xref: /linux/drivers/gpu/drm/i915/display/intel_vdsc.c (revision f86fd32d)
1 // SPDX-License-Identifier: MIT
2 /*
3  * Copyright © 2018 Intel Corporation
4  *
5  * Author: Gaurav K Singh <gaurav.k.singh@intel.com>
6  *         Manasi Navare <manasi.d.navare@intel.com>
7  */
8 
9 #include <drm/i915_drm.h>
10 
11 #include "i915_drv.h"
12 #include "intel_display_types.h"
13 #include "intel_dsi.h"
14 #include "intel_vdsc.h"
15 
16 enum ROW_INDEX_BPP {
17 	ROW_INDEX_6BPP = 0,
18 	ROW_INDEX_8BPP,
19 	ROW_INDEX_10BPP,
20 	ROW_INDEX_12BPP,
21 	ROW_INDEX_15BPP,
22 	MAX_ROW_INDEX
23 };
24 
25 enum COLUMN_INDEX_BPC {
26 	COLUMN_INDEX_8BPC = 0,
27 	COLUMN_INDEX_10BPC,
28 	COLUMN_INDEX_12BPC,
29 	COLUMN_INDEX_14BPC,
30 	COLUMN_INDEX_16BPC,
31 	MAX_COLUMN_INDEX
32 };
33 
34 /* From DSC_v1.11 spec, rc_parameter_Set syntax element typically constant */
35 static const u16 rc_buf_thresh[] = {
36 	896, 1792, 2688, 3584, 4480, 5376, 6272, 6720, 7168, 7616,
37 	7744, 7872, 8000, 8064
38 };
39 
40 struct rc_parameters {
41 	u16 initial_xmit_delay;
42 	u8 first_line_bpg_offset;
43 	u16 initial_offset;
44 	u8 flatness_min_qp;
45 	u8 flatness_max_qp;
46 	u8 rc_quant_incr_limit0;
47 	u8 rc_quant_incr_limit1;
48 	struct drm_dsc_rc_range_parameters rc_range_params[DSC_NUM_BUF_RANGES];
49 };
50 
51 /*
52  * Selected Rate Control Related Parameter Recommended Values
53  * from DSC_v1.11 spec & C Model release: DSC_model_20161212
54  */
55 static const struct rc_parameters rc_parameters[][MAX_COLUMN_INDEX] = {
56 {
57 	/* 6BPP/8BPC */
58 	{ 768, 15, 6144, 3, 13, 11, 11, {
59 		{ 0, 4, 0 }, { 1, 6, -2 }, { 3, 8, -2 }, { 4, 8, -4 },
60 		{ 5, 9, -6 }, { 5, 9, -6 }, { 6, 9, -6 }, { 6, 10, -8 },
61 		{ 7, 11, -8 }, { 8, 12, -10 }, { 9, 12, -10 }, { 10, 12, -12 },
62 		{ 10, 12, -12 }, { 11, 12, -12 }, { 13, 14, -12 }
63 		}
64 	},
65 	/* 6BPP/10BPC */
66 	{ 768, 15, 6144, 7, 17, 15, 15, {
67 		{ 0, 8, 0 }, { 3, 10, -2 }, { 7, 12, -2 }, { 8, 12, -4 },
68 		{ 9, 13, -6 }, { 9, 13, -6 }, { 10, 13, -6 }, { 10, 14, -8 },
69 		{ 11, 15, -8 }, { 12, 16, -10 }, { 13, 16, -10 },
70 		{ 14, 16, -12 }, { 14, 16, -12 }, { 15, 16, -12 },
71 		{ 17, 18, -12 }
72 		}
73 	},
74 	/* 6BPP/12BPC */
75 	{ 768, 15, 6144, 11, 21, 19, 19, {
76 		{ 0, 12, 0 }, { 5, 14, -2 }, { 11, 16, -2 }, { 12, 16, -4 },
77 		{ 13, 17, -6 }, { 13, 17, -6 }, { 14, 17, -6 }, { 14, 18, -8 },
78 		{ 15, 19, -8 }, { 16, 20, -10 }, { 17, 20, -10 },
79 		{ 18, 20, -12 }, { 18, 20, -12 }, { 19, 20, -12 },
80 		{ 21, 22, -12 }
81 		}
82 	},
83 	/* 6BPP/14BPC */
84 	{ 768, 15, 6144, 15, 25, 23, 27, {
85 		{ 0, 16, 0 }, { 7, 18, -2 }, { 15, 20, -2 }, { 16, 20, -4 },
86 		{ 17, 21, -6 }, { 17, 21, -6 }, { 18, 21, -6 }, { 18, 22, -8 },
87 		{ 19, 23, -8 }, { 20, 24, -10 }, { 21, 24, -10 },
88 		{ 22, 24, -12 }, { 22, 24, -12 }, { 23, 24, -12 },
89 		{ 25, 26, -12 }
90 		}
91 	},
92 	/* 6BPP/16BPC */
93 	{ 768, 15, 6144, 19, 29, 27, 27, {
94 		{ 0, 20, 0 }, { 9, 22, -2 }, { 19, 24, -2 }, { 20, 24, -4 },
95 		{ 21, 25, -6 }, { 21, 25, -6 }, { 22, 25, -6 }, { 22, 26, -8 },
96 		{ 23, 27, -8 }, { 24, 28, -10 }, { 25, 28, -10 },
97 		{ 26, 28, -12 }, { 26, 28, -12 }, { 27, 28, -12 },
98 		{ 29, 30, -12 }
99 		}
100 	},
101 },
102 {
103 	/* 8BPP/8BPC */
104 	{ 512, 12, 6144, 3, 12, 11, 11, {
105 		{ 0, 4, 2 }, { 0, 4, 0 }, { 1, 5, 0 }, { 1, 6, -2 },
106 		{ 3, 7, -4 }, { 3, 7, -6 }, { 3, 7, -8 }, { 3, 8, -8 },
107 		{ 3, 9, -8 }, { 3, 10, -10 }, { 5, 11, -10 }, { 5, 12, -12 },
108 		{ 5, 13, -12 }, { 7, 13, -12 }, { 13, 15, -12 }
109 		}
110 	},
111 	/* 8BPP/10BPC */
112 	{ 512, 12, 6144, 7, 16, 15, 15, {
113 		{ 0, 4, 2 }, { 4, 8, 0 }, { 5, 9, 0 }, { 5, 10, -2 },
114 		{ 7, 11, -4 }, { 7, 11, -6 }, { 7, 11, -8 }, { 7, 12, -8 },
115 		{ 7, 13, -8 }, { 7, 14, -10 }, { 9, 15, -10 }, { 9, 16, -12 },
116 		{ 9, 17, -12 }, { 11, 17, -12 }, { 17, 19, -12 }
117 		}
118 	},
119 	/* 8BPP/12BPC */
120 	{ 512, 12, 6144, 11, 20, 19, 19, {
121 		{ 0, 12, 2 }, { 4, 12, 0 }, { 9, 13, 0 }, { 9, 14, -2 },
122 		{ 11, 15, -4 }, { 11, 15, -6 }, { 11, 15, -8 }, { 11, 16, -8 },
123 		{ 11, 17, -8 }, { 11, 18, -10 }, { 13, 19, -10 },
124 		{ 13, 20, -12 }, { 13, 21, -12 }, { 15, 21, -12 },
125 		{ 21, 23, -12 }
126 		}
127 	},
128 	/* 8BPP/14BPC */
129 	{ 512, 12, 6144, 15, 24, 23, 23, {
130 		{ 0, 12, 0 }, { 5, 13, 0 }, { 11, 15, 0 }, { 12, 17, -2 },
131 		{ 15, 19, -4 }, { 15, 19, -6 }, { 15, 19, -8 }, { 15, 20, -8 },
132 		{ 15, 21, -8 }, { 15, 22, -10 }, { 17, 22, -10 },
133 		{ 17, 23, -12 }, { 17, 23, -12 }, { 21, 24, -12 },
134 		{ 24, 25, -12 }
135 		}
136 	},
137 	/* 8BPP/16BPC */
138 	{ 512, 12, 6144, 19, 28, 27, 27, {
139 		{ 0, 12, 2 }, { 6, 14, 0 }, { 13, 17, 0 }, { 15, 20, -2 },
140 		{ 19, 23, -4 }, { 19, 23, -6 }, { 19, 23, -8 }, { 19, 24, -8 },
141 		{ 19, 25, -8 }, { 19, 26, -10 }, { 21, 26, -10 },
142 		{ 21, 27, -12 }, { 21, 27, -12 }, { 25, 28, -12 },
143 		{ 28, 29, -12 }
144 		}
145 	},
146 },
147 {
148 	/* 10BPP/8BPC */
149 	{ 410, 15, 5632, 3, 12, 11, 11, {
150 		{ 0, 3, 2 }, { 0, 4, 0 }, { 1, 5, 0 }, { 2, 6, -2 },
151 		{ 3, 7, -4 }, { 3, 7, -6 }, { 3, 7, -8 }, { 3, 8, -8 },
152 		{ 3, 9, -8 }, { 3, 9, -10 }, { 5, 10, -10 }, { 5, 10, -10 },
153 		{ 5, 11, -12 }, { 7, 11, -12 }, { 11, 12, -12 }
154 		}
155 	},
156 	/* 10BPP/10BPC */
157 	{ 410, 15, 5632, 7, 16, 15, 15, {
158 		{ 0, 7, 2 }, { 4, 8, 0 }, { 5, 9, 0 }, { 6, 10, -2 },
159 		{ 7, 11, -4 }, { 7, 11, -6 }, { 7, 11, -8 }, { 7, 12, -8 },
160 		{ 7, 13, -8 }, { 7, 13, -10 }, { 9, 14, -10 }, { 9, 14, -10 },
161 		{ 9, 15, -12 }, { 11, 15, -12 }, { 15, 16, -12 }
162 		}
163 	},
164 	/* 10BPP/12BPC */
165 	{ 410, 15, 5632, 11, 20, 19, 19, {
166 		{ 0, 11, 2 }, { 4, 12, 0 }, { 9, 13, 0 }, { 10, 14, -2 },
167 		{ 11, 15, -4 }, { 11, 15, -6 }, { 11, 15, -8 }, { 11, 16, -8 },
168 		{ 11, 17, -8 }, { 11, 17, -10 }, { 13, 18, -10 },
169 		{ 13, 18, -10 }, { 13, 19, -12 }, { 15, 19, -12 },
170 		{ 19, 20, -12 }
171 		}
172 	},
173 	/* 10BPP/14BPC */
174 	{ 410, 15, 5632, 15, 24, 23, 23, {
175 		{ 0, 11, 2 }, { 5, 13, 0 }, { 11, 15, 0 }, { 13, 18, -2 },
176 		{ 15, 19, -4 }, { 15, 19, -6 }, { 15, 19, -8 }, { 15, 20, -8 },
177 		{ 15, 21, -8 }, { 15, 21, -10 }, { 17, 22, -10 },
178 		{ 17, 22, -10 }, { 17, 23, -12 }, { 19, 23, -12 },
179 		{ 23, 24, -12 }
180 		}
181 	},
182 	/* 10BPP/16BPC */
183 	{ 410, 15, 5632, 19, 28, 27, 27, {
184 		{ 0, 11, 2 }, { 6, 14, 0 }, { 13, 17, 0 }, { 16, 20, -2 },
185 		{ 19, 23, -4 }, { 19, 23, -6 }, { 19, 23, -8 }, { 19, 24, -8 },
186 		{ 19, 25, -8 }, { 19, 25, -10 }, { 21, 26, -10 },
187 		{ 21, 26, -10 }, { 21, 27, -12 }, { 23, 27, -12 },
188 		{ 27, 28, -12 }
189 		}
190 	},
191 },
192 {
193 	/* 12BPP/8BPC */
194 	{ 341, 15, 2048, 3, 12, 11, 11, {
195 		{ 0, 2, 2 }, { 0, 4, 0 }, { 1, 5, 0 }, { 1, 6, -2 },
196 		{ 3, 7, -4 }, { 3, 7, -6 }, { 3, 7, -8 }, { 3, 8, -8 },
197 		{ 3, 9, -8 }, { 3, 10, -10 }, { 5, 11, -10 },
198 		{ 5, 12, -12 }, { 5, 13, -12 }, { 7, 13, -12 }, { 13, 15, -12 }
199 		}
200 	},
201 	/* 12BPP/10BPC */
202 	{ 341, 15, 2048, 7, 16, 15, 15, {
203 		{ 0, 2, 2 }, { 2, 5, 0 }, { 3, 7, 0 }, { 4, 8, -2 },
204 		{ 6, 9, -4 }, { 7, 10, -6 }, { 7, 11, -8 }, { 7, 12, -8 },
205 		{ 7, 13, -8 }, { 7, 14, -10 }, { 9, 15, -10 }, { 9, 16, -12 },
206 		{ 9, 17, -12 }, { 11, 17, -12 }, { 17, 19, -12 }
207 		}
208 	},
209 	/* 12BPP/12BPC */
210 	{ 341, 15, 2048, 11, 20, 19, 19, {
211 		{ 0, 6, 2 }, { 4, 9, 0 }, { 7, 11, 0 }, { 8, 12, -2 },
212 		{ 10, 13, -4 }, { 11, 14, -6 }, { 11, 15, -8 }, { 11, 16, -8 },
213 		{ 11, 17, -8 }, { 11, 18, -10 }, { 13, 19, -10 },
214 		{ 13, 20, -12 }, { 13, 21, -12 }, { 15, 21, -12 },
215 		{ 21, 23, -12 }
216 		}
217 	},
218 	/* 12BPP/14BPC */
219 	{ 341, 15, 2048, 15, 24, 23, 23, {
220 		{ 0, 6, 2 }, { 7, 10, 0 }, { 9, 13, 0 }, { 11, 16, -2 },
221 		{ 14, 17, -4 }, { 15, 18, -6 }, { 15, 19, -8 }, { 15, 20, -8 },
222 		{ 15, 20, -8 }, { 15, 21, -10 }, { 17, 21, -10 },
223 		{ 17, 21, -12 }, { 17, 21, -12 }, { 19, 22, -12 },
224 		{ 22, 23, -12 }
225 		}
226 	},
227 	/* 12BPP/16BPC */
228 	{ 341, 15, 2048, 19, 28, 27, 27, {
229 		{ 0, 6, 2 }, { 6, 11, 0 }, { 11, 15, 0 }, { 14, 18, -2 },
230 		{ 18, 21, -4 }, { 19, 22, -6 }, { 19, 23, -8 }, { 19, 24, -8 },
231 		{ 19, 24, -8 }, { 19, 25, -10 }, { 21, 25, -10 },
232 		{ 21, 25, -12 }, { 21, 25, -12 }, { 23, 26, -12 },
233 		{ 26, 27, -12 }
234 		}
235 	},
236 },
237 {
238 	/* 15BPP/8BPC */
239 	{ 273, 15, 2048, 3, 12, 11, 11, {
240 		{ 0, 0, 10 }, { 0, 1, 8 }, { 0, 1, 6 }, { 0, 2, 4 },
241 		{ 1, 2, 2 }, { 1, 3, 0 }, { 1, 3, -2 }, { 2, 4, -4 },
242 		{ 2, 5, -6 }, { 3, 5, -8 }, { 4, 6, -10 }, { 4, 7, -10 },
243 		{ 5, 7, -12 }, { 7, 8, -12 }, { 8, 9, -12 }
244 		}
245 	},
246 	/* 15BPP/10BPC */
247 	{ 273, 15, 2048, 7, 16, 15, 15, {
248 		{ 0, 2, 10 }, { 2, 5, 8 }, { 3, 5, 6 }, { 4, 6, 4 },
249 		{ 5, 6, 2 }, { 5, 7, 0 }, { 5, 7, -2 }, { 6, 8, -4 },
250 		{ 6, 9, -6 }, { 7, 9, -8 }, { 8, 10, -10 }, { 8, 11, -10 },
251 		{ 9, 11, -12 }, { 11, 12, -12 }, { 12, 13, -12 }
252 		}
253 	},
254 	/* 15BPP/12BPC */
255 	{ 273, 15, 2048, 11, 20, 19, 19, {
256 		{ 0, 4, 10 }, { 2, 7, 8 }, { 4, 9, 6 }, { 6, 11, 4 },
257 		{ 9, 11, 2 }, { 9, 11, 0 }, { 9, 12, -2 }, { 10, 12, -4 },
258 		{ 11, 13, -6 }, { 11, 13, -8 }, { 12, 14, -10 },
259 		{ 13, 15, -10 }, { 13, 15, -12 }, { 15, 16, -12 },
260 		{ 16, 17, -12 }
261 		}
262 	},
263 	/* 15BPP/14BPC */
264 	{ 273, 15, 2048, 15, 24, 23, 23, {
265 		{ 0, 4, 10 }, { 3, 8, 8 }, { 6, 11, 6 }, { 9, 14, 4 },
266 		{ 13, 15, 2 }, { 13, 15, 0 }, { 13, 16, -2 }, { 14, 16, -4 },
267 		{ 15, 17, -6 }, { 15, 17, -8 }, { 16, 18, -10 },
268 		{ 17, 19, -10 }, { 17, 19, -12 }, { 19, 20, -12 },
269 		{ 20, 21, -12 }
270 		}
271 	},
272 	/* 15BPP/16BPC */
273 	{ 273, 15, 2048, 19, 28, 27, 27, {
274 		{ 0, 4, 10 }, { 4, 9, 8 }, { 8, 13, 6 }, { 12, 17, 4 },
275 		{ 17, 19, 2 }, { 17, 20, 0 }, { 17, 20, -2 }, { 18, 20, -4 },
276 		{ 19, 21, -6 }, { 19, 21, -8 }, { 20, 22, -10 },
277 		{ 21, 23, -10 }, { 21, 23, -12 }, { 23, 24, -12 },
278 		{ 24, 25, -12 }
279 		}
280 	}
281 }
282 
283 };
284 
285 static int get_row_index_for_rc_params(u16 compressed_bpp)
286 {
287 	switch (compressed_bpp) {
288 	case 6:
289 		return ROW_INDEX_6BPP;
290 	case 8:
291 		return ROW_INDEX_8BPP;
292 	case 10:
293 		return ROW_INDEX_10BPP;
294 	case 12:
295 		return ROW_INDEX_12BPP;
296 	case 15:
297 		return ROW_INDEX_15BPP;
298 	default:
299 		return -EINVAL;
300 	}
301 }
302 
303 static int get_column_index_for_rc_params(u8 bits_per_component)
304 {
305 	switch (bits_per_component) {
306 	case 8:
307 		return COLUMN_INDEX_8BPC;
308 	case 10:
309 		return COLUMN_INDEX_10BPC;
310 	case 12:
311 		return COLUMN_INDEX_12BPC;
312 	case 14:
313 		return COLUMN_INDEX_14BPC;
314 	case 16:
315 		return COLUMN_INDEX_16BPC;
316 	default:
317 		return -EINVAL;
318 	}
319 }
320 
321 static const struct rc_parameters *get_rc_params(u16 compressed_bpp,
322 						 u8 bits_per_component)
323 {
324 	int row_index, column_index;
325 
326 	row_index = get_row_index_for_rc_params(compressed_bpp);
327 	if (row_index < 0)
328 		return NULL;
329 
330 	column_index = get_column_index_for_rc_params(bits_per_component);
331 	if (column_index < 0)
332 		return NULL;
333 
334 	return &rc_parameters[row_index][column_index];
335 }
336 
337 bool intel_dsc_source_support(struct intel_encoder *encoder,
338 			      const struct intel_crtc_state *crtc_state)
339 {
340 	const struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
341 	struct drm_i915_private *i915 = to_i915(encoder->base.dev);
342 	enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
343 	enum pipe pipe = crtc->pipe;
344 
345 	if (!INTEL_INFO(i915)->display.has_dsc)
346 		return false;
347 
348 	/* On TGL, DSC is supported on all Pipes */
349 	if (INTEL_GEN(i915) >= 12)
350 		return true;
351 
352 	if (INTEL_GEN(i915) >= 10 &&
353 	    (pipe != PIPE_A ||
354 	     (cpu_transcoder == TRANSCODER_EDP ||
355 	      cpu_transcoder == TRANSCODER_DSI_0 ||
356 	      cpu_transcoder == TRANSCODER_DSI_1)))
357 		return true;
358 
359 	return false;
360 }
361 
362 static bool is_pipe_dsc(const struct intel_crtc_state *crtc_state)
363 {
364 	const struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
365 	const struct drm_i915_private *i915 = to_i915(crtc->base.dev);
366 	enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
367 
368 	if (INTEL_GEN(i915) >= 12)
369 		return true;
370 
371 	if (cpu_transcoder == TRANSCODER_EDP ||
372 	    cpu_transcoder == TRANSCODER_DSI_0 ||
373 	    cpu_transcoder == TRANSCODER_DSI_1)
374 		return false;
375 
376 	/* There's no pipe A DSC engine on ICL */
377 	WARN_ON(crtc->pipe == PIPE_A);
378 
379 	return true;
380 }
381 
382 int intel_dsc_compute_params(struct intel_encoder *encoder,
383 			     struct intel_crtc_state *pipe_config)
384 {
385 	struct drm_dsc_config *vdsc_cfg = &pipe_config->dsc.config;
386 	u16 compressed_bpp = pipe_config->dsc.compressed_bpp;
387 	const struct rc_parameters *rc_params;
388 	u8 i = 0;
389 
390 	vdsc_cfg->pic_width = pipe_config->hw.adjusted_mode.crtc_hdisplay;
391 	vdsc_cfg->pic_height = pipe_config->hw.adjusted_mode.crtc_vdisplay;
392 	vdsc_cfg->slice_width = DIV_ROUND_UP(vdsc_cfg->pic_width,
393 					     pipe_config->dsc.slice_count);
394 
395 	/* Gen 11 does not support YCbCr */
396 	vdsc_cfg->simple_422 = false;
397 	/* Gen 11 does not support VBR */
398 	vdsc_cfg->vbr_enable = false;
399 
400 	/* Gen 11 only supports integral values of bpp */
401 	vdsc_cfg->bits_per_pixel = compressed_bpp << 4;
402 	vdsc_cfg->bits_per_component = pipe_config->pipe_bpp / 3;
403 
404 	for (i = 0; i < DSC_NUM_BUF_RANGES - 1; i++) {
405 		/*
406 		 * six 0s are appended to the lsb of each threshold value
407 		 * internally in h/w.
408 		 * Only 8 bits are allowed for programming RcBufThreshold
409 		 */
410 		vdsc_cfg->rc_buf_thresh[i] = rc_buf_thresh[i] >> 6;
411 	}
412 
413 	/*
414 	 * For 6bpp, RC Buffer threshold 12 and 13 need a different value
415 	 * as per C Model
416 	 */
417 	if (compressed_bpp == 6) {
418 		vdsc_cfg->rc_buf_thresh[12] = 0x7C;
419 		vdsc_cfg->rc_buf_thresh[13] = 0x7D;
420 	}
421 
422 	rc_params = get_rc_params(compressed_bpp, vdsc_cfg->bits_per_component);
423 	if (!rc_params)
424 		return -EINVAL;
425 
426 	vdsc_cfg->first_line_bpg_offset = rc_params->first_line_bpg_offset;
427 	vdsc_cfg->initial_xmit_delay = rc_params->initial_xmit_delay;
428 	vdsc_cfg->initial_offset = rc_params->initial_offset;
429 	vdsc_cfg->flatness_min_qp = rc_params->flatness_min_qp;
430 	vdsc_cfg->flatness_max_qp = rc_params->flatness_max_qp;
431 	vdsc_cfg->rc_quant_incr_limit0 = rc_params->rc_quant_incr_limit0;
432 	vdsc_cfg->rc_quant_incr_limit1 = rc_params->rc_quant_incr_limit1;
433 
434 	for (i = 0; i < DSC_NUM_BUF_RANGES; i++) {
435 		vdsc_cfg->rc_range_params[i].range_min_qp =
436 			rc_params->rc_range_params[i].range_min_qp;
437 		vdsc_cfg->rc_range_params[i].range_max_qp =
438 			rc_params->rc_range_params[i].range_max_qp;
439 		/*
440 		 * Range BPG Offset uses 2's complement and is only a 6 bits. So
441 		 * mask it to get only 6 bits.
442 		 */
443 		vdsc_cfg->rc_range_params[i].range_bpg_offset =
444 			rc_params->rc_range_params[i].range_bpg_offset &
445 			DSC_RANGE_BPG_OFFSET_MASK;
446 	}
447 
448 	/*
449 	 * BitsPerComponent value determines mux_word_size:
450 	 * When BitsPerComponent is 12bpc, muxWordSize will be equal to 64 bits
451 	 * When BitsPerComponent is 8 or 10bpc, muxWordSize will be equal to
452 	 * 48 bits
453 	 */
454 	if (vdsc_cfg->bits_per_component == 8 ||
455 	    vdsc_cfg->bits_per_component == 10)
456 		vdsc_cfg->mux_word_size = DSC_MUX_WORD_SIZE_8_10_BPC;
457 	else if (vdsc_cfg->bits_per_component == 12)
458 		vdsc_cfg->mux_word_size = DSC_MUX_WORD_SIZE_12_BPC;
459 
460 	/* RC_MODEL_SIZE is a constant across all configurations */
461 	vdsc_cfg->rc_model_size = DSC_RC_MODEL_SIZE_CONST;
462 	/* InitialScaleValue is a 6 bit value with 3 fractional bits (U3.3) */
463 	vdsc_cfg->initial_scale_value = (vdsc_cfg->rc_model_size << 3) /
464 		(vdsc_cfg->rc_model_size - vdsc_cfg->initial_offset);
465 
466 	return 0;
467 }
468 
469 enum intel_display_power_domain
470 intel_dsc_power_domain(const struct intel_crtc_state *crtc_state)
471 {
472 	struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
473 	struct drm_i915_private *i915 = to_i915(crtc->base.dev);
474 	enum pipe pipe = crtc->pipe;
475 
476 	/*
477 	 * VDSC/joining uses a separate power well, PW2, and requires
478 	 * POWER_DOMAIN_TRANSCODER_VDSC_PW2 power domain in two cases:
479 	 *
480 	 *  - ICL eDP/DSI transcoder
481 	 *  - TGL pipe A
482 	 *
483 	 * For any other pipe, VDSC/joining uses the power well associated with
484 	 * the pipe in use. Hence another reference on the pipe power domain
485 	 * will suffice. (Except no VDSC/joining on ICL pipe A.)
486 	 */
487 	if (INTEL_GEN(i915) >= 12 && pipe == PIPE_A)
488 		return POWER_DOMAIN_TRANSCODER_VDSC_PW2;
489 	else if (is_pipe_dsc(crtc_state))
490 		return POWER_DOMAIN_PIPE(pipe);
491 	else
492 		return POWER_DOMAIN_TRANSCODER_VDSC_PW2;
493 }
494 
495 static void intel_dsc_pps_configure(struct intel_encoder *encoder,
496 				    const struct intel_crtc_state *crtc_state)
497 {
498 	struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
499 	struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
500 	const struct drm_dsc_config *vdsc_cfg = &crtc_state->dsc.config;
501 	enum pipe pipe = crtc->pipe;
502 	u32 pps_val = 0;
503 	u32 rc_buf_thresh_dword[4];
504 	u32 rc_range_params_dword[8];
505 	u8 num_vdsc_instances = (crtc_state->dsc.dsc_split) ? 2 : 1;
506 	int i = 0;
507 
508 	/* Populate PICTURE_PARAMETER_SET_0 registers */
509 	pps_val = DSC_VER_MAJ | vdsc_cfg->dsc_version_minor <<
510 		DSC_VER_MIN_SHIFT |
511 		vdsc_cfg->bits_per_component << DSC_BPC_SHIFT |
512 		vdsc_cfg->line_buf_depth << DSC_LINE_BUF_DEPTH_SHIFT;
513 	if (vdsc_cfg->block_pred_enable)
514 		pps_val |= DSC_BLOCK_PREDICTION;
515 	if (vdsc_cfg->convert_rgb)
516 		pps_val |= DSC_COLOR_SPACE_CONVERSION;
517 	if (vdsc_cfg->simple_422)
518 		pps_val |= DSC_422_ENABLE;
519 	if (vdsc_cfg->vbr_enable)
520 		pps_val |= DSC_VBR_ENABLE;
521 	DRM_INFO("PPS0 = 0x%08x\n", pps_val);
522 	if (!is_pipe_dsc(crtc_state)) {
523 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_0, pps_val);
524 		/*
525 		 * If 2 VDSC instances are needed, configure PPS for second
526 		 * VDSC
527 		 */
528 		if (crtc_state->dsc.dsc_split)
529 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_0, pps_val);
530 	} else {
531 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_0(pipe), pps_val);
532 		if (crtc_state->dsc.dsc_split)
533 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_0(pipe),
534 				   pps_val);
535 	}
536 
537 	/* Populate PICTURE_PARAMETER_SET_1 registers */
538 	pps_val = 0;
539 	pps_val |= DSC_BPP(vdsc_cfg->bits_per_pixel);
540 	DRM_INFO("PPS1 = 0x%08x\n", pps_val);
541 	if (!is_pipe_dsc(crtc_state)) {
542 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_1, pps_val);
543 		/*
544 		 * If 2 VDSC instances are needed, configure PPS for second
545 		 * VDSC
546 		 */
547 		if (crtc_state->dsc.dsc_split)
548 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_1, pps_val);
549 	} else {
550 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_1(pipe), pps_val);
551 		if (crtc_state->dsc.dsc_split)
552 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_1(pipe),
553 				   pps_val);
554 	}
555 
556 	/* Populate PICTURE_PARAMETER_SET_2 registers */
557 	pps_val = 0;
558 	pps_val |= DSC_PIC_HEIGHT(vdsc_cfg->pic_height) |
559 		DSC_PIC_WIDTH(vdsc_cfg->pic_width / num_vdsc_instances);
560 	DRM_INFO("PPS2 = 0x%08x\n", pps_val);
561 	if (!is_pipe_dsc(crtc_state)) {
562 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_2, pps_val);
563 		/*
564 		 * If 2 VDSC instances are needed, configure PPS for second
565 		 * VDSC
566 		 */
567 		if (crtc_state->dsc.dsc_split)
568 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_2, pps_val);
569 	} else {
570 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_2(pipe), pps_val);
571 		if (crtc_state->dsc.dsc_split)
572 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_2(pipe),
573 				   pps_val);
574 	}
575 
576 	/* Populate PICTURE_PARAMETER_SET_3 registers */
577 	pps_val = 0;
578 	pps_val |= DSC_SLICE_HEIGHT(vdsc_cfg->slice_height) |
579 		DSC_SLICE_WIDTH(vdsc_cfg->slice_width);
580 	DRM_INFO("PPS3 = 0x%08x\n", pps_val);
581 	if (!is_pipe_dsc(crtc_state)) {
582 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_3, pps_val);
583 		/*
584 		 * If 2 VDSC instances are needed, configure PPS for second
585 		 * VDSC
586 		 */
587 		if (crtc_state->dsc.dsc_split)
588 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_3, pps_val);
589 	} else {
590 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_3(pipe), pps_val);
591 		if (crtc_state->dsc.dsc_split)
592 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_3(pipe),
593 				   pps_val);
594 	}
595 
596 	/* Populate PICTURE_PARAMETER_SET_4 registers */
597 	pps_val = 0;
598 	pps_val |= DSC_INITIAL_XMIT_DELAY(vdsc_cfg->initial_xmit_delay) |
599 		DSC_INITIAL_DEC_DELAY(vdsc_cfg->initial_dec_delay);
600 	DRM_INFO("PPS4 = 0x%08x\n", pps_val);
601 	if (!is_pipe_dsc(crtc_state)) {
602 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_4, pps_val);
603 		/*
604 		 * If 2 VDSC instances are needed, configure PPS for second
605 		 * VDSC
606 		 */
607 		if (crtc_state->dsc.dsc_split)
608 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_4, pps_val);
609 	} else {
610 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_4(pipe), pps_val);
611 		if (crtc_state->dsc.dsc_split)
612 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_4(pipe),
613 				   pps_val);
614 	}
615 
616 	/* Populate PICTURE_PARAMETER_SET_5 registers */
617 	pps_val = 0;
618 	pps_val |= DSC_SCALE_INC_INT(vdsc_cfg->scale_increment_interval) |
619 		DSC_SCALE_DEC_INT(vdsc_cfg->scale_decrement_interval);
620 	DRM_INFO("PPS5 = 0x%08x\n", pps_val);
621 	if (!is_pipe_dsc(crtc_state)) {
622 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_5, pps_val);
623 		/*
624 		 * If 2 VDSC instances are needed, configure PPS for second
625 		 * VDSC
626 		 */
627 		if (crtc_state->dsc.dsc_split)
628 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_5, pps_val);
629 	} else {
630 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_5(pipe), pps_val);
631 		if (crtc_state->dsc.dsc_split)
632 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_5(pipe),
633 				   pps_val);
634 	}
635 
636 	/* Populate PICTURE_PARAMETER_SET_6 registers */
637 	pps_val = 0;
638 	pps_val |= DSC_INITIAL_SCALE_VALUE(vdsc_cfg->initial_scale_value) |
639 		DSC_FIRST_LINE_BPG_OFFSET(vdsc_cfg->first_line_bpg_offset) |
640 		DSC_FLATNESS_MIN_QP(vdsc_cfg->flatness_min_qp) |
641 		DSC_FLATNESS_MAX_QP(vdsc_cfg->flatness_max_qp);
642 	DRM_INFO("PPS6 = 0x%08x\n", pps_val);
643 	if (!is_pipe_dsc(crtc_state)) {
644 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_6, pps_val);
645 		/*
646 		 * If 2 VDSC instances are needed, configure PPS for second
647 		 * VDSC
648 		 */
649 		if (crtc_state->dsc.dsc_split)
650 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_6, pps_val);
651 	} else {
652 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_6(pipe), pps_val);
653 		if (crtc_state->dsc.dsc_split)
654 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_6(pipe),
655 				   pps_val);
656 	}
657 
658 	/* Populate PICTURE_PARAMETER_SET_7 registers */
659 	pps_val = 0;
660 	pps_val |= DSC_SLICE_BPG_OFFSET(vdsc_cfg->slice_bpg_offset) |
661 		DSC_NFL_BPG_OFFSET(vdsc_cfg->nfl_bpg_offset);
662 	DRM_INFO("PPS7 = 0x%08x\n", pps_val);
663 	if (!is_pipe_dsc(crtc_state)) {
664 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_7, pps_val);
665 		/*
666 		 * If 2 VDSC instances are needed, configure PPS for second
667 		 * VDSC
668 		 */
669 		if (crtc_state->dsc.dsc_split)
670 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_7, pps_val);
671 	} else {
672 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_7(pipe), pps_val);
673 		if (crtc_state->dsc.dsc_split)
674 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_7(pipe),
675 				   pps_val);
676 	}
677 
678 	/* Populate PICTURE_PARAMETER_SET_8 registers */
679 	pps_val = 0;
680 	pps_val |= DSC_FINAL_OFFSET(vdsc_cfg->final_offset) |
681 		DSC_INITIAL_OFFSET(vdsc_cfg->initial_offset);
682 	DRM_INFO("PPS8 = 0x%08x\n", pps_val);
683 	if (!is_pipe_dsc(crtc_state)) {
684 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_8, pps_val);
685 		/*
686 		 * If 2 VDSC instances are needed, configure PPS for second
687 		 * VDSC
688 		 */
689 		if (crtc_state->dsc.dsc_split)
690 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_8, pps_val);
691 	} else {
692 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_8(pipe), pps_val);
693 		if (crtc_state->dsc.dsc_split)
694 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_8(pipe),
695 				   pps_val);
696 	}
697 
698 	/* Populate PICTURE_PARAMETER_SET_9 registers */
699 	pps_val = 0;
700 	pps_val |= DSC_RC_MODEL_SIZE(DSC_RC_MODEL_SIZE_CONST) |
701 		DSC_RC_EDGE_FACTOR(DSC_RC_EDGE_FACTOR_CONST);
702 	DRM_INFO("PPS9 = 0x%08x\n", pps_val);
703 	if (!is_pipe_dsc(crtc_state)) {
704 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_9, pps_val);
705 		/*
706 		 * If 2 VDSC instances are needed, configure PPS for second
707 		 * VDSC
708 		 */
709 		if (crtc_state->dsc.dsc_split)
710 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_9, pps_val);
711 	} else {
712 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_9(pipe), pps_val);
713 		if (crtc_state->dsc.dsc_split)
714 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_9(pipe),
715 				   pps_val);
716 	}
717 
718 	/* Populate PICTURE_PARAMETER_SET_10 registers */
719 	pps_val = 0;
720 	pps_val |= DSC_RC_QUANT_INC_LIMIT0(vdsc_cfg->rc_quant_incr_limit0) |
721 		DSC_RC_QUANT_INC_LIMIT1(vdsc_cfg->rc_quant_incr_limit1) |
722 		DSC_RC_TARGET_OFF_HIGH(DSC_RC_TGT_OFFSET_HI_CONST) |
723 		DSC_RC_TARGET_OFF_LOW(DSC_RC_TGT_OFFSET_LO_CONST);
724 	DRM_INFO("PPS10 = 0x%08x\n", pps_val);
725 	if (!is_pipe_dsc(crtc_state)) {
726 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_10, pps_val);
727 		/*
728 		 * If 2 VDSC instances are needed, configure PPS for second
729 		 * VDSC
730 		 */
731 		if (crtc_state->dsc.dsc_split)
732 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_10, pps_val);
733 	} else {
734 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_10(pipe), pps_val);
735 		if (crtc_state->dsc.dsc_split)
736 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_10(pipe),
737 				   pps_val);
738 	}
739 
740 	/* Populate Picture parameter set 16 */
741 	pps_val = 0;
742 	pps_val |= DSC_SLICE_CHUNK_SIZE(vdsc_cfg->slice_chunk_size) |
743 		DSC_SLICE_PER_LINE((vdsc_cfg->pic_width / num_vdsc_instances) /
744 				   vdsc_cfg->slice_width) |
745 		DSC_SLICE_ROW_PER_FRAME(vdsc_cfg->pic_height /
746 					vdsc_cfg->slice_height);
747 	DRM_INFO("PPS16 = 0x%08x\n", pps_val);
748 	if (!is_pipe_dsc(crtc_state)) {
749 		I915_WRITE(DSCA_PICTURE_PARAMETER_SET_16, pps_val);
750 		/*
751 		 * If 2 VDSC instances are needed, configure PPS for second
752 		 * VDSC
753 		 */
754 		if (crtc_state->dsc.dsc_split)
755 			I915_WRITE(DSCC_PICTURE_PARAMETER_SET_16, pps_val);
756 	} else {
757 		I915_WRITE(ICL_DSC0_PICTURE_PARAMETER_SET_16(pipe), pps_val);
758 		if (crtc_state->dsc.dsc_split)
759 			I915_WRITE(ICL_DSC1_PICTURE_PARAMETER_SET_16(pipe),
760 				   pps_val);
761 	}
762 
763 	/* Populate the RC_BUF_THRESH registers */
764 	memset(rc_buf_thresh_dword, 0, sizeof(rc_buf_thresh_dword));
765 	for (i = 0; i < DSC_NUM_BUF_RANGES - 1; i++) {
766 		rc_buf_thresh_dword[i / 4] |=
767 			(u32)(vdsc_cfg->rc_buf_thresh[i] <<
768 			      BITS_PER_BYTE * (i % 4));
769 		DRM_INFO(" RC_BUF_THRESH%d = 0x%08x\n", i,
770 			 rc_buf_thresh_dword[i / 4]);
771 	}
772 	if (!is_pipe_dsc(crtc_state)) {
773 		I915_WRITE(DSCA_RC_BUF_THRESH_0, rc_buf_thresh_dword[0]);
774 		I915_WRITE(DSCA_RC_BUF_THRESH_0_UDW, rc_buf_thresh_dword[1]);
775 		I915_WRITE(DSCA_RC_BUF_THRESH_1, rc_buf_thresh_dword[2]);
776 		I915_WRITE(DSCA_RC_BUF_THRESH_1_UDW, rc_buf_thresh_dword[3]);
777 		if (crtc_state->dsc.dsc_split) {
778 			I915_WRITE(DSCC_RC_BUF_THRESH_0,
779 				   rc_buf_thresh_dword[0]);
780 			I915_WRITE(DSCC_RC_BUF_THRESH_0_UDW,
781 				   rc_buf_thresh_dword[1]);
782 			I915_WRITE(DSCC_RC_BUF_THRESH_1,
783 				   rc_buf_thresh_dword[2]);
784 			I915_WRITE(DSCC_RC_BUF_THRESH_1_UDW,
785 				   rc_buf_thresh_dword[3]);
786 		}
787 	} else {
788 		I915_WRITE(ICL_DSC0_RC_BUF_THRESH_0(pipe),
789 			   rc_buf_thresh_dword[0]);
790 		I915_WRITE(ICL_DSC0_RC_BUF_THRESH_0_UDW(pipe),
791 			   rc_buf_thresh_dword[1]);
792 		I915_WRITE(ICL_DSC0_RC_BUF_THRESH_1(pipe),
793 			   rc_buf_thresh_dword[2]);
794 		I915_WRITE(ICL_DSC0_RC_BUF_THRESH_1_UDW(pipe),
795 			   rc_buf_thresh_dword[3]);
796 		if (crtc_state->dsc.dsc_split) {
797 			I915_WRITE(ICL_DSC1_RC_BUF_THRESH_0(pipe),
798 				   rc_buf_thresh_dword[0]);
799 			I915_WRITE(ICL_DSC1_RC_BUF_THRESH_0_UDW(pipe),
800 				   rc_buf_thresh_dword[1]);
801 			I915_WRITE(ICL_DSC1_RC_BUF_THRESH_1(pipe),
802 				   rc_buf_thresh_dword[2]);
803 			I915_WRITE(ICL_DSC1_RC_BUF_THRESH_1_UDW(pipe),
804 				   rc_buf_thresh_dword[3]);
805 		}
806 	}
807 
808 	/* Populate the RC_RANGE_PARAMETERS registers */
809 	memset(rc_range_params_dword, 0, sizeof(rc_range_params_dword));
810 	for (i = 0; i < DSC_NUM_BUF_RANGES; i++) {
811 		rc_range_params_dword[i / 2] |=
812 			(u32)(((vdsc_cfg->rc_range_params[i].range_bpg_offset <<
813 				RC_BPG_OFFSET_SHIFT) |
814 			       (vdsc_cfg->rc_range_params[i].range_max_qp <<
815 				RC_MAX_QP_SHIFT) |
816 			       (vdsc_cfg->rc_range_params[i].range_min_qp <<
817 				RC_MIN_QP_SHIFT)) << 16 * (i % 2));
818 		DRM_INFO(" RC_RANGE_PARAM_%d = 0x%08x\n", i,
819 			 rc_range_params_dword[i / 2]);
820 	}
821 	if (!is_pipe_dsc(crtc_state)) {
822 		I915_WRITE(DSCA_RC_RANGE_PARAMETERS_0,
823 			   rc_range_params_dword[0]);
824 		I915_WRITE(DSCA_RC_RANGE_PARAMETERS_0_UDW,
825 			   rc_range_params_dword[1]);
826 		I915_WRITE(DSCA_RC_RANGE_PARAMETERS_1,
827 			   rc_range_params_dword[2]);
828 		I915_WRITE(DSCA_RC_RANGE_PARAMETERS_1_UDW,
829 			   rc_range_params_dword[3]);
830 		I915_WRITE(DSCA_RC_RANGE_PARAMETERS_2,
831 			   rc_range_params_dword[4]);
832 		I915_WRITE(DSCA_RC_RANGE_PARAMETERS_2_UDW,
833 			   rc_range_params_dword[5]);
834 		I915_WRITE(DSCA_RC_RANGE_PARAMETERS_3,
835 			   rc_range_params_dword[6]);
836 		I915_WRITE(DSCA_RC_RANGE_PARAMETERS_3_UDW,
837 			   rc_range_params_dword[7]);
838 		if (crtc_state->dsc.dsc_split) {
839 			I915_WRITE(DSCC_RC_RANGE_PARAMETERS_0,
840 				   rc_range_params_dword[0]);
841 			I915_WRITE(DSCC_RC_RANGE_PARAMETERS_0_UDW,
842 				   rc_range_params_dword[1]);
843 			I915_WRITE(DSCC_RC_RANGE_PARAMETERS_1,
844 				   rc_range_params_dword[2]);
845 			I915_WRITE(DSCC_RC_RANGE_PARAMETERS_1_UDW,
846 				   rc_range_params_dword[3]);
847 			I915_WRITE(DSCC_RC_RANGE_PARAMETERS_2,
848 				   rc_range_params_dword[4]);
849 			I915_WRITE(DSCC_RC_RANGE_PARAMETERS_2_UDW,
850 				   rc_range_params_dword[5]);
851 			I915_WRITE(DSCC_RC_RANGE_PARAMETERS_3,
852 				   rc_range_params_dword[6]);
853 			I915_WRITE(DSCC_RC_RANGE_PARAMETERS_3_UDW,
854 				   rc_range_params_dword[7]);
855 		}
856 	} else {
857 		I915_WRITE(ICL_DSC0_RC_RANGE_PARAMETERS_0(pipe),
858 			   rc_range_params_dword[0]);
859 		I915_WRITE(ICL_DSC0_RC_RANGE_PARAMETERS_0_UDW(pipe),
860 			   rc_range_params_dword[1]);
861 		I915_WRITE(ICL_DSC0_RC_RANGE_PARAMETERS_1(pipe),
862 			   rc_range_params_dword[2]);
863 		I915_WRITE(ICL_DSC0_RC_RANGE_PARAMETERS_1_UDW(pipe),
864 			   rc_range_params_dword[3]);
865 		I915_WRITE(ICL_DSC0_RC_RANGE_PARAMETERS_2(pipe),
866 			   rc_range_params_dword[4]);
867 		I915_WRITE(ICL_DSC0_RC_RANGE_PARAMETERS_2_UDW(pipe),
868 			   rc_range_params_dword[5]);
869 		I915_WRITE(ICL_DSC0_RC_RANGE_PARAMETERS_3(pipe),
870 			   rc_range_params_dword[6]);
871 		I915_WRITE(ICL_DSC0_RC_RANGE_PARAMETERS_3_UDW(pipe),
872 			   rc_range_params_dword[7]);
873 		if (crtc_state->dsc.dsc_split) {
874 			I915_WRITE(ICL_DSC1_RC_RANGE_PARAMETERS_0(pipe),
875 				   rc_range_params_dword[0]);
876 			I915_WRITE(ICL_DSC1_RC_RANGE_PARAMETERS_0_UDW(pipe),
877 				   rc_range_params_dword[1]);
878 			I915_WRITE(ICL_DSC1_RC_RANGE_PARAMETERS_1(pipe),
879 				   rc_range_params_dword[2]);
880 			I915_WRITE(ICL_DSC1_RC_RANGE_PARAMETERS_1_UDW(pipe),
881 				   rc_range_params_dword[3]);
882 			I915_WRITE(ICL_DSC1_RC_RANGE_PARAMETERS_2(pipe),
883 				   rc_range_params_dword[4]);
884 			I915_WRITE(ICL_DSC1_RC_RANGE_PARAMETERS_2_UDW(pipe),
885 				   rc_range_params_dword[5]);
886 			I915_WRITE(ICL_DSC1_RC_RANGE_PARAMETERS_3(pipe),
887 				   rc_range_params_dword[6]);
888 			I915_WRITE(ICL_DSC1_RC_RANGE_PARAMETERS_3_UDW(pipe),
889 				   rc_range_params_dword[7]);
890 		}
891 	}
892 }
893 
894 void intel_dsc_get_config(struct intel_encoder *encoder,
895 			  struct intel_crtc_state *crtc_state)
896 {
897 	struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
898 	struct drm_dsc_config *vdsc_cfg = &crtc_state->dsc.config;
899 	struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
900 	enum pipe pipe = crtc->pipe;
901 	enum intel_display_power_domain power_domain;
902 	intel_wakeref_t wakeref;
903 	u32 dss_ctl1, dss_ctl2, val;
904 
905 	if (!intel_dsc_source_support(encoder, crtc_state))
906 		return;
907 
908 	power_domain = intel_dsc_power_domain(crtc_state);
909 
910 	wakeref = intel_display_power_get_if_enabled(dev_priv, power_domain);
911 	if (!wakeref)
912 		return;
913 
914 	if (!is_pipe_dsc(crtc_state)) {
915 		dss_ctl1 = I915_READ(DSS_CTL1);
916 		dss_ctl2 = I915_READ(DSS_CTL2);
917 	} else {
918 		dss_ctl1 = I915_READ(ICL_PIPE_DSS_CTL1(pipe));
919 		dss_ctl2 = I915_READ(ICL_PIPE_DSS_CTL2(pipe));
920 	}
921 
922 	crtc_state->dsc.compression_enable = dss_ctl2 & LEFT_BRANCH_VDSC_ENABLE;
923 	if (!crtc_state->dsc.compression_enable)
924 		goto out;
925 
926 	crtc_state->dsc.dsc_split = (dss_ctl2 & RIGHT_BRANCH_VDSC_ENABLE) &&
927 		(dss_ctl1 & JOINER_ENABLE);
928 
929 	/* FIXME: add more state readout as needed */
930 
931 	/* PPS1 */
932 	if (!is_pipe_dsc(crtc_state))
933 		val = I915_READ(DSCA_PICTURE_PARAMETER_SET_1);
934 	else
935 		val = I915_READ(ICL_DSC0_PICTURE_PARAMETER_SET_1(pipe));
936 	vdsc_cfg->bits_per_pixel = val;
937 	crtc_state->dsc.compressed_bpp = vdsc_cfg->bits_per_pixel >> 4;
938 out:
939 	intel_display_power_put(dev_priv, power_domain, wakeref);
940 }
941 
942 static void intel_dsc_dsi_pps_write(struct intel_encoder *encoder,
943 				    const struct intel_crtc_state *crtc_state)
944 {
945 	const struct drm_dsc_config *vdsc_cfg = &crtc_state->dsc.config;
946 	struct intel_dsi *intel_dsi = enc_to_intel_dsi(encoder);
947 	struct mipi_dsi_device *dsi;
948 	struct drm_dsc_picture_parameter_set pps;
949 	enum port port;
950 
951 	drm_dsc_pps_payload_pack(&pps, vdsc_cfg);
952 
953 	for_each_dsi_port(port, intel_dsi->ports) {
954 		dsi = intel_dsi->dsi_hosts[port]->device;
955 
956 		mipi_dsi_picture_parameter_set(dsi, &pps);
957 		mipi_dsi_compression_mode(dsi, true);
958 	}
959 }
960 
961 static void intel_dsc_dp_pps_write(struct intel_encoder *encoder,
962 				   const struct intel_crtc_state *crtc_state)
963 {
964 	struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
965 	struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp);
966 	const struct drm_dsc_config *vdsc_cfg = &crtc_state->dsc.config;
967 	struct drm_dsc_pps_infoframe dp_dsc_pps_sdp;
968 
969 	/* Prepare DP SDP PPS header as per DP 1.4 spec, Table 2-123 */
970 	drm_dsc_dp_pps_header_init(&dp_dsc_pps_sdp.pps_header);
971 
972 	/* Fill the PPS payload bytes as per DSC spec 1.2 Table 4-1 */
973 	drm_dsc_pps_payload_pack(&dp_dsc_pps_sdp.pps_payload, vdsc_cfg);
974 
975 	intel_dig_port->write_infoframe(encoder, crtc_state,
976 					DP_SDP_PPS, &dp_dsc_pps_sdp,
977 					sizeof(dp_dsc_pps_sdp));
978 }
979 
980 void intel_dsc_enable(struct intel_encoder *encoder,
981 		      const struct intel_crtc_state *crtc_state)
982 {
983 	struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
984 	struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
985 	enum pipe pipe = crtc->pipe;
986 	i915_reg_t dss_ctl1_reg, dss_ctl2_reg;
987 	u32 dss_ctl1_val = 0;
988 	u32 dss_ctl2_val = 0;
989 
990 	if (!crtc_state->dsc.compression_enable)
991 		return;
992 
993 	/* Enable Power wells for VDSC/joining */
994 	intel_display_power_get(dev_priv,
995 				intel_dsc_power_domain(crtc_state));
996 
997 	intel_dsc_pps_configure(encoder, crtc_state);
998 
999 	if (encoder->type == INTEL_OUTPUT_DSI)
1000 		intel_dsc_dsi_pps_write(encoder, crtc_state);
1001 	else
1002 		intel_dsc_dp_pps_write(encoder, crtc_state);
1003 
1004 	if (!is_pipe_dsc(crtc_state)) {
1005 		dss_ctl1_reg = DSS_CTL1;
1006 		dss_ctl2_reg = DSS_CTL2;
1007 	} else {
1008 		dss_ctl1_reg = ICL_PIPE_DSS_CTL1(pipe);
1009 		dss_ctl2_reg = ICL_PIPE_DSS_CTL2(pipe);
1010 	}
1011 	dss_ctl2_val |= LEFT_BRANCH_VDSC_ENABLE;
1012 	if (crtc_state->dsc.dsc_split) {
1013 		dss_ctl2_val |= RIGHT_BRANCH_VDSC_ENABLE;
1014 		dss_ctl1_val |= JOINER_ENABLE;
1015 	}
1016 	I915_WRITE(dss_ctl1_reg, dss_ctl1_val);
1017 	I915_WRITE(dss_ctl2_reg, dss_ctl2_val);
1018 }
1019 
1020 void intel_dsc_disable(const struct intel_crtc_state *old_crtc_state)
1021 {
1022 	struct intel_crtc *crtc = to_intel_crtc(old_crtc_state->uapi.crtc);
1023 	struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
1024 	enum pipe pipe = crtc->pipe;
1025 	i915_reg_t dss_ctl1_reg, dss_ctl2_reg;
1026 	u32 dss_ctl1_val = 0, dss_ctl2_val = 0;
1027 
1028 	if (!old_crtc_state->dsc.compression_enable)
1029 		return;
1030 
1031 	if (!is_pipe_dsc(old_crtc_state)) {
1032 		dss_ctl1_reg = DSS_CTL1;
1033 		dss_ctl2_reg = DSS_CTL2;
1034 	} else {
1035 		dss_ctl1_reg = ICL_PIPE_DSS_CTL1(pipe);
1036 		dss_ctl2_reg = ICL_PIPE_DSS_CTL2(pipe);
1037 	}
1038 	dss_ctl1_val = I915_READ(dss_ctl1_reg);
1039 	if (dss_ctl1_val & JOINER_ENABLE)
1040 		dss_ctl1_val &= ~JOINER_ENABLE;
1041 	I915_WRITE(dss_ctl1_reg, dss_ctl1_val);
1042 
1043 	dss_ctl2_val = I915_READ(dss_ctl2_reg);
1044 	if (dss_ctl2_val & LEFT_BRANCH_VDSC_ENABLE ||
1045 	    dss_ctl2_val & RIGHT_BRANCH_VDSC_ENABLE)
1046 		dss_ctl2_val &= ~(LEFT_BRANCH_VDSC_ENABLE |
1047 				  RIGHT_BRANCH_VDSC_ENABLE);
1048 	I915_WRITE(dss_ctl2_reg, dss_ctl2_val);
1049 
1050 	/* Disable Power wells for VDSC/joining */
1051 	intel_display_power_put_unchecked(dev_priv,
1052 					  intel_dsc_power_domain(old_crtc_state));
1053 }
1054