0),
470 	tf_regs(1),
471 	tf_regs(2),
472 	tf_regs(3),
473 };
474 
475 static const struct dcn201_dpp_shift tf_shift = {
476 		TF_REG_LIST_SH_MASK_DCN201(__SHIFT)
477 };
478 
479 static const struct dcn201_dpp_mask tf_mask = {
480 		TF_REG_LIST_SH_MASK_DCN201(_MASK)
481 };
482 
483 static const struct dcn201_mpc_registers mpc_regs = {
484 		MPC_REG_LIST_DCN201(0),
485 		MPC_REG_LIST_DCN201(1),
486 		MPC_REG_LIST_DCN201(2),
487 		MPC_REG_LIST_DCN201(3),
488 		MPC_REG_LIST_DCN201(4),
489 		MPC_OUT_MUX_REG_LIST_DCN201(0),
490 		MPC_OUT_MUX_REG_LIST_DCN201(1),
491 };
492 
493 static const struct dcn201_mpc_shift mpc_shift = {
494 	MPC_COMMON_MASK_SH_LIST_DCN201(__SHIFT)
495 };
496 
497 static const struct dcn201_mpc_mask mpc_mask = {
498 	MPC_COMMON_MASK_SH_LIST_DCN201(_MASK)
499 };
500 
501 #define tg_regs_dcn201(id)\
502 [id] = {TG_COMMON_REG_LIST_DCN201(id)}
503 
504 static const struct dcn_optc_registers tg_regs[] = {
505 	tg_regs_dcn201(0),
506 	tg_regs_dcn201(1)
507 };
508 
509 static const struct dcn_optc_shift tg_shift = {
510 	TG_COMMON_MASK_SH_LIST_DCN201(__SHIFT)
511 };
512 
513 static const struct dcn_optc_mask tg_mask = {
514 	TG_COMMON_MASK_SH_LIST_DCN201(_MASK)
515 };
516 
517 #define hubp_regsDCN201(id)\
518 [id] = {\
519 	HUBP_REG_LIST_DCN201(id)\
520 }
521 
522 static const struct dcn201_hubp_registers hubp_regs[] = {
523 		hubp_regsDCN201(0),
524 		hubp_regsDCN201(1),
525 		hubp_regsDCN201(2),
526 		hubp_regsDCN201(3)
527 };
528 
529 static const struct dcn201_hubp_shift hubp_shift = {
530 		HUBP_MASK_SH_LIST_DCN201(__SHIFT)
531 };
532 
533 static const struct dcn201_hubp_mask hubp_mask = {
534 		HUBP_MASK_SH_LIST_DCN201(_MASK)
535 };
536 
537 static const struct dcn_hubbub_registers hubbub_reg = {
538 		HUBBUB_REG_LIST_DCN201(0)
539 };
540 
541 static const struct dcn_hubbub_shift hubbub_shift = {
542 		HUBBUB_MASK_SH_LIST_DCN201(__SHIFT)
543 };
544 
545 static const struct dcn_hubbub_mask hubbub_mask = {
546 		HUBBUB_MASK_SH_LIST_DCN201(_MASK)
547 };
548 
549 
550 static const struct dccg_registers dccg_regs = {
551 		DCCG_COMMON_REG_LIST_DCN_BASE()
552 };
553 
554 static const struct dccg_shift dccg_shift = {
555 		DCCG_COMMON_MASK_SH_LIST_DCN_COMMON_BASE(__SHIFT)
556 };
557 
558 static const struct dccg_mask dccg_mask = {
559 		DCCG_COMMON_MASK_SH_LIST_DCN_COMMON_BASE(_MASK)
560 };
561 
562 static const struct resource_caps res_cap_dnc201 = {
563 		.num_timing_generator = 2,
564 		.num_opp = 2,
565 		.num_video_plane = 4,
566 		.num_audio = 2,
567 		.num_stream_encoder = 2,
568 		.num_pll = 2,
569 		.num_dwb = 0,
570 		.num_dsc = 0,
571 		.num_ddc = 2,
572 };
573 
574 static const struct dc_plane_cap plane_cap = {
575 	.type = DC_PLANE_TYPE_DCN_UNIVERSAL,
576 	.per_pixel_alpha = true,
577 
578 	.pixel_format_support = {
579 			.argb8888 = true,
580 			.nv12 = false,
581 			.fp16 = true,
582 			.p010 = false,
583 	},
584 
585 	.max_upscale_factor = {
586 			.argb8888 = 16000,
587 			.nv12 = 16000,
588 			.fp16 = 1
589 	},
590 
591 	.max_downscale_factor = {
592 			.argb8888 = 250,
593 			.nv12 = 250,
594 			.fp16 = 250
595 	},
596 	64,
597 	64
598 };
599 
600 static const struct dc_debug_options debug_defaults_drv = {
601 		.disable_dmcu = true,
602 		.force_abm_enable = false,
603 		.clock_trace = true,
604 		.disable_pplib_clock_request = true,
605 		.pipe_split_policy = MPC_SPLIT_DYNAMIC,
606 		.force_single_disp_pipe_split = false,
607 		.disable_dcc = DCC_ENABLE,
608 		.vsr_support = true,
609 		.performance_trace = false,
610 		.az_endpoint_mute_only = true,
611 		.max_downscale_src_width = 3840,
612 		.disable_pplib_wm_range = true,
613 		.scl_reset_length10 = true,
614 		.sanity_checks = false,
615 		.underflow_assert_delay_us = 0xFFFFFFFF,
616 		.enable_tri_buf = true,
617 		.enable_legacy_fast_update = true,
618 		.using_dml2 = false,
619 };
620 
dcn201_dpp_destroy(struct dpp ** dpp)621 static void dcn201_dpp_destroy(struct dpp **dpp)
622 {
623 	kfree(TO_DCN201_DPP(*dpp));
624 	*dpp = NULL;
625 }
626 
dcn201_dpp_create(struct dc_context * ctx,uint32_t inst)627 static struct dpp *dcn201_dpp_create(
628 	struct dc_context *ctx,
629 	uint32_t inst)
630 {
631 	struct dcn201_dpp *dpp =
632 		kzalloc(sizeof(struct dcn201_dpp), GFP_ATOMIC);
633 
634 	if (!dpp)
635 		return NULL;
636 
637 	if (dpp201_construct(dpp, ctx, inst,
638 			&tf_regs[inst], &tf_shift, &tf_mask))
639 		return &dpp->base;
640 
641 	kfree(dpp);
642 	return NULL;
643 }
644 
dcn201_ipp_create(struct dc_context * ctx,uint32_t inst)645 static struct input_pixel_processor *dcn201_ipp_create(
646 	struct dc_context *ctx, uint32_t inst)
647 {
648 	struct dcn10_ipp *ipp =
649 		kzalloc(sizeof(struct dcn10_ipp), GFP_ATOMIC);
650 
651 	if (!ipp) {
652 		return NULL;
653 	}
654 
655 	dcn20_ipp_construct(ipp, ctx, inst,
656 			&ipp_regs[inst], &ipp_shift, &ipp_mask);
657 	return &ipp->base;
658 }
659 
660 
dcn201_opp_create(struct dc_context * ctx,uint32_t inst)661 static struct output_pixel_processor *dcn201_opp_create(
662 	struct dc_context *ctx, uint32_t inst)
663 {
664 	struct dcn201_opp *opp =
665 		kzalloc(sizeof(struct dcn201_opp), GFP_ATOMIC);
666 
667 	if (!opp) {
668 		return NULL;
669 	}
670 
671 	dcn201_opp_construct(opp, ctx, inst,
672 			&opp_regs[inst], &opp_shift, &opp_mask);
673 	return &opp->base;
674 }
675 
dcn201_aux_engine_create(struct dc_context * ctx,uint32_t inst)676 static struct dce_aux *dcn201_aux_engine_create(struct dc_context *ctx,
677 						uint32_t inst)
678 {
679 	struct aux_engine_dce110 *aux_engine =
680 		kzalloc(sizeof(struct aux_engine_dce110), GFP_ATOMIC);
681 
682 	if (!aux_engine)
683 		return NULL;
684 
685 	dce110_aux_engine_construct(aux_engine, ctx, inst,
686 				    SW_AUX_TIMEOUT_PERIOD_MULTIPLIER * AUX_TIMEOUT_PERIOD,
687 				    &aux_engine_regs[inst],
688 					&aux_mask,
689 					&aux_shift,
690 					ctx->dc->caps.extended_aux_timeout_support);
691 
692 	return &aux_engine->base;
693 }
694 #define i2c_inst_regs(id) { I2C_HW_ENGINE_COMMON_REG_LIST(id) }
695 
696 static const struct dce_i2c_registers i2c_hw_regs[] = {
697 		i2c_inst_regs(1),
698 		i2c_inst_regs(2),
699 };
700 
701 static const struct dce_i2c_shift i2c_shifts = {
702 		I2C_COMMON_MASK_SH_LIST_DCN2(__SHIFT)
703 };
704 
705 static const struct dce_i2c_mask i2c_masks = {
706 		I2C_COMMON_MASK_SH_LIST_DCN2(_MASK)
707 };
708 
dcn201_i2c_hw_create(struct dc_context * ctx,uint32_t inst)709 static struct dce_i2c_hw *dcn201_i2c_hw_create(struct dc_context *ctx,
710 					       uint32_t inst)
711 {
712 	struct dce_i2c_hw *dce_i2c_hw =
713 		kzalloc(sizeof(struct dce_i2c_hw), GFP_ATOMIC);
714 
715 	if (!dce_i2c_hw)
716 		return NULL;
717 
718 	dcn2_i2c_hw_construct(dce_i2c_hw, ctx, inst,
719 				    &i2c_hw_regs[inst], &i2c_shifts, &i2c_masks);
720 
721 	return dce_i2c_hw;
722 }
723 
dcn201_mpc_create(struct dc_context * ctx,uint32_t num_mpcc)724 static struct mpc *dcn201_mpc_create(struct dc_context *ctx, uint32_t num_mpcc)
725 {
726 	struct dcn201_mpc *mpc201 = kzalloc(sizeof(struct dcn201_mpc),
727 					    GFP_ATOMIC);
728 
729 	if (!mpc201)
730 		return NULL;
731 
732 	dcn201_mpc_construct(mpc201, ctx,
733 			&mpc_regs,
734 			&mpc_shift,
735 			&mpc_mask,
736 			num_mpcc);
737 
738 	return &mpc201->base;
739 }
740 
dcn201_hubbub_create(struct dc_context * ctx)741 static struct hubbub *dcn201_hubbub_create(struct dc_context *ctx)
742 {
743 	struct dcn20_hubbub *hubbub = kzalloc(sizeof(struct dcn20_hubbub),
744 					  GFP_ATOMIC);
745 
746 	if (!hubbub)
747 		return NULL;
748 
749 	hubbub201_construct(hubbub, ctx,
750 			&hubbub_reg,
751 			&hubbub_shift,
752 			&hubbub_mask);
753 
754 	return &hubbub->base;
755 }
756 
dcn201_timing_generator_create(struct dc_context * ctx,uint32_t instance)757 static struct timing_generator *dcn201_timing_generator_create(
758 		struct dc_context *ctx,
759 		uint32_t instance)
760 {
761 	struct optc *tgn10 =
762 		kzalloc(sizeof(struct optc), GFP_ATOMIC);
763 
764 	if (!tgn10)
765 		return NULL;
766 
767 	tgn10->base.inst = instance;
768 	tgn10->base.ctx = ctx;
769 
770 	tgn10->tg_regs = &tg_regs[instance];
771 	tgn10->tg_shift = &tg_shift;
772 	tgn10->tg_mask = &tg_mask;
773 
774 	dcn201_timing_generator_init(tgn10);
775 
776 	return &tgn10->base;
777 }
778 
779 static const struct encoder_feature_support link_enc_feature = {
780 		.max_hdmi_deep_color = COLOR_DEPTH_121212,
781 		.max_hdmi_pixel_clock = 600000,
782 		.hdmi_ycbcr420_supported = true,
783 		.dp_ycbcr420_supported = true,
784 		.fec_supported = true,
785 		.flags.bits.IS_HBR2_CAPABLE = true,
786 		.flags.bits.IS_HBR3_CAPABLE = true,
787 		.flags.bits.IS_TPS3_CAPABLE = true,
788 		.flags.bits.IS_TPS4_CAPABLE = true
789 };
790 
dcn201_link_encoder_create(struct dc_context * ctx,const struct encoder_init_data * enc_init_data)791 static struct link_encoder *dcn201_link_encoder_create(
792 	struct dc_context *ctx,
793 	const struct encoder_init_data *enc_init_data)
794 {
795 	struct dcn20_link_encoder *enc20 =
796 		kzalloc(sizeof(struct dcn20_link_encoder), GFP_ATOMIC);
797 	struct dcn10_link_encoder *enc10;
798 
799 	if (!enc20 || enc_init_data->hpd_source >= ARRAY_SIZE(link_enc_hpd_regs))
800 		return NULL;
801 
802 	enc10 = &enc20->enc10;
803 
804 	dcn201_link_encoder_construct(enc20,
805 			enc_init_data,
806 			&link_enc_feature,
807 			&link_enc_regs[enc_init_data->transmitter],
808 			&link_enc_aux_regs[enc_init_data->channel - 1],
809 			&link_enc_hpd_regs[enc_init_data->hpd_source],
810 			&le_shift,
811 			&le_mask);
812 
813 	return &enc10->base;
814 }
815 
dcn201_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)816 static struct clock_source *dcn201_clock_source_create(
817 	struct dc_context *ctx,
818 	struct dc_bios *bios,
819 	enum clock_source_id id,
820 	const struct dce110_clk_src_regs *regs,
821 	bool dp_clk_src)
822 {
823 	struct dce110_clk_src *clk_src =
824 		kzalloc(sizeof(struct dce110_clk_src), GFP_ATOMIC);
825 
826 	if (!clk_src)
827 		return NULL;
828 
829 	if (dce112_clk_src_construct(clk_src, ctx, bios, id,
830 			regs, &cs_shift, &cs_mask)) {
831 		clk_src->base.dp_clk_src = dp_clk_src;
832 		return &clk_src->base;
833 	}
834 	kfree(clk_src);
835 	return NULL;
836 }
837 
read_dce_straps(struct dc_context * ctx,struct resource_straps * straps)838 static void read_dce_straps(
839 	struct dc_context *ctx,
840 	struct resource_straps *straps)
841 {
842 	generic_reg_get(ctx, mmDC_PINSTRAPS + BASE(mmDC_PINSTRAPS_BASE_IDX),
843 
844 		FN(DC_PINSTRAPS, DC_PINSTRAPS_AUDIO), &straps->dc_pinstraps_audio);
845 }
846 
dcn201_create_audio(struct dc_context * ctx,unsigned int inst)847 static struct audio *dcn201_create_audio(
848 		struct dc_context *ctx, unsigned int inst)
849 {
850 	return dce_audio_create(ctx, inst,
851 			&audio_regs[inst], &audio_shift, &audio_mask);
852 }
853 
dcn201_stream_encoder_create(enum engine_id eng_id,struct dc_context * ctx)854 static struct stream_encoder *dcn201_stream_encoder_create(
855 	enum engine_id eng_id,
856 	struct dc_context *ctx)
857 {
858 	struct dcn10_stream_encoder *enc1 =
859 		kzalloc(sizeof(struct dcn10_stream_encoder), GFP_ATOMIC);
860 
861 	if (!enc1)
862 		return NULL;
863 
864 	dcn20_stream_encoder_construct(enc1, ctx, ctx->dc_bios, eng_id,
865 					&stream_enc_regs[eng_id],
866 					&se_shift, &se_mask);
867 
868 	return &enc1->base;
869 }
870 
871 static const struct dce_hwseq_registers hwseq_reg = {
872 		HWSEQ_DCN201_REG_LIST()
873 };
874 
875 static const struct dce_hwseq_shift hwseq_shift = {
876 		HWSEQ_DCN201_MASK_SH_LIST(__SHIFT)
877 };
878 
879 static const struct dce_hwseq_mask hwseq_mask = {
880 		HWSEQ_DCN201_MASK_SH_LIST(_MASK)
881 };
882 
dcn201_hwseq_create(struct dc_context * ctx)883 static struct dce_hwseq *dcn201_hwseq_create(
884 	struct dc_context *ctx)
885 {
886 	struct dce_hwseq *hws = kzalloc(sizeof(struct dce_hwseq), GFP_ATOMIC);
887 
888 	if (hws) {
889 		hws->ctx = ctx;
890 		hws->regs = &hwseq_reg;
891 		hws->shifts = &hwseq_shift;
892 		hws->masks = &hwseq_mask;
893 	}
894 	return hws;
895 }
896 
897 static const struct resource_create_funcs res_create_funcs = {
898 	.read_dce_straps = read_dce_straps,
899 	.create_audio = dcn201_create_audio,
900 	.create_stream_encoder = dcn201_stream_encoder_create,
901 	.create_hwseq = dcn201_hwseq_create,
902 };
903 
dcn201_clock_source_destroy(struct clock_source ** clk_src)904 static void dcn201_clock_source_destroy(struct clock_source **clk_src)
905 {
906 	kfree(TO_DCE110_CLK_SRC(*clk_src));
907 	*clk_src = NULL;
908 }
909 
dcn201_resource_destruct(struct dcn201_resource_pool * pool)910 static void dcn201_resource_destruct(struct dcn201_resource_pool *pool)
911 {
912 	unsigned int i;
913 
914 	for (i = 0; i < pool->base.stream_enc_count; i++) {
915 		if (pool->base.stream_enc[i] != NULL) {
916 			kfree(DCN10STRENC_FROM_STRENC(pool->base.stream_enc[i]));
917 			pool->base.stream_enc[i] = NULL;
918 		}
919 	}
920 
921 
922 	if (pool->base.mpc != NULL) {
923 		kfree(TO_DCN201_MPC(pool->base.mpc));
924 		pool->base.mpc = NULL;
925 	}
926 
927 	if (pool->base.hubbub != NULL) {
928 		kfree(pool->base.hubbub);
929 		pool->base.hubbub = NULL;
930 	}
931 
932 	for (i = 0; i < pool->base.pipe_count; i++) {
933 		if (pool->base.dpps[i] != NULL)
934 			dcn201_dpp_destroy(&pool->base.dpps[i]);
935 
936 		if (pool->base.ipps[i] != NULL)
937 			pool->base.ipps[i]->funcs->ipp_destroy(&pool->base.ipps[i]);
938 
939 		if (pool->base.hubps[i] != NULL) {
940 			kfree(TO_DCN10_HUBP(pool->base.hubps[i]));
941 			pool->base.hubps[i] = NULL;
942 		}
943 
944 		if (pool->base.irqs != NULL) {
945 			dal_irq_service_destroy(&pool->base.irqs);
946 		}
947 	}
948 
949 	for (i = 0; i < pool->base.res_cap->num_opp; i++) {
950 		if (pool->base.opps[i] != NULL)
951 			pool->base.opps[i]->funcs->opp_destroy(&pool->base.opps[i]);
952 	}
953 
954 	for (i = 0; i < pool->base.res_cap->num_timing_generator; i++) {
955 		if (pool->base.timing_generators[i] != NULL)	{
956 			kfree(DCN10TG_FROM_TG(pool->base.timing_generators[i]));
957 			pool->base.timing_generators[i] = NULL;
958 		}
959 	}
960 	for (i = 0; i < pool->base.audio_count; i++) {
961 		if (pool->base.audios[i])
962 			dce_aud_destroy(&pool->base.audios[i]);
963 	}
964 
965 	for (i = 0; i < pool->base.clk_src_count; i++) {
966 		if (pool->base.clock_sources[i] != NULL) {
967 			dcn201_clock_source_destroy(&pool->base.clock_sources[i]);
968 			pool->base.clock_sources[i] = NULL;
969 		}
970 	}
971 
972 	if (pool->base.dp_clock_source != NULL) {
973 		dcn201_clock_source_destroy(&pool->base.dp_clock_source);
974 		pool->base.dp_clock_source = NULL;
975 	}
976 
977 	if (pool->base.dccg != NULL)
978 		dcn_dccg_destroy(&pool->base.dccg);
979 }
980 
dcn201_hubp_create(struct dc_context * ctx,uint32_t inst)981 static struct hubp *dcn201_hubp_create(
982 	struct dc_context *ctx,
983 	uint32_t inst)
984 {
985 	struct dcn201_hubp *hubp201 =
986 		kzalloc(sizeof(struct dcn201_hubp), GFP_ATOMIC);
987 
988 	if (!hubp201)
989 		return NULL;
990 
991 	if (dcn201_hubp_construct(hubp201, ctx, inst,
992 			&hubp_regs[inst], &hubp_shift, &hubp_mask))
993 		return &hubp201->base;
994 
995 	kfree(hubp201);
996 	return NULL;
997 }
998 
dcn201_acquire_free_pipe_for_layer(const struct dc_state * cur_ctx,struct dc_state * new_ctx,const struct resource_pool * pool,const struct pipe_ctx * opp_head_pipe)999 static struct pipe_ctx *dcn201_acquire_free_pipe_for_layer(
1000 		const struct dc_state *cur_ctx,
1001 		struct dc_state *new_ctx,
1002 		const struct resource_pool *pool,
1003 		const struct pipe_ctx *opp_head_pipe)
1004 {
1005 	struct resource_context *res_ctx = &new_ctx->res_ctx;
1006 	struct pipe_ctx *head_pipe = resource_get_otg_master_for_stream(res_ctx, opp_head_pipe->stream);
1007 	struct pipe_ctx *idle_pipe = resource_find_free_secondary_pipe_legacy(res_ctx, pool, head_pipe);
1008 
1009 	if (!head_pipe) {
1010 		ASSERT(0);
1011 		return NULL;
1012 	}
1013 
1014 	if (!idle_pipe)
1015 		return NULL;
1016 
1017 	idle_pipe->stream = head_pipe->stream;
1018 	idle_pipe->stream_res.tg = head_pipe->stream_res.tg;
1019 	idle_pipe->stream_res.opp = head_pipe->stream_res.opp;
1020 
1021 	idle_pipe->plane_res.hubp = pool->hubps[idle_pipe->pipe_idx];
1022 	idle_pipe->plane_res.ipp = pool->ipps[idle_pipe->pipe_idx];
1023 	idle_pipe->plane_res.dpp = pool->dpps[idle_pipe->pipe_idx];
1024 	idle_pipe->plane_res.mpcc_inst = pool->dpps[idle_pipe->pipe_idx]->inst;
1025 
1026 	return idle_pipe;
1027 }
1028 
dcn201_get_dcc_compression_cap(const struct dc * dc,const struct dc_dcc_surface_param * input,struct dc_surface_dcc_cap * output)1029 static bool dcn201_get_dcc_compression_cap(const struct dc *dc,
1030 		const struct dc_dcc_surface_param *input,
1031 		struct dc_surface_dcc_cap *output)
1032 {
1033 	return dc->res_pool->hubbub->funcs->get_dcc_compression_cap(
1034 			dc->res_pool->hubbub,
1035 			input,
1036 			output);
1037 }
1038 
dcn201_populate_dml_writeback_from_context(struct dc * dc,struct resource_context * res_ctx,display_e2e_pipe_params_st * pipes)1039 static void dcn201_populate_dml_writeback_from_context(struct dc *dc,
1040 						       struct resource_context *res_ctx,
1041 						       display_e2e_pipe_params_st *pipes)
1042 {
1043 	DC_FP_START();
1044 	dcn201_populate_dml_writeback_from_context_fpu(dc, res_ctx, pipes);
1045 	DC_FP_END();
1046 }
1047 
dcn201_destroy_resource_pool(struct resource_pool ** pool)1048 static void dcn201_destroy_resource_pool(struct resource_pool **pool)
1049 {
1050 	struct dcn201_resource_pool *dcn201_pool = TO_DCN201_RES_POOL(*pool);
1051 
1052 	dcn201_resource_destruct(dcn201_pool);
1053 	kfree(dcn201_pool);
1054 	*pool = NULL;
1055 }
1056 
dcn201_link_init(struct dc_link * link)1057 static void dcn201_link_init(struct dc_link *link)
1058 {
1059 	if (link->ctx->dc_bios->integrated_info)
1060 		link->dp_ss_off = !link->ctx->dc_bios->integrated_info->dp_ss_control;
1061 }
1062 
1063 static struct dc_cap_funcs cap_funcs = {
1064 	.get_dcc_compression_cap = dcn201_get_dcc_compression_cap,
1065 };
1066 
1067 static struct resource_funcs dcn201_res_pool_funcs = {
1068 	.link_init = dcn201_link_init,
1069 	.destroy = dcn201_destroy_resource_pool,
1070 	.link_enc_create = dcn201_link_encoder_create,
1071 	.panel_cntl_create = NULL,
1072 	.validate_bandwidth = dcn20_validate_bandwidth,
1073 	.populate_dml_pipes = dcn20_populate_dml_pipes_from_context,
1074 	.add_stream_to_ctx = dcn20_add_stream_to_ctx,
1075 	.add_dsc_to_stream_resource = NULL,
1076 	.remove_stream_from_ctx = dcn20_remove_stream_from_ctx,
1077 	.acquire_free_pipe_as_secondary_dpp_pipe = dcn201_acquire_free_pipe_for_layer,
1078 	.release_pipe = dcn20_release_pipe,
1079 	.populate_dml_writeback_from_context = dcn201_populate_dml_writeback_from_context,
1080 	.patch_unknown_plane_state = dcn20_patch_unknown_plane_state,
1081 	.set_mcif_arb_params = dcn20_set_mcif_arb_params,
1082 	.find_first_free_match_stream_enc_for_link = dcn10_find_first_free_match_stream_enc_for_link,
1083 	.get_vstartup_for_pipe = dcn10_get_vstartup_for_pipe
1084 };
1085 
dcn201_resource_construct(uint8_t num_virtual_links,struct dc * dc,struct dcn201_resource_pool * pool)1086 static bool dcn201_resource_construct(
1087 	uint8_t num_virtual_links,
1088 	struct dc *dc,
1089 	struct dcn201_resource_pool *pool)
1090 {
1091 	int i;
1092 	struct dc_context *ctx = dc->ctx;
1093 
1094 	ctx->dc_bios->regs = &bios_regs;
1095 
1096 	pool->base.res_cap = &res_cap_dnc201;
1097 	pool->base.funcs = &dcn201_res_pool_funcs;
1098 
1099 	/*************************************************
1100 	 *  Resource + asic cap harcoding                *
1101 	 *************************************************/
1102 	pool->base.underlay_pipe_index = NO_UNDERLAY_PIPE;
1103 
1104 	pool->base.pipe_count = 4;
1105 	pool->base.mpcc_count = 5;
1106 	dc->caps.max_downscale_ratio = 200;
1107 	dc->caps.i2c_speed_in_khz = 100;
1108 	dc->caps.i2c_speed_in_khz_hdcp = 5; /*1.5 w/a applied by default*/
1109 	dc->caps.max_cursor_size = 256;
1110 	dc->caps.min_horizontal_blanking_period = 80;
1111 	dc->caps.dmdata_alloc_size = 2048;
1112 
1113 	dc->caps.max_slave_planes = 1;
1114 	dc->caps.max_slave_yuv_planes = 1;
1115 	dc->caps.max_slave_rgb_planes = 1;
1116 	dc->caps.post_blend_color_processing = true;
1117 	dc->caps.force_dp_tps4_for_cp2520 = true;
1118 	dc->caps.extended_aux_timeout_support = true;
1119 
1120 	/* Color pipeline capabilities */
1121 	dc->caps.color.dpp.dcn_arch = 1;
1122 	dc->caps.color.dpp.input_lut_shared = 0;
1123 	dc->caps.color.dpp.icsc = 1;
1124 	dc->caps.color.dpp.dgam_ram = 1;
1125 	dc->caps.color.dpp.dgam_rom_caps.srgb = 1;
1126 	dc->caps.color.dpp.dgam_rom_caps.bt2020 = 1;
1127 	dc->caps.color.dpp.dgam_rom_caps.gamma2_2 = 0;
1128 	dc->caps.color.dpp.dgam_rom_caps.pq = 0;
1129 	dc->caps.color.dpp.dgam_rom_caps.hlg = 0;
1130 	dc->caps.color.dpp.post_csc = 0;
1131 	dc->caps.color.dpp.gamma_corr = 0;
1132 	dc->caps.color.dpp.dgam_rom_for_yuv = 1;
1133 
1134 	dc->caps.color.dpp.hw_3d_lut = 1;
1135 	dc->caps.color.dpp.ogam_ram = 1;
1136 	// no OGAM ROM on DCN2
1137 	dc->caps.color.dpp.ogam_rom_caps.srgb = 0;
1138 	dc->caps.color.dpp.ogam_rom_caps.bt2020 = 0;
1139 	dc->caps.color.dpp.ogam_rom_caps.gamma2_2 = 0;
1140 	dc->caps.color.dpp.ogam_rom_caps.pq = 0;
1141 	dc->caps.color.dpp.ogam_rom_caps.hlg = 0;
1142 	dc->caps.color.dpp.ocsc = 0;
1143 
1144 	dc->caps.color.mpc.gamut_remap = 0;
1145 	dc->caps.color.mpc.num_3dluts = 0;
1146 	dc->caps.color.mpc.shared_3d_lut = 0;
1147 	dc->caps.color.mpc.ogam_ram = 1;
1148 	dc->caps.color.mpc.ogam_rom_caps.srgb = 0;
1149 	dc->caps.color.mpc.ogam_rom_caps.bt2020 = 0;
1150 	dc->caps.color.mpc.ogam_rom_caps.gamma2_2 = 0;
1151 	dc->caps.color.mpc.ogam_rom_caps.pq = 0;
1152 	dc->caps.color.mpc.ogam_rom_caps.hlg = 0;
1153 	dc->caps.color.mpc.ocsc = 1;
1154 
1155 	dc->debug = debug_defaults_drv;
1156 
1157 	/*a0 only, remove later*/
1158 	dc->work_arounds.no_connect_phy_config  = true;
1159 	dc->work_arounds.dedcn20_305_wa = true;
1160 	/*************************************************
1161 	 *  Create resources                             *
1162 	 *************************************************/
1163 
1164 	pool->base.clock_sources[DCN20_CLK_SRC_PLL0] =
1165 			dcn201_clock_source_create(ctx, ctx->dc_bios,
1166 				CLOCK_SOURCE_COMBO_PHY_PLL0,
1167 				&clk_src_regs[0], false);
1168 	pool->base.clock_sources[DCN20_CLK_SRC_PLL1] =
1169 			dcn201_clock_source_create(ctx, ctx->dc_bios,
1170 				CLOCK_SOURCE_COMBO_PHY_PLL1,
1171 				&clk_src_regs[1], false);
1172 
1173 	pool->base.clk_src_count = DCN20_CLK_SRC_TOTAL_DCN201;
1174 
1175 	/* todo: not reuse phy_pll registers */
1176 	pool->base.dp_clock_source =
1177 			dcn201_clock_source_create(ctx, ctx->dc_bios,
1178 				CLOCK_SOURCE_ID_DP_DTO,
1179 				&clk_src_regs[0], true);
1180 
1181 	for (i = 0; i < pool->base.clk_src_count; i++) {
1182 		if (pool->base.clock_sources[i] == NULL) {
1183 			dm_error("DC: failed to create clock sources!\n");
1184 			goto create_fail;
1185 		}
1186 	}
1187 
1188 	pool->base.dccg = dccg201_create(ctx, &dccg_regs, &dccg_shift, &dccg_mask);
1189 	if (pool->base.dccg == NULL) {
1190 		dm_error("DC: failed to create dccg!\n");
1191 		goto create_fail;
1192 	}
1193 
1194 	dcn201_ip.max_num_otg = pool->base.res_cap->num_timing_generator;
1195 	dcn201_ip.max_num_dpp = pool->base.pipe_count;
1196 	dml_init_instance(&dc->dml, &dcn201_soc, &dcn201_ip, DML_PROJECT_DCN201);
1197 	{
1198 		struct irq_service_init_data init_data;
1199 		init_data.ctx = dc->ctx;
1200 		pool->base.irqs = dal_irq_service_dcn201_create(&init_data);
1201 		if (!pool->base.irqs)
1202 			goto create_fail;
1203 	}
1204 
1205 	/* mem input -> ipp -> dpp -> opp -> TG */
1206 	for (i = 0; i < pool->base.pipe_count; i++) {
1207 		pool->base.hubps[i] = dcn201_hubp_create(ctx, i);
1208 		if (pool->base.hubps[i] == NULL) {
1209 			dm_error(
1210 				"DC: failed to create memory input!\n");
1211 			goto create_fail;
1212 		}
1213 
1214 		pool->base.ipps[i] = dcn201_ipp_create(ctx, i);
1215 		if (pool->base.ipps[i] == NULL) {
1216 			dm_error(
1217 				"DC: failed to create input pixel processor!\n");
1218 			goto create_fail;
1219 		}
1220 
1221 		pool->base.dpps[i] = dcn201_dpp_create(ctx, i);
1222 		if (pool->base.dpps[i] == NULL) {
1223 			dm_error(
1224 				"DC: failed to create dpps!\n");
1225 			goto create_fail;
1226 		}
1227 	}
1228 
1229 	for (i = 0; i < pool->base.res_cap->num_opp; i++) {
1230 		pool->base.opps[i] = dcn201_opp_create(ctx, i);
1231 		if (pool->base.opps[i] == NULL) {
1232 			dm_error(
1233 				"DC: failed to create output pixel processor!\n");
1234 			goto create_fail;
1235 		}
1236 	}
1237 
1238 	for (i = 0; i < pool->base.res_cap->num_ddc; i++) {
1239 		pool->base.engines[i] = dcn201_aux_engine_create(ctx, i);
1240 		if (pool->base.engines[i] == NULL) {
1241 			dm_error(
1242 				"DC:failed to create aux engine!!\n");
1243 			goto create_fail;
1244 		}
1245 		pool->base.hw_i2cs[i] = dcn201_i2c_hw_create(ctx, i);
1246 		if (pool->base.hw_i2cs[i] == NULL) {
1247 			dm_error(
1248 				"DC:failed to create hw i2c!!\n");
1249 			goto create_fail;
1250 		}
1251 		pool->base.sw_i2cs[i] = NULL;
1252 	}
1253 
1254 	for (i = 0; i < pool->base.res_cap->num_timing_generator; i++) {
1255 		pool->base.timing_generators[i] = dcn201_timing_generator_create(
1256 				ctx, i);
1257 		if (pool->base.timing_generators[i] == NULL) {
1258 			dm_error("DC: failed to create tg!\n");
1259 			goto create_fail;
1260 		}
1261 	}
1262 
1263 	pool->base.timing_generator_count = i;
1264 
1265 	pool->base.mpc = dcn201_mpc_create(ctx, pool->base.mpcc_count);
1266 	if (pool->base.mpc == NULL) {
1267 		dm_error("DC: failed to create mpc!\n");
1268 		goto create_fail;
1269 	}
1270 
1271 	pool->base.hubbub = dcn201_hubbub_create(ctx);
1272 	if (pool->base.hubbub == NULL) {
1273 		dm_error("DC: failed to create hubbub!\n");
1274 		goto create_fail;
1275 	}
1276 
1277 	if (!resource_construct(num_virtual_links, dc, &pool->base,
1278 			&res_create_funcs))
1279 		goto create_fail;
1280 
1281 	dcn201_hw_sequencer_construct(dc);
1282 
1283 	dc->caps.max_planes =  pool->base.pipe_count;
1284 
1285 	for (i = 0; i < dc->caps.max_planes; ++i)
1286 		dc->caps.planes[i] = plane_cap;
1287 
1288 	dc->cap_funcs = cap_funcs;
1289 
1290 	return true;
1291 
1292 create_fail:
1293 
1294 	dcn201_resource_destruct(pool);
1295 
1296 	return false;
1297 }
1298 
dcn201_create_resource_pool(const struct dc_init_data * init_data,struct dc * dc)1299 struct resource_pool *dcn201_create_resource_pool(
1300 		const struct dc_init_data *init_data,
1301 		struct dc *dc)
1302 {
1303 	struct dcn201_resource_pool *pool =
1304 		kzalloc(sizeof(struct dcn201_resource_pool), GFP_ATOMIC);
1305 
1306 	if (!pool)
1307 		return NULL;
1308 
1309 	if (dcn201_resource_construct(init_data->num_virtual_links, dc, pool))
1310 		return &pool->base;
1311 
1312 	kfree(pool);
1313 	return NULL;
1314 }
1315