1 /* Copyright 2012-15 Advanced Micro Devices, Inc. 2 * 3 * Permission is hereby granted, free of charge, to any person obtaining a 4 * copy of this software and associated documentation files (the "Software"), 5 * to deal in the Software without restriction, including without limitation 6 * the rights to use, copy, modify, merge, publish, distribute, sublicense, 7 * and/or sell copies of the Software, and to permit persons to whom the 8 * Software is furnished to do so, subject to the following conditions: 9 * 10 * The above copyright notice and this permission notice shall be included in 11 * all copies or substantial portions of the Software. 12 * 13 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 14 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 15 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 16 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR 17 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, 18 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR 19 * OTHER DEALINGS IN THE SOFTWARE. 20 * 21 * Authors: AMD 22 * 23 */ 24 25 /** 26 * DOC: overview 27 * 28 * Multiple Pipe/Plane Combiner (MPC) is a component in the hardware pipeline 29 * that performs blending of multiple planes, using global and per-pixel alpha. 30 * It also performs post-blending color correction operations according to the 31 * hardware capabilities, such as color transformation matrix and gamma 1D and 32 * 3D LUT. 33 * 34 * MPC receives output from all DPP pipes and combines them to multiple outputs 35 * supporting "M MPC inputs -> N MPC outputs" flexible composition 36 * architecture. It features: 37 * 38 * - Programmable blending structure to allow software controlled blending and 39 * cascading; 40 * - Programmable window location of each DPP in active region of display; 41 * - Combining multiple DPP pipes in one active region when a single DPP pipe 42 * cannot process very large surface; 43 * - Combining multiple DPP from different SLS with blending; 44 * - Stereo formats from single DPP in top-bottom or side-by-side modes; 45 * - Stereo formats from 2 DPPs; 46 * - Alpha blending of multiple layers from different DPP pipes; 47 * - Programmable background color; 48 */ 49 50 #ifndef __DC_MPCC_H__ 51 #define __DC_MPCC_H__ 52 53 #include "dc_hw_types.h" 54 #include "hw_shared.h" 55 #include "transform.h" 56 57 #define MAX_MPCC 6 58 #define MAX_OPP 6 59 60 #define MAX_DWB 2 61 62 enum mpc_output_csc_mode { 63 MPC_OUTPUT_CSC_DISABLE = 0, 64 MPC_OUTPUT_CSC_COEF_A, 65 MPC_OUTPUT_CSC_COEF_B 66 }; 67 68 69 enum mpcc_blend_mode { 70 MPCC_BLEND_MODE_BYPASS, 71 MPCC_BLEND_MODE_TOP_LAYER_PASSTHROUGH, 72 MPCC_BLEND_MODE_TOP_LAYER_ONLY, 73 MPCC_BLEND_MODE_TOP_BOT_BLENDING 74 }; 75 76 /** 77 * enum mpcc_alpha_blend_mode - define the alpha blend mode regarding pixel 78 * alpha and plane alpha values 79 */ 80 enum mpcc_alpha_blend_mode { 81 /** 82 * @MPCC_ALPHA_BLEND_MODE_PER_PIXEL_ALPHA: per pixel alpha using DPP 83 * alpha value 84 */ 85 MPCC_ALPHA_BLEND_MODE_PER_PIXEL_ALPHA, 86 /** 87 * @MPCC_ALPHA_BLEND_MODE_PER_PIXEL_ALPHA_COMBINED_GLOBAL_GAIN: per 88 * pixel alpha using DPP alpha value multiplied by a global gain (plane 89 * alpha) 90 */ 91 MPCC_ALPHA_BLEND_MODE_PER_PIXEL_ALPHA_COMBINED_GLOBAL_GAIN, 92 /** 93 * @MPCC_ALPHA_BLEND_MODE_GLOBAL_ALPHA: global alpha value, ignores 94 * pixel alpha and consider only plane alpha 95 */ 96 MPCC_ALPHA_BLEND_MODE_GLOBAL_ALPHA 97 }; 98 99 enum mpcc_movable_cm_location { 100 MPCC_MOVABLE_CM_LOCATION_BEFORE, 101 MPCC_MOVABLE_CM_LOCATION_AFTER, 102 }; 103 104 enum MCM_LUT_XABLE { 105 MCM_LUT_DISABLE, 106 MCM_LUT_DISABLED = MCM_LUT_DISABLE, 107 MCM_LUT_ENABLE, 108 MCM_LUT_ENABLED = MCM_LUT_ENABLE, 109 }; 110 111 enum MCM_LUT_ID { 112 MCM_LUT_3DLUT, 113 MCM_LUT_1DLUT, 114 MCM_LUT_SHAPER 115 }; 116 117 union mcm_lut_params { 118 const struct pwl_params *pwl; 119 const struct tetrahedral_params *lut3d; 120 }; 121 122 /** 123 * struct mpcc_blnd_cfg - MPCC blending configuration 124 */ 125 struct mpcc_blnd_cfg { 126 /** 127 * @black_color: background color. 128 */ 129 struct tg_color black_color; 130 131 /** 132 * @alpha_mode: alpha blend mode (MPCC_ALPHA_BLND_MODE). 133 */ 134 enum mpcc_alpha_blend_mode alpha_mode; 135 136 /** 137 * @pre_multiplied_alpha: 138 * Whether pixel color values were pre-multiplied by the alpha channel 139 * (MPCC_ALPHA_MULTIPLIED_MODE). 140 */ 141 bool pre_multiplied_alpha; 142 143 /** 144 * @global_gain: Used when blend mode considers both pixel alpha and plane. 145 */ 146 int global_gain; 147 148 /** 149 * @global_alpha: Plane alpha value. 150 */ 151 int global_alpha; 152 153 /** 154 * @overlap_only: Whether overlapping of different planes is allowed. 155 */ 156 bool overlap_only; 157 158 /* MPCC top/bottom gain settings */ 159 160 /** 161 * @bottom_gain_mode: Blend mode for bottom gain setting. 162 */ 163 int bottom_gain_mode; 164 165 /** 166 * @background_color_bpc: Background color for bpc. 167 */ 168 int background_color_bpc; 169 170 /** 171 * @top_gain: Top gain setting. 172 */ 173 int top_gain; 174 175 /** 176 * @bottom_inside_gain: Blend mode for bottom inside. 177 */ 178 int bottom_inside_gain; 179 180 /** 181 * @bottom_outside_gain: Blend mode for bottom outside. 182 */ 183 int bottom_outside_gain; 184 }; 185 186 struct mpc_grph_gamut_adjustment { 187 struct fixed31_32 temperature_matrix[CSC_TEMPERATURE_MATRIX_SIZE]; 188 enum graphics_gamut_adjust_type gamut_adjust_type; 189 enum mpcc_gamut_remap_id mpcc_gamut_remap_block_id; 190 }; 191 192 struct mpcc_sm_cfg { 193 bool enable; 194 /* 0-single plane,2-row subsampling,4-column subsampling,6-checkboard subsampling */ 195 int sm_mode; 196 /* 0- disable frame alternate, 1- enable frame alternate */ 197 bool frame_alt; 198 /* 0- disable field alternate, 1- enable field alternate */ 199 bool field_alt; 200 /* 0-no force,2-force frame polarity from top,3-force frame polarity from bottom */ 201 int force_next_frame_porlarity; 202 /* 0-no force,2-force field polarity from top,3-force field polarity from bottom */ 203 int force_next_field_polarity; 204 }; 205 206 struct mpc_denorm_clamp { 207 int clamp_max_r_cr; 208 int clamp_min_r_cr; 209 int clamp_max_g_y; 210 int clamp_min_g_y; 211 int clamp_max_b_cb; 212 int clamp_min_b_cb; 213 }; 214 215 struct mpc_dwb_flow_control { 216 int flow_ctrl_mode; 217 int flow_ctrl_cnt0; 218 int flow_ctrl_cnt1; 219 }; 220 221 /** 222 * struct mpcc - MPCC connection and blending configuration for a single MPCC instance. 223 * 224 * This struct is used as a node in an MPC tree. 225 */ 226 struct mpcc { 227 /** 228 * @mpcc_id: MPCC physical instance. 229 */ 230 int mpcc_id; 231 232 /** 233 * @dpp_id: DPP input to this MPCC 234 */ 235 int dpp_id; 236 237 /** 238 * @mpcc_bot: Pointer to bottom layer MPCC. NULL when not connected. 239 */ 240 struct mpcc *mpcc_bot; 241 242 /** 243 * @blnd_cfg: The blending configuration for this MPCC. 244 */ 245 struct mpcc_blnd_cfg blnd_cfg; 246 247 /** 248 * @sm_cfg: stereo mix setting for this MPCC 249 */ 250 struct mpcc_sm_cfg sm_cfg; 251 252 /** 253 * @shared_bottom: 254 * 255 * If MPCC output to both OPP and DWB endpoints, true. Otherwise, false. 256 */ 257 bool shared_bottom; 258 }; 259 260 /** 261 * struct mpc_tree - MPC tree represents all MPCC connections for a pipe. 262 * 263 * 264 */ 265 struct mpc_tree { 266 /** 267 * @opp_id: The OPP instance that owns this MPC tree. 268 */ 269 int opp_id; 270 271 /** 272 * @opp_list: the top MPCC layer of the MPC tree that outputs to OPP endpoint 273 */ 274 struct mpcc *opp_list; 275 }; 276 277 struct mpc { 278 const struct mpc_funcs *funcs; 279 struct dc_context *ctx; 280 281 struct mpcc mpcc_array[MAX_MPCC]; 282 struct pwl_params blender_params; 283 bool cm_bypass_mode; 284 }; 285 286 struct mpcc_state { 287 uint32_t opp_id; 288 uint32_t dpp_id; 289 uint32_t bot_mpcc_id; 290 uint32_t mode; 291 uint32_t alpha_mode; 292 uint32_t pre_multiplied_alpha; 293 uint32_t overlap_only; 294 uint32_t idle; 295 uint32_t busy; 296 uint32_t shaper_lut_mode; 297 uint32_t lut3d_mode; 298 uint32_t lut3d_bit_depth; 299 uint32_t lut3d_size; 300 uint32_t rgam_mode; 301 uint32_t rgam_lut; 302 struct mpc_grph_gamut_adjustment gamut_remap; 303 }; 304 305 /** 306 * struct mpc_funcs - funcs 307 */ 308 struct mpc_funcs { 309 void (*read_mpcc_state)( 310 struct mpc *mpc, 311 int mpcc_inst, 312 struct mpcc_state *s); 313 314 /** 315 * @insert_plane: 316 * 317 * Insert DPP into MPC tree based on specified blending position. 318 * Only used for planes that are part of blending chain for OPP output 319 * 320 * Parameters: 321 * 322 * - [in/out] mpc - MPC context. 323 * - [in/out] tree - MPC tree structure that plane will be added to. 324 * - [in] blnd_cfg - MPCC blending configuration for the new blending layer. 325 * - [in] sm_cfg - MPCC stereo mix configuration for the new blending layer. 326 * stereo mix must disable for the very bottom layer of the tree config. 327 * - [in] insert_above_mpcc - Insert new plane above this MPCC. 328 * If NULL, insert as bottom plane. 329 * - [in] dpp_id - DPP instance for the plane to be added. 330 * - [in] mpcc_id - The MPCC physical instance to use for blending. 331 * 332 * Return: 333 * 334 * struct mpcc* - MPCC that was added. 335 */ 336 struct mpcc* (*insert_plane)( 337 struct mpc *mpc, 338 struct mpc_tree *tree, 339 struct mpcc_blnd_cfg *blnd_cfg, 340 struct mpcc_sm_cfg *sm_cfg, 341 struct mpcc *insert_above_mpcc, 342 int dpp_id, 343 int mpcc_id); 344 345 /** 346 * @remove_mpcc: 347 * 348 * Remove a specified MPCC from the MPC tree. 349 * 350 * Parameters: 351 * 352 * - [in/out] mpc - MPC context. 353 * - [in/out] tree - MPC tree structure that plane will be removed from. 354 * - [in/out] mpcc - MPCC to be removed from tree. 355 * 356 * Return: 357 * 358 * void 359 */ 360 void (*remove_mpcc)( 361 struct mpc *mpc, 362 struct mpc_tree *tree, 363 struct mpcc *mpcc); 364 365 /** 366 * @mpc_init: 367 * 368 * Reset the MPCC HW status by disconnecting all muxes. 369 * 370 * Parameters: 371 * 372 * - [in/out] mpc - MPC context. 373 * 374 * Return: 375 * 376 * void 377 */ 378 void (*mpc_init)(struct mpc *mpc); 379 void (*mpc_init_single_inst)( 380 struct mpc *mpc, 381 unsigned int mpcc_id); 382 383 /** 384 * @update_blending: 385 * 386 * Update the blending configuration for a specified MPCC. 387 * 388 * Parameters: 389 * 390 * - [in/out] mpc - MPC context. 391 * - [in] blnd_cfg - MPCC blending configuration. 392 * - [in] mpcc_id - The MPCC physical instance. 393 * 394 * Return: 395 * 396 * void 397 */ 398 void (*update_blending)( 399 struct mpc *mpc, 400 struct mpcc_blnd_cfg *blnd_cfg, 401 int mpcc_id); 402 403 /** 404 * @cursor_lock: 405 * 406 * Lock cursor updates for the specified OPP. OPP defines the set of 407 * MPCC that are locked together for cursor. 408 * 409 * Parameters: 410 * 411 * - [in] mpc - MPC context. 412 * - [in] opp_id - The OPP to lock cursor updates on 413 * - [in] lock - lock/unlock the OPP 414 * 415 * Return: 416 * 417 * void 418 */ 419 void (*cursor_lock)( 420 struct mpc *mpc, 421 int opp_id, 422 bool lock); 423 424 /** 425 * @insert_plane_to_secondary: 426 * 427 * Add DPP into secondary MPC tree based on specified blending 428 * position. Only used for planes that are part of blending chain for 429 * DWB output 430 * 431 * Parameters: 432 * 433 * - [in/out] mpc - MPC context. 434 * - [in/out] tree - MPC tree structure that plane will be added to. 435 * - [in] blnd_cfg - MPCC blending configuration for the new blending layer. 436 * - [in] sm_cfg - MPCC stereo mix configuration for the new blending layer. 437 * stereo mix must disable for the very bottom layer of the tree config. 438 * - [in] insert_above_mpcc - Insert new plane above this MPCC. If 439 * NULL, insert as bottom plane. 440 * - [in] dpp_id - DPP instance for the plane to be added. 441 * - [in] mpcc_id - The MPCC physical instance to use for blending. 442 * 443 * Return: 444 * 445 * struct mpcc* - MPCC that was added. 446 */ 447 struct mpcc* (*insert_plane_to_secondary)( 448 struct mpc *mpc, 449 struct mpc_tree *tree, 450 struct mpcc_blnd_cfg *blnd_cfg, 451 struct mpcc_sm_cfg *sm_cfg, 452 struct mpcc *insert_above_mpcc, 453 int dpp_id, 454 int mpcc_id); 455 456 /** 457 * @remove_mpcc_from_secondary: 458 * 459 * Remove a specified DPP from the 'secondary' MPC tree. 460 * 461 * Parameters: 462 * 463 * - [in/out] mpc - MPC context. 464 * - [in/out] tree - MPC tree structure that plane will be removed from. 465 * - [in] mpcc - MPCC to be removed from tree. 466 * 467 * Return: 468 * 469 * void 470 */ 471 void (*remove_mpcc_from_secondary)( 472 struct mpc *mpc, 473 struct mpc_tree *tree, 474 struct mpcc *mpcc); 475 476 struct mpcc* (*get_mpcc_for_dpp_from_secondary)( 477 struct mpc_tree *tree, 478 int dpp_id); 479 480 struct mpcc* (*get_mpcc_for_dpp)( 481 struct mpc_tree *tree, 482 int dpp_id); 483 484 void (*wait_for_idle)(struct mpc *mpc, int id); 485 486 void (*assert_mpcc_idle_before_connect)(struct mpc *mpc, int mpcc_id); 487 488 void (*init_mpcc_list_from_hw)( 489 struct mpc *mpc, 490 struct mpc_tree *tree); 491 492 void (*set_denorm)(struct mpc *mpc, 493 int opp_id, 494 enum dc_color_depth output_depth); 495 496 void (*set_denorm_clamp)( 497 struct mpc *mpc, 498 int opp_id, 499 struct mpc_denorm_clamp denorm_clamp); 500 501 void (*set_output_csc)(struct mpc *mpc, 502 int opp_id, 503 const uint16_t *regval, 504 enum mpc_output_csc_mode ocsc_mode); 505 506 void (*set_ocsc_default)(struct mpc *mpc, 507 int opp_id, 508 enum dc_color_space color_space, 509 enum mpc_output_csc_mode ocsc_mode); 510 511 void (*set_output_gamma)( 512 struct mpc *mpc, 513 int mpcc_id, 514 const struct pwl_params *params); 515 void (*power_on_mpc_mem_pwr)( 516 struct mpc *mpc, 517 int mpcc_id, 518 bool power_on); 519 void (*set_dwb_mux)( 520 struct mpc *mpc, 521 int dwb_id, 522 int mpcc_id); 523 524 void (*disable_dwb_mux)( 525 struct mpc *mpc, 526 int dwb_id); 527 528 bool (*is_dwb_idle)( 529 struct mpc *mpc, 530 int dwb_id); 531 532 void (*set_out_rate_control)( 533 struct mpc *mpc, 534 int opp_id, 535 bool enable, 536 bool rate_2x_mode, 537 struct mpc_dwb_flow_control *flow_control); 538 539 void (*set_gamut_remap)( 540 struct mpc *mpc, 541 int mpcc_id, 542 const struct mpc_grph_gamut_adjustment *adjust); 543 544 bool (*program_1dlut)( 545 struct mpc *mpc, 546 const struct pwl_params *params, 547 uint32_t rmu_idx); 548 549 bool (*program_shaper)( 550 struct mpc *mpc, 551 const struct pwl_params *params, 552 uint32_t rmu_idx); 553 554 uint32_t (*acquire_rmu)(struct mpc *mpc, int mpcc_id, int rmu_idx); 555 556 bool (*program_3dlut)( 557 struct mpc *mpc, 558 const struct tetrahedral_params *params, 559 int rmu_idx); 560 561 int (*release_rmu)(struct mpc *mpc, int mpcc_id); 562 563 unsigned int (*get_mpc_out_mux)( 564 struct mpc *mpc, 565 int opp_id); 566 567 void (*set_bg_color)(struct mpc *mpc, 568 struct tg_color *bg_color, 569 int mpcc_id); 570 void (*set_mpc_mem_lp_mode)(struct mpc *mpc); 571 void (*set_movable_cm_location)(struct mpc *mpc, enum mpcc_movable_cm_location location, int mpcc_id); 572 void (*update_3dlut_fast_load_select)(struct mpc *mpc, int mpcc_id, int hubp_idx); 573 void (*get_3dlut_fast_load_status)(struct mpc *mpc, int mpcc_id, uint32_t *done, uint32_t *soft_underflow, uint32_t *hard_underflow); 574 void (*populate_lut)(struct mpc *mpc, const enum MCM_LUT_ID id, const union mcm_lut_params params, 575 bool lut_bank_a, int mpcc_id); 576 void (*program_lut_read_write_control)(struct mpc *mpc, const enum MCM_LUT_ID id, bool lut_bank_a, int mpcc_id); 577 void (*program_lut_mode)(struct mpc *mpc, const enum MCM_LUT_ID id, const enum MCM_LUT_XABLE xable, 578 bool lut_bank_a, int mpcc_id); 579 void (*program_3dlut_size)(struct mpc *mpc, bool is_17x17x17, int mpcc_id); 580 }; 581 582 #endif 583