xref: /linux-6.15/drivers/gpu/drm/amd/display/dc/dc.h (revision 080950cb)
1 /*
2  * Copyright 2012-2023 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 "dc_state.h"
31 #include "dc_plane.h"
32 #include "grph_object_defs.h"
33 #include "logger_types.h"
34 #include "hdcp_msg_types.h"
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 "hwss/hw_sequencer.h"
41 #include "inc/compressor.h"
42 #include "inc/hw/dmcu.h"
43 #include "dml/display_mode_lib.h"
44 
45 #include "dml2/dml2_wrapper.h"
46 
47 #include "dmub/inc/dmub_cmd.h"
48 
49 #include "spl/dc_spl_types.h"
50 
51 struct abm_save_restore;
52 
53 /* forward declaration */
54 struct aux_payload;
55 struct set_config_cmd_payload;
56 struct dmub_notification;
57 
58 #define DC_VER "3.2.314"
59 
60 #define MAX_SURFACES 4
61 #define MAX_PLANES 6
62 #define MAX_STREAMS 6
63 #define MIN_VIEWPORT_SIZE 12
64 #define MAX_NUM_EDP 2
65 #define MAX_HOST_ROUTERS_NUM 2
66 
67 /* Display Core Interfaces */
68 struct dc_versions {
69 	const char *dc_ver;
70 	struct dmcu_version dmcu_version;
71 };
72 
73 enum dp_protocol_version {
74 	DP_VERSION_1_4 = 0,
75 	DP_VERSION_2_1,
76 	DP_VERSION_UNKNOWN,
77 };
78 
79 enum dc_plane_type {
80 	DC_PLANE_TYPE_INVALID,
81 	DC_PLANE_TYPE_DCE_RGB,
82 	DC_PLANE_TYPE_DCE_UNDERLAY,
83 	DC_PLANE_TYPE_DCN_UNIVERSAL,
84 };
85 
86 // Sizes defined as multiples of 64KB
87 enum det_size {
88 	DET_SIZE_DEFAULT = 0,
89 	DET_SIZE_192KB = 3,
90 	DET_SIZE_256KB = 4,
91 	DET_SIZE_320KB = 5,
92 	DET_SIZE_384KB = 6
93 };
94 
95 
96 struct dc_plane_cap {
97 	enum dc_plane_type type;
98 	uint32_t per_pixel_alpha : 1;
99 	struct {
100 		uint32_t argb8888 : 1;
101 		uint32_t nv12 : 1;
102 		uint32_t fp16 : 1;
103 		uint32_t p010 : 1;
104 		uint32_t ayuv : 1;
105 	} pixel_format_support;
106 	// max upscaling factor x1000
107 	// upscaling factors are always >= 1
108 	// for example, 1080p -> 8K is 4.0, or 4000 raw value
109 	struct {
110 		uint32_t argb8888;
111 		uint32_t nv12;
112 		uint32_t fp16;
113 	} max_upscale_factor;
114 	// max downscale factor x1000
115 	// downscale factors are always <= 1
116 	// for example, 8K -> 1080p is 0.25, or 250 raw value
117 	struct {
118 		uint32_t argb8888;
119 		uint32_t nv12;
120 		uint32_t fp16;
121 	} max_downscale_factor;
122 	// minimal width/height
123 	uint32_t min_width;
124 	uint32_t min_height;
125 };
126 
127 /**
128  * DOC: color-management-caps
129  *
130  * **Color management caps (DPP and MPC)**
131  *
132  * Modules/color calculates various color operations which are translated to
133  * abstracted HW. DCE 5-12 had almost no important changes, but starting with
134  * DCN1, every new generation comes with fairly major differences in color
135  * pipeline. Therefore, we abstract color pipe capabilities so modules/DM can
136  * decide mapping to HW block based on logical capabilities.
137  */
138 
139 /**
140  * struct rom_curve_caps - predefined transfer function caps for degamma and regamma
141  * @srgb: RGB color space transfer func
142  * @bt2020: BT.2020 transfer func
143  * @gamma2_2: standard gamma
144  * @pq: perceptual quantizer transfer function
145  * @hlg: hybrid log–gamma transfer function
146  */
147 struct rom_curve_caps {
148 	uint16_t srgb : 1;
149 	uint16_t bt2020 : 1;
150 	uint16_t gamma2_2 : 1;
151 	uint16_t pq : 1;
152 	uint16_t hlg : 1;
153 };
154 
155 /**
156  * struct dpp_color_caps - color pipeline capabilities for display pipe and
157  * plane blocks
158  *
159  * @dcn_arch: all DCE generations treated the same
160  * @input_lut_shared: shared with DGAM. Input LUT is different than most LUTs,
161  * just plain 256-entry lookup
162  * @icsc: input color space conversion
163  * @dgam_ram: programmable degamma LUT
164  * @post_csc: post color space conversion, before gamut remap
165  * @gamma_corr: degamma correction
166  * @hw_3d_lut: 3D LUT support. It implies a shaper LUT before. It may be shared
167  * with MPC by setting mpc:shared_3d_lut flag
168  * @ogam_ram: programmable out/blend gamma LUT
169  * @ocsc: output color space conversion
170  * @dgam_rom_for_yuv: pre-defined degamma LUT for YUV planes
171  * @dgam_rom_caps: pre-definied curve caps for degamma 1D LUT
172  * @ogam_rom_caps: pre-definied curve caps for regamma 1D LUT
173  *
174  * Note: hdr_mult and gamut remap (CTM) are always available in DPP (in that order)
175  */
176 struct dpp_color_caps {
177 	uint16_t dcn_arch : 1;
178 	uint16_t input_lut_shared : 1;
179 	uint16_t icsc : 1;
180 	uint16_t dgam_ram : 1;
181 	uint16_t post_csc : 1;
182 	uint16_t gamma_corr : 1;
183 	uint16_t hw_3d_lut : 1;
184 	uint16_t ogam_ram : 1;
185 	uint16_t ocsc : 1;
186 	uint16_t dgam_rom_for_yuv : 1;
187 	struct rom_curve_caps dgam_rom_caps;
188 	struct rom_curve_caps ogam_rom_caps;
189 };
190 
191 /**
192  * struct mpc_color_caps - color pipeline capabilities for multiple pipe and
193  * plane combined blocks
194  *
195  * @gamut_remap: color transformation matrix
196  * @ogam_ram: programmable out gamma LUT
197  * @ocsc: output color space conversion matrix
198  * @num_3dluts: MPC 3D LUT; always assumes a preceding shaper LUT
199  * @shared_3d_lut: shared 3D LUT flag. Can be either DPP or MPC, but single
200  * instance
201  * @ogam_rom_caps: pre-definied curve caps for regamma 1D LUT
202  */
203 struct mpc_color_caps {
204 	uint16_t gamut_remap : 1;
205 	uint16_t ogam_ram : 1;
206 	uint16_t ocsc : 1;
207 	uint16_t num_3dluts : 3;
208 	uint16_t shared_3d_lut:1;
209 	struct rom_curve_caps ogam_rom_caps;
210 };
211 
212 /**
213  * struct dc_color_caps - color pipes capabilities for DPP and MPC hw blocks
214  * @dpp: color pipes caps for DPP
215  * @mpc: color pipes caps for MPC
216  */
217 struct dc_color_caps {
218 	struct dpp_color_caps dpp;
219 	struct mpc_color_caps mpc;
220 };
221 
222 struct dc_dmub_caps {
223 	bool psr;
224 	bool mclk_sw;
225 	bool subvp_psr;
226 	bool gecc_enable;
227 	uint8_t fams_ver;
228 	bool aux_backlight_support;
229 };
230 
231 struct dc_scl_caps {
232 	bool sharpener_support;
233 };
234 
235 struct dc_caps {
236 	uint32_t max_streams;
237 	uint32_t max_links;
238 	uint32_t max_audios;
239 	uint32_t max_slave_planes;
240 	uint32_t max_slave_yuv_planes;
241 	uint32_t max_slave_rgb_planes;
242 	uint32_t max_planes;
243 	uint32_t max_downscale_ratio;
244 	uint32_t i2c_speed_in_khz;
245 	uint32_t i2c_speed_in_khz_hdcp;
246 	uint32_t dmdata_alloc_size;
247 	unsigned int max_cursor_size;
248 	unsigned int max_video_width;
249 	/*
250 	 * max video plane width that can be safely assumed to be always
251 	 * supported by single DPP pipe.
252 	 */
253 	unsigned int max_optimizable_video_width;
254 	unsigned int min_horizontal_blanking_period;
255 	int linear_pitch_alignment;
256 	bool dcc_const_color;
257 	bool dynamic_audio;
258 	bool is_apu;
259 	bool dual_link_dvi;
260 	bool post_blend_color_processing;
261 	bool force_dp_tps4_for_cp2520;
262 	bool disable_dp_clk_share;
263 	bool psp_setup_panel_mode;
264 	bool extended_aux_timeout_support;
265 	bool dmcub_support;
266 	bool zstate_support;
267 	bool ips_support;
268 	uint32_t num_of_internal_disp;
269 	enum dp_protocol_version max_dp_protocol_version;
270 	unsigned int mall_size_per_mem_channel;
271 	unsigned int mall_size_total;
272 	unsigned int cursor_cache_size;
273 	struct dc_plane_cap planes[MAX_PLANES];
274 	struct dc_color_caps color;
275 	struct dc_dmub_caps dmub_caps;
276 	bool dp_hpo;
277 	bool dp_hdmi21_pcon_support;
278 	bool edp_dsc_support;
279 	bool vbios_lttpr_aware;
280 	bool vbios_lttpr_enable;
281 	uint32_t max_otg_num;
282 	uint32_t max_cab_allocation_bytes;
283 	uint32_t cache_line_size;
284 	uint32_t cache_num_ways;
285 	uint16_t subvp_fw_processing_delay_us;
286 	uint8_t subvp_drr_max_vblank_margin_us;
287 	uint16_t subvp_prefetch_end_to_mall_start_us;
288 	uint8_t subvp_swath_height_margin_lines; // subvp start line must be aligned to 2 x swath height
289 	uint16_t subvp_pstate_allow_width_us;
290 	uint16_t subvp_vertical_int_margin_us;
291 	bool seamless_odm;
292 	uint32_t max_v_total;
293 	bool vtotal_limited_by_fp2;
294 	uint32_t max_disp_clock_khz_at_vmin;
295 	uint8_t subvp_drr_vblank_start_margin_us;
296 	bool cursor_not_scaled;
297 	bool dcmode_power_limits_present;
298 	bool sequential_ono;
299 	/* Conservative limit for DCC cases which require ODM4:1 to support*/
300 	uint32_t dcc_plane_width_limit;
301 	struct dc_scl_caps scl_caps;
302 };
303 
304 struct dc_bug_wa {
305 	bool no_connect_phy_config;
306 	bool dedcn20_305_wa;
307 	bool skip_clock_update;
308 	bool lt_early_cr_pattern;
309 	struct {
310 		uint8_t uclk : 1;
311 		uint8_t fclk : 1;
312 		uint8_t dcfclk : 1;
313 		uint8_t dcfclk_ds: 1;
314 	} clock_update_disable_mask;
315 	bool skip_psr_ips_crtc_disable;
316 };
317 struct dc_dcc_surface_param {
318 	struct dc_size surface_size;
319 	enum surface_pixel_format format;
320 	unsigned int plane0_pitch;
321 	struct dc_size plane1_size;
322 	unsigned int plane1_pitch;
323 	union {
324 		enum swizzle_mode_values swizzle_mode;
325 		enum swizzle_mode_addr3_values swizzle_mode_addr3;
326 	};
327 	enum dc_scan_direction scan;
328 };
329 
330 struct dc_dcc_setting {
331 	unsigned int max_compressed_blk_size;
332 	unsigned int max_uncompressed_blk_size;
333 	bool independent_64b_blks;
334 	//These bitfields to be used starting with DCN 3.0
335 	struct {
336 		uint32_t dcc_256_64_64 : 1;//available in ASICs before DCN 3.0 (the worst compression case)
337 		uint32_t dcc_128_128_uncontrained : 1;  //available in ASICs before DCN 3.0
338 		uint32_t dcc_256_128_128 : 1;		//available starting with DCN 3.0
339 		uint32_t dcc_256_256_unconstrained : 1;  //available in ASICs before DCN 3.0 (the best compression case)
340 		uint32_t dcc_256_256 : 1;  //available in ASICs starting with DCN 4.0x (the best compression case)
341 		uint32_t dcc_256_128 : 1;  //available in ASICs starting with DCN 4.0x
342 		uint32_t dcc_256_64 : 1;   //available in ASICs starting with DCN 4.0x (the worst compression case)
343 	} dcc_controls;
344 };
345 
346 struct dc_surface_dcc_cap {
347 	union {
348 		struct {
349 			struct dc_dcc_setting rgb;
350 		} grph;
351 
352 		struct {
353 			struct dc_dcc_setting luma;
354 			struct dc_dcc_setting chroma;
355 		} video;
356 	};
357 
358 	bool capable;
359 	bool const_color_support;
360 };
361 
362 struct dc_static_screen_params {
363 	struct {
364 		bool force_trigger;
365 		bool cursor_update;
366 		bool surface_update;
367 		bool overlay_update;
368 	} triggers;
369 	unsigned int num_frames;
370 };
371 
372 
373 /* Surface update type is used by dc_update_surfaces_and_stream
374  * The update type is determined at the very beginning of the function based
375  * on parameters passed in and decides how much programming (or updating) is
376  * going to be done during the call.
377  *
378  * UPDATE_TYPE_FAST is used for really fast updates that do not require much
379  * logical calculations or hardware register programming. This update MUST be
380  * ISR safe on windows. Currently fast update will only be used to flip surface
381  * address.
382  *
383  * UPDATE_TYPE_MED is used for slower updates which require significant hw
384  * re-programming however do not affect bandwidth consumption or clock
385  * requirements. At present, this is the level at which front end updates
386  * that do not require us to run bw_calcs happen. These are in/out transfer func
387  * updates, viewport offset changes, recout size changes and pixel depth changes.
388  * This update can be done at ISR, but we want to minimize how often this happens.
389  *
390  * UPDATE_TYPE_FULL is slow. Really slow. This requires us to recalculate our
391  * bandwidth and clocks, possibly rearrange some pipes and reprogram anything front
392  * end related. Any time viewport dimensions, recout dimensions, scaling ratios or
393  * gamma need to be adjusted or pipe needs to be turned on (or disconnected) we do
394  * a full update. This cannot be done at ISR level and should be a rare event.
395  * Unless someone is stress testing mpo enter/exit, playing with colour or adjusting
396  * underscan we don't expect to see this call at all.
397  */
398 
399 enum surface_update_type {
400 	UPDATE_TYPE_FAST, /* super fast, safe to execute in isr */
401 	UPDATE_TYPE_MED,  /* ISR safe, most of programming needed, no bw/clk change*/
402 	UPDATE_TYPE_FULL, /* may need to shuffle resources */
403 };
404 
405 /* Forward declaration*/
406 struct dc;
407 struct dc_plane_state;
408 struct dc_state;
409 
410 struct dc_cap_funcs {
411 	bool (*get_dcc_compression_cap)(const struct dc *dc,
412 			const struct dc_dcc_surface_param *input,
413 			struct dc_surface_dcc_cap *output);
414 	bool (*get_subvp_en)(struct dc *dc, struct dc_state *context);
415 };
416 
417 struct link_training_settings;
418 
419 union allow_lttpr_non_transparent_mode {
420 	struct {
421 		bool DP1_4A : 1;
422 		bool DP2_0 : 1;
423 	} bits;
424 	unsigned char raw;
425 };
426 
427 /* Structure to hold configuration flags set by dm at dc creation. */
428 struct dc_config {
429 	bool gpu_vm_support;
430 	bool disable_disp_pll_sharing;
431 	bool fbc_support;
432 	bool disable_fractional_pwm;
433 	bool allow_seamless_boot_optimization;
434 	bool seamless_boot_edp_requested;
435 	bool edp_not_connected;
436 	bool edp_no_power_sequencing;
437 	bool force_enum_edp;
438 	bool forced_clocks;
439 	union allow_lttpr_non_transparent_mode allow_lttpr_non_transparent_mode;
440 	bool multi_mon_pp_mclk_switch;
441 	bool disable_dmcu;
442 	bool enable_4to1MPC;
443 	bool enable_windowed_mpo_odm;
444 	bool forceHBR2CP2520; // Used for switching between test patterns TPS4 and CP2520
445 	uint32_t allow_edp_hotplug_detection;
446 	bool clamp_min_dcfclk;
447 	uint64_t vblank_alignment_dto_params;
448 	uint8_t  vblank_alignment_max_frame_time_diff;
449 	bool is_asymmetric_memory;
450 	bool is_single_rank_dimm;
451 	bool is_vmin_only_asic;
452 	bool use_spl;
453 	bool prefer_easf;
454 	bool use_pipe_ctx_sync_logic;
455 	bool ignore_dpref_ss;
456 	bool enable_mipi_converter_optimization;
457 	bool use_default_clock_table;
458 	bool force_bios_enable_lttpr;
459 	uint8_t force_bios_fixed_vs;
460 	int sdpif_request_limit_words_per_umc;
461 	bool dc_mode_clk_limit_support;
462 	bool EnableMinDispClkODM;
463 	bool enable_auto_dpm_test_logs;
464 	unsigned int disable_ips;
465 	unsigned int disable_ips_in_vpb;
466 	bool disable_ips_in_dpms_off;
467 	bool usb4_bw_alloc_support;
468 	bool allow_0_dtb_clk;
469 	bool use_assr_psp_message;
470 	bool support_edp0_on_dp1;
471 	unsigned int enable_fpo_flicker_detection;
472 	bool disable_hbr_audio_dp2;
473 	bool consolidated_dpia_dp_lt;
474 	bool set_pipe_unlock_order;
475 	bool enable_dpia_pre_training;
476 };
477 
478 enum visual_confirm {
479 	VISUAL_CONFIRM_DISABLE = 0,
480 	VISUAL_CONFIRM_SURFACE = 1,
481 	VISUAL_CONFIRM_HDR = 2,
482 	VISUAL_CONFIRM_MPCTREE = 4,
483 	VISUAL_CONFIRM_PSR = 5,
484 	VISUAL_CONFIRM_SWAPCHAIN = 6,
485 	VISUAL_CONFIRM_FAMS = 7,
486 	VISUAL_CONFIRM_SWIZZLE = 9,
487 	VISUAL_CONFIRM_REPLAY = 12,
488 	VISUAL_CONFIRM_SUBVP = 14,
489 	VISUAL_CONFIRM_MCLK_SWITCH = 16,
490 	VISUAL_CONFIRM_FAMS2 = 19,
491 	VISUAL_CONFIRM_HW_CURSOR = 20,
492 };
493 
494 enum dc_psr_power_opts {
495 	psr_power_opt_invalid = 0x0,
496 	psr_power_opt_smu_opt_static_screen = 0x1,
497 	psr_power_opt_z10_static_screen = 0x10,
498 	psr_power_opt_ds_disable_allow = 0x100,
499 };
500 
501 enum dml_hostvm_override_opts {
502 	DML_HOSTVM_NO_OVERRIDE = 0x0,
503 	DML_HOSTVM_OVERRIDE_FALSE = 0x1,
504 	DML_HOSTVM_OVERRIDE_TRUE = 0x2,
505 };
506 
507 enum dc_replay_power_opts {
508 	replay_power_opt_invalid		= 0x0,
509 	replay_power_opt_smu_opt_static_screen	= 0x1,
510 	replay_power_opt_z10_static_screen	= 0x10,
511 };
512 
513 enum dcc_option {
514 	DCC_ENABLE = 0,
515 	DCC_DISABLE = 1,
516 	DCC_HALF_REQ_DISALBE = 2,
517 };
518 
519 enum in_game_fams_config {
520 	INGAME_FAMS_SINGLE_DISP_ENABLE, // enable in-game fams
521 	INGAME_FAMS_DISABLE, // disable in-game fams
522 	INGAME_FAMS_MULTI_DISP_ENABLE, //enable in-game fams for multi-display
523 	INGAME_FAMS_MULTI_DISP_CLAMPED_ONLY, //enable in-game fams for multi-display only for clamped RR strategies
524 };
525 
526 /**
527  * enum pipe_split_policy - Pipe split strategy supported by DCN
528  *
529  * This enum is used to define the pipe split policy supported by DCN. By
530  * default, DC favors MPC_SPLIT_DYNAMIC.
531  */
532 enum pipe_split_policy {
533 	/**
534 	 * @MPC_SPLIT_DYNAMIC: DC will automatically decide how to split the
535 	 * pipe in order to bring the best trade-off between performance and
536 	 * power consumption. This is the recommended option.
537 	 */
538 	MPC_SPLIT_DYNAMIC = 0,
539 
540 	/**
541 	 * @MPC_SPLIT_AVOID: Avoid pipe split, which means that DC will not
542 	 * try any sort of split optimization.
543 	 */
544 	MPC_SPLIT_AVOID = 1,
545 
546 	/**
547 	 * @MPC_SPLIT_AVOID_MULT_DISP: With this option, DC will only try to
548 	 * optimize the pipe utilization when using a single display; if the
549 	 * user connects to a second display, DC will avoid pipe split.
550 	 */
551 	MPC_SPLIT_AVOID_MULT_DISP = 2,
552 };
553 
554 enum wm_report_mode {
555 	WM_REPORT_DEFAULT = 0,
556 	WM_REPORT_OVERRIDE = 1,
557 };
558 enum dtm_pstate{
559 	dtm_level_p0 = 0,/*highest voltage*/
560 	dtm_level_p1,
561 	dtm_level_p2,
562 	dtm_level_p3,
563 	dtm_level_p4,/*when active_display_count = 0*/
564 };
565 
566 enum dcn_pwr_state {
567 	DCN_PWR_STATE_UNKNOWN = -1,
568 	DCN_PWR_STATE_MISSION_MODE = 0,
569 	DCN_PWR_STATE_LOW_POWER = 3,
570 };
571 
572 enum dcn_zstate_support_state {
573 	DCN_ZSTATE_SUPPORT_UNKNOWN,
574 	DCN_ZSTATE_SUPPORT_ALLOW,
575 	DCN_ZSTATE_SUPPORT_ALLOW_Z8_ONLY,
576 	DCN_ZSTATE_SUPPORT_ALLOW_Z8_Z10_ONLY,
577 	DCN_ZSTATE_SUPPORT_ALLOW_Z10_ONLY,
578 	DCN_ZSTATE_SUPPORT_DISALLOW,
579 };
580 
581 /*
582  * struct dc_clocks - DC pipe clocks
583  *
584  * For any clocks that may differ per pipe only the max is stored in this
585  * structure
586  */
587 struct dc_clocks {
588 	int dispclk_khz;
589 	int actual_dispclk_khz;
590 	int dppclk_khz;
591 	int actual_dppclk_khz;
592 	int disp_dpp_voltage_level_khz;
593 	int dcfclk_khz;
594 	int socclk_khz;
595 	int dcfclk_deep_sleep_khz;
596 	int fclk_khz;
597 	int phyclk_khz;
598 	int dramclk_khz;
599 	bool p_state_change_support;
600 	enum dcn_zstate_support_state zstate_support;
601 	bool dtbclk_en;
602 	int ref_dtbclk_khz;
603 	bool fclk_p_state_change_support;
604 	enum dcn_pwr_state pwr_state;
605 	/*
606 	 * Elements below are not compared for the purposes of
607 	 * optimization required
608 	 */
609 	bool prev_p_state_change_support;
610 	bool fclk_prev_p_state_change_support;
611 	int num_ways;
612 	int host_router_bw_kbps[MAX_HOST_ROUTERS_NUM];
613 
614 	/*
615 	 * @fw_based_mclk_switching
616 	 *
617 	 * DC has a mechanism that leverage the variable refresh rate to switch
618 	 * memory clock in cases that we have a large latency to achieve the
619 	 * memory clock change and a short vblank window. DC has some
620 	 * requirements to enable this feature, and this field describes if the
621 	 * system support or not such a feature.
622 	 */
623 	bool fw_based_mclk_switching;
624 	bool fw_based_mclk_switching_shut_down;
625 	int prev_num_ways;
626 	enum dtm_pstate dtm_level;
627 	int max_supported_dppclk_khz;
628 	int max_supported_dispclk_khz;
629 	int bw_dppclk_khz; /*a copy of dppclk_khz*/
630 	int bw_dispclk_khz;
631 	int idle_dramclk_khz;
632 	int idle_fclk_khz;
633 	int subvp_prefetch_dramclk_khz;
634 	int subvp_prefetch_fclk_khz;
635 };
636 
637 struct dc_bw_validation_profile {
638 	bool enable;
639 
640 	unsigned long long total_ticks;
641 	unsigned long long voltage_level_ticks;
642 	unsigned long long watermark_ticks;
643 	unsigned long long rq_dlg_ticks;
644 
645 	unsigned long long total_count;
646 	unsigned long long skip_fast_count;
647 	unsigned long long skip_pass_count;
648 	unsigned long long skip_fail_count;
649 };
650 
651 #define BW_VAL_TRACE_SETUP() \
652 		unsigned long long end_tick = 0; \
653 		unsigned long long voltage_level_tick = 0; \
654 		unsigned long long watermark_tick = 0; \
655 		unsigned long long start_tick = dc->debug.bw_val_profile.enable ? \
656 				dm_get_timestamp(dc->ctx) : 0
657 
658 #define BW_VAL_TRACE_COUNT() \
659 		if (dc->debug.bw_val_profile.enable) \
660 			dc->debug.bw_val_profile.total_count++
661 
662 #define BW_VAL_TRACE_SKIP(status) \
663 		if (dc->debug.bw_val_profile.enable) { \
664 			if (!voltage_level_tick) \
665 				voltage_level_tick = dm_get_timestamp(dc->ctx); \
666 			dc->debug.bw_val_profile.skip_ ## status ## _count++; \
667 		}
668 
669 #define BW_VAL_TRACE_END_VOLTAGE_LEVEL() \
670 		if (dc->debug.bw_val_profile.enable) \
671 			voltage_level_tick = dm_get_timestamp(dc->ctx)
672 
673 #define BW_VAL_TRACE_END_WATERMARKS() \
674 		if (dc->debug.bw_val_profile.enable) \
675 			watermark_tick = dm_get_timestamp(dc->ctx)
676 
677 #define BW_VAL_TRACE_FINISH() \
678 		if (dc->debug.bw_val_profile.enable) { \
679 			end_tick = dm_get_timestamp(dc->ctx); \
680 			dc->debug.bw_val_profile.total_ticks += end_tick - start_tick; \
681 			dc->debug.bw_val_profile.voltage_level_ticks += voltage_level_tick - start_tick; \
682 			if (watermark_tick) { \
683 				dc->debug.bw_val_profile.watermark_ticks += watermark_tick - voltage_level_tick; \
684 				dc->debug.bw_val_profile.rq_dlg_ticks += end_tick - watermark_tick; \
685 			} \
686 		}
687 
688 union mem_low_power_enable_options {
689 	struct {
690 		bool vga: 1;
691 		bool i2c: 1;
692 		bool dmcu: 1;
693 		bool dscl: 1;
694 		bool cm: 1;
695 		bool mpc: 1;
696 		bool optc: 1;
697 		bool vpg: 1;
698 		bool afmt: 1;
699 	} bits;
700 	uint32_t u32All;
701 };
702 
703 union root_clock_optimization_options {
704 	struct {
705 		bool dpp: 1;
706 		bool dsc: 1;
707 		bool hdmistream: 1;
708 		bool hdmichar: 1;
709 		bool dpstream: 1;
710 		bool symclk32_se: 1;
711 		bool symclk32_le: 1;
712 		bool symclk_fe: 1;
713 		bool physymclk: 1;
714 		bool dpiasymclk: 1;
715 		uint32_t reserved: 22;
716 	} bits;
717 	uint32_t u32All;
718 };
719 
720 union fine_grain_clock_gating_enable_options {
721 	struct {
722 		bool dccg_global_fgcg_rep : 1; /* Global fine grain clock gating of repeaters */
723 		bool dchub : 1;	   /* Display controller hub */
724 		bool dchubbub : 1;
725 		bool dpp : 1;	   /* Display pipes and planes */
726 		bool opp : 1;	   /* Output pixel processing */
727 		bool optc : 1;	   /* Output pipe timing combiner */
728 		bool dio : 1;	   /* Display output */
729 		bool dwb : 1;	   /* Display writeback */
730 		bool mmhubbub : 1; /* Multimedia hub */
731 		bool dmu : 1;	   /* Display core management unit */
732 		bool az : 1;	   /* Azalia */
733 		bool dchvm : 1;
734 		bool dsc : 1;	   /* Display stream compression */
735 
736 		uint32_t reserved : 19;
737 	} bits;
738 	uint32_t u32All;
739 };
740 
741 enum pg_hw_pipe_resources {
742 	PG_HUBP = 0,
743 	PG_DPP,
744 	PG_DSC,
745 	PG_MPCC,
746 	PG_OPP,
747 	PG_OPTC,
748 	PG_DPSTREAM,
749 	PG_HDMISTREAM,
750 	PG_PHYSYMCLK,
751 	PG_HW_PIPE_RESOURCES_NUM_ELEMENT
752 };
753 
754 enum pg_hw_resources {
755 	PG_DCCG = 0,
756 	PG_DCIO,
757 	PG_DIO,
758 	PG_DCHUBBUB,
759 	PG_DCHVM,
760 	PG_DWB,
761 	PG_HPO,
762 	PG_HW_RESOURCES_NUM_ELEMENT
763 };
764 
765 struct pg_block_update {
766 	bool pg_pipe_res_update[PG_HW_PIPE_RESOURCES_NUM_ELEMENT][MAX_PIPES];
767 	bool pg_res_update[PG_HW_RESOURCES_NUM_ELEMENT];
768 };
769 
770 union dpia_debug_options {
771 	struct {
772 		uint32_t disable_dpia:1; /* bit 0 */
773 		uint32_t force_non_lttpr:1; /* bit 1 */
774 		uint32_t extend_aux_rd_interval:1; /* bit 2 */
775 		uint32_t disable_mst_dsc_work_around:1; /* bit 3 */
776 		uint32_t enable_force_tbt3_work_around:1; /* bit 4 */
777 		uint32_t disable_usb4_pm_support:1; /* bit 5 */
778 		uint32_t enable_consolidated_dpia_dp_lt:1; /* bit 6 */
779 		uint32_t enable_dpia_pre_training:1; /* bit 7 */
780 		uint32_t reserved:24;
781 	} bits;
782 	uint32_t raw;
783 };
784 
785 /* AUX wake work around options
786  * 0: enable/disable work around
787  * 1: use default timeout LINK_AUX_WAKE_TIMEOUT_MS
788  * 15-2: reserved
789  * 31-16: timeout in ms
790  */
791 union aux_wake_wa_options {
792 	struct {
793 		uint32_t enable_wa : 1;
794 		uint32_t use_default_timeout : 1;
795 		uint32_t rsvd: 14;
796 		uint32_t timeout_ms : 16;
797 	} bits;
798 	uint32_t raw;
799 };
800 
801 struct dc_debug_data {
802 	uint32_t ltFailCount;
803 	uint32_t i2cErrorCount;
804 	uint32_t auxErrorCount;
805 };
806 
807 struct dc_phy_addr_space_config {
808 	struct {
809 		uint64_t start_addr;
810 		uint64_t end_addr;
811 		uint64_t fb_top;
812 		uint64_t fb_offset;
813 		uint64_t fb_base;
814 		uint64_t agp_top;
815 		uint64_t agp_bot;
816 		uint64_t agp_base;
817 	} system_aperture;
818 
819 	struct {
820 		uint64_t page_table_start_addr;
821 		uint64_t page_table_end_addr;
822 		uint64_t page_table_base_addr;
823 		bool base_addr_is_mc_addr;
824 	} gart_config;
825 
826 	bool valid;
827 	bool is_hvm_enabled;
828 	uint64_t page_table_default_page_addr;
829 };
830 
831 struct dc_virtual_addr_space_config {
832 	uint64_t	page_table_base_addr;
833 	uint64_t	page_table_start_addr;
834 	uint64_t	page_table_end_addr;
835 	uint32_t	page_table_block_size_in_bytes;
836 	uint8_t		page_table_depth; // 1 = 1 level, 2 = 2 level, etc.  0 = invalid
837 };
838 
839 struct dc_bounding_box_overrides {
840 	int sr_exit_time_ns;
841 	int sr_enter_plus_exit_time_ns;
842 	int sr_exit_z8_time_ns;
843 	int sr_enter_plus_exit_z8_time_ns;
844 	int urgent_latency_ns;
845 	int percent_of_ideal_drambw;
846 	int dram_clock_change_latency_ns;
847 	int dummy_clock_change_latency_ns;
848 	int fclk_clock_change_latency_ns;
849 	/* This forces a hard min on the DCFCLK we use
850 	 * for DML.  Unlike the debug option for forcing
851 	 * DCFCLK, this override affects watermark calculations
852 	 */
853 	int min_dcfclk_mhz;
854 };
855 
856 struct dc_state;
857 struct resource_pool;
858 struct dce_hwseq;
859 struct link_service;
860 
861 /*
862  * struct dc_debug_options - DC debug struct
863  *
864  * This struct provides a simple mechanism for developers to change some
865  * configurations, enable/disable features, and activate extra debug options.
866  * This can be very handy to narrow down whether some specific feature is
867  * causing an issue or not.
868  */
869 struct dc_debug_options {
870 	bool native422_support;
871 	bool disable_dsc;
872 	enum visual_confirm visual_confirm;
873 	int visual_confirm_rect_height;
874 
875 	bool sanity_checks;
876 	bool max_disp_clk;
877 	bool surface_trace;
878 	bool clock_trace;
879 	bool validation_trace;
880 	bool bandwidth_calcs_trace;
881 	int max_downscale_src_width;
882 
883 	/* stutter efficiency related */
884 	bool disable_stutter;
885 	bool use_max_lb;
886 	enum dcc_option disable_dcc;
887 
888 	/*
889 	 * @pipe_split_policy: Define which pipe split policy is used by the
890 	 * display core.
891 	 */
892 	enum pipe_split_policy pipe_split_policy;
893 	bool force_single_disp_pipe_split;
894 	bool voltage_align_fclk;
895 	bool disable_min_fclk;
896 
897 	bool disable_dfs_bypass;
898 	bool disable_dpp_power_gate;
899 	bool disable_hubp_power_gate;
900 	bool disable_dsc_power_gate;
901 	bool disable_optc_power_gate;
902 	bool disable_hpo_power_gate;
903 	int dsc_min_slice_height_override;
904 	int dsc_bpp_increment_div;
905 	bool disable_pplib_wm_range;
906 	enum wm_report_mode pplib_wm_report_mode;
907 	unsigned int min_disp_clk_khz;
908 	unsigned int min_dpp_clk_khz;
909 	unsigned int min_dram_clk_khz;
910 	int sr_exit_time_dpm0_ns;
911 	int sr_enter_plus_exit_time_dpm0_ns;
912 	int sr_exit_time_ns;
913 	int sr_enter_plus_exit_time_ns;
914 	int sr_exit_z8_time_ns;
915 	int sr_enter_plus_exit_z8_time_ns;
916 	int urgent_latency_ns;
917 	uint32_t underflow_assert_delay_us;
918 	int percent_of_ideal_drambw;
919 	int dram_clock_change_latency_ns;
920 	bool optimized_watermark;
921 	int always_scale;
922 	bool disable_pplib_clock_request;
923 	bool disable_clock_gate;
924 	bool disable_mem_low_power;
925 	bool pstate_enabled;
926 	bool disable_dmcu;
927 	bool force_abm_enable;
928 	bool disable_stereo_support;
929 	bool vsr_support;
930 	bool performance_trace;
931 	bool az_endpoint_mute_only;
932 	bool always_use_regamma;
933 	bool recovery_enabled;
934 	bool avoid_vbios_exec_table;
935 	bool scl_reset_length10;
936 	bool hdmi20_disable;
937 	bool skip_detection_link_training;
938 	uint32_t edid_read_retry_times;
939 	unsigned int force_odm_combine; //bit vector based on otg inst
940 	unsigned int seamless_boot_odm_combine;
941 	unsigned int force_odm_combine_4to1; //bit vector based on otg inst
942 	int minimum_z8_residency_time;
943 	int minimum_z10_residency_time;
944 	bool disable_z9_mpc;
945 	unsigned int force_fclk_khz;
946 	bool enable_tri_buf;
947 	bool ips_disallow_entry;
948 	bool dmub_offload_enabled;
949 	bool dmcub_emulation;
950 	bool disable_idle_power_optimizations;
951 	unsigned int mall_size_override;
952 	unsigned int mall_additional_timer_percent;
953 	bool mall_error_as_fatal;
954 	bool dmub_command_table; /* for testing only */
955 	struct dc_bw_validation_profile bw_val_profile;
956 	bool disable_fec;
957 	bool disable_48mhz_pwrdwn;
958 	/* This forces a hard min on the DCFCLK requested to SMU/PP
959 	 * watermarks are not affected.
960 	 */
961 	unsigned int force_min_dcfclk_mhz;
962 	int dwb_fi_phase;
963 	bool disable_timing_sync;
964 	bool cm_in_bypass;
965 	int force_clock_mode;/*every mode change.*/
966 
967 	bool disable_dram_clock_change_vactive_support;
968 	bool validate_dml_output;
969 	bool enable_dmcub_surface_flip;
970 	bool usbc_combo_phy_reset_wa;
971 	bool enable_dram_clock_change_one_display_vactive;
972 	/* TODO - remove once tested */
973 	bool legacy_dp2_lt;
974 	bool set_mst_en_for_sst;
975 	bool disable_uhbr;
976 	bool force_dp2_lt_fallback_method;
977 	bool ignore_cable_id;
978 	union mem_low_power_enable_options enable_mem_low_power;
979 	union root_clock_optimization_options root_clock_optimization;
980 	union fine_grain_clock_gating_enable_options enable_fine_grain_clock_gating;
981 	bool hpo_optimization;
982 	bool force_vblank_alignment;
983 
984 	/* Enable dmub aux for legacy ddc */
985 	bool enable_dmub_aux_for_legacy_ddc;
986 	bool disable_fams;
987 	enum in_game_fams_config disable_fams_gaming;
988 	/* FEC/PSR1 sequence enable delay in 100us */
989 	uint8_t fec_enable_delay_in100us;
990 	bool enable_driver_sequence_debug;
991 	enum det_size crb_alloc_policy;
992 	int crb_alloc_policy_min_disp_count;
993 	bool disable_z10;
994 	bool enable_z9_disable_interface;
995 	bool psr_skip_crtc_disable;
996 	uint32_t ips_skip_crtc_disable_mask;
997 	union dpia_debug_options dpia_debug;
998 	bool disable_fixed_vs_aux_timeout_wa;
999 	uint32_t fixed_vs_aux_delay_config_wa;
1000 	bool force_disable_subvp;
1001 	bool force_subvp_mclk_switch;
1002 	bool allow_sw_cursor_fallback;
1003 	unsigned int force_subvp_num_ways;
1004 	unsigned int force_mall_ss_num_ways;
1005 	bool alloc_extra_way_for_cursor;
1006 	uint32_t subvp_extra_lines;
1007 	bool force_usr_allow;
1008 	/* uses value at boot and disables switch */
1009 	bool disable_dtb_ref_clk_switch;
1010 	bool extended_blank_optimization;
1011 	union aux_wake_wa_options aux_wake_wa;
1012 	uint32_t mst_start_top_delay;
1013 	uint8_t psr_power_use_phy_fsm;
1014 	enum dml_hostvm_override_opts dml_hostvm_override;
1015 	bool dml_disallow_alternate_prefetch_modes;
1016 	bool use_legacy_soc_bb_mechanism;
1017 	bool exit_idle_opt_for_cursor_updates;
1018 	bool using_dml2;
1019 	bool enable_single_display_2to1_odm_policy;
1020 	bool enable_double_buffered_dsc_pg_support;
1021 	bool enable_dp_dig_pixel_rate_div_policy;
1022 	bool using_dml21;
1023 	enum lttpr_mode lttpr_mode_override;
1024 	unsigned int dsc_delay_factor_wa_x1000;
1025 	unsigned int min_prefetch_in_strobe_ns;
1026 	bool disable_unbounded_requesting;
1027 	bool dig_fifo_off_in_blank;
1028 	bool override_dispclk_programming;
1029 	bool otg_crc_db;
1030 	bool disallow_dispclk_dppclk_ds;
1031 	bool disable_fpo_optimizations;
1032 	bool support_eDP1_5;
1033 	uint32_t fpo_vactive_margin_us;
1034 	bool disable_fpo_vactive;
1035 	bool disable_boot_optimizations;
1036 	bool override_odm_optimization;
1037 	bool minimize_dispclk_using_odm;
1038 	bool disable_subvp_high_refresh;
1039 	bool disable_dp_plus_plus_wa;
1040 	uint32_t fpo_vactive_min_active_margin_us;
1041 	uint32_t fpo_vactive_max_blank_us;
1042 	bool enable_hpo_pg_support;
1043 	bool enable_legacy_fast_update;
1044 	bool disable_dc_mode_overwrite;
1045 	bool replay_skip_crtc_disabled;
1046 	bool ignore_pg;/*do nothing, let pmfw control it*/
1047 	bool psp_disabled_wa;
1048 	unsigned int ips2_eval_delay_us;
1049 	unsigned int ips2_entry_delay_us;
1050 	bool optimize_ips_handshake;
1051 	bool disable_dmub_reallow_idle;
1052 	bool disable_timeout;
1053 	bool disable_extblankadj;
1054 	bool enable_idle_reg_checks;
1055 	unsigned int static_screen_wait_frames;
1056 	uint32_t pwm_freq;
1057 	bool force_chroma_subsampling_1tap;
1058 	unsigned int dcc_meta_propagation_delay_us;
1059 	bool disable_422_left_edge_pixel;
1060 	bool dml21_force_pstate_method;
1061 	uint32_t dml21_force_pstate_method_values[MAX_PIPES];
1062 	uint32_t dml21_disable_pstate_method_mask;
1063 	union fw_assisted_mclk_switch_version fams_version;
1064 	union dmub_fams2_global_feature_config fams2_config;
1065 	unsigned int force_cositing;
1066 	unsigned int disable_spl;
1067 	unsigned int force_easf;
1068 	unsigned int force_sharpness;
1069 	unsigned int force_sharpness_level;
1070 	unsigned int force_lls;
1071 	bool notify_dpia_hr_bw;
1072 	bool enable_ips_visual_confirm;
1073 	unsigned int sharpen_policy;
1074 	unsigned int scale_to_sharpness_policy;
1075 	bool skip_full_updated_if_possible;
1076 	unsigned int enable_oled_edp_power_up_opt;
1077 	bool enable_hblank_borrow;
1078 	bool force_subvp_df_throttle;
1079 };
1080 
1081 
1082 /* Generic structure that can be used to query properties of DC. More fields
1083  * can be added as required.
1084  */
1085 struct dc_current_properties {
1086 	unsigned int cursor_size_limit;
1087 };
1088 
1089 enum frame_buffer_mode {
1090 	FRAME_BUFFER_MODE_LOCAL_ONLY = 0,
1091 	FRAME_BUFFER_MODE_ZFB_ONLY,
1092 	FRAME_BUFFER_MODE_MIXED_ZFB_AND_LOCAL,
1093 } ;
1094 
1095 struct dchub_init_data {
1096 	int64_t zfb_phys_addr_base;
1097 	int64_t zfb_mc_base_addr;
1098 	uint64_t zfb_size_in_byte;
1099 	enum frame_buffer_mode fb_mode;
1100 	bool dchub_initialzied;
1101 	bool dchub_info_valid;
1102 };
1103 
1104 struct dml2_soc_bb;
1105 
1106 struct dc_init_data {
1107 	struct hw_asic_id asic_id;
1108 	void *driver; /* ctx */
1109 	struct cgs_device *cgs_device;
1110 	struct dc_bounding_box_overrides bb_overrides;
1111 
1112 	int num_virtual_links;
1113 	/*
1114 	 * If 'vbios_override' not NULL, it will be called instead
1115 	 * of the real VBIOS. Intended use is Diagnostics on FPGA.
1116 	 */
1117 	struct dc_bios *vbios_override;
1118 	enum dce_environment dce_environment;
1119 
1120 	struct dmub_offload_funcs *dmub_if;
1121 	struct dc_reg_helper_state *dmub_offload;
1122 
1123 	struct dc_config flags;
1124 	uint64_t log_mask;
1125 
1126 	struct dpcd_vendor_signature vendor_signature;
1127 	bool force_smu_not_present;
1128 	/*
1129 	 * IP offset for run time initializaion of register addresses
1130 	 *
1131 	 * DCN3.5+ will fail dc_create() if these fields are null for them. They are
1132 	 * applicable starting with DCN32/321 and are not used for ASICs upstreamed
1133 	 * before them.
1134 	 */
1135 	uint32_t *dcn_reg_offsets;
1136 	uint32_t *nbio_reg_offsets;
1137 	uint32_t *clk_reg_offsets;
1138 	struct dml2_soc_bb *bb_from_dmub;
1139 };
1140 
1141 struct dc_callback_init {
1142 	struct cp_psp cp_psp;
1143 };
1144 
1145 struct dc *dc_create(const struct dc_init_data *init_params);
1146 void dc_hardware_init(struct dc *dc);
1147 
1148 int dc_get_vmid_use_vector(struct dc *dc);
1149 void dc_setup_vm_context(struct dc *dc, struct dc_virtual_addr_space_config *va_config, int vmid);
1150 /* Returns the number of vmids supported */
1151 int dc_setup_system_context(struct dc *dc, struct dc_phy_addr_space_config *pa_config);
1152 void dc_init_callbacks(struct dc *dc,
1153 		const struct dc_callback_init *init_params);
1154 void dc_deinit_callbacks(struct dc *dc);
1155 void dc_destroy(struct dc **dc);
1156 
1157 /* Surface Interfaces */
1158 
1159 enum {
1160 	TRANSFER_FUNC_POINTS = 1025
1161 };
1162 
1163 struct dc_hdr_static_metadata {
1164 	/* display chromaticities and white point in units of 0.00001 */
1165 	unsigned int chromaticity_green_x;
1166 	unsigned int chromaticity_green_y;
1167 	unsigned int chromaticity_blue_x;
1168 	unsigned int chromaticity_blue_y;
1169 	unsigned int chromaticity_red_x;
1170 	unsigned int chromaticity_red_y;
1171 	unsigned int chromaticity_white_point_x;
1172 	unsigned int chromaticity_white_point_y;
1173 
1174 	uint32_t min_luminance;
1175 	uint32_t max_luminance;
1176 	uint32_t maximum_content_light_level;
1177 	uint32_t maximum_frame_average_light_level;
1178 };
1179 
1180 enum dc_transfer_func_type {
1181 	TF_TYPE_PREDEFINED,
1182 	TF_TYPE_DISTRIBUTED_POINTS,
1183 	TF_TYPE_BYPASS,
1184 	TF_TYPE_HWPWL
1185 };
1186 
1187 struct dc_transfer_func_distributed_points {
1188 	struct fixed31_32 red[TRANSFER_FUNC_POINTS];
1189 	struct fixed31_32 green[TRANSFER_FUNC_POINTS];
1190 	struct fixed31_32 blue[TRANSFER_FUNC_POINTS];
1191 
1192 	uint16_t end_exponent;
1193 	uint16_t x_point_at_y1_red;
1194 	uint16_t x_point_at_y1_green;
1195 	uint16_t x_point_at_y1_blue;
1196 };
1197 
1198 enum dc_transfer_func_predefined {
1199 	TRANSFER_FUNCTION_SRGB,
1200 	TRANSFER_FUNCTION_BT709,
1201 	TRANSFER_FUNCTION_PQ,
1202 	TRANSFER_FUNCTION_LINEAR,
1203 	TRANSFER_FUNCTION_UNITY,
1204 	TRANSFER_FUNCTION_HLG,
1205 	TRANSFER_FUNCTION_HLG12,
1206 	TRANSFER_FUNCTION_GAMMA22,
1207 	TRANSFER_FUNCTION_GAMMA24,
1208 	TRANSFER_FUNCTION_GAMMA26
1209 };
1210 
1211 
1212 struct dc_transfer_func {
1213 	struct kref refcount;
1214 	enum dc_transfer_func_type type;
1215 	enum dc_transfer_func_predefined tf;
1216 	/* FP16 1.0 reference level in nits, default is 80 nits, only for PQ*/
1217 	uint32_t sdr_ref_white_level;
1218 	union {
1219 		struct pwl_params pwl;
1220 		struct dc_transfer_func_distributed_points tf_pts;
1221 	};
1222 };
1223 
1224 
1225 union dc_3dlut_state {
1226 	struct {
1227 		uint32_t initialized:1;		/*if 3dlut is went through color module for initialization */
1228 		uint32_t rmu_idx_valid:1;	/*if mux settings are valid*/
1229 		uint32_t rmu_mux_num:3;		/*index of mux to use*/
1230 		uint32_t mpc_rmu0_mux:4;	/*select mpcc on mux, one of the following : mpcc0, mpcc1, mpcc2, mpcc3*/
1231 		uint32_t mpc_rmu1_mux:4;
1232 		uint32_t mpc_rmu2_mux:4;
1233 		uint32_t reserved:15;
1234 	} bits;
1235 	uint32_t raw;
1236 };
1237 
1238 
1239 struct dc_3dlut {
1240 	struct kref refcount;
1241 	struct tetrahedral_params lut_3d;
1242 	struct fixed31_32 hdr_multiplier;
1243 	union dc_3dlut_state state;
1244 };
1245 /*
1246  * This structure is filled in by dc_surface_get_status and contains
1247  * the last requested address and the currently active address so the called
1248  * can determine if there are any outstanding flips
1249  */
1250 struct dc_plane_status {
1251 	struct dc_plane_address requested_address;
1252 	struct dc_plane_address current_address;
1253 	bool is_flip_pending;
1254 	bool is_right_eye;
1255 };
1256 
1257 union surface_update_flags {
1258 
1259 	struct {
1260 		uint32_t addr_update:1;
1261 		/* Medium updates */
1262 		uint32_t dcc_change:1;
1263 		uint32_t color_space_change:1;
1264 		uint32_t horizontal_mirror_change:1;
1265 		uint32_t per_pixel_alpha_change:1;
1266 		uint32_t global_alpha_change:1;
1267 		uint32_t hdr_mult:1;
1268 		uint32_t rotation_change:1;
1269 		uint32_t swizzle_change:1;
1270 		uint32_t scaling_change:1;
1271 		uint32_t position_change:1;
1272 		uint32_t in_transfer_func_change:1;
1273 		uint32_t input_csc_change:1;
1274 		uint32_t coeff_reduction_change:1;
1275 		uint32_t output_tf_change:1;
1276 		uint32_t pixel_format_change:1;
1277 		uint32_t plane_size_change:1;
1278 		uint32_t gamut_remap_change:1;
1279 
1280 		/* Full updates */
1281 		uint32_t new_plane:1;
1282 		uint32_t bpp_change:1;
1283 		uint32_t gamma_change:1;
1284 		uint32_t bandwidth_change:1;
1285 		uint32_t clock_change:1;
1286 		uint32_t stereo_format_change:1;
1287 		uint32_t lut_3d:1;
1288 		uint32_t tmz_changed:1;
1289 		uint32_t mcm_transfer_function_enable_change:1; /* disable or enable MCM transfer func */
1290 		uint32_t full_update:1;
1291 		uint32_t sdr_white_level_nits:1;
1292 	} bits;
1293 
1294 	uint32_t raw;
1295 };
1296 
1297 #define DC_REMOVE_PLANE_POINTERS 1
1298 
1299 struct dc_plane_state {
1300 	struct dc_plane_address address;
1301 	struct dc_plane_flip_time time;
1302 	bool triplebuffer_flips;
1303 	struct scaling_taps scaling_quality;
1304 	struct rect src_rect;
1305 	struct rect dst_rect;
1306 	struct rect clip_rect;
1307 
1308 	struct plane_size plane_size;
1309 	struct dc_tiling_info tiling_info;
1310 
1311 	struct dc_plane_dcc_param dcc;
1312 
1313 	struct dc_gamma gamma_correction;
1314 	struct dc_transfer_func in_transfer_func;
1315 	struct dc_bias_and_scale bias_and_scale;
1316 	struct dc_csc_transform input_csc_color_matrix;
1317 	struct fixed31_32 coeff_reduction_factor;
1318 	struct fixed31_32 hdr_mult;
1319 	struct colorspace_transform gamut_remap_matrix;
1320 
1321 	// TODO: No longer used, remove
1322 	struct dc_hdr_static_metadata hdr_static_ctx;
1323 
1324 	enum dc_color_space color_space;
1325 
1326 	struct dc_3dlut lut3d_func;
1327 	struct dc_transfer_func in_shaper_func;
1328 	struct dc_transfer_func blend_tf;
1329 
1330 	struct dc_transfer_func *gamcor_tf;
1331 	enum surface_pixel_format format;
1332 	enum dc_rotation_angle rotation;
1333 	enum plane_stereo_format stereo_format;
1334 
1335 	bool is_tiling_rotated;
1336 	bool per_pixel_alpha;
1337 	bool pre_multiplied_alpha;
1338 	bool global_alpha;
1339 	int  global_alpha_value;
1340 	bool visible;
1341 	bool flip_immediate;
1342 	bool horizontal_mirror;
1343 	int layer_index;
1344 
1345 	union surface_update_flags update_flags;
1346 	bool flip_int_enabled;
1347 	bool skip_manual_trigger;
1348 
1349 	/* private to DC core */
1350 	struct dc_plane_status status;
1351 	struct dc_context *ctx;
1352 
1353 	/* HACK: Workaround for forcing full reprogramming under some conditions */
1354 	bool force_full_update;
1355 
1356 	bool is_phantom; // TODO: Change mall_stream_config into mall_plane_config instead
1357 
1358 	/* private to dc_surface.c */
1359 	enum dc_irq_source irq_source;
1360 	struct kref refcount;
1361 	struct tg_color visual_confirm_color;
1362 
1363 	bool is_statically_allocated;
1364 	enum chroma_cositing cositing;
1365 	enum dc_cm2_shaper_3dlut_setting mcm_shaper_3dlut_setting;
1366 	bool mcm_lut1d_enable;
1367 	struct dc_cm2_func_luts mcm_luts;
1368 	bool lut_bank_a;
1369 	enum mpcc_movable_cm_location mcm_location;
1370 	struct dc_csc_transform cursor_csc_color_matrix;
1371 	bool adaptive_sharpness_en;
1372 	int adaptive_sharpness_policy;
1373 	int sharpness_level;
1374 	enum linear_light_scaling linear_light_scaling;
1375 	unsigned int sdr_white_level_nits;
1376 };
1377 
1378 struct dc_plane_info {
1379 	struct plane_size plane_size;
1380 	struct dc_tiling_info tiling_info;
1381 	struct dc_plane_dcc_param dcc;
1382 	enum surface_pixel_format format;
1383 	enum dc_rotation_angle rotation;
1384 	enum plane_stereo_format stereo_format;
1385 	enum dc_color_space color_space;
1386 	bool horizontal_mirror;
1387 	bool visible;
1388 	bool per_pixel_alpha;
1389 	bool pre_multiplied_alpha;
1390 	bool global_alpha;
1391 	int  global_alpha_value;
1392 	bool input_csc_enabled;
1393 	int layer_index;
1394 	enum chroma_cositing cositing;
1395 };
1396 
1397 #include "dc_stream.h"
1398 
1399 struct dc_scratch_space {
1400 	/* used to temporarily backup plane states of a stream during
1401 	 * dc update. The reason is that plane states are overwritten
1402 	 * with surface updates in dc update. Once they are overwritten
1403 	 * current state is no longer valid. We want to temporarily
1404 	 * store current value in plane states so we can still recover
1405 	 * a valid current state during dc update.
1406 	 */
1407 	struct dc_plane_state plane_states[MAX_SURFACES];
1408 
1409 	struct dc_stream_state stream_state;
1410 };
1411 
1412 struct dc {
1413 	struct dc_debug_options debug;
1414 	struct dc_versions versions;
1415 	struct dc_caps caps;
1416 	struct dc_cap_funcs cap_funcs;
1417 	struct dc_config config;
1418 	struct dc_bounding_box_overrides bb_overrides;
1419 	struct dc_bug_wa work_arounds;
1420 	struct dc_context *ctx;
1421 	struct dc_phy_addr_space_config vm_pa_config;
1422 
1423 	uint8_t link_count;
1424 	struct dc_link *links[MAX_LINKS];
1425 	struct link_service *link_srv;
1426 
1427 	struct dc_state *current_state;
1428 	struct resource_pool *res_pool;
1429 
1430 	struct clk_mgr *clk_mgr;
1431 
1432 	/* Display Engine Clock levels */
1433 	struct dm_pp_clock_levels sclk_lvls;
1434 
1435 	/* Inputs into BW and WM calculations. */
1436 	struct bw_calcs_dceip *bw_dceip;
1437 	struct bw_calcs_vbios *bw_vbios;
1438 	struct dcn_soc_bounding_box *dcn_soc;
1439 	struct dcn_ip_params *dcn_ip;
1440 	struct display_mode_lib dml;
1441 
1442 	/* HW functions */
1443 	struct hw_sequencer_funcs hwss;
1444 	struct dce_hwseq *hwseq;
1445 
1446 	/* Require to optimize clocks and bandwidth for added/removed planes */
1447 	bool optimized_required;
1448 	bool wm_optimized_required;
1449 	bool idle_optimizations_allowed;
1450 	bool enable_c20_dtm_b0;
1451 
1452 	/* Require to maintain clocks and bandwidth for UEFI enabled HW */
1453 
1454 	/* FBC compressor */
1455 	struct compressor *fbc_compressor;
1456 
1457 	struct dc_debug_data debug_data;
1458 	struct dpcd_vendor_signature vendor_signature;
1459 
1460 	const char *build_id;
1461 	struct vm_helper *vm_helper;
1462 
1463 	uint32_t *dcn_reg_offsets;
1464 	uint32_t *nbio_reg_offsets;
1465 	uint32_t *clk_reg_offsets;
1466 
1467 	/* Scratch memory */
1468 	struct {
1469 		struct {
1470 			/*
1471 			 * For matching clock_limits table in driver with table
1472 			 * from PMFW.
1473 			 */
1474 			struct _vcs_dpi_voltage_scaling_st clock_limits[DC__VOLTAGE_STATES];
1475 		} update_bw_bounding_box;
1476 		struct dc_scratch_space current_state;
1477 		struct dc_scratch_space new_state;
1478 		struct dc_stream_state temp_stream; // Used so we don't need to allocate stream on the stack
1479 		bool pipes_to_unlock_first[MAX_PIPES]; /* Any of the pipes indicated here should be unlocked first */
1480 	} scratch;
1481 
1482 	struct dml2_configuration_options dml2_options;
1483 	struct dml2_configuration_options dml2_tmp;
1484 	enum dc_acpi_cm_power_state power_state;
1485 
1486 };
1487 
1488 struct dc_scaling_info {
1489 	struct rect src_rect;
1490 	struct rect dst_rect;
1491 	struct rect clip_rect;
1492 	struct scaling_taps scaling_quality;
1493 };
1494 
1495 struct dc_fast_update {
1496 	const struct dc_flip_addrs *flip_addr;
1497 	const struct dc_gamma *gamma;
1498 	const struct colorspace_transform *gamut_remap_matrix;
1499 	const struct dc_csc_transform *input_csc_color_matrix;
1500 	const struct fixed31_32 *coeff_reduction_factor;
1501 	struct dc_transfer_func *out_transfer_func;
1502 	struct dc_csc_transform *output_csc_transform;
1503 	const struct dc_csc_transform *cursor_csc_color_matrix;
1504 };
1505 
1506 struct dc_surface_update {
1507 	struct dc_plane_state *surface;
1508 
1509 	/* isr safe update parameters.  null means no updates */
1510 	const struct dc_flip_addrs *flip_addr;
1511 	const struct dc_plane_info *plane_info;
1512 	const struct dc_scaling_info *scaling_info;
1513 	struct fixed31_32 hdr_mult;
1514 	/* following updates require alloc/sleep/spin that is not isr safe,
1515 	 * null means no updates
1516 	 */
1517 	const struct dc_gamma *gamma;
1518 	const struct dc_transfer_func *in_transfer_func;
1519 
1520 	const struct dc_csc_transform *input_csc_color_matrix;
1521 	const struct fixed31_32 *coeff_reduction_factor;
1522 	const struct dc_transfer_func *func_shaper;
1523 	const struct dc_3dlut *lut3d_func;
1524 	const struct dc_transfer_func *blend_tf;
1525 	const struct colorspace_transform *gamut_remap_matrix;
1526 	/*
1527 	 * Color Transformations for pre-blend MCM (Shaper, 3DLUT, 1DLUT)
1528 	 *
1529 	 * change cm2_params.component_settings: Full update
1530 	 * change cm2_params.cm2_luts: Fast update
1531 	 */
1532 	const struct dc_cm2_parameters *cm2_params;
1533 	const struct dc_csc_transform *cursor_csc_color_matrix;
1534 	unsigned int sdr_white_level_nits;
1535 	struct dc_bias_and_scale bias_and_scale;
1536 };
1537 
1538 /*
1539  * Create a new surface with default parameters;
1540  */
1541 void dc_gamma_retain(struct dc_gamma *dc_gamma);
1542 void dc_gamma_release(struct dc_gamma **dc_gamma);
1543 struct dc_gamma *dc_create_gamma(void);
1544 
1545 void dc_transfer_func_retain(struct dc_transfer_func *dc_tf);
1546 void dc_transfer_func_release(struct dc_transfer_func *dc_tf);
1547 struct dc_transfer_func *dc_create_transfer_func(void);
1548 
1549 struct dc_3dlut *dc_create_3dlut_func(void);
1550 void dc_3dlut_func_release(struct dc_3dlut *lut);
1551 void dc_3dlut_func_retain(struct dc_3dlut *lut);
1552 
1553 void dc_post_update_surfaces_to_stream(
1554 		struct dc *dc);
1555 
1556 #include "dc_stream.h"
1557 
1558 /**
1559  * struct dc_validation_set - Struct to store surface/stream associations for validation
1560  */
1561 struct dc_validation_set {
1562 	/**
1563 	 * @stream: Stream state properties
1564 	 */
1565 	struct dc_stream_state *stream;
1566 
1567 	/**
1568 	 * @plane_states: Surface state
1569 	 */
1570 	struct dc_plane_state *plane_states[MAX_SURFACES];
1571 
1572 	/**
1573 	 * @plane_count: Total of active planes
1574 	 */
1575 	uint8_t plane_count;
1576 };
1577 
1578 bool dc_validate_boot_timing(const struct dc *dc,
1579 				const struct dc_sink *sink,
1580 				struct dc_crtc_timing *crtc_timing);
1581 
1582 enum dc_status dc_validate_plane(struct dc *dc, const struct dc_plane_state *plane_state);
1583 
1584 void get_clock_requirements_for_state(struct dc_state *state, struct AsicStateEx *info);
1585 
1586 enum dc_status dc_validate_with_context(struct dc *dc,
1587 					const struct dc_validation_set set[],
1588 					int set_count,
1589 					struct dc_state *context,
1590 					bool fast_validate);
1591 
1592 bool dc_set_generic_gpio_for_stereo(bool enable,
1593 		struct gpio_service *gpio_service);
1594 
1595 /*
1596  * fast_validate: we return after determining if we can support the new state,
1597  * but before we populate the programming info
1598  */
1599 enum dc_status dc_validate_global_state(
1600 		struct dc *dc,
1601 		struct dc_state *new_ctx,
1602 		bool fast_validate);
1603 
1604 bool dc_acquire_release_mpc_3dlut(
1605 		struct dc *dc, bool acquire,
1606 		struct dc_stream_state *stream,
1607 		struct dc_3dlut **lut,
1608 		struct dc_transfer_func **shaper);
1609 
1610 bool dc_resource_is_dsc_encoding_supported(const struct dc *dc);
1611 void get_audio_check(struct audio_info *aud_modes,
1612 	struct audio_check *aud_chk);
1613 
1614 bool fast_nonaddr_updates_exist(struct dc_fast_update *fast_update, int surface_count);
1615 void populate_fast_updates(struct dc_fast_update *fast_update,
1616 		struct dc_surface_update *srf_updates,
1617 		int surface_count,
1618 		struct dc_stream_update *stream_update);
1619 /*
1620  * Set up streams and links associated to drive sinks
1621  * The streams parameter is an absolute set of all active streams.
1622  *
1623  * After this call:
1624  *   Phy, Encoder, Timing Generator are programmed and enabled.
1625  *   New streams are enabled with blank stream; no memory read.
1626  */
1627 enum dc_status dc_commit_streams(struct dc *dc, struct dc_commit_streams_params *params);
1628 
1629 
1630 struct dc_plane_state *dc_get_surface_for_mpcc(struct dc *dc,
1631 		struct dc_stream_state *stream,
1632 		int mpcc_inst);
1633 
1634 
1635 uint32_t dc_get_opp_for_plane(struct dc *dc, struct dc_plane_state *plane);
1636 
1637 void dc_set_disable_128b_132b_stream_overhead(bool disable);
1638 
1639 /* The function returns minimum bandwidth required to drive a given timing
1640  * return - minimum required timing bandwidth in kbps.
1641  */
1642 uint32_t dc_bandwidth_in_kbps_from_timing(
1643 		const struct dc_crtc_timing *timing,
1644 		const enum dc_link_encoding_format link_encoding);
1645 
1646 /* Link Interfaces */
1647 /*
1648  * A link contains one or more sinks and their connected status.
1649  * The currently active signal type (HDMI, DP-SST, DP-MST) is also reported.
1650  */
1651 struct dc_link {
1652 	struct dc_sink *remote_sinks[MAX_SINKS_PER_LINK];
1653 	unsigned int sink_count;
1654 	struct dc_sink *local_sink;
1655 	unsigned int link_index;
1656 	enum dc_connection_type type;
1657 	enum signal_type connector_signal;
1658 	enum dc_irq_source irq_source_hpd;
1659 	enum dc_irq_source irq_source_hpd_rx;/* aka DP Short Pulse  */
1660 
1661 	bool is_hpd_filter_disabled;
1662 	bool dp_ss_off;
1663 
1664 	/**
1665 	 * @link_state_valid:
1666 	 *
1667 	 * If there is no link and local sink, this variable should be set to
1668 	 * false. Otherwise, it should be set to true; usually, the function
1669 	 * core_link_enable_stream sets this field to true.
1670 	 */
1671 	bool link_state_valid;
1672 	bool aux_access_disabled;
1673 	bool sync_lt_in_progress;
1674 	bool skip_stream_reenable;
1675 	bool is_internal_display;
1676 	/** @todo Rename. Flag an endpoint as having a programmable mapping to a DIG encoder. */
1677 	bool is_dig_mapping_flexible;
1678 	bool hpd_status; /* HPD status of link without physical HPD pin. */
1679 	bool is_hpd_pending; /* Indicates a new received hpd */
1680 
1681 	/* USB4 DPIA links skip verifying link cap, instead performing the fallback method
1682 	 * for every link training. This is incompatible with DP LL compliance automation,
1683 	 * which expects the same link settings to be used every retry on a link loss.
1684 	 * This flag is used to skip the fallback when link loss occurs during automation.
1685 	 */
1686 	bool skip_fallback_on_link_loss;
1687 
1688 	bool edp_sink_present;
1689 
1690 	struct dp_trace dp_trace;
1691 
1692 	/* caps is the same as reported_link_cap. link_traing use
1693 	 * reported_link_cap. Will clean up.  TODO
1694 	 */
1695 	struct dc_link_settings reported_link_cap;
1696 	struct dc_link_settings verified_link_cap;
1697 	struct dc_link_settings cur_link_settings;
1698 	struct dc_lane_settings cur_lane_setting[LANE_COUNT_DP_MAX];
1699 	struct dc_link_settings preferred_link_setting;
1700 	/* preferred_training_settings are override values that
1701 	 * come from DM. DM is responsible for the memory
1702 	 * management of the override pointers.
1703 	 */
1704 	struct dc_link_training_overrides preferred_training_settings;
1705 	struct dp_audio_test_data audio_test_data;
1706 
1707 	uint8_t ddc_hw_inst;
1708 
1709 	uint8_t hpd_src;
1710 
1711 	uint8_t link_enc_hw_inst;
1712 	/* DIG link encoder ID. Used as index in link encoder resource pool.
1713 	 * For links with fixed mapping to DIG, this is not changed after dc_link
1714 	 * object creation.
1715 	 */
1716 	enum engine_id eng_id;
1717 	enum engine_id dpia_preferred_eng_id;
1718 
1719 	bool test_pattern_enabled;
1720 	/* Pending/Current test pattern are only used to perform and track
1721 	 * FIXED_VS retimer test pattern/lane adjustment override state.
1722 	 * Pending allows link HWSS to differentiate PHY vs non-PHY pattern,
1723 	 * to perform specific lane adjust overrides before setting certain
1724 	 * PHY test patterns. In cases when lane adjust and set test pattern
1725 	 * calls are not performed atomically (i.e. performing link training),
1726 	 * pending_test_pattern will be invalid or contain a non-PHY test pattern
1727 	 * and current_test_pattern will contain required context for any future
1728 	 * set pattern/set lane adjust to transition between override state(s).
1729 	 * */
1730 	enum dp_test_pattern current_test_pattern;
1731 	enum dp_test_pattern pending_test_pattern;
1732 
1733 	union compliance_test_state compliance_test_state;
1734 
1735 	void *priv;
1736 
1737 	struct ddc_service *ddc;
1738 
1739 	enum dp_panel_mode panel_mode;
1740 	bool aux_mode;
1741 
1742 	/* Private to DC core */
1743 
1744 	const struct dc *dc;
1745 
1746 	struct dc_context *ctx;
1747 
1748 	struct panel_cntl *panel_cntl;
1749 	struct link_encoder *link_enc;
1750 	struct graphics_object_id link_id;
1751 	/* Endpoint type distinguishes display endpoints which do not have entries
1752 	 * in the BIOS connector table from those that do. Helps when tracking link
1753 	 * encoder to display endpoint assignments.
1754 	 */
1755 	enum display_endpoint_type ep_type;
1756 	union ddi_channel_mapping ddi_channel_mapping;
1757 	struct connector_device_tag_info device_tag;
1758 	struct dpcd_caps dpcd_caps;
1759 	uint32_t dongle_max_pix_clk;
1760 	unsigned short chip_caps;
1761 	unsigned int dpcd_sink_count;
1762 	struct hdcp_caps hdcp_caps;
1763 	enum edp_revision edp_revision;
1764 	union dpcd_sink_ext_caps dpcd_sink_ext_caps;
1765 
1766 	struct psr_settings psr_settings;
1767 	struct replay_settings replay_settings;
1768 
1769 	/* Drive settings read from integrated info table */
1770 	struct dc_lane_settings bios_forced_drive_settings;
1771 
1772 	/* Vendor specific LTTPR workaround variables */
1773 	uint8_t vendor_specific_lttpr_link_rate_wa;
1774 	bool apply_vendor_specific_lttpr_link_rate_wa;
1775 
1776 	/* MST record stream using this link */
1777 	struct link_flags {
1778 		bool dp_keep_receiver_powered;
1779 		bool dp_skip_DID2;
1780 		bool dp_skip_reset_segment;
1781 		bool dp_skip_fs_144hz;
1782 		bool dp_mot_reset_segment;
1783 		/* Some USB4 docks do not handle turning off MST DSC once it has been enabled. */
1784 		bool dpia_mst_dsc_always_on;
1785 		/* Forced DPIA into TBT3 compatibility mode. */
1786 		bool dpia_forced_tbt3_mode;
1787 		bool dongle_mode_timing_override;
1788 		bool blank_stream_on_ocs_change;
1789 		bool read_dpcd204h_on_irq_hpd;
1790 	} wa_flags;
1791 	struct link_mst_stream_allocation_table mst_stream_alloc_table;
1792 
1793 	struct dc_link_status link_status;
1794 	struct dprx_states dprx_states;
1795 
1796 	struct gpio *hpd_gpio;
1797 	enum dc_link_fec_state fec_state;
1798 	bool link_powered_externally;	// Used to bypass hardware sequencing delays when panel is powered down forcibly
1799 
1800 	struct dc_panel_config panel_config;
1801 	struct phy_state phy_state;
1802 	// BW ALLOCATON USB4 ONLY
1803 	struct dc_dpia_bw_alloc dpia_bw_alloc_config;
1804 	bool skip_implict_edp_power_control;
1805 	enum backlight_control_type backlight_control_type;
1806 };
1807 
1808 /* Return an enumerated dc_link.
1809  * dc_link order is constant and determined at
1810  * boot time.  They cannot be created or destroyed.
1811  * Use dc_get_caps() to get number of links.
1812  */
1813 struct dc_link *dc_get_link_at_index(struct dc *dc, uint32_t link_index);
1814 
1815 /* Return instance id of the edp link. Inst 0 is primary edp link. */
1816 bool dc_get_edp_link_panel_inst(const struct dc *dc,
1817 		const struct dc_link *link,
1818 		unsigned int *inst_out);
1819 
1820 /* Return an array of link pointers to edp links. */
1821 void dc_get_edp_links(const struct dc *dc,
1822 		struct dc_link **edp_links,
1823 		int *edp_num);
1824 
1825 void dc_set_edp_power(const struct dc *dc, struct dc_link *edp_link,
1826 				 bool powerOn);
1827 
1828 /* The function initiates detection handshake over the given link. It first
1829  * determines if there are display connections over the link. If so it initiates
1830  * detection protocols supported by the connected receiver device. The function
1831  * contains protocol specific handshake sequences which are sometimes mandatory
1832  * to establish a proper connection between TX and RX. So it is always
1833  * recommended to call this function as the first link operation upon HPD event
1834  * or power up event. Upon completion, the function will update link structure
1835  * in place based on latest RX capabilities. The function may also cause dpms
1836  * to be reset to off for all currently enabled streams to the link. It is DM's
1837  * responsibility to serialize detection and DPMS updates.
1838  *
1839  * @reason - Indicate which event triggers this detection. dc may customize
1840  * detection flow depending on the triggering events.
1841  * return false - if detection is not fully completed. This could happen when
1842  * there is an unrecoverable error during detection or detection is partially
1843  * completed (detection has been delegated to dm mst manager ie.
1844  * link->connection_type == dc_connection_mst_branch when returning false).
1845  * return true - detection is completed, link has been fully updated with latest
1846  * detection result.
1847  */
1848 bool dc_link_detect(struct dc_link *link, enum dc_detect_reason reason);
1849 
1850 struct dc_sink_init_data;
1851 
1852 /* When link connection type is dc_connection_mst_branch, remote sink can be
1853  * added to the link. The interface creates a remote sink and associates it with
1854  * current link. The sink will be retained by link until remove remote sink is
1855  * called.
1856  *
1857  * @dc_link - link the remote sink will be added to.
1858  * @edid - byte array of EDID raw data.
1859  * @len - size of the edid in byte
1860  * @init_data -
1861  */
1862 struct dc_sink *dc_link_add_remote_sink(
1863 		struct dc_link *dc_link,
1864 		const uint8_t *edid,
1865 		int len,
1866 		struct dc_sink_init_data *init_data);
1867 
1868 /* Remove remote sink from a link with dc_connection_mst_branch connection type.
1869  * @link - link the sink should be removed from
1870  * @sink - sink to be removed.
1871  */
1872 void dc_link_remove_remote_sink(
1873 	struct dc_link *link,
1874 	struct dc_sink *sink);
1875 
1876 /* Enable HPD interrupt handler for a given link */
1877 void dc_link_enable_hpd(const struct dc_link *link);
1878 
1879 /* Disable HPD interrupt handler for a given link */
1880 void dc_link_disable_hpd(const struct dc_link *link);
1881 
1882 /* determine if there is a sink connected to the link
1883  *
1884  * @type - dc_connection_single if connected, dc_connection_none otherwise.
1885  * return - false if an unexpected error occurs, true otherwise.
1886  *
1887  * NOTE: This function doesn't detect downstream sink connections i.e
1888  * dc_connection_mst_branch, dc_connection_sst_branch. In this case, it will
1889  * return dc_connection_single if the branch device is connected despite of
1890  * downstream sink's connection status.
1891  */
1892 bool dc_link_detect_connection_type(struct dc_link *link,
1893 		enum dc_connection_type *type);
1894 
1895 /* query current hpd pin value
1896  * return - true HPD is asserted (HPD high), false otherwise (HPD low)
1897  *
1898  */
1899 bool dc_link_get_hpd_state(struct dc_link *link);
1900 
1901 /* Getter for cached link status from given link */
1902 const struct dc_link_status *dc_link_get_status(const struct dc_link *link);
1903 
1904 /* enable/disable hardware HPD filter.
1905  *
1906  * @link - The link the HPD pin is associated with.
1907  * @enable = true - enable hardware HPD filter. HPD event will only queued to irq
1908  * handler once after no HPD change has been detected within dc default HPD
1909  * filtering interval since last HPD event. i.e if display keeps toggling hpd
1910  * pulses within default HPD interval, no HPD event will be received until HPD
1911  * toggles have stopped. Then HPD event will be queued to irq handler once after
1912  * dc default HPD filtering interval since last HPD event.
1913  *
1914  * @enable = false - disable hardware HPD filter. HPD event will be queued
1915  * immediately to irq handler after no HPD change has been detected within
1916  * IRQ_HPD (aka HPD short pulse) interval (i.e 2ms).
1917  */
1918 void dc_link_enable_hpd_filter(struct dc_link *link, bool enable);
1919 
1920 /* submit i2c read/write payloads through ddc channel
1921  * @link_index - index to a link with ddc in i2c mode
1922  * @cmd - i2c command structure
1923  * return - true if success, false otherwise.
1924  */
1925 bool dc_submit_i2c(
1926 		struct dc *dc,
1927 		uint32_t link_index,
1928 		struct i2c_command *cmd);
1929 
1930 /* submit i2c read/write payloads through oem channel
1931  * @link_index - index to a link with ddc in i2c mode
1932  * @cmd - i2c command structure
1933  * return - true if success, false otherwise.
1934  */
1935 bool dc_submit_i2c_oem(
1936 		struct dc *dc,
1937 		struct i2c_command *cmd);
1938 
1939 enum aux_return_code_type;
1940 /* Attempt to transfer the given aux payload. This function does not perform
1941  * retries or handle error states. The reply is returned in the payload->reply
1942  * and the result through operation_result. Returns the number of bytes
1943  * transferred,or -1 on a failure.
1944  */
1945 int dc_link_aux_transfer_raw(struct ddc_service *ddc,
1946 		struct aux_payload *payload,
1947 		enum aux_return_code_type *operation_result);
1948 
1949 bool dc_is_oem_i2c_device_present(
1950 	struct dc *dc,
1951 	size_t slave_address
1952 );
1953 
1954 /* return true if the connected receiver supports the hdcp version */
1955 bool dc_link_is_hdcp14(struct dc_link *link, enum signal_type signal);
1956 bool dc_link_is_hdcp22(struct dc_link *link, enum signal_type signal);
1957 
1958 /* Notify DC about DP RX Interrupt (aka DP IRQ_HPD).
1959  *
1960  * TODO - When defer_handling is true the function will have a different purpose.
1961  * It no longer does complete hpd rx irq handling. We should create a separate
1962  * interface specifically for this case.
1963  *
1964  * Return:
1965  * true - Downstream port status changed. DM should call DC to do the
1966  * detection.
1967  * false - no change in Downstream port status. No further action required
1968  * from DM.
1969  */
1970 bool dc_link_handle_hpd_rx_irq(struct dc_link *dc_link,
1971 		union hpd_irq_data *hpd_irq_dpcd_data, bool *out_link_loss,
1972 		bool defer_handling, bool *has_left_work);
1973 /* handle DP specs define test automation sequence*/
1974 void dc_link_dp_handle_automated_test(struct dc_link *link);
1975 
1976 /* handle DP Link loss sequence and try to recover RX link loss with best
1977  * effort
1978  */
1979 void dc_link_dp_handle_link_loss(struct dc_link *link);
1980 
1981 /* Determine if hpd rx irq should be handled or ignored
1982  * return true - hpd rx irq should be handled.
1983  * return false - it is safe to ignore hpd rx irq event
1984  */
1985 bool dc_link_dp_allow_hpd_rx_irq(const struct dc_link *link);
1986 
1987 /* Determine if link loss is indicated with a given hpd_irq_dpcd_data.
1988  * @link - link the hpd irq data associated with
1989  * @hpd_irq_dpcd_data - input hpd irq data
1990  * return - true if hpd irq data indicates a link lost
1991  */
1992 bool dc_link_check_link_loss_status(struct dc_link *link,
1993 		union hpd_irq_data *hpd_irq_dpcd_data);
1994 
1995 /* Read hpd rx irq data from a given link
1996  * @link - link where the hpd irq data should be read from
1997  * @irq_data - output hpd irq data
1998  * return - DC_OK if hpd irq data is read successfully, otherwise hpd irq data
1999  * read has failed.
2000  */
2001 enum dc_status dc_link_dp_read_hpd_rx_irq_data(
2002 	struct dc_link *link,
2003 	union hpd_irq_data *irq_data);
2004 
2005 /* The function clears recorded DP RX states in the link. DM should call this
2006  * function when it is resuming from S3 power state to previously connected links.
2007  *
2008  * TODO - in the future we should consider to expand link resume interface to
2009  * support clearing previous rx states. So we don't have to rely on dm to call
2010  * this interface explicitly.
2011  */
2012 void dc_link_clear_dprx_states(struct dc_link *link);
2013 
2014 /* Destruct the mst topology of the link and reset the allocated payload table
2015  *
2016  * NOTE: this should only be called if DM chooses not to call dc_link_detect but
2017  * still wants to reset MST topology on an unplug event */
2018 bool dc_link_reset_cur_dp_mst_topology(struct dc_link *link);
2019 
2020 /* The function calculates effective DP link bandwidth when a given link is
2021  * using the given link settings.
2022  *
2023  * return - total effective link bandwidth in kbps.
2024  */
2025 uint32_t dc_link_bandwidth_kbps(
2026 	const struct dc_link *link,
2027 	const struct dc_link_settings *link_setting);
2028 
2029 struct dp_audio_bandwidth_params {
2030 	const struct dc_crtc_timing *crtc_timing;
2031 	enum dp_link_encoding link_encoding;
2032 	uint32_t channel_count;
2033 	uint32_t sample_rate_hz;
2034 };
2035 
2036 /* The function calculates the minimum size of hblank (in bytes) needed to
2037  * support the specified channel count and sample rate combination, given the
2038  * link encoding and timing to be used. This calculation is not supported
2039  * for 8b/10b SST.
2040  *
2041  * return - min hblank size in bytes, 0 if 8b/10b SST.
2042  */
2043 uint32_t dc_link_required_hblank_size_bytes(
2044 	const struct dc_link *link,
2045 	struct dp_audio_bandwidth_params *audio_params);
2046 
2047 /* The function takes a snapshot of current link resource allocation state
2048  * @dc: pointer to dc of the dm calling this
2049  * @map: a dc link resource snapshot defined internally to dc.
2050  *
2051  * DM needs to capture a snapshot of current link resource allocation mapping
2052  * and store it in its persistent storage.
2053  *
2054  * Some of the link resource is using first come first serve policy.
2055  * The allocation mapping depends on original hotplug order. This information
2056  * is lost after driver is loaded next time. The snapshot is used in order to
2057  * restore link resource to its previous state so user will get consistent
2058  * link capability allocation across reboot.
2059  *
2060  */
2061 void dc_get_cur_link_res_map(const struct dc *dc, uint32_t *map);
2062 
2063 /* This function restores link resource allocation state from a snapshot
2064  * @dc: pointer to dc of the dm calling this
2065  * @map: a dc link resource snapshot defined internally to dc.
2066  *
2067  * DM needs to call this function after initial link detection on boot and
2068  * before first commit streams to restore link resource allocation state
2069  * from previous boot session.
2070  *
2071  * Some of the link resource is using first come first serve policy.
2072  * The allocation mapping depends on original hotplug order. This information
2073  * is lost after driver is loaded next time. The snapshot is used in order to
2074  * restore link resource to its previous state so user will get consistent
2075  * link capability allocation across reboot.
2076  *
2077  */
2078 void dc_restore_link_res_map(const struct dc *dc, uint32_t *map);
2079 
2080 /* TODO: this is not meant to be exposed to DM. Should switch to stream update
2081  * interface i.e stream_update->dsc_config
2082  */
2083 bool dc_link_update_dsc_config(struct pipe_ctx *pipe_ctx);
2084 
2085 /* translate a raw link rate data to bandwidth in kbps */
2086 uint32_t dc_link_bw_kbps_from_raw_frl_link_rate_data(const struct dc *dc, uint8_t bw);
2087 
2088 /* determine the optimal bandwidth given link and required bw.
2089  * @link - current detected link
2090  * @req_bw - requested bandwidth in kbps
2091  * @link_settings - returned most optimal link settings that can fit the
2092  * requested bandwidth
2093  * return - false if link can't support requested bandwidth, true if link
2094  * settings is found.
2095  */
2096 bool dc_link_decide_edp_link_settings(struct dc_link *link,
2097 		struct dc_link_settings *link_settings,
2098 		uint32_t req_bw);
2099 
2100 /* return the max dp link settings can be driven by the link without considering
2101  * connected RX device and its capability
2102  */
2103 bool dc_link_dp_get_max_link_enc_cap(const struct dc_link *link,
2104 		struct dc_link_settings *max_link_enc_cap);
2105 
2106 /* determine when the link is driving MST mode, what DP link channel coding
2107  * format will be used. The decision will remain unchanged until next HPD event.
2108  *
2109  * @link -  a link with DP RX connection
2110  * return - if stream is committed to this link with MST signal type, type of
2111  * channel coding format dc will choose.
2112  */
2113 enum dp_link_encoding dc_link_dp_mst_decide_link_encoding_format(
2114 		const struct dc_link *link);
2115 
2116 /* get max dp link settings the link can enable with all things considered. (i.e
2117  * TX/RX/Cable capabilities and dp override policies.
2118  *
2119  * @link - a link with DP RX connection
2120  * return - max dp link settings the link can enable.
2121  *
2122  */
2123 const struct dc_link_settings *dc_link_get_link_cap(const struct dc_link *link);
2124 
2125 /* Get the highest encoding format that the link supports; highest meaning the
2126  * encoding format which supports the maximum bandwidth.
2127  *
2128  * @link - a link with DP RX connection
2129  * return - highest encoding format link supports.
2130  */
2131 enum dc_link_encoding_format dc_link_get_highest_encoding_format(const struct dc_link *link);
2132 
2133 /* Check if a RX (ex. DP sink, MST hub, passive or active dongle) is connected
2134  * to a link with dp connector signal type.
2135  * @link - a link with dp connector signal type
2136  * return - true if connected, false otherwise
2137  */
2138 bool dc_link_is_dp_sink_present(struct dc_link *link);
2139 
2140 /* Force DP lane settings update to main-link video signal and notify the change
2141  * to DP RX via DPCD. This is a debug interface used for video signal integrity
2142  * tuning purpose. The interface assumes link has already been enabled with DP
2143  * signal.
2144  *
2145  * @lt_settings - a container structure with desired hw_lane_settings
2146  */
2147 void dc_link_set_drive_settings(struct dc *dc,
2148 				struct link_training_settings *lt_settings,
2149 				struct dc_link *link);
2150 
2151 /* Enable a test pattern in Link or PHY layer in an active link for compliance
2152  * test or debugging purpose. The test pattern will remain until next un-plug.
2153  *
2154  * @link - active link with DP signal output enabled.
2155  * @test_pattern - desired test pattern to output.
2156  * NOTE: set to DP_TEST_PATTERN_VIDEO_MODE to disable previous test pattern.
2157  * @test_pattern_color_space - for video test pattern choose a desired color
2158  * space.
2159  * @p_link_settings - For PHY pattern choose a desired link settings
2160  * @p_custom_pattern - some test pattern will require a custom input to
2161  * customize some pattern details. Otherwise keep it to NULL.
2162  * @cust_pattern_size - size of the custom pattern input.
2163  *
2164  */
2165 bool dc_link_dp_set_test_pattern(
2166 	struct dc_link *link,
2167 	enum dp_test_pattern test_pattern,
2168 	enum dp_test_pattern_color_space test_pattern_color_space,
2169 	const struct link_training_settings *p_link_settings,
2170 	const unsigned char *p_custom_pattern,
2171 	unsigned int cust_pattern_size);
2172 
2173 /* Force DP link settings to always use a specific value until reboot to a
2174  * specific link. If link has already been enabled, the interface will also
2175  * switch to desired link settings immediately. This is a debug interface to
2176  * generic dp issue trouble shooting.
2177  */
2178 void dc_link_set_preferred_link_settings(struct dc *dc,
2179 		struct dc_link_settings *link_setting,
2180 		struct dc_link *link);
2181 
2182 /* Force DP link to customize a specific link training behavior by overriding to
2183  * standard DP specs defined protocol. This is a debug interface to trouble shoot
2184  * display specific link training issues or apply some display specific
2185  * workaround in link training.
2186  *
2187  * @link_settings - if not NULL, force preferred link settings to the link.
2188  * @lt_override - a set of override pointers. If any pointer is none NULL, dc
2189  * will apply this particular override in future link training. If NULL is
2190  * passed in, dc resets previous overrides.
2191  * NOTE: DM must keep the memory from override pointers until DM resets preferred
2192  * training settings.
2193  */
2194 void dc_link_set_preferred_training_settings(struct dc *dc,
2195 		struct dc_link_settings *link_setting,
2196 		struct dc_link_training_overrides *lt_overrides,
2197 		struct dc_link *link,
2198 		bool skip_immediate_retrain);
2199 
2200 /* return - true if FEC is supported with connected DP RX, false otherwise */
2201 bool dc_link_is_fec_supported(const struct dc_link *link);
2202 
2203 /* query FEC enablement policy to determine if FEC will be enabled by dc during
2204  * link enablement.
2205  * return - true if FEC should be enabled, false otherwise.
2206  */
2207 bool dc_link_should_enable_fec(const struct dc_link *link);
2208 
2209 /* determine lttpr mode the current link should be enabled with a specific link
2210  * settings.
2211  */
2212 enum lttpr_mode dc_link_decide_lttpr_mode(struct dc_link *link,
2213 		struct dc_link_settings *link_setting);
2214 
2215 /* Force DP RX to update its power state.
2216  * NOTE: this interface doesn't update dp main-link. Calling this function will
2217  * cause DP TX main-link and DP RX power states out of sync. DM has to restore
2218  * RX power state back upon finish DM specific execution requiring DP RX in a
2219  * specific power state.
2220  * @on - true to set DP RX in D0 power state, false to set DP RX in D3 power
2221  * state.
2222  */
2223 void dc_link_dp_receiver_power_ctrl(struct dc_link *link, bool on);
2224 
2225 /* Force link to read base dp receiver caps from dpcd 000h - 00Fh and overwrite
2226  * current value read from extended receiver cap from 02200h - 0220Fh.
2227  * Some DP RX has problems of providing accurate DP receiver caps from extended
2228  * field, this interface is a workaround to revert link back to use base caps.
2229  */
2230 void dc_link_overwrite_extended_receiver_cap(
2231 		struct dc_link *link);
2232 
2233 void dc_link_edp_panel_backlight_power_on(struct dc_link *link,
2234 		bool wait_for_hpd);
2235 
2236 /* Set backlight level of an embedded panel (eDP, LVDS).
2237  * backlight_pwm_u16_16 is unsigned 32 bit with 16 bit integer
2238  * and 16 bit fractional, where 1.0 is max backlight value.
2239  */
2240 bool dc_link_set_backlight_level(const struct dc_link *dc_link,
2241 		struct set_backlight_level_params *backlight_level_params);
2242 
2243 /* Set/get nits-based backlight level of an embedded panel (eDP, LVDS). */
2244 bool dc_link_set_backlight_level_nits(struct dc_link *link,
2245 		bool isHDR,
2246 		uint32_t backlight_millinits,
2247 		uint32_t transition_time_in_ms);
2248 
2249 bool dc_link_get_backlight_level_nits(struct dc_link *link,
2250 		uint32_t *backlight_millinits,
2251 		uint32_t *backlight_millinits_peak);
2252 
2253 int dc_link_get_backlight_level(const struct dc_link *dc_link);
2254 
2255 int dc_link_get_target_backlight_pwm(const struct dc_link *link);
2256 
2257 bool dc_link_set_psr_allow_active(struct dc_link *dc_link, const bool *enable,
2258 		bool wait, bool force_static, const unsigned int *power_opts);
2259 
2260 bool dc_link_get_psr_state(const struct dc_link *dc_link, enum dc_psr_state *state);
2261 
2262 bool dc_link_setup_psr(struct dc_link *dc_link,
2263 		const struct dc_stream_state *stream, struct psr_config *psr_config,
2264 		struct psr_context *psr_context);
2265 
2266 /*
2267  * Communicate with DMUB to allow or disallow Panel Replay on the specified link:
2268  *
2269  * @link: pointer to the dc_link struct instance
2270  * @enable: enable(active) or disable(inactive) replay
2271  * @wait: state transition need to wait the active set completed.
2272  * @force_static: force disable(inactive) the replay
2273  * @power_opts: set power optimazation parameters to DMUB.
2274  *
2275  * return: allow Replay active will return true, else will return false.
2276  */
2277 bool dc_link_set_replay_allow_active(struct dc_link *dc_link, const bool *enable,
2278 		bool wait, bool force_static, const unsigned int *power_opts);
2279 
2280 bool dc_link_get_replay_state(const struct dc_link *dc_link, uint64_t *state);
2281 
2282 /* On eDP links this function call will stall until T12 has elapsed.
2283  * If the panel is not in power off state, this function will return
2284  * immediately.
2285  */
2286 bool dc_link_wait_for_t12(struct dc_link *link);
2287 
2288 /* Determine if dp trace has been initialized to reflect upto date result *
2289  * return - true if trace is initialized and has valid data. False dp trace
2290  * doesn't have valid result.
2291  */
2292 bool dc_dp_trace_is_initialized(struct dc_link *link);
2293 
2294 /* Query a dp trace flag to indicate if the current dp trace data has been
2295  * logged before
2296  */
2297 bool dc_dp_trace_is_logged(struct dc_link *link,
2298 		bool in_detection);
2299 
2300 /* Set dp trace flag to indicate whether DM has already logged the current dp
2301  * trace data. DM can set is_logged to true upon logging and check
2302  * dc_dp_trace_is_logged before logging to avoid logging the same result twice.
2303  */
2304 void dc_dp_trace_set_is_logged_flag(struct dc_link *link,
2305 		bool in_detection,
2306 		bool is_logged);
2307 
2308 /* Obtain driver time stamp for last dp link training end. The time stamp is
2309  * formatted based on dm_get_timestamp DM function.
2310  * @in_detection - true to get link training end time stamp of last link
2311  * training in detection sequence. false to get link training end time stamp
2312  * of last link training in commit (dpms) sequence
2313  */
2314 unsigned long long dc_dp_trace_get_lt_end_timestamp(struct dc_link *link,
2315 		bool in_detection);
2316 
2317 /* Get how many link training attempts dc has done with latest sequence.
2318  * @in_detection - true to get link training count of last link
2319  * training in detection sequence. false to get link training count of last link
2320  * training in commit (dpms) sequence
2321  */
2322 const struct dp_trace_lt_counts *dc_dp_trace_get_lt_counts(struct dc_link *link,
2323 		bool in_detection);
2324 
2325 /* Get how many link loss has happened since last link training attempts */
2326 unsigned int dc_dp_trace_get_link_loss_count(struct dc_link *link);
2327 
2328 /*
2329  *  USB4 DPIA BW ALLOCATION PUBLIC FUNCTIONS
2330  */
2331 /*
2332  * Send a request from DP-Tx requesting to allocate BW remotely after
2333  * allocating it locally. This will get processed by CM and a CB function
2334  * will be called.
2335  *
2336  * @link: pointer to the dc_link struct instance
2337  * @req_bw: The requested bw in Kbyte to allocated
2338  *
2339  * return: none
2340  */
2341 void dc_link_set_usb4_req_bw_req(struct dc_link *link, int req_bw);
2342 
2343 /*
2344  * Handle function for when the status of the Request above is complete.
2345  * We will find out the result of allocating on CM and update structs.
2346  *
2347  * @link: pointer to the dc_link struct instance
2348  * @bw: Allocated or Estimated BW depending on the result
2349  * @result: Response type
2350  *
2351  * return: none
2352  */
2353 void dc_link_handle_usb4_bw_alloc_response(struct dc_link *link,
2354 		uint8_t bw, uint8_t result);
2355 
2356 /*
2357  * Handle the USB4 BW Allocation related functionality here:
2358  * Plug => Try to allocate max bw from timing parameters supported by the sink
2359  * Unplug => de-allocate bw
2360  *
2361  * @link: pointer to the dc_link struct instance
2362  * @peak_bw: Peak bw used by the link/sink
2363  *
2364  * return: allocated bw else return 0
2365  */
2366 int dc_link_dp_dpia_handle_usb4_bandwidth_allocation_for_link(
2367 		struct dc_link *link, int peak_bw);
2368 
2369 /*
2370  * Validate the BW of all the valid DPIA links to make sure it doesn't exceed
2371  * available BW for each host router
2372  *
2373  * @dc: pointer to dc struct
2374  * @stream: pointer to all possible streams
2375  * @count: number of valid DPIA streams
2376  *
2377  * return: TRUE if bw used by DPIAs doesn't exceed available BW else return FALSE
2378  */
2379 bool dc_link_dp_dpia_validate(struct dc *dc, const struct dc_stream_state *streams,
2380 		const unsigned int count);
2381 
2382 /* Sink Interfaces - A sink corresponds to a display output device */
2383 
2384 struct dc_container_id {
2385 	// 128bit GUID in binary form
2386 	unsigned char  guid[16];
2387 	// 8 byte port ID -> ELD.PortID
2388 	unsigned int   portId[2];
2389 	// 128bit GUID in binary formufacturer name -> ELD.ManufacturerName
2390 	unsigned short manufacturerName;
2391 	// 2 byte product code -> ELD.ProductCode
2392 	unsigned short productCode;
2393 };
2394 
2395 
2396 struct dc_sink_dsc_caps {
2397 	// 'true' if these are virtual DPCD's DSC caps (immediately upstream of sink in MST topology),
2398 	// 'false' if they are sink's DSC caps
2399 	bool is_virtual_dpcd_dsc;
2400 	// 'true' if MST topology supports DSC passthrough for sink
2401 	// 'false' if MST topology does not support DSC passthrough
2402 	bool is_dsc_passthrough_supported;
2403 	struct dsc_dec_dpcd_caps dsc_dec_caps;
2404 };
2405 
2406 struct dc_sink_hblank_expansion_caps {
2407 	// 'true' if these are virtual DPCD's HBlank expansion caps (immediately upstream of sink in MST topology),
2408 	// 'false' if they are sink's HBlank expansion caps
2409 	bool is_virtual_dpcd_hblank_expansion;
2410 	struct hblank_expansion_dpcd_caps dpcd_caps;
2411 };
2412 
2413 struct dc_sink_fec_caps {
2414 	bool is_rx_fec_supported;
2415 	bool is_topology_fec_supported;
2416 };
2417 
2418 struct scdc_caps {
2419 	union hdmi_scdc_manufacturer_OUI_data manufacturer_OUI;
2420 	union hdmi_scdc_device_id_data device_id;
2421 };
2422 
2423 /*
2424  * The sink structure contains EDID and other display device properties
2425  */
2426 struct dc_sink {
2427 	enum signal_type sink_signal;
2428 	struct dc_edid dc_edid; /* raw edid */
2429 	struct dc_edid_caps edid_caps; /* parse display caps */
2430 	struct dc_container_id *dc_container_id;
2431 	uint32_t dongle_max_pix_clk;
2432 	void *priv;
2433 	struct stereo_3d_features features_3d[TIMING_3D_FORMAT_MAX];
2434 	bool converter_disable_audio;
2435 
2436 	struct scdc_caps scdc_caps;
2437 	struct dc_sink_dsc_caps dsc_caps;
2438 	struct dc_sink_fec_caps fec_caps;
2439 	struct dc_sink_hblank_expansion_caps hblank_expansion_caps;
2440 
2441 	bool is_vsc_sdp_colorimetry_supported;
2442 
2443 	/* private to DC core */
2444 	struct dc_link *link;
2445 	struct dc_context *ctx;
2446 
2447 	uint32_t sink_id;
2448 
2449 	/* private to dc_sink.c */
2450 	// refcount must be the last member in dc_sink, since we want the
2451 	// sink structure to be logically cloneable up to (but not including)
2452 	// refcount
2453 	struct kref refcount;
2454 };
2455 
2456 void dc_sink_retain(struct dc_sink *sink);
2457 void dc_sink_release(struct dc_sink *sink);
2458 
2459 struct dc_sink_init_data {
2460 	enum signal_type sink_signal;
2461 	struct dc_link *link;
2462 	uint32_t dongle_max_pix_clk;
2463 	bool converter_disable_audio;
2464 };
2465 
2466 struct dc_sink *dc_sink_create(const struct dc_sink_init_data *init_params);
2467 
2468 /* Newer interfaces  */
2469 struct dc_cursor {
2470 	struct dc_plane_address address;
2471 	struct dc_cursor_attributes attributes;
2472 };
2473 
2474 
2475 /* Interrupt interfaces */
2476 enum dc_irq_source dc_interrupt_to_irq_source(
2477 		struct dc *dc,
2478 		uint32_t src_id,
2479 		uint32_t ext_id);
2480 bool dc_interrupt_set(struct dc *dc, enum dc_irq_source src, bool enable);
2481 void dc_interrupt_ack(struct dc *dc, enum dc_irq_source src);
2482 enum dc_irq_source dc_get_hpd_irq_source_at_index(
2483 		struct dc *dc, uint32_t link_index);
2484 
2485 void dc_notify_vsync_int_state(struct dc *dc, struct dc_stream_state *stream, bool enable);
2486 
2487 /* Power Interfaces */
2488 
2489 void dc_set_power_state(
2490 		struct dc *dc,
2491 		enum dc_acpi_cm_power_state power_state);
2492 void dc_resume(struct dc *dc);
2493 
2494 void dc_power_down_on_boot(struct dc *dc);
2495 
2496 /*
2497  * HDCP Interfaces
2498  */
2499 enum hdcp_message_status dc_process_hdcp_msg(
2500 		enum signal_type signal,
2501 		struct dc_link *link,
2502 		struct hdcp_protection_message *message_info);
2503 bool dc_is_dmcu_initialized(struct dc *dc);
2504 
2505 enum dc_status dc_set_clock(struct dc *dc, enum dc_clock_type clock_type, uint32_t clk_khz, uint32_t stepping);
2506 void dc_get_clock(struct dc *dc, enum dc_clock_type clock_type, struct dc_clock_config *clock_cfg);
2507 
2508 bool dc_is_plane_eligible_for_idle_optimizations(struct dc *dc,
2509 		unsigned int pitch,
2510 		unsigned int height,
2511 		enum surface_pixel_format format,
2512 		struct dc_cursor_attributes *cursor_attr);
2513 
2514 #define dc_allow_idle_optimizations(dc, allow) dc_allow_idle_optimizations_internal(dc, allow, __func__)
2515 #define dc_exit_ips_for_hw_access(dc) dc_exit_ips_for_hw_access_internal(dc, __func__)
2516 
2517 void dc_allow_idle_optimizations_internal(struct dc *dc, bool allow, const char *caller_name);
2518 void dc_exit_ips_for_hw_access_internal(struct dc *dc, const char *caller_name);
2519 bool dc_dmub_is_ips_idle_state(struct dc *dc);
2520 
2521 /* set min and max memory clock to lowest and highest DPM level, respectively */
2522 void dc_unlock_memory_clock_frequency(struct dc *dc);
2523 
2524 /* set min memory clock to the min required for current mode, max to maxDPM */
2525 void dc_lock_memory_clock_frequency(struct dc *dc);
2526 
2527 /* set soft max for memclk, to be used for AC/DC switching clock limitations */
2528 void dc_enable_dcmode_clk_limit(struct dc *dc, bool enable);
2529 
2530 /* cleanup on driver unload */
2531 void dc_hardware_release(struct dc *dc);
2532 
2533 /* disables fw based mclk switch */
2534 void dc_mclk_switch_using_fw_based_vblank_stretch_shut_down(struct dc *dc);
2535 
2536 bool dc_set_psr_allow_active(struct dc *dc, bool enable);
2537 
2538 bool dc_set_replay_allow_active(struct dc *dc, bool active);
2539 
2540 bool dc_set_ips_disable(struct dc *dc, unsigned int disable_ips);
2541 
2542 void dc_z10_restore(const struct dc *dc);
2543 void dc_z10_save_init(struct dc *dc);
2544 
2545 bool dc_is_dmub_outbox_supported(struct dc *dc);
2546 bool dc_enable_dmub_notifications(struct dc *dc);
2547 
2548 bool dc_abm_save_restore(
2549 		struct dc *dc,
2550 		struct dc_stream_state *stream,
2551 		struct abm_save_restore *pData);
2552 
2553 void dc_enable_dmub_outbox(struct dc *dc);
2554 
2555 bool dc_process_dmub_aux_transfer_async(struct dc *dc,
2556 				uint32_t link_index,
2557 				struct aux_payload *payload);
2558 
2559 /* Get dc link index from dpia port index */
2560 uint8_t get_link_index_from_dpia_port_index(const struct dc *dc,
2561 				uint8_t dpia_port_index);
2562 
2563 bool dc_process_dmub_set_config_async(struct dc *dc,
2564 				uint32_t link_index,
2565 				struct set_config_cmd_payload *payload,
2566 				struct dmub_notification *notify);
2567 
2568 enum dc_status dc_process_dmub_set_mst_slots(const struct dc *dc,
2569 				uint32_t link_index,
2570 				uint8_t mst_alloc_slots,
2571 				uint8_t *mst_slots_in_use);
2572 
2573 void dc_process_dmub_dpia_set_tps_notification(const struct dc *dc, uint32_t link_index, uint8_t tps);
2574 
2575 void dc_process_dmub_dpia_hpd_int_enable(const struct dc *dc,
2576 				uint32_t hpd_int_enable);
2577 
2578 void dc_print_dmub_diagnostic_data(const struct dc *dc);
2579 
2580 void dc_query_current_properties(struct dc *dc, struct dc_current_properties *properties);
2581 
2582 struct dc_power_profile {
2583 	int power_level; /* Lower is better */
2584 };
2585 
2586 struct dc_power_profile dc_get_power_profile_for_dc_state(const struct dc_state *context);
2587 
2588 unsigned int dc_get_det_buffer_size_from_state(const struct dc_state *context);
2589 
2590 /* DSC Interfaces */
2591 #include "dc_dsc.h"
2592 
2593 /* Disable acc mode Interfaces */
2594 void dc_disable_accelerated_mode(struct dc *dc);
2595 
2596 bool dc_is_timing_changed(struct dc_stream_state *cur_stream,
2597 		       struct dc_stream_state *new_stream);
2598 
2599 #endif /* DC_INTERFACE_H_ */
2600