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Inki Dae1c248b72011-10-04 19:19:01 +09001/* exynos_drm_fimd.c
2 *
3 * Copyright (C) 2011 Samsung Electronics Co.Ltd
4 * Authors:
5 * Joonyoung Shim <jy0922.shim@samsung.com>
6 * Inki Dae <inki.dae@samsung.com>
7 *
8 * This program is free software; you can redistribute it and/or modify it
9 * under the terms of the GNU General Public License as published by the
10 * Free Software Foundation; either version 2 of the License, or (at your
11 * option) any later version.
12 *
13 */
David Howells760285e2012-10-02 18:01:07 +010014#include <drm/drmP.h>
Inki Dae1c248b72011-10-04 19:19:01 +090015
16#include <linux/kernel.h>
17#include <linux/module.h>
18#include <linux/platform_device.h>
19#include <linux/clk.h>
Joonyoung Shimd636ead2012-12-14 15:48:25 +090020#include <linux/of_device.h>
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +090021#include <linux/pm_runtime.h>
Inki Dae1c248b72011-10-04 19:19:01 +090022
Vikas Sajjan7f4596f2013-03-07 12:15:21 +053023#include <video/of_display_timing.h>
Leela Krishna Amudala5a213a52012-08-08 09:44:49 +090024#include <video/samsung_fimd.h>
Inki Dae1c248b72011-10-04 19:19:01 +090025#include <drm/exynos_drm.h>
Inki Dae1c248b72011-10-04 19:19:01 +090026
27#include "exynos_drm_drv.h"
28#include "exynos_drm_fbdev.h"
29#include "exynos_drm_crtc.h"
Inki Daebcc5cd12012-10-19 17:16:36 +090030#include "exynos_drm_iommu.h"
Inki Dae1c248b72011-10-04 19:19:01 +090031
32/*
33 * FIMD is stand for Fully Interactive Mobile Display and
34 * as a display controller, it transfers contents drawn on memory
35 * to a LCD Panel through Display Interfaces such as RGB or
36 * CPU Interface.
37 */
38
39/* position control register for hardware window 0, 2 ~ 4.*/
40#define VIDOSD_A(win) (VIDOSD_BASE + 0x00 + (win) * 16)
41#define VIDOSD_B(win) (VIDOSD_BASE + 0x04 + (win) * 16)
Leela Krishna Amudala0f10cf12013-03-07 23:28:52 -050042/*
43 * size control register for hardware windows 0 and alpha control register
44 * for hardware windows 1 ~ 4
45 */
46#define VIDOSD_C(win) (VIDOSD_BASE + 0x08 + (win) * 16)
47/* size control register for hardware windows 1 ~ 2. */
Inki Dae1c248b72011-10-04 19:19:01 +090048#define VIDOSD_D(win) (VIDOSD_BASE + 0x0C + (win) * 16)
49
50#define VIDWx_BUF_START(win, buf) (VIDW_BUF_START(buf) + (win) * 8)
51#define VIDWx_BUF_END(win, buf) (VIDW_BUF_END(buf) + (win) * 8)
52#define VIDWx_BUF_SIZE(win, buf) (VIDW_BUF_SIZE(buf) + (win) * 4)
53
54/* color key control register for hardware window 1 ~ 4. */
Leela Krishna Amudala0f10cf12013-03-07 23:28:52 -050055#define WKEYCON0_BASE(x) ((WKEYCON0 + 0x140) + ((x - 1) * 8))
Inki Dae1c248b72011-10-04 19:19:01 +090056/* color key value register for hardware window 1 ~ 4. */
Leela Krishna Amudala0f10cf12013-03-07 23:28:52 -050057#define WKEYCON1_BASE(x) ((WKEYCON1 + 0x140) + ((x - 1) * 8))
Inki Dae1c248b72011-10-04 19:19:01 +090058
59/* FIMD has totally five hardware windows. */
60#define WINDOWS_NR 5
61
62#define get_fimd_context(dev) platform_get_drvdata(to_platform_device(dev))
63
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +053064struct fimd_driver_data {
65 unsigned int timing_base;
Tomasz Figade7af102013-05-01 21:02:27 +020066
67 unsigned int has_shadowcon:1;
Tomasz Figa411d9ed2013-05-01 21:02:28 +020068 unsigned int has_clksel:1;
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +053069};
70
Sachin Kamat6ecf18f2012-11-19 15:22:54 +053071static struct fimd_driver_data exynos4_fimd_driver_data = {
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +053072 .timing_base = 0x0,
Tomasz Figade7af102013-05-01 21:02:27 +020073 .has_shadowcon = 1,
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +053074};
75
Sachin Kamat6ecf18f2012-11-19 15:22:54 +053076static struct fimd_driver_data exynos5_fimd_driver_data = {
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +053077 .timing_base = 0x20000,
Tomasz Figade7af102013-05-01 21:02:27 +020078 .has_shadowcon = 1,
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +053079};
80
Inki Dae1c248b72011-10-04 19:19:01 +090081struct fimd_win_data {
82 unsigned int offset_x;
83 unsigned int offset_y;
Inki Dae19c8b832011-10-14 13:29:46 +090084 unsigned int ovl_width;
85 unsigned int ovl_height;
86 unsigned int fb_width;
87 unsigned int fb_height;
Inki Dae1c248b72011-10-04 19:19:01 +090088 unsigned int bpp;
Inki Dae2c871122011-11-12 15:23:32 +090089 dma_addr_t dma_addr;
Inki Dae1c248b72011-10-04 19:19:01 +090090 unsigned int buf_offsize;
91 unsigned int line_size; /* bytes */
Inki Daeec05da92011-12-06 11:06:54 +090092 bool enabled;
Prathyush Kdb7e55a2012-12-06 20:16:06 +053093 bool resume;
Inki Dae1c248b72011-10-04 19:19:01 +090094};
95
96struct fimd_context {
97 struct exynos_drm_subdrv subdrv;
98 int irq;
99 struct drm_crtc *crtc;
100 struct clk *bus_clk;
101 struct clk *lcd_clk;
Inki Dae1c248b72011-10-04 19:19:01 +0900102 void __iomem *regs;
103 struct fimd_win_data win_data[WINDOWS_NR];
104 unsigned int clkdiv;
105 unsigned int default_win;
106 unsigned long irq_flags;
107 u32 vidcon0;
108 u32 vidcon1;
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +0900109 bool suspended;
Inki Daec32b06e2011-12-16 21:49:03 +0900110 struct mutex lock;
Prathyush K01ce1132012-12-06 20:16:04 +0530111 wait_queue_head_t wait_vsync_queue;
112 atomic_t wait_vsync_event;
Inki Dae1c248b72011-10-04 19:19:01 +0900113
Eun-Chul Kim607c50d2012-02-14 15:59:46 +0900114 struct exynos_drm_panel_info *panel;
Tomasz Figa18873462013-05-01 21:02:26 +0200115 struct fimd_driver_data *driver_data;
Inki Dae1c248b72011-10-04 19:19:01 +0900116};
117
Joonyoung Shimd636ead2012-12-14 15:48:25 +0900118#ifdef CONFIG_OF
119static const struct of_device_id fimd_driver_dt_match[] = {
Vikas Sajjan5830daf2013-02-27 16:02:58 +0530120 { .compatible = "samsung,exynos4210-fimd",
Joonyoung Shimd636ead2012-12-14 15:48:25 +0900121 .data = &exynos4_fimd_driver_data },
Vikas Sajjan5830daf2013-02-27 16:02:58 +0530122 { .compatible = "samsung,exynos5250-fimd",
Joonyoung Shimd636ead2012-12-14 15:48:25 +0900123 .data = &exynos5_fimd_driver_data },
124 {},
125};
126MODULE_DEVICE_TABLE(of, fimd_driver_dt_match);
127#endif
128
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +0530129static inline struct fimd_driver_data *drm_fimd_get_driver_data(
130 struct platform_device *pdev)
131{
Joonyoung Shimd636ead2012-12-14 15:48:25 +0900132#ifdef CONFIG_OF
133 const struct of_device_id *of_id =
134 of_match_device(fimd_driver_dt_match, &pdev->dev);
135
136 if (of_id)
137 return (struct fimd_driver_data *)of_id->data;
138#endif
139
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +0530140 return (struct fimd_driver_data *)
141 platform_get_device_id(pdev)->driver_data;
142}
143
Inki Dae1c248b72011-10-04 19:19:01 +0900144static bool fimd_display_is_connected(struct device *dev)
145{
Inki Dae1c248b72011-10-04 19:19:01 +0900146 DRM_DEBUG_KMS("%s\n", __FILE__);
147
148 /* TODO. */
149
150 return true;
151}
152
Eun-Chul Kim607c50d2012-02-14 15:59:46 +0900153static void *fimd_get_panel(struct device *dev)
Inki Dae1c248b72011-10-04 19:19:01 +0900154{
155 struct fimd_context *ctx = get_fimd_context(dev);
156
157 DRM_DEBUG_KMS("%s\n", __FILE__);
158
Eun-Chul Kim607c50d2012-02-14 15:59:46 +0900159 return ctx->panel;
Inki Dae1c248b72011-10-04 19:19:01 +0900160}
161
162static int fimd_check_timing(struct device *dev, void *timing)
163{
Inki Dae1c248b72011-10-04 19:19:01 +0900164 DRM_DEBUG_KMS("%s\n", __FILE__);
165
166 /* TODO. */
167
168 return 0;
169}
170
171static int fimd_display_power_on(struct device *dev, int mode)
172{
Inki Dae1c248b72011-10-04 19:19:01 +0900173 DRM_DEBUG_KMS("%s\n", __FILE__);
174
Inki Daeec05da92011-12-06 11:06:54 +0900175 /* TODO */
Inki Dae1c248b72011-10-04 19:19:01 +0900176
177 return 0;
178}
179
Inki Dae74ccc532011-10-19 17:23:07 +0900180static struct exynos_drm_display_ops fimd_display_ops = {
Inki Dae1c248b72011-10-04 19:19:01 +0900181 .type = EXYNOS_DISPLAY_TYPE_LCD,
182 .is_connected = fimd_display_is_connected,
Eun-Chul Kim607c50d2012-02-14 15:59:46 +0900183 .get_panel = fimd_get_panel,
Inki Dae1c248b72011-10-04 19:19:01 +0900184 .check_timing = fimd_check_timing,
185 .power_on = fimd_display_power_on,
186};
187
Inki Daeec05da92011-12-06 11:06:54 +0900188static void fimd_dpms(struct device *subdrv_dev, int mode)
189{
Inki Daec32b06e2011-12-16 21:49:03 +0900190 struct fimd_context *ctx = get_fimd_context(subdrv_dev);
191
Inki Daeec05da92011-12-06 11:06:54 +0900192 DRM_DEBUG_KMS("%s, %d\n", __FILE__, mode);
193
Inki Daec32b06e2011-12-16 21:49:03 +0900194 mutex_lock(&ctx->lock);
195
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +0900196 switch (mode) {
197 case DRM_MODE_DPMS_ON:
Inki Daec32b06e2011-12-16 21:49:03 +0900198 /*
199 * enable fimd hardware only if suspended status.
200 *
201 * P.S. fimd_dpms function would be called at booting time so
202 * clk_enable could be called double time.
203 */
204 if (ctx->suspended)
205 pm_runtime_get_sync(subdrv_dev);
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +0900206 break;
207 case DRM_MODE_DPMS_STANDBY:
208 case DRM_MODE_DPMS_SUSPEND:
209 case DRM_MODE_DPMS_OFF:
Inki Dae373af0c2012-01-27 11:54:58 +0900210 if (!ctx->suspended)
211 pm_runtime_put_sync(subdrv_dev);
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +0900212 break;
213 default:
214 DRM_DEBUG_KMS("unspecified mode %d\n", mode);
215 break;
216 }
Inki Daec32b06e2011-12-16 21:49:03 +0900217
218 mutex_unlock(&ctx->lock);
Inki Daeec05da92011-12-06 11:06:54 +0900219}
220
221static void fimd_apply(struct device *subdrv_dev)
222{
223 struct fimd_context *ctx = get_fimd_context(subdrv_dev);
Joonyoung Shim677e84c2012-04-05 20:49:27 +0900224 struct exynos_drm_manager *mgr = ctx->subdrv.manager;
Inki Daeec05da92011-12-06 11:06:54 +0900225 struct exynos_drm_manager_ops *mgr_ops = mgr->ops;
226 struct exynos_drm_overlay_ops *ovl_ops = mgr->overlay_ops;
227 struct fimd_win_data *win_data;
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900228 int i;
Inki Daeec05da92011-12-06 11:06:54 +0900229
230 DRM_DEBUG_KMS("%s\n", __FILE__);
231
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900232 for (i = 0; i < WINDOWS_NR; i++) {
233 win_data = &ctx->win_data[i];
234 if (win_data->enabled && (ovl_ops && ovl_ops->commit))
235 ovl_ops->commit(subdrv_dev, i);
236 }
Inki Daeec05da92011-12-06 11:06:54 +0900237
238 if (mgr_ops && mgr_ops->commit)
239 mgr_ops->commit(subdrv_dev);
240}
241
Inki Dae1c248b72011-10-04 19:19:01 +0900242static void fimd_commit(struct device *dev)
243{
244 struct fimd_context *ctx = get_fimd_context(dev);
Eun-Chul Kim607c50d2012-02-14 15:59:46 +0900245 struct exynos_drm_panel_info *panel = ctx->panel;
246 struct fb_videomode *timing = &panel->timing;
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +0530247 struct fimd_driver_data *driver_data;
Inki Dae1c248b72011-10-04 19:19:01 +0900248 u32 val;
249
Tomasz Figa18873462013-05-01 21:02:26 +0200250 driver_data = ctx->driver_data;
Inki Daee30d4bc2011-12-12 16:35:20 +0900251 if (ctx->suspended)
252 return;
253
Inki Dae1c248b72011-10-04 19:19:01 +0900254 DRM_DEBUG_KMS("%s\n", __FILE__);
255
256 /* setup polarity values from machine code. */
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +0530257 writel(ctx->vidcon1, ctx->regs + driver_data->timing_base + VIDCON1);
Inki Dae1c248b72011-10-04 19:19:01 +0900258
259 /* setup vertical timing values. */
260 val = VIDTCON0_VBPD(timing->upper_margin - 1) |
261 VIDTCON0_VFPD(timing->lower_margin - 1) |
262 VIDTCON0_VSPW(timing->vsync_len - 1);
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +0530263 writel(val, ctx->regs + driver_data->timing_base + VIDTCON0);
Inki Dae1c248b72011-10-04 19:19:01 +0900264
265 /* setup horizontal timing values. */
266 val = VIDTCON1_HBPD(timing->left_margin - 1) |
267 VIDTCON1_HFPD(timing->right_margin - 1) |
268 VIDTCON1_HSPW(timing->hsync_len - 1);
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +0530269 writel(val, ctx->regs + driver_data->timing_base + VIDTCON1);
Inki Dae1c248b72011-10-04 19:19:01 +0900270
271 /* setup horizontal and vertical display size. */
272 val = VIDTCON2_LINEVAL(timing->yres - 1) |
Joonyoung Shimca555e52012-12-14 15:48:24 +0900273 VIDTCON2_HOZVAL(timing->xres - 1) |
274 VIDTCON2_LINEVAL_E(timing->yres - 1) |
275 VIDTCON2_HOZVAL_E(timing->xres - 1);
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +0530276 writel(val, ctx->regs + driver_data->timing_base + VIDTCON2);
Inki Dae1c248b72011-10-04 19:19:01 +0900277
278 /* setup clock source, clock divider, enable dma. */
279 val = ctx->vidcon0;
280 val &= ~(VIDCON0_CLKVAL_F_MASK | VIDCON0_CLKDIR);
281
Tomasz Figa411d9ed2013-05-01 21:02:28 +0200282 if (ctx->driver_data->has_clksel) {
283 val &= ~VIDCON0_CLKSEL_MASK;
284 val |= VIDCON0_CLKSEL_LCD;
285 }
286
Inki Dae1c248b72011-10-04 19:19:01 +0900287 if (ctx->clkdiv > 1)
288 val |= VIDCON0_CLKVAL_F(ctx->clkdiv - 1) | VIDCON0_CLKDIR;
289 else
290 val &= ~VIDCON0_CLKDIR; /* 1:1 clock */
291
292 /*
293 * fields of register with prefix '_F' would be updated
294 * at vsync(same as dma start)
295 */
296 val |= VIDCON0_ENVID | VIDCON0_ENVID_F;
297 writel(val, ctx->regs + VIDCON0);
298}
299
300static int fimd_enable_vblank(struct device *dev)
301{
302 struct fimd_context *ctx = get_fimd_context(dev);
303 u32 val;
304
305 DRM_DEBUG_KMS("%s\n", __FILE__);
306
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +0900307 if (ctx->suspended)
308 return -EPERM;
309
Inki Dae1c248b72011-10-04 19:19:01 +0900310 if (!test_and_set_bit(0, &ctx->irq_flags)) {
311 val = readl(ctx->regs + VIDINTCON0);
312
313 val |= VIDINTCON0_INT_ENABLE;
314 val |= VIDINTCON0_INT_FRAME;
315
316 val &= ~VIDINTCON0_FRAMESEL0_MASK;
317 val |= VIDINTCON0_FRAMESEL0_VSYNC;
318 val &= ~VIDINTCON0_FRAMESEL1_MASK;
319 val |= VIDINTCON0_FRAMESEL1_NONE;
320
321 writel(val, ctx->regs + VIDINTCON0);
322 }
323
324 return 0;
325}
326
327static void fimd_disable_vblank(struct device *dev)
328{
329 struct fimd_context *ctx = get_fimd_context(dev);
330 u32 val;
331
332 DRM_DEBUG_KMS("%s\n", __FILE__);
333
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +0900334 if (ctx->suspended)
335 return;
336
Inki Dae1c248b72011-10-04 19:19:01 +0900337 if (test_and_clear_bit(0, &ctx->irq_flags)) {
338 val = readl(ctx->regs + VIDINTCON0);
339
340 val &= ~VIDINTCON0_INT_FRAME;
341 val &= ~VIDINTCON0_INT_ENABLE;
342
343 writel(val, ctx->regs + VIDINTCON0);
344 }
345}
346
Prathyush K07033972012-12-06 20:16:02 +0530347static void fimd_wait_for_vblank(struct device *dev)
348{
349 struct fimd_context *ctx = get_fimd_context(dev);
Prathyush K07033972012-12-06 20:16:02 +0530350
Prathyush K01ce1132012-12-06 20:16:04 +0530351 if (ctx->suspended)
352 return;
353
354 atomic_set(&ctx->wait_vsync_event, 1);
355
356 /*
357 * wait for FIMD to signal VSYNC interrupt or return after
358 * timeout which is set to 50ms (refresh rate of 20).
359 */
360 if (!wait_event_timeout(ctx->wait_vsync_queue,
361 !atomic_read(&ctx->wait_vsync_event),
362 DRM_HZ/20))
Prathyush K07033972012-12-06 20:16:02 +0530363 DRM_DEBUG_KMS("vblank wait timed out.\n");
364}
365
Inki Dae1c248b72011-10-04 19:19:01 +0900366static struct exynos_drm_manager_ops fimd_manager_ops = {
Inki Daeec05da92011-12-06 11:06:54 +0900367 .dpms = fimd_dpms,
368 .apply = fimd_apply,
Inki Dae1c248b72011-10-04 19:19:01 +0900369 .commit = fimd_commit,
370 .enable_vblank = fimd_enable_vblank,
371 .disable_vblank = fimd_disable_vblank,
Prathyush K07033972012-12-06 20:16:02 +0530372 .wait_for_vblank = fimd_wait_for_vblank,
Inki Dae1c248b72011-10-04 19:19:01 +0900373};
374
375static void fimd_win_mode_set(struct device *dev,
376 struct exynos_drm_overlay *overlay)
377{
378 struct fimd_context *ctx = get_fimd_context(dev);
379 struct fimd_win_data *win_data;
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900380 int win;
Inki Dae19c8b832011-10-14 13:29:46 +0900381 unsigned long offset;
Inki Dae1c248b72011-10-04 19:19:01 +0900382
383 DRM_DEBUG_KMS("%s\n", __FILE__);
384
385 if (!overlay) {
386 dev_err(dev, "overlay is NULL\n");
387 return;
388 }
389
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900390 win = overlay->zpos;
391 if (win == DEFAULT_ZPOS)
392 win = ctx->default_win;
393
Krzysztof Kozlowski37b006e2013-05-27 11:56:26 +0200394 if (win < 0 || win >= WINDOWS_NR)
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900395 return;
396
Inki Dae19c8b832011-10-14 13:29:46 +0900397 offset = overlay->fb_x * (overlay->bpp >> 3);
398 offset += overlay->fb_y * overlay->pitch;
399
400 DRM_DEBUG_KMS("offset = 0x%lx, pitch = %x\n", offset, overlay->pitch);
401
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900402 win_data = &ctx->win_data[win];
Inki Dae1c248b72011-10-04 19:19:01 +0900403
Inki Dae19c8b832011-10-14 13:29:46 +0900404 win_data->offset_x = overlay->crtc_x;
405 win_data->offset_y = overlay->crtc_y;
406 win_data->ovl_width = overlay->crtc_width;
407 win_data->ovl_height = overlay->crtc_height;
408 win_data->fb_width = overlay->fb_width;
409 win_data->fb_height = overlay->fb_height;
Seung-Woo Kim229d3532011-12-15 14:36:22 +0900410 win_data->dma_addr = overlay->dma_addr[0] + offset;
Inki Dae1c248b72011-10-04 19:19:01 +0900411 win_data->bpp = overlay->bpp;
Inki Dae19c8b832011-10-14 13:29:46 +0900412 win_data->buf_offsize = (overlay->fb_width - overlay->crtc_width) *
413 (overlay->bpp >> 3);
414 win_data->line_size = overlay->crtc_width * (overlay->bpp >> 3);
415
416 DRM_DEBUG_KMS("offset_x = %d, offset_y = %d\n",
417 win_data->offset_x, win_data->offset_y);
418 DRM_DEBUG_KMS("ovl_width = %d, ovl_height = %d\n",
419 win_data->ovl_width, win_data->ovl_height);
YoungJun Choddd8e952012-12-10 15:44:58 +0900420 DRM_DEBUG_KMS("paddr = 0x%lx\n", (unsigned long)win_data->dma_addr);
Inki Dae19c8b832011-10-14 13:29:46 +0900421 DRM_DEBUG_KMS("fb_width = %d, crtc_width = %d\n",
422 overlay->fb_width, overlay->crtc_width);
Inki Dae1c248b72011-10-04 19:19:01 +0900423}
424
425static void fimd_win_set_pixfmt(struct device *dev, unsigned int win)
426{
427 struct fimd_context *ctx = get_fimd_context(dev);
428 struct fimd_win_data *win_data = &ctx->win_data[win];
429 unsigned long val;
430
431 DRM_DEBUG_KMS("%s\n", __FILE__);
432
433 val = WINCONx_ENWIN;
434
435 switch (win_data->bpp) {
436 case 1:
437 val |= WINCON0_BPPMODE_1BPP;
438 val |= WINCONx_BITSWP;
439 val |= WINCONx_BURSTLEN_4WORD;
440 break;
441 case 2:
442 val |= WINCON0_BPPMODE_2BPP;
443 val |= WINCONx_BITSWP;
444 val |= WINCONx_BURSTLEN_8WORD;
445 break;
446 case 4:
447 val |= WINCON0_BPPMODE_4BPP;
448 val |= WINCONx_BITSWP;
449 val |= WINCONx_BURSTLEN_8WORD;
450 break;
451 case 8:
452 val |= WINCON0_BPPMODE_8BPP_PALETTE;
453 val |= WINCONx_BURSTLEN_8WORD;
454 val |= WINCONx_BYTSWP;
455 break;
456 case 16:
457 val |= WINCON0_BPPMODE_16BPP_565;
458 val |= WINCONx_HAWSWP;
459 val |= WINCONx_BURSTLEN_16WORD;
460 break;
461 case 24:
462 val |= WINCON0_BPPMODE_24BPP_888;
463 val |= WINCONx_WSWP;
464 val |= WINCONx_BURSTLEN_16WORD;
465 break;
466 case 32:
467 val |= WINCON1_BPPMODE_28BPP_A4888
468 | WINCON1_BLD_PIX | WINCON1_ALPHA_SEL;
469 val |= WINCONx_WSWP;
470 val |= WINCONx_BURSTLEN_16WORD;
471 break;
472 default:
473 DRM_DEBUG_KMS("invalid pixel size so using unpacked 24bpp.\n");
474
475 val |= WINCON0_BPPMODE_24BPP_888;
476 val |= WINCONx_WSWP;
477 val |= WINCONx_BURSTLEN_16WORD;
478 break;
479 }
480
481 DRM_DEBUG_KMS("bpp = %d\n", win_data->bpp);
482
483 writel(val, ctx->regs + WINCON(win));
484}
485
486static void fimd_win_set_colkey(struct device *dev, unsigned int win)
487{
488 struct fimd_context *ctx = get_fimd_context(dev);
489 unsigned int keycon0 = 0, keycon1 = 0;
490
491 DRM_DEBUG_KMS("%s\n", __FILE__);
492
493 keycon0 = ~(WxKEYCON0_KEYBL_EN | WxKEYCON0_KEYEN_F |
494 WxKEYCON0_DIRCON) | WxKEYCON0_COMPKEY(0);
495
496 keycon1 = WxKEYCON1_COLVAL(0xffffffff);
497
498 writel(keycon0, ctx->regs + WKEYCON0_BASE(win));
499 writel(keycon1, ctx->regs + WKEYCON1_BASE(win));
500}
501
Tomasz Figade7af102013-05-01 21:02:27 +0200502/**
503 * shadow_protect_win() - disable updating values from shadow registers at vsync
504 *
505 * @win: window to protect registers for
506 * @protect: 1 to protect (disable updates)
507 */
508static void fimd_shadow_protect_win(struct fimd_context *ctx,
509 int win, bool protect)
510{
511 u32 reg, bits, val;
512
513 if (ctx->driver_data->has_shadowcon) {
514 reg = SHADOWCON;
515 bits = SHADOWCON_WINx_PROTECT(win);
516 } else {
517 reg = PRTCON;
518 bits = PRTCON_PROTECT;
519 }
520
521 val = readl(ctx->regs + reg);
522 if (protect)
523 val |= bits;
524 else
525 val &= ~bits;
526 writel(val, ctx->regs + reg);
527}
528
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900529static void fimd_win_commit(struct device *dev, int zpos)
Inki Dae1c248b72011-10-04 19:19:01 +0900530{
531 struct fimd_context *ctx = get_fimd_context(dev);
532 struct fimd_win_data *win_data;
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900533 int win = zpos;
Inki Dae1c248b72011-10-04 19:19:01 +0900534 unsigned long val, alpha, size;
Joonyoung Shimf56aad32012-12-14 15:48:23 +0900535 unsigned int last_x;
536 unsigned int last_y;
Inki Dae1c248b72011-10-04 19:19:01 +0900537
538 DRM_DEBUG_KMS("%s\n", __FILE__);
539
Inki Daee30d4bc2011-12-12 16:35:20 +0900540 if (ctx->suspended)
541 return;
542
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900543 if (win == DEFAULT_ZPOS)
544 win = ctx->default_win;
545
Krzysztof Kozlowski37b006e2013-05-27 11:56:26 +0200546 if (win < 0 || win >= WINDOWS_NR)
Inki Dae1c248b72011-10-04 19:19:01 +0900547 return;
548
549 win_data = &ctx->win_data[win];
550
551 /*
Tomasz Figade7af102013-05-01 21:02:27 +0200552 * SHADOWCON/PRTCON register is used for enabling timing.
Inki Dae1c248b72011-10-04 19:19:01 +0900553 *
554 * for example, once only width value of a register is set,
555 * if the dma is started then fimd hardware could malfunction so
556 * with protect window setting, the register fields with prefix '_F'
557 * wouldn't be updated at vsync also but updated once unprotect window
558 * is set.
559 */
560
561 /* protect windows */
Tomasz Figade7af102013-05-01 21:02:27 +0200562 fimd_shadow_protect_win(ctx, win, true);
Inki Dae1c248b72011-10-04 19:19:01 +0900563
564 /* buffer start address */
Inki Dae2c871122011-11-12 15:23:32 +0900565 val = (unsigned long)win_data->dma_addr;
Inki Dae1c248b72011-10-04 19:19:01 +0900566 writel(val, ctx->regs + VIDWx_BUF_START(win, 0));
567
568 /* buffer end address */
Inki Dae19c8b832011-10-14 13:29:46 +0900569 size = win_data->fb_width * win_data->ovl_height * (win_data->bpp >> 3);
Inki Dae2c871122011-11-12 15:23:32 +0900570 val = (unsigned long)(win_data->dma_addr + size);
Inki Dae1c248b72011-10-04 19:19:01 +0900571 writel(val, ctx->regs + VIDWx_BUF_END(win, 0));
572
573 DRM_DEBUG_KMS("start addr = 0x%lx, end addr = 0x%lx, size = 0x%lx\n",
Inki Dae2c871122011-11-12 15:23:32 +0900574 (unsigned long)win_data->dma_addr, val, size);
Inki Dae19c8b832011-10-14 13:29:46 +0900575 DRM_DEBUG_KMS("ovl_width = %d, ovl_height = %d\n",
576 win_data->ovl_width, win_data->ovl_height);
Inki Dae1c248b72011-10-04 19:19:01 +0900577
578 /* buffer size */
579 val = VIDW_BUF_SIZE_OFFSET(win_data->buf_offsize) |
Joonyoung Shimca555e52012-12-14 15:48:24 +0900580 VIDW_BUF_SIZE_PAGEWIDTH(win_data->line_size) |
581 VIDW_BUF_SIZE_OFFSET_E(win_data->buf_offsize) |
582 VIDW_BUF_SIZE_PAGEWIDTH_E(win_data->line_size);
Inki Dae1c248b72011-10-04 19:19:01 +0900583 writel(val, ctx->regs + VIDWx_BUF_SIZE(win, 0));
584
585 /* OSD position */
586 val = VIDOSDxA_TOPLEFT_X(win_data->offset_x) |
Joonyoung Shimca555e52012-12-14 15:48:24 +0900587 VIDOSDxA_TOPLEFT_Y(win_data->offset_y) |
588 VIDOSDxA_TOPLEFT_X_E(win_data->offset_x) |
589 VIDOSDxA_TOPLEFT_Y_E(win_data->offset_y);
Inki Dae1c248b72011-10-04 19:19:01 +0900590 writel(val, ctx->regs + VIDOSD_A(win));
591
Joonyoung Shimf56aad32012-12-14 15:48:23 +0900592 last_x = win_data->offset_x + win_data->ovl_width;
593 if (last_x)
594 last_x--;
595 last_y = win_data->offset_y + win_data->ovl_height;
596 if (last_y)
597 last_y--;
598
Joonyoung Shimca555e52012-12-14 15:48:24 +0900599 val = VIDOSDxB_BOTRIGHT_X(last_x) | VIDOSDxB_BOTRIGHT_Y(last_y) |
600 VIDOSDxB_BOTRIGHT_X_E(last_x) | VIDOSDxB_BOTRIGHT_Y_E(last_y);
601
Inki Dae1c248b72011-10-04 19:19:01 +0900602 writel(val, ctx->regs + VIDOSD_B(win));
603
Inki Dae19c8b832011-10-14 13:29:46 +0900604 DRM_DEBUG_KMS("osd pos: tx = %d, ty = %d, bx = %d, by = %d\n",
Joonyoung Shimf56aad32012-12-14 15:48:23 +0900605 win_data->offset_x, win_data->offset_y, last_x, last_y);
Inki Dae1c248b72011-10-04 19:19:01 +0900606
607 /* hardware window 0 doesn't support alpha channel. */
608 if (win != 0) {
609 /* OSD alpha */
610 alpha = VIDISD14C_ALPHA1_R(0xf) |
611 VIDISD14C_ALPHA1_G(0xf) |
612 VIDISD14C_ALPHA1_B(0xf);
613
614 writel(alpha, ctx->regs + VIDOSD_C(win));
615 }
616
617 /* OSD size */
618 if (win != 3 && win != 4) {
619 u32 offset = VIDOSD_D(win);
620 if (win == 0)
Leela Krishna Amudala0f10cf12013-03-07 23:28:52 -0500621 offset = VIDOSD_C(win);
Inki Dae19c8b832011-10-14 13:29:46 +0900622 val = win_data->ovl_width * win_data->ovl_height;
Inki Dae1c248b72011-10-04 19:19:01 +0900623 writel(val, ctx->regs + offset);
624
625 DRM_DEBUG_KMS("osd size = 0x%x\n", (unsigned int)val);
626 }
627
628 fimd_win_set_pixfmt(dev, win);
629
630 /* hardware window 0 doesn't support color key. */
631 if (win != 0)
632 fimd_win_set_colkey(dev, win);
633
Inki Daeec05da92011-12-06 11:06:54 +0900634 /* wincon */
635 val = readl(ctx->regs + WINCON(win));
636 val |= WINCONx_ENWIN;
637 writel(val, ctx->regs + WINCON(win));
638
Inki Dae1c248b72011-10-04 19:19:01 +0900639 /* Enable DMA channel and unprotect windows */
Tomasz Figade7af102013-05-01 21:02:27 +0200640 fimd_shadow_protect_win(ctx, win, false);
641
642 if (ctx->driver_data->has_shadowcon) {
643 val = readl(ctx->regs + SHADOWCON);
644 val |= SHADOWCON_CHx_ENABLE(win);
645 writel(val, ctx->regs + SHADOWCON);
646 }
Inki Daeec05da92011-12-06 11:06:54 +0900647
648 win_data->enabled = true;
Inki Dae1c248b72011-10-04 19:19:01 +0900649}
650
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900651static void fimd_win_disable(struct device *dev, int zpos)
Inki Dae1c248b72011-10-04 19:19:01 +0900652{
653 struct fimd_context *ctx = get_fimd_context(dev);
Inki Daeec05da92011-12-06 11:06:54 +0900654 struct fimd_win_data *win_data;
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900655 int win = zpos;
Inki Dae1c248b72011-10-04 19:19:01 +0900656 u32 val;
657
658 DRM_DEBUG_KMS("%s\n", __FILE__);
659
Joonyoung Shim864ee9e2011-12-08 17:54:07 +0900660 if (win == DEFAULT_ZPOS)
661 win = ctx->default_win;
662
Krzysztof Kozlowski37b006e2013-05-27 11:56:26 +0200663 if (win < 0 || win >= WINDOWS_NR)
Inki Dae1c248b72011-10-04 19:19:01 +0900664 return;
665
Inki Daeec05da92011-12-06 11:06:54 +0900666 win_data = &ctx->win_data[win];
667
Prathyush Kdb7e55a2012-12-06 20:16:06 +0530668 if (ctx->suspended) {
669 /* do not resume this window*/
670 win_data->resume = false;
671 return;
672 }
673
Inki Dae1c248b72011-10-04 19:19:01 +0900674 /* protect windows */
Tomasz Figade7af102013-05-01 21:02:27 +0200675 fimd_shadow_protect_win(ctx, win, true);
Inki Dae1c248b72011-10-04 19:19:01 +0900676
677 /* wincon */
678 val = readl(ctx->regs + WINCON(win));
679 val &= ~WINCONx_ENWIN;
680 writel(val, ctx->regs + WINCON(win));
681
682 /* unprotect windows */
Tomasz Figade7af102013-05-01 21:02:27 +0200683 if (ctx->driver_data->has_shadowcon) {
684 val = readl(ctx->regs + SHADOWCON);
685 val &= ~SHADOWCON_CHx_ENABLE(win);
686 writel(val, ctx->regs + SHADOWCON);
687 }
688
689 fimd_shadow_protect_win(ctx, win, false);
Inki Daeec05da92011-12-06 11:06:54 +0900690
691 win_data->enabled = false;
Inki Dae1c248b72011-10-04 19:19:01 +0900692}
693
694static struct exynos_drm_overlay_ops fimd_overlay_ops = {
695 .mode_set = fimd_win_mode_set,
696 .commit = fimd_win_commit,
697 .disable = fimd_win_disable,
698};
699
Joonyoung Shim677e84c2012-04-05 20:49:27 +0900700static struct exynos_drm_manager fimd_manager = {
701 .pipe = -1,
702 .ops = &fimd_manager_ops,
703 .overlay_ops = &fimd_overlay_ops,
704 .display_ops = &fimd_display_ops,
705};
706
Inki Dae1c248b72011-10-04 19:19:01 +0900707static irqreturn_t fimd_irq_handler(int irq, void *dev_id)
708{
709 struct fimd_context *ctx = (struct fimd_context *)dev_id;
710 struct exynos_drm_subdrv *subdrv = &ctx->subdrv;
711 struct drm_device *drm_dev = subdrv->drm_dev;
Joonyoung Shim677e84c2012-04-05 20:49:27 +0900712 struct exynos_drm_manager *manager = subdrv->manager;
Inki Dae1c248b72011-10-04 19:19:01 +0900713 u32 val;
714
715 val = readl(ctx->regs + VIDINTCON1);
716
717 if (val & VIDINTCON1_INT_FRAME)
718 /* VSYNC interrupt */
719 writel(VIDINTCON1_INT_FRAME, ctx->regs + VIDINTCON1);
720
Inki Daeec05da92011-12-06 11:06:54 +0900721 /* check the crtc is detached already from encoder */
722 if (manager->pipe < 0)
723 goto out;
Inki Dae483b88f2011-11-11 21:28:00 +0900724
Inki Dae1c248b72011-10-04 19:19:01 +0900725 drm_handle_vblank(drm_dev, manager->pipe);
Rahul Sharma663d8762013-01-03 05:44:04 -0500726 exynos_drm_crtc_finish_pageflip(drm_dev, manager->pipe);
Inki Dae1c248b72011-10-04 19:19:01 +0900727
Prathyush K01ce1132012-12-06 20:16:04 +0530728 /* set wait vsync event to zero and wake up queue. */
729 if (atomic_read(&ctx->wait_vsync_event)) {
730 atomic_set(&ctx->wait_vsync_event, 0);
731 DRM_WAKEUP(&ctx->wait_vsync_queue);
732 }
Inki Daeec05da92011-12-06 11:06:54 +0900733out:
Inki Dae1c248b72011-10-04 19:19:01 +0900734 return IRQ_HANDLED;
735}
736
Inki Dae41c24342011-10-14 13:29:48 +0900737static int fimd_subdrv_probe(struct drm_device *drm_dev, struct device *dev)
Inki Dae1c248b72011-10-04 19:19:01 +0900738{
Inki Dae1c248b72011-10-04 19:19:01 +0900739 DRM_DEBUG_KMS("%s\n", __FILE__);
740
741 /*
742 * enable drm irq mode.
743 * - with irq_enabled = 1, we can use the vblank feature.
744 *
745 * P.S. note that we wouldn't use drm irq handler but
746 * just specific driver own one instead because
747 * drm framework supports only one irq handler.
748 */
749 drm_dev->irq_enabled = 1;
750
Inki Daeec05da92011-12-06 11:06:54 +0900751 /*
752 * with vblank_disable_allowed = 1, vblank interrupt will be disabled
753 * by drm timer once a current process gives up ownership of
754 * vblank event.(after drm_vblank_put function is called)
755 */
756 drm_dev->vblank_disable_allowed = 1;
757
Inki Daebcc5cd12012-10-19 17:16:36 +0900758 /* attach this sub driver to iommu mapping if supported. */
759 if (is_drm_iommu_supported(drm_dev))
760 drm_iommu_attach_device(drm_dev, dev);
761
Inki Dae1c248b72011-10-04 19:19:01 +0900762 return 0;
763}
764
Inki Dae29cb6022012-09-05 14:12:06 +0900765static void fimd_subdrv_remove(struct drm_device *drm_dev, struct device *dev)
Inki Dae1c248b72011-10-04 19:19:01 +0900766{
Inki Dae1c248b72011-10-04 19:19:01 +0900767 DRM_DEBUG_KMS("%s\n", __FILE__);
768
Inki Daebcc5cd12012-10-19 17:16:36 +0900769 /* detach this sub driver from iommu mapping if supported. */
770 if (is_drm_iommu_supported(drm_dev))
771 drm_iommu_detach_device(drm_dev, dev);
Inki Dae1c248b72011-10-04 19:19:01 +0900772}
773
774static int fimd_calc_clkdiv(struct fimd_context *ctx,
775 struct fb_videomode *timing)
776{
777 unsigned long clk = clk_get_rate(ctx->lcd_clk);
778 u32 retrace;
779 u32 clkdiv;
780 u32 best_framerate = 0;
781 u32 framerate;
782
783 DRM_DEBUG_KMS("%s\n", __FILE__);
784
785 retrace = timing->left_margin + timing->hsync_len +
786 timing->right_margin + timing->xres;
787 retrace *= timing->upper_margin + timing->vsync_len +
788 timing->lower_margin + timing->yres;
789
790 /* default framerate is 60Hz */
791 if (!timing->refresh)
792 timing->refresh = 60;
793
794 clk /= retrace;
795
796 for (clkdiv = 1; clkdiv < 0x100; clkdiv++) {
797 int tmp;
798
799 /* get best framerate */
800 framerate = clk / clkdiv;
801 tmp = timing->refresh - framerate;
802 if (tmp < 0) {
803 best_framerate = framerate;
804 continue;
805 } else {
806 if (!best_framerate)
807 best_framerate = framerate;
808 else if (tmp < (best_framerate - framerate))
809 best_framerate = framerate;
810 break;
811 }
812 }
813
814 return clkdiv;
815}
816
817static void fimd_clear_win(struct fimd_context *ctx, int win)
818{
Inki Dae1c248b72011-10-04 19:19:01 +0900819 DRM_DEBUG_KMS("%s\n", __FILE__);
820
821 writel(0, ctx->regs + WINCON(win));
822 writel(0, ctx->regs + VIDOSD_A(win));
823 writel(0, ctx->regs + VIDOSD_B(win));
824 writel(0, ctx->regs + VIDOSD_C(win));
825
826 if (win == 1 || win == 2)
827 writel(0, ctx->regs + VIDOSD_D(win));
828
Tomasz Figade7af102013-05-01 21:02:27 +0200829 fimd_shadow_protect_win(ctx, win, false);
Inki Dae1c248b72011-10-04 19:19:01 +0900830}
831
Inki Dae5d553932012-08-17 17:08:04 +0900832static int fimd_clock(struct fimd_context *ctx, bool enable)
Inki Dae373af0c2012-01-27 11:54:58 +0900833{
Inki Dae373af0c2012-01-27 11:54:58 +0900834 DRM_DEBUG_KMS("%s\n", __FILE__);
835
Inki Dae373af0c2012-01-27 11:54:58 +0900836 if (enable) {
837 int ret;
838
Vikas Sajjan11963a62013-04-23 17:19:50 +0530839 ret = clk_prepare_enable(ctx->bus_clk);
Inki Dae373af0c2012-01-27 11:54:58 +0900840 if (ret < 0)
841 return ret;
842
Vikas Sajjan11963a62013-04-23 17:19:50 +0530843 ret = clk_prepare_enable(ctx->lcd_clk);
Inki Dae373af0c2012-01-27 11:54:58 +0900844 if (ret < 0) {
Vikas Sajjan11963a62013-04-23 17:19:50 +0530845 clk_disable_unprepare(ctx->bus_clk);
Inki Dae373af0c2012-01-27 11:54:58 +0900846 return ret;
847 }
Inki Dae5d553932012-08-17 17:08:04 +0900848 } else {
Vikas Sajjan11963a62013-04-23 17:19:50 +0530849 clk_disable_unprepare(ctx->lcd_clk);
850 clk_disable_unprepare(ctx->bus_clk);
Inki Dae5d553932012-08-17 17:08:04 +0900851 }
852
853 return 0;
854}
855
Prathyush Kdb7e55a2012-12-06 20:16:06 +0530856static void fimd_window_suspend(struct device *dev)
857{
858 struct fimd_context *ctx = get_fimd_context(dev);
859 struct fimd_win_data *win_data;
860 int i;
861
862 for (i = 0; i < WINDOWS_NR; i++) {
863 win_data = &ctx->win_data[i];
864 win_data->resume = win_data->enabled;
865 fimd_win_disable(dev, i);
866 }
867 fimd_wait_for_vblank(dev);
868}
869
870static void fimd_window_resume(struct device *dev)
871{
872 struct fimd_context *ctx = get_fimd_context(dev);
873 struct fimd_win_data *win_data;
874 int i;
875
876 for (i = 0; i < WINDOWS_NR; i++) {
877 win_data = &ctx->win_data[i];
878 win_data->enabled = win_data->resume;
879 win_data->resume = false;
880 }
881}
882
Inki Dae5d553932012-08-17 17:08:04 +0900883static int fimd_activate(struct fimd_context *ctx, bool enable)
884{
Prathyush Kdb7e55a2012-12-06 20:16:06 +0530885 struct device *dev = ctx->subdrv.dev;
Inki Dae5d553932012-08-17 17:08:04 +0900886 if (enable) {
887 int ret;
Inki Dae5d553932012-08-17 17:08:04 +0900888
889 ret = fimd_clock(ctx, true);
890 if (ret < 0)
891 return ret;
Inki Dae373af0c2012-01-27 11:54:58 +0900892
893 ctx->suspended = false;
894
895 /* if vblank was enabled status, enable it again. */
896 if (test_and_clear_bit(0, &ctx->irq_flags))
897 fimd_enable_vblank(dev);
Prathyush Kdb7e55a2012-12-06 20:16:06 +0530898
899 fimd_window_resume(dev);
Inki Dae373af0c2012-01-27 11:54:58 +0900900 } else {
Prathyush Kdb7e55a2012-12-06 20:16:06 +0530901 fimd_window_suspend(dev);
902
Inki Dae5d553932012-08-17 17:08:04 +0900903 fimd_clock(ctx, false);
Inki Dae373af0c2012-01-27 11:54:58 +0900904 ctx->suspended = true;
905 }
906
907 return 0;
908}
909
Greg Kroah-Hartman56550d92012-12-21 15:09:25 -0800910static int fimd_probe(struct platform_device *pdev)
Inki Dae1c248b72011-10-04 19:19:01 +0900911{
912 struct device *dev = &pdev->dev;
913 struct fimd_context *ctx;
914 struct exynos_drm_subdrv *subdrv;
915 struct exynos_drm_fimd_pdata *pdata;
Eun-Chul Kim607c50d2012-02-14 15:59:46 +0900916 struct exynos_drm_panel_info *panel;
Inki Dae1c248b72011-10-04 19:19:01 +0900917 struct resource *res;
918 int win;
919 int ret = -EINVAL;
920
921 DRM_DEBUG_KMS("%s\n", __FILE__);
922
Seung-Woo Kimd873ab92013-05-22 21:14:14 +0900923 if (dev->of_node) {
Vikas Sajjan7f4596f2013-03-07 12:15:21 +0530924 pdata = devm_kzalloc(dev, sizeof(*pdata), GFP_KERNEL);
925 if (!pdata) {
926 DRM_ERROR("memory allocation for pdata failed\n");
927 return -ENOMEM;
928 }
929
930 ret = of_get_fb_videomode(dev->of_node, &pdata->panel.timing,
931 OF_USE_NATIVE_MODE);
932 if (ret) {
933 DRM_ERROR("failed: of_get_fb_videomode() : %d\n", ret);
934 return ret;
935 }
936 } else {
Seung-Woo Kimd873ab92013-05-22 21:14:14 +0900937 pdata = dev->platform_data;
Vikas Sajjan7f4596f2013-03-07 12:15:21 +0530938 if (!pdata) {
939 DRM_ERROR("no platform data specified\n");
940 return -EINVAL;
941 }
Inki Dae1c248b72011-10-04 19:19:01 +0900942 }
943
Eun-Chul Kim607c50d2012-02-14 15:59:46 +0900944 panel = &pdata->panel;
945 if (!panel) {
946 dev_err(dev, "panel is null.\n");
Inki Dae1c248b72011-10-04 19:19:01 +0900947 return -EINVAL;
948 }
949
Seung-Woo Kimd873ab92013-05-22 21:14:14 +0900950 ctx = devm_kzalloc(dev, sizeof(*ctx), GFP_KERNEL);
Inki Dae1c248b72011-10-04 19:19:01 +0900951 if (!ctx)
952 return -ENOMEM;
953
Sachin Kamata4d8de52012-11-26 09:47:14 +0530954 ctx->bus_clk = devm_clk_get(dev, "fimd");
Inki Dae1c248b72011-10-04 19:19:01 +0900955 if (IS_ERR(ctx->bus_clk)) {
956 dev_err(dev, "failed to get bus clock\n");
Sachin Kamata4d8de52012-11-26 09:47:14 +0530957 return PTR_ERR(ctx->bus_clk);
Inki Dae1c248b72011-10-04 19:19:01 +0900958 }
959
Sachin Kamata4d8de52012-11-26 09:47:14 +0530960 ctx->lcd_clk = devm_clk_get(dev, "sclk_fimd");
Inki Dae1c248b72011-10-04 19:19:01 +0900961 if (IS_ERR(ctx->lcd_clk)) {
962 dev_err(dev, "failed to get lcd clock\n");
Sachin Kamata4d8de52012-11-26 09:47:14 +0530963 return PTR_ERR(ctx->lcd_clk);
Inki Dae1c248b72011-10-04 19:19:01 +0900964 }
965
Inki Dae1c248b72011-10-04 19:19:01 +0900966 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
Inki Dae1c248b72011-10-04 19:19:01 +0900967
Seung-Woo Kimd873ab92013-05-22 21:14:14 +0900968 ctx->regs = devm_ioremap_resource(dev, res);
Thierry Redingd4ed6022013-01-21 11:09:02 +0100969 if (IS_ERR(ctx->regs))
970 return PTR_ERR(ctx->regs);
Inki Dae1c248b72011-10-04 19:19:01 +0900971
Vikas Sajjan1977e6d2013-04-02 17:53:01 +0900972 res = platform_get_resource_byname(pdev, IORESOURCE_IRQ, "vsync");
Inki Dae1c248b72011-10-04 19:19:01 +0900973 if (!res) {
974 dev_err(dev, "irq request failed.\n");
Sachin Kamata4d8de52012-11-26 09:47:14 +0530975 return -ENXIO;
Inki Dae1c248b72011-10-04 19:19:01 +0900976 }
977
978 ctx->irq = res->start;
979
Seung-Woo Kimd873ab92013-05-22 21:14:14 +0900980 ret = devm_request_irq(dev, ctx->irq, fimd_irq_handler,
Sachin Kamatedc57262012-06-19 11:47:39 +0530981 0, "drm_fimd", ctx);
982 if (ret) {
Inki Dae1c248b72011-10-04 19:19:01 +0900983 dev_err(dev, "irq request failed.\n");
Sachin Kamata4d8de52012-11-26 09:47:14 +0530984 return ret;
Inki Dae1c248b72011-10-04 19:19:01 +0900985 }
986
Tomasz Figa18873462013-05-01 21:02:26 +0200987 ctx->driver_data = drm_fimd_get_driver_data(pdev);
Inki Dae1c248b72011-10-04 19:19:01 +0900988 ctx->vidcon0 = pdata->vidcon0;
989 ctx->vidcon1 = pdata->vidcon1;
990 ctx->default_win = pdata->default_win;
Eun-Chul Kim607c50d2012-02-14 15:59:46 +0900991 ctx->panel = panel;
Prathyush K01ce1132012-12-06 20:16:04 +0530992 DRM_INIT_WAITQUEUE(&ctx->wait_vsync_queue);
993 atomic_set(&ctx->wait_vsync_event, 0);
Inki Dae1c248b72011-10-04 19:19:01 +0900994
Inki Dae1c248b72011-10-04 19:19:01 +0900995 subdrv = &ctx->subdrv;
996
Joonyoung Shim677e84c2012-04-05 20:49:27 +0900997 subdrv->dev = dev;
998 subdrv->manager = &fimd_manager;
Inki Dae1c248b72011-10-04 19:19:01 +0900999 subdrv->probe = fimd_subdrv_probe;
1000 subdrv->remove = fimd_subdrv_remove;
Inki Dae1c248b72011-10-04 19:19:01 +09001001
Inki Daec32b06e2011-12-16 21:49:03 +09001002 mutex_init(&ctx->lock);
1003
Inki Dae1c248b72011-10-04 19:19:01 +09001004 platform_set_drvdata(pdev, ctx);
Inki Daec32b06e2011-12-16 21:49:03 +09001005
Inki Daec32b06e2011-12-16 21:49:03 +09001006 pm_runtime_enable(dev);
1007 pm_runtime_get_sync(dev);
1008
Marek Szyprowski0d8ce3a2012-03-08 10:28:56 +09001009 ctx->clkdiv = fimd_calc_clkdiv(ctx, &panel->timing);
1010 panel->timing.pixclock = clk_get_rate(ctx->lcd_clk) / ctx->clkdiv;
1011
1012 DRM_DEBUG_KMS("pixel clock = %d, clkdiv = %d\n",
1013 panel->timing.pixclock, ctx->clkdiv);
1014
Inki Daec32b06e2011-12-16 21:49:03 +09001015 for (win = 0; win < WINDOWS_NR; win++)
1016 fimd_clear_win(ctx, win);
1017
Inki Dae1c248b72011-10-04 19:19:01 +09001018 exynos_drm_subdrv_register(subdrv);
1019
1020 return 0;
Inki Dae1c248b72011-10-04 19:19:01 +09001021}
1022
Greg Kroah-Hartman56550d92012-12-21 15:09:25 -08001023static int fimd_remove(struct platform_device *pdev)
Inki Dae1c248b72011-10-04 19:19:01 +09001024{
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001025 struct device *dev = &pdev->dev;
Inki Dae1c248b72011-10-04 19:19:01 +09001026 struct fimd_context *ctx = platform_get_drvdata(pdev);
1027
1028 DRM_DEBUG_KMS("%s\n", __FILE__);
1029
1030 exynos_drm_subdrv_unregister(&ctx->subdrv);
1031
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001032 if (ctx->suspended)
1033 goto out;
1034
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001035 pm_runtime_set_suspended(dev);
1036 pm_runtime_put_sync(dev);
1037
1038out:
1039 pm_runtime_disable(dev);
1040
Inki Dae1c248b72011-10-04 19:19:01 +09001041 return 0;
1042}
1043
Inki Daee30d4bc2011-12-12 16:35:20 +09001044#ifdef CONFIG_PM_SLEEP
1045static int fimd_suspend(struct device *dev)
1046{
Inki Dae373af0c2012-01-27 11:54:58 +09001047 struct fimd_context *ctx = get_fimd_context(dev);
Inki Daee30d4bc2011-12-12 16:35:20 +09001048
Inki Dae373af0c2012-01-27 11:54:58 +09001049 /*
1050 * do not use pm_runtime_suspend(). if pm_runtime_suspend() is
1051 * called here, an error would be returned by that interface
1052 * because the usage_count of pm runtime is more than 1.
1053 */
Inki Dae5d553932012-08-17 17:08:04 +09001054 if (!pm_runtime_suspended(dev))
1055 return fimd_activate(ctx, false);
1056
1057 return 0;
Inki Daee30d4bc2011-12-12 16:35:20 +09001058}
1059
1060static int fimd_resume(struct device *dev)
1061{
Inki Dae373af0c2012-01-27 11:54:58 +09001062 struct fimd_context *ctx = get_fimd_context(dev);
Inki Daee30d4bc2011-12-12 16:35:20 +09001063
Inki Dae373af0c2012-01-27 11:54:58 +09001064 /*
1065 * if entered to sleep when lcd panel was on, the usage_count
1066 * of pm runtime would still be 1 so in this case, fimd driver
1067 * should be on directly not drawing on pm runtime interface.
1068 */
Prathyush K28998af2012-12-27 06:40:13 -05001069 if (!pm_runtime_suspended(dev)) {
Inki Dae5d553932012-08-17 17:08:04 +09001070 int ret;
1071
1072 ret = fimd_activate(ctx, true);
1073 if (ret < 0)
1074 return ret;
1075
1076 /*
1077 * in case of dpms on(standby), fimd_apply function will
1078 * be called by encoder's dpms callback to update fimd's
1079 * registers but in case of sleep wakeup, it's not.
1080 * so fimd_apply function should be called at here.
1081 */
1082 fimd_apply(dev);
1083 }
Inki Daee30d4bc2011-12-12 16:35:20 +09001084
Inki Daee30d4bc2011-12-12 16:35:20 +09001085 return 0;
1086}
1087#endif
1088
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001089#ifdef CONFIG_PM_RUNTIME
1090static int fimd_runtime_suspend(struct device *dev)
1091{
1092 struct fimd_context *ctx = get_fimd_context(dev);
1093
1094 DRM_DEBUG_KMS("%s\n", __FILE__);
1095
Inki Dae5d553932012-08-17 17:08:04 +09001096 return fimd_activate(ctx, false);
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001097}
1098
1099static int fimd_runtime_resume(struct device *dev)
1100{
1101 struct fimd_context *ctx = get_fimd_context(dev);
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001102
1103 DRM_DEBUG_KMS("%s\n", __FILE__);
1104
Inki Dae5d553932012-08-17 17:08:04 +09001105 return fimd_activate(ctx, true);
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001106}
1107#endif
1108
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +05301109static struct platform_device_id fimd_driver_ids[] = {
1110 {
1111 .name = "exynos4-fb",
1112 .driver_data = (unsigned long)&exynos4_fimd_driver_data,
1113 }, {
1114 .name = "exynos5-fb",
1115 .driver_data = (unsigned long)&exynos5_fimd_driver_data,
1116 },
1117 {},
1118};
1119MODULE_DEVICE_TABLE(platform, fimd_driver_ids);
1120
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001121static const struct dev_pm_ops fimd_pm_ops = {
Inki Daee30d4bc2011-12-12 16:35:20 +09001122 SET_SYSTEM_SLEEP_PM_OPS(fimd_suspend, fimd_resume)
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001123 SET_RUNTIME_PM_OPS(fimd_runtime_suspend, fimd_runtime_resume, NULL)
1124};
1125
Joonyoung Shim132a5b92012-03-16 18:47:08 +09001126struct platform_driver fimd_driver = {
Inki Dae1c248b72011-10-04 19:19:01 +09001127 .probe = fimd_probe,
Greg Kroah-Hartman56550d92012-12-21 15:09:25 -08001128 .remove = fimd_remove,
Leela Krishna Amudalae2e13382012-09-21 16:52:15 +05301129 .id_table = fimd_driver_ids,
Inki Dae1c248b72011-10-04 19:19:01 +09001130 .driver = {
1131 .name = "exynos4-fb",
1132 .owner = THIS_MODULE,
Joonyoung Shimcb91f6a2011-12-09 16:52:11 +09001133 .pm = &fimd_pm_ops,
Joonyoung Shimd636ead2012-12-14 15:48:25 +09001134 .of_match_table = of_match_ptr(fimd_driver_dt_match),
Inki Dae1c248b72011-10-04 19:19:01 +09001135 },
1136};