1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Copyright (C) Rockchip Electronics Co., Ltd. 4 * Zheng Yang <zhengyang@rock-chips.com> 5 * Yakir Yang <ykk@rock-chips.com> 6 * Andy Yan <andyshrk@163.com> 7 */ 8 9 #include <linux/irq.h> 10 #include <linux/clk.h> 11 #include <linux/delay.h> 12 #include <linux/err.h> 13 #include <linux/i2c.h> 14 #include <linux/hdmi.h> 15 #include <linux/mfd/syscon.h> 16 #include <linux/module.h> 17 #include <linux/mutex.h> 18 #include <linux/platform_device.h> 19 #include <linux/regmap.h> 20 21 #include <drm/bridge/inno_hdmi.h> 22 #include <drm/drm_atomic.h> 23 #include <drm/drm_atomic_helper.h> 24 #include <drm/drm_edid.h> 25 #include <drm/drm_of.h> 26 #include <drm/drm_print.h> 27 #include <drm/drm_probe_helper.h> 28 #include <drm/drm_simple_kms_helper.h> 29 30 #include <drm/display/drm_hdmi_helper.h> 31 #include <drm/display/drm_hdmi_state_helper.h> 32 33 #define DDC_SEGMENT_ADDR 0x30 34 35 #define HDMI_SCL_RATE (100 * 1000) 36 37 #define DDC_BUS_FREQ_L 0x4b 38 #define DDC_BUS_FREQ_H 0x4c 39 40 #define HDMI_SYS_CTRL 0x00 41 #define m_RST_ANALOG BIT(6) 42 #define v_RST_ANALOG (0 << 6) 43 #define v_NOT_RST_ANALOG BIT(6) 44 #define m_RST_DIGITAL BIT(5) 45 #define v_RST_DIGITAL (0 << 5) 46 #define v_NOT_RST_DIGITAL BIT(5) 47 #define m_REG_CLK_INV BIT(4) 48 #define v_REG_CLK_NOT_INV (0 << 4) 49 #define v_REG_CLK_INV BIT(4) 50 #define m_VCLK_INV BIT(3) 51 #define v_VCLK_NOT_INV (0 << 3) 52 #define v_VCLK_INV BIT(3) 53 #define m_REG_CLK_SOURCE BIT(2) 54 #define v_REG_CLK_SOURCE_TMDS (0 << 2) 55 #define v_REG_CLK_SOURCE_SYS BIT(2) 56 #define m_POWER BIT(1) 57 #define v_PWR_ON (0 << 1) 58 #define v_PWR_OFF BIT(1) 59 #define m_INT_POL BIT(0) 60 #define v_INT_POL_HIGH 1 61 #define v_INT_POL_LOW 0 62 63 #define HDMI_VIDEO_CONTRL1 0x01 64 #define m_VIDEO_INPUT_FORMAT (7 << 1) 65 #define m_DE_SOURCE BIT(0) 66 #define v_VIDEO_INPUT_FORMAT(n) ((n) << 1) 67 #define v_DE_EXTERNAL 1 68 #define v_DE_INTERNAL 0 69 enum { 70 VIDEO_INPUT_SDR_RGB444 = 0, 71 VIDEO_INPUT_DDR_RGB444 = 5, 72 VIDEO_INPUT_DDR_YCBCR422 = 6 73 }; 74 75 #define HDMI_VIDEO_CONTRL2 0x02 76 #define m_VIDEO_OUTPUT_COLOR (3 << 6) 77 #define m_VIDEO_INPUT_BITS (3 << 4) 78 #define m_VIDEO_INPUT_CSP BIT(0) 79 #define v_VIDEO_OUTPUT_COLOR(n) (((n) & 0x3) << 6) 80 #define v_VIDEO_INPUT_BITS(n) ((n) << 4) 81 #define v_VIDEO_INPUT_CSP(n) ((n) << 0) 82 enum { 83 VIDEO_INPUT_12BITS = 0, 84 VIDEO_INPUT_10BITS = 1, 85 VIDEO_INPUT_REVERT = 2, 86 VIDEO_INPUT_8BITS = 3, 87 }; 88 89 #define HDMI_VIDEO_CONTRL 0x03 90 #define m_VIDEO_AUTO_CSC BIT(7) 91 #define v_VIDEO_AUTO_CSC(n) ((n) << 7) 92 #define m_VIDEO_C0_C2_SWAP BIT(0) 93 #define v_VIDEO_C0_C2_SWAP(n) ((n) << 0) 94 enum { 95 C0_C2_CHANGE_ENABLE = 0, 96 C0_C2_CHANGE_DISABLE = 1, 97 AUTO_CSC_DISABLE = 0, 98 AUTO_CSC_ENABLE = 1, 99 }; 100 101 #define HDMI_VIDEO_CONTRL3 0x04 102 #define m_COLOR_DEPTH_NOT_INDICATED BIT(4) 103 #define m_SOF BIT(3) 104 #define m_COLOR_RANGE BIT(2) 105 #define m_CSC BIT(0) 106 #define v_COLOR_DEPTH_NOT_INDICATED(n) ((n) << 4) 107 #define v_SOF_ENABLE (0 << 3) 108 #define v_SOF_DISABLE BIT(3) 109 #define v_COLOR_RANGE_FULL BIT(2) 110 #define v_COLOR_RANGE_LIMITED (0 << 2) 111 #define v_CSC_ENABLE 1 112 #define v_CSC_DISABLE 0 113 114 #define HDMI_AV_MUTE 0x05 115 #define m_AVMUTE_CLEAR BIT(7) 116 #define m_AVMUTE_ENABLE BIT(6) 117 #define m_AUDIO_MUTE BIT(1) 118 #define m_VIDEO_BLACK BIT(0) 119 #define v_AVMUTE_CLEAR(n) ((n) << 7) 120 #define v_AVMUTE_ENABLE(n) ((n) << 6) 121 #define v_AUDIO_MUTE(n) ((n) << 1) 122 #define v_VIDEO_MUTE(n) ((n) << 0) 123 124 #define HDMI_VIDEO_TIMING_CTL 0x08 125 #define v_HSYNC_POLARITY(n) ((n) << 3) 126 #define v_VSYNC_POLARITY(n) ((n) << 2) 127 #define v_INETLACE(n) ((n) << 1) 128 #define v_EXTERANL_VIDEO(n) ((n) << 0) 129 130 #define HDMI_VIDEO_EXT_HTOTAL_L 0x09 131 #define HDMI_VIDEO_EXT_HTOTAL_H 0x0a 132 #define HDMI_VIDEO_EXT_HBLANK_L 0x0b 133 #define HDMI_VIDEO_EXT_HBLANK_H 0x0c 134 #define HDMI_VIDEO_EXT_HDELAY_L 0x0d 135 #define HDMI_VIDEO_EXT_HDELAY_H 0x0e 136 #define HDMI_VIDEO_EXT_HDURATION_L 0x0f 137 #define HDMI_VIDEO_EXT_HDURATION_H 0x10 138 #define HDMI_VIDEO_EXT_VTOTAL_L 0x11 139 #define HDMI_VIDEO_EXT_VTOTAL_H 0x12 140 #define HDMI_VIDEO_EXT_VBLANK 0x13 141 #define HDMI_VIDEO_EXT_VDELAY 0x14 142 #define HDMI_VIDEO_EXT_VDURATION 0x15 143 144 #define HDMI_VIDEO_CSC_COEF 0x18 145 146 #define HDMI_AUDIO_CTRL1 0x35 147 enum { 148 CTS_SOURCE_INTERNAL = 0, 149 CTS_SOURCE_EXTERNAL = 1, 150 }; 151 152 #define v_CTS_SOURCE(n) ((n) << 7) 153 154 enum { 155 DOWNSAMPLE_DISABLE = 0, 156 DOWNSAMPLE_1_2 = 1, 157 DOWNSAMPLE_1_4 = 2, 158 }; 159 160 #define v_DOWN_SAMPLE(n) ((n) << 5) 161 162 enum { 163 AUDIO_SOURCE_IIS = 0, 164 AUDIO_SOURCE_SPDIF = 1, 165 }; 166 167 #define v_AUDIO_SOURCE(n) ((n) << 3) 168 169 #define v_MCLK_ENABLE(n) ((n) << 2) 170 171 enum { 172 MCLK_128FS = 0, 173 MCLK_256FS = 1, 174 MCLK_384FS = 2, 175 MCLK_512FS = 3, 176 }; 177 178 #define v_MCLK_RATIO(n) (n) 179 180 #define AUDIO_SAMPLE_RATE 0x37 181 182 enum { 183 AUDIO_32K = 0x3, 184 AUDIO_441K = 0x0, 185 AUDIO_48K = 0x2, 186 AUDIO_882K = 0x8, 187 AUDIO_96K = 0xa, 188 AUDIO_1764K = 0xc, 189 AUDIO_192K = 0xe, 190 }; 191 192 #define AUDIO_I2S_MODE 0x38 193 194 enum { 195 I2S_CHANNEL_1_2 = 1, 196 I2S_CHANNEL_3_4 = 3, 197 I2S_CHANNEL_5_6 = 7, 198 I2S_CHANNEL_7_8 = 0xf 199 }; 200 201 #define v_I2S_CHANNEL(n) ((n) << 2) 202 203 enum { 204 I2S_STANDARD = 0, 205 I2S_LEFT_JUSTIFIED = 1, 206 I2S_RIGHT_JUSTIFIED = 2, 207 }; 208 209 #define v_I2S_MODE(n) (n) 210 211 #define AUDIO_I2S_MAP 0x39 212 #define AUDIO_I2S_SWAPS_SPDIF 0x3a 213 #define v_SPIDF_FREQ(n) (n) 214 215 #define N_32K 0x1000 216 #define N_441K 0x1880 217 #define N_882K 0x3100 218 #define N_1764K 0x6200 219 #define N_48K 0x1800 220 #define N_96K 0x3000 221 #define N_192K 0x6000 222 223 #define HDMI_AUDIO_CHANNEL_STATUS 0x3e 224 #define m_AUDIO_STATUS_NLPCM BIT(7) 225 #define m_AUDIO_STATUS_USE BIT(6) 226 #define m_AUDIO_STATUS_COPYRIGHT BIT(5) 227 #define m_AUDIO_STATUS_ADDITION (3 << 2) 228 #define m_AUDIO_STATUS_CLK_ACCURACY (2 << 0) 229 #define v_AUDIO_STATUS_NLPCM(n) (((n) & 1) << 7) 230 #define AUDIO_N_H 0x3f 231 #define AUDIO_N_M 0x40 232 #define AUDIO_N_L 0x41 233 234 #define HDMI_AUDIO_CTS_H 0x45 235 #define HDMI_AUDIO_CTS_M 0x46 236 #define HDMI_AUDIO_CTS_L 0x47 237 238 #define HDMI_DDC_CLK_L 0x4b 239 #define HDMI_DDC_CLK_H 0x4c 240 241 #define HDMI_EDID_SEGMENT_POINTER 0x4d 242 #define HDMI_EDID_WORD_ADDR 0x4e 243 #define HDMI_EDID_FIFO_OFFSET 0x4f 244 #define HDMI_EDID_FIFO_ADDR 0x50 245 246 #define HDMI_PACKET_SEND_MANUAL 0x9c 247 #define HDMI_PACKET_SEND_AUTO 0x9d 248 #define m_PACKET_GCP_EN BIT(7) 249 #define m_PACKET_MSI_EN BIT(6) 250 #define m_PACKET_SDI_EN BIT(5) 251 #define m_PACKET_VSI_EN BIT(4) 252 #define v_PACKET_GCP_EN(n) (((n) & 1) << 7) 253 #define v_PACKET_MSI_EN(n) (((n) & 1) << 6) 254 #define v_PACKET_SDI_EN(n) (((n) & 1) << 5) 255 #define v_PACKET_VSI_EN(n) (((n) & 1) << 4) 256 257 #define HDMI_CONTROL_PACKET_BUF_INDEX 0x9f 258 259 enum { 260 INFOFRAME_VSI = 0x05, 261 INFOFRAME_AVI = 0x06, 262 INFOFRAME_AAI = 0x08, 263 }; 264 265 #define HDMI_CONTROL_PACKET_ADDR 0xa0 266 #define HDMI_MAXIMUM_INFO_FRAME_SIZE 0x11 267 268 enum { 269 AVI_COLOR_MODE_RGB = 0, 270 AVI_COLOR_MODE_YCBCR422 = 1, 271 AVI_COLOR_MODE_YCBCR444 = 2, 272 AVI_COLORIMETRY_NO_DATA = 0, 273 274 AVI_COLORIMETRY_SMPTE_170M = 1, 275 AVI_COLORIMETRY_ITU709 = 2, 276 AVI_COLORIMETRY_EXTENDED = 3, 277 278 AVI_CODED_FRAME_ASPECT_NO_DATA = 0, 279 AVI_CODED_FRAME_ASPECT_4_3 = 1, 280 AVI_CODED_FRAME_ASPECT_16_9 = 2, 281 282 ACTIVE_ASPECT_RATE_SAME_AS_CODED_FRAME = 0x08, 283 ACTIVE_ASPECT_RATE_4_3 = 0x09, 284 ACTIVE_ASPECT_RATE_16_9 = 0x0A, 285 ACTIVE_ASPECT_RATE_14_9 = 0x0B, 286 }; 287 288 #define HDMI_HDCP_CTRL 0x52 289 #define m_HDMI_DVI BIT(1) 290 #define v_HDMI_DVI(n) ((n) << 1) 291 292 #define HDMI_INTERRUPT_MASK1 0xc0 293 #define HDMI_INTERRUPT_STATUS1 0xc1 294 #define m_INT_ACTIVE_VSYNC BIT(5) 295 #define m_INT_EDID_READY BIT(2) 296 297 #define HDMI_INTERRUPT_MASK2 0xc2 298 #define HDMI_INTERRUPT_STATUS2 0xc3 299 #define m_INT_HDCP_ERR BIT(7) 300 #define m_INT_BKSV_FLAG BIT(6) 301 #define m_INT_HDCP_OK BIT(4) 302 303 #define HDMI_STATUS 0xc8 304 #define m_HOTPLUG BIT(7) 305 #define m_MASK_INT_HOTPLUG BIT(5) 306 #define m_INT_HOTPLUG BIT(1) 307 #define v_MASK_INT_HOTPLUG(n) (((n) & 0x1) << 5) 308 309 #define HDMI_COLORBAR 0xc9 310 311 #define HDMI_PHY_SYNC 0xce 312 #define HDMI_PHY_SYS_CTL 0xe0 313 #define m_TMDS_CLK_SOURCE BIT(5) 314 #define v_TMDS_FROM_PLL (0 << 5) 315 #define v_TMDS_FROM_GEN BIT(5) 316 #define m_PHASE_CLK BIT(4) 317 #define v_DEFAULT_PHASE (0 << 4) 318 #define v_SYNC_PHASE BIT(4) 319 #define m_TMDS_CURRENT_PWR BIT(3) 320 #define v_TURN_ON_CURRENT (0 << 3) 321 #define v_CAT_OFF_CURRENT BIT(3) 322 #define m_BANDGAP_PWR BIT(2) 323 #define v_BANDGAP_PWR_UP (0 << 2) 324 #define v_BANDGAP_PWR_DOWN BIT(2) 325 #define m_PLL_PWR BIT(1) 326 #define v_PLL_PWR_UP (0 << 1) 327 #define v_PLL_PWR_DOWN BIT(1) 328 #define m_TMDS_CHG_PWR BIT(0) 329 #define v_TMDS_CHG_PWR_UP (0 << 0) 330 #define v_TMDS_CHG_PWR_DOWN BIT(0) 331 332 #define HDMI_PHY_CHG_PWR 0xe1 333 #define v_CLK_CHG_PWR(n) (((n) & 1) << 3) 334 #define v_DATA_CHG_PWR(n) (((n) & 7) << 0) 335 336 #define HDMI_PHY_DRIVER 0xe2 337 #define v_CLK_MAIN_DRIVER(n) ((n) << 4) 338 #define v_DATA_MAIN_DRIVER(n) ((n) << 0) 339 340 #define HDMI_PHY_PRE_EMPHASIS 0xe3 341 #define v_PRE_EMPHASIS(n) (((n) & 7) << 4) 342 #define v_CLK_PRE_DRIVER(n) (((n) & 3) << 2) 343 #define v_DATA_PRE_DRIVER(n) (((n) & 3) << 0) 344 345 #define HDMI_PHY_FEEDBACK_DIV_RATIO_LOW 0xe7 346 #define v_FEEDBACK_DIV_LOW(n) ((n) & 0xff) 347 #define HDMI_PHY_FEEDBACK_DIV_RATIO_HIGH 0xe8 348 #define v_FEEDBACK_DIV_HIGH(n) ((n) & 1) 349 350 #define HDMI_PHY_PRE_DIV_RATIO 0xed 351 #define v_PRE_DIV_RATIO(n) ((n) & 0x1f) 352 353 #define HDMI_CEC_CTRL 0xd0 354 #define m_ADJUST_FOR_HISENSE BIT(6) 355 #define m_REJECT_RX_BROADCAST BIT(5) 356 #define m_BUSFREETIME_ENABLE BIT(2) 357 #define m_REJECT_RX BIT(1) 358 #define m_START_TX BIT(0) 359 360 #define HDMI_CEC_DATA 0xd1 361 #define HDMI_CEC_TX_OFFSET 0xd2 362 #define HDMI_CEC_RX_OFFSET 0xd3 363 #define HDMI_CEC_CLK_H 0xd4 364 #define HDMI_CEC_CLK_L 0xd5 365 #define HDMI_CEC_TX_LENGTH 0xd6 366 #define HDMI_CEC_RX_LENGTH 0xd7 367 #define HDMI_CEC_TX_INT_MASK 0xd8 368 #define m_TX_DONE BIT(3) 369 #define m_TX_NOACK BIT(2) 370 #define m_TX_BROADCAST_REJ BIT(1) 371 #define m_TX_BUSNOTFREE BIT(0) 372 373 #define HDMI_CEC_RX_INT_MASK 0xd9 374 #define m_RX_LA_ERR BIT(4) 375 #define m_RX_GLITCH BIT(3) 376 #define m_RX_DONE BIT(0) 377 378 #define HDMI_CEC_TX_INT 0xda 379 #define HDMI_CEC_RX_INT 0xdb 380 #define HDMI_CEC_BUSFREETIME_L 0xdc 381 #define HDMI_CEC_BUSFREETIME_H 0xdd 382 #define HDMI_CEC_LOGICADDR 0xde 383 384 struct inno_hdmi_i2c { 385 struct i2c_adapter adap; 386 387 u8 ddc_addr; 388 u8 segment_addr; 389 390 struct mutex lock; 391 struct completion cmp; 392 }; 393 394 struct inno_hdmi { 395 struct device *dev; 396 struct drm_bridge bridge; 397 struct clk *pclk; 398 struct clk *refclk; 399 void __iomem *regs; 400 struct regmap *grf; 401 402 struct inno_hdmi_i2c *i2c; 403 struct i2c_adapter *ddc; 404 const struct inno_hdmi_plat_data *plat_data; 405 }; 406 407 enum { 408 CSC_RGB_0_255_TO_ITU601_16_235_8BIT, 409 CSC_RGB_0_255_TO_ITU709_16_235_8BIT, 410 CSC_RGB_0_255_TO_RGB_16_235_8BIT, 411 }; 412 413 static const char coeff_csc[][24] = { 414 /* 415 * RGB2YUV:601 SD mode: 416 * Cb = -0.291G - 0.148R + 0.439B + 128 417 * Y = 0.504G + 0.257R + 0.098B + 16 418 * Cr = -0.368G + 0.439R - 0.071B + 128 419 */ 420 { 421 0x11, 0x5f, 0x01, 0x82, 0x10, 0x23, 0x00, 0x80, 422 0x02, 0x1c, 0x00, 0xa1, 0x00, 0x36, 0x00, 0x1e, 423 0x11, 0x29, 0x10, 0x59, 0x01, 0x82, 0x00, 0x80 424 }, 425 /* 426 * RGB2YUV:709 HD mode: 427 * Cb = - 0.338G - 0.101R + 0.439B + 128 428 * Y = 0.614G + 0.183R + 0.062B + 16 429 * Cr = - 0.399G + 0.439R - 0.040B + 128 430 */ 431 { 432 0x11, 0x98, 0x01, 0xc1, 0x10, 0x28, 0x00, 0x80, 433 0x02, 0x74, 0x00, 0xbb, 0x00, 0x3f, 0x00, 0x10, 434 0x11, 0x5a, 0x10, 0x67, 0x01, 0xc1, 0x00, 0x80 435 }, 436 /* 437 * RGB[0:255]2RGB[16:235]: 438 * R' = R x (235-16)/255 + 16; 439 * G' = G x (235-16)/255 + 16; 440 * B' = B x (235-16)/255 + 16; 441 */ 442 { 443 0x00, 0x00, 0x03, 0x6F, 0x00, 0x00, 0x00, 0x10, 444 0x03, 0x6F, 0x00, 0x00, 0x00, 0x00, 0x00, 0x10, 445 0x00, 0x00, 0x00, 0x00, 0x03, 0x6F, 0x00, 0x10 446 }, 447 }; 448 449 static struct inno_hdmi *bridge_to_inno_hdmi(struct drm_bridge *bridge) 450 { 451 return container_of(bridge, struct inno_hdmi, bridge); 452 } 453 454 static int inno_hdmi_find_phy_config(struct inno_hdmi *hdmi, 455 unsigned long pixelclk) 456 { 457 const struct inno_hdmi_phy_config *phy_configs = hdmi->plat_data->phy_configs; 458 int i; 459 460 for (i = 0; phy_configs[i].pixelclock != ~0UL; i++) { 461 if (pixelclk <= phy_configs[i].pixelclock) 462 return i; 463 } 464 465 DRM_DEV_DEBUG(hdmi->dev, "No phy configuration for pixelclock %lu\n", 466 pixelclk); 467 468 return -EINVAL; 469 } 470 471 static inline u8 hdmi_readb(struct inno_hdmi *hdmi, u16 offset) 472 { 473 return readl_relaxed(hdmi->regs + (offset) * 0x04); 474 } 475 476 static inline void hdmi_writeb(struct inno_hdmi *hdmi, u16 offset, u32 val) 477 { 478 writel_relaxed(val, hdmi->regs + (offset) * 0x04); 479 } 480 481 static inline void hdmi_modb(struct inno_hdmi *hdmi, u16 offset, 482 u32 msk, u32 val) 483 { 484 u8 temp = hdmi_readb(hdmi, offset) & ~msk; 485 486 temp |= val & msk; 487 hdmi_writeb(hdmi, offset, temp); 488 } 489 490 static void inno_hdmi_i2c_init(struct inno_hdmi *hdmi, unsigned long long rate) 491 { 492 unsigned long long ddc_bus_freq = rate >> 2; 493 494 do_div(ddc_bus_freq, HDMI_SCL_RATE); 495 496 hdmi_writeb(hdmi, DDC_BUS_FREQ_L, ddc_bus_freq & 0xFF); 497 hdmi_writeb(hdmi, DDC_BUS_FREQ_H, (ddc_bus_freq >> 8) & 0xFF); 498 499 /* Clear the EDID interrupt flag and mute the interrupt */ 500 hdmi_writeb(hdmi, HDMI_INTERRUPT_MASK1, 0); 501 hdmi_writeb(hdmi, HDMI_INTERRUPT_STATUS1, m_INT_EDID_READY); 502 } 503 504 static void inno_hdmi_sys_power(struct inno_hdmi *hdmi, bool enable) 505 { 506 if (enable) 507 hdmi_modb(hdmi, HDMI_SYS_CTRL, m_POWER, v_PWR_ON); 508 else 509 hdmi_modb(hdmi, HDMI_SYS_CTRL, m_POWER, v_PWR_OFF); 510 } 511 512 static void inno_hdmi_standby(struct inno_hdmi *hdmi) 513 { 514 inno_hdmi_sys_power(hdmi, false); 515 516 hdmi_writeb(hdmi, HDMI_PHY_DRIVER, 0x00); 517 hdmi_writeb(hdmi, HDMI_PHY_PRE_EMPHASIS, 0x00); 518 hdmi_writeb(hdmi, HDMI_PHY_CHG_PWR, 0x00); 519 hdmi_writeb(hdmi, HDMI_PHY_SYS_CTL, 0x15); 520 }; 521 522 static void inno_hdmi_power_up(struct inno_hdmi *hdmi, 523 unsigned long mpixelclock) 524 { 525 struct inno_hdmi_phy_config *phy_config; 526 int ret = inno_hdmi_find_phy_config(hdmi, mpixelclock); 527 528 if (ret < 0) { 529 phy_config = hdmi->plat_data->default_phy_config; 530 DRM_DEV_ERROR(hdmi->dev, 531 "Using default phy configuration for TMDS rate %lu", 532 mpixelclock); 533 } else { 534 phy_config = &hdmi->plat_data->phy_configs[ret]; 535 } 536 537 inno_hdmi_sys_power(hdmi, false); 538 539 hdmi_writeb(hdmi, HDMI_PHY_PRE_EMPHASIS, phy_config->pre_emphasis); 540 hdmi_writeb(hdmi, HDMI_PHY_DRIVER, phy_config->voltage_level_control); 541 hdmi_writeb(hdmi, HDMI_PHY_SYS_CTL, 0x15); 542 hdmi_writeb(hdmi, HDMI_PHY_SYS_CTL, 0x14); 543 hdmi_writeb(hdmi, HDMI_PHY_SYS_CTL, 0x10); 544 hdmi_writeb(hdmi, HDMI_PHY_CHG_PWR, 0x0f); 545 hdmi_writeb(hdmi, HDMI_PHY_SYNC, 0x00); 546 hdmi_writeb(hdmi, HDMI_PHY_SYNC, 0x01); 547 548 inno_hdmi_sys_power(hdmi, true); 549 }; 550 551 static void inno_hdmi_init_hw(struct inno_hdmi *hdmi) 552 { 553 u32 val; 554 u32 msk; 555 556 hdmi_modb(hdmi, HDMI_SYS_CTRL, m_RST_DIGITAL, v_NOT_RST_DIGITAL); 557 usleep_range(100, 150); 558 559 hdmi_modb(hdmi, HDMI_SYS_CTRL, m_RST_ANALOG, v_NOT_RST_ANALOG); 560 usleep_range(100, 150); 561 562 msk = m_REG_CLK_INV | m_REG_CLK_SOURCE | m_POWER | m_INT_POL; 563 val = v_REG_CLK_INV | v_REG_CLK_SOURCE_SYS | v_PWR_ON | v_INT_POL_HIGH; 564 hdmi_modb(hdmi, HDMI_SYS_CTRL, msk, val); 565 566 inno_hdmi_standby(hdmi); 567 568 /* 569 * When the controller isn't configured to an accurate 570 * video timing and there is no reference clock available, 571 * then the TMDS clock source would be switched to PCLK_HDMI, 572 * so we need to init the TMDS rate to PCLK rate, and 573 * reconfigure the DDC clock. 574 */ 575 if (hdmi->refclk) 576 inno_hdmi_i2c_init(hdmi, clk_get_rate(hdmi->refclk)); 577 else 578 inno_hdmi_i2c_init(hdmi, clk_get_rate(hdmi->pclk)); 579 580 /* Unmute hotplug interrupt */ 581 hdmi_modb(hdmi, HDMI_STATUS, m_MASK_INT_HOTPLUG, v_MASK_INT_HOTPLUG(1)); 582 } 583 584 static int inno_hdmi_bridge_clear_avi_infoframe(struct drm_bridge *bridge) 585 { 586 struct inno_hdmi *hdmi = bridge_to_inno_hdmi(bridge); 587 588 hdmi_writeb(hdmi, HDMI_CONTROL_PACKET_BUF_INDEX, INFOFRAME_AVI); 589 590 return 0; 591 } 592 593 static int inno_hdmi_bridge_write_avi_infoframe(struct drm_bridge *bridge, 594 const u8 *buffer, size_t len) 595 { 596 struct inno_hdmi *hdmi = bridge_to_inno_hdmi(bridge); 597 ssize_t i; 598 599 inno_hdmi_bridge_clear_avi_infoframe(bridge); 600 601 for (i = 0; i < len; i++) 602 hdmi_writeb(hdmi, HDMI_CONTROL_PACKET_ADDR + i, buffer[i]); 603 604 return 0; 605 } 606 607 static int inno_hdmi_bridge_clear_hdmi_infoframe(struct drm_bridge *bridge) 608 { 609 drm_warn_once(bridge->encoder->dev, "HDMI VSI not implemented\n"); 610 611 return 0; 612 } 613 614 static int inno_hdmi_bridge_write_hdmi_infoframe(struct drm_bridge *bridge, 615 const u8 *buffer, size_t len) 616 { 617 drm_warn_once(bridge->encoder->dev, "HDMI VSI not implemented\n"); 618 619 return 0; 620 } 621 622 static int inno_hdmi_config_video_csc(struct inno_hdmi *hdmi, 623 struct drm_connector *connector, 624 struct drm_display_mode *mode) 625 { 626 struct drm_connector_state *conn_state = connector->state; 627 int c0_c2_change = 0; 628 int csc_enable = 0; 629 int csc_mode = 0; 630 int auto_csc = 0; 631 int value; 632 int i; 633 int colorimetry; 634 u8 vic = drm_match_cea_mode(mode); 635 636 if (vic == 6 || vic == 7 || vic == 21 || vic == 22 || 637 vic == 2 || vic == 3 || vic == 17 || vic == 18) 638 colorimetry = HDMI_COLORIMETRY_ITU_601; 639 else 640 colorimetry = HDMI_COLORIMETRY_ITU_709; 641 642 643 /* Input video mode is SDR RGB24bit, data enable signal from external */ 644 hdmi_writeb(hdmi, HDMI_VIDEO_CONTRL1, v_DE_EXTERNAL | 645 v_VIDEO_INPUT_FORMAT(VIDEO_INPUT_SDR_RGB444)); 646 647 /* Input color hardcode to RGB, and output color hardcode to RGB888 */ 648 value = v_VIDEO_INPUT_BITS(VIDEO_INPUT_8BITS) | 649 v_VIDEO_OUTPUT_COLOR(0) | 650 v_VIDEO_INPUT_CSP(0); 651 hdmi_writeb(hdmi, HDMI_VIDEO_CONTRL2, value); 652 653 if (conn_state->hdmi.output_format == DRM_OUTPUT_COLOR_FORMAT_RGB444) { 654 if (conn_state->hdmi.is_limited_range) { 655 csc_mode = CSC_RGB_0_255_TO_RGB_16_235_8BIT; 656 auto_csc = AUTO_CSC_DISABLE; 657 c0_c2_change = C0_C2_CHANGE_DISABLE; 658 csc_enable = v_CSC_ENABLE; 659 660 } else { 661 value = v_SOF_DISABLE | v_COLOR_DEPTH_NOT_INDICATED(1); 662 hdmi_writeb(hdmi, HDMI_VIDEO_CONTRL3, value); 663 664 hdmi_modb(hdmi, HDMI_VIDEO_CONTRL, 665 m_VIDEO_AUTO_CSC | m_VIDEO_C0_C2_SWAP, 666 v_VIDEO_AUTO_CSC(AUTO_CSC_DISABLE) | 667 v_VIDEO_C0_C2_SWAP(C0_C2_CHANGE_DISABLE)); 668 return 0; 669 } 670 } else { 671 if (colorimetry == HDMI_COLORIMETRY_ITU_601) { 672 if (conn_state->hdmi.output_format == DRM_OUTPUT_COLOR_FORMAT_YCBCR444) { 673 csc_mode = CSC_RGB_0_255_TO_ITU601_16_235_8BIT; 674 auto_csc = AUTO_CSC_DISABLE; 675 c0_c2_change = C0_C2_CHANGE_DISABLE; 676 csc_enable = v_CSC_ENABLE; 677 } 678 } else { 679 if (conn_state->hdmi.output_format == DRM_OUTPUT_COLOR_FORMAT_YCBCR444) { 680 csc_mode = CSC_RGB_0_255_TO_ITU709_16_235_8BIT; 681 auto_csc = AUTO_CSC_DISABLE; 682 c0_c2_change = C0_C2_CHANGE_DISABLE; 683 csc_enable = v_CSC_ENABLE; 684 } 685 } 686 } 687 688 for (i = 0; i < 24; i++) 689 hdmi_writeb(hdmi, HDMI_VIDEO_CSC_COEF + i, coeff_csc[csc_mode][i]); 690 691 value = v_SOF_DISABLE | csc_enable | v_COLOR_DEPTH_NOT_INDICATED(1); 692 hdmi_writeb(hdmi, HDMI_VIDEO_CONTRL3, value); 693 hdmi_modb(hdmi, HDMI_VIDEO_CONTRL, m_VIDEO_AUTO_CSC | 694 m_VIDEO_C0_C2_SWAP, v_VIDEO_AUTO_CSC(auto_csc) | 695 v_VIDEO_C0_C2_SWAP(c0_c2_change)); 696 697 return 0; 698 } 699 700 static int inno_hdmi_config_video_timing(struct inno_hdmi *hdmi, 701 struct drm_display_mode *mode) 702 { 703 const struct inno_hdmi_plat_ops *plat_ops = hdmi->plat_data->ops; 704 u32 value; 705 706 if (plat_ops && plat_ops->enable) 707 plat_ops->enable(hdmi->dev, mode); 708 709 /* Set detail external video timing polarity and interlace mode */ 710 value = v_EXTERANL_VIDEO(1); 711 value |= mode->flags & DRM_MODE_FLAG_PHSYNC ? 712 v_HSYNC_POLARITY(1) : v_HSYNC_POLARITY(0); 713 value |= mode->flags & DRM_MODE_FLAG_PVSYNC ? 714 v_VSYNC_POLARITY(1) : v_VSYNC_POLARITY(0); 715 value |= mode->flags & DRM_MODE_FLAG_INTERLACE ? 716 v_INETLACE(1) : v_INETLACE(0); 717 hdmi_writeb(hdmi, HDMI_VIDEO_TIMING_CTL, value); 718 719 /* Set detail external video timing */ 720 value = mode->htotal; 721 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_HTOTAL_L, value & 0xFF); 722 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_HTOTAL_H, (value >> 8) & 0xFF); 723 724 value = mode->htotal - mode->hdisplay; 725 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_HBLANK_L, value & 0xFF); 726 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_HBLANK_H, (value >> 8) & 0xFF); 727 728 value = mode->htotal - mode->hsync_start; 729 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_HDELAY_L, value & 0xFF); 730 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_HDELAY_H, (value >> 8) & 0xFF); 731 732 value = mode->hsync_end - mode->hsync_start; 733 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_HDURATION_L, value & 0xFF); 734 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_HDURATION_H, (value >> 8) & 0xFF); 735 736 value = mode->vtotal; 737 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_VTOTAL_L, value & 0xFF); 738 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_VTOTAL_H, (value >> 8) & 0xFF); 739 740 value = mode->vtotal - mode->vdisplay; 741 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_VBLANK, value & 0xFF); 742 743 value = mode->vtotal - mode->vsync_start; 744 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_VDELAY, value & 0xFF); 745 746 value = mode->vsync_end - mode->vsync_start; 747 hdmi_writeb(hdmi, HDMI_VIDEO_EXT_VDURATION, value & 0xFF); 748 749 hdmi_writeb(hdmi, HDMI_PHY_PRE_DIV_RATIO, 0x1e); 750 hdmi_writeb(hdmi, HDMI_PHY_FEEDBACK_DIV_RATIO_LOW, 0x2c); 751 hdmi_writeb(hdmi, HDMI_PHY_FEEDBACK_DIV_RATIO_HIGH, 0x01); 752 753 return 0; 754 } 755 756 static int inno_hdmi_setup(struct inno_hdmi *hdmi, struct drm_atomic_commit *state) 757 { 758 struct drm_bridge *bridge = &hdmi->bridge; 759 struct drm_connector *connector; 760 struct drm_display_info *info; 761 struct drm_connector_state *new_conn_state; 762 struct drm_crtc_state *new_crtc_state; 763 764 connector = drm_atomic_get_new_connector_for_encoder(state, bridge->encoder); 765 766 new_conn_state = drm_atomic_get_new_connector_state(state, connector); 767 if (WARN_ON(!new_conn_state)) 768 return -EINVAL; 769 770 new_crtc_state = drm_atomic_get_new_crtc_state(state, new_conn_state->crtc); 771 if (WARN_ON(!new_crtc_state)) 772 return -EINVAL; 773 774 info = &connector->display_info; 775 776 /* Mute video and audio output */ 777 hdmi_modb(hdmi, HDMI_AV_MUTE, m_AUDIO_MUTE | m_VIDEO_BLACK, 778 v_AUDIO_MUTE(1) | v_VIDEO_MUTE(1)); 779 780 /* Set HDMI Mode */ 781 hdmi_writeb(hdmi, HDMI_HDCP_CTRL, v_HDMI_DVI(info->is_hdmi)); 782 783 inno_hdmi_config_video_timing(hdmi, &new_crtc_state->adjusted_mode); 784 785 inno_hdmi_config_video_csc(hdmi, connector, &new_crtc_state->adjusted_mode); 786 787 drm_atomic_helper_connector_hdmi_update_infoframes(connector, state); 788 789 /* 790 * When IP controller have configured to an accurate video 791 * timing, then the TMDS clock source would be switched to 792 * DCLK_LCDC, so we need to init the TMDS rate to mode pixel 793 * clock rate, and reconfigure the DDC clock. 794 */ 795 inno_hdmi_i2c_init(hdmi, new_conn_state->hdmi.tmds_char_rate); 796 797 /* Unmute video and audio output */ 798 hdmi_modb(hdmi, HDMI_AV_MUTE, m_AUDIO_MUTE | m_VIDEO_BLACK, 799 v_AUDIO_MUTE(0) | v_VIDEO_MUTE(0)); 800 801 inno_hdmi_power_up(hdmi, new_conn_state->hdmi.tmds_char_rate); 802 803 return 0; 804 } 805 806 static enum drm_mode_status inno_hdmi_bridge_mode_valid(struct drm_bridge *bridge, 807 const struct drm_display_info *info, 808 const struct drm_display_mode *mode) 809 { 810 struct inno_hdmi *hdmi = bridge_to_inno_hdmi(bridge); 811 unsigned long mpixelclk, max_tolerance; 812 long rounded_refclk; 813 814 /* No support for double-clock modes */ 815 if (mode->flags & DRM_MODE_FLAG_DBLCLK) 816 return MODE_BAD; 817 818 mpixelclk = mode->clock * 1000; 819 820 if (mpixelclk < HDMI_TMDS_CHAR_RATE_MIN_HZ) 821 return MODE_CLOCK_LOW; 822 823 if (inno_hdmi_find_phy_config(hdmi, mpixelclk) < 0) 824 return MODE_CLOCK_HIGH; 825 826 if (hdmi->refclk) { 827 rounded_refclk = clk_round_rate(hdmi->refclk, mpixelclk); 828 if (rounded_refclk < 0) 829 return MODE_BAD; 830 831 /* Vesa DMT standard mentions +/- 0.5% max tolerance */ 832 max_tolerance = mpixelclk / 200; 833 if (abs_diff((unsigned long)rounded_refclk, mpixelclk) > max_tolerance) 834 return MODE_NOCLOCK; 835 } 836 837 return MODE_OK; 838 } 839 840 static enum drm_connector_status 841 inno_hdmi_bridge_detect(struct drm_bridge *bridge, struct drm_connector *connector) 842 { 843 struct inno_hdmi *hdmi = bridge_to_inno_hdmi(bridge); 844 845 return (hdmi_readb(hdmi, HDMI_STATUS) & m_HOTPLUG) ? 846 connector_status_connected : connector_status_disconnected; 847 } 848 849 static const struct drm_edid * 850 inno_hdmi_bridge_edid_read(struct drm_bridge *bridge, struct drm_connector *connector) 851 { 852 struct inno_hdmi *hdmi = bridge_to_inno_hdmi(bridge); 853 const struct drm_edid *drm_edid; 854 855 drm_edid = drm_edid_read_ddc(connector, bridge->ddc); 856 if (!drm_edid) 857 dev_dbg(hdmi->dev, "failed to get edid\n"); 858 859 return drm_edid; 860 } 861 862 static void inno_hdmi_bridge_atomic_enable(struct drm_bridge *bridge, 863 struct drm_atomic_commit *state) 864 { 865 struct inno_hdmi *hdmi = bridge_to_inno_hdmi(bridge); 866 867 inno_hdmi_setup(hdmi, state); 868 } 869 870 static void inno_hdmi_bridge_atomic_disable(struct drm_bridge *bridge, 871 struct drm_atomic_commit *state) 872 { 873 struct inno_hdmi *hdmi = bridge_to_inno_hdmi(bridge); 874 875 inno_hdmi_standby(hdmi); 876 } 877 878 static const struct drm_bridge_funcs inno_hdmi_bridge_funcs = { 879 .atomic_duplicate_state = drm_atomic_helper_bridge_duplicate_state, 880 .atomic_destroy_state = drm_atomic_helper_bridge_destroy_state, 881 .atomic_reset = drm_atomic_helper_bridge_reset, 882 .atomic_enable = inno_hdmi_bridge_atomic_enable, 883 .atomic_disable = inno_hdmi_bridge_atomic_disable, 884 .detect = inno_hdmi_bridge_detect, 885 .edid_read = inno_hdmi_bridge_edid_read, 886 .hdmi_clear_avi_infoframe = inno_hdmi_bridge_clear_avi_infoframe, 887 .hdmi_write_avi_infoframe = inno_hdmi_bridge_write_avi_infoframe, 888 .hdmi_clear_hdmi_infoframe = inno_hdmi_bridge_clear_hdmi_infoframe, 889 .hdmi_write_hdmi_infoframe = inno_hdmi_bridge_write_hdmi_infoframe, 890 .mode_valid = inno_hdmi_bridge_mode_valid, 891 }; 892 893 static irqreturn_t inno_hdmi_i2c_irq(struct inno_hdmi *hdmi) 894 { 895 struct inno_hdmi_i2c *i2c = hdmi->i2c; 896 u8 stat; 897 898 stat = hdmi_readb(hdmi, HDMI_INTERRUPT_STATUS1); 899 if (!(stat & m_INT_EDID_READY)) 900 return IRQ_NONE; 901 902 /* Clear HDMI EDID interrupt flag */ 903 hdmi_writeb(hdmi, HDMI_INTERRUPT_STATUS1, m_INT_EDID_READY); 904 905 complete(&i2c->cmp); 906 907 return IRQ_HANDLED; 908 } 909 910 static irqreturn_t inno_hdmi_hardirq(int irq, void *dev_id) 911 { 912 struct inno_hdmi *hdmi = dev_id; 913 irqreturn_t ret = IRQ_NONE; 914 u8 interrupt; 915 916 if (hdmi->i2c) 917 ret = inno_hdmi_i2c_irq(hdmi); 918 919 interrupt = hdmi_readb(hdmi, HDMI_STATUS); 920 if (interrupt & m_INT_HOTPLUG) { 921 hdmi_modb(hdmi, HDMI_STATUS, m_INT_HOTPLUG, m_INT_HOTPLUG); 922 ret = IRQ_WAKE_THREAD; 923 } 924 925 return ret; 926 } 927 928 static irqreturn_t inno_hdmi_irq(int irq, void *dev_id) 929 { 930 struct inno_hdmi *hdmi = dev_id; 931 932 drm_helper_hpd_irq_event(hdmi->bridge.dev); 933 934 return IRQ_HANDLED; 935 } 936 937 static int inno_hdmi_i2c_read(struct inno_hdmi *hdmi, struct i2c_msg *msgs) 938 { 939 int length = msgs->len; 940 u8 *buf = msgs->buf; 941 int ret; 942 943 ret = wait_for_completion_timeout(&hdmi->i2c->cmp, HZ / 10); 944 if (!ret) 945 return -EAGAIN; 946 947 while (length--) 948 *buf++ = hdmi_readb(hdmi, HDMI_EDID_FIFO_ADDR); 949 950 return 0; 951 } 952 953 static int inno_hdmi_i2c_write(struct inno_hdmi *hdmi, struct i2c_msg *msgs) 954 { 955 /* 956 * The DDC module only support read EDID message, so 957 * we assume that each word write to this i2c adapter 958 * should be the offset of EDID word address. 959 */ 960 if (msgs->len != 1 || (msgs->addr != DDC_ADDR && msgs->addr != DDC_SEGMENT_ADDR)) 961 return -EINVAL; 962 963 reinit_completion(&hdmi->i2c->cmp); 964 965 if (msgs->addr == DDC_SEGMENT_ADDR) 966 hdmi->i2c->segment_addr = msgs->buf[0]; 967 if (msgs->addr == DDC_ADDR) 968 hdmi->i2c->ddc_addr = msgs->buf[0]; 969 970 /* Set edid fifo first addr */ 971 hdmi_writeb(hdmi, HDMI_EDID_FIFO_OFFSET, 0x00); 972 973 /* Set edid word address 0x00/0x80 */ 974 hdmi_writeb(hdmi, HDMI_EDID_WORD_ADDR, hdmi->i2c->ddc_addr); 975 976 /* Set edid segment pointer */ 977 hdmi_writeb(hdmi, HDMI_EDID_SEGMENT_POINTER, hdmi->i2c->segment_addr); 978 979 return 0; 980 } 981 982 static int inno_hdmi_i2c_xfer(struct i2c_adapter *adap, 983 struct i2c_msg *msgs, int num) 984 { 985 struct inno_hdmi *hdmi = i2c_get_adapdata(adap); 986 struct inno_hdmi_i2c *i2c = hdmi->i2c; 987 int i, ret = 0; 988 989 mutex_lock(&i2c->lock); 990 991 /* Clear the EDID interrupt flag and unmute the interrupt */ 992 hdmi_writeb(hdmi, HDMI_INTERRUPT_MASK1, m_INT_EDID_READY); 993 hdmi_writeb(hdmi, HDMI_INTERRUPT_STATUS1, m_INT_EDID_READY); 994 995 for (i = 0; i < num; i++) { 996 DRM_DEV_DEBUG(hdmi->dev, 997 "xfer: num: %d/%d, len: %d, flags: %#x\n", 998 i + 1, num, msgs[i].len, msgs[i].flags); 999 1000 if (msgs[i].flags & I2C_M_RD) 1001 ret = inno_hdmi_i2c_read(hdmi, &msgs[i]); 1002 else 1003 ret = inno_hdmi_i2c_write(hdmi, &msgs[i]); 1004 1005 if (ret < 0) 1006 break; 1007 } 1008 1009 if (!ret) 1010 ret = num; 1011 1012 /* Mute HDMI EDID interrupt */ 1013 hdmi_writeb(hdmi, HDMI_INTERRUPT_MASK1, 0); 1014 1015 mutex_unlock(&i2c->lock); 1016 1017 return ret; 1018 } 1019 1020 static u32 inno_hdmi_i2c_func(struct i2c_adapter *adapter) 1021 { 1022 return I2C_FUNC_I2C | I2C_FUNC_SMBUS_EMUL; 1023 } 1024 1025 static const struct i2c_algorithm inno_hdmi_algorithm = { 1026 .master_xfer = inno_hdmi_i2c_xfer, 1027 .functionality = inno_hdmi_i2c_func, 1028 }; 1029 1030 static struct i2c_adapter *inno_hdmi_i2c_adapter(struct inno_hdmi *hdmi) 1031 { 1032 struct i2c_adapter *adap; 1033 struct inno_hdmi_i2c *i2c; 1034 int ret; 1035 1036 i2c = devm_kzalloc(hdmi->dev, sizeof(*i2c), GFP_KERNEL); 1037 if (!i2c) 1038 return ERR_PTR(-ENOMEM); 1039 1040 mutex_init(&i2c->lock); 1041 init_completion(&i2c->cmp); 1042 1043 adap = &i2c->adap; 1044 adap->owner = THIS_MODULE; 1045 adap->dev.parent = hdmi->dev; 1046 adap->dev.of_node = hdmi->dev->of_node; 1047 adap->algo = &inno_hdmi_algorithm; 1048 strscpy(adap->name, "Inno HDMI", sizeof(adap->name)); 1049 i2c_set_adapdata(adap, hdmi); 1050 1051 ret = devm_i2c_add_adapter(hdmi->dev, adap); 1052 if (ret) { 1053 dev_warn(hdmi->dev, "cannot add %s I2C adapter\n", adap->name); 1054 return ERR_PTR(ret); 1055 } 1056 1057 hdmi->i2c = i2c; 1058 1059 DRM_DEV_INFO(hdmi->dev, "registered %s I2C bus driver\n", adap->name); 1060 1061 return adap; 1062 } 1063 1064 struct inno_hdmi *inno_hdmi_bind(struct device *dev, 1065 struct drm_encoder *encoder, 1066 const struct inno_hdmi_plat_data *plat_data) 1067 { 1068 struct platform_device *pdev = to_platform_device(dev); 1069 struct inno_hdmi *hdmi; 1070 int irq; 1071 int ret; 1072 1073 if (!plat_data->phy_configs || !plat_data->default_phy_config) { 1074 dev_err(dev, "Missing platform PHY ops\n"); 1075 return ERR_PTR(-ENODEV); 1076 } 1077 1078 hdmi = devm_drm_bridge_alloc(dev, struct inno_hdmi, bridge, &inno_hdmi_bridge_funcs); 1079 if (IS_ERR(hdmi)) 1080 return ERR_CAST(hdmi); 1081 1082 hdmi->dev = dev; 1083 hdmi->plat_data = plat_data; 1084 1085 hdmi->regs = devm_platform_ioremap_resource(pdev, 0); 1086 if (IS_ERR(hdmi->regs)) 1087 return ERR_CAST(hdmi->regs); 1088 1089 hdmi->pclk = devm_clk_get_enabled(hdmi->dev, "pclk"); 1090 if (IS_ERR(hdmi->pclk)) { 1091 dev_err_probe(dev, PTR_ERR(hdmi->pclk), "Unable to get HDMI pclk\n"); 1092 return ERR_CAST(hdmi->pclk); 1093 } 1094 1095 hdmi->refclk = devm_clk_get_optional_enabled(hdmi->dev, "ref"); 1096 if (IS_ERR(hdmi->refclk)) { 1097 dev_err_probe(dev, PTR_ERR(hdmi->refclk), "Unable to get HDMI refclk\n"); 1098 return ERR_CAST(hdmi->refclk); 1099 } 1100 1101 inno_hdmi_init_hw(hdmi); 1102 1103 irq = platform_get_irq(pdev, 0); 1104 if (irq < 0) 1105 return ERR_PTR(irq); 1106 1107 ret = devm_request_threaded_irq(dev, irq, inno_hdmi_hardirq, 1108 inno_hdmi_irq, IRQF_SHARED, 1109 dev_name(dev), hdmi); 1110 if (ret) 1111 return ERR_PTR(ret); 1112 1113 hdmi->bridge.driver_private = hdmi; 1114 hdmi->bridge.ops = DRM_BRIDGE_OP_DETECT | 1115 DRM_BRIDGE_OP_EDID | 1116 DRM_BRIDGE_OP_HDMI | 1117 DRM_BRIDGE_OP_HPD; 1118 hdmi->bridge.of_node = pdev->dev.of_node; 1119 hdmi->bridge.type = DRM_MODE_CONNECTOR_HDMIA; 1120 hdmi->bridge.vendor = "Inno"; 1121 hdmi->bridge.product = "Inno HDMI"; 1122 1123 hdmi->bridge.ddc = inno_hdmi_i2c_adapter(hdmi); 1124 if (IS_ERR(hdmi->bridge.ddc)) 1125 return ERR_CAST(hdmi->bridge.ddc); 1126 1127 ret = devm_drm_bridge_add(dev, &hdmi->bridge); 1128 if (ret) 1129 return ERR_PTR(ret); 1130 1131 ret = drm_bridge_attach(encoder, &hdmi->bridge, NULL, DRM_BRIDGE_ATTACH_NO_CONNECTOR); 1132 if (ret) 1133 return ERR_PTR(ret); 1134 1135 return hdmi; 1136 } 1137 EXPORT_SYMBOL_GPL(inno_hdmi_bind); 1138 MODULE_AUTHOR("Andy Yan <andyshrk@163.com>"); 1139 MODULE_DESCRIPTION("INNOSILICON HDMI transmitter library"); 1140 MODULE_LICENSE("GPL"); 1141