1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copyright (c) 2015 MediaTek Inc.
4 */
5
6 #include <linux/bitfield.h>
7 #include <linux/clk.h>
8 #include <linux/component.h>
9 #include <linux/iopoll.h>
10 #include <linux/irq.h>
11 #include <linux/of.h>
12 #include <linux/of_platform.h>
13 #include <linux/phy/phy.h>
14 #include <linux/platform_device.h>
15 #include <linux/reset.h>
16 #include <linux/units.h>
17
18 #include <video/mipi_display.h>
19 #include <video/videomode.h>
20
21 #include <drm/drm_atomic_helper.h>
22 #include <drm/drm_bridge.h>
23 #include <drm/drm_bridge_connector.h>
24 #include <drm/drm_mipi_dsi.h>
25 #include <drm/drm_of.h>
26 #include <drm/drm_panel.h>
27 #include <drm/drm_print.h>
28 #include <drm/drm_probe_helper.h>
29 #include <drm/drm_simple_kms_helper.h>
30
31 #include "mtk_ddp_comp.h"
32 #include "mtk_disp_drv.h"
33 #include "mtk_drm_drv.h"
34
35 #define DSI_START 0x00
36
37 #define DSI_INTEN 0x08
38
39 #define DSI_INTSTA 0x0c
40 #define LPRX_RD_RDY_INT_FLAG BIT(0)
41 #define CMD_DONE_INT_FLAG BIT(1)
42 #define TE_RDY_INT_FLAG BIT(2)
43 #define VM_DONE_INT_FLAG BIT(3)
44 #define EXT_TE_RDY_INT_FLAG BIT(4)
45 #define DSI_BUSY BIT(31)
46
47 #define DSI_CON_CTRL 0x10
48 #define DSI_RESET BIT(0)
49 #define DSI_EN BIT(1)
50 #define DPHY_RESET BIT(2)
51
52 #define DSI_MODE_CTRL 0x14
53 #define MODE (3)
54 #define CMD_MODE 0
55 #define SYNC_PULSE_MODE 1
56 #define SYNC_EVENT_MODE 2
57 #define BURST_MODE 3
58 #define FRM_MODE BIT(16)
59 #define MIX_MODE BIT(17)
60
61 #define DSI_TXRX_CTRL 0x18
62 #define VC_NUM BIT(1)
63 #define LANE_NUM GENMASK(5, 2)
64 #define DIS_EOT BIT(6)
65 #define NULL_EN BIT(7)
66 #define TE_FREERUN BIT(8)
67 #define EXT_TE_EN BIT(9)
68 #define EXT_TE_EDGE BIT(10)
69 #define MAX_RTN_SIZE GENMASK(15, 12)
70 #define HSTX_CKLP_EN BIT(16)
71
72 #define DSI_PSCTRL 0x1c
73 #define DSI_PS_WC GENMASK(13, 0)
74 #define DSI_PS_SEL GENMASK(17, 16)
75 #define PACKED_PS_16BIT_RGB565 0
76 #define PACKED_PS_18BIT_RGB666 1
77 #define LOOSELY_PS_24BIT_RGB666 2
78 #define PACKED_PS_24BIT_RGB888 3
79
80 #define DSI_VSA_NL 0x20
81 #define DSI_VBP_NL 0x24
82 #define DSI_VFP_NL 0x28
83 #define DSI_VACT_NL 0x2C
84 #define VACT_NL GENMASK(14, 0)
85 #define DSI_SIZE_CON 0x38
86 #define DSI_HEIGHT GENMASK(30, 16)
87 #define DSI_WIDTH GENMASK(14, 0)
88 #define DSI_HSA_WC 0x50
89 #define DSI_HBP_WC 0x54
90 #define DSI_HFP_WC 0x58
91 #define HFP_HS_VB_PS_WC GENMASK(30, 16)
92 #define HFP_HS_EN BIT(31)
93
94 #define DSI_CMDQ_SIZE 0x60
95 #define CMDQ_SIZE 0x3f
96 #define CMDQ_SIZE_SEL BIT(15)
97
98 #define DSI_HSTX_CKL_WC 0x64
99 #define HSTX_CKL_WC GENMASK(15, 2)
100
101 #define DSI_RX_DATA0 0x74
102 #define DSI_RX_DATA1 0x78
103 #define DSI_RX_DATA2 0x7c
104 #define DSI_RX_DATA3 0x80
105
106 #define DSI_RACK 0x84
107 #define RACK BIT(0)
108
109 #define DSI_PHY_LCCON 0x104
110 #define LC_HS_TX_EN BIT(0)
111 #define LC_ULPM_EN BIT(1)
112 #define LC_WAKEUP_EN BIT(2)
113
114 #define DSI_PHY_LD0CON 0x108
115 #define LD0_HS_TX_EN BIT(0)
116 #define LD0_ULPM_EN BIT(1)
117 #define LD0_WAKEUP_EN BIT(2)
118
119 #define DSI_PHY_TIMECON0 0x110
120 #define LPX GENMASK(7, 0)
121 #define HS_PREP GENMASK(15, 8)
122 #define HS_ZERO GENMASK(23, 16)
123 #define HS_TRAIL GENMASK(31, 24)
124
125 #define DSI_PHY_TIMECON1 0x114
126 #define TA_GO GENMASK(7, 0)
127 #define TA_SURE GENMASK(15, 8)
128 #define TA_GET GENMASK(23, 16)
129 #define DA_HS_EXIT GENMASK(31, 24)
130
131 #define DSI_PHY_TIMECON2 0x118
132 #define CONT_DET GENMASK(7, 0)
133 #define DA_HS_SYNC GENMASK(15, 8)
134 #define CLK_ZERO GENMASK(23, 16)
135 #define CLK_TRAIL GENMASK(31, 24)
136
137 #define DSI_PHY_TIMECON3 0x11c
138 #define CLK_HS_PREP GENMASK(7, 0)
139 #define CLK_HS_POST GENMASK(15, 8)
140 #define CLK_HS_EXIT GENMASK(23, 16)
141
142 /* DSI_VM_CMD_CON */
143 #define VM_CMD_EN BIT(0)
144 #define TS_VFP_EN BIT(5)
145
146 /* DSI_SHADOW_DEBUG */
147 #define FORCE_COMMIT BIT(0)
148 #define BYPASS_SHADOW BIT(1)
149
150 /* CMDQ related bits */
151 #define CONFIG GENMASK(7, 0)
152 #define SHORT_PACKET 0
153 #define LONG_PACKET 2
154 #define BTA BIT(2)
155 #define HSTX BIT(3)
156 #define DATA_ID GENMASK(15, 8)
157 #define DATA_0 GENMASK(23, 16)
158 #define DATA_1 GENMASK(31, 24)
159
160 #define NS_TO_CYCLE(n, c) ((n) / (c) + (((n) % (c)) ? 1 : 0))
161
162 #define MTK_DSI_HOST_IS_READ(type) \
163 ((type == MIPI_DSI_GENERIC_READ_REQUEST_0_PARAM) || \
164 (type == MIPI_DSI_GENERIC_READ_REQUEST_1_PARAM) || \
165 (type == MIPI_DSI_GENERIC_READ_REQUEST_2_PARAM) || \
166 (type == MIPI_DSI_DCS_READ))
167
168 struct mtk_phy_timing {
169 u32 lpx;
170 u32 da_hs_prepare;
171 u32 da_hs_zero;
172 u32 da_hs_trail;
173
174 u32 ta_go;
175 u32 ta_sure;
176 u32 ta_get;
177 u32 da_hs_exit;
178
179 u32 clk_hs_zero;
180 u32 clk_hs_trail;
181
182 u32 clk_hs_prepare;
183 u32 clk_hs_post;
184 u32 clk_hs_exit;
185 };
186
187 struct phy;
188
189 struct mtk_dsi_driver_data {
190 const u32 reg_cmdq_off;
191 const u32 reg_vm_cmd_off;
192 const u32 reg_shadow_dbg_off;
193 bool has_shadow_ctl;
194 bool has_size_ctl;
195 bool cmdq_long_packet_ctl;
196 bool support_per_frame_lp;
197 };
198
199 struct mtk_dsi {
200 struct device *dev;
201 struct mipi_dsi_host host;
202 struct drm_encoder encoder;
203 struct drm_bridge bridge;
204 struct drm_bridge *next_bridge;
205 struct drm_connector *connector;
206 struct phy *phy;
207
208 void __iomem *regs;
209
210 struct clk *engine_clk;
211 struct clk *digital_clk;
212 struct clk *hs_clk;
213
214 u32 data_rate;
215
216 unsigned long mode_flags;
217 enum mipi_dsi_pixel_format format;
218 unsigned int lanes;
219 struct videomode vm;
220 struct mtk_phy_timing phy_timing;
221 int refcount;
222 bool enabled;
223 bool lanes_ready;
224 u32 irq_data;
225 wait_queue_head_t irq_wait_queue;
226 const struct mtk_dsi_driver_data *driver_data;
227 };
228
bridge_to_dsi(struct drm_bridge * b)229 static inline struct mtk_dsi *bridge_to_dsi(struct drm_bridge *b)
230 {
231 return container_of(b, struct mtk_dsi, bridge);
232 }
233
host_to_dsi(struct mipi_dsi_host * h)234 static inline struct mtk_dsi *host_to_dsi(struct mipi_dsi_host *h)
235 {
236 return container_of(h, struct mtk_dsi, host);
237 }
238
mtk_dsi_mask(struct mtk_dsi * dsi,u32 offset,u32 mask,u32 data)239 static void mtk_dsi_mask(struct mtk_dsi *dsi, u32 offset, u32 mask, u32 data)
240 {
241 u32 temp = readl(dsi->regs + offset);
242
243 writel((temp & ~mask) | (data & mask), dsi->regs + offset);
244 }
245
mtk_dsi_phy_timconfig(struct mtk_dsi * dsi)246 static void mtk_dsi_phy_timconfig(struct mtk_dsi *dsi)
247 {
248 u32 timcon0, timcon1, timcon2, timcon3;
249 u32 data_rate_mhz = DIV_ROUND_UP(dsi->data_rate, HZ_PER_MHZ);
250 struct mtk_phy_timing *timing = &dsi->phy_timing;
251
252 timing->lpx = (60 * data_rate_mhz / (8 * 1000)) + 1;
253 timing->da_hs_prepare = (80 * data_rate_mhz + 4 * 1000) / 8000;
254 timing->da_hs_zero = (170 * data_rate_mhz + 10 * 1000) / 8000 + 1 -
255 timing->da_hs_prepare;
256 timing->da_hs_trail = timing->da_hs_prepare + 1;
257
258 timing->ta_go = 4 * timing->lpx - 2;
259 timing->ta_sure = timing->lpx + 2;
260 timing->ta_get = 4 * timing->lpx;
261 timing->da_hs_exit = 2 * timing->lpx + 1;
262
263 timing->clk_hs_prepare = 70 * data_rate_mhz / (8 * 1000);
264 timing->clk_hs_post = timing->clk_hs_prepare + 8;
265 timing->clk_hs_trail = timing->clk_hs_prepare;
266 timing->clk_hs_zero = timing->clk_hs_trail * 4;
267 timing->clk_hs_exit = 2 * timing->clk_hs_trail;
268
269 timcon0 = FIELD_PREP(LPX, timing->lpx) |
270 FIELD_PREP(HS_PREP, timing->da_hs_prepare) |
271 FIELD_PREP(HS_ZERO, timing->da_hs_zero) |
272 FIELD_PREP(HS_TRAIL, timing->da_hs_trail);
273
274 timcon1 = FIELD_PREP(TA_GO, timing->ta_go) |
275 FIELD_PREP(TA_SURE, timing->ta_sure) |
276 FIELD_PREP(TA_GET, timing->ta_get) |
277 FIELD_PREP(DA_HS_EXIT, timing->da_hs_exit);
278
279 timcon2 = FIELD_PREP(DA_HS_SYNC, 1) |
280 FIELD_PREP(CLK_ZERO, timing->clk_hs_zero) |
281 FIELD_PREP(CLK_TRAIL, timing->clk_hs_trail);
282
283 timcon3 = FIELD_PREP(CLK_HS_PREP, timing->clk_hs_prepare) |
284 FIELD_PREP(CLK_HS_POST, timing->clk_hs_post) |
285 FIELD_PREP(CLK_HS_EXIT, timing->clk_hs_exit);
286
287 writel(timcon0, dsi->regs + DSI_PHY_TIMECON0);
288 writel(timcon1, dsi->regs + DSI_PHY_TIMECON1);
289 writel(timcon2, dsi->regs + DSI_PHY_TIMECON2);
290 writel(timcon3, dsi->regs + DSI_PHY_TIMECON3);
291 }
292
mtk_dsi_enable(struct mtk_dsi * dsi)293 static void mtk_dsi_enable(struct mtk_dsi *dsi)
294 {
295 mtk_dsi_mask(dsi, DSI_CON_CTRL, DSI_EN, DSI_EN);
296 }
297
mtk_dsi_disable(struct mtk_dsi * dsi)298 static void mtk_dsi_disable(struct mtk_dsi *dsi)
299 {
300 mtk_dsi_mask(dsi, DSI_CON_CTRL, DSI_EN, 0);
301 }
302
mtk_dsi_reset_engine(struct mtk_dsi * dsi)303 static void mtk_dsi_reset_engine(struct mtk_dsi *dsi)
304 {
305 mtk_dsi_mask(dsi, DSI_CON_CTRL, DSI_RESET, DSI_RESET);
306 mtk_dsi_mask(dsi, DSI_CON_CTRL, DSI_RESET, 0);
307 }
308
mtk_dsi_reset_dphy(struct mtk_dsi * dsi)309 static void mtk_dsi_reset_dphy(struct mtk_dsi *dsi)
310 {
311 mtk_dsi_mask(dsi, DSI_CON_CTRL, DPHY_RESET, DPHY_RESET);
312 mtk_dsi_mask(dsi, DSI_CON_CTRL, DPHY_RESET, 0);
313 }
314
mtk_dsi_clk_ulp_mode_enter(struct mtk_dsi * dsi)315 static void mtk_dsi_clk_ulp_mode_enter(struct mtk_dsi *dsi)
316 {
317 mtk_dsi_mask(dsi, DSI_PHY_LCCON, LC_HS_TX_EN, 0);
318 mtk_dsi_mask(dsi, DSI_PHY_LCCON, LC_ULPM_EN, 0);
319 }
320
mtk_dsi_clk_ulp_mode_leave(struct mtk_dsi * dsi)321 static void mtk_dsi_clk_ulp_mode_leave(struct mtk_dsi *dsi)
322 {
323 mtk_dsi_mask(dsi, DSI_PHY_LCCON, LC_ULPM_EN, 0);
324 mtk_dsi_mask(dsi, DSI_PHY_LCCON, LC_WAKEUP_EN, LC_WAKEUP_EN);
325 mtk_dsi_mask(dsi, DSI_PHY_LCCON, LC_WAKEUP_EN, 0);
326 }
327
mtk_dsi_lane0_ulp_mode_enter(struct mtk_dsi * dsi)328 static void mtk_dsi_lane0_ulp_mode_enter(struct mtk_dsi *dsi)
329 {
330 mtk_dsi_mask(dsi, DSI_PHY_LD0CON, LD0_HS_TX_EN, 0);
331 mtk_dsi_mask(dsi, DSI_PHY_LD0CON, LD0_ULPM_EN, 0);
332 }
333
mtk_dsi_lane0_ulp_mode_leave(struct mtk_dsi * dsi)334 static void mtk_dsi_lane0_ulp_mode_leave(struct mtk_dsi *dsi)
335 {
336 mtk_dsi_mask(dsi, DSI_PHY_LD0CON, LD0_ULPM_EN, 0);
337 mtk_dsi_mask(dsi, DSI_PHY_LD0CON, LD0_WAKEUP_EN, LD0_WAKEUP_EN);
338 mtk_dsi_mask(dsi, DSI_PHY_LD0CON, LD0_WAKEUP_EN, 0);
339 }
340
mtk_dsi_clk_hs_state(struct mtk_dsi * dsi)341 static bool mtk_dsi_clk_hs_state(struct mtk_dsi *dsi)
342 {
343 return readl(dsi->regs + DSI_PHY_LCCON) & LC_HS_TX_EN;
344 }
345
mtk_dsi_clk_hs_mode(struct mtk_dsi * dsi,bool enter)346 static void mtk_dsi_clk_hs_mode(struct mtk_dsi *dsi, bool enter)
347 {
348 if (enter && !mtk_dsi_clk_hs_state(dsi))
349 mtk_dsi_mask(dsi, DSI_PHY_LCCON, LC_HS_TX_EN, LC_HS_TX_EN);
350 else if (!enter && mtk_dsi_clk_hs_state(dsi))
351 mtk_dsi_mask(dsi, DSI_PHY_LCCON, LC_HS_TX_EN, 0);
352 }
353
mtk_dsi_set_mode(struct mtk_dsi * dsi)354 static void mtk_dsi_set_mode(struct mtk_dsi *dsi)
355 {
356 u32 vid_mode = CMD_MODE;
357
358 if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO) {
359 if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_BURST)
360 vid_mode = BURST_MODE;
361 else if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_SYNC_PULSE)
362 vid_mode = SYNC_PULSE_MODE;
363 else
364 vid_mode = SYNC_EVENT_MODE;
365 }
366
367 writel(vid_mode, dsi->regs + DSI_MODE_CTRL);
368 }
369
mtk_dsi_set_vm_cmd(struct mtk_dsi * dsi)370 static void mtk_dsi_set_vm_cmd(struct mtk_dsi *dsi)
371 {
372 mtk_dsi_mask(dsi, dsi->driver_data->reg_vm_cmd_off, VM_CMD_EN, VM_CMD_EN);
373 mtk_dsi_mask(dsi, dsi->driver_data->reg_vm_cmd_off, TS_VFP_EN, TS_VFP_EN);
374 }
375
mtk_dsi_rxtx_control(struct mtk_dsi * dsi)376 static void mtk_dsi_rxtx_control(struct mtk_dsi *dsi)
377 {
378 u32 regval, tmp_reg = 0;
379 u8 i;
380
381 /* Number of DSI lanes (max 4 lanes), each bit enables one DSI lane. */
382 for (i = 0; i < dsi->lanes; i++)
383 tmp_reg |= BIT(i);
384
385 regval = FIELD_PREP(LANE_NUM, tmp_reg);
386
387 if (dsi->mode_flags & MIPI_DSI_CLOCK_NON_CONTINUOUS)
388 regval |= HSTX_CKLP_EN;
389
390 if (dsi->mode_flags & MIPI_DSI_MODE_NO_EOT_PACKET)
391 regval |= DIS_EOT;
392
393 writel(regval, dsi->regs + DSI_TXRX_CTRL);
394 }
395
mtk_dsi_ps_control(struct mtk_dsi * dsi,bool config_vact)396 static void mtk_dsi_ps_control(struct mtk_dsi *dsi, bool config_vact)
397 {
398 u32 dsi_buf_bpp, ps_val, ps_wc, vact_nl;
399
400 if (dsi->format == MIPI_DSI_FMT_RGB565)
401 dsi_buf_bpp = 2;
402 else
403 dsi_buf_bpp = 3;
404
405 /* Word count */
406 ps_wc = FIELD_PREP(DSI_PS_WC, dsi->vm.hactive * dsi_buf_bpp);
407 ps_val = ps_wc;
408
409 /* Pixel Stream type */
410 switch (dsi->format) {
411 default:
412 fallthrough;
413 case MIPI_DSI_FMT_RGB888:
414 ps_val |= FIELD_PREP(DSI_PS_SEL, PACKED_PS_24BIT_RGB888);
415 break;
416 case MIPI_DSI_FMT_RGB666:
417 ps_val |= FIELD_PREP(DSI_PS_SEL, LOOSELY_PS_24BIT_RGB666);
418 break;
419 case MIPI_DSI_FMT_RGB666_PACKED:
420 ps_val |= FIELD_PREP(DSI_PS_SEL, PACKED_PS_18BIT_RGB666);
421 break;
422 case MIPI_DSI_FMT_RGB565:
423 ps_val |= FIELD_PREP(DSI_PS_SEL, PACKED_PS_16BIT_RGB565);
424 break;
425 }
426
427 if (config_vact) {
428 vact_nl = FIELD_PREP(VACT_NL, dsi->vm.vactive);
429 writel(vact_nl, dsi->regs + DSI_VACT_NL);
430 writel(ps_wc, dsi->regs + DSI_HSTX_CKL_WC);
431 }
432 writel(ps_val, dsi->regs + DSI_PSCTRL);
433 }
434
mtk_dsi_config_vdo_timing_per_frame_lp(struct mtk_dsi * dsi)435 static void mtk_dsi_config_vdo_timing_per_frame_lp(struct mtk_dsi *dsi)
436 {
437 u32 horizontal_sync_active_byte;
438 u32 horizontal_backporch_byte;
439 u32 horizontal_frontporch_byte;
440 u32 hfp_byte_adjust, v_active_adjust;
441 u32 cklp_wc_min_adjust, cklp_wc_max_adjust;
442 u32 dsi_tmp_buf_bpp;
443 unsigned int da_hs_trail;
444 unsigned int ps_wc, hs_vb_ps_wc;
445 u32 v_active_roundup, hstx_cklp_wc;
446 u32 hstx_cklp_wc_max, hstx_cklp_wc_min;
447 struct videomode *vm = &dsi->vm;
448
449 if (dsi->format == MIPI_DSI_FMT_RGB565)
450 dsi_tmp_buf_bpp = 2;
451 else
452 dsi_tmp_buf_bpp = 3;
453
454 da_hs_trail = dsi->phy_timing.da_hs_trail;
455 ps_wc = vm->hactive * dsi_tmp_buf_bpp;
456
457 if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_SYNC_PULSE) {
458 horizontal_sync_active_byte =
459 vm->hsync_len * dsi_tmp_buf_bpp - 10;
460 horizontal_backporch_byte =
461 vm->hback_porch * dsi_tmp_buf_bpp - 10;
462 hfp_byte_adjust = 12;
463 v_active_adjust = 32 + horizontal_sync_active_byte;
464 cklp_wc_min_adjust = 12 + 2 + 4 + horizontal_sync_active_byte;
465 cklp_wc_max_adjust = 20 + 6 + 4 + horizontal_sync_active_byte;
466 } else {
467 horizontal_sync_active_byte = vm->hsync_len * dsi_tmp_buf_bpp - 4;
468 horizontal_backporch_byte = (vm->hback_porch + vm->hsync_len) *
469 dsi_tmp_buf_bpp - 10;
470 cklp_wc_min_adjust = 4;
471 cklp_wc_max_adjust = 12 + 4 + 4;
472 if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_BURST) {
473 hfp_byte_adjust = 18;
474 v_active_adjust = 28;
475 } else {
476 hfp_byte_adjust = 12;
477 v_active_adjust = 22;
478 }
479 }
480 horizontal_frontporch_byte = vm->hfront_porch * dsi_tmp_buf_bpp - hfp_byte_adjust;
481 v_active_roundup = (v_active_adjust + horizontal_backporch_byte + ps_wc +
482 horizontal_frontporch_byte) % dsi->lanes;
483 if (v_active_roundup)
484 horizontal_backporch_byte += dsi->lanes - v_active_roundup;
485 hstx_cklp_wc_min = (DIV_ROUND_UP(cklp_wc_min_adjust, dsi->lanes) + da_hs_trail + 1)
486 * dsi->lanes / 6 - 1;
487 hstx_cklp_wc_max = (DIV_ROUND_UP((cklp_wc_max_adjust + horizontal_backporch_byte +
488 ps_wc), dsi->lanes) + da_hs_trail + 1) * dsi->lanes / 6 - 1;
489
490 hstx_cklp_wc = FIELD_PREP(HSTX_CKL_WC, (hstx_cklp_wc_min + hstx_cklp_wc_max) / 2);
491 writel(hstx_cklp_wc, dsi->regs + DSI_HSTX_CKL_WC);
492
493 hs_vb_ps_wc = ps_wc - (dsi->phy_timing.lpx + dsi->phy_timing.da_hs_exit +
494 dsi->phy_timing.da_hs_prepare + dsi->phy_timing.da_hs_zero + 2) * dsi->lanes;
495 horizontal_frontporch_byte |= FIELD_PREP(HFP_HS_EN, 1) |
496 FIELD_PREP(HFP_HS_VB_PS_WC, hs_vb_ps_wc);
497
498 writel(horizontal_sync_active_byte, dsi->regs + DSI_HSA_WC);
499 writel(horizontal_backporch_byte, dsi->regs + DSI_HBP_WC);
500 writel(horizontal_frontporch_byte, dsi->regs + DSI_HFP_WC);
501 }
502
mtk_dsi_config_vdo_timing_per_line_lp(struct mtk_dsi * dsi)503 static void mtk_dsi_config_vdo_timing_per_line_lp(struct mtk_dsi *dsi)
504 {
505 u32 horizontal_sync_active_byte;
506 u32 horizontal_backporch_byte;
507 u32 horizontal_frontporch_byte;
508 u32 horizontal_front_back_byte;
509 u32 data_phy_cycles_byte;
510 u32 dsi_tmp_buf_bpp, data_phy_cycles;
511 u32 delta;
512 struct mtk_phy_timing *timing = &dsi->phy_timing;
513 struct videomode *vm = &dsi->vm;
514 struct drm_device *drm = dsi->bridge.dev;
515
516 if (dsi->format == MIPI_DSI_FMT_RGB565)
517 dsi_tmp_buf_bpp = 2;
518 else
519 dsi_tmp_buf_bpp = 3;
520
521 horizontal_sync_active_byte = (vm->hsync_len * dsi_tmp_buf_bpp - 10);
522
523 if (dsi->mode_flags & MIPI_DSI_MODE_VIDEO_SYNC_PULSE)
524 horizontal_backporch_byte = vm->hback_porch * dsi_tmp_buf_bpp - 10;
525 else
526 horizontal_backporch_byte = (vm->hback_porch + vm->hsync_len) *
527 dsi_tmp_buf_bpp - 10;
528
529 data_phy_cycles = timing->lpx + timing->da_hs_prepare +
530 timing->da_hs_zero + timing->da_hs_exit + 3;
531
532 delta = dsi->mode_flags & MIPI_DSI_MODE_VIDEO_BURST ? 18 : 12;
533 delta += dsi->mode_flags & MIPI_DSI_MODE_NO_EOT_PACKET ? 0 : 2;
534
535 horizontal_frontporch_byte = vm->hfront_porch * dsi_tmp_buf_bpp;
536 horizontal_front_back_byte = horizontal_frontporch_byte + horizontal_backporch_byte;
537 data_phy_cycles_byte = data_phy_cycles * dsi->lanes + delta;
538
539 if (horizontal_front_back_byte > data_phy_cycles_byte) {
540 horizontal_frontporch_byte -= data_phy_cycles_byte *
541 horizontal_frontporch_byte /
542 horizontal_front_back_byte;
543
544 horizontal_backporch_byte -= data_phy_cycles_byte *
545 horizontal_backporch_byte /
546 horizontal_front_back_byte;
547 } else {
548 drm_warn(drm, "HFP + HBP less than d-phy, FPS will under 60Hz\n");
549 }
550
551 if ((dsi->mode_flags & MIPI_DSI_HS_PKT_END_ALIGNED) &&
552 (dsi->lanes == 4)) {
553 horizontal_sync_active_byte =
554 roundup(horizontal_sync_active_byte, dsi->lanes) - 2;
555 horizontal_frontporch_byte =
556 roundup(horizontal_frontporch_byte, dsi->lanes) - 2;
557 horizontal_backporch_byte =
558 roundup(horizontal_backporch_byte, dsi->lanes) - 2;
559 horizontal_backporch_byte -=
560 (vm->hactive * dsi_tmp_buf_bpp + 2) % dsi->lanes;
561 }
562
563 writel(horizontal_sync_active_byte, dsi->regs + DSI_HSA_WC);
564 writel(horizontal_backporch_byte, dsi->regs + DSI_HBP_WC);
565 writel(horizontal_frontporch_byte, dsi->regs + DSI_HFP_WC);
566 }
567
mtk_dsi_config_vdo_timing(struct mtk_dsi * dsi)568 static void mtk_dsi_config_vdo_timing(struct mtk_dsi *dsi)
569 {
570 struct videomode *vm = &dsi->vm;
571
572 writel(vm->vsync_len, dsi->regs + DSI_VSA_NL);
573 writel(vm->vback_porch, dsi->regs + DSI_VBP_NL);
574 writel(vm->vfront_porch, dsi->regs + DSI_VFP_NL);
575 writel(vm->vactive, dsi->regs + DSI_VACT_NL);
576
577 if (dsi->driver_data->has_size_ctl)
578 writel(FIELD_PREP(DSI_HEIGHT, vm->vactive) |
579 FIELD_PREP(DSI_WIDTH, vm->hactive),
580 dsi->regs + DSI_SIZE_CON);
581
582 if (dsi->driver_data->support_per_frame_lp)
583 mtk_dsi_config_vdo_timing_per_frame_lp(dsi);
584 else
585 mtk_dsi_config_vdo_timing_per_line_lp(dsi);
586
587 mtk_dsi_ps_control(dsi, false);
588 }
589
mtk_dsi_start(struct mtk_dsi * dsi)590 static void mtk_dsi_start(struct mtk_dsi *dsi)
591 {
592 writel(0, dsi->regs + DSI_START);
593 writel(1, dsi->regs + DSI_START);
594 }
595
mtk_dsi_stop(struct mtk_dsi * dsi)596 static void mtk_dsi_stop(struct mtk_dsi *dsi)
597 {
598 writel(0, dsi->regs + DSI_START);
599 }
600
mtk_dsi_set_cmd_mode(struct mtk_dsi * dsi)601 static void mtk_dsi_set_cmd_mode(struct mtk_dsi *dsi)
602 {
603 writel(CMD_MODE, dsi->regs + DSI_MODE_CTRL);
604 }
605
mtk_dsi_set_interrupt_enable(struct mtk_dsi * dsi)606 static void mtk_dsi_set_interrupt_enable(struct mtk_dsi *dsi)
607 {
608 u32 inten = LPRX_RD_RDY_INT_FLAG | CMD_DONE_INT_FLAG | VM_DONE_INT_FLAG;
609
610 writel(inten, dsi->regs + DSI_INTEN);
611 }
612
mtk_dsi_irq_data_set(struct mtk_dsi * dsi,u32 irq_bit)613 static void mtk_dsi_irq_data_set(struct mtk_dsi *dsi, u32 irq_bit)
614 {
615 dsi->irq_data |= irq_bit;
616 }
617
mtk_dsi_irq_data_clear(struct mtk_dsi * dsi,u32 irq_bit)618 static void mtk_dsi_irq_data_clear(struct mtk_dsi *dsi, u32 irq_bit)
619 {
620 dsi->irq_data &= ~irq_bit;
621 }
622
mtk_dsi_wait_for_irq_done(struct mtk_dsi * dsi,u32 irq_flag,unsigned int timeout)623 static s32 mtk_dsi_wait_for_irq_done(struct mtk_dsi *dsi, u32 irq_flag,
624 unsigned int timeout)
625 {
626 s32 ret = 0;
627 unsigned long jiffies = msecs_to_jiffies(timeout);
628 struct drm_device *drm = dsi->bridge.dev;
629
630 ret = wait_event_interruptible_timeout(dsi->irq_wait_queue,
631 dsi->irq_data & irq_flag,
632 jiffies);
633 if (ret == 0) {
634 drm_warn(drm, "Wait DSI IRQ(0x%08x) Timeout\n", irq_flag);
635
636 mtk_dsi_enable(dsi);
637 mtk_dsi_reset_engine(dsi);
638 }
639
640 return ret;
641 }
642
mtk_dsi_irq(int irq,void * dev_id)643 static irqreturn_t mtk_dsi_irq(int irq, void *dev_id)
644 {
645 struct mtk_dsi *dsi = dev_id;
646 u32 status, tmp;
647 u32 flag = LPRX_RD_RDY_INT_FLAG | CMD_DONE_INT_FLAG | VM_DONE_INT_FLAG;
648
649 status = readl(dsi->regs + DSI_INTSTA) & flag;
650
651 if (status) {
652 do {
653 mtk_dsi_mask(dsi, DSI_RACK, RACK, RACK);
654 tmp = readl(dsi->regs + DSI_INTSTA);
655 } while (tmp & DSI_BUSY);
656
657 mtk_dsi_mask(dsi, DSI_INTSTA, status, 0);
658 mtk_dsi_irq_data_set(dsi, status);
659 wake_up_interruptible(&dsi->irq_wait_queue);
660 }
661
662 return IRQ_HANDLED;
663 }
664
mtk_dsi_switch_to_cmd_mode(struct mtk_dsi * dsi,u8 irq_flag,u32 t)665 static s32 mtk_dsi_switch_to_cmd_mode(struct mtk_dsi *dsi, u8 irq_flag, u32 t)
666 {
667 mtk_dsi_irq_data_clear(dsi, irq_flag);
668 mtk_dsi_set_cmd_mode(dsi);
669 struct drm_device *drm = dsi->bridge.dev;
670
671 if (!mtk_dsi_wait_for_irq_done(dsi, irq_flag, t)) {
672 drm_err(drm, "failed to switch cmd mode\n");
673 return -ETIME;
674 } else {
675 return 0;
676 }
677 }
678
mtk_dsi_lane_ready(struct mtk_dsi * dsi)679 static void mtk_dsi_lane_ready(struct mtk_dsi *dsi)
680 {
681 if (!dsi->lanes_ready) {
682 dsi->lanes_ready = true;
683 mtk_dsi_rxtx_control(dsi);
684 usleep_range(30, 100);
685 mtk_dsi_reset_dphy(dsi);
686 mtk_dsi_clk_ulp_mode_leave(dsi);
687 mtk_dsi_lane0_ulp_mode_leave(dsi);
688 mtk_dsi_clk_hs_mode(dsi, 0);
689 usleep_range(1000, 3000);
690 /* The reaction time after pulling up the mipi signal for dsi_rx */
691 }
692 }
693
mtk_dsi_poweron(struct mtk_dsi * dsi)694 static int mtk_dsi_poweron(struct mtk_dsi *dsi)
695 {
696 struct device *dev = dsi->host.dev;
697 int ret;
698 u32 bit_per_pixel;
699
700 if (++dsi->refcount != 1)
701 return 0;
702
703 ret = mipi_dsi_pixel_format_to_bpp(dsi->format);
704 if (ret < 0) {
705 dev_err(dev, "Unknown MIPI DSI format %d\n", dsi->format);
706 return ret;
707 }
708 bit_per_pixel = ret;
709
710 dsi->data_rate = DIV_ROUND_UP_ULL(dsi->vm.pixelclock * bit_per_pixel,
711 dsi->lanes);
712
713 ret = clk_set_rate(dsi->hs_clk, dsi->data_rate);
714 if (ret < 0) {
715 dev_err(dev, "Failed to set data rate: %d\n", ret);
716 goto err_refcount;
717 }
718
719 phy_power_on(dsi->phy);
720
721 ret = clk_prepare_enable(dsi->engine_clk);
722 if (ret < 0) {
723 dev_err(dev, "Failed to enable engine clock: %d\n", ret);
724 goto err_phy_power_off;
725 }
726
727 ret = clk_prepare_enable(dsi->digital_clk);
728 if (ret < 0) {
729 dev_err(dev, "Failed to enable digital clock: %d\n", ret);
730 goto err_disable_engine_clk;
731 }
732
733 mtk_dsi_enable(dsi);
734
735 if (dsi->driver_data->has_shadow_ctl)
736 writel(FORCE_COMMIT | BYPASS_SHADOW,
737 dsi->regs + dsi->driver_data->reg_shadow_dbg_off);
738
739 mtk_dsi_reset_engine(dsi);
740 mtk_dsi_phy_timconfig(dsi);
741
742 mtk_dsi_ps_control(dsi, true);
743 mtk_dsi_set_vm_cmd(dsi);
744 mtk_dsi_config_vdo_timing(dsi);
745 mtk_dsi_set_interrupt_enable(dsi);
746
747 return 0;
748 err_disable_engine_clk:
749 clk_disable_unprepare(dsi->engine_clk);
750 err_phy_power_off:
751 phy_power_off(dsi->phy);
752 err_refcount:
753 dsi->refcount--;
754 return ret;
755 }
756
mtk_dsi_poweroff(struct mtk_dsi * dsi)757 static void mtk_dsi_poweroff(struct mtk_dsi *dsi)
758 {
759 if (WARN_ON(dsi->refcount == 0))
760 return;
761
762 if (--dsi->refcount != 0)
763 return;
764
765 /*
766 * mtk_dsi_stop() and mtk_dsi_start() is asymmetric, since
767 * mtk_dsi_stop() should be called after mtk_crtc_atomic_disable(),
768 * which needs irq for vblank, and mtk_dsi_stop() will disable irq.
769 * mtk_dsi_start() needs to be called in mtk_output_dsi_enable(),
770 * after dsi is fully set.
771 */
772 mtk_dsi_stop(dsi);
773
774 mtk_dsi_switch_to_cmd_mode(dsi, VM_DONE_INT_FLAG, 500);
775 mtk_dsi_reset_engine(dsi);
776 mtk_dsi_lane0_ulp_mode_enter(dsi);
777 mtk_dsi_clk_ulp_mode_enter(dsi);
778 /* set the lane number as 0 to pull down mipi */
779 writel(0, dsi->regs + DSI_TXRX_CTRL);
780
781 mtk_dsi_disable(dsi);
782
783 clk_disable_unprepare(dsi->engine_clk);
784 clk_disable_unprepare(dsi->digital_clk);
785
786 phy_power_off(dsi->phy);
787
788 dsi->lanes_ready = false;
789 }
790
mtk_output_dsi_enable(struct mtk_dsi * dsi)791 static void mtk_output_dsi_enable(struct mtk_dsi *dsi)
792 {
793 if (dsi->enabled)
794 return;
795
796 mtk_dsi_set_mode(dsi);
797 mtk_dsi_start(dsi);
798
799 dsi->enabled = true;
800 }
801
mtk_output_dsi_disable(struct mtk_dsi * dsi)802 static void mtk_output_dsi_disable(struct mtk_dsi *dsi)
803 {
804 if (!dsi->enabled)
805 return;
806
807 dsi->enabled = false;
808 }
809
mtk_dsi_bridge_attach(struct drm_bridge * bridge,struct drm_encoder * encoder,enum drm_bridge_attach_flags flags)810 static int mtk_dsi_bridge_attach(struct drm_bridge *bridge,
811 struct drm_encoder *encoder,
812 enum drm_bridge_attach_flags flags)
813 {
814 struct mtk_dsi *dsi = bridge_to_dsi(bridge);
815
816 /* Attach the panel or bridge to the dsi bridge */
817 return drm_bridge_attach(encoder, dsi->next_bridge,
818 &dsi->bridge, flags);
819 }
820
mtk_dsi_bridge_mode_set(struct drm_bridge * bridge,const struct drm_display_mode * mode,const struct drm_display_mode * adjusted)821 static void mtk_dsi_bridge_mode_set(struct drm_bridge *bridge,
822 const struct drm_display_mode *mode,
823 const struct drm_display_mode *adjusted)
824 {
825 struct mtk_dsi *dsi = bridge_to_dsi(bridge);
826
827 drm_display_mode_to_videomode(adjusted, &dsi->vm);
828 }
829
mtk_dsi_bridge_atomic_disable(struct drm_bridge * bridge,struct drm_atomic_commit * state)830 static void mtk_dsi_bridge_atomic_disable(struct drm_bridge *bridge,
831 struct drm_atomic_commit *state)
832 {
833 struct mtk_dsi *dsi = bridge_to_dsi(bridge);
834
835 mtk_output_dsi_disable(dsi);
836 }
837
mtk_dsi_bridge_atomic_enable(struct drm_bridge * bridge,struct drm_atomic_commit * state)838 static void mtk_dsi_bridge_atomic_enable(struct drm_bridge *bridge,
839 struct drm_atomic_commit *state)
840 {
841 struct mtk_dsi *dsi = bridge_to_dsi(bridge);
842
843 if (dsi->refcount == 0)
844 return;
845
846 mtk_output_dsi_enable(dsi);
847 }
848
mtk_dsi_bridge_atomic_pre_enable(struct drm_bridge * bridge,struct drm_atomic_commit * state)849 static void mtk_dsi_bridge_atomic_pre_enable(struct drm_bridge *bridge,
850 struct drm_atomic_commit *state)
851 {
852 struct mtk_dsi *dsi = bridge_to_dsi(bridge);
853 struct drm_device *drm = bridge->dev;
854 int ret;
855
856 ret = mtk_dsi_poweron(dsi);
857 if (ret < 0)
858 drm_err(drm, "failed to power on dsi\n");
859
860 mtk_dsi_lane_ready(dsi);
861 mtk_dsi_clk_hs_mode(dsi, 1);
862 }
863
mtk_dsi_bridge_atomic_post_disable(struct drm_bridge * bridge,struct drm_atomic_commit * state)864 static void mtk_dsi_bridge_atomic_post_disable(struct drm_bridge *bridge,
865 struct drm_atomic_commit *state)
866 {
867 struct mtk_dsi *dsi = bridge_to_dsi(bridge);
868
869 mtk_dsi_poweroff(dsi);
870 }
871
872 static enum drm_mode_status
mtk_dsi_bridge_mode_valid(struct drm_bridge * bridge,const struct drm_display_info * info,const struct drm_display_mode * mode)873 mtk_dsi_bridge_mode_valid(struct drm_bridge *bridge,
874 const struct drm_display_info *info,
875 const struct drm_display_mode *mode)
876 {
877 struct mtk_dsi *dsi = bridge_to_dsi(bridge);
878 int bpp;
879
880 bpp = mipi_dsi_pixel_format_to_bpp(dsi->format);
881 if (bpp < 0)
882 return MODE_ERROR;
883
884 if (mode->clock * bpp / dsi->lanes > 1500000)
885 return MODE_CLOCK_HIGH;
886
887 return MODE_OK;
888 }
889
890 static const struct drm_bridge_funcs mtk_dsi_bridge_funcs = {
891 .attach = mtk_dsi_bridge_attach,
892 .atomic_destroy_state = drm_atomic_helper_bridge_destroy_state,
893 .atomic_disable = mtk_dsi_bridge_atomic_disable,
894 .atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state,
895 .atomic_enable = mtk_dsi_bridge_atomic_enable,
896 .atomic_pre_enable = mtk_dsi_bridge_atomic_pre_enable,
897 .atomic_post_disable = mtk_dsi_bridge_atomic_post_disable,
898 .atomic_reset = drm_atomic_helper_bridge_reset,
899 .mode_valid = mtk_dsi_bridge_mode_valid,
900 .mode_set = mtk_dsi_bridge_mode_set,
901 };
902
mtk_dsi_ddp_start(struct device * dev)903 void mtk_dsi_ddp_start(struct device *dev)
904 {
905 struct mtk_dsi *dsi = dev_get_drvdata(dev);
906
907 mtk_dsi_poweron(dsi);
908 }
909
mtk_dsi_ddp_stop(struct device * dev)910 void mtk_dsi_ddp_stop(struct device *dev)
911 {
912 struct mtk_dsi *dsi = dev_get_drvdata(dev);
913
914 mtk_dsi_poweroff(dsi);
915 }
916
mtk_dsi_encoder_init(struct drm_device * drm,struct mtk_dsi * dsi)917 static int mtk_dsi_encoder_init(struct drm_device *drm, struct mtk_dsi *dsi)
918 {
919 int ret;
920
921 ret = drm_simple_encoder_init(drm, &dsi->encoder,
922 DRM_MODE_ENCODER_DSI);
923 if (ret) {
924 drm_err(drm, "Failed to encoder init to drm\n");
925 return ret;
926 }
927
928 ret = mtk_find_possible_crtcs(drm, dsi->host.dev);
929 if (ret < 0)
930 goto err_cleanup_encoder;
931 dsi->encoder.possible_crtcs = ret;
932
933 ret = drm_bridge_attach(&dsi->encoder, &dsi->bridge, NULL,
934 DRM_BRIDGE_ATTACH_NO_CONNECTOR);
935 if (ret)
936 goto err_cleanup_encoder;
937
938 dsi->connector = drm_bridge_connector_init(drm, &dsi->encoder);
939 if (IS_ERR(dsi->connector)) {
940 drm_err(drm, "Unable to create bridge connector\n");
941 ret = PTR_ERR(dsi->connector);
942 goto err_cleanup_encoder;
943 }
944
945 return 0;
946
947 err_cleanup_encoder:
948 drm_encoder_cleanup(&dsi->encoder);
949 return ret;
950 }
951
mtk_dsi_encoder_index(struct device * dev)952 unsigned int mtk_dsi_encoder_index(struct device *dev)
953 {
954 struct mtk_dsi *dsi = dev_get_drvdata(dev);
955 unsigned int encoder_index = drm_encoder_index(&dsi->encoder);
956
957 dev_dbg(dev, "encoder index:%d\n", encoder_index);
958 return encoder_index;
959 }
960
mtk_dsi_bind(struct device * dev,struct device * master,void * data)961 static int mtk_dsi_bind(struct device *dev, struct device *master, void *data)
962 {
963 int ret;
964 struct drm_device *drm = data;
965 struct mtk_dsi *dsi = dev_get_drvdata(dev);
966
967 ret = mtk_dsi_encoder_init(drm, dsi);
968 if (ret)
969 return ret;
970
971 return device_reset_optional(dev);
972 }
973
mtk_dsi_unbind(struct device * dev,struct device * master,void * data)974 static void mtk_dsi_unbind(struct device *dev, struct device *master,
975 void *data)
976 {
977 struct mtk_dsi *dsi = dev_get_drvdata(dev);
978
979 drm_encoder_cleanup(&dsi->encoder);
980 }
981
982 static const struct component_ops mtk_dsi_component_ops = {
983 .bind = mtk_dsi_bind,
984 .unbind = mtk_dsi_unbind,
985 };
986
mtk_dsi_host_attach(struct mipi_dsi_host * host,struct mipi_dsi_device * device)987 static int mtk_dsi_host_attach(struct mipi_dsi_host *host,
988 struct mipi_dsi_device *device)
989 {
990 struct mtk_dsi *dsi = host_to_dsi(host);
991 struct device *dev = host->dev;
992 struct drm_device *drm = dsi->bridge.dev;
993 int ret;
994
995 dsi->lanes = device->lanes;
996 dsi->format = device->format;
997 dsi->mode_flags = device->mode_flags;
998 dsi->next_bridge = devm_drm_of_get_bridge(dev, dev->of_node, 1, 0);
999 if (IS_ERR(dsi->next_bridge)) {
1000 ret = PTR_ERR(dsi->next_bridge);
1001 if (ret == -EPROBE_DEFER)
1002 return ret;
1003
1004 /* Old devicetree has only one endpoint */
1005 dsi->next_bridge = devm_drm_of_get_bridge(dev, dev->of_node, 0, 0);
1006 if (IS_ERR(dsi->next_bridge))
1007 return PTR_ERR(dsi->next_bridge);
1008 }
1009
1010 drm_bridge_add(&dsi->bridge);
1011
1012 ret = component_add(host->dev, &mtk_dsi_component_ops);
1013 if (ret) {
1014 drm_err(drm, "failed to add dsi_host component: %d\n", ret);
1015 drm_bridge_remove(&dsi->bridge);
1016 return ret;
1017 }
1018
1019 return 0;
1020 }
1021
mtk_dsi_host_detach(struct mipi_dsi_host * host,struct mipi_dsi_device * device)1022 static int mtk_dsi_host_detach(struct mipi_dsi_host *host,
1023 struct mipi_dsi_device *device)
1024 {
1025 struct mtk_dsi *dsi = host_to_dsi(host);
1026
1027 component_del(host->dev, &mtk_dsi_component_ops);
1028 drm_bridge_remove(&dsi->bridge);
1029 return 0;
1030 }
1031
mtk_dsi_wait_for_idle(struct mtk_dsi * dsi)1032 static void mtk_dsi_wait_for_idle(struct mtk_dsi *dsi)
1033 {
1034 int ret;
1035 u32 val;
1036 struct drm_device *drm = dsi->bridge.dev;
1037
1038 ret = readl_poll_timeout(dsi->regs + DSI_INTSTA, val, !(val & DSI_BUSY),
1039 4, 2000000);
1040 if (ret) {
1041 drm_warn(drm, "polling dsi wait not busy timeout!\n");
1042
1043 mtk_dsi_enable(dsi);
1044 mtk_dsi_reset_engine(dsi);
1045 }
1046 }
1047
mtk_dsi_recv_cnt(u8 type,u8 * read_data)1048 static u32 mtk_dsi_recv_cnt(u8 type, u8 *read_data)
1049 {
1050 switch (type) {
1051 case MIPI_DSI_RX_GENERIC_SHORT_READ_RESPONSE_1BYTE:
1052 case MIPI_DSI_RX_DCS_SHORT_READ_RESPONSE_1BYTE:
1053 return 1;
1054 case MIPI_DSI_RX_GENERIC_SHORT_READ_RESPONSE_2BYTE:
1055 case MIPI_DSI_RX_DCS_SHORT_READ_RESPONSE_2BYTE:
1056 return 2;
1057 case MIPI_DSI_RX_GENERIC_LONG_READ_RESPONSE:
1058 case MIPI_DSI_RX_DCS_LONG_READ_RESPONSE:
1059 return read_data[1] + read_data[2] * 16;
1060 case MIPI_DSI_RX_ACKNOWLEDGE_AND_ERROR_REPORT:
1061 DRM_INFO("type is 0x02, try again\n");
1062 break;
1063 default:
1064 DRM_INFO("type(0x%x) not recognized\n", type);
1065 break;
1066 }
1067
1068 return 0;
1069 }
1070
mtk_dsi_cmdq(struct mtk_dsi * dsi,const struct mipi_dsi_msg * msg)1071 static void mtk_dsi_cmdq(struct mtk_dsi *dsi, const struct mipi_dsi_msg *msg)
1072 {
1073 const char *tx_buf = msg->tx_buf;
1074 u8 config, cmdq_size, cmdq_off, type = msg->type;
1075 u32 reg_val, cmdq_mask, i;
1076 u32 reg_cmdq_off = dsi->driver_data->reg_cmdq_off;
1077
1078 if (MTK_DSI_HOST_IS_READ(type))
1079 config = BTA;
1080 else
1081 config = (msg->tx_len > 2) ? LONG_PACKET : SHORT_PACKET;
1082
1083 if (!(msg->flags & MIPI_DSI_MSG_USE_LPM))
1084 config |= HSTX;
1085
1086 if (msg->tx_len > 2) {
1087 cmdq_size = 1 + (msg->tx_len + 3) / 4;
1088 cmdq_off = 4;
1089 cmdq_mask = CONFIG | DATA_ID | DATA_0 | DATA_1;
1090 reg_val = (msg->tx_len << 16) | (type << 8) | config;
1091 } else {
1092 cmdq_size = 1;
1093 cmdq_off = 2;
1094 cmdq_mask = CONFIG | DATA_ID;
1095 reg_val = (type << 8) | config;
1096 }
1097
1098 for (i = 0; i < msg->tx_len; i++)
1099 mtk_dsi_mask(dsi, (reg_cmdq_off + cmdq_off + i) & (~0x3U),
1100 (0xffUL << (((i + cmdq_off) & 3U) * 8U)),
1101 tx_buf[i] << (((i + cmdq_off) & 3U) * 8U));
1102
1103 mtk_dsi_mask(dsi, reg_cmdq_off, cmdq_mask, reg_val);
1104 mtk_dsi_mask(dsi, DSI_CMDQ_SIZE, CMDQ_SIZE, cmdq_size);
1105 if (dsi->driver_data->cmdq_long_packet_ctl) {
1106 /* Disable setting cmdq_size automatically for long packets */
1107 mtk_dsi_mask(dsi, DSI_CMDQ_SIZE, CMDQ_SIZE_SEL, CMDQ_SIZE_SEL);
1108 }
1109 }
1110
mtk_dsi_host_send_cmd(struct mtk_dsi * dsi,const struct mipi_dsi_msg * msg,u8 flag)1111 static ssize_t mtk_dsi_host_send_cmd(struct mtk_dsi *dsi,
1112 const struct mipi_dsi_msg *msg, u8 flag)
1113 {
1114 mtk_dsi_wait_for_idle(dsi);
1115 mtk_dsi_irq_data_clear(dsi, flag);
1116 mtk_dsi_cmdq(dsi, msg);
1117 mtk_dsi_start(dsi);
1118
1119 if (!mtk_dsi_wait_for_irq_done(dsi, flag, 2000))
1120 return -ETIME;
1121 else
1122 return 0;
1123 }
1124
mtk_dsi_host_transfer(struct mipi_dsi_host * host,const struct mipi_dsi_msg * msg)1125 static ssize_t mtk_dsi_host_transfer(struct mipi_dsi_host *host,
1126 const struct mipi_dsi_msg *msg)
1127 {
1128 struct mtk_dsi *dsi = host_to_dsi(host);
1129 struct drm_device *drm = dsi->bridge.dev;
1130 ssize_t recv_cnt;
1131 u8 read_data[16];
1132 void *src_addr;
1133 u8 irq_flag = CMD_DONE_INT_FLAG;
1134 u32 dsi_mode;
1135 int ret, i;
1136
1137 dsi_mode = readl(dsi->regs + DSI_MODE_CTRL);
1138 if (dsi_mode & MODE) {
1139 mtk_dsi_stop(dsi);
1140 ret = mtk_dsi_switch_to_cmd_mode(dsi, VM_DONE_INT_FLAG, 500);
1141 if (ret)
1142 goto restore_dsi_mode;
1143 }
1144
1145 if (MTK_DSI_HOST_IS_READ(msg->type))
1146 irq_flag |= LPRX_RD_RDY_INT_FLAG;
1147
1148 mtk_dsi_lane_ready(dsi);
1149
1150 ret = mtk_dsi_host_send_cmd(dsi, msg, irq_flag);
1151 if (ret)
1152 goto restore_dsi_mode;
1153
1154 if (!MTK_DSI_HOST_IS_READ(msg->type)) {
1155 recv_cnt = 0;
1156 goto restore_dsi_mode;
1157 }
1158
1159 if (!msg->rx_buf) {
1160 drm_err(drm, "dsi receive buffer size may be NULL\n");
1161 ret = -EINVAL;
1162 goto restore_dsi_mode;
1163 }
1164
1165 for (i = 0; i < 16; i++)
1166 *(read_data + i) = readb(dsi->regs + DSI_RX_DATA0 + i);
1167
1168 recv_cnt = mtk_dsi_recv_cnt(read_data[0], read_data);
1169
1170 if (recv_cnt > 2)
1171 src_addr = &read_data[4];
1172 else
1173 src_addr = &read_data[1];
1174
1175 if (recv_cnt > 10)
1176 recv_cnt = 10;
1177
1178 if (recv_cnt > msg->rx_len)
1179 recv_cnt = msg->rx_len;
1180
1181 if (recv_cnt)
1182 memcpy(msg->rx_buf, src_addr, recv_cnt);
1183
1184 drm_info(drm, "dsi get %zd byte data from the panel address(0x%x)\n",
1185 recv_cnt, *((u8 *)(msg->tx_buf)));
1186
1187 restore_dsi_mode:
1188 if (dsi_mode & MODE) {
1189 mtk_dsi_set_mode(dsi);
1190 mtk_dsi_start(dsi);
1191 }
1192
1193 return ret < 0 ? ret : recv_cnt;
1194 }
1195
1196 static const struct mipi_dsi_host_ops mtk_dsi_ops = {
1197 .attach = mtk_dsi_host_attach,
1198 .detach = mtk_dsi_host_detach,
1199 .transfer = mtk_dsi_host_transfer,
1200 };
1201
mtk_dsi_probe(struct platform_device * pdev)1202 static int mtk_dsi_probe(struct platform_device *pdev)
1203 {
1204 struct mtk_dsi *dsi;
1205 struct device *dev = &pdev->dev;
1206 int irq_num;
1207 int ret;
1208
1209 dsi = devm_drm_bridge_alloc(dev, struct mtk_dsi, bridge,
1210 &mtk_dsi_bridge_funcs);
1211 if (IS_ERR(dsi))
1212 return PTR_ERR(dsi);
1213
1214 dsi->driver_data = of_device_get_match_data(dev);
1215
1216 dsi->engine_clk = devm_clk_get(dev, "engine");
1217 if (IS_ERR(dsi->engine_clk))
1218 return dev_err_probe(dev, PTR_ERR(dsi->engine_clk),
1219 "Failed to get engine clock\n");
1220
1221
1222 dsi->digital_clk = devm_clk_get(dev, "digital");
1223 if (IS_ERR(dsi->digital_clk))
1224 return dev_err_probe(dev, PTR_ERR(dsi->digital_clk),
1225 "Failed to get digital clock\n");
1226
1227 dsi->hs_clk = devm_clk_get(dev, "hs");
1228 if (IS_ERR(dsi->hs_clk))
1229 return dev_err_probe(dev, PTR_ERR(dsi->hs_clk), "Failed to get hs clock\n");
1230
1231 dsi->regs = devm_platform_ioremap_resource(pdev, 0);
1232 if (IS_ERR(dsi->regs))
1233 return dev_err_probe(dev, PTR_ERR(dsi->regs), "Failed to ioremap memory\n");
1234
1235 dsi->phy = devm_phy_get(dev, "dphy");
1236 if (IS_ERR(dsi->phy))
1237 return dev_err_probe(dev, PTR_ERR(dsi->phy), "Failed to get MIPI-DPHY\n");
1238
1239 irq_num = platform_get_irq(pdev, 0);
1240 if (irq_num < 0)
1241 return irq_num;
1242
1243 dsi->host.ops = &mtk_dsi_ops;
1244 dsi->host.dev = dev;
1245
1246 init_waitqueue_head(&dsi->irq_wait_queue);
1247
1248 platform_set_drvdata(pdev, dsi);
1249
1250 ret = mipi_dsi_host_register(&dsi->host);
1251 if (ret < 0)
1252 return dev_err_probe(dev, ret, "Failed to register DSI host\n");
1253
1254 ret = devm_request_irq(&pdev->dev, irq_num, mtk_dsi_irq,
1255 IRQF_TRIGGER_NONE, dev_name(&pdev->dev), dsi);
1256 if (ret) {
1257 mipi_dsi_host_unregister(&dsi->host);
1258 return dev_err_probe(&pdev->dev, ret, "Failed to request DSI irq\n");
1259 }
1260
1261 dsi->bridge.of_node = dev->of_node;
1262 dsi->bridge.type = DRM_MODE_CONNECTOR_DSI;
1263
1264 return 0;
1265 }
1266
mtk_dsi_remove(struct platform_device * pdev)1267 static void mtk_dsi_remove(struct platform_device *pdev)
1268 {
1269 struct mtk_dsi *dsi = platform_get_drvdata(pdev);
1270
1271 mtk_output_dsi_disable(dsi);
1272 mipi_dsi_host_unregister(&dsi->host);
1273 }
1274
1275 static const struct mtk_dsi_driver_data mt8173_dsi_driver_data = {
1276 .reg_cmdq_off = 0x200,
1277 .reg_vm_cmd_off = 0x130,
1278 .reg_shadow_dbg_off = 0x190
1279 };
1280
1281 static const struct mtk_dsi_driver_data mt2701_dsi_driver_data = {
1282 .reg_cmdq_off = 0x180,
1283 .reg_vm_cmd_off = 0x130,
1284 .reg_shadow_dbg_off = 0x190
1285 };
1286
1287 static const struct mtk_dsi_driver_data mt8183_dsi_driver_data = {
1288 .reg_cmdq_off = 0x200,
1289 .reg_vm_cmd_off = 0x130,
1290 .reg_shadow_dbg_off = 0x190,
1291 .has_shadow_ctl = true,
1292 .has_size_ctl = true,
1293 };
1294
1295 static const struct mtk_dsi_driver_data mt8186_dsi_driver_data = {
1296 .reg_cmdq_off = 0xd00,
1297 .reg_vm_cmd_off = 0x200,
1298 .reg_shadow_dbg_off = 0xc00,
1299 .has_shadow_ctl = true,
1300 .has_size_ctl = true,
1301 };
1302
1303 static const struct mtk_dsi_driver_data mt8188_dsi_driver_data = {
1304 .reg_cmdq_off = 0xd00,
1305 .reg_vm_cmd_off = 0x200,
1306 .reg_shadow_dbg_off = 0xc00,
1307 .has_shadow_ctl = true,
1308 .has_size_ctl = true,
1309 .cmdq_long_packet_ctl = true,
1310 .support_per_frame_lp = true,
1311 };
1312
1313 static const struct of_device_id mtk_dsi_of_match[] = {
1314 { .compatible = "mediatek,mt2701-dsi", .data = &mt2701_dsi_driver_data },
1315 { .compatible = "mediatek,mt8167-dsi", .data = &mt2701_dsi_driver_data },
1316 { .compatible = "mediatek,mt8173-dsi", .data = &mt8173_dsi_driver_data },
1317 { .compatible = "mediatek,mt8183-dsi", .data = &mt8183_dsi_driver_data },
1318 { .compatible = "mediatek,mt8186-dsi", .data = &mt8186_dsi_driver_data },
1319 { .compatible = "mediatek,mt8188-dsi", .data = &mt8188_dsi_driver_data },
1320 { /* sentinel */ }
1321 };
1322 MODULE_DEVICE_TABLE(of, mtk_dsi_of_match);
1323
1324 struct platform_driver mtk_dsi_driver = {
1325 .probe = mtk_dsi_probe,
1326 .remove = mtk_dsi_remove,
1327 .driver = {
1328 .name = "mtk-dsi",
1329 .of_match_table = mtk_dsi_of_match,
1330 },
1331 };
1332