1 /* 2 * Copyright 2012-14 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 #ifndef DC_INTERFACE_H_ 27 #define DC_INTERFACE_H_ 28 29 #include "dc_types.h" 30 #include "grph_object_defs.h" 31 #include "logger_types.h" 32 #if defined(CONFIG_DRM_AMD_DC_HDCP) 33 #include "hdcp_types.h" 34 #endif 35 #include "gpio_types.h" 36 #include "link_service_types.h" 37 #include "grph_object_ctrl_defs.h" 38 #include <inc/hw/opp.h> 39 40 #include "inc/hw_sequencer.h" 41 #include "inc/compressor.h" 42 #include "inc/hw/dmcu.h" 43 #include "dml/display_mode_lib.h" 44 45 /* forward declaration */ 46 struct aux_payload; 47 struct set_config_cmd_payload; 48 struct dmub_notification; 49 50 #define DC_VER "3.2.186" 51 52 #define MAX_SURFACES 3 53 #define MAX_PLANES 6 54 #define MAX_STREAMS 6 55 #define MAX_SINKS_PER_LINK 4 56 #define MIN_VIEWPORT_SIZE 12 57 #define MAX_NUM_EDP 2 58 59 /******************************************************************************* 60 * Display Core Interfaces 61 ******************************************************************************/ 62 struct dc_versions { 63 const char *dc_ver; 64 struct dmcu_version dmcu_version; 65 }; 66 67 enum dp_protocol_version { 68 DP_VERSION_1_4, 69 }; 70 71 enum dc_plane_type { 72 DC_PLANE_TYPE_INVALID, 73 DC_PLANE_TYPE_DCE_RGB, 74 DC_PLANE_TYPE_DCE_UNDERLAY, 75 DC_PLANE_TYPE_DCN_UNIVERSAL, 76 }; 77 78 // Sizes defined as multiples of 64KB 79 enum det_size { 80 DET_SIZE_DEFAULT = 0, 81 DET_SIZE_192KB = 3, 82 DET_SIZE_256KB = 4, 83 DET_SIZE_320KB = 5, 84 DET_SIZE_384KB = 6 85 }; 86 87 88 struct dc_plane_cap { 89 enum dc_plane_type type; 90 uint32_t blends_with_above : 1; 91 uint32_t blends_with_below : 1; 92 uint32_t per_pixel_alpha : 1; 93 struct { 94 uint32_t argb8888 : 1; 95 uint32_t nv12 : 1; 96 uint32_t fp16 : 1; 97 uint32_t p010 : 1; 98 uint32_t ayuv : 1; 99 } pixel_format_support; 100 // max upscaling factor x1000 101 // upscaling factors are always >= 1 102 // for example, 1080p -> 8K is 4.0, or 4000 raw value 103 struct { 104 uint32_t argb8888; 105 uint32_t nv12; 106 uint32_t fp16; 107 } max_upscale_factor; 108 // max downscale factor x1000 109 // downscale factors are always <= 1 110 // for example, 8K -> 1080p is 0.25, or 250 raw value 111 struct { 112 uint32_t argb8888; 113 uint32_t nv12; 114 uint32_t fp16; 115 } max_downscale_factor; 116 // minimal width/height 117 uint32_t min_width; 118 uint32_t min_height; 119 }; 120 121 // Color management caps (DPP and MPC) 122 struct rom_curve_caps { 123 uint16_t srgb : 1; 124 uint16_t bt2020 : 1; 125 uint16_t gamma2_2 : 1; 126 uint16_t pq : 1; 127 uint16_t hlg : 1; 128 }; 129 130 struct dpp_color_caps { 131 uint16_t dcn_arch : 1; // all DCE generations treated the same 132 // input lut is different than most LUTs, just plain 256-entry lookup 133 uint16_t input_lut_shared : 1; // shared with DGAM 134 uint16_t icsc : 1; 135 uint16_t dgam_ram : 1; 136 uint16_t post_csc : 1; // before gamut remap 137 uint16_t gamma_corr : 1; 138 139 // hdr_mult and gamut remap always available in DPP (in that order) 140 // 3d lut implies shaper LUT, 141 // it may be shared with MPC - check MPC:shared_3d_lut flag 142 uint16_t hw_3d_lut : 1; 143 uint16_t ogam_ram : 1; // blnd gam 144 uint16_t ocsc : 1; 145 uint16_t dgam_rom_for_yuv : 1; 146 struct rom_curve_caps dgam_rom_caps; 147 struct rom_curve_caps ogam_rom_caps; 148 }; 149 150 struct mpc_color_caps { 151 uint16_t gamut_remap : 1; 152 uint16_t ogam_ram : 1; 153 uint16_t ocsc : 1; 154 uint16_t num_3dluts : 3; //3d lut always assumes a preceding shaper LUT 155 uint16_t shared_3d_lut:1; //can be in either DPP or MPC, but single instance 156 157 struct rom_curve_caps ogam_rom_caps; 158 }; 159 160 struct dc_color_caps { 161 struct dpp_color_caps dpp; 162 struct mpc_color_caps mpc; 163 }; 164 165 struct dc_caps { 166 uint32_t max_streams; 167 uint32_t max_links; 168 uint32_t max_audios; 169 uint32_t max_slave_planes; 170 uint32_t max_slave_yuv_planes; 171 uint32_t max_slave_rgb_planes; 172 uint32_t max_planes; 173 uint32_t max_downscale_ratio; 174 uint32_t i2c_speed_in_khz; 175 uint32_t i2c_speed_in_khz_hdcp; 176 uint32_t dmdata_alloc_size; 177 unsigned int max_cursor_size; 178 unsigned int max_video_width; 179 unsigned int min_horizontal_blanking_period; 180 int linear_pitch_alignment; 181 bool dcc_const_color; 182 bool dynamic_audio; 183 bool is_apu; 184 bool dual_link_dvi; 185 bool post_blend_color_processing; 186 bool force_dp_tps4_for_cp2520; 187 bool disable_dp_clk_share; 188 bool psp_setup_panel_mode; 189 bool extended_aux_timeout_support; 190 bool dmcub_support; 191 bool zstate_support; 192 uint32_t num_of_internal_disp; 193 enum dp_protocol_version max_dp_protocol_version; 194 unsigned int mall_size_per_mem_channel; 195 unsigned int mall_size_total; 196 unsigned int cursor_cache_size; 197 struct dc_plane_cap planes[MAX_PLANES]; 198 struct dc_color_caps color; 199 bool dp_hpo; 200 bool hdmi_frl_pcon_support; 201 bool edp_dsc_support; 202 bool vbios_lttpr_aware; 203 bool vbios_lttpr_enable; 204 uint32_t max_otg_num; 205 }; 206 207 struct dc_bug_wa { 208 bool no_connect_phy_config; 209 bool dedcn20_305_wa; 210 bool skip_clock_update; 211 bool lt_early_cr_pattern; 212 }; 213 214 struct dc_dcc_surface_param { 215 struct dc_size surface_size; 216 enum surface_pixel_format format; 217 enum swizzle_mode_values swizzle_mode; 218 enum dc_scan_direction scan; 219 }; 220 221 struct dc_dcc_setting { 222 unsigned int max_compressed_blk_size; 223 unsigned int max_uncompressed_blk_size; 224 bool independent_64b_blks; 225 //These bitfields to be used starting with DCN 226 struct { 227 uint32_t dcc_256_64_64 : 1;//available in ASICs before DCN (the worst compression case) 228 uint32_t dcc_128_128_uncontrained : 1; //available in ASICs before DCN 229 uint32_t dcc_256_128_128 : 1; //available starting with DCN 230 uint32_t dcc_256_256_unconstrained : 1; //available in ASICs before DCN (the best compression case) 231 } dcc_controls; 232 }; 233 234 struct dc_surface_dcc_cap { 235 union { 236 struct { 237 struct dc_dcc_setting rgb; 238 } grph; 239 240 struct { 241 struct dc_dcc_setting luma; 242 struct dc_dcc_setting chroma; 243 } video; 244 }; 245 246 bool capable; 247 bool const_color_support; 248 }; 249 250 struct dc_static_screen_params { 251 struct { 252 bool force_trigger; 253 bool cursor_update; 254 bool surface_update; 255 bool overlay_update; 256 } triggers; 257 unsigned int num_frames; 258 }; 259 260 261 /* Surface update type is used by dc_update_surfaces_and_stream 262 * The update type is determined at the very beginning of the function based 263 * on parameters passed in and decides how much programming (or updating) is 264 * going to be done during the call. 265 * 266 * UPDATE_TYPE_FAST is used for really fast updates that do not require much 267 * logical calculations or hardware register programming. This update MUST be 268 * ISR safe on windows. Currently fast update will only be used to flip surface 269 * address. 270 * 271 * UPDATE_TYPE_MED is used for slower updates which require significant hw 272 * re-programming however do not affect bandwidth consumption or clock 273 * requirements. At present, this is the level at which front end updates 274 * that do not require us to run bw_calcs happen. These are in/out transfer func 275 * updates, viewport offset changes, recout size changes and pixel depth changes. 276 * This update can be done at ISR, but we want to minimize how often this happens. 277 * 278 * UPDATE_TYPE_FULL is slow. Really slow. This requires us to recalculate our 279 * bandwidth and clocks, possibly rearrange some pipes and reprogram anything front 280 * end related. Any time viewport dimensions, recout dimensions, scaling ratios or 281 * gamma need to be adjusted or pipe needs to be turned on (or disconnected) we do 282 * a full update. This cannot be done at ISR level and should be a rare event. 283 * Unless someone is stress testing mpo enter/exit, playing with colour or adjusting 284 * underscan we don't expect to see this call at all. 285 */ 286 287 enum surface_update_type { 288 UPDATE_TYPE_FAST, /* super fast, safe to execute in isr */ 289 UPDATE_TYPE_MED, /* ISR safe, most of programming needed, no bw/clk change*/ 290 UPDATE_TYPE_FULL, /* may need to shuffle resources */ 291 }; 292 293 /* Forward declaration*/ 294 struct dc; 295 struct dc_plane_state; 296 struct dc_state; 297 298 299 struct dc_cap_funcs { 300 bool (*get_dcc_compression_cap)(const struct dc *dc, 301 const struct dc_dcc_surface_param *input, 302 struct dc_surface_dcc_cap *output); 303 }; 304 305 struct link_training_settings; 306 307 union allow_lttpr_non_transparent_mode { 308 struct { 309 bool DP1_4A : 1; 310 bool DP2_0 : 1; 311 } bits; 312 unsigned char raw; 313 }; 314 315 /* Structure to hold configuration flags set by dm at dc creation. */ 316 struct dc_config { 317 bool gpu_vm_support; 318 bool disable_disp_pll_sharing; 319 bool fbc_support; 320 bool disable_fractional_pwm; 321 bool allow_seamless_boot_optimization; 322 bool seamless_boot_edp_requested; 323 bool edp_not_connected; 324 bool edp_no_power_sequencing; 325 bool force_enum_edp; 326 bool forced_clocks; 327 union allow_lttpr_non_transparent_mode allow_lttpr_non_transparent_mode; 328 bool multi_mon_pp_mclk_switch; 329 bool disable_dmcu; 330 bool enable_4to1MPC; 331 bool enable_windowed_mpo_odm; 332 uint32_t allow_edp_hotplug_detection; 333 bool clamp_min_dcfclk; 334 uint64_t vblank_alignment_dto_params; 335 uint8_t vblank_alignment_max_frame_time_diff; 336 bool is_asymmetric_memory; 337 bool is_single_rank_dimm; 338 bool use_pipe_ctx_sync_logic; 339 bool ignore_dpref_ss; 340 }; 341 342 enum visual_confirm { 343 VISUAL_CONFIRM_DISABLE = 0, 344 VISUAL_CONFIRM_SURFACE = 1, 345 VISUAL_CONFIRM_HDR = 2, 346 VISUAL_CONFIRM_MPCTREE = 4, 347 VISUAL_CONFIRM_PSR = 5, 348 VISUAL_CONFIRM_SWIZZLE = 9, 349 }; 350 351 enum dc_psr_power_opts { 352 psr_power_opt_invalid = 0x0, 353 psr_power_opt_smu_opt_static_screen = 0x1, 354 psr_power_opt_z10_static_screen = 0x10, 355 psr_power_opt_ds_disable_allow = 0x100, 356 }; 357 358 enum dml_hostvm_override_opts { 359 DML_HOSTVM_NO_OVERRIDE = 0x0, 360 DML_HOSTVM_OVERRIDE_FALSE = 0x1, 361 DML_HOSTVM_OVERRIDE_TRUE = 0x2, 362 }; 363 364 enum dcc_option { 365 DCC_ENABLE = 0, 366 DCC_DISABLE = 1, 367 DCC_HALF_REQ_DISALBE = 2, 368 }; 369 370 enum pipe_split_policy { 371 MPC_SPLIT_DYNAMIC = 0, 372 MPC_SPLIT_AVOID = 1, 373 MPC_SPLIT_AVOID_MULT_DISP = 2, 374 }; 375 376 enum wm_report_mode { 377 WM_REPORT_DEFAULT = 0, 378 WM_REPORT_OVERRIDE = 1, 379 }; 380 enum dtm_pstate{ 381 dtm_level_p0 = 0,/*highest voltage*/ 382 dtm_level_p1, 383 dtm_level_p2, 384 dtm_level_p3, 385 dtm_level_p4,/*when active_display_count = 0*/ 386 }; 387 388 enum dcn_pwr_state { 389 DCN_PWR_STATE_UNKNOWN = -1, 390 DCN_PWR_STATE_MISSION_MODE = 0, 391 DCN_PWR_STATE_LOW_POWER = 3, 392 }; 393 394 enum dcn_zstate_support_state { 395 DCN_ZSTATE_SUPPORT_UNKNOWN, 396 DCN_ZSTATE_SUPPORT_ALLOW, 397 DCN_ZSTATE_SUPPORT_ALLOW_Z10_ONLY, 398 DCN_ZSTATE_SUPPORT_DISALLOW, 399 }; 400 /* 401 * For any clocks that may differ per pipe 402 * only the max is stored in this structure 403 */ 404 struct dc_clocks { 405 int dispclk_khz; 406 int actual_dispclk_khz; 407 int dppclk_khz; 408 int actual_dppclk_khz; 409 int disp_dpp_voltage_level_khz; 410 int dcfclk_khz; 411 int socclk_khz; 412 int dcfclk_deep_sleep_khz; 413 int fclk_khz; 414 int phyclk_khz; 415 int dramclk_khz; 416 bool p_state_change_support; 417 enum dcn_zstate_support_state zstate_support; 418 bool dtbclk_en; 419 enum dcn_pwr_state pwr_state; 420 /* 421 * Elements below are not compared for the purposes of 422 * optimization required 423 */ 424 bool prev_p_state_change_support; 425 enum dtm_pstate dtm_level; 426 int max_supported_dppclk_khz; 427 int max_supported_dispclk_khz; 428 int bw_dppclk_khz; /*a copy of dppclk_khz*/ 429 int bw_dispclk_khz; 430 }; 431 432 struct dc_bw_validation_profile { 433 bool enable; 434 435 unsigned long long total_ticks; 436 unsigned long long voltage_level_ticks; 437 unsigned long long watermark_ticks; 438 unsigned long long rq_dlg_ticks; 439 440 unsigned long long total_count; 441 unsigned long long skip_fast_count; 442 unsigned long long skip_pass_count; 443 unsigned long long skip_fail_count; 444 }; 445 446 #define BW_VAL_TRACE_SETUP() \ 447 unsigned long long end_tick = 0; \ 448 unsigned long long voltage_level_tick = 0; \ 449 unsigned long long watermark_tick = 0; \ 450 unsigned long long start_tick = dc->debug.bw_val_profile.enable ? \ 451 dm_get_timestamp(dc->ctx) : 0 452 453 #define BW_VAL_TRACE_COUNT() \ 454 if (dc->debug.bw_val_profile.enable) \ 455 dc->debug.bw_val_profile.total_count++ 456 457 #define BW_VAL_TRACE_SKIP(status) \ 458 if (dc->debug.bw_val_profile.enable) { \ 459 if (!voltage_level_tick) \ 460 voltage_level_tick = dm_get_timestamp(dc->ctx); \ 461 dc->debug.bw_val_profile.skip_ ## status ## _count++; \ 462 } 463 464 #define BW_VAL_TRACE_END_VOLTAGE_LEVEL() \ 465 if (dc->debug.bw_val_profile.enable) \ 466 voltage_level_tick = dm_get_timestamp(dc->ctx) 467 468 #define BW_VAL_TRACE_END_WATERMARKS() \ 469 if (dc->debug.bw_val_profile.enable) \ 470 watermark_tick = dm_get_timestamp(dc->ctx) 471 472 #define BW_VAL_TRACE_FINISH() \ 473 if (dc->debug.bw_val_profile.enable) { \ 474 end_tick = dm_get_timestamp(dc->ctx); \ 475 dc->debug.bw_val_profile.total_ticks += end_tick - start_tick; \ 476 dc->debug.bw_val_profile.voltage_level_ticks += voltage_level_tick - start_tick; \ 477 if (watermark_tick) { \ 478 dc->debug.bw_val_profile.watermark_ticks += watermark_tick - voltage_level_tick; \ 479 dc->debug.bw_val_profile.rq_dlg_ticks += end_tick - watermark_tick; \ 480 } \ 481 } 482 483 union mem_low_power_enable_options { 484 struct { 485 bool vga: 1; 486 bool i2c: 1; 487 bool dmcu: 1; 488 bool dscl: 1; 489 bool cm: 1; 490 bool mpc: 1; 491 bool optc: 1; 492 bool vpg: 1; 493 bool afmt: 1; 494 } bits; 495 uint32_t u32All; 496 }; 497 498 union root_clock_optimization_options { 499 struct { 500 bool dpp: 1; 501 bool dsc: 1; 502 bool hdmistream: 1; 503 bool hdmichar: 1; 504 bool dpstream: 1; 505 bool symclk32_se: 1; 506 bool symclk32_le: 1; 507 bool symclk_fe: 1; 508 bool physymclk: 1; 509 bool dpiasymclk: 1; 510 uint32_t reserved: 22; 511 } bits; 512 uint32_t u32All; 513 }; 514 515 union dpia_debug_options { 516 struct { 517 uint32_t disable_dpia:1; /* bit 0 */ 518 uint32_t force_non_lttpr:1; /* bit 1 */ 519 uint32_t extend_aux_rd_interval:1; /* bit 2 */ 520 uint32_t disable_mst_dsc_work_around:1; /* bit 3 */ 521 uint32_t hpd_delay_in_ms:12; /* bits 4-15 */ 522 uint32_t disable_force_tbt3_work_around:1; /* bit 16 */ 523 uint32_t reserved:15; 524 } bits; 525 uint32_t raw; 526 }; 527 528 /* AUX wake work around options 529 * 0: enable/disable work around 530 * 1: use default timeout LINK_AUX_WAKE_TIMEOUT_MS 531 * 15-2: reserved 532 * 31-16: timeout in ms 533 */ 534 union aux_wake_wa_options { 535 struct { 536 uint32_t enable_wa : 1; 537 uint32_t use_default_timeout : 1; 538 uint32_t rsvd: 14; 539 uint32_t timeout_ms : 16; 540 } bits; 541 uint32_t raw; 542 }; 543 544 struct dc_debug_data { 545 uint32_t ltFailCount; 546 uint32_t i2cErrorCount; 547 uint32_t auxErrorCount; 548 }; 549 550 struct dc_phy_addr_space_config { 551 struct { 552 uint64_t start_addr; 553 uint64_t end_addr; 554 uint64_t fb_top; 555 uint64_t fb_offset; 556 uint64_t fb_base; 557 uint64_t agp_top; 558 uint64_t agp_bot; 559 uint64_t agp_base; 560 } system_aperture; 561 562 struct { 563 uint64_t page_table_start_addr; 564 uint64_t page_table_end_addr; 565 uint64_t page_table_base_addr; 566 bool base_addr_is_mc_addr; 567 } gart_config; 568 569 bool valid; 570 bool is_hvm_enabled; 571 uint64_t page_table_default_page_addr; 572 }; 573 574 struct dc_virtual_addr_space_config { 575 uint64_t page_table_base_addr; 576 uint64_t page_table_start_addr; 577 uint64_t page_table_end_addr; 578 uint32_t page_table_block_size_in_bytes; 579 uint8_t page_table_depth; // 1 = 1 level, 2 = 2 level, etc. 0 = invalid 580 }; 581 582 struct dc_bounding_box_overrides { 583 int sr_exit_time_ns; 584 int sr_enter_plus_exit_time_ns; 585 int urgent_latency_ns; 586 int percent_of_ideal_drambw; 587 int dram_clock_change_latency_ns; 588 int dummy_clock_change_latency_ns; 589 /* This forces a hard min on the DCFCLK we use 590 * for DML. Unlike the debug option for forcing 591 * DCFCLK, this override affects watermark calculations 592 */ 593 int min_dcfclk_mhz; 594 }; 595 596 struct dc_state; 597 struct resource_pool; 598 struct dce_hwseq; 599 600 struct dc_debug_options { 601 bool native422_support; 602 bool disable_dsc; 603 enum visual_confirm visual_confirm; 604 int visual_confirm_rect_height; 605 606 bool sanity_checks; 607 bool max_disp_clk; 608 bool surface_trace; 609 bool timing_trace; 610 bool clock_trace; 611 bool validation_trace; 612 bool bandwidth_calcs_trace; 613 int max_downscale_src_width; 614 615 /* stutter efficiency related */ 616 bool disable_stutter; 617 bool use_max_lb; 618 enum dcc_option disable_dcc; 619 enum pipe_split_policy pipe_split_policy; 620 bool force_single_disp_pipe_split; 621 bool voltage_align_fclk; 622 bool disable_min_fclk; 623 624 bool disable_dfs_bypass; 625 bool disable_dpp_power_gate; 626 bool disable_hubp_power_gate; 627 bool disable_dsc_power_gate; 628 int dsc_min_slice_height_override; 629 int dsc_bpp_increment_div; 630 bool disable_pplib_wm_range; 631 enum wm_report_mode pplib_wm_report_mode; 632 unsigned int min_disp_clk_khz; 633 unsigned int min_dpp_clk_khz; 634 unsigned int min_dram_clk_khz; 635 int sr_exit_time_dpm0_ns; 636 int sr_enter_plus_exit_time_dpm0_ns; 637 int sr_exit_time_ns; 638 int sr_enter_plus_exit_time_ns; 639 int urgent_latency_ns; 640 uint32_t underflow_assert_delay_us; 641 int percent_of_ideal_drambw; 642 int dram_clock_change_latency_ns; 643 bool optimized_watermark; 644 int always_scale; 645 bool disable_pplib_clock_request; 646 bool disable_clock_gate; 647 bool disable_mem_low_power; 648 bool pstate_enabled; 649 bool disable_dmcu; 650 bool disable_psr; 651 bool force_abm_enable; 652 bool disable_stereo_support; 653 bool vsr_support; 654 bool performance_trace; 655 bool az_endpoint_mute_only; 656 bool always_use_regamma; 657 bool recovery_enabled; 658 bool avoid_vbios_exec_table; 659 bool scl_reset_length10; 660 bool hdmi20_disable; 661 bool skip_detection_link_training; 662 uint32_t edid_read_retry_times; 663 bool remove_disconnect_edp; 664 unsigned int force_odm_combine; //bit vector based on otg inst 665 unsigned int seamless_boot_odm_combine; 666 unsigned int force_odm_combine_4to1; //bit vector based on otg inst 667 bool disable_z9_mpc; 668 unsigned int force_fclk_khz; 669 bool enable_tri_buf; 670 bool dmub_offload_enabled; 671 bool dmcub_emulation; 672 bool disable_idle_power_optimizations; 673 unsigned int mall_size_override; 674 unsigned int mall_additional_timer_percent; 675 bool mall_error_as_fatal; 676 bool dmub_command_table; /* for testing only */ 677 struct dc_bw_validation_profile bw_val_profile; 678 bool disable_fec; 679 bool disable_48mhz_pwrdwn; 680 /* This forces a hard min on the DCFCLK requested to SMU/PP 681 * watermarks are not affected. 682 */ 683 unsigned int force_min_dcfclk_mhz; 684 int dwb_fi_phase; 685 bool disable_timing_sync; 686 bool cm_in_bypass; 687 int force_clock_mode;/*every mode change.*/ 688 689 bool disable_dram_clock_change_vactive_support; 690 bool validate_dml_output; 691 bool enable_dmcub_surface_flip; 692 bool usbc_combo_phy_reset_wa; 693 bool disable_dsc_edp; 694 unsigned int force_dsc_edp_policy; 695 bool enable_dram_clock_change_one_display_vactive; 696 /* TODO - remove once tested */ 697 bool legacy_dp2_lt; 698 bool set_mst_en_for_sst; 699 bool disable_uhbr; 700 bool force_dp2_lt_fallback_method; 701 bool ignore_cable_id; 702 union mem_low_power_enable_options enable_mem_low_power; 703 union root_clock_optimization_options root_clock_optimization; 704 bool hpo_optimization; 705 bool force_vblank_alignment; 706 707 /* Enable dmub aux for legacy ddc */ 708 bool enable_dmub_aux_for_legacy_ddc; 709 bool optimize_edp_link_rate; /* eDP ILR */ 710 /* FEC/PSR1 sequence enable delay in 100us */ 711 uint8_t fec_enable_delay_in100us; 712 bool enable_driver_sequence_debug; 713 enum det_size crb_alloc_policy; 714 int crb_alloc_policy_min_disp_count; 715 bool disable_z10; 716 bool enable_z9_disable_interface; 717 bool enable_sw_cntl_psr; 718 union dpia_debug_options dpia_debug; 719 bool apply_vendor_specific_lttpr_wa; 720 bool extended_blank_optimization; 721 union aux_wake_wa_options aux_wake_wa; 722 uint8_t psr_power_use_phy_fsm; 723 enum dml_hostvm_override_opts dml_hostvm_override; 724 }; 725 726 struct gpu_info_soc_bounding_box_v1_0; 727 struct dc { 728 struct dc_debug_options debug; 729 struct dc_versions versions; 730 struct dc_caps caps; 731 struct dc_cap_funcs cap_funcs; 732 struct dc_config config; 733 struct dc_bounding_box_overrides bb_overrides; 734 struct dc_bug_wa work_arounds; 735 struct dc_context *ctx; 736 struct dc_phy_addr_space_config vm_pa_config; 737 738 uint8_t link_count; 739 struct dc_link *links[MAX_PIPES * 2]; 740 741 struct dc_state *current_state; 742 struct resource_pool *res_pool; 743 744 struct clk_mgr *clk_mgr; 745 746 /* Display Engine Clock levels */ 747 struct dm_pp_clock_levels sclk_lvls; 748 749 /* Inputs into BW and WM calculations. */ 750 struct bw_calcs_dceip *bw_dceip; 751 struct bw_calcs_vbios *bw_vbios; 752 struct dcn_soc_bounding_box *dcn_soc; 753 struct dcn_ip_params *dcn_ip; 754 struct display_mode_lib dml; 755 756 /* HW functions */ 757 struct hw_sequencer_funcs hwss; 758 struct dce_hwseq *hwseq; 759 760 /* Require to optimize clocks and bandwidth for added/removed planes */ 761 bool optimized_required; 762 bool wm_optimized_required; 763 bool idle_optimizations_allowed; 764 bool enable_c20_dtm_b0; 765 766 /* Require to maintain clocks and bandwidth for UEFI enabled HW */ 767 768 /* FBC compressor */ 769 struct compressor *fbc_compressor; 770 771 struct dc_debug_data debug_data; 772 struct dpcd_vendor_signature vendor_signature; 773 774 const char *build_id; 775 struct vm_helper *vm_helper; 776 }; 777 778 enum frame_buffer_mode { 779 FRAME_BUFFER_MODE_LOCAL_ONLY = 0, 780 FRAME_BUFFER_MODE_ZFB_ONLY, 781 FRAME_BUFFER_MODE_MIXED_ZFB_AND_LOCAL, 782 } ; 783 784 struct dchub_init_data { 785 int64_t zfb_phys_addr_base; 786 int64_t zfb_mc_base_addr; 787 uint64_t zfb_size_in_byte; 788 enum frame_buffer_mode fb_mode; 789 bool dchub_initialzied; 790 bool dchub_info_valid; 791 }; 792 793 struct dc_init_data { 794 struct hw_asic_id asic_id; 795 void *driver; /* ctx */ 796 struct cgs_device *cgs_device; 797 struct dc_bounding_box_overrides bb_overrides; 798 799 int num_virtual_links; 800 /* 801 * If 'vbios_override' not NULL, it will be called instead 802 * of the real VBIOS. Intended use is Diagnostics on FPGA. 803 */ 804 struct dc_bios *vbios_override; 805 enum dce_environment dce_environment; 806 807 struct dmub_offload_funcs *dmub_if; 808 struct dc_reg_helper_state *dmub_offload; 809 810 struct dc_config flags; 811 uint64_t log_mask; 812 813 struct dpcd_vendor_signature vendor_signature; 814 bool force_smu_not_present; 815 }; 816 817 struct dc_callback_init { 818 #ifdef CONFIG_DRM_AMD_DC_HDCP 819 struct cp_psp cp_psp; 820 #else 821 uint8_t reserved; 822 #endif 823 }; 824 825 struct dc *dc_create(const struct dc_init_data *init_params); 826 void dc_hardware_init(struct dc *dc); 827 828 int dc_get_vmid_use_vector(struct dc *dc); 829 void dc_setup_vm_context(struct dc *dc, struct dc_virtual_addr_space_config *va_config, int vmid); 830 /* Returns the number of vmids supported */ 831 int dc_setup_system_context(struct dc *dc, struct dc_phy_addr_space_config *pa_config); 832 void dc_init_callbacks(struct dc *dc, 833 const struct dc_callback_init *init_params); 834 void dc_deinit_callbacks(struct dc *dc); 835 void dc_destroy(struct dc **dc); 836 837 /******************************************************************************* 838 * Surface Interfaces 839 ******************************************************************************/ 840 841 enum { 842 TRANSFER_FUNC_POINTS = 1025 843 }; 844 845 struct dc_hdr_static_metadata { 846 /* display chromaticities and white point in units of 0.00001 */ 847 unsigned int chromaticity_green_x; 848 unsigned int chromaticity_green_y; 849 unsigned int chromaticity_blue_x; 850 unsigned int chromaticity_blue_y; 851 unsigned int chromaticity_red_x; 852 unsigned int chromaticity_red_y; 853 unsigned int chromaticity_white_point_x; 854 unsigned int chromaticity_white_point_y; 855 856 uint32_t min_luminance; 857 uint32_t max_luminance; 858 uint32_t maximum_content_light_level; 859 uint32_t maximum_frame_average_light_level; 860 }; 861 862 enum dc_transfer_func_type { 863 TF_TYPE_PREDEFINED, 864 TF_TYPE_DISTRIBUTED_POINTS, 865 TF_TYPE_BYPASS, 866 TF_TYPE_HWPWL 867 }; 868 869 struct dc_transfer_func_distributed_points { 870 struct fixed31_32 red[TRANSFER_FUNC_POINTS]; 871 struct fixed31_32 green[TRANSFER_FUNC_POINTS]; 872 struct fixed31_32 blue[TRANSFER_FUNC_POINTS]; 873 874 uint16_t end_exponent; 875 uint16_t x_point_at_y1_red; 876 uint16_t x_point_at_y1_green; 877 uint16_t x_point_at_y1_blue; 878 }; 879 880 enum dc_transfer_func_predefined { 881 TRANSFER_FUNCTION_SRGB, 882 TRANSFER_FUNCTION_BT709, 883 TRANSFER_FUNCTION_PQ, 884 TRANSFER_FUNCTION_LINEAR, 885 TRANSFER_FUNCTION_UNITY, 886 TRANSFER_FUNCTION_HLG, 887 TRANSFER_FUNCTION_HLG12, 888 TRANSFER_FUNCTION_GAMMA22, 889 TRANSFER_FUNCTION_GAMMA24, 890 TRANSFER_FUNCTION_GAMMA26 891 }; 892 893 894 struct dc_transfer_func { 895 struct kref refcount; 896 enum dc_transfer_func_type type; 897 enum dc_transfer_func_predefined tf; 898 /* FP16 1.0 reference level in nits, default is 80 nits, only for PQ*/ 899 uint32_t sdr_ref_white_level; 900 union { 901 struct pwl_params pwl; 902 struct dc_transfer_func_distributed_points tf_pts; 903 }; 904 }; 905 906 907 union dc_3dlut_state { 908 struct { 909 uint32_t initialized:1; /*if 3dlut is went through color module for initialization */ 910 uint32_t rmu_idx_valid:1; /*if mux settings are valid*/ 911 uint32_t rmu_mux_num:3; /*index of mux to use*/ 912 uint32_t mpc_rmu0_mux:4; /*select mpcc on mux, one of the following : mpcc0, mpcc1, mpcc2, mpcc3*/ 913 uint32_t mpc_rmu1_mux:4; 914 uint32_t mpc_rmu2_mux:4; 915 uint32_t reserved:15; 916 } bits; 917 uint32_t raw; 918 }; 919 920 921 struct dc_3dlut { 922 struct kref refcount; 923 struct tetrahedral_params lut_3d; 924 struct fixed31_32 hdr_multiplier; 925 union dc_3dlut_state state; 926 }; 927 /* 928 * This structure is filled in by dc_surface_get_status and contains 929 * the last requested address and the currently active address so the called 930 * can determine if there are any outstanding flips 931 */ 932 struct dc_plane_status { 933 struct dc_plane_address requested_address; 934 struct dc_plane_address current_address; 935 bool is_flip_pending; 936 bool is_right_eye; 937 }; 938 939 union surface_update_flags { 940 941 struct { 942 uint32_t addr_update:1; 943 /* Medium updates */ 944 uint32_t dcc_change:1; 945 uint32_t color_space_change:1; 946 uint32_t horizontal_mirror_change:1; 947 uint32_t per_pixel_alpha_change:1; 948 uint32_t global_alpha_change:1; 949 uint32_t hdr_mult:1; 950 uint32_t rotation_change:1; 951 uint32_t swizzle_change:1; 952 uint32_t scaling_change:1; 953 uint32_t position_change:1; 954 uint32_t in_transfer_func_change:1; 955 uint32_t input_csc_change:1; 956 uint32_t coeff_reduction_change:1; 957 uint32_t output_tf_change:1; 958 uint32_t pixel_format_change:1; 959 uint32_t plane_size_change:1; 960 uint32_t gamut_remap_change:1; 961 962 /* Full updates */ 963 uint32_t new_plane:1; 964 uint32_t bpp_change:1; 965 uint32_t gamma_change:1; 966 uint32_t bandwidth_change:1; 967 uint32_t clock_change:1; 968 uint32_t stereo_format_change:1; 969 uint32_t lut_3d:1; 970 uint32_t full_update:1; 971 } bits; 972 973 uint32_t raw; 974 }; 975 976 struct dc_plane_state { 977 struct dc_plane_address address; 978 struct dc_plane_flip_time time; 979 bool triplebuffer_flips; 980 struct scaling_taps scaling_quality; 981 struct rect src_rect; 982 struct rect dst_rect; 983 struct rect clip_rect; 984 985 struct plane_size plane_size; 986 union dc_tiling_info tiling_info; 987 988 struct dc_plane_dcc_param dcc; 989 990 struct dc_gamma *gamma_correction; 991 struct dc_transfer_func *in_transfer_func; 992 struct dc_bias_and_scale *bias_and_scale; 993 struct dc_csc_transform input_csc_color_matrix; 994 struct fixed31_32 coeff_reduction_factor; 995 struct fixed31_32 hdr_mult; 996 struct colorspace_transform gamut_remap_matrix; 997 998 // TODO: No longer used, remove 999 struct dc_hdr_static_metadata hdr_static_ctx; 1000 1001 enum dc_color_space color_space; 1002 1003 struct dc_3dlut *lut3d_func; 1004 struct dc_transfer_func *in_shaper_func; 1005 struct dc_transfer_func *blend_tf; 1006 1007 struct dc_transfer_func *gamcor_tf; 1008 enum surface_pixel_format format; 1009 enum dc_rotation_angle rotation; 1010 enum plane_stereo_format stereo_format; 1011 1012 bool is_tiling_rotated; 1013 bool per_pixel_alpha; 1014 bool pre_multiplied_alpha; 1015 bool global_alpha; 1016 int global_alpha_value; 1017 bool visible; 1018 bool flip_immediate; 1019 bool horizontal_mirror; 1020 int layer_index; 1021 1022 union surface_update_flags update_flags; 1023 bool flip_int_enabled; 1024 bool skip_manual_trigger; 1025 1026 /* private to DC core */ 1027 struct dc_plane_status status; 1028 struct dc_context *ctx; 1029 1030 /* HACK: Workaround for forcing full reprogramming under some conditions */ 1031 bool force_full_update; 1032 1033 /* private to dc_surface.c */ 1034 enum dc_irq_source irq_source; 1035 struct kref refcount; 1036 }; 1037 1038 struct dc_plane_info { 1039 struct plane_size plane_size; 1040 union dc_tiling_info tiling_info; 1041 struct dc_plane_dcc_param dcc; 1042 enum surface_pixel_format format; 1043 enum dc_rotation_angle rotation; 1044 enum plane_stereo_format stereo_format; 1045 enum dc_color_space color_space; 1046 bool horizontal_mirror; 1047 bool visible; 1048 bool per_pixel_alpha; 1049 bool pre_multiplied_alpha; 1050 bool global_alpha; 1051 int global_alpha_value; 1052 bool input_csc_enabled; 1053 int layer_index; 1054 }; 1055 1056 struct dc_scaling_info { 1057 struct rect src_rect; 1058 struct rect dst_rect; 1059 struct rect clip_rect; 1060 struct scaling_taps scaling_quality; 1061 }; 1062 1063 struct dc_surface_update { 1064 struct dc_plane_state *surface; 1065 1066 /* isr safe update parameters. null means no updates */ 1067 const struct dc_flip_addrs *flip_addr; 1068 const struct dc_plane_info *plane_info; 1069 const struct dc_scaling_info *scaling_info; 1070 struct fixed31_32 hdr_mult; 1071 /* following updates require alloc/sleep/spin that is not isr safe, 1072 * null means no updates 1073 */ 1074 const struct dc_gamma *gamma; 1075 const struct dc_transfer_func *in_transfer_func; 1076 1077 const struct dc_csc_transform *input_csc_color_matrix; 1078 const struct fixed31_32 *coeff_reduction_factor; 1079 const struct dc_transfer_func *func_shaper; 1080 const struct dc_3dlut *lut3d_func; 1081 const struct dc_transfer_func *blend_tf; 1082 const struct colorspace_transform *gamut_remap_matrix; 1083 }; 1084 1085 /* 1086 * Create a new surface with default parameters; 1087 */ 1088 struct dc_plane_state *dc_create_plane_state(struct dc *dc); 1089 const struct dc_plane_status *dc_plane_get_status( 1090 const struct dc_plane_state *plane_state); 1091 1092 void dc_plane_state_retain(struct dc_plane_state *plane_state); 1093 void dc_plane_state_release(struct dc_plane_state *plane_state); 1094 1095 void dc_gamma_retain(struct dc_gamma *dc_gamma); 1096 void dc_gamma_release(struct dc_gamma **dc_gamma); 1097 struct dc_gamma *dc_create_gamma(void); 1098 1099 void dc_transfer_func_retain(struct dc_transfer_func *dc_tf); 1100 void dc_transfer_func_release(struct dc_transfer_func *dc_tf); 1101 struct dc_transfer_func *dc_create_transfer_func(void); 1102 1103 struct dc_3dlut *dc_create_3dlut_func(void); 1104 void dc_3dlut_func_release(struct dc_3dlut *lut); 1105 void dc_3dlut_func_retain(struct dc_3dlut *lut); 1106 1107 void dc_post_update_surfaces_to_stream( 1108 struct dc *dc); 1109 1110 #include "dc_stream.h" 1111 1112 /* 1113 * Structure to store surface/stream associations for validation 1114 */ 1115 struct dc_validation_set { 1116 struct dc_stream_state *stream; 1117 struct dc_plane_state *plane_states[MAX_SURFACES]; 1118 uint8_t plane_count; 1119 }; 1120 1121 bool dc_validate_boot_timing(const struct dc *dc, 1122 const struct dc_sink *sink, 1123 struct dc_crtc_timing *crtc_timing); 1124 1125 enum dc_status dc_validate_plane(struct dc *dc, const struct dc_plane_state *plane_state); 1126 1127 void get_clock_requirements_for_state(struct dc_state *state, struct AsicStateEx *info); 1128 1129 bool dc_set_generic_gpio_for_stereo(bool enable, 1130 struct gpio_service *gpio_service); 1131 1132 /* 1133 * fast_validate: we return after determining if we can support the new state, 1134 * but before we populate the programming info 1135 */ 1136 enum dc_status dc_validate_global_state( 1137 struct dc *dc, 1138 struct dc_state *new_ctx, 1139 bool fast_validate); 1140 1141 1142 void dc_resource_state_construct( 1143 const struct dc *dc, 1144 struct dc_state *dst_ctx); 1145 1146 bool dc_acquire_release_mpc_3dlut( 1147 struct dc *dc, bool acquire, 1148 struct dc_stream_state *stream, 1149 struct dc_3dlut **lut, 1150 struct dc_transfer_func **shaper); 1151 1152 void dc_resource_state_copy_construct( 1153 const struct dc_state *src_ctx, 1154 struct dc_state *dst_ctx); 1155 1156 void dc_resource_state_copy_construct_current( 1157 const struct dc *dc, 1158 struct dc_state *dst_ctx); 1159 1160 void dc_resource_state_destruct(struct dc_state *context); 1161 1162 bool dc_resource_is_dsc_encoding_supported(const struct dc *dc); 1163 1164 /* 1165 * TODO update to make it about validation sets 1166 * Set up streams and links associated to drive sinks 1167 * The streams parameter is an absolute set of all active streams. 1168 * 1169 * After this call: 1170 * Phy, Encoder, Timing Generator are programmed and enabled. 1171 * New streams are enabled with blank stream; no memory read. 1172 */ 1173 bool dc_commit_state(struct dc *dc, struct dc_state *context); 1174 1175 struct dc_state *dc_create_state(struct dc *dc); 1176 struct dc_state *dc_copy_state(struct dc_state *src_ctx); 1177 void dc_retain_state(struct dc_state *context); 1178 void dc_release_state(struct dc_state *context); 1179 1180 /******************************************************************************* 1181 * Link Interfaces 1182 ******************************************************************************/ 1183 1184 struct dpcd_caps { 1185 union dpcd_rev dpcd_rev; 1186 union max_lane_count max_ln_count; 1187 union max_down_spread max_down_spread; 1188 union dprx_feature dprx_feature; 1189 1190 /* valid only for eDP v1.4 or higher*/ 1191 uint8_t edp_supported_link_rates_count; 1192 enum dc_link_rate edp_supported_link_rates[8]; 1193 1194 /* dongle type (DP converter, CV smart dongle) */ 1195 enum display_dongle_type dongle_type; 1196 bool is_dongle_type_one; 1197 /* branch device or sink device */ 1198 bool is_branch_dev; 1199 /* Dongle's downstream count. */ 1200 union sink_count sink_count; 1201 bool is_mst_capable; 1202 /* If dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER, 1203 indicates 'Frame Sequential-to-lllFrame Pack' conversion capability.*/ 1204 struct dc_dongle_caps dongle_caps; 1205 1206 uint32_t sink_dev_id; 1207 int8_t sink_dev_id_str[6]; 1208 int8_t sink_hw_revision; 1209 int8_t sink_fw_revision[2]; 1210 1211 uint32_t branch_dev_id; 1212 int8_t branch_dev_name[6]; 1213 int8_t branch_hw_revision; 1214 int8_t branch_fw_revision[2]; 1215 1216 bool allow_invalid_MSA_timing_param; 1217 bool panel_mode_edp; 1218 bool dpcd_display_control_capable; 1219 bool ext_receiver_cap_field_present; 1220 bool dynamic_backlight_capable_edp; 1221 union dpcd_fec_capability fec_cap; 1222 struct dpcd_dsc_capabilities dsc_caps; 1223 struct dc_lttpr_caps lttpr_caps; 1224 struct dpcd_usb4_dp_tunneling_info usb4_dp_tun_info; 1225 1226 union dp_128b_132b_supported_link_rates dp_128b_132b_supported_link_rates; 1227 union dp_main_line_channel_coding_cap channel_coding_cap; 1228 union dp_sink_video_fallback_formats fallback_formats; 1229 union dp_fec_capability1 fec_cap1; 1230 union dp_cable_id cable_id; 1231 uint8_t edp_rev; 1232 union edp_alpm_caps alpm_caps; 1233 struct edp_psr_info psr_info; 1234 }; 1235 1236 union dpcd_sink_ext_caps { 1237 struct { 1238 /* 0 - Sink supports backlight adjust via PWM during SDR/HDR mode 1239 * 1 - Sink supports backlight adjust via AUX during SDR/HDR mode. 1240 */ 1241 uint8_t sdr_aux_backlight_control : 1; 1242 uint8_t hdr_aux_backlight_control : 1; 1243 uint8_t reserved_1 : 2; 1244 uint8_t oled : 1; 1245 uint8_t reserved : 3; 1246 } bits; 1247 uint8_t raw; 1248 }; 1249 1250 #if defined(CONFIG_DRM_AMD_DC_HDCP) 1251 union hdcp_rx_caps { 1252 struct { 1253 uint8_t version; 1254 uint8_t reserved; 1255 struct { 1256 uint8_t repeater : 1; 1257 uint8_t hdcp_capable : 1; 1258 uint8_t reserved : 6; 1259 } byte0; 1260 } fields; 1261 uint8_t raw[3]; 1262 }; 1263 1264 union hdcp_bcaps { 1265 struct { 1266 uint8_t HDCP_CAPABLE:1; 1267 uint8_t REPEATER:1; 1268 uint8_t RESERVED:6; 1269 } bits; 1270 uint8_t raw; 1271 }; 1272 1273 struct hdcp_caps { 1274 union hdcp_rx_caps rx_caps; 1275 union hdcp_bcaps bcaps; 1276 }; 1277 #endif 1278 1279 #include "dc_link.h" 1280 1281 uint32_t dc_get_opp_for_plane(struct dc *dc, struct dc_plane_state *plane); 1282 1283 /******************************************************************************* 1284 * Sink Interfaces - A sink corresponds to a display output device 1285 ******************************************************************************/ 1286 1287 struct dc_container_id { 1288 // 128bit GUID in binary form 1289 unsigned char guid[16]; 1290 // 8 byte port ID -> ELD.PortID 1291 unsigned int portId[2]; 1292 // 128bit GUID in binary formufacturer name -> ELD.ManufacturerName 1293 unsigned short manufacturerName; 1294 // 2 byte product code -> ELD.ProductCode 1295 unsigned short productCode; 1296 }; 1297 1298 1299 struct dc_sink_dsc_caps { 1300 // 'true' if these are virtual DPCD's DSC caps (immediately upstream of sink in MST topology), 1301 // 'false' if they are sink's DSC caps 1302 bool is_virtual_dpcd_dsc; 1303 #if defined(CONFIG_DRM_AMD_DC_DCN) 1304 // 'true' if MST topology supports DSC passthrough for sink 1305 // 'false' if MST topology does not support DSC passthrough 1306 bool is_dsc_passthrough_supported; 1307 #endif 1308 struct dsc_dec_dpcd_caps dsc_dec_caps; 1309 }; 1310 1311 struct dc_sink_fec_caps { 1312 bool is_rx_fec_supported; 1313 bool is_topology_fec_supported; 1314 }; 1315 1316 /* 1317 * The sink structure contains EDID and other display device properties 1318 */ 1319 struct dc_sink { 1320 enum signal_type sink_signal; 1321 struct dc_edid dc_edid; /* raw edid */ 1322 struct dc_edid_caps edid_caps; /* parse display caps */ 1323 struct dc_container_id *dc_container_id; 1324 uint32_t dongle_max_pix_clk; 1325 void *priv; 1326 struct stereo_3d_features features_3d[TIMING_3D_FORMAT_MAX]; 1327 bool converter_disable_audio; 1328 1329 struct dc_sink_dsc_caps dsc_caps; 1330 struct dc_sink_fec_caps fec_caps; 1331 1332 bool is_vsc_sdp_colorimetry_supported; 1333 1334 /* private to DC core */ 1335 struct dc_link *link; 1336 struct dc_context *ctx; 1337 1338 uint32_t sink_id; 1339 1340 /* private to dc_sink.c */ 1341 // refcount must be the last member in dc_sink, since we want the 1342 // sink structure to be logically cloneable up to (but not including) 1343 // refcount 1344 struct kref refcount; 1345 }; 1346 1347 void dc_sink_retain(struct dc_sink *sink); 1348 void dc_sink_release(struct dc_sink *sink); 1349 1350 struct dc_sink_init_data { 1351 enum signal_type sink_signal; 1352 struct dc_link *link; 1353 uint32_t dongle_max_pix_clk; 1354 bool converter_disable_audio; 1355 }; 1356 1357 bool dc_extended_blank_supported(struct dc *dc); 1358 1359 struct dc_sink *dc_sink_create(const struct dc_sink_init_data *init_params); 1360 1361 /* Newer interfaces */ 1362 struct dc_cursor { 1363 struct dc_plane_address address; 1364 struct dc_cursor_attributes attributes; 1365 }; 1366 1367 1368 /******************************************************************************* 1369 * Interrupt interfaces 1370 ******************************************************************************/ 1371 enum dc_irq_source dc_interrupt_to_irq_source( 1372 struct dc *dc, 1373 uint32_t src_id, 1374 uint32_t ext_id); 1375 bool dc_interrupt_set(struct dc *dc, enum dc_irq_source src, bool enable); 1376 void dc_interrupt_ack(struct dc *dc, enum dc_irq_source src); 1377 enum dc_irq_source dc_get_hpd_irq_source_at_index( 1378 struct dc *dc, uint32_t link_index); 1379 1380 void dc_notify_vsync_int_state(struct dc *dc, struct dc_stream_state *stream, bool enable); 1381 1382 /******************************************************************************* 1383 * Power Interfaces 1384 ******************************************************************************/ 1385 1386 void dc_set_power_state( 1387 struct dc *dc, 1388 enum dc_acpi_cm_power_state power_state); 1389 void dc_resume(struct dc *dc); 1390 1391 void dc_power_down_on_boot(struct dc *dc); 1392 1393 #if defined(CONFIG_DRM_AMD_DC_HDCP) 1394 /* 1395 * HDCP Interfaces 1396 */ 1397 enum hdcp_message_status dc_process_hdcp_msg( 1398 enum signal_type signal, 1399 struct dc_link *link, 1400 struct hdcp_protection_message *message_info); 1401 #endif 1402 bool dc_is_dmcu_initialized(struct dc *dc); 1403 1404 enum dc_status dc_set_clock(struct dc *dc, enum dc_clock_type clock_type, uint32_t clk_khz, uint32_t stepping); 1405 void dc_get_clock(struct dc *dc, enum dc_clock_type clock_type, struct dc_clock_config *clock_cfg); 1406 1407 bool dc_is_plane_eligible_for_idle_optimizations(struct dc *dc, struct dc_plane_state *plane, 1408 struct dc_cursor_attributes *cursor_attr); 1409 1410 void dc_allow_idle_optimizations(struct dc *dc, bool allow); 1411 1412 /* 1413 * blank all streams, and set min and max memory clock to 1414 * lowest and highest DPM level, respectively 1415 */ 1416 void dc_unlock_memory_clock_frequency(struct dc *dc); 1417 1418 /* 1419 * set min memory clock to the min required for current mode, 1420 * max to maxDPM, and unblank streams 1421 */ 1422 void dc_lock_memory_clock_frequency(struct dc *dc); 1423 1424 /* set soft max for memclk, to be used for AC/DC switching clock limitations */ 1425 void dc_enable_dcmode_clk_limit(struct dc *dc, bool enable); 1426 1427 /* cleanup on driver unload */ 1428 void dc_hardware_release(struct dc *dc); 1429 1430 bool dc_set_psr_allow_active(struct dc *dc, bool enable); 1431 void dc_z10_restore(const struct dc *dc); 1432 void dc_z10_save_init(struct dc *dc); 1433 1434 bool dc_is_dmub_outbox_supported(struct dc *dc); 1435 bool dc_enable_dmub_notifications(struct dc *dc); 1436 1437 void dc_enable_dmub_outbox(struct dc *dc); 1438 1439 bool dc_process_dmub_aux_transfer_async(struct dc *dc, 1440 uint32_t link_index, 1441 struct aux_payload *payload); 1442 1443 /* Get dc link index from dpia port index */ 1444 uint8_t get_link_index_from_dpia_port_index(const struct dc *dc, 1445 uint8_t dpia_port_index); 1446 1447 bool dc_process_dmub_set_config_async(struct dc *dc, 1448 uint32_t link_index, 1449 struct set_config_cmd_payload *payload, 1450 struct dmub_notification *notify); 1451 1452 enum dc_status dc_process_dmub_set_mst_slots(const struct dc *dc, 1453 uint32_t link_index, 1454 uint8_t mst_alloc_slots, 1455 uint8_t *mst_slots_in_use); 1456 1457 /******************************************************************************* 1458 * DSC Interfaces 1459 ******************************************************************************/ 1460 #include "dc_dsc.h" 1461 1462 /******************************************************************************* 1463 * Disable acc mode Interfaces 1464 ******************************************************************************/ 1465 void dc_disable_accelerated_mode(struct dc *dc); 1466 1467 #endif /* DC_INTERFACE_H_ */ 1468