1 /* 2 * Copyright 2018 Advanced Micro Devices, Inc. 3 * Copyright 2019 Raptor Engineering, LLC 4 * 5 * Permission is hereby granted, free of charge, to any person obtaining a 6 * copy of this software and associated documentation files (the "Software"), 7 * to deal in the Software without restriction, including without limitation 8 * the rights to use, copy, modify, merge, publish, distribute, sublicense, 9 * and/or sell copies of the Software, and to permit persons to whom the 10 * Software is furnished to do so, subject to the following conditions: 11 * 12 * The above copyright notice and this permission notice shall be included in 13 * all copies or substantial portions of the Software. 14 * 15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 18 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR 19 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, 20 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR 21 * OTHER DEALINGS IN THE SOFTWARE. 22 * 23 * Authors: AMD 24 * 25 */ 26 27 #include <linux/slab.h> 28 29 #include "dm_services.h" 30 #include "dc.h" 31 32 #include "dcn21/dcn21_init.h" 33 34 #include "resource.h" 35 #include "include/irq_service_interface.h" 36 #include "dcn20/dcn20_resource.h" 37 #include "dcn21/dcn21_resource.h" 38 39 #include "dml/dcn20/dcn20_fpu.h" 40 41 #include "clk_mgr.h" 42 #include "dcn10/dcn10_hubp.h" 43 #include "dcn10/dcn10_ipp.h" 44 #include "dcn20/dcn20_hubbub.h" 45 #include "dcn20/dcn20_mpc.h" 46 #include "dcn20/dcn20_hubp.h" 47 #include "dcn21/dcn21_hubp.h" 48 #include "irq/dcn21/irq_service_dcn21.h" 49 #include "dcn20/dcn20_dpp.h" 50 #include "dcn20/dcn20_optc.h" 51 #include "dcn21/dcn21_hwseq.h" 52 #include "dce110/dce110_hwseq.h" 53 #include "dcn20/dcn20_opp.h" 54 #include "dcn20/dcn20_dsc.h" 55 #include "dcn21/dcn21_link_encoder.h" 56 #include "dcn20/dcn20_stream_encoder.h" 57 #include "dce/dce_clock_source.h" 58 #include "dce/dce_audio.h" 59 #include "dce/dce_hwseq.h" 60 #include "virtual/virtual_stream_encoder.h" 61 #include "dml/display_mode_vba.h" 62 #include "dcn20/dcn20_dccg.h" 63 #include "dcn21/dcn21_dccg.h" 64 #include "dcn21/dcn21_hubbub.h" 65 #include "dcn10/dcn10_resource.h" 66 #include "dce/dce_panel_cntl.h" 67 68 #include "dcn20/dcn20_dwb.h" 69 #include "dcn20/dcn20_mmhubbub.h" 70 #include "dpcs/dpcs_2_1_0_offset.h" 71 #include "dpcs/dpcs_2_1_0_sh_mask.h" 72 73 #include "renoir_ip_offset.h" 74 #include "dcn/dcn_2_1_0_offset.h" 75 #include "dcn/dcn_2_1_0_sh_mask.h" 76 77 #include "nbio/nbio_7_0_offset.h" 78 79 #include "mmhub/mmhub_2_0_0_offset.h" 80 #include "mmhub/mmhub_2_0_0_sh_mask.h" 81 82 #include "reg_helper.h" 83 #include "dce/dce_abm.h" 84 #include "dce/dce_dmcu.h" 85 #include "dce/dce_aux.h" 86 #include "dce/dce_i2c.h" 87 #include "dcn21_resource.h" 88 #include "vm_helper.h" 89 #include "dcn20/dcn20_vmid.h" 90 #include "dce/dmub_psr.h" 91 #include "dce/dmub_abm.h" 92 93 /* begin ********************* 94 * macros to expend register list macro defined in HW object header file */ 95 96 /* DCN */ 97 #define BASE_INNER(seg) DMU_BASE__INST0_SEG ## seg 98 99 #define BASE(seg) BASE_INNER(seg) 100 101 #define SR(reg_name)\ 102 .reg_name = BASE(mm ## reg_name ## _BASE_IDX) + \ 103 mm ## reg_name 104 105 #define SRI(reg_name, block, id)\ 106 .reg_name = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \ 107 mm ## block ## id ## _ ## reg_name 108 109 #define SRIR(var_name, reg_name, block, id)\ 110 .var_name = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \ 111 mm ## block ## id ## _ ## reg_name 112 113 #define SRII(reg_name, block, id)\ 114 .reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \ 115 mm ## block ## id ## _ ## reg_name 116 117 #define DCCG_SRII(reg_name, block, id)\ 118 .block ## _ ## reg_name[id] = BASE(mm ## block ## id ## _ ## reg_name ## _BASE_IDX) + \ 119 mm ## block ## id ## _ ## reg_name 120 121 #define VUPDATE_SRII(reg_name, block, id)\ 122 .reg_name[id] = BASE(mm ## reg_name ## _ ## block ## id ## _BASE_IDX) + \ 123 mm ## reg_name ## _ ## block ## id 124 125 /* NBIO */ 126 #define NBIO_BASE_INNER(seg) \ 127 NBIF0_BASE__INST0_SEG ## seg 128 129 #define NBIO_BASE(seg) \ 130 NBIO_BASE_INNER(seg) 131 132 #define NBIO_SR(reg_name)\ 133 .reg_name = NBIO_BASE(mm ## reg_name ## _BASE_IDX) + \ 134 mm ## reg_name 135 136 /* MMHUB */ 137 #define MMHUB_BASE_INNER(seg) \ 138 MMHUB_BASE__INST0_SEG ## seg 139 140 #define MMHUB_BASE(seg) \ 141 MMHUB_BASE_INNER(seg) 142 143 #define MMHUB_SR(reg_name)\ 144 .reg_name = MMHUB_BASE(mmMM ## reg_name ## _BASE_IDX) + \ 145 mmMM ## reg_name 146 147 #define clk_src_regs(index, pllid)\ 148 [index] = {\ 149 CS_COMMON_REG_LIST_DCN2_1(index, pllid),\ 150 } 151 152 static const struct dce110_clk_src_regs clk_src_regs[] = { 153 clk_src_regs(0, A), 154 clk_src_regs(1, B), 155 clk_src_regs(2, C), 156 clk_src_regs(3, D), 157 clk_src_regs(4, E), 158 }; 159 160 static const struct dce110_clk_src_shift cs_shift = { 161 CS_COMMON_MASK_SH_LIST_DCN2_0(__SHIFT) 162 }; 163 164 static const struct dce110_clk_src_mask cs_mask = { 165 CS_COMMON_MASK_SH_LIST_DCN2_0(_MASK) 166 }; 167 168 static const struct bios_registers bios_regs = { 169 NBIO_SR(BIOS_SCRATCH_3), 170 NBIO_SR(BIOS_SCRATCH_6) 171 }; 172 173 static const struct dce_dmcu_registers dmcu_regs = { 174 DMCU_DCN20_REG_LIST() 175 }; 176 177 static const struct dce_dmcu_shift dmcu_shift = { 178 DMCU_MASK_SH_LIST_DCN10(__SHIFT) 179 }; 180 181 static const struct dce_dmcu_mask dmcu_mask = { 182 DMCU_MASK_SH_LIST_DCN10(_MASK) 183 }; 184 185 static const struct dce_abm_registers abm_regs = { 186 ABM_DCN20_REG_LIST() 187 }; 188 189 static const struct dce_abm_shift abm_shift = { 190 ABM_MASK_SH_LIST_DCN20(__SHIFT) 191 }; 192 193 static const struct dce_abm_mask abm_mask = { 194 ABM_MASK_SH_LIST_DCN20(_MASK) 195 }; 196 197 #define audio_regs(id)\ 198 [id] = {\ 199 AUD_COMMON_REG_LIST(id)\ 200 } 201 202 static const struct dce_audio_registers audio_regs[] = { 203 audio_regs(0), 204 audio_regs(1), 205 audio_regs(2), 206 audio_regs(3), 207 audio_regs(4), 208 audio_regs(5), 209 }; 210 211 #define DCE120_AUD_COMMON_MASK_SH_LIST(mask_sh)\ 212 SF(AZF0ENDPOINT0_AZALIA_F0_CODEC_ENDPOINT_INDEX, AZALIA_ENDPOINT_REG_INDEX, mask_sh),\ 213 SF(AZF0ENDPOINT0_AZALIA_F0_CODEC_ENDPOINT_DATA, AZALIA_ENDPOINT_REG_DATA, mask_sh),\ 214 AUD_COMMON_MASK_SH_LIST_BASE(mask_sh) 215 216 static const struct dce_audio_shift audio_shift = { 217 DCE120_AUD_COMMON_MASK_SH_LIST(__SHIFT) 218 }; 219 220 static const struct dce_audio_mask audio_mask = { 221 DCE120_AUD_COMMON_MASK_SH_LIST(_MASK) 222 }; 223 224 static const struct dccg_registers dccg_regs = { 225 DCCG_COMMON_REG_LIST_DCN_BASE() 226 }; 227 228 static const struct dccg_shift dccg_shift = { 229 DCCG_MASK_SH_LIST_DCN2_1(__SHIFT) 230 }; 231 232 static const struct dccg_mask dccg_mask = { 233 DCCG_MASK_SH_LIST_DCN2_1(_MASK) 234 }; 235 236 #define opp_regs(id)\ 237 [id] = {\ 238 OPP_REG_LIST_DCN20(id),\ 239 } 240 241 static const struct dcn20_opp_registers opp_regs[] = { 242 opp_regs(0), 243 opp_regs(1), 244 opp_regs(2), 245 opp_regs(3), 246 opp_regs(4), 247 opp_regs(5), 248 }; 249 250 static const struct dcn20_opp_shift opp_shift = { 251 OPP_MASK_SH_LIST_DCN20(__SHIFT) 252 }; 253 254 static const struct dcn20_opp_mask opp_mask = { 255 OPP_MASK_SH_LIST_DCN20(_MASK) 256 }; 257 258 #define tg_regs(id)\ 259 [id] = {TG_COMMON_REG_LIST_DCN2_0(id)} 260 261 static const struct dcn_optc_registers tg_regs[] = { 262 tg_regs(0), 263 tg_regs(1), 264 tg_regs(2), 265 tg_regs(3) 266 }; 267 268 static const struct dcn_optc_shift tg_shift = { 269 TG_COMMON_MASK_SH_LIST_DCN2_0(__SHIFT) 270 }; 271 272 static const struct dcn_optc_mask tg_mask = { 273 TG_COMMON_MASK_SH_LIST_DCN2_0(_MASK) 274 }; 275 276 static const struct dcn20_mpc_registers mpc_regs = { 277 MPC_REG_LIST_DCN2_0(0), 278 MPC_REG_LIST_DCN2_0(1), 279 MPC_REG_LIST_DCN2_0(2), 280 MPC_REG_LIST_DCN2_0(3), 281 MPC_REG_LIST_DCN2_0(4), 282 MPC_REG_LIST_DCN2_0(5), 283 MPC_OUT_MUX_REG_LIST_DCN2_0(0), 284 MPC_OUT_MUX_REG_LIST_DCN2_0(1), 285 MPC_OUT_MUX_REG_LIST_DCN2_0(2), 286 MPC_OUT_MUX_REG_LIST_DCN2_0(3), 287 MPC_DBG_REG_LIST_DCN2_0() 288 }; 289 290 static const struct dcn20_mpc_shift mpc_shift = { 291 MPC_COMMON_MASK_SH_LIST_DCN2_0(__SHIFT), 292 MPC_DEBUG_REG_LIST_SH_DCN20 293 }; 294 295 static const struct dcn20_mpc_mask mpc_mask = { 296 MPC_COMMON_MASK_SH_LIST_DCN2_0(_MASK), 297 MPC_DEBUG_REG_LIST_MASK_DCN20 298 }; 299 300 #define hubp_regs(id)\ 301 [id] = {\ 302 HUBP_REG_LIST_DCN21(id)\ 303 } 304 305 static const struct dcn_hubp2_registers hubp_regs[] = { 306 hubp_regs(0), 307 hubp_regs(1), 308 hubp_regs(2), 309 hubp_regs(3) 310 }; 311 312 static const struct dcn_hubp2_shift hubp_shift = { 313 HUBP_MASK_SH_LIST_DCN21(__SHIFT) 314 }; 315 316 static const struct dcn_hubp2_mask hubp_mask = { 317 HUBP_MASK_SH_LIST_DCN21(_MASK) 318 }; 319 320 static const struct dcn_hubbub_registers hubbub_reg = { 321 HUBBUB_REG_LIST_DCN21() 322 }; 323 324 static const struct dcn_hubbub_shift hubbub_shift = { 325 HUBBUB_MASK_SH_LIST_DCN21(__SHIFT) 326 }; 327 328 static const struct dcn_hubbub_mask hubbub_mask = { 329 HUBBUB_MASK_SH_LIST_DCN21(_MASK) 330 }; 331 332 333 #define vmid_regs(id)\ 334 [id] = {\ 335 DCN20_VMID_REG_LIST(id)\ 336 } 337 338 static const struct dcn_vmid_registers vmid_regs[] = { 339 vmid_regs(0), 340 vmid_regs(1), 341 vmid_regs(2), 342 vmid_regs(3), 343 vmid_regs(4), 344 vmid_regs(5), 345 vmid_regs(6), 346 vmid_regs(7), 347 vmid_regs(8), 348 vmid_regs(9), 349 vmid_regs(10), 350 vmid_regs(11), 351 vmid_regs(12), 352 vmid_regs(13), 353 vmid_regs(14), 354 vmid_regs(15) 355 }; 356 357 static const struct dcn20_vmid_shift vmid_shifts = { 358 DCN20_VMID_MASK_SH_LIST(__SHIFT) 359 }; 360 361 static const struct dcn20_vmid_mask vmid_masks = { 362 DCN20_VMID_MASK_SH_LIST(_MASK) 363 }; 364 365 #define dsc_regsDCN20(id)\ 366 [id] = {\ 367 DSC_REG_LIST_DCN20(id)\ 368 } 369 370 static const struct dcn20_dsc_registers dsc_regs[] = { 371 dsc_regsDCN20(0), 372 dsc_regsDCN20(1), 373 dsc_regsDCN20(2), 374 dsc_regsDCN20(3), 375 dsc_regsDCN20(4), 376 dsc_regsDCN20(5) 377 }; 378 379 static const struct dcn20_dsc_shift dsc_shift = { 380 DSC_REG_LIST_SH_MASK_DCN20(__SHIFT) 381 }; 382 383 static const struct dcn20_dsc_mask dsc_mask = { 384 DSC_REG_LIST_SH_MASK_DCN20(_MASK) 385 }; 386 387 #define ipp_regs(id)\ 388 [id] = {\ 389 IPP_REG_LIST_DCN20(id),\ 390 } 391 392 static const struct dcn10_ipp_registers ipp_regs[] = { 393 ipp_regs(0), 394 ipp_regs(1), 395 ipp_regs(2), 396 ipp_regs(3), 397 }; 398 399 static const struct dcn10_ipp_shift ipp_shift = { 400 IPP_MASK_SH_LIST_DCN20(__SHIFT) 401 }; 402 403 static const struct dcn10_ipp_mask ipp_mask = { 404 IPP_MASK_SH_LIST_DCN20(_MASK), 405 }; 406 407 #define opp_regs(id)\ 408 [id] = {\ 409 OPP_REG_LIST_DCN20(id),\ 410 } 411 412 413 #define aux_engine_regs(id)\ 414 [id] = {\ 415 AUX_COMMON_REG_LIST0(id), \ 416 .AUXN_IMPCAL = 0, \ 417 .AUXP_IMPCAL = 0, \ 418 .AUX_RESET_MASK = DP_AUX0_AUX_CONTROL__AUX_RESET_MASK, \ 419 } 420 421 static const struct dce110_aux_registers aux_engine_regs[] = { 422 aux_engine_regs(0), 423 aux_engine_regs(1), 424 aux_engine_regs(2), 425 aux_engine_regs(3), 426 aux_engine_regs(4), 427 }; 428 429 #define tf_regs(id)\ 430 [id] = {\ 431 TF_REG_LIST_DCN20(id),\ 432 TF_REG_LIST_DCN20_COMMON_APPEND(id),\ 433 } 434 435 static const struct dcn2_dpp_registers tf_regs[] = { 436 tf_regs(0), 437 tf_regs(1), 438 tf_regs(2), 439 tf_regs(3), 440 }; 441 442 static const struct dcn2_dpp_shift tf_shift = { 443 TF_REG_LIST_SH_MASK_DCN20(__SHIFT), 444 TF_DEBUG_REG_LIST_SH_DCN20 445 }; 446 447 static const struct dcn2_dpp_mask tf_mask = { 448 TF_REG_LIST_SH_MASK_DCN20(_MASK), 449 TF_DEBUG_REG_LIST_MASK_DCN20 450 }; 451 452 #define stream_enc_regs(id)\ 453 [id] = {\ 454 SE_DCN2_REG_LIST(id)\ 455 } 456 457 static const struct dcn10_stream_enc_registers stream_enc_regs[] = { 458 stream_enc_regs(0), 459 stream_enc_regs(1), 460 stream_enc_regs(2), 461 stream_enc_regs(3), 462 stream_enc_regs(4), 463 }; 464 465 static const struct dce110_aux_registers_shift aux_shift = { 466 DCN_AUX_MASK_SH_LIST(__SHIFT) 467 }; 468 469 static const struct dce110_aux_registers_mask aux_mask = { 470 DCN_AUX_MASK_SH_LIST(_MASK) 471 }; 472 473 static const struct dcn10_stream_encoder_shift se_shift = { 474 SE_COMMON_MASK_SH_LIST_DCN20(__SHIFT) 475 }; 476 477 static const struct dcn10_stream_encoder_mask se_mask = { 478 SE_COMMON_MASK_SH_LIST_DCN20(_MASK) 479 }; 480 481 static void dcn21_pp_smu_destroy(struct pp_smu_funcs **pp_smu); 482 483 static struct input_pixel_processor *dcn21_ipp_create( 484 struct dc_context *ctx, uint32_t inst) 485 { 486 struct dcn10_ipp *ipp = 487 kzalloc(sizeof(struct dcn10_ipp), GFP_KERNEL); 488 489 if (!ipp) { 490 BREAK_TO_DEBUGGER(); 491 return NULL; 492 } 493 494 dcn20_ipp_construct(ipp, ctx, inst, 495 &ipp_regs[inst], &ipp_shift, &ipp_mask); 496 return &ipp->base; 497 } 498 499 static struct dpp *dcn21_dpp_create( 500 struct dc_context *ctx, 501 uint32_t inst) 502 { 503 struct dcn20_dpp *dpp = 504 kzalloc(sizeof(struct dcn20_dpp), GFP_KERNEL); 505 506 if (!dpp) 507 return NULL; 508 509 if (dpp2_construct(dpp, ctx, inst, 510 &tf_regs[inst], &tf_shift, &tf_mask)) 511 return &dpp->base; 512 513 BREAK_TO_DEBUGGER(); 514 kfree(dpp); 515 return NULL; 516 } 517 518 static struct dce_aux *dcn21_aux_engine_create( 519 struct dc_context *ctx, 520 uint32_t inst) 521 { 522 struct aux_engine_dce110 *aux_engine = 523 kzalloc(sizeof(struct aux_engine_dce110), GFP_KERNEL); 524 525 if (!aux_engine) 526 return NULL; 527 528 dce110_aux_engine_construct(aux_engine, ctx, inst, 529 SW_AUX_TIMEOUT_PERIOD_MULTIPLIER * AUX_TIMEOUT_PERIOD, 530 &aux_engine_regs[inst], 531 &aux_mask, 532 &aux_shift, 533 ctx->dc->caps.extended_aux_timeout_support); 534 535 return &aux_engine->base; 536 } 537 538 #define i2c_inst_regs(id) { I2C_HW_ENGINE_COMMON_REG_LIST(id) } 539 540 static const struct dce_i2c_registers i2c_hw_regs[] = { 541 i2c_inst_regs(1), 542 i2c_inst_regs(2), 543 i2c_inst_regs(3), 544 i2c_inst_regs(4), 545 i2c_inst_regs(5), 546 }; 547 548 static const struct dce_i2c_shift i2c_shifts = { 549 I2C_COMMON_MASK_SH_LIST_DCN2(__SHIFT) 550 }; 551 552 static const struct dce_i2c_mask i2c_masks = { 553 I2C_COMMON_MASK_SH_LIST_DCN2(_MASK) 554 }; 555 556 static struct dce_i2c_hw *dcn21_i2c_hw_create(struct dc_context *ctx, 557 uint32_t inst) 558 { 559 struct dce_i2c_hw *dce_i2c_hw = 560 kzalloc(sizeof(struct dce_i2c_hw), GFP_KERNEL); 561 562 if (!dce_i2c_hw) 563 return NULL; 564 565 dcn2_i2c_hw_construct(dce_i2c_hw, ctx, inst, 566 &i2c_hw_regs[inst], &i2c_shifts, &i2c_masks); 567 568 return dce_i2c_hw; 569 } 570 571 static const struct resource_caps res_cap_rn = { 572 .num_timing_generator = 4, 573 .num_opp = 4, 574 .num_video_plane = 4, 575 .num_audio = 4, // 4 audio endpoints. 4 audio streams 576 .num_stream_encoder = 5, 577 .num_pll = 5, // maybe 3 because the last two used for USB-c 578 .num_dwb = 1, 579 .num_ddc = 5, 580 .num_vmid = 16, 581 .num_dsc = 3, 582 }; 583 584 static const struct dc_plane_cap plane_cap = { 585 .type = DC_PLANE_TYPE_DCN_UNIVERSAL, 586 .per_pixel_alpha = true, 587 588 .pixel_format_support = { 589 .argb8888 = true, 590 .nv12 = true, 591 .fp16 = true, 592 .p010 = true 593 }, 594 595 .max_upscale_factor = { 596 .argb8888 = 16000, 597 .nv12 = 16000, 598 .fp16 = 16000 599 }, 600 601 .max_downscale_factor = { 602 .argb8888 = 250, 603 .nv12 = 250, 604 .fp16 = 250 605 }, 606 64, 607 64 608 }; 609 610 static const struct dc_debug_options debug_defaults_drv = { 611 .disable_dmcu = false, 612 .force_abm_enable = false, 613 .timing_trace = false, 614 .clock_trace = true, 615 .disable_pplib_clock_request = true, 616 .min_disp_clk_khz = 100000, 617 .pipe_split_policy = MPC_SPLIT_DYNAMIC, 618 .force_single_disp_pipe_split = false, 619 .disable_dcc = DCC_ENABLE, 620 .vsr_support = true, 621 .performance_trace = false, 622 .max_downscale_src_width = 4096, 623 .disable_pplib_wm_range = false, 624 .scl_reset_length10 = true, 625 .sanity_checks = true, 626 .disable_48mhz_pwrdwn = false, 627 .usbc_combo_phy_reset_wa = true, 628 .dmub_command_table = true, 629 .use_max_lb = true, 630 .enable_legacy_fast_update = true, 631 .using_dml2 = false, 632 }; 633 634 static const struct dc_panel_config panel_config_defaults = { 635 .psr = { 636 .disable_psr = false, 637 .disallow_psrsu = false, 638 .disallow_replay = false, 639 }, 640 .ilr = { 641 .optimize_edp_link_rate = true, 642 }, 643 }; 644 645 enum dcn20_clk_src_array_id { 646 DCN20_CLK_SRC_PLL0, 647 DCN20_CLK_SRC_PLL1, 648 DCN20_CLK_SRC_PLL2, 649 DCN20_CLK_SRC_PLL3, 650 DCN20_CLK_SRC_PLL4, 651 DCN20_CLK_SRC_TOTAL_DCN21 652 }; 653 654 static void dcn21_resource_destruct(struct dcn21_resource_pool *pool) 655 { 656 unsigned int i; 657 658 for (i = 0; i < pool->base.stream_enc_count; i++) { 659 if (pool->base.stream_enc[i] != NULL) { 660 kfree(DCN10STRENC_FROM_STRENC(pool->base.stream_enc[i])); 661 pool->base.stream_enc[i] = NULL; 662 } 663 } 664 665 for (i = 0; i < pool->base.res_cap->num_dsc; i++) { 666 if (pool->base.dscs[i] != NULL) 667 dcn20_dsc_destroy(&pool->base.dscs[i]); 668 } 669 670 if (pool->base.mpc != NULL) { 671 kfree(TO_DCN20_MPC(pool->base.mpc)); 672 pool->base.mpc = NULL; 673 } 674 if (pool->base.hubbub != NULL) { 675 kfree(pool->base.hubbub); 676 pool->base.hubbub = NULL; 677 } 678 for (i = 0; i < pool->base.pipe_count; i++) { 679 if (pool->base.dpps[i] != NULL) 680 dcn20_dpp_destroy(&pool->base.dpps[i]); 681 682 if (pool->base.ipps[i] != NULL) 683 pool->base.ipps[i]->funcs->ipp_destroy(&pool->base.ipps[i]); 684 685 if (pool->base.hubps[i] != NULL) { 686 kfree(TO_DCN20_HUBP(pool->base.hubps[i])); 687 pool->base.hubps[i] = NULL; 688 } 689 690 if (pool->base.irqs != NULL) 691 dal_irq_service_destroy(&pool->base.irqs); 692 } 693 694 for (i = 0; i < pool->base.res_cap->num_ddc; i++) { 695 if (pool->base.engines[i] != NULL) 696 dce110_engine_destroy(&pool->base.engines[i]); 697 if (pool->base.hw_i2cs[i] != NULL) { 698 kfree(pool->base.hw_i2cs[i]); 699 pool->base.hw_i2cs[i] = NULL; 700 } 701 if (pool->base.sw_i2cs[i] != NULL) { 702 kfree(pool->base.sw_i2cs[i]); 703 pool->base.sw_i2cs[i] = NULL; 704 } 705 } 706 707 for (i = 0; i < pool->base.res_cap->num_opp; i++) { 708 if (pool->base.opps[i] != NULL) 709 pool->base.opps[i]->funcs->opp_destroy(&pool->base.opps[i]); 710 } 711 712 for (i = 0; i < pool->base.res_cap->num_timing_generator; i++) { 713 if (pool->base.timing_generators[i] != NULL) { 714 kfree(DCN10TG_FROM_TG(pool->base.timing_generators[i])); 715 pool->base.timing_generators[i] = NULL; 716 } 717 } 718 719 for (i = 0; i < pool->base.res_cap->num_dwb; i++) { 720 if (pool->base.dwbc[i] != NULL) { 721 kfree(TO_DCN20_DWBC(pool->base.dwbc[i])); 722 pool->base.dwbc[i] = NULL; 723 } 724 if (pool->base.mcif_wb[i] != NULL) { 725 kfree(TO_DCN20_MMHUBBUB(pool->base.mcif_wb[i])); 726 pool->base.mcif_wb[i] = NULL; 727 } 728 } 729 730 for (i = 0; i < pool->base.audio_count; i++) { 731 if (pool->base.audios[i]) 732 dce_aud_destroy(&pool->base.audios[i]); 733 } 734 735 for (i = 0; i < pool->base.clk_src_count; i++) { 736 if (pool->base.clock_sources[i] != NULL) { 737 dcn20_clock_source_destroy(&pool->base.clock_sources[i]); 738 pool->base.clock_sources[i] = NULL; 739 } 740 } 741 742 if (pool->base.dp_clock_source != NULL) { 743 dcn20_clock_source_destroy(&pool->base.dp_clock_source); 744 pool->base.dp_clock_source = NULL; 745 } 746 747 if (pool->base.abm != NULL) { 748 if (pool->base.abm->ctx->dc->config.disable_dmcu) 749 dmub_abm_destroy(&pool->base.abm); 750 else 751 dce_abm_destroy(&pool->base.abm); 752 } 753 754 if (pool->base.dmcu != NULL) 755 dce_dmcu_destroy(&pool->base.dmcu); 756 757 if (pool->base.psr != NULL) 758 dmub_psr_destroy(&pool->base.psr); 759 760 if (pool->base.dccg != NULL) 761 dcn_dccg_destroy(&pool->base.dccg); 762 763 if (pool->base.pp_smu != NULL) 764 dcn21_pp_smu_destroy(&pool->base.pp_smu); 765 } 766 767 bool dcn21_fast_validate_bw(struct dc *dc, 768 struct dc_state *context, 769 display_e2e_pipe_params_st *pipes, 770 int *pipe_cnt_out, 771 int *pipe_split_from, 772 int *vlevel_out, 773 bool fast_validate) 774 { 775 bool out = false; 776 int split[MAX_PIPES] = { 0 }; 777 bool merge[MAX_PIPES] = { false }; 778 int pipe_cnt, i, pipe_idx, vlevel; 779 780 ASSERT(pipes); 781 if (!pipes) 782 return false; 783 784 dcn20_merge_pipes_for_validate(dc, context); 785 786 DC_FP_START(); 787 pipe_cnt = dc->res_pool->funcs->populate_dml_pipes(dc, context, pipes, fast_validate); 788 DC_FP_END(); 789 790 *pipe_cnt_out = pipe_cnt; 791 792 if (!pipe_cnt) { 793 out = true; 794 goto validate_out; 795 } 796 /* 797 * DML favors voltage over p-state, but we're more interested in 798 * supporting p-state over voltage. We can't support p-state in 799 * prefetch mode > 0 so try capping the prefetch mode to start. 800 */ 801 context->bw_ctx.dml.soc.allow_dram_self_refresh_or_dram_clock_change_in_vblank = 802 dm_allow_self_refresh_and_mclk_switch; 803 vlevel = dml_get_voltage_level(&context->bw_ctx.dml, pipes, pipe_cnt); 804 805 if (vlevel > context->bw_ctx.dml.soc.num_states) { 806 /* 807 * If mode is unsupported or there's still no p-state support then 808 * fall back to favoring voltage. 809 * 810 * We don't actually support prefetch mode 2, so require that we 811 * at least support prefetch mode 1. 812 */ 813 context->bw_ctx.dml.soc.allow_dram_self_refresh_or_dram_clock_change_in_vblank = 814 dm_allow_self_refresh; 815 vlevel = dml_get_voltage_level(&context->bw_ctx.dml, pipes, pipe_cnt); 816 if (vlevel > context->bw_ctx.dml.soc.num_states) 817 goto validate_fail; 818 } 819 820 vlevel = dcn20_validate_apply_pipe_split_flags(dc, context, vlevel, split, merge); 821 822 for (i = 0, pipe_idx = 0; i < dc->res_pool->pipe_count; i++) { 823 struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i]; 824 struct pipe_ctx *mpo_pipe = pipe->bottom_pipe; 825 struct vba_vars_st *vba = &context->bw_ctx.dml.vba; 826 827 if (!pipe->stream) 828 continue; 829 830 /* We only support full screen mpo with ODM */ 831 if (vba->ODMCombineEnabled[vba->pipe_plane[pipe_idx]] != dm_odm_combine_mode_disabled 832 && pipe->plane_state && mpo_pipe 833 && memcmp(&mpo_pipe->plane_state->clip_rect, 834 &pipe->stream->src, 835 sizeof(struct rect)) != 0) { 836 ASSERT(mpo_pipe->plane_state != pipe->plane_state); 837 goto validate_fail; 838 } 839 pipe_idx++; 840 } 841 842 /*initialize pipe_just_split_from to invalid idx*/ 843 for (i = 0; i < MAX_PIPES; i++) 844 pipe_split_from[i] = -1; 845 846 for (i = 0, pipe_idx = -1; i < dc->res_pool->pipe_count; i++) { 847 struct pipe_ctx *pipe = &context->res_ctx.pipe_ctx[i]; 848 struct pipe_ctx *hsplit_pipe = pipe->bottom_pipe; 849 850 if (!pipe->stream || pipe_split_from[i] >= 0) 851 continue; 852 853 pipe_idx++; 854 855 if (!pipe->top_pipe && !pipe->plane_state && context->bw_ctx.dml.vba.ODMCombineEnabled[pipe_idx]) { 856 hsplit_pipe = dcn20_find_secondary_pipe(dc, &context->res_ctx, dc->res_pool, pipe); 857 ASSERT(hsplit_pipe); 858 if (!dcn20_split_stream_for_odm( 859 dc, &context->res_ctx, 860 pipe, hsplit_pipe)) 861 goto validate_fail; 862 pipe_split_from[hsplit_pipe->pipe_idx] = pipe_idx; 863 dcn20_build_mapped_resource(dc, context, pipe->stream); 864 } 865 866 if (!pipe->plane_state) 867 continue; 868 /* Skip 2nd half of already split pipe */ 869 if (pipe->top_pipe && pipe->plane_state == pipe->top_pipe->plane_state) 870 continue; 871 872 if (split[i] == 2) { 873 if (!hsplit_pipe || hsplit_pipe->plane_state != pipe->plane_state) { 874 /* pipe not split previously needs split */ 875 hsplit_pipe = dcn20_find_secondary_pipe(dc, &context->res_ctx, dc->res_pool, pipe); 876 ASSERT(hsplit_pipe); 877 if (!hsplit_pipe) { 878 DC_FP_START(); 879 dcn20_fpu_adjust_dppclk(&context->bw_ctx.dml.vba, vlevel, context->bw_ctx.dml.vba.maxMpcComb, pipe_idx, true); 880 DC_FP_END(); 881 continue; 882 } 883 if (context->bw_ctx.dml.vba.ODMCombineEnabled[pipe_idx]) { 884 if (!dcn20_split_stream_for_odm( 885 dc, &context->res_ctx, 886 pipe, hsplit_pipe)) 887 goto validate_fail; 888 dcn20_build_mapped_resource(dc, context, pipe->stream); 889 } else { 890 dcn20_split_stream_for_mpc( 891 &context->res_ctx, dc->res_pool, 892 pipe, hsplit_pipe); 893 resource_build_scaling_params(pipe); 894 resource_build_scaling_params(hsplit_pipe); 895 } 896 pipe_split_from[hsplit_pipe->pipe_idx] = pipe_idx; 897 } 898 } else if (hsplit_pipe && hsplit_pipe->plane_state == pipe->plane_state) { 899 /* merge should already have been done */ 900 ASSERT(0); 901 } 902 } 903 /* Actual dsc count per stream dsc validation*/ 904 if (!dcn20_validate_dsc(dc, context)) { 905 context->bw_ctx.dml.vba.ValidationStatus[context->bw_ctx.dml.vba.soc.num_states] = 906 DML_FAIL_DSC_VALIDATION_FAILURE; 907 goto validate_fail; 908 } 909 910 *vlevel_out = vlevel; 911 912 out = true; 913 goto validate_out; 914 915 validate_fail: 916 out = false; 917 918 validate_out: 919 return out; 920 } 921 922 /* 923 * Some of the functions further below use the FPU, so we need to wrap this 924 * with DC_FP_START()/DC_FP_END(). Use the same approach as for 925 * dcn20_validate_bandwidth in dcn20_resource.c. 926 */ 927 static bool dcn21_validate_bandwidth(struct dc *dc, struct dc_state *context, 928 bool fast_validate) 929 { 930 bool voltage_supported; 931 display_e2e_pipe_params_st *pipes; 932 933 pipes = kcalloc(dc->res_pool->pipe_count, sizeof(display_e2e_pipe_params_st), GFP_KERNEL); 934 if (!pipes) 935 return false; 936 937 DC_FP_START(); 938 voltage_supported = dcn21_validate_bandwidth_fp(dc, context, fast_validate, pipes); 939 DC_FP_END(); 940 941 kfree(pipes); 942 return voltage_supported; 943 } 944 945 static void dcn21_destroy_resource_pool(struct resource_pool **pool) 946 { 947 struct dcn21_resource_pool *dcn21_pool = TO_DCN21_RES_POOL(*pool); 948 949 dcn21_resource_destruct(dcn21_pool); 950 kfree(dcn21_pool); 951 *pool = NULL; 952 } 953 954 static struct clock_source *dcn21_clock_source_create( 955 struct dc_context *ctx, 956 struct dc_bios *bios, 957 enum clock_source_id id, 958 const struct dce110_clk_src_regs *regs, 959 bool dp_clk_src) 960 { 961 struct dce110_clk_src *clk_src = 962 kzalloc(sizeof(struct dce110_clk_src), GFP_KERNEL); 963 964 if (!clk_src) 965 return NULL; 966 967 if (dcn20_clk_src_construct(clk_src, ctx, bios, id, 968 regs, &cs_shift, &cs_mask)) { 969 clk_src->base.dp_clk_src = dp_clk_src; 970 return &clk_src->base; 971 } 972 973 kfree(clk_src); 974 BREAK_TO_DEBUGGER(); 975 return NULL; 976 } 977 978 static struct hubp *dcn21_hubp_create( 979 struct dc_context *ctx, 980 uint32_t inst) 981 { 982 struct dcn21_hubp *hubp21 = 983 kzalloc(sizeof(struct dcn21_hubp), GFP_KERNEL); 984 985 if (!hubp21) 986 return NULL; 987 988 if (hubp21_construct(hubp21, ctx, inst, 989 &hubp_regs[inst], &hubp_shift, &hubp_mask)) 990 return &hubp21->base; 991 992 BREAK_TO_DEBUGGER(); 993 kfree(hubp21); 994 return NULL; 995 } 996 997 static struct hubbub *dcn21_hubbub_create(struct dc_context *ctx) 998 { 999 int i; 1000 1001 struct dcn20_hubbub *hubbub = kzalloc(sizeof(struct dcn20_hubbub), 1002 GFP_KERNEL); 1003 1004 if (!hubbub) 1005 return NULL; 1006 1007 hubbub21_construct(hubbub, ctx, 1008 &hubbub_reg, 1009 &hubbub_shift, 1010 &hubbub_mask); 1011 1012 for (i = 0; i < res_cap_rn.num_vmid; i++) { 1013 struct dcn20_vmid *vmid = &hubbub->vmid[i]; 1014 1015 vmid->ctx = ctx; 1016 1017 vmid->regs = &vmid_regs[i]; 1018 vmid->shifts = &vmid_shifts; 1019 vmid->masks = &vmid_masks; 1020 } 1021 hubbub->num_vmid = res_cap_rn.num_vmid; 1022 1023 return &hubbub->base; 1024 } 1025 1026 static struct output_pixel_processor *dcn21_opp_create(struct dc_context *ctx, 1027 uint32_t inst) 1028 { 1029 struct dcn20_opp *opp = 1030 kzalloc(sizeof(struct dcn20_opp), GFP_KERNEL); 1031 1032 if (!opp) { 1033 BREAK_TO_DEBUGGER(); 1034 return NULL; 1035 } 1036 1037 dcn20_opp_construct(opp, ctx, inst, 1038 &opp_regs[inst], &opp_shift, &opp_mask); 1039 return &opp->base; 1040 } 1041 1042 static struct timing_generator *dcn21_timing_generator_create(struct dc_context *ctx, 1043 uint32_t instance) 1044 { 1045 struct optc *tgn10 = 1046 kzalloc(sizeof(struct optc), GFP_KERNEL); 1047 1048 if (!tgn10) 1049 return NULL; 1050 1051 tgn10->base.inst = instance; 1052 tgn10->base.ctx = ctx; 1053 1054 tgn10->tg_regs = &tg_regs[instance]; 1055 tgn10->tg_shift = &tg_shift; 1056 tgn10->tg_mask = &tg_mask; 1057 1058 dcn20_timing_generator_init(tgn10); 1059 1060 return &tgn10->base; 1061 } 1062 1063 static struct mpc *dcn21_mpc_create(struct dc_context *ctx) 1064 { 1065 struct dcn20_mpc *mpc20 = kzalloc(sizeof(struct dcn20_mpc), 1066 GFP_KERNEL); 1067 1068 if (!mpc20) 1069 return NULL; 1070 1071 dcn20_mpc_construct(mpc20, ctx, 1072 &mpc_regs, 1073 &mpc_shift, 1074 &mpc_mask, 1075 6); 1076 1077 return &mpc20->base; 1078 } 1079 1080 static void read_dce_straps( 1081 struct dc_context *ctx, 1082 struct resource_straps *straps) 1083 { 1084 generic_reg_get(ctx, mmDC_PINSTRAPS + BASE(mmDC_PINSTRAPS_BASE_IDX), 1085 FN(DC_PINSTRAPS, DC_PINSTRAPS_AUDIO), &straps->dc_pinstraps_audio); 1086 1087 } 1088 1089 1090 static struct display_stream_compressor *dcn21_dsc_create(struct dc_context *ctx, 1091 uint32_t inst) 1092 { 1093 struct dcn20_dsc *dsc = 1094 kzalloc(sizeof(struct dcn20_dsc), GFP_KERNEL); 1095 1096 if (!dsc) { 1097 BREAK_TO_DEBUGGER(); 1098 return NULL; 1099 } 1100 1101 dsc2_construct(dsc, ctx, inst, &dsc_regs[inst], &dsc_shift, &dsc_mask); 1102 return &dsc->base; 1103 } 1104 1105 static struct pp_smu_funcs *dcn21_pp_smu_create(struct dc_context *ctx) 1106 { 1107 struct pp_smu_funcs *pp_smu = kzalloc(sizeof(*pp_smu), GFP_KERNEL); 1108 1109 if (!pp_smu) 1110 return pp_smu; 1111 1112 dm_pp_get_funcs(ctx, pp_smu); 1113 1114 if (pp_smu->ctx.ver != PP_SMU_VER_RN) 1115 pp_smu = memset(pp_smu, 0, sizeof(struct pp_smu_funcs)); 1116 1117 1118 return pp_smu; 1119 } 1120 1121 static void dcn21_pp_smu_destroy(struct pp_smu_funcs **pp_smu) 1122 { 1123 if (pp_smu && *pp_smu) { 1124 kfree(*pp_smu); 1125 *pp_smu = NULL; 1126 } 1127 } 1128 1129 static struct audio *dcn21_create_audio( 1130 struct dc_context *ctx, unsigned int inst) 1131 { 1132 return dce_audio_create(ctx, inst, 1133 &audio_regs[inst], &audio_shift, &audio_mask); 1134 } 1135 1136 static struct dc_cap_funcs cap_funcs = { 1137 .get_dcc_compression_cap = dcn20_get_dcc_compression_cap 1138 }; 1139 1140 static struct stream_encoder *dcn21_stream_encoder_create(enum engine_id eng_id, 1141 struct dc_context *ctx) 1142 { 1143 struct dcn10_stream_encoder *enc1 = 1144 kzalloc(sizeof(struct dcn10_stream_encoder), GFP_KERNEL); 1145 1146 if (!enc1) 1147 return NULL; 1148 1149 dcn20_stream_encoder_construct(enc1, ctx, ctx->dc_bios, eng_id, 1150 &stream_enc_regs[eng_id], 1151 &se_shift, &se_mask); 1152 1153 return &enc1->base; 1154 } 1155 1156 static const struct dce_hwseq_registers hwseq_reg = { 1157 HWSEQ_DCN21_REG_LIST() 1158 }; 1159 1160 static const struct dce_hwseq_shift hwseq_shift = { 1161 HWSEQ_DCN21_MASK_SH_LIST(__SHIFT) 1162 }; 1163 1164 static const struct dce_hwseq_mask hwseq_mask = { 1165 HWSEQ_DCN21_MASK_SH_LIST(_MASK) 1166 }; 1167 1168 static struct dce_hwseq *dcn21_hwseq_create( 1169 struct dc_context *ctx) 1170 { 1171 struct dce_hwseq *hws = kzalloc(sizeof(struct dce_hwseq), GFP_KERNEL); 1172 1173 if (hws) { 1174 hws->ctx = ctx; 1175 hws->regs = &hwseq_reg; 1176 hws->shifts = &hwseq_shift; 1177 hws->masks = &hwseq_mask; 1178 hws->wa.DEGVIDCN21 = true; 1179 hws->wa.disallow_self_refresh_during_multi_plane_transition = true; 1180 } 1181 return hws; 1182 } 1183 1184 static const struct resource_create_funcs res_create_funcs = { 1185 .read_dce_straps = read_dce_straps, 1186 .create_audio = dcn21_create_audio, 1187 .create_stream_encoder = dcn21_stream_encoder_create, 1188 .create_hwseq = dcn21_hwseq_create, 1189 }; 1190 1191 static const struct encoder_feature_support link_enc_feature = { 1192 .max_hdmi_deep_color = COLOR_DEPTH_121212, 1193 .max_hdmi_pixel_clock = 600000, 1194 .hdmi_ycbcr420_supported = true, 1195 .dp_ycbcr420_supported = true, 1196 .fec_supported = true, 1197 .flags.bits.IS_HBR2_CAPABLE = true, 1198 .flags.bits.IS_HBR3_CAPABLE = true, 1199 .flags.bits.IS_TPS3_CAPABLE = true, 1200 .flags.bits.IS_TPS4_CAPABLE = true 1201 }; 1202 1203 1204 #define link_regs(id, phyid)\ 1205 [id] = {\ 1206 LE_DCN2_REG_LIST(id), \ 1207 UNIPHY_DCN2_REG_LIST(phyid), \ 1208 DPCS_DCN21_REG_LIST(id), \ 1209 SRI(DP_DPHY_INTERNAL_CTRL, DP, id) \ 1210 } 1211 1212 static const struct dcn10_link_enc_registers link_enc_regs[] = { 1213 link_regs(0, A), 1214 link_regs(1, B), 1215 link_regs(2, C), 1216 link_regs(3, D), 1217 link_regs(4, E), 1218 }; 1219 1220 static const struct dce_panel_cntl_registers panel_cntl_regs[] = { 1221 { DCN_PANEL_CNTL_REG_LIST() } 1222 }; 1223 1224 static const struct dce_panel_cntl_shift panel_cntl_shift = { 1225 DCE_PANEL_CNTL_MASK_SH_LIST(__SHIFT) 1226 }; 1227 1228 static const struct dce_panel_cntl_mask panel_cntl_mask = { 1229 DCE_PANEL_CNTL_MASK_SH_LIST(_MASK) 1230 }; 1231 1232 #define aux_regs(id)\ 1233 [id] = {\ 1234 DCN2_AUX_REG_LIST(id)\ 1235 } 1236 1237 static const struct dcn10_link_enc_aux_registers link_enc_aux_regs[] = { 1238 aux_regs(0), 1239 aux_regs(1), 1240 aux_regs(2), 1241 aux_regs(3), 1242 aux_regs(4) 1243 }; 1244 1245 #define hpd_regs(id)\ 1246 [id] = {\ 1247 HPD_REG_LIST(id)\ 1248 } 1249 1250 static const struct dcn10_link_enc_hpd_registers link_enc_hpd_regs[] = { 1251 hpd_regs(0), 1252 hpd_regs(1), 1253 hpd_regs(2), 1254 hpd_regs(3), 1255 hpd_regs(4) 1256 }; 1257 1258 static const struct dcn10_link_enc_shift le_shift = { 1259 LINK_ENCODER_MASK_SH_LIST_DCN20(__SHIFT),\ 1260 DPCS_DCN21_MASK_SH_LIST(__SHIFT) 1261 }; 1262 1263 static const struct dcn10_link_enc_mask le_mask = { 1264 LINK_ENCODER_MASK_SH_LIST_DCN20(_MASK),\ 1265 DPCS_DCN21_MASK_SH_LIST(_MASK) 1266 }; 1267 1268 static int map_transmitter_id_to_phy_instance( 1269 enum transmitter transmitter) 1270 { 1271 switch (transmitter) { 1272 case TRANSMITTER_UNIPHY_A: 1273 return 0; 1274 break; 1275 case TRANSMITTER_UNIPHY_B: 1276 return 1; 1277 break; 1278 case TRANSMITTER_UNIPHY_C: 1279 return 2; 1280 break; 1281 case TRANSMITTER_UNIPHY_D: 1282 return 3; 1283 break; 1284 case TRANSMITTER_UNIPHY_E: 1285 return 4; 1286 break; 1287 default: 1288 ASSERT(0); 1289 return 0; 1290 } 1291 } 1292 1293 static struct link_encoder *dcn21_link_encoder_create( 1294 struct dc_context *ctx, 1295 const struct encoder_init_data *enc_init_data) 1296 { 1297 struct dcn21_link_encoder *enc21 = 1298 kzalloc(sizeof(struct dcn21_link_encoder), GFP_KERNEL); 1299 int link_regs_id; 1300 1301 if (!enc21) 1302 return NULL; 1303 1304 link_regs_id = 1305 map_transmitter_id_to_phy_instance(enc_init_data->transmitter); 1306 1307 dcn21_link_encoder_construct(enc21, 1308 enc_init_data, 1309 &link_enc_feature, 1310 &link_enc_regs[link_regs_id], 1311 &link_enc_aux_regs[enc_init_data->channel - 1], 1312 &link_enc_hpd_regs[enc_init_data->hpd_source], 1313 &le_shift, 1314 &le_mask); 1315 1316 return &enc21->enc10.base; 1317 } 1318 1319 static struct panel_cntl *dcn21_panel_cntl_create(const struct panel_cntl_init_data *init_data) 1320 { 1321 struct dce_panel_cntl *panel_cntl = 1322 kzalloc(sizeof(struct dce_panel_cntl), GFP_KERNEL); 1323 1324 if (!panel_cntl) 1325 return NULL; 1326 1327 dce_panel_cntl_construct(panel_cntl, 1328 init_data, 1329 &panel_cntl_regs[init_data->inst], 1330 &panel_cntl_shift, 1331 &panel_cntl_mask); 1332 1333 return &panel_cntl->base; 1334 } 1335 1336 static void dcn21_get_panel_config_defaults(struct dc_panel_config *panel_config) 1337 { 1338 *panel_config = panel_config_defaults; 1339 } 1340 1341 #define CTX ctx 1342 1343 #define REG(reg_name) \ 1344 (DCN_BASE.instance[0].segment[mm ## reg_name ## _BASE_IDX] + mm ## reg_name) 1345 1346 static uint32_t read_pipe_fuses(struct dc_context *ctx) 1347 { 1348 uint32_t value = REG_READ(CC_DC_PIPE_DIS); 1349 /* RV1 support max 4 pipes */ 1350 value = value & 0xf; 1351 return value; 1352 } 1353 1354 static enum dc_status dcn21_patch_unknown_plane_state(struct dc_plane_state *plane_state) 1355 { 1356 if (plane_state->ctx->dc->debug.disable_dcc == DCC_ENABLE) { 1357 plane_state->dcc.enable = 1; 1358 /* align to our worst case block width */ 1359 plane_state->dcc.meta_pitch = ((plane_state->src_rect.width + 1023) / 1024) * 1024; 1360 } 1361 1362 return dcn20_patch_unknown_plane_state(plane_state); 1363 } 1364 1365 static const struct resource_funcs dcn21_res_pool_funcs = { 1366 .destroy = dcn21_destroy_resource_pool, 1367 .link_enc_create = dcn21_link_encoder_create, 1368 .panel_cntl_create = dcn21_panel_cntl_create, 1369 .validate_bandwidth = dcn21_validate_bandwidth, 1370 .populate_dml_pipes = dcn21_populate_dml_pipes_from_context, 1371 .add_stream_to_ctx = dcn20_add_stream_to_ctx, 1372 .add_dsc_to_stream_resource = dcn20_add_dsc_to_stream_resource, 1373 .remove_stream_from_ctx = dcn20_remove_stream_from_ctx, 1374 .acquire_free_pipe_as_secondary_dpp_pipe = dcn20_acquire_free_pipe_for_layer, 1375 .release_pipe = dcn20_release_pipe, 1376 .populate_dml_writeback_from_context = dcn20_populate_dml_writeback_from_context, 1377 .patch_unknown_plane_state = dcn21_patch_unknown_plane_state, 1378 .set_mcif_arb_params = dcn20_set_mcif_arb_params, 1379 .find_first_free_match_stream_enc_for_link = dcn10_find_first_free_match_stream_enc_for_link, 1380 .update_bw_bounding_box = dcn21_update_bw_bounding_box, 1381 .get_panel_config_defaults = dcn21_get_panel_config_defaults, 1382 }; 1383 1384 static bool dcn21_resource_construct( 1385 uint8_t num_virtual_links, 1386 struct dc *dc, 1387 struct dcn21_resource_pool *pool) 1388 { 1389 int i, j; 1390 struct dc_context *ctx = dc->ctx; 1391 struct irq_service_init_data init_data; 1392 uint32_t pipe_fuses = read_pipe_fuses(ctx); 1393 uint32_t num_pipes = 0; 1394 1395 ctx->dc_bios->regs = &bios_regs; 1396 1397 pool->base.res_cap = &res_cap_rn; 1398 1399 pool->base.funcs = &dcn21_res_pool_funcs; 1400 1401 /************************************************* 1402 * Resource + asic cap harcoding * 1403 *************************************************/ 1404 pool->base.underlay_pipe_index = NO_UNDERLAY_PIPE; 1405 1406 /* max pipe num for ASIC before check pipe fuses */ 1407 pool->base.pipe_count = pool->base.res_cap->num_timing_generator; 1408 1409 dc->caps.max_downscale_ratio = 200; 1410 dc->caps.i2c_speed_in_khz = 100; 1411 dc->caps.i2c_speed_in_khz_hdcp = 5; /*1.4 w/a applied by default*/ 1412 dc->caps.max_cursor_size = 256; 1413 dc->caps.min_horizontal_blanking_period = 80; 1414 dc->caps.dmdata_alloc_size = 2048; 1415 1416 dc->caps.max_slave_planes = 1; 1417 dc->caps.max_slave_yuv_planes = 1; 1418 dc->caps.max_slave_rgb_planes = 1; 1419 dc->caps.post_blend_color_processing = true; 1420 dc->caps.force_dp_tps4_for_cp2520 = true; 1421 dc->caps.extended_aux_timeout_support = true; 1422 dc->caps.dmcub_support = true; 1423 dc->caps.is_apu = true; 1424 1425 /* Color pipeline capabilities */ 1426 dc->caps.color.dpp.dcn_arch = 1; 1427 dc->caps.color.dpp.input_lut_shared = 0; 1428 dc->caps.color.dpp.icsc = 1; 1429 dc->caps.color.dpp.dgam_ram = 1; 1430 dc->caps.color.dpp.dgam_rom_caps.srgb = 1; 1431 dc->caps.color.dpp.dgam_rom_caps.bt2020 = 1; 1432 dc->caps.color.dpp.dgam_rom_caps.gamma2_2 = 0; 1433 dc->caps.color.dpp.dgam_rom_caps.pq = 0; 1434 dc->caps.color.dpp.dgam_rom_caps.hlg = 0; 1435 dc->caps.color.dpp.post_csc = 0; 1436 dc->caps.color.dpp.gamma_corr = 0; 1437 dc->caps.color.dpp.dgam_rom_for_yuv = 1; 1438 1439 dc->caps.color.dpp.hw_3d_lut = 1; 1440 dc->caps.color.dpp.ogam_ram = 1; 1441 // no OGAM ROM on DCN2 1442 dc->caps.color.dpp.ogam_rom_caps.srgb = 0; 1443 dc->caps.color.dpp.ogam_rom_caps.bt2020 = 0; 1444 dc->caps.color.dpp.ogam_rom_caps.gamma2_2 = 0; 1445 dc->caps.color.dpp.ogam_rom_caps.pq = 0; 1446 dc->caps.color.dpp.ogam_rom_caps.hlg = 0; 1447 dc->caps.color.dpp.ocsc = 0; 1448 1449 dc->caps.color.mpc.gamut_remap = 0; 1450 dc->caps.color.mpc.num_3dluts = 0; 1451 dc->caps.color.mpc.shared_3d_lut = 0; 1452 dc->caps.color.mpc.ogam_ram = 1; 1453 dc->caps.color.mpc.ogam_rom_caps.srgb = 0; 1454 dc->caps.color.mpc.ogam_rom_caps.bt2020 = 0; 1455 dc->caps.color.mpc.ogam_rom_caps.gamma2_2 = 0; 1456 dc->caps.color.mpc.ogam_rom_caps.pq = 0; 1457 dc->caps.color.mpc.ogam_rom_caps.hlg = 0; 1458 dc->caps.color.mpc.ocsc = 1; 1459 1460 dc->caps.dp_hdmi21_pcon_support = true; 1461 1462 if (dc->ctx->dce_environment == DCE_ENV_PRODUCTION_DRV) 1463 dc->debug = debug_defaults_drv; 1464 1465 // Init the vm_helper 1466 if (dc->vm_helper) 1467 vm_helper_init(dc->vm_helper, 16); 1468 1469 /************************************************* 1470 * Create resources * 1471 *************************************************/ 1472 1473 pool->base.clock_sources[DCN20_CLK_SRC_PLL0] = 1474 dcn21_clock_source_create(ctx, ctx->dc_bios, 1475 CLOCK_SOURCE_COMBO_PHY_PLL0, 1476 &clk_src_regs[0], false); 1477 pool->base.clock_sources[DCN20_CLK_SRC_PLL1] = 1478 dcn21_clock_source_create(ctx, ctx->dc_bios, 1479 CLOCK_SOURCE_COMBO_PHY_PLL1, 1480 &clk_src_regs[1], false); 1481 pool->base.clock_sources[DCN20_CLK_SRC_PLL2] = 1482 dcn21_clock_source_create(ctx, ctx->dc_bios, 1483 CLOCK_SOURCE_COMBO_PHY_PLL2, 1484 &clk_src_regs[2], false); 1485 pool->base.clock_sources[DCN20_CLK_SRC_PLL3] = 1486 dcn21_clock_source_create(ctx, ctx->dc_bios, 1487 CLOCK_SOURCE_COMBO_PHY_PLL3, 1488 &clk_src_regs[3], false); 1489 pool->base.clock_sources[DCN20_CLK_SRC_PLL4] = 1490 dcn21_clock_source_create(ctx, ctx->dc_bios, 1491 CLOCK_SOURCE_COMBO_PHY_PLL4, 1492 &clk_src_regs[4], false); 1493 1494 pool->base.clk_src_count = DCN20_CLK_SRC_TOTAL_DCN21; 1495 1496 /* todo: not reuse phy_pll registers */ 1497 pool->base.dp_clock_source = 1498 dcn21_clock_source_create(ctx, ctx->dc_bios, 1499 CLOCK_SOURCE_ID_DP_DTO, 1500 &clk_src_regs[0], true); 1501 1502 for (i = 0; i < pool->base.clk_src_count; i++) { 1503 if (pool->base.clock_sources[i] == NULL) { 1504 dm_error("DC: failed to create clock sources!\n"); 1505 BREAK_TO_DEBUGGER(); 1506 goto create_fail; 1507 } 1508 } 1509 1510 pool->base.dccg = dccg21_create(ctx, &dccg_regs, &dccg_shift, &dccg_mask); 1511 if (pool->base.dccg == NULL) { 1512 dm_error("DC: failed to create dccg!\n"); 1513 BREAK_TO_DEBUGGER(); 1514 goto create_fail; 1515 } 1516 1517 if (!dc->config.disable_dmcu) { 1518 pool->base.dmcu = dcn21_dmcu_create(ctx, 1519 &dmcu_regs, 1520 &dmcu_shift, 1521 &dmcu_mask); 1522 if (pool->base.dmcu == NULL) { 1523 dm_error("DC: failed to create dmcu!\n"); 1524 BREAK_TO_DEBUGGER(); 1525 goto create_fail; 1526 } 1527 1528 dc->debug.dmub_command_table = false; 1529 } 1530 1531 if (dc->config.disable_dmcu) { 1532 pool->base.psr = dmub_psr_create(ctx); 1533 1534 if (pool->base.psr == NULL) { 1535 dm_error("DC: failed to create psr obj!\n"); 1536 BREAK_TO_DEBUGGER(); 1537 goto create_fail; 1538 } 1539 } 1540 1541 if (dc->config.disable_dmcu) 1542 pool->base.abm = dmub_abm_create(ctx, 1543 &abm_regs, 1544 &abm_shift, 1545 &abm_mask); 1546 else 1547 pool->base.abm = dce_abm_create(ctx, 1548 &abm_regs, 1549 &abm_shift, 1550 &abm_mask); 1551 1552 pool->base.pp_smu = dcn21_pp_smu_create(ctx); 1553 1554 num_pipes = dcn2_1_ip.max_num_dpp; 1555 1556 for (i = 0; i < dcn2_1_ip.max_num_dpp; i++) 1557 if (pipe_fuses & 1 << i) 1558 num_pipes--; 1559 dcn2_1_ip.max_num_dpp = num_pipes; 1560 dcn2_1_ip.max_num_otg = num_pipes; 1561 1562 dml_init_instance(&dc->dml, &dcn2_1_soc, &dcn2_1_ip, DML_PROJECT_DCN21); 1563 1564 init_data.ctx = dc->ctx; 1565 pool->base.irqs = dal_irq_service_dcn21_create(&init_data); 1566 if (!pool->base.irqs) 1567 goto create_fail; 1568 1569 j = 0; 1570 /* mem input -> ipp -> dpp -> opp -> TG */ 1571 for (i = 0; i < pool->base.pipe_count; i++) { 1572 /* if pipe is disabled, skip instance of HW pipe, 1573 * i.e, skip ASIC register instance 1574 */ 1575 if ((pipe_fuses & (1 << i)) != 0) 1576 continue; 1577 1578 pool->base.hubps[j] = dcn21_hubp_create(ctx, i); 1579 if (pool->base.hubps[j] == NULL) { 1580 BREAK_TO_DEBUGGER(); 1581 dm_error( 1582 "DC: failed to create memory input!\n"); 1583 goto create_fail; 1584 } 1585 1586 pool->base.ipps[j] = dcn21_ipp_create(ctx, i); 1587 if (pool->base.ipps[j] == NULL) { 1588 BREAK_TO_DEBUGGER(); 1589 dm_error( 1590 "DC: failed to create input pixel processor!\n"); 1591 goto create_fail; 1592 } 1593 1594 pool->base.dpps[j] = dcn21_dpp_create(ctx, i); 1595 if (pool->base.dpps[j] == NULL) { 1596 BREAK_TO_DEBUGGER(); 1597 dm_error( 1598 "DC: failed to create dpps!\n"); 1599 goto create_fail; 1600 } 1601 1602 pool->base.opps[j] = dcn21_opp_create(ctx, i); 1603 if (pool->base.opps[j] == NULL) { 1604 BREAK_TO_DEBUGGER(); 1605 dm_error( 1606 "DC: failed to create output pixel processor!\n"); 1607 goto create_fail; 1608 } 1609 1610 pool->base.timing_generators[j] = dcn21_timing_generator_create( 1611 ctx, i); 1612 if (pool->base.timing_generators[j] == NULL) { 1613 BREAK_TO_DEBUGGER(); 1614 dm_error("DC: failed to create tg!\n"); 1615 goto create_fail; 1616 } 1617 j++; 1618 } 1619 1620 for (i = 0; i < pool->base.res_cap->num_ddc; i++) { 1621 pool->base.engines[i] = dcn21_aux_engine_create(ctx, i); 1622 if (pool->base.engines[i] == NULL) { 1623 BREAK_TO_DEBUGGER(); 1624 dm_error( 1625 "DC:failed to create aux engine!!\n"); 1626 goto create_fail; 1627 } 1628 pool->base.hw_i2cs[i] = dcn21_i2c_hw_create(ctx, i); 1629 if (pool->base.hw_i2cs[i] == NULL) { 1630 BREAK_TO_DEBUGGER(); 1631 dm_error( 1632 "DC:failed to create hw i2c!!\n"); 1633 goto create_fail; 1634 } 1635 pool->base.sw_i2cs[i] = NULL; 1636 } 1637 1638 pool->base.timing_generator_count = j; 1639 pool->base.pipe_count = j; 1640 pool->base.mpcc_count = j; 1641 1642 pool->base.mpc = dcn21_mpc_create(ctx); 1643 if (pool->base.mpc == NULL) { 1644 BREAK_TO_DEBUGGER(); 1645 dm_error("DC: failed to create mpc!\n"); 1646 goto create_fail; 1647 } 1648 1649 pool->base.hubbub = dcn21_hubbub_create(ctx); 1650 if (pool->base.hubbub == NULL) { 1651 BREAK_TO_DEBUGGER(); 1652 dm_error("DC: failed to create hubbub!\n"); 1653 goto create_fail; 1654 } 1655 1656 for (i = 0; i < pool->base.res_cap->num_dsc; i++) { 1657 pool->base.dscs[i] = dcn21_dsc_create(ctx, i); 1658 if (pool->base.dscs[i] == NULL) { 1659 BREAK_TO_DEBUGGER(); 1660 dm_error("DC: failed to create display stream compressor %d!\n", i); 1661 goto create_fail; 1662 } 1663 } 1664 1665 if (!dcn20_dwbc_create(ctx, &pool->base)) { 1666 BREAK_TO_DEBUGGER(); 1667 dm_error("DC: failed to create dwbc!\n"); 1668 goto create_fail; 1669 } 1670 if (!dcn20_mmhubbub_create(ctx, &pool->base)) { 1671 BREAK_TO_DEBUGGER(); 1672 dm_error("DC: failed to create mcif_wb!\n"); 1673 goto create_fail; 1674 } 1675 1676 if (!resource_construct(num_virtual_links, dc, &pool->base, 1677 &res_create_funcs)) 1678 goto create_fail; 1679 1680 dcn21_hw_sequencer_construct(dc); 1681 1682 dc->caps.max_planes = pool->base.pipe_count; 1683 1684 for (i = 0; i < dc->caps.max_planes; ++i) 1685 dc->caps.planes[i] = plane_cap; 1686 1687 dc->cap_funcs = cap_funcs; 1688 1689 return true; 1690 1691 create_fail: 1692 1693 dcn21_resource_destruct(pool); 1694 1695 return false; 1696 } 1697 1698 struct resource_pool *dcn21_create_resource_pool( 1699 const struct dc_init_data *init_data, 1700 struct dc *dc) 1701 { 1702 struct dcn21_resource_pool *pool = 1703 kzalloc(sizeof(struct dcn21_resource_pool), GFP_KERNEL); 1704 1705 if (!pool) 1706 return NULL; 1707 1708 if (dcn21_resource_construct(init_data->num_virtual_links, dc, pool)) 1709 return &pool->base; 1710 1711 BREAK_TO_DEBUGGER(); 1712 kfree(pool); 1713 return NULL; 1714 } 1715