blob: 6b1dc02f98ef2013d21abe6cb6014bf1fec6fbeb [file] [log] [blame]
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001/*
2 * Copyright (C) 2012 Avionic Design GmbH
3 * Copyright (C) 2012 NVIDIA CORPORATION. All rights reserved.
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 as
7 * published by the Free Software Foundation.
8 */
9
10#include <linux/clk.h>
Thierry Reding9eb9b222013-09-24 16:32:47 +020011#include <linux/debugfs.h>
Thierry Redingdf06b752014-06-26 21:41:53 +020012#include <linux/iommu.h>
Stephen Warrenca480802013-11-06 16:20:54 -070013#include <linux/reset.h>
Thierry Redingd8f4a9e2012-11-15 21:28:22 +000014
Thierry Reding9c012702014-07-07 15:32:53 +020015#include <soc/tegra/pmc.h>
16
Arto Merilainende2ba662013-03-22 16:34:08 +020017#include "dc.h"
18#include "drm.h"
19#include "gem.h"
Thierry Redingd8f4a9e2012-11-15 21:28:22 +000020
Thierry Reding9d441892014-11-24 17:02:53 +010021#include <drm/drm_atomic.h>
Thierry Reding4aa3df72014-11-24 16:27:13 +010022#include <drm/drm_atomic_helper.h>
Daniel Vetter3cb9ae42014-10-29 10:03:57 +010023#include <drm/drm_plane_helper.h>
24
Thierry Reding8620fc62013-12-12 11:03:59 +010025struct tegra_dc_soc_info {
Thierry Reding42d06592014-12-08 15:45:39 +010026 bool supports_border_color;
Thierry Reding8620fc62013-12-12 11:03:59 +010027 bool supports_interlacing;
Thierry Redinge6876512013-12-20 13:58:33 +010028 bool supports_cursor;
Thierry Redingc134f012014-06-03 14:48:12 +020029 bool supports_block_linear;
Thierry Redingd1f3e1e2014-07-11 08:29:14 +020030 unsigned int pitch_align;
Thierry Reding9c012702014-07-07 15:32:53 +020031 bool has_powergate;
Thierry Reding8620fc62013-12-12 11:03:59 +010032};
33
Thierry Redingf34bc782012-11-04 21:47:13 +010034struct tegra_plane {
35 struct drm_plane base;
36 unsigned int index;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +000037};
38
Thierry Redingf34bc782012-11-04 21:47:13 +010039static inline struct tegra_plane *to_tegra_plane(struct drm_plane *plane)
40{
41 return container_of(plane, struct tegra_plane, base);
42}
43
Thierry Redingca915b12014-12-08 16:14:45 +010044struct tegra_dc_state {
45 struct drm_crtc_state base;
46
47 struct clk *clk;
48 unsigned long pclk;
49 unsigned int div;
Thierry Reding47802b02014-11-26 12:28:39 +010050
51 u32 planes;
Thierry Redingca915b12014-12-08 16:14:45 +010052};
53
54static inline struct tegra_dc_state *to_dc_state(struct drm_crtc_state *state)
55{
56 if (state)
57 return container_of(state, struct tegra_dc_state, base);
58
59 return NULL;
60}
61
Thierry Reding8f604f82014-11-28 13:14:55 +010062struct tegra_plane_state {
63 struct drm_plane_state base;
64
65 struct tegra_bo_tiling tiling;
66 u32 format;
67 u32 swap;
68};
69
70static inline struct tegra_plane_state *
71to_tegra_plane_state(struct drm_plane_state *state)
72{
73 if (state)
74 return container_of(state, struct tegra_plane_state, base);
75
76 return NULL;
77}
78
Thierry Redingd700ba72014-12-08 15:50:04 +010079/*
Thierry Reding86df2562014-12-08 16:03:53 +010080 * Reads the active copy of a register. This takes the dc->lock spinlock to
81 * prevent races with the VBLANK processing which also needs access to the
82 * active copy of some registers.
83 */
84static u32 tegra_dc_readl_active(struct tegra_dc *dc, unsigned long offset)
85{
86 unsigned long flags;
87 u32 value;
88
89 spin_lock_irqsave(&dc->lock, flags);
90
91 tegra_dc_writel(dc, READ_MUX, DC_CMD_STATE_ACCESS);
92 value = tegra_dc_readl(dc, offset);
93 tegra_dc_writel(dc, 0, DC_CMD_STATE_ACCESS);
94
95 spin_unlock_irqrestore(&dc->lock, flags);
96 return value;
97}
98
99/*
Thierry Redingd700ba72014-12-08 15:50:04 +0100100 * Double-buffered registers have two copies: ASSEMBLY and ACTIVE. When the
101 * *_ACT_REQ bits are set the ASSEMBLY copy is latched into the ACTIVE copy.
102 * Latching happens mmediately if the display controller is in STOP mode or
103 * on the next frame boundary otherwise.
104 *
105 * Triple-buffered registers have three copies: ASSEMBLY, ARM and ACTIVE. The
106 * ASSEMBLY copy is latched into the ARM copy immediately after *_UPDATE bits
107 * are written. When the *_ACT_REQ bits are written, the ARM copy is latched
108 * into the ACTIVE copy, either immediately if the display controller is in
109 * STOP mode, or at the next frame boundary otherwise.
110 */
Thierry Reding62b9e062014-11-21 17:33:33 +0100111void tegra_dc_commit(struct tegra_dc *dc)
Thierry Reding205d48e2014-10-21 13:41:46 +0200112{
113 tegra_dc_writel(dc, GENERAL_ACT_REQ << 8, DC_CMD_STATE_CONTROL);
114 tegra_dc_writel(dc, GENERAL_ACT_REQ, DC_CMD_STATE_CONTROL);
115}
116
Thierry Reding8f604f82014-11-28 13:14:55 +0100117static int tegra_dc_format(u32 fourcc, u32 *format, u32 *swap)
Thierry Reding10288ee2014-03-14 09:54:58 +0100118{
119 /* assume no swapping of fetched data */
120 if (swap)
121 *swap = BYTE_SWAP_NOSWAP;
122
Thierry Reding8f604f82014-11-28 13:14:55 +0100123 switch (fourcc) {
Thierry Reding10288ee2014-03-14 09:54:58 +0100124 case DRM_FORMAT_XBGR8888:
Thierry Reding8f604f82014-11-28 13:14:55 +0100125 *format = WIN_COLOR_DEPTH_R8G8B8A8;
126 break;
Thierry Reding10288ee2014-03-14 09:54:58 +0100127
128 case DRM_FORMAT_XRGB8888:
Thierry Reding8f604f82014-11-28 13:14:55 +0100129 *format = WIN_COLOR_DEPTH_B8G8R8A8;
130 break;
Thierry Reding10288ee2014-03-14 09:54:58 +0100131
132 case DRM_FORMAT_RGB565:
Thierry Reding8f604f82014-11-28 13:14:55 +0100133 *format = WIN_COLOR_DEPTH_B5G6R5;
134 break;
Thierry Reding10288ee2014-03-14 09:54:58 +0100135
136 case DRM_FORMAT_UYVY:
Thierry Reding8f604f82014-11-28 13:14:55 +0100137 *format = WIN_COLOR_DEPTH_YCbCr422;
138 break;
Thierry Reding10288ee2014-03-14 09:54:58 +0100139
140 case DRM_FORMAT_YUYV:
141 if (swap)
142 *swap = BYTE_SWAP_SWAP2;
143
Thierry Reding8f604f82014-11-28 13:14:55 +0100144 *format = WIN_COLOR_DEPTH_YCbCr422;
145 break;
Thierry Reding10288ee2014-03-14 09:54:58 +0100146
147 case DRM_FORMAT_YUV420:
Thierry Reding8f604f82014-11-28 13:14:55 +0100148 *format = WIN_COLOR_DEPTH_YCbCr420P;
149 break;
Thierry Reding10288ee2014-03-14 09:54:58 +0100150
151 case DRM_FORMAT_YUV422:
Thierry Reding8f604f82014-11-28 13:14:55 +0100152 *format = WIN_COLOR_DEPTH_YCbCr422P;
153 break;
Thierry Reding10288ee2014-03-14 09:54:58 +0100154
155 default:
Thierry Reding8f604f82014-11-28 13:14:55 +0100156 return -EINVAL;
Thierry Reding10288ee2014-03-14 09:54:58 +0100157 }
158
Thierry Reding8f604f82014-11-28 13:14:55 +0100159 return 0;
Thierry Reding10288ee2014-03-14 09:54:58 +0100160}
161
162static bool tegra_dc_format_is_yuv(unsigned int format, bool *planar)
163{
164 switch (format) {
165 case WIN_COLOR_DEPTH_YCbCr422:
166 case WIN_COLOR_DEPTH_YUV422:
167 if (planar)
168 *planar = false;
169
170 return true;
171
172 case WIN_COLOR_DEPTH_YCbCr420P:
173 case WIN_COLOR_DEPTH_YUV420P:
174 case WIN_COLOR_DEPTH_YCbCr422P:
175 case WIN_COLOR_DEPTH_YUV422P:
176 case WIN_COLOR_DEPTH_YCbCr422R:
177 case WIN_COLOR_DEPTH_YUV422R:
178 case WIN_COLOR_DEPTH_YCbCr422RA:
179 case WIN_COLOR_DEPTH_YUV422RA:
180 if (planar)
181 *planar = true;
182
183 return true;
184 }
185
Thierry Redingfb35c6b2014-12-08 15:55:28 +0100186 if (planar)
187 *planar = false;
188
Thierry Reding10288ee2014-03-14 09:54:58 +0100189 return false;
190}
191
192static inline u32 compute_dda_inc(unsigned int in, unsigned int out, bool v,
193 unsigned int bpp)
194{
195 fixed20_12 outf = dfixed_init(out);
196 fixed20_12 inf = dfixed_init(in);
197 u32 dda_inc;
198 int max;
199
200 if (v)
201 max = 15;
202 else {
203 switch (bpp) {
204 case 2:
205 max = 8;
206 break;
207
208 default:
209 WARN_ON_ONCE(1);
210 /* fallthrough */
211 case 4:
212 max = 4;
213 break;
214 }
215 }
216
217 outf.full = max_t(u32, outf.full - dfixed_const(1), dfixed_const(1));
218 inf.full -= dfixed_const(1);
219
220 dda_inc = dfixed_div(inf, outf);
221 dda_inc = min_t(u32, dda_inc, dfixed_const(max));
222
223 return dda_inc;
224}
225
226static inline u32 compute_initial_dda(unsigned int in)
227{
228 fixed20_12 inf = dfixed_init(in);
229 return dfixed_frac(inf);
230}
231
Thierry Reding4aa3df72014-11-24 16:27:13 +0100232static void tegra_dc_setup_window(struct tegra_dc *dc, unsigned int index,
233 const struct tegra_dc_window *window)
Thierry Reding10288ee2014-03-14 09:54:58 +0100234{
235 unsigned h_offset, v_offset, h_size, v_size, h_dda, v_dda, bpp;
Sean Paul93396d02014-11-19 13:04:49 -0500236 unsigned long value, flags;
Thierry Reding10288ee2014-03-14 09:54:58 +0100237 bool yuv, planar;
238
239 /*
240 * For YUV planar modes, the number of bytes per pixel takes into
241 * account only the luma component and therefore is 1.
242 */
243 yuv = tegra_dc_format_is_yuv(window->format, &planar);
244 if (!yuv)
245 bpp = window->bits_per_pixel / 8;
246 else
247 bpp = planar ? 1 : 2;
248
Sean Paul93396d02014-11-19 13:04:49 -0500249 spin_lock_irqsave(&dc->lock, flags);
250
Thierry Reding10288ee2014-03-14 09:54:58 +0100251 value = WINDOW_A_SELECT << index;
252 tegra_dc_writel(dc, value, DC_CMD_DISPLAY_WINDOW_HEADER);
253
254 tegra_dc_writel(dc, window->format, DC_WIN_COLOR_DEPTH);
255 tegra_dc_writel(dc, window->swap, DC_WIN_BYTE_SWAP);
256
257 value = V_POSITION(window->dst.y) | H_POSITION(window->dst.x);
258 tegra_dc_writel(dc, value, DC_WIN_POSITION);
259
260 value = V_SIZE(window->dst.h) | H_SIZE(window->dst.w);
261 tegra_dc_writel(dc, value, DC_WIN_SIZE);
262
263 h_offset = window->src.x * bpp;
264 v_offset = window->src.y;
265 h_size = window->src.w * bpp;
266 v_size = window->src.h;
267
268 value = V_PRESCALED_SIZE(v_size) | H_PRESCALED_SIZE(h_size);
269 tegra_dc_writel(dc, value, DC_WIN_PRESCALED_SIZE);
270
271 /*
272 * For DDA computations the number of bytes per pixel for YUV planar
273 * modes needs to take into account all Y, U and V components.
274 */
275 if (yuv && planar)
276 bpp = 2;
277
278 h_dda = compute_dda_inc(window->src.w, window->dst.w, false, bpp);
279 v_dda = compute_dda_inc(window->src.h, window->dst.h, true, bpp);
280
281 value = V_DDA_INC(v_dda) | H_DDA_INC(h_dda);
282 tegra_dc_writel(dc, value, DC_WIN_DDA_INC);
283
284 h_dda = compute_initial_dda(window->src.x);
285 v_dda = compute_initial_dda(window->src.y);
286
287 tegra_dc_writel(dc, h_dda, DC_WIN_H_INITIAL_DDA);
288 tegra_dc_writel(dc, v_dda, DC_WIN_V_INITIAL_DDA);
289
290 tegra_dc_writel(dc, 0, DC_WIN_UV_BUF_STRIDE);
291 tegra_dc_writel(dc, 0, DC_WIN_BUF_STRIDE);
292
293 tegra_dc_writel(dc, window->base[0], DC_WINBUF_START_ADDR);
294
295 if (yuv && planar) {
296 tegra_dc_writel(dc, window->base[1], DC_WINBUF_START_ADDR_U);
297 tegra_dc_writel(dc, window->base[2], DC_WINBUF_START_ADDR_V);
298 value = window->stride[1] << 16 | window->stride[0];
299 tegra_dc_writel(dc, value, DC_WIN_LINE_STRIDE);
300 } else {
301 tegra_dc_writel(dc, window->stride[0], DC_WIN_LINE_STRIDE);
302 }
303
304 if (window->bottom_up)
305 v_offset += window->src.h - 1;
306
307 tegra_dc_writel(dc, h_offset, DC_WINBUF_ADDR_H_OFFSET);
308 tegra_dc_writel(dc, v_offset, DC_WINBUF_ADDR_V_OFFSET);
309
Thierry Redingc134f012014-06-03 14:48:12 +0200310 if (dc->soc->supports_block_linear) {
311 unsigned long height = window->tiling.value;
Thierry Reding10288ee2014-03-14 09:54:58 +0100312
Thierry Redingc134f012014-06-03 14:48:12 +0200313 switch (window->tiling.mode) {
314 case TEGRA_BO_TILING_MODE_PITCH:
315 value = DC_WINBUF_SURFACE_KIND_PITCH;
316 break;
317
318 case TEGRA_BO_TILING_MODE_TILED:
319 value = DC_WINBUF_SURFACE_KIND_TILED;
320 break;
321
322 case TEGRA_BO_TILING_MODE_BLOCK:
323 value = DC_WINBUF_SURFACE_KIND_BLOCK_HEIGHT(height) |
324 DC_WINBUF_SURFACE_KIND_BLOCK;
325 break;
326 }
327
328 tegra_dc_writel(dc, value, DC_WINBUF_SURFACE_KIND);
329 } else {
330 switch (window->tiling.mode) {
331 case TEGRA_BO_TILING_MODE_PITCH:
332 value = DC_WIN_BUFFER_ADDR_MODE_LINEAR_UV |
333 DC_WIN_BUFFER_ADDR_MODE_LINEAR;
334 break;
335
336 case TEGRA_BO_TILING_MODE_TILED:
337 value = DC_WIN_BUFFER_ADDR_MODE_TILE_UV |
338 DC_WIN_BUFFER_ADDR_MODE_TILE;
339 break;
340
341 case TEGRA_BO_TILING_MODE_BLOCK:
Thierry Reding4aa3df72014-11-24 16:27:13 +0100342 /*
343 * No need to handle this here because ->atomic_check
344 * will already have filtered it out.
345 */
346 break;
Thierry Redingc134f012014-06-03 14:48:12 +0200347 }
348
349 tegra_dc_writel(dc, value, DC_WIN_BUFFER_ADDR_MODE);
350 }
Thierry Reding10288ee2014-03-14 09:54:58 +0100351
352 value = WIN_ENABLE;
353
354 if (yuv) {
355 /* setup default colorspace conversion coefficients */
356 tegra_dc_writel(dc, 0x00f0, DC_WIN_CSC_YOF);
357 tegra_dc_writel(dc, 0x012a, DC_WIN_CSC_KYRGB);
358 tegra_dc_writel(dc, 0x0000, DC_WIN_CSC_KUR);
359 tegra_dc_writel(dc, 0x0198, DC_WIN_CSC_KVR);
360 tegra_dc_writel(dc, 0x039b, DC_WIN_CSC_KUG);
361 tegra_dc_writel(dc, 0x032f, DC_WIN_CSC_KVG);
362 tegra_dc_writel(dc, 0x0204, DC_WIN_CSC_KUB);
363 tegra_dc_writel(dc, 0x0000, DC_WIN_CSC_KVB);
364
365 value |= CSC_ENABLE;
366 } else if (window->bits_per_pixel < 24) {
367 value |= COLOR_EXPAND;
368 }
369
370 if (window->bottom_up)
371 value |= V_DIRECTION;
372
373 tegra_dc_writel(dc, value, DC_WIN_WIN_OPTIONS);
374
375 /*
376 * Disable blending and assume Window A is the bottom-most window,
377 * Window C is the top-most window and Window B is in the middle.
378 */
379 tegra_dc_writel(dc, 0xffff00, DC_WIN_BLEND_NOKEY);
380 tegra_dc_writel(dc, 0xffff00, DC_WIN_BLEND_1WIN);
381
382 switch (index) {
383 case 0:
384 tegra_dc_writel(dc, 0x000000, DC_WIN_BLEND_2WIN_X);
385 tegra_dc_writel(dc, 0x000000, DC_WIN_BLEND_2WIN_Y);
386 tegra_dc_writel(dc, 0x000000, DC_WIN_BLEND_3WIN_XY);
387 break;
388
389 case 1:
390 tegra_dc_writel(dc, 0xffff00, DC_WIN_BLEND_2WIN_X);
391 tegra_dc_writel(dc, 0x000000, DC_WIN_BLEND_2WIN_Y);
392 tegra_dc_writel(dc, 0x000000, DC_WIN_BLEND_3WIN_XY);
393 break;
394
395 case 2:
396 tegra_dc_writel(dc, 0xffff00, DC_WIN_BLEND_2WIN_X);
397 tegra_dc_writel(dc, 0xffff00, DC_WIN_BLEND_2WIN_Y);
398 tegra_dc_writel(dc, 0xffff00, DC_WIN_BLEND_3WIN_XY);
399 break;
400 }
401
Sean Paul93396d02014-11-19 13:04:49 -0500402 spin_unlock_irqrestore(&dc->lock, flags);
Thierry Redingc7679302014-10-21 13:51:53 +0200403}
404
405static void tegra_plane_destroy(struct drm_plane *plane)
406{
407 struct tegra_plane *p = to_tegra_plane(plane);
408
409 drm_plane_cleanup(plane);
410 kfree(p);
411}
412
413static const u32 tegra_primary_plane_formats[] = {
414 DRM_FORMAT_XBGR8888,
415 DRM_FORMAT_XRGB8888,
416 DRM_FORMAT_RGB565,
417};
418
Thierry Reding4aa3df72014-11-24 16:27:13 +0100419static void tegra_primary_plane_destroy(struct drm_plane *plane)
Thierry Redingc7679302014-10-21 13:51:53 +0200420{
Thierry Reding4aa3df72014-11-24 16:27:13 +0100421 tegra_plane_destroy(plane);
422}
423
Thierry Reding8f604f82014-11-28 13:14:55 +0100424static void tegra_plane_reset(struct drm_plane *plane)
425{
426 struct tegra_plane_state *state;
427
Thierry Reding3b59b7ac2015-01-28 15:01:22 +0100428 if (plane->state)
429 __drm_atomic_helper_plane_destroy_state(plane, plane->state);
Thierry Reding8f604f82014-11-28 13:14:55 +0100430
431 kfree(plane->state);
432 plane->state = NULL;
433
434 state = kzalloc(sizeof(*state), GFP_KERNEL);
435 if (state) {
436 plane->state = &state->base;
437 plane->state->plane = plane;
438 }
439}
440
441static struct drm_plane_state *tegra_plane_atomic_duplicate_state(struct drm_plane *plane)
442{
443 struct tegra_plane_state *state = to_tegra_plane_state(plane->state);
444 struct tegra_plane_state *copy;
445
Thierry Reding3b59b7ac2015-01-28 15:01:22 +0100446 copy = kmalloc(sizeof(*copy), GFP_KERNEL);
Thierry Reding8f604f82014-11-28 13:14:55 +0100447 if (!copy)
448 return NULL;
449
Thierry Reding3b59b7ac2015-01-28 15:01:22 +0100450 __drm_atomic_helper_plane_duplicate_state(plane, &copy->base);
451 copy->tiling = state->tiling;
452 copy->format = state->format;
453 copy->swap = state->swap;
Thierry Reding8f604f82014-11-28 13:14:55 +0100454
455 return &copy->base;
456}
457
458static void tegra_plane_atomic_destroy_state(struct drm_plane *plane,
459 struct drm_plane_state *state)
460{
Thierry Reding3b59b7ac2015-01-28 15:01:22 +0100461 __drm_atomic_helper_plane_destroy_state(plane, state);
Thierry Reding8f604f82014-11-28 13:14:55 +0100462 kfree(state);
463}
464
Thierry Reding4aa3df72014-11-24 16:27:13 +0100465static const struct drm_plane_funcs tegra_primary_plane_funcs = {
Thierry Reding07866962014-11-24 17:08:06 +0100466 .update_plane = drm_atomic_helper_update_plane,
467 .disable_plane = drm_atomic_helper_disable_plane,
Thierry Reding4aa3df72014-11-24 16:27:13 +0100468 .destroy = tegra_primary_plane_destroy,
Thierry Reding8f604f82014-11-28 13:14:55 +0100469 .reset = tegra_plane_reset,
470 .atomic_duplicate_state = tegra_plane_atomic_duplicate_state,
471 .atomic_destroy_state = tegra_plane_atomic_destroy_state,
Thierry Reding4aa3df72014-11-24 16:27:13 +0100472};
473
474static int tegra_plane_prepare_fb(struct drm_plane *plane,
Tvrtko Ursulind136dfe2015-03-03 14:22:31 +0000475 struct drm_framebuffer *fb,
476 const struct drm_plane_state *new_state)
Thierry Reding4aa3df72014-11-24 16:27:13 +0100477{
478 return 0;
479}
480
481static void tegra_plane_cleanup_fb(struct drm_plane *plane,
Tvrtko Ursulind136dfe2015-03-03 14:22:31 +0000482 struct drm_framebuffer *fb,
483 const struct drm_plane_state *old_fb)
Thierry Reding4aa3df72014-11-24 16:27:13 +0100484{
485}
486
Thierry Reding47802b02014-11-26 12:28:39 +0100487static int tegra_plane_state_add(struct tegra_plane *plane,
488 struct drm_plane_state *state)
489{
490 struct drm_crtc_state *crtc_state;
491 struct tegra_dc_state *tegra;
492
493 /* Propagate errors from allocation or locking failures. */
494 crtc_state = drm_atomic_get_crtc_state(state->state, state->crtc);
495 if (IS_ERR(crtc_state))
496 return PTR_ERR(crtc_state);
497
498 tegra = to_dc_state(crtc_state);
499
500 tegra->planes |= WIN_A_ACT_REQ << plane->index;
501
502 return 0;
503}
504
Thierry Reding4aa3df72014-11-24 16:27:13 +0100505static int tegra_plane_atomic_check(struct drm_plane *plane,
506 struct drm_plane_state *state)
507{
Thierry Reding8f604f82014-11-28 13:14:55 +0100508 struct tegra_plane_state *plane_state = to_tegra_plane_state(state);
509 struct tegra_bo_tiling *tiling = &plane_state->tiling;
Thierry Reding47802b02014-11-26 12:28:39 +0100510 struct tegra_plane *tegra = to_tegra_plane(plane);
Thierry Reding4aa3df72014-11-24 16:27:13 +0100511 struct tegra_dc *dc = to_tegra_dc(state->crtc);
Thierry Redingc7679302014-10-21 13:51:53 +0200512 int err;
513
Thierry Reding4aa3df72014-11-24 16:27:13 +0100514 /* no need for further checks if the plane is being disabled */
515 if (!state->crtc)
516 return 0;
517
Thierry Reding8f604f82014-11-28 13:14:55 +0100518 err = tegra_dc_format(state->fb->pixel_format, &plane_state->format,
519 &plane_state->swap);
Thierry Reding4aa3df72014-11-24 16:27:13 +0100520 if (err < 0)
521 return err;
522
Thierry Reding8f604f82014-11-28 13:14:55 +0100523 err = tegra_fb_get_tiling(state->fb, tiling);
524 if (err < 0)
525 return err;
526
527 if (tiling->mode == TEGRA_BO_TILING_MODE_BLOCK &&
Thierry Reding4aa3df72014-11-24 16:27:13 +0100528 !dc->soc->supports_block_linear) {
529 DRM_ERROR("hardware doesn't support block linear mode\n");
530 return -EINVAL;
531 }
532
533 /*
534 * Tegra doesn't support different strides for U and V planes so we
535 * error out if the user tries to display a framebuffer with such a
536 * configuration.
537 */
538 if (drm_format_num_planes(state->fb->pixel_format) > 2) {
539 if (state->fb->pitches[2] != state->fb->pitches[1]) {
540 DRM_ERROR("unsupported UV-plane configuration\n");
541 return -EINVAL;
542 }
543 }
544
Thierry Reding47802b02014-11-26 12:28:39 +0100545 err = tegra_plane_state_add(tegra, state);
546 if (err < 0)
547 return err;
548
Thierry Reding4aa3df72014-11-24 16:27:13 +0100549 return 0;
550}
551
552static void tegra_plane_atomic_update(struct drm_plane *plane,
553 struct drm_plane_state *old_state)
554{
Thierry Reding8f604f82014-11-28 13:14:55 +0100555 struct tegra_plane_state *state = to_tegra_plane_state(plane->state);
Thierry Reding4aa3df72014-11-24 16:27:13 +0100556 struct tegra_dc *dc = to_tegra_dc(plane->state->crtc);
557 struct drm_framebuffer *fb = plane->state->fb;
558 struct tegra_plane *p = to_tegra_plane(plane);
559 struct tegra_dc_window window;
560 unsigned int i;
Thierry Reding4aa3df72014-11-24 16:27:13 +0100561
562 /* rien ne va plus */
563 if (!plane->state->crtc || !plane->state->fb)
564 return;
565
Thierry Redingc7679302014-10-21 13:51:53 +0200566 memset(&window, 0, sizeof(window));
Thierry Reding4aa3df72014-11-24 16:27:13 +0100567 window.src.x = plane->state->src_x >> 16;
568 window.src.y = plane->state->src_y >> 16;
569 window.src.w = plane->state->src_w >> 16;
570 window.src.h = plane->state->src_h >> 16;
571 window.dst.x = plane->state->crtc_x;
572 window.dst.y = plane->state->crtc_y;
573 window.dst.w = plane->state->crtc_w;
574 window.dst.h = plane->state->crtc_h;
Thierry Redingc7679302014-10-21 13:51:53 +0200575 window.bits_per_pixel = fb->bits_per_pixel;
576 window.bottom_up = tegra_fb_is_bottom_up(fb);
577
Thierry Reding8f604f82014-11-28 13:14:55 +0100578 /* copy from state */
579 window.tiling = state->tiling;
580 window.format = state->format;
581 window.swap = state->swap;
Thierry Redingc7679302014-10-21 13:51:53 +0200582
Thierry Reding4aa3df72014-11-24 16:27:13 +0100583 for (i = 0; i < drm_format_num_planes(fb->pixel_format); i++) {
584 struct tegra_bo *bo = tegra_fb_get_plane(fb, i);
Thierry Redingc7679302014-10-21 13:51:53 +0200585
Thierry Reding4aa3df72014-11-24 16:27:13 +0100586 window.base[i] = bo->paddr + fb->offsets[i];
587 window.stride[i] = fb->pitches[i];
588 }
Thierry Redingc7679302014-10-21 13:51:53 +0200589
Thierry Reding4aa3df72014-11-24 16:27:13 +0100590 tegra_dc_setup_window(dc, p->index, &window);
Thierry Redingc7679302014-10-21 13:51:53 +0200591}
592
Thierry Reding4aa3df72014-11-24 16:27:13 +0100593static void tegra_plane_atomic_disable(struct drm_plane *plane,
594 struct drm_plane_state *old_state)
Thierry Redingc7679302014-10-21 13:51:53 +0200595{
Thierry Reding4aa3df72014-11-24 16:27:13 +0100596 struct tegra_plane *p = to_tegra_plane(plane);
597 struct tegra_dc *dc;
598 unsigned long flags;
599 u32 value;
600
601 /* rien ne va plus */
602 if (!old_state || !old_state->crtc)
603 return;
604
605 dc = to_tegra_dc(old_state->crtc);
606
607 spin_lock_irqsave(&dc->lock, flags);
608
609 value = WINDOW_A_SELECT << p->index;
610 tegra_dc_writel(dc, value, DC_CMD_DISPLAY_WINDOW_HEADER);
611
612 value = tegra_dc_readl(dc, DC_WIN_WIN_OPTIONS);
613 value &= ~WIN_ENABLE;
614 tegra_dc_writel(dc, value, DC_WIN_WIN_OPTIONS);
615
Thierry Reding4aa3df72014-11-24 16:27:13 +0100616 spin_unlock_irqrestore(&dc->lock, flags);
Thierry Redingc7679302014-10-21 13:51:53 +0200617}
618
Thierry Reding4aa3df72014-11-24 16:27:13 +0100619static const struct drm_plane_helper_funcs tegra_primary_plane_helper_funcs = {
620 .prepare_fb = tegra_plane_prepare_fb,
621 .cleanup_fb = tegra_plane_cleanup_fb,
622 .atomic_check = tegra_plane_atomic_check,
623 .atomic_update = tegra_plane_atomic_update,
624 .atomic_disable = tegra_plane_atomic_disable,
Thierry Redingc7679302014-10-21 13:51:53 +0200625};
626
627static struct drm_plane *tegra_dc_primary_plane_create(struct drm_device *drm,
628 struct tegra_dc *dc)
629{
Thierry Reding518e6222014-12-16 18:04:08 +0100630 /*
631 * Ideally this would use drm_crtc_mask(), but that would require the
632 * CRTC to already be in the mode_config's list of CRTCs. However, it
633 * will only be added to that list in the drm_crtc_init_with_planes()
634 * (in tegra_dc_init()), which in turn requires registration of these
635 * planes. So we have ourselves a nice little chicken and egg problem
636 * here.
637 *
638 * We work around this by manually creating the mask from the number
639 * of CRTCs that have been registered, and should therefore always be
640 * the same as drm_crtc_index() after registration.
641 */
642 unsigned long possible_crtcs = 1 << drm->mode_config.num_crtc;
Thierry Redingc7679302014-10-21 13:51:53 +0200643 struct tegra_plane *plane;
644 unsigned int num_formats;
645 const u32 *formats;
646 int err;
647
648 plane = kzalloc(sizeof(*plane), GFP_KERNEL);
649 if (!plane)
650 return ERR_PTR(-ENOMEM);
651
652 num_formats = ARRAY_SIZE(tegra_primary_plane_formats);
653 formats = tegra_primary_plane_formats;
654
Thierry Reding518e6222014-12-16 18:04:08 +0100655 err = drm_universal_plane_init(drm, &plane->base, possible_crtcs,
Thierry Redingc7679302014-10-21 13:51:53 +0200656 &tegra_primary_plane_funcs, formats,
657 num_formats, DRM_PLANE_TYPE_PRIMARY);
658 if (err < 0) {
659 kfree(plane);
660 return ERR_PTR(err);
661 }
662
Thierry Reding4aa3df72014-11-24 16:27:13 +0100663 drm_plane_helper_add(&plane->base, &tegra_primary_plane_helper_funcs);
664
Thierry Redingc7679302014-10-21 13:51:53 +0200665 return &plane->base;
666}
667
668static const u32 tegra_cursor_plane_formats[] = {
669 DRM_FORMAT_RGBA8888,
670};
671
Thierry Reding4aa3df72014-11-24 16:27:13 +0100672static int tegra_cursor_atomic_check(struct drm_plane *plane,
673 struct drm_plane_state *state)
Thierry Redingc7679302014-10-21 13:51:53 +0200674{
Thierry Reding47802b02014-11-26 12:28:39 +0100675 struct tegra_plane *tegra = to_tegra_plane(plane);
676 int err;
677
Thierry Reding4aa3df72014-11-24 16:27:13 +0100678 /* no need for further checks if the plane is being disabled */
679 if (!state->crtc)
680 return 0;
Thierry Redingc7679302014-10-21 13:51:53 +0200681
682 /* scaling not supported for cursor */
Thierry Reding4aa3df72014-11-24 16:27:13 +0100683 if ((state->src_w >> 16 != state->crtc_w) ||
684 (state->src_h >> 16 != state->crtc_h))
Thierry Redingc7679302014-10-21 13:51:53 +0200685 return -EINVAL;
686
687 /* only square cursors supported */
Thierry Reding4aa3df72014-11-24 16:27:13 +0100688 if (state->src_w != state->src_h)
Thierry Redingc7679302014-10-21 13:51:53 +0200689 return -EINVAL;
690
Thierry Reding4aa3df72014-11-24 16:27:13 +0100691 if (state->crtc_w != 32 && state->crtc_w != 64 &&
692 state->crtc_w != 128 && state->crtc_w != 256)
693 return -EINVAL;
694
Thierry Reding47802b02014-11-26 12:28:39 +0100695 err = tegra_plane_state_add(tegra, state);
696 if (err < 0)
697 return err;
698
Thierry Reding4aa3df72014-11-24 16:27:13 +0100699 return 0;
700}
701
702static void tegra_cursor_atomic_update(struct drm_plane *plane,
703 struct drm_plane_state *old_state)
704{
705 struct tegra_bo *bo = tegra_fb_get_plane(plane->state->fb, 0);
706 struct tegra_dc *dc = to_tegra_dc(plane->state->crtc);
707 struct drm_plane_state *state = plane->state;
708 u32 value = CURSOR_CLIP_DISPLAY;
709
710 /* rien ne va plus */
711 if (!plane->state->crtc || !plane->state->fb)
712 return;
713
714 switch (state->crtc_w) {
Thierry Redingc7679302014-10-21 13:51:53 +0200715 case 32:
716 value |= CURSOR_SIZE_32x32;
717 break;
718
719 case 64:
720 value |= CURSOR_SIZE_64x64;
721 break;
722
723 case 128:
724 value |= CURSOR_SIZE_128x128;
725 break;
726
727 case 256:
728 value |= CURSOR_SIZE_256x256;
729 break;
730
731 default:
Thierry Reding4aa3df72014-11-24 16:27:13 +0100732 WARN(1, "cursor size %ux%u not supported\n", state->crtc_w,
733 state->crtc_h);
734 return;
Thierry Redingc7679302014-10-21 13:51:53 +0200735 }
736
737 value |= (bo->paddr >> 10) & 0x3fffff;
738 tegra_dc_writel(dc, value, DC_DISP_CURSOR_START_ADDR);
739
740#ifdef CONFIG_ARCH_DMA_ADDR_T_64BIT
741 value = (bo->paddr >> 32) & 0x3;
742 tegra_dc_writel(dc, value, DC_DISP_CURSOR_START_ADDR_HI);
743#endif
744
745 /* enable cursor and set blend mode */
746 value = tegra_dc_readl(dc, DC_DISP_DISP_WIN_OPTIONS);
747 value |= CURSOR_ENABLE;
748 tegra_dc_writel(dc, value, DC_DISP_DISP_WIN_OPTIONS);
749
750 value = tegra_dc_readl(dc, DC_DISP_BLEND_CURSOR_CONTROL);
751 value &= ~CURSOR_DST_BLEND_MASK;
752 value &= ~CURSOR_SRC_BLEND_MASK;
753 value |= CURSOR_MODE_NORMAL;
754 value |= CURSOR_DST_BLEND_NEG_K1_TIMES_SRC;
755 value |= CURSOR_SRC_BLEND_K1_TIMES_SRC;
756 value |= CURSOR_ALPHA;
757 tegra_dc_writel(dc, value, DC_DISP_BLEND_CURSOR_CONTROL);
758
759 /* position the cursor */
Thierry Reding4aa3df72014-11-24 16:27:13 +0100760 value = (state->crtc_y & 0x3fff) << 16 | (state->crtc_x & 0x3fff);
Thierry Redingc7679302014-10-21 13:51:53 +0200761 tegra_dc_writel(dc, value, DC_DISP_CURSOR_POSITION);
762
Thierry Redingc7679302014-10-21 13:51:53 +0200763}
764
Thierry Reding4aa3df72014-11-24 16:27:13 +0100765static void tegra_cursor_atomic_disable(struct drm_plane *plane,
766 struct drm_plane_state *old_state)
Thierry Redingc7679302014-10-21 13:51:53 +0200767{
Thierry Reding4aa3df72014-11-24 16:27:13 +0100768 struct tegra_dc *dc;
Thierry Redingc7679302014-10-21 13:51:53 +0200769 u32 value;
770
Thierry Reding4aa3df72014-11-24 16:27:13 +0100771 /* rien ne va plus */
772 if (!old_state || !old_state->crtc)
773 return;
774
775 dc = to_tegra_dc(old_state->crtc);
Thierry Redingc7679302014-10-21 13:51:53 +0200776
777 value = tegra_dc_readl(dc, DC_DISP_DISP_WIN_OPTIONS);
778 value &= ~CURSOR_ENABLE;
779 tegra_dc_writel(dc, value, DC_DISP_DISP_WIN_OPTIONS);
Thierry Redingc7679302014-10-21 13:51:53 +0200780}
781
782static const struct drm_plane_funcs tegra_cursor_plane_funcs = {
Thierry Reding07866962014-11-24 17:08:06 +0100783 .update_plane = drm_atomic_helper_update_plane,
784 .disable_plane = drm_atomic_helper_disable_plane,
Thierry Redingc7679302014-10-21 13:51:53 +0200785 .destroy = tegra_plane_destroy,
Thierry Reding8f604f82014-11-28 13:14:55 +0100786 .reset = tegra_plane_reset,
787 .atomic_duplicate_state = tegra_plane_atomic_duplicate_state,
788 .atomic_destroy_state = tegra_plane_atomic_destroy_state,
Thierry Reding4aa3df72014-11-24 16:27:13 +0100789};
790
791static const struct drm_plane_helper_funcs tegra_cursor_plane_helper_funcs = {
792 .prepare_fb = tegra_plane_prepare_fb,
793 .cleanup_fb = tegra_plane_cleanup_fb,
794 .atomic_check = tegra_cursor_atomic_check,
795 .atomic_update = tegra_cursor_atomic_update,
796 .atomic_disable = tegra_cursor_atomic_disable,
Thierry Redingc7679302014-10-21 13:51:53 +0200797};
798
799static struct drm_plane *tegra_dc_cursor_plane_create(struct drm_device *drm,
800 struct tegra_dc *dc)
801{
802 struct tegra_plane *plane;
803 unsigned int num_formats;
804 const u32 *formats;
805 int err;
806
807 plane = kzalloc(sizeof(*plane), GFP_KERNEL);
808 if (!plane)
809 return ERR_PTR(-ENOMEM);
810
Thierry Reding47802b02014-11-26 12:28:39 +0100811 /*
Thierry Redinga1df3b22015-07-21 16:42:30 +0200812 * This index is kind of fake. The cursor isn't a regular plane, but
813 * its update and activation request bits in DC_CMD_STATE_CONTROL do
814 * use the same programming. Setting this fake index here allows the
815 * code in tegra_add_plane_state() to do the right thing without the
816 * need to special-casing the cursor plane.
Thierry Reding47802b02014-11-26 12:28:39 +0100817 */
818 plane->index = 6;
819
Thierry Redingc7679302014-10-21 13:51:53 +0200820 num_formats = ARRAY_SIZE(tegra_cursor_plane_formats);
821 formats = tegra_cursor_plane_formats;
822
823 err = drm_universal_plane_init(drm, &plane->base, 1 << dc->pipe,
824 &tegra_cursor_plane_funcs, formats,
825 num_formats, DRM_PLANE_TYPE_CURSOR);
826 if (err < 0) {
827 kfree(plane);
828 return ERR_PTR(err);
829 }
830
Thierry Reding4aa3df72014-11-24 16:27:13 +0100831 drm_plane_helper_add(&plane->base, &tegra_cursor_plane_helper_funcs);
832
Thierry Redingc7679302014-10-21 13:51:53 +0200833 return &plane->base;
834}
835
Thierry Redingc7679302014-10-21 13:51:53 +0200836static void tegra_overlay_plane_destroy(struct drm_plane *plane)
Thierry Redingf34bc782012-11-04 21:47:13 +0100837{
Thierry Redingc7679302014-10-21 13:51:53 +0200838 tegra_plane_destroy(plane);
Thierry Redingf34bc782012-11-04 21:47:13 +0100839}
840
Thierry Redingc7679302014-10-21 13:51:53 +0200841static const struct drm_plane_funcs tegra_overlay_plane_funcs = {
Thierry Reding07866962014-11-24 17:08:06 +0100842 .update_plane = drm_atomic_helper_update_plane,
843 .disable_plane = drm_atomic_helper_disable_plane,
Thierry Redingc7679302014-10-21 13:51:53 +0200844 .destroy = tegra_overlay_plane_destroy,
Thierry Reding8f604f82014-11-28 13:14:55 +0100845 .reset = tegra_plane_reset,
846 .atomic_duplicate_state = tegra_plane_atomic_duplicate_state,
847 .atomic_destroy_state = tegra_plane_atomic_destroy_state,
Thierry Redingf34bc782012-11-04 21:47:13 +0100848};
849
Thierry Redingc7679302014-10-21 13:51:53 +0200850static const uint32_t tegra_overlay_plane_formats[] = {
Thierry Redingdbe4d9a2013-03-22 15:37:30 +0100851 DRM_FORMAT_XBGR8888,
Thierry Redingf34bc782012-11-04 21:47:13 +0100852 DRM_FORMAT_XRGB8888,
Thierry Redingdbe4d9a2013-03-22 15:37:30 +0100853 DRM_FORMAT_RGB565,
Thierry Redingf34bc782012-11-04 21:47:13 +0100854 DRM_FORMAT_UYVY,
Thierry Redingf9253902014-01-29 20:31:17 +0100855 DRM_FORMAT_YUYV,
Thierry Redingf34bc782012-11-04 21:47:13 +0100856 DRM_FORMAT_YUV420,
857 DRM_FORMAT_YUV422,
858};
859
Thierry Reding4aa3df72014-11-24 16:27:13 +0100860static const struct drm_plane_helper_funcs tegra_overlay_plane_helper_funcs = {
861 .prepare_fb = tegra_plane_prepare_fb,
862 .cleanup_fb = tegra_plane_cleanup_fb,
863 .atomic_check = tegra_plane_atomic_check,
864 .atomic_update = tegra_plane_atomic_update,
865 .atomic_disable = tegra_plane_atomic_disable,
866};
867
Thierry Redingc7679302014-10-21 13:51:53 +0200868static struct drm_plane *tegra_dc_overlay_plane_create(struct drm_device *drm,
869 struct tegra_dc *dc,
870 unsigned int index)
871{
872 struct tegra_plane *plane;
873 unsigned int num_formats;
874 const u32 *formats;
875 int err;
876
877 plane = kzalloc(sizeof(*plane), GFP_KERNEL);
878 if (!plane)
879 return ERR_PTR(-ENOMEM);
880
881 plane->index = index;
882
883 num_formats = ARRAY_SIZE(tegra_overlay_plane_formats);
884 formats = tegra_overlay_plane_formats;
885
886 err = drm_universal_plane_init(drm, &plane->base, 1 << dc->pipe,
887 &tegra_overlay_plane_funcs, formats,
888 num_formats, DRM_PLANE_TYPE_OVERLAY);
889 if (err < 0) {
890 kfree(plane);
891 return ERR_PTR(err);
892 }
893
Thierry Reding4aa3df72014-11-24 16:27:13 +0100894 drm_plane_helper_add(&plane->base, &tegra_overlay_plane_helper_funcs);
895
Thierry Redingc7679302014-10-21 13:51:53 +0200896 return &plane->base;
897}
898
Thierry Redingf34bc782012-11-04 21:47:13 +0100899static int tegra_dc_add_planes(struct drm_device *drm, struct tegra_dc *dc)
900{
Thierry Redingc7679302014-10-21 13:51:53 +0200901 struct drm_plane *plane;
Thierry Redingf34bc782012-11-04 21:47:13 +0100902 unsigned int i;
Thierry Redingf34bc782012-11-04 21:47:13 +0100903
904 for (i = 0; i < 2; i++) {
Thierry Redingc7679302014-10-21 13:51:53 +0200905 plane = tegra_dc_overlay_plane_create(drm, dc, 1 + i);
906 if (IS_ERR(plane))
907 return PTR_ERR(plane);
Thierry Redingf34bc782012-11-04 21:47:13 +0100908 }
909
910 return 0;
911}
912
Thierry Reding42e9ce02015-01-28 14:43:05 +0100913u32 tegra_dc_get_vblank_counter(struct tegra_dc *dc)
914{
915 if (dc->syncpt)
916 return host1x_syncpt_read(dc->syncpt);
917
918 /* fallback to software emulated VBLANK counter */
919 return drm_crtc_vblank_count(&dc->base);
920}
921
Thierry Reding6e5ff992012-11-28 11:45:47 +0100922void tegra_dc_enable_vblank(struct tegra_dc *dc)
923{
924 unsigned long value, flags;
925
926 spin_lock_irqsave(&dc->lock, flags);
927
928 value = tegra_dc_readl(dc, DC_CMD_INT_MASK);
929 value |= VBLANK_INT;
930 tegra_dc_writel(dc, value, DC_CMD_INT_MASK);
931
932 spin_unlock_irqrestore(&dc->lock, flags);
933}
934
935void tegra_dc_disable_vblank(struct tegra_dc *dc)
936{
937 unsigned long value, flags;
938
939 spin_lock_irqsave(&dc->lock, flags);
940
941 value = tegra_dc_readl(dc, DC_CMD_INT_MASK);
942 value &= ~VBLANK_INT;
943 tegra_dc_writel(dc, value, DC_CMD_INT_MASK);
944
945 spin_unlock_irqrestore(&dc->lock, flags);
946}
947
Thierry Reding3c03c462012-11-28 12:00:18 +0100948static void tegra_dc_finish_page_flip(struct tegra_dc *dc)
949{
950 struct drm_device *drm = dc->base.dev;
951 struct drm_crtc *crtc = &dc->base;
Thierry Reding3c03c462012-11-28 12:00:18 +0100952 unsigned long flags, base;
Arto Merilainende2ba662013-03-22 16:34:08 +0200953 struct tegra_bo *bo;
Thierry Reding3c03c462012-11-28 12:00:18 +0100954
Thierry Reding6b59cc12014-12-16 16:33:27 +0100955 spin_lock_irqsave(&drm->event_lock, flags);
956
957 if (!dc->event) {
958 spin_unlock_irqrestore(&drm->event_lock, flags);
Thierry Reding3c03c462012-11-28 12:00:18 +0100959 return;
Thierry Reding6b59cc12014-12-16 16:33:27 +0100960 }
Thierry Reding3c03c462012-11-28 12:00:18 +0100961
Matt Roperf4510a22014-04-01 15:22:40 -0700962 bo = tegra_fb_get_plane(crtc->primary->fb, 0);
Thierry Reding3c03c462012-11-28 12:00:18 +0100963
Dan Carpenter8643bc62015-01-07 14:01:26 +0300964 spin_lock(&dc->lock);
Sean Paul93396d02014-11-19 13:04:49 -0500965
Thierry Reding3c03c462012-11-28 12:00:18 +0100966 /* check if new start address has been latched */
Sean Paul93396d02014-11-19 13:04:49 -0500967 tegra_dc_writel(dc, WINDOW_A_SELECT, DC_CMD_DISPLAY_WINDOW_HEADER);
Thierry Reding3c03c462012-11-28 12:00:18 +0100968 tegra_dc_writel(dc, READ_MUX, DC_CMD_STATE_ACCESS);
969 base = tegra_dc_readl(dc, DC_WINBUF_START_ADDR);
970 tegra_dc_writel(dc, 0, DC_CMD_STATE_ACCESS);
971
Dan Carpenter8643bc62015-01-07 14:01:26 +0300972 spin_unlock(&dc->lock);
Sean Paul93396d02014-11-19 13:04:49 -0500973
Matt Roperf4510a22014-04-01 15:22:40 -0700974 if (base == bo->paddr + crtc->primary->fb->offsets[0]) {
Thierry Redinged7dae52014-12-16 16:03:13 +0100975 drm_crtc_send_vblank_event(crtc, dc->event);
976 drm_crtc_vblank_put(crtc);
Thierry Reding3c03c462012-11-28 12:00:18 +0100977 dc->event = NULL;
Thierry Reding3c03c462012-11-28 12:00:18 +0100978 }
Thierry Reding6b59cc12014-12-16 16:33:27 +0100979
980 spin_unlock_irqrestore(&drm->event_lock, flags);
Thierry Reding3c03c462012-11-28 12:00:18 +0100981}
982
983void tegra_dc_cancel_page_flip(struct drm_crtc *crtc, struct drm_file *file)
984{
985 struct tegra_dc *dc = to_tegra_dc(crtc);
986 struct drm_device *drm = crtc->dev;
987 unsigned long flags;
988
989 spin_lock_irqsave(&drm->event_lock, flags);
990
991 if (dc->event && dc->event->base.file_priv == file) {
992 dc->event->base.destroy(&dc->event->base);
Thierry Redinged7dae52014-12-16 16:03:13 +0100993 drm_crtc_vblank_put(crtc);
Thierry Reding3c03c462012-11-28 12:00:18 +0100994 dc->event = NULL;
995 }
996
997 spin_unlock_irqrestore(&drm->event_lock, flags);
998}
999
Thierry Redingf002abc2013-10-14 14:06:02 +02001000static void tegra_dc_destroy(struct drm_crtc *crtc)
1001{
1002 drm_crtc_cleanup(crtc);
Thierry Redingf002abc2013-10-14 14:06:02 +02001003}
1004
Thierry Redingca915b12014-12-08 16:14:45 +01001005static void tegra_crtc_reset(struct drm_crtc *crtc)
1006{
1007 struct tegra_dc_state *state;
1008
Thierry Reding3b59b7ac2015-01-28 15:01:22 +01001009 if (crtc->state)
1010 __drm_atomic_helper_crtc_destroy_state(crtc, crtc->state);
1011
Thierry Redingca915b12014-12-08 16:14:45 +01001012 kfree(crtc->state);
1013 crtc->state = NULL;
1014
1015 state = kzalloc(sizeof(*state), GFP_KERNEL);
Thierry Reding332bbe72015-01-28 15:03:31 +01001016 if (state) {
Thierry Redingca915b12014-12-08 16:14:45 +01001017 crtc->state = &state->base;
Thierry Reding332bbe72015-01-28 15:03:31 +01001018 crtc->state->crtc = crtc;
1019 }
Thierry Reding31930d42015-07-02 17:04:06 +02001020
1021 drm_crtc_vblank_reset(crtc);
Thierry Redingca915b12014-12-08 16:14:45 +01001022}
1023
1024static struct drm_crtc_state *
1025tegra_crtc_atomic_duplicate_state(struct drm_crtc *crtc)
1026{
1027 struct tegra_dc_state *state = to_dc_state(crtc->state);
1028 struct tegra_dc_state *copy;
1029
Thierry Reding3b59b7ac2015-01-28 15:01:22 +01001030 copy = kmalloc(sizeof(*copy), GFP_KERNEL);
Thierry Redingca915b12014-12-08 16:14:45 +01001031 if (!copy)
1032 return NULL;
1033
Thierry Reding3b59b7ac2015-01-28 15:01:22 +01001034 __drm_atomic_helper_crtc_duplicate_state(crtc, &copy->base);
1035 copy->clk = state->clk;
1036 copy->pclk = state->pclk;
1037 copy->div = state->div;
1038 copy->planes = state->planes;
Thierry Redingca915b12014-12-08 16:14:45 +01001039
1040 return &copy->base;
1041}
1042
1043static void tegra_crtc_atomic_destroy_state(struct drm_crtc *crtc,
1044 struct drm_crtc_state *state)
1045{
Thierry Reding3b59b7ac2015-01-28 15:01:22 +01001046 __drm_atomic_helper_crtc_destroy_state(crtc, state);
Thierry Redingca915b12014-12-08 16:14:45 +01001047 kfree(state);
1048}
1049
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001050static const struct drm_crtc_funcs tegra_crtc_funcs = {
Thierry Reding1503ca42014-11-24 17:41:23 +01001051 .page_flip = drm_atomic_helper_page_flip,
Thierry Reding74f48792014-11-24 17:08:20 +01001052 .set_config = drm_atomic_helper_set_config,
Thierry Redingf002abc2013-10-14 14:06:02 +02001053 .destroy = tegra_dc_destroy,
Thierry Redingca915b12014-12-08 16:14:45 +01001054 .reset = tegra_crtc_reset,
1055 .atomic_duplicate_state = tegra_crtc_atomic_duplicate_state,
1056 .atomic_destroy_state = tegra_crtc_atomic_destroy_state,
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001057};
1058
Thierry Reding86df2562014-12-08 16:03:53 +01001059static void tegra_dc_stop(struct tegra_dc *dc)
1060{
1061 u32 value;
1062
1063 /* stop the display controller */
1064 value = tegra_dc_readl(dc, DC_CMD_DISPLAY_COMMAND);
1065 value &= ~DISP_CTRL_MODE_MASK;
1066 tegra_dc_writel(dc, value, DC_CMD_DISPLAY_COMMAND);
1067
1068 tegra_dc_commit(dc);
1069}
1070
1071static bool tegra_dc_idle(struct tegra_dc *dc)
1072{
1073 u32 value;
1074
1075 value = tegra_dc_readl_active(dc, DC_CMD_DISPLAY_COMMAND);
1076
1077 return (value & DISP_CTRL_MODE_MASK) == 0;
1078}
1079
1080static int tegra_dc_wait_idle(struct tegra_dc *dc, unsigned long timeout)
1081{
1082 timeout = jiffies + msecs_to_jiffies(timeout);
1083
1084 while (time_before(jiffies, timeout)) {
1085 if (tegra_dc_idle(dc))
1086 return 0;
1087
1088 usleep_range(1000, 2000);
1089 }
1090
1091 dev_dbg(dc->dev, "timeout waiting for DC to become idle\n");
1092 return -ETIMEDOUT;
1093}
1094
Thierry Redingf34bc782012-11-04 21:47:13 +01001095static void tegra_crtc_disable(struct drm_crtc *crtc)
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001096{
Thierry Redingf002abc2013-10-14 14:06:02 +02001097 struct tegra_dc *dc = to_tegra_dc(crtc);
Thierry Reding3b0e5852014-12-16 18:30:16 +01001098 u32 value;
Thierry Redingf002abc2013-10-14 14:06:02 +02001099
Thierry Reding86df2562014-12-08 16:03:53 +01001100 if (!tegra_dc_idle(dc)) {
1101 tegra_dc_stop(dc);
1102
1103 /*
1104 * Ignore the return value, there isn't anything useful to do
1105 * in case this fails.
1106 */
1107 tegra_dc_wait_idle(dc, 100);
1108 }
Thierry Reding36904ad2014-11-21 17:35:54 +01001109
Thierry Reding3b0e5852014-12-16 18:30:16 +01001110 /*
1111 * This should really be part of the RGB encoder driver, but clearing
1112 * these bits has the side-effect of stopping the display controller.
1113 * When that happens no VBLANK interrupts will be raised. At the same
1114 * time the encoder is disabled before the display controller, so the
1115 * above code is always going to timeout waiting for the controller
1116 * to go idle.
1117 *
1118 * Given the close coupling between the RGB encoder and the display
1119 * controller doing it here is still kind of okay. None of the other
1120 * encoder drivers require these bits to be cleared.
1121 *
1122 * XXX: Perhaps given that the display controller is switched off at
1123 * this point anyway maybe clearing these bits isn't even useful for
1124 * the RGB encoder?
1125 */
1126 if (dc->rgb) {
1127 value = tegra_dc_readl(dc, DC_CMD_DISPLAY_POWER_CONTROL);
1128 value &= ~(PW0_ENABLE | PW1_ENABLE | PW2_ENABLE | PW3_ENABLE |
1129 PW4_ENABLE | PM0_ENABLE | PM1_ENABLE);
1130 tegra_dc_writel(dc, value, DC_CMD_DISPLAY_POWER_CONTROL);
1131 }
1132
Thierry Reding8ff64c12014-10-08 14:48:51 +02001133 drm_crtc_vblank_off(crtc);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001134}
1135
1136static bool tegra_crtc_mode_fixup(struct drm_crtc *crtc,
1137 const struct drm_display_mode *mode,
1138 struct drm_display_mode *adjusted)
1139{
1140 return true;
1141}
1142
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001143static int tegra_dc_set_timings(struct tegra_dc *dc,
1144 struct drm_display_mode *mode)
1145{
Thierry Reding0444c0f2014-04-16 09:22:38 +02001146 unsigned int h_ref_to_sync = 1;
1147 unsigned int v_ref_to_sync = 1;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001148 unsigned long value;
1149
1150 tegra_dc_writel(dc, 0x0, DC_DISP_DISP_TIMING_OPTIONS);
1151
1152 value = (v_ref_to_sync << 16) | h_ref_to_sync;
1153 tegra_dc_writel(dc, value, DC_DISP_REF_TO_SYNC);
1154
1155 value = ((mode->vsync_end - mode->vsync_start) << 16) |
1156 ((mode->hsync_end - mode->hsync_start) << 0);
1157 tegra_dc_writel(dc, value, DC_DISP_SYNC_WIDTH);
1158
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001159 value = ((mode->vtotal - mode->vsync_end) << 16) |
1160 ((mode->htotal - mode->hsync_end) << 0);
Lucas Stach40495082012-12-19 21:38:52 +00001161 tegra_dc_writel(dc, value, DC_DISP_BACK_PORCH);
1162
1163 value = ((mode->vsync_start - mode->vdisplay) << 16) |
1164 ((mode->hsync_start - mode->hdisplay) << 0);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001165 tegra_dc_writel(dc, value, DC_DISP_FRONT_PORCH);
1166
1167 value = (mode->vdisplay << 16) | mode->hdisplay;
1168 tegra_dc_writel(dc, value, DC_DISP_ACTIVE);
1169
1170 return 0;
1171}
1172
Thierry Reding9d910b62015-01-28 15:25:54 +01001173/**
1174 * tegra_dc_state_setup_clock - check clock settings and store them in atomic
1175 * state
1176 * @dc: display controller
1177 * @crtc_state: CRTC atomic state
1178 * @clk: parent clock for display controller
1179 * @pclk: pixel clock
1180 * @div: shift clock divider
1181 *
1182 * Returns:
1183 * 0 on success or a negative error-code on failure.
1184 */
Thierry Redingca915b12014-12-08 16:14:45 +01001185int tegra_dc_state_setup_clock(struct tegra_dc *dc,
1186 struct drm_crtc_state *crtc_state,
1187 struct clk *clk, unsigned long pclk,
1188 unsigned int div)
1189{
1190 struct tegra_dc_state *state = to_dc_state(crtc_state);
1191
Thierry Redingd2982742015-01-22 08:48:25 +01001192 if (!clk_has_parent(dc->clk, clk))
1193 return -EINVAL;
1194
Thierry Redingca915b12014-12-08 16:14:45 +01001195 state->clk = clk;
1196 state->pclk = pclk;
1197 state->div = div;
1198
1199 return 0;
1200}
1201
Thierry Reding76d59ed2014-12-19 15:09:16 +01001202static void tegra_dc_commit_state(struct tegra_dc *dc,
1203 struct tegra_dc_state *state)
1204{
1205 u32 value;
1206 int err;
1207
1208 err = clk_set_parent(dc->clk, state->clk);
1209 if (err < 0)
1210 dev_err(dc->dev, "failed to set parent clock: %d\n", err);
1211
1212 /*
1213 * Outputs may not want to change the parent clock rate. This is only
1214 * relevant to Tegra20 where only a single display PLL is available.
1215 * Since that PLL would typically be used for HDMI, an internal LVDS
1216 * panel would need to be driven by some other clock such as PLL_P
1217 * which is shared with other peripherals. Changing the clock rate
1218 * should therefore be avoided.
1219 */
1220 if (state->pclk > 0) {
1221 err = clk_set_rate(state->clk, state->pclk);
1222 if (err < 0)
1223 dev_err(dc->dev,
1224 "failed to set clock rate to %lu Hz\n",
1225 state->pclk);
1226 }
1227
1228 DRM_DEBUG_KMS("rate: %lu, div: %u\n", clk_get_rate(dc->clk),
1229 state->div);
1230 DRM_DEBUG_KMS("pclk: %lu\n", state->pclk);
1231
1232 value = SHIFT_CLK_DIVIDER(state->div) | PIXEL_CLK_DIVIDER_PCD1;
1233 tegra_dc_writel(dc, value, DC_DISP_DISP_CLOCK_CONTROL);
1234}
1235
Thierry Reding4aa3df72014-11-24 16:27:13 +01001236static void tegra_crtc_mode_set_nofb(struct drm_crtc *crtc)
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001237{
Thierry Reding4aa3df72014-11-24 16:27:13 +01001238 struct drm_display_mode *mode = &crtc->state->adjusted_mode;
Thierry Reding76d59ed2014-12-19 15:09:16 +01001239 struct tegra_dc_state *state = to_dc_state(crtc->state);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001240 struct tegra_dc *dc = to_tegra_dc(crtc);
Thierry Redingdbb3f2f2014-03-26 12:32:14 +01001241 u32 value;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001242
Thierry Reding76d59ed2014-12-19 15:09:16 +01001243 tegra_dc_commit_state(dc, state);
1244
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001245 /* program display mode */
1246 tegra_dc_set_timings(dc, mode);
1247
Thierry Reding8620fc62013-12-12 11:03:59 +01001248 /* interlacing isn't supported yet, so disable it */
1249 if (dc->soc->supports_interlacing) {
1250 value = tegra_dc_readl(dc, DC_DISP_INTERLACE_CONTROL);
1251 value &= ~INTERLACE_ENABLE;
1252 tegra_dc_writel(dc, value, DC_DISP_INTERLACE_CONTROL);
1253 }
Thierry Reding666cb872014-12-08 16:32:47 +01001254
1255 value = tegra_dc_readl(dc, DC_CMD_DISPLAY_COMMAND);
1256 value &= ~DISP_CTRL_MODE_MASK;
1257 value |= DISP_CTRL_MODE_C_DISPLAY;
1258 tegra_dc_writel(dc, value, DC_CMD_DISPLAY_COMMAND);
1259
1260 value = tegra_dc_readl(dc, DC_CMD_DISPLAY_POWER_CONTROL);
1261 value |= PW0_ENABLE | PW1_ENABLE | PW2_ENABLE | PW3_ENABLE |
1262 PW4_ENABLE | PM0_ENABLE | PM1_ENABLE;
1263 tegra_dc_writel(dc, value, DC_CMD_DISPLAY_POWER_CONTROL);
1264
1265 tegra_dc_commit(dc);
Thierry Reding23fb4742012-11-28 11:38:24 +01001266}
1267
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001268static void tegra_crtc_prepare(struct drm_crtc *crtc)
1269{
Thierry Reding8ff64c12014-10-08 14:48:51 +02001270 drm_crtc_vblank_off(crtc);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001271}
1272
1273static void tegra_crtc_commit(struct drm_crtc *crtc)
1274{
Thierry Reding8ff64c12014-10-08 14:48:51 +02001275 drm_crtc_vblank_on(crtc);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001276}
1277
Thierry Reding4aa3df72014-11-24 16:27:13 +01001278static int tegra_crtc_atomic_check(struct drm_crtc *crtc,
1279 struct drm_crtc_state *state)
1280{
1281 return 0;
1282}
1283
1284static void tegra_crtc_atomic_begin(struct drm_crtc *crtc)
1285{
Thierry Reding1503ca42014-11-24 17:41:23 +01001286 struct tegra_dc *dc = to_tegra_dc(crtc);
1287
1288 if (crtc->state->event) {
1289 crtc->state->event->pipe = drm_crtc_index(crtc);
1290
1291 WARN_ON(drm_crtc_vblank_get(crtc) != 0);
1292
1293 dc->event = crtc->state->event;
1294 crtc->state->event = NULL;
1295 }
Thierry Reding4aa3df72014-11-24 16:27:13 +01001296}
1297
1298static void tegra_crtc_atomic_flush(struct drm_crtc *crtc)
1299{
Thierry Reding47802b02014-11-26 12:28:39 +01001300 struct tegra_dc_state *state = to_dc_state(crtc->state);
1301 struct tegra_dc *dc = to_tegra_dc(crtc);
1302
1303 tegra_dc_writel(dc, state->planes << 8, DC_CMD_STATE_CONTROL);
1304 tegra_dc_writel(dc, state->planes, DC_CMD_STATE_CONTROL);
Thierry Reding4aa3df72014-11-24 16:27:13 +01001305}
1306
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001307static const struct drm_crtc_helper_funcs tegra_crtc_helper_funcs = {
Thierry Redingf34bc782012-11-04 21:47:13 +01001308 .disable = tegra_crtc_disable,
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001309 .mode_fixup = tegra_crtc_mode_fixup,
Thierry Reding4aa3df72014-11-24 16:27:13 +01001310 .mode_set_nofb = tegra_crtc_mode_set_nofb,
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001311 .prepare = tegra_crtc_prepare,
1312 .commit = tegra_crtc_commit,
Thierry Reding4aa3df72014-11-24 16:27:13 +01001313 .atomic_check = tegra_crtc_atomic_check,
1314 .atomic_begin = tegra_crtc_atomic_begin,
1315 .atomic_flush = tegra_crtc_atomic_flush,
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001316};
1317
Thierry Reding6e5ff992012-11-28 11:45:47 +01001318static irqreturn_t tegra_dc_irq(int irq, void *data)
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001319{
1320 struct tegra_dc *dc = data;
1321 unsigned long status;
1322
1323 status = tegra_dc_readl(dc, DC_CMD_INT_STATUS);
1324 tegra_dc_writel(dc, status, DC_CMD_INT_STATUS);
1325
1326 if (status & FRAME_END_INT) {
1327 /*
1328 dev_dbg(dc->dev, "%s(): frame end\n", __func__);
1329 */
1330 }
1331
1332 if (status & VBLANK_INT) {
1333 /*
1334 dev_dbg(dc->dev, "%s(): vertical blank\n", __func__);
1335 */
Thierry Redinged7dae52014-12-16 16:03:13 +01001336 drm_crtc_handle_vblank(&dc->base);
Thierry Reding3c03c462012-11-28 12:00:18 +01001337 tegra_dc_finish_page_flip(dc);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001338 }
1339
1340 if (status & (WIN_A_UF_INT | WIN_B_UF_INT | WIN_C_UF_INT)) {
1341 /*
1342 dev_dbg(dc->dev, "%s(): underflow\n", __func__);
1343 */
1344 }
1345
1346 return IRQ_HANDLED;
1347}
1348
1349static int tegra_dc_show_regs(struct seq_file *s, void *data)
1350{
1351 struct drm_info_node *node = s->private;
1352 struct tegra_dc *dc = node->info_ent->data;
1353
1354#define DUMP_REG(name) \
Thierry Reding03a60562014-10-21 13:48:48 +02001355 seq_printf(s, "%-40s %#05x %08x\n", #name, name, \
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001356 tegra_dc_readl(dc, name))
1357
1358 DUMP_REG(DC_CMD_GENERAL_INCR_SYNCPT);
1359 DUMP_REG(DC_CMD_GENERAL_INCR_SYNCPT_CNTRL);
1360 DUMP_REG(DC_CMD_GENERAL_INCR_SYNCPT_ERROR);
1361 DUMP_REG(DC_CMD_WIN_A_INCR_SYNCPT);
1362 DUMP_REG(DC_CMD_WIN_A_INCR_SYNCPT_CNTRL);
1363 DUMP_REG(DC_CMD_WIN_A_INCR_SYNCPT_ERROR);
1364 DUMP_REG(DC_CMD_WIN_B_INCR_SYNCPT);
1365 DUMP_REG(DC_CMD_WIN_B_INCR_SYNCPT_CNTRL);
1366 DUMP_REG(DC_CMD_WIN_B_INCR_SYNCPT_ERROR);
1367 DUMP_REG(DC_CMD_WIN_C_INCR_SYNCPT);
1368 DUMP_REG(DC_CMD_WIN_C_INCR_SYNCPT_CNTRL);
1369 DUMP_REG(DC_CMD_WIN_C_INCR_SYNCPT_ERROR);
1370 DUMP_REG(DC_CMD_CONT_SYNCPT_VSYNC);
1371 DUMP_REG(DC_CMD_DISPLAY_COMMAND_OPTION0);
1372 DUMP_REG(DC_CMD_DISPLAY_COMMAND);
1373 DUMP_REG(DC_CMD_SIGNAL_RAISE);
1374 DUMP_REG(DC_CMD_DISPLAY_POWER_CONTROL);
1375 DUMP_REG(DC_CMD_INT_STATUS);
1376 DUMP_REG(DC_CMD_INT_MASK);
1377 DUMP_REG(DC_CMD_INT_ENABLE);
1378 DUMP_REG(DC_CMD_INT_TYPE);
1379 DUMP_REG(DC_CMD_INT_POLARITY);
1380 DUMP_REG(DC_CMD_SIGNAL_RAISE1);
1381 DUMP_REG(DC_CMD_SIGNAL_RAISE2);
1382 DUMP_REG(DC_CMD_SIGNAL_RAISE3);
1383 DUMP_REG(DC_CMD_STATE_ACCESS);
1384 DUMP_REG(DC_CMD_STATE_CONTROL);
1385 DUMP_REG(DC_CMD_DISPLAY_WINDOW_HEADER);
1386 DUMP_REG(DC_CMD_REG_ACT_CONTROL);
1387 DUMP_REG(DC_COM_CRC_CONTROL);
1388 DUMP_REG(DC_COM_CRC_CHECKSUM);
1389 DUMP_REG(DC_COM_PIN_OUTPUT_ENABLE(0));
1390 DUMP_REG(DC_COM_PIN_OUTPUT_ENABLE(1));
1391 DUMP_REG(DC_COM_PIN_OUTPUT_ENABLE(2));
1392 DUMP_REG(DC_COM_PIN_OUTPUT_ENABLE(3));
1393 DUMP_REG(DC_COM_PIN_OUTPUT_POLARITY(0));
1394 DUMP_REG(DC_COM_PIN_OUTPUT_POLARITY(1));
1395 DUMP_REG(DC_COM_PIN_OUTPUT_POLARITY(2));
1396 DUMP_REG(DC_COM_PIN_OUTPUT_POLARITY(3));
1397 DUMP_REG(DC_COM_PIN_OUTPUT_DATA(0));
1398 DUMP_REG(DC_COM_PIN_OUTPUT_DATA(1));
1399 DUMP_REG(DC_COM_PIN_OUTPUT_DATA(2));
1400 DUMP_REG(DC_COM_PIN_OUTPUT_DATA(3));
1401 DUMP_REG(DC_COM_PIN_INPUT_ENABLE(0));
1402 DUMP_REG(DC_COM_PIN_INPUT_ENABLE(1));
1403 DUMP_REG(DC_COM_PIN_INPUT_ENABLE(2));
1404 DUMP_REG(DC_COM_PIN_INPUT_ENABLE(3));
1405 DUMP_REG(DC_COM_PIN_INPUT_DATA(0));
1406 DUMP_REG(DC_COM_PIN_INPUT_DATA(1));
1407 DUMP_REG(DC_COM_PIN_OUTPUT_SELECT(0));
1408 DUMP_REG(DC_COM_PIN_OUTPUT_SELECT(1));
1409 DUMP_REG(DC_COM_PIN_OUTPUT_SELECT(2));
1410 DUMP_REG(DC_COM_PIN_OUTPUT_SELECT(3));
1411 DUMP_REG(DC_COM_PIN_OUTPUT_SELECT(4));
1412 DUMP_REG(DC_COM_PIN_OUTPUT_SELECT(5));
1413 DUMP_REG(DC_COM_PIN_OUTPUT_SELECT(6));
1414 DUMP_REG(DC_COM_PIN_MISC_CONTROL);
1415 DUMP_REG(DC_COM_PIN_PM0_CONTROL);
1416 DUMP_REG(DC_COM_PIN_PM0_DUTY_CYCLE);
1417 DUMP_REG(DC_COM_PIN_PM1_CONTROL);
1418 DUMP_REG(DC_COM_PIN_PM1_DUTY_CYCLE);
1419 DUMP_REG(DC_COM_SPI_CONTROL);
1420 DUMP_REG(DC_COM_SPI_START_BYTE);
1421 DUMP_REG(DC_COM_HSPI_WRITE_DATA_AB);
1422 DUMP_REG(DC_COM_HSPI_WRITE_DATA_CD);
1423 DUMP_REG(DC_COM_HSPI_CS_DC);
1424 DUMP_REG(DC_COM_SCRATCH_REGISTER_A);
1425 DUMP_REG(DC_COM_SCRATCH_REGISTER_B);
1426 DUMP_REG(DC_COM_GPIO_CTRL);
1427 DUMP_REG(DC_COM_GPIO_DEBOUNCE_COUNTER);
1428 DUMP_REG(DC_COM_CRC_CHECKSUM_LATCHED);
1429 DUMP_REG(DC_DISP_DISP_SIGNAL_OPTIONS0);
1430 DUMP_REG(DC_DISP_DISP_SIGNAL_OPTIONS1);
1431 DUMP_REG(DC_DISP_DISP_WIN_OPTIONS);
1432 DUMP_REG(DC_DISP_DISP_MEM_HIGH_PRIORITY);
1433 DUMP_REG(DC_DISP_DISP_MEM_HIGH_PRIORITY_TIMER);
1434 DUMP_REG(DC_DISP_DISP_TIMING_OPTIONS);
1435 DUMP_REG(DC_DISP_REF_TO_SYNC);
1436 DUMP_REG(DC_DISP_SYNC_WIDTH);
1437 DUMP_REG(DC_DISP_BACK_PORCH);
1438 DUMP_REG(DC_DISP_ACTIVE);
1439 DUMP_REG(DC_DISP_FRONT_PORCH);
1440 DUMP_REG(DC_DISP_H_PULSE0_CONTROL);
1441 DUMP_REG(DC_DISP_H_PULSE0_POSITION_A);
1442 DUMP_REG(DC_DISP_H_PULSE0_POSITION_B);
1443 DUMP_REG(DC_DISP_H_PULSE0_POSITION_C);
1444 DUMP_REG(DC_DISP_H_PULSE0_POSITION_D);
1445 DUMP_REG(DC_DISP_H_PULSE1_CONTROL);
1446 DUMP_REG(DC_DISP_H_PULSE1_POSITION_A);
1447 DUMP_REG(DC_DISP_H_PULSE1_POSITION_B);
1448 DUMP_REG(DC_DISP_H_PULSE1_POSITION_C);
1449 DUMP_REG(DC_DISP_H_PULSE1_POSITION_D);
1450 DUMP_REG(DC_DISP_H_PULSE2_CONTROL);
1451 DUMP_REG(DC_DISP_H_PULSE2_POSITION_A);
1452 DUMP_REG(DC_DISP_H_PULSE2_POSITION_B);
1453 DUMP_REG(DC_DISP_H_PULSE2_POSITION_C);
1454 DUMP_REG(DC_DISP_H_PULSE2_POSITION_D);
1455 DUMP_REG(DC_DISP_V_PULSE0_CONTROL);
1456 DUMP_REG(DC_DISP_V_PULSE0_POSITION_A);
1457 DUMP_REG(DC_DISP_V_PULSE0_POSITION_B);
1458 DUMP_REG(DC_DISP_V_PULSE0_POSITION_C);
1459 DUMP_REG(DC_DISP_V_PULSE1_CONTROL);
1460 DUMP_REG(DC_DISP_V_PULSE1_POSITION_A);
1461 DUMP_REG(DC_DISP_V_PULSE1_POSITION_B);
1462 DUMP_REG(DC_DISP_V_PULSE1_POSITION_C);
1463 DUMP_REG(DC_DISP_V_PULSE2_CONTROL);
1464 DUMP_REG(DC_DISP_V_PULSE2_POSITION_A);
1465 DUMP_REG(DC_DISP_V_PULSE3_CONTROL);
1466 DUMP_REG(DC_DISP_V_PULSE3_POSITION_A);
1467 DUMP_REG(DC_DISP_M0_CONTROL);
1468 DUMP_REG(DC_DISP_M1_CONTROL);
1469 DUMP_REG(DC_DISP_DI_CONTROL);
1470 DUMP_REG(DC_DISP_PP_CONTROL);
1471 DUMP_REG(DC_DISP_PP_SELECT_A);
1472 DUMP_REG(DC_DISP_PP_SELECT_B);
1473 DUMP_REG(DC_DISP_PP_SELECT_C);
1474 DUMP_REG(DC_DISP_PP_SELECT_D);
1475 DUMP_REG(DC_DISP_DISP_CLOCK_CONTROL);
1476 DUMP_REG(DC_DISP_DISP_INTERFACE_CONTROL);
1477 DUMP_REG(DC_DISP_DISP_COLOR_CONTROL);
1478 DUMP_REG(DC_DISP_SHIFT_CLOCK_OPTIONS);
1479 DUMP_REG(DC_DISP_DATA_ENABLE_OPTIONS);
1480 DUMP_REG(DC_DISP_SERIAL_INTERFACE_OPTIONS);
1481 DUMP_REG(DC_DISP_LCD_SPI_OPTIONS);
1482 DUMP_REG(DC_DISP_BORDER_COLOR);
1483 DUMP_REG(DC_DISP_COLOR_KEY0_LOWER);
1484 DUMP_REG(DC_DISP_COLOR_KEY0_UPPER);
1485 DUMP_REG(DC_DISP_COLOR_KEY1_LOWER);
1486 DUMP_REG(DC_DISP_COLOR_KEY1_UPPER);
1487 DUMP_REG(DC_DISP_CURSOR_FOREGROUND);
1488 DUMP_REG(DC_DISP_CURSOR_BACKGROUND);
1489 DUMP_REG(DC_DISP_CURSOR_START_ADDR);
1490 DUMP_REG(DC_DISP_CURSOR_START_ADDR_NS);
1491 DUMP_REG(DC_DISP_CURSOR_POSITION);
1492 DUMP_REG(DC_DISP_CURSOR_POSITION_NS);
1493 DUMP_REG(DC_DISP_INIT_SEQ_CONTROL);
1494 DUMP_REG(DC_DISP_SPI_INIT_SEQ_DATA_A);
1495 DUMP_REG(DC_DISP_SPI_INIT_SEQ_DATA_B);
1496 DUMP_REG(DC_DISP_SPI_INIT_SEQ_DATA_C);
1497 DUMP_REG(DC_DISP_SPI_INIT_SEQ_DATA_D);
1498 DUMP_REG(DC_DISP_DC_MCCIF_FIFOCTRL);
1499 DUMP_REG(DC_DISP_MCCIF_DISPLAY0A_HYST);
1500 DUMP_REG(DC_DISP_MCCIF_DISPLAY0B_HYST);
1501 DUMP_REG(DC_DISP_MCCIF_DISPLAY1A_HYST);
1502 DUMP_REG(DC_DISP_MCCIF_DISPLAY1B_HYST);
1503 DUMP_REG(DC_DISP_DAC_CRT_CTRL);
1504 DUMP_REG(DC_DISP_DISP_MISC_CONTROL);
1505 DUMP_REG(DC_DISP_SD_CONTROL);
1506 DUMP_REG(DC_DISP_SD_CSC_COEFF);
1507 DUMP_REG(DC_DISP_SD_LUT(0));
1508 DUMP_REG(DC_DISP_SD_LUT(1));
1509 DUMP_REG(DC_DISP_SD_LUT(2));
1510 DUMP_REG(DC_DISP_SD_LUT(3));
1511 DUMP_REG(DC_DISP_SD_LUT(4));
1512 DUMP_REG(DC_DISP_SD_LUT(5));
1513 DUMP_REG(DC_DISP_SD_LUT(6));
1514 DUMP_REG(DC_DISP_SD_LUT(7));
1515 DUMP_REG(DC_DISP_SD_LUT(8));
1516 DUMP_REG(DC_DISP_SD_FLICKER_CONTROL);
1517 DUMP_REG(DC_DISP_DC_PIXEL_COUNT);
1518 DUMP_REG(DC_DISP_SD_HISTOGRAM(0));
1519 DUMP_REG(DC_DISP_SD_HISTOGRAM(1));
1520 DUMP_REG(DC_DISP_SD_HISTOGRAM(2));
1521 DUMP_REG(DC_DISP_SD_HISTOGRAM(3));
1522 DUMP_REG(DC_DISP_SD_HISTOGRAM(4));
1523 DUMP_REG(DC_DISP_SD_HISTOGRAM(5));
1524 DUMP_REG(DC_DISP_SD_HISTOGRAM(6));
1525 DUMP_REG(DC_DISP_SD_HISTOGRAM(7));
1526 DUMP_REG(DC_DISP_SD_BL_TF(0));
1527 DUMP_REG(DC_DISP_SD_BL_TF(1));
1528 DUMP_REG(DC_DISP_SD_BL_TF(2));
1529 DUMP_REG(DC_DISP_SD_BL_TF(3));
1530 DUMP_REG(DC_DISP_SD_BL_CONTROL);
1531 DUMP_REG(DC_DISP_SD_HW_K_VALUES);
1532 DUMP_REG(DC_DISP_SD_MAN_K_VALUES);
Thierry Redinge6876512013-12-20 13:58:33 +01001533 DUMP_REG(DC_DISP_CURSOR_START_ADDR_HI);
1534 DUMP_REG(DC_DISP_BLEND_CURSOR_CONTROL);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001535 DUMP_REG(DC_WIN_WIN_OPTIONS);
1536 DUMP_REG(DC_WIN_BYTE_SWAP);
1537 DUMP_REG(DC_WIN_BUFFER_CONTROL);
1538 DUMP_REG(DC_WIN_COLOR_DEPTH);
1539 DUMP_REG(DC_WIN_POSITION);
1540 DUMP_REG(DC_WIN_SIZE);
1541 DUMP_REG(DC_WIN_PRESCALED_SIZE);
1542 DUMP_REG(DC_WIN_H_INITIAL_DDA);
1543 DUMP_REG(DC_WIN_V_INITIAL_DDA);
1544 DUMP_REG(DC_WIN_DDA_INC);
1545 DUMP_REG(DC_WIN_LINE_STRIDE);
1546 DUMP_REG(DC_WIN_BUF_STRIDE);
1547 DUMP_REG(DC_WIN_UV_BUF_STRIDE);
1548 DUMP_REG(DC_WIN_BUFFER_ADDR_MODE);
1549 DUMP_REG(DC_WIN_DV_CONTROL);
1550 DUMP_REG(DC_WIN_BLEND_NOKEY);
1551 DUMP_REG(DC_WIN_BLEND_1WIN);
1552 DUMP_REG(DC_WIN_BLEND_2WIN_X);
1553 DUMP_REG(DC_WIN_BLEND_2WIN_Y);
Thierry Redingf34bc782012-11-04 21:47:13 +01001554 DUMP_REG(DC_WIN_BLEND_3WIN_XY);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001555 DUMP_REG(DC_WIN_HP_FETCH_CONTROL);
1556 DUMP_REG(DC_WINBUF_START_ADDR);
1557 DUMP_REG(DC_WINBUF_START_ADDR_NS);
1558 DUMP_REG(DC_WINBUF_START_ADDR_U);
1559 DUMP_REG(DC_WINBUF_START_ADDR_U_NS);
1560 DUMP_REG(DC_WINBUF_START_ADDR_V);
1561 DUMP_REG(DC_WINBUF_START_ADDR_V_NS);
1562 DUMP_REG(DC_WINBUF_ADDR_H_OFFSET);
1563 DUMP_REG(DC_WINBUF_ADDR_H_OFFSET_NS);
1564 DUMP_REG(DC_WINBUF_ADDR_V_OFFSET);
1565 DUMP_REG(DC_WINBUF_ADDR_V_OFFSET_NS);
1566 DUMP_REG(DC_WINBUF_UFLOW_STATUS);
1567 DUMP_REG(DC_WINBUF_AD_UFLOW_STATUS);
1568 DUMP_REG(DC_WINBUF_BD_UFLOW_STATUS);
1569 DUMP_REG(DC_WINBUF_CD_UFLOW_STATUS);
1570
1571#undef DUMP_REG
1572
1573 return 0;
1574}
1575
Thierry Reding6ca1f622015-04-01 14:59:40 +02001576static int tegra_dc_show_crc(struct seq_file *s, void *data)
1577{
1578 struct drm_info_node *node = s->private;
1579 struct tegra_dc *dc = node->info_ent->data;
1580 u32 value;
1581
1582 value = DC_COM_CRC_CONTROL_ACTIVE_DATA | DC_COM_CRC_CONTROL_ENABLE;
1583 tegra_dc_writel(dc, value, DC_COM_CRC_CONTROL);
1584 tegra_dc_commit(dc);
1585
1586 drm_crtc_wait_one_vblank(&dc->base);
1587 drm_crtc_wait_one_vblank(&dc->base);
1588
1589 value = tegra_dc_readl(dc, DC_COM_CRC_CHECKSUM);
1590 seq_printf(s, "%08x\n", value);
1591
1592 tegra_dc_writel(dc, 0, DC_COM_CRC_CONTROL);
1593
1594 return 0;
1595}
1596
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001597static struct drm_info_list debugfs_files[] = {
1598 { "regs", tegra_dc_show_regs, 0, NULL },
Thierry Reding6ca1f622015-04-01 14:59:40 +02001599 { "crc", tegra_dc_show_crc, 0, NULL },
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001600};
1601
1602static int tegra_dc_debugfs_init(struct tegra_dc *dc, struct drm_minor *minor)
1603{
1604 unsigned int i;
1605 char *name;
1606 int err;
1607
1608 name = kasprintf(GFP_KERNEL, "dc.%d", dc->pipe);
1609 dc->debugfs = debugfs_create_dir(name, minor->debugfs_root);
1610 kfree(name);
1611
1612 if (!dc->debugfs)
1613 return -ENOMEM;
1614
1615 dc->debugfs_files = kmemdup(debugfs_files, sizeof(debugfs_files),
1616 GFP_KERNEL);
1617 if (!dc->debugfs_files) {
1618 err = -ENOMEM;
1619 goto remove;
1620 }
1621
1622 for (i = 0; i < ARRAY_SIZE(debugfs_files); i++)
1623 dc->debugfs_files[i].data = dc;
1624
1625 err = drm_debugfs_create_files(dc->debugfs_files,
1626 ARRAY_SIZE(debugfs_files),
1627 dc->debugfs, minor);
1628 if (err < 0)
1629 goto free;
1630
1631 dc->minor = minor;
1632
1633 return 0;
1634
1635free:
1636 kfree(dc->debugfs_files);
1637 dc->debugfs_files = NULL;
1638remove:
1639 debugfs_remove(dc->debugfs);
1640 dc->debugfs = NULL;
1641
1642 return err;
1643}
1644
1645static int tegra_dc_debugfs_exit(struct tegra_dc *dc)
1646{
1647 drm_debugfs_remove_files(dc->debugfs_files, ARRAY_SIZE(debugfs_files),
1648 dc->minor);
1649 dc->minor = NULL;
1650
1651 kfree(dc->debugfs_files);
1652 dc->debugfs_files = NULL;
1653
1654 debugfs_remove(dc->debugfs);
1655 dc->debugfs = NULL;
1656
1657 return 0;
1658}
1659
Thierry Reding53fa7f72013-09-24 15:35:40 +02001660static int tegra_dc_init(struct host1x_client *client)
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001661{
Thierry Reding9910f5c2014-05-22 09:57:15 +02001662 struct drm_device *drm = dev_get_drvdata(client->parent);
Thierry Reding776dc382013-10-14 14:43:22 +02001663 struct tegra_dc *dc = host1x_client_to_dc(client);
Thierry Redingd1f3e1e2014-07-11 08:29:14 +02001664 struct tegra_drm *tegra = drm->dev_private;
Thierry Redingc7679302014-10-21 13:51:53 +02001665 struct drm_plane *primary = NULL;
1666 struct drm_plane *cursor = NULL;
Thierry Reding07d05cb2015-01-28 15:17:44 +01001667 u32 value;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001668 int err;
1669
Thierry Redingdf06b752014-06-26 21:41:53 +02001670 if (tegra->domain) {
1671 err = iommu_attach_device(tegra->domain, dc->dev);
1672 if (err < 0) {
1673 dev_err(dc->dev, "failed to attach to domain: %d\n",
1674 err);
1675 return err;
1676 }
1677
1678 dc->domain = tegra->domain;
1679 }
1680
Thierry Redingc7679302014-10-21 13:51:53 +02001681 primary = tegra_dc_primary_plane_create(drm, dc);
1682 if (IS_ERR(primary)) {
1683 err = PTR_ERR(primary);
1684 goto cleanup;
1685 }
1686
1687 if (dc->soc->supports_cursor) {
1688 cursor = tegra_dc_cursor_plane_create(drm, dc);
1689 if (IS_ERR(cursor)) {
1690 err = PTR_ERR(cursor);
1691 goto cleanup;
1692 }
1693 }
1694
1695 err = drm_crtc_init_with_planes(drm, &dc->base, primary, cursor,
1696 &tegra_crtc_funcs);
1697 if (err < 0)
1698 goto cleanup;
1699
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001700 drm_mode_crtc_set_gamma_size(&dc->base, 256);
1701 drm_crtc_helper_add(&dc->base, &tegra_crtc_helper_funcs);
1702
Thierry Redingd1f3e1e2014-07-11 08:29:14 +02001703 /*
1704 * Keep track of the minimum pitch alignment across all display
1705 * controllers.
1706 */
1707 if (dc->soc->pitch_align > tegra->pitch_align)
1708 tegra->pitch_align = dc->soc->pitch_align;
1709
Thierry Reding9910f5c2014-05-22 09:57:15 +02001710 err = tegra_dc_rgb_init(drm, dc);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001711 if (err < 0 && err != -ENODEV) {
1712 dev_err(dc->dev, "failed to initialize RGB output: %d\n", err);
Thierry Redingc7679302014-10-21 13:51:53 +02001713 goto cleanup;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001714 }
1715
Thierry Reding9910f5c2014-05-22 09:57:15 +02001716 err = tegra_dc_add_planes(drm, dc);
Thierry Redingf34bc782012-11-04 21:47:13 +01001717 if (err < 0)
Thierry Redingc7679302014-10-21 13:51:53 +02001718 goto cleanup;
Thierry Redingf34bc782012-11-04 21:47:13 +01001719
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001720 if (IS_ENABLED(CONFIG_DEBUG_FS)) {
Thierry Reding9910f5c2014-05-22 09:57:15 +02001721 err = tegra_dc_debugfs_init(dc, drm->primary);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001722 if (err < 0)
1723 dev_err(dc->dev, "debugfs setup failed: %d\n", err);
1724 }
1725
Thierry Reding6e5ff992012-11-28 11:45:47 +01001726 err = devm_request_irq(dc->dev, dc->irq, tegra_dc_irq, 0,
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001727 dev_name(dc->dev), dc);
1728 if (err < 0) {
1729 dev_err(dc->dev, "failed to request IRQ#%u: %d\n", dc->irq,
1730 err);
Thierry Redingc7679302014-10-21 13:51:53 +02001731 goto cleanup;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001732 }
1733
Thierry Reding07d05cb2015-01-28 15:17:44 +01001734 /* initialize display controller */
Thierry Reding42e9ce02015-01-28 14:43:05 +01001735 if (dc->syncpt) {
1736 u32 syncpt = host1x_syncpt_id(dc->syncpt);
Thierry Reding07d05cb2015-01-28 15:17:44 +01001737
Thierry Reding42e9ce02015-01-28 14:43:05 +01001738 value = SYNCPT_CNTRL_NO_STALL;
1739 tegra_dc_writel(dc, value, DC_CMD_GENERAL_INCR_SYNCPT_CNTRL);
1740
1741 value = SYNCPT_VSYNC_ENABLE | syncpt;
1742 tegra_dc_writel(dc, value, DC_CMD_CONT_SYNCPT_VSYNC);
1743 }
Thierry Reding07d05cb2015-01-28 15:17:44 +01001744
1745 value = WIN_A_UF_INT | WIN_B_UF_INT | WIN_C_UF_INT | WIN_A_OF_INT;
1746 tegra_dc_writel(dc, value, DC_CMD_INT_TYPE);
1747
1748 value = WIN_A_UF_INT | WIN_B_UF_INT | WIN_C_UF_INT |
1749 WIN_A_OF_INT | WIN_B_OF_INT | WIN_C_OF_INT;
1750 tegra_dc_writel(dc, value, DC_CMD_INT_POLARITY);
1751
1752 /* initialize timer */
1753 value = CURSOR_THRESHOLD(0) | WINDOW_A_THRESHOLD(0x20) |
1754 WINDOW_B_THRESHOLD(0x20) | WINDOW_C_THRESHOLD(0x20);
1755 tegra_dc_writel(dc, value, DC_DISP_DISP_MEM_HIGH_PRIORITY);
1756
1757 value = CURSOR_THRESHOLD(0) | WINDOW_A_THRESHOLD(1) |
1758 WINDOW_B_THRESHOLD(1) | WINDOW_C_THRESHOLD(1);
1759 tegra_dc_writel(dc, value, DC_DISP_DISP_MEM_HIGH_PRIORITY_TIMER);
1760
1761 value = VBLANK_INT | WIN_A_UF_INT | WIN_B_UF_INT | WIN_C_UF_INT;
1762 tegra_dc_writel(dc, value, DC_CMD_INT_ENABLE);
1763
1764 value = WIN_A_UF_INT | WIN_B_UF_INT | WIN_C_UF_INT;
1765 tegra_dc_writel(dc, value, DC_CMD_INT_MASK);
1766
1767 if (dc->soc->supports_border_color)
1768 tegra_dc_writel(dc, 0, DC_DISP_BORDER_COLOR);
1769
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001770 return 0;
Thierry Redingc7679302014-10-21 13:51:53 +02001771
1772cleanup:
1773 if (cursor)
1774 drm_plane_cleanup(cursor);
1775
1776 if (primary)
1777 drm_plane_cleanup(primary);
1778
1779 if (tegra->domain) {
1780 iommu_detach_device(tegra->domain, dc->dev);
1781 dc->domain = NULL;
1782 }
1783
1784 return err;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001785}
1786
Thierry Reding53fa7f72013-09-24 15:35:40 +02001787static int tegra_dc_exit(struct host1x_client *client)
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001788{
Thierry Reding776dc382013-10-14 14:43:22 +02001789 struct tegra_dc *dc = host1x_client_to_dc(client);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001790 int err;
1791
1792 devm_free_irq(dc->dev, dc->irq, dc);
1793
1794 if (IS_ENABLED(CONFIG_DEBUG_FS)) {
1795 err = tegra_dc_debugfs_exit(dc);
1796 if (err < 0)
1797 dev_err(dc->dev, "debugfs cleanup failed: %d\n", err);
1798 }
1799
1800 err = tegra_dc_rgb_exit(dc);
1801 if (err) {
1802 dev_err(dc->dev, "failed to shutdown RGB output: %d\n", err);
1803 return err;
1804 }
1805
Thierry Redingdf06b752014-06-26 21:41:53 +02001806 if (dc->domain) {
1807 iommu_detach_device(dc->domain, dc->dev);
1808 dc->domain = NULL;
1809 }
1810
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001811 return 0;
1812}
1813
1814static const struct host1x_client_ops dc_client_ops = {
Thierry Reding53fa7f72013-09-24 15:35:40 +02001815 .init = tegra_dc_init,
1816 .exit = tegra_dc_exit,
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001817};
1818
Thierry Reding8620fc62013-12-12 11:03:59 +01001819static const struct tegra_dc_soc_info tegra20_dc_soc_info = {
Thierry Reding42d06592014-12-08 15:45:39 +01001820 .supports_border_color = true,
Thierry Reding8620fc62013-12-12 11:03:59 +01001821 .supports_interlacing = false,
Thierry Redinge6876512013-12-20 13:58:33 +01001822 .supports_cursor = false,
Thierry Redingc134f012014-06-03 14:48:12 +02001823 .supports_block_linear = false,
Thierry Redingd1f3e1e2014-07-11 08:29:14 +02001824 .pitch_align = 8,
Thierry Reding9c012702014-07-07 15:32:53 +02001825 .has_powergate = false,
Thierry Reding8620fc62013-12-12 11:03:59 +01001826};
1827
1828static const struct tegra_dc_soc_info tegra30_dc_soc_info = {
Thierry Reding42d06592014-12-08 15:45:39 +01001829 .supports_border_color = true,
Thierry Reding8620fc62013-12-12 11:03:59 +01001830 .supports_interlacing = false,
Thierry Redinge6876512013-12-20 13:58:33 +01001831 .supports_cursor = false,
Thierry Redingc134f012014-06-03 14:48:12 +02001832 .supports_block_linear = false,
Thierry Redingd1f3e1e2014-07-11 08:29:14 +02001833 .pitch_align = 8,
Thierry Reding9c012702014-07-07 15:32:53 +02001834 .has_powergate = false,
Thierry Redingd1f3e1e2014-07-11 08:29:14 +02001835};
1836
1837static const struct tegra_dc_soc_info tegra114_dc_soc_info = {
Thierry Reding42d06592014-12-08 15:45:39 +01001838 .supports_border_color = true,
Thierry Redingd1f3e1e2014-07-11 08:29:14 +02001839 .supports_interlacing = false,
1840 .supports_cursor = false,
1841 .supports_block_linear = false,
1842 .pitch_align = 64,
Thierry Reding9c012702014-07-07 15:32:53 +02001843 .has_powergate = true,
Thierry Reding8620fc62013-12-12 11:03:59 +01001844};
1845
1846static const struct tegra_dc_soc_info tegra124_dc_soc_info = {
Thierry Reding42d06592014-12-08 15:45:39 +01001847 .supports_border_color = false,
Thierry Reding8620fc62013-12-12 11:03:59 +01001848 .supports_interlacing = true,
Thierry Redinge6876512013-12-20 13:58:33 +01001849 .supports_cursor = true,
Thierry Redingc134f012014-06-03 14:48:12 +02001850 .supports_block_linear = true,
Thierry Redingd1f3e1e2014-07-11 08:29:14 +02001851 .pitch_align = 64,
Thierry Reding9c012702014-07-07 15:32:53 +02001852 .has_powergate = true,
Thierry Reding8620fc62013-12-12 11:03:59 +01001853};
1854
Thierry Reding5b4f5162015-03-27 10:31:58 +01001855static const struct tegra_dc_soc_info tegra210_dc_soc_info = {
1856 .supports_border_color = false,
1857 .supports_interlacing = true,
1858 .supports_cursor = true,
1859 .supports_block_linear = true,
1860 .pitch_align = 64,
1861 .has_powergate = true,
1862};
1863
Thierry Reding8620fc62013-12-12 11:03:59 +01001864static const struct of_device_id tegra_dc_of_match[] = {
1865 {
Thierry Reding5b4f5162015-03-27 10:31:58 +01001866 .compatible = "nvidia,tegra210-dc",
1867 .data = &tegra210_dc_soc_info,
1868 }, {
Thierry Reding8620fc62013-12-12 11:03:59 +01001869 .compatible = "nvidia,tegra124-dc",
1870 .data = &tegra124_dc_soc_info,
1871 }, {
Thierry Reding9c012702014-07-07 15:32:53 +02001872 .compatible = "nvidia,tegra114-dc",
1873 .data = &tegra114_dc_soc_info,
1874 }, {
Thierry Reding8620fc62013-12-12 11:03:59 +01001875 .compatible = "nvidia,tegra30-dc",
1876 .data = &tegra30_dc_soc_info,
1877 }, {
1878 .compatible = "nvidia,tegra20-dc",
1879 .data = &tegra20_dc_soc_info,
1880 }, {
1881 /* sentinel */
1882 }
1883};
Stephen Warrenef707282014-06-18 16:21:55 -06001884MODULE_DEVICE_TABLE(of, tegra_dc_of_match);
Thierry Reding8620fc62013-12-12 11:03:59 +01001885
Thierry Reding13411dd2014-01-09 17:08:36 +01001886static int tegra_dc_parse_dt(struct tegra_dc *dc)
1887{
1888 struct device_node *np;
1889 u32 value = 0;
1890 int err;
1891
1892 err = of_property_read_u32(dc->dev->of_node, "nvidia,head", &value);
1893 if (err < 0) {
1894 dev_err(dc->dev, "missing \"nvidia,head\" property\n");
1895
1896 /*
1897 * If the nvidia,head property isn't present, try to find the
1898 * correct head number by looking up the position of this
1899 * display controller's node within the device tree. Assuming
1900 * that the nodes are ordered properly in the DTS file and
1901 * that the translation into a flattened device tree blob
1902 * preserves that ordering this will actually yield the right
1903 * head number.
1904 *
1905 * If those assumptions don't hold, this will still work for
1906 * cases where only a single display controller is used.
1907 */
1908 for_each_matching_node(np, tegra_dc_of_match) {
1909 if (np == dc->dev->of_node)
1910 break;
1911
1912 value++;
1913 }
1914 }
1915
1916 dc->pipe = value;
1917
1918 return 0;
1919}
1920
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001921static int tegra_dc_probe(struct platform_device *pdev)
1922{
Thierry Reding42e9ce02015-01-28 14:43:05 +01001923 unsigned long flags = HOST1X_SYNCPT_CLIENT_MANAGED;
Thierry Reding8620fc62013-12-12 11:03:59 +01001924 const struct of_device_id *id;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001925 struct resource *regs;
1926 struct tegra_dc *dc;
1927 int err;
1928
1929 dc = devm_kzalloc(&pdev->dev, sizeof(*dc), GFP_KERNEL);
1930 if (!dc)
1931 return -ENOMEM;
1932
Thierry Reding8620fc62013-12-12 11:03:59 +01001933 id = of_match_node(tegra_dc_of_match, pdev->dev.of_node);
1934 if (!id)
1935 return -ENODEV;
1936
Thierry Reding6e5ff992012-11-28 11:45:47 +01001937 spin_lock_init(&dc->lock);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001938 INIT_LIST_HEAD(&dc->list);
1939 dc->dev = &pdev->dev;
Thierry Reding8620fc62013-12-12 11:03:59 +01001940 dc->soc = id->data;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001941
Thierry Reding13411dd2014-01-09 17:08:36 +01001942 err = tegra_dc_parse_dt(dc);
1943 if (err < 0)
1944 return err;
1945
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001946 dc->clk = devm_clk_get(&pdev->dev, NULL);
1947 if (IS_ERR(dc->clk)) {
1948 dev_err(&pdev->dev, "failed to get clock\n");
1949 return PTR_ERR(dc->clk);
1950 }
1951
Stephen Warrenca480802013-11-06 16:20:54 -07001952 dc->rst = devm_reset_control_get(&pdev->dev, "dc");
1953 if (IS_ERR(dc->rst)) {
1954 dev_err(&pdev->dev, "failed to get reset\n");
1955 return PTR_ERR(dc->rst);
1956 }
1957
Thierry Reding9c012702014-07-07 15:32:53 +02001958 if (dc->soc->has_powergate) {
1959 if (dc->pipe == 0)
1960 dc->powergate = TEGRA_POWERGATE_DIS;
1961 else
1962 dc->powergate = TEGRA_POWERGATE_DISB;
1963
1964 err = tegra_powergate_sequence_power_up(dc->powergate, dc->clk,
1965 dc->rst);
1966 if (err < 0) {
1967 dev_err(&pdev->dev, "failed to power partition: %d\n",
1968 err);
1969 return err;
1970 }
1971 } else {
1972 err = clk_prepare_enable(dc->clk);
1973 if (err < 0) {
1974 dev_err(&pdev->dev, "failed to enable clock: %d\n",
1975 err);
1976 return err;
1977 }
1978
1979 err = reset_control_deassert(dc->rst);
1980 if (err < 0) {
1981 dev_err(&pdev->dev, "failed to deassert reset: %d\n",
1982 err);
1983 return err;
1984 }
1985 }
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001986
1987 regs = platform_get_resource(pdev, IORESOURCE_MEM, 0);
Thierry Redingd4ed6022013-01-21 11:09:02 +01001988 dc->regs = devm_ioremap_resource(&pdev->dev, regs);
1989 if (IS_ERR(dc->regs))
1990 return PTR_ERR(dc->regs);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00001991
1992 dc->irq = platform_get_irq(pdev, 0);
1993 if (dc->irq < 0) {
1994 dev_err(&pdev->dev, "failed to get IRQ\n");
1995 return -ENXIO;
1996 }
1997
Thierry Reding776dc382013-10-14 14:43:22 +02001998 INIT_LIST_HEAD(&dc->client.list);
1999 dc->client.ops = &dc_client_ops;
2000 dc->client.dev = &pdev->dev;
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00002001
2002 err = tegra_dc_rgb_probe(dc);
2003 if (err < 0 && err != -ENODEV) {
2004 dev_err(&pdev->dev, "failed to probe RGB output: %d\n", err);
2005 return err;
2006 }
2007
Thierry Reding776dc382013-10-14 14:43:22 +02002008 err = host1x_client_register(&dc->client);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00002009 if (err < 0) {
2010 dev_err(&pdev->dev, "failed to register host1x client: %d\n",
2011 err);
2012 return err;
2013 }
2014
Thierry Reding42e9ce02015-01-28 14:43:05 +01002015 dc->syncpt = host1x_syncpt_request(&pdev->dev, flags);
2016 if (!dc->syncpt)
2017 dev_warn(&pdev->dev, "failed to allocate syncpoint\n");
2018
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00002019 platform_set_drvdata(pdev, dc);
2020
2021 return 0;
2022}
2023
2024static int tegra_dc_remove(struct platform_device *pdev)
2025{
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00002026 struct tegra_dc *dc = platform_get_drvdata(pdev);
2027 int err;
2028
Thierry Reding42e9ce02015-01-28 14:43:05 +01002029 host1x_syncpt_free(dc->syncpt);
2030
Thierry Reding776dc382013-10-14 14:43:22 +02002031 err = host1x_client_unregister(&dc->client);
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00002032 if (err < 0) {
2033 dev_err(&pdev->dev, "failed to unregister host1x client: %d\n",
2034 err);
2035 return err;
2036 }
2037
Thierry Reding59d29c02013-10-14 14:26:42 +02002038 err = tegra_dc_rgb_remove(dc);
2039 if (err < 0) {
2040 dev_err(&pdev->dev, "failed to remove RGB output: %d\n", err);
2041 return err;
2042 }
2043
Thierry Reding5482d752014-07-11 08:39:03 +02002044 reset_control_assert(dc->rst);
Thierry Reding9c012702014-07-07 15:32:53 +02002045
2046 if (dc->soc->has_powergate)
2047 tegra_powergate_power_off(dc->powergate);
2048
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00002049 clk_disable_unprepare(dc->clk);
2050
2051 return 0;
2052}
2053
Thierry Redingd8f4a9e2012-11-15 21:28:22 +00002054struct platform_driver tegra_dc_driver = {
2055 .driver = {
2056 .name = "tegra-dc",
2057 .owner = THIS_MODULE,
2058 .of_match_table = tegra_dc_of_match,
2059 },
2060 .probe = tegra_dc_probe,
2061 .remove = tegra_dc_remove,
2062};