1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * (C) Copyright 2008-2017 Fuzhou Rockchip Electronics Co., Ltd 4 * 5 */ 6 7 #include <config.h> 8 #include <common.h> 9 #include <errno.h> 10 #include <malloc.h> 11 #include <fdtdec.h> 12 #include <fdt_support.h> 13 #include <regmap.h> 14 #include <asm/arch/cpu.h> 15 #include <asm/unaligned.h> 16 #include <asm/io.h> 17 #include <linux/list.h> 18 #include <linux/log2.h> 19 #include <linux/media-bus-format.h> 20 #include <clk.h> 21 #include <asm/arch/clock.h> 22 #include <linux/err.h> 23 #include <linux/ioport.h> 24 #include <dm/device.h> 25 #include <dm/read.h> 26 #include <fixp-arith.h> 27 #include <syscon.h> 28 #include <linux/iopoll.h> 29 30 #include "rockchip_display.h" 31 #include "rockchip_crtc.h" 32 #include "rockchip_connector.h" 33 34 /* System registers definition */ 35 #define RK3568_REG_CFG_DONE 0x000 36 #define CFG_DONE_EN BIT(15) 37 38 #define RK3568_VERSION_INFO 0x004 39 #define EN_MASK 1 40 41 #define RK3568_AUTO_GATING_CTRL 0x008 42 43 #define RK3568_SYS_AXI_LUT_CTRL 0x024 44 #define LUT_DMA_EN_SHIFT 0 45 46 #define RK3568_DSP_IF_EN 0x028 47 #define RGB_EN_SHIFT 0 48 #define RK3588_DP0_EN_SHIFT 0 49 #define RK3588_DP1_EN_SHIFT 1 50 #define RK3588_RGB_EN_SHIFT 8 51 #define HDMI0_EN_SHIFT 1 52 #define EDP0_EN_SHIFT 3 53 #define RK3588_EDP0_EN_SHIFT 2 54 #define RK3588_HDMI0_EN_SHIFT 3 55 #define MIPI0_EN_SHIFT 4 56 #define RK3588_EDP1_EN_SHIFT 4 57 #define RK3588_HDMI1_EN_SHIFT 5 58 #define RK3588_MIPI0_EN_SHIFT 6 59 #define MIPI1_EN_SHIFT 20 60 #define RK3588_MIPI1_EN_SHIFT 7 61 #define LVDS0_EN_SHIFT 5 62 #define LVDS1_EN_SHIFT 24 63 #define BT1120_EN_SHIFT 6 64 #define BT656_EN_SHIFT 7 65 #define IF_MUX_MASK 3 66 #define RGB_MUX_SHIFT 8 67 #define HDMI0_MUX_SHIFT 10 68 #define RK3588_DP0_MUX_SHIFT 12 69 #define RK3588_DP1_MUX_SHIFT 14 70 #define EDP0_MUX_SHIFT 14 71 #define RK3588_HDMI_EDP0_MUX_SHIFT 16 72 #define RK3588_HDMI_EDP1_MUX_SHIFT 18 73 #define MIPI0_MUX_SHIFT 16 74 #define RK3588_MIPI0_MUX_SHIFT 20 75 #define MIPI1_MUX_SHIFT 21 76 #define LVDS0_MUX_SHIFT 18 77 #define LVDS1_MUX_SHIFT 25 78 79 #define RK3568_DSP_IF_CTRL 0x02c 80 #define LVDS_DUAL_EN_SHIFT 0 81 #define LVDS_DUAL_LEFT_RIGHT_EN_SHIFT 1 82 #define LVDS_DUAL_SWAP_EN_SHIFT 2 83 #define RK3568_MIPI_DUAL_EN_SHIFT 10 84 #define RK3588_MIPI_DSI0_MODE_SEL_SHIFT 11 85 #define RK3588_MIPI_DSI1_MODE_SEL_SHIFT 12 86 87 #define RK3568_DSP_IF_POL 0x030 88 #define IF_CTRL_REG_DONE_IMD_MASK 1 89 #define IF_CTRL_REG_DONE_IMD_SHIFT 28 90 #define IF_CRTL_MIPI_DCLK_POL_SHIT 19 91 #define IF_CRTL_EDP_DCLK_POL_SHIT 15 92 #define IF_CRTL_HDMI_DCLK_POL_SHIT 7 93 #define IF_CRTL_HDMI_PIN_POL_MASK 0x7 94 #define IF_CRTL_HDMI_PIN_POL_SHIT 4 95 96 #define RK3588_DP0_PIN_POL_SHIFT 8 97 #define RK3588_DP1_PIN_POL_SHIFT 12 98 #define RK3588_IF_PIN_POL_MASK 0x7 99 100 #define IF_CRTL_RGB_LVDS_DCLK_POL_SHIT 3 101 102 #define HDMI_EDP0_DCLK_DIV_SHIFT 16 103 #define HDMI_EDP0_PIXCLK_DIV_SHIFT 18 104 #define HDMI_EDP1_DCLK_DIV_SHIFT 20 105 #define HDMI_EDP1_PIXCLK_DIV_SHIFT 22 106 #define MIPI0_PIXCLK_DIV_SHIFT 24 107 #define MIPI1_PIXCLK_DIV_SHIFT 26 108 109 #define RK3568_SYS_OTP_WIN_EN 0x50 110 #define OTP_WIN_EN_SHIFT 0 111 #define RK3568_SYS_LUT_PORT_SEL 0x58 112 #define GAMMA_PORT_SEL_MASK 0x3 113 #define GAMMA_PORT_SEL_SHIFT 0 114 115 #define RK3568_SYS_PD_CTRL 0x034 116 #define RK3568_VP0_LINE_FLAG 0x70 117 #define RK3568_VP1_LINE_FLAG 0x74 118 #define RK3568_VP2_LINE_FLAG 0x78 119 #define RK3568_SYS0_INT_EN 0x80 120 #define RK3568_SYS0_INT_CLR 0x84 121 #define RK3568_SYS0_INT_STATUS 0x88 122 #define RK3568_SYS1_INT_EN 0x90 123 #define RK3568_SYS1_INT_CLR 0x94 124 #define RK3568_SYS1_INT_STATUS 0x98 125 #define RK3568_VP0_INT_EN 0xA0 126 #define RK3568_VP0_INT_CLR 0xA4 127 #define RK3568_VP0_INT_STATUS 0xA8 128 #define RK3568_VP1_INT_EN 0xB0 129 #define RK3568_VP1_INT_CLR 0xB4 130 #define RK3568_VP1_INT_STATUS 0xB8 131 #define RK3568_VP2_INT_EN 0xC0 132 #define RK3568_VP2_INT_CLR 0xC4 133 #define RK3568_VP2_INT_STATUS 0xC8 134 #define RK3588_CLUSTER0_PD_EN_SHIFT 0 135 #define RK3588_CLUSTER1_PD_EN_SHIFT 1 136 #define RK3588_CLUSTER2_PD_EN_SHIFT 2 137 #define RK3588_CLUSTER3_PD_EN_SHIFT 3 138 #define RK3588_ESMART_PD_EN_SHIFT 7 139 140 #define RK3568_SYS_STATUS0 0x60 141 #define RK3588_CLUSTER0_PD_STATUS_SHIFT 8 142 #define RK3588_CLUSTER1_PD_STATUS_SHIFT 9 143 #define RK3588_CLUSTER2_PD_STATUS_SHIFT 10 144 #define RK3588_CLUSTER3_PD_STATUS_SHIFT 11 145 #define RK3588_ESMART_PD_STATUS_SHIFT 15 146 147 #define RK3568_SYS_CTRL_LINE_FLAG0 0x70 148 #define LINE_FLAG_NUM_MASK 0x1fff 149 #define RK3568_DSP_LINE_FLAG_NUM0_SHIFT 0 150 #define RK3568_DSP_LINE_FLAG_NUM1_SHIFT 16 151 152 /* Overlay registers definition */ 153 #define RK3568_OVL_CTRL 0x600 154 #define OVL_PORT_MUX_REG_DONE_IMD_SHIFT 28 155 #define RK3568_OVL_LAYER_SEL 0x604 156 #define LAYER_SEL_MASK 0xf 157 158 #define RK3568_OVL_PORT_SEL 0x608 159 #define PORT_MUX_MASK 0xf 160 #define PORT_MUX_SHIFT 0 161 #define LAYER_SEL_PORT_MASK 0x3 162 #define LAYER_SEL_PORT_SHIFT 16 163 164 #define RK3568_CLUSTER0_MIX_SRC_COLOR_CTRL 0x610 165 #define RK3568_CLUSTER0_MIX_DST_COLOR_CTRL 0x614 166 #define RK3568_CLUSTER0_MIX_SRC_ALPHA_CTRL 0x618 167 #define RK3568_CLUSTER0_MIX_DST_ALPHA_CTRL 0x61C 168 #define RK3568_MIX0_SRC_COLOR_CTRL 0x650 169 #define RK3568_MIX0_DST_COLOR_CTRL 0x654 170 #define RK3568_MIX0_SRC_ALPHA_CTRL 0x658 171 #define RK3568_MIX0_DST_ALPHA_CTRL 0x65C 172 #define RK3568_HDR0_SRC_COLOR_CTRL 0x6C0 173 #define RK3568_HDR0_DST_COLOR_CTRL 0x6C4 174 #define RK3568_HDR0_SRC_ALPHA_CTRL 0x6C8 175 #define RK3568_HDR0_DST_ALPHA_CTRL 0x6CC 176 #define RK3568_VP0_BG_MIX_CTRL 0x6E0 177 #define BG_MIX_CTRL_MASK 0xff 178 #define BG_MIX_CTRL_SHIFT 24 179 #define RK3568_VP1_BG_MIX_CTRL 0x6E4 180 #define RK3568_VP2_BG_MIX_CTRL 0x6E8 181 #define RK3568_CLUSTER_DLY_NUM 0x6F0 182 #define RK3568_SMART_DLY_NUM 0x6F8 183 184 /* Video Port registers definition */ 185 #define RK3568_VP0_DSP_CTRL 0xC00 186 #define OUT_MODE_MASK 0xf 187 #define OUT_MODE_SHIFT 0 188 #define DATA_SWAP_MASK 0x1f 189 #define DATA_SWAP_SHIFT 8 190 #define DSP_BG_SWAP 0x1 191 #define DSP_RB_SWAP 0x2 192 #define DSP_RG_SWAP 0x4 193 #define DSP_DELTA_SWAP 0x8 194 #define CORE_DCLK_DIV_EN_SHIFT 4 195 #define P2I_EN_SHIFT 5 196 #define DSP_FILED_POL 6 197 #define INTERLACE_EN_SHIFT 7 198 #define POST_DSP_OUT_R2Y_SHIFT 15 199 #define PRE_DITHER_DOWN_EN_SHIFT 16 200 #define DITHER_DOWN_EN_SHIFT 17 201 #define DSP_LUT_EN_SHIFT 28 202 203 #define STANDBY_EN_SHIFT 31 204 205 #define RK3568_VP0_MIPI_CTRL 0xC04 206 #define DCLK_DIV2_SHIFT 4 207 #define DCLK_DIV2_MASK 0x3 208 #define MIPI_DUAL_EN_SHIFT 20 209 #define MIPI_DUAL_SWAP_EN_SHIFT 21 210 #define EDPI_TE_EN 28 211 #define EDPI_WMS_HOLD_EN 30 212 #define EDPI_WMS_FS 31 213 214 215 #define RK3568_VP0_COLOR_BAR_CTRL 0xC08 216 #define RK3568_VP0_3D_LUT_CTRL 0xC10 217 #define VP0_3D_LUT_EN_SHIFT 0 218 #define VP0_3D_LUT_UPDATE_SHIFT 2 219 220 #define RK3588_VP0_CLK_CTRL 0xC0C 221 #define DCLK_CORE_DIV_SHIFT 0 222 #define DCLK_OUT_DIV_SHIFT 2 223 224 #define RK3568_VP0_3D_LUT_MST 0xC20 225 226 #define RK3568_VP0_DSP_BG 0xC2C 227 #define RK3568_VP0_PRE_SCAN_HTIMING 0xC30 228 #define RK3568_VP0_POST_DSP_HACT_INFO 0xC34 229 #define RK3568_VP0_POST_DSP_VACT_INFO 0xC38 230 #define RK3568_VP0_POST_SCL_FACTOR_YRGB 0xC3C 231 #define RK3568_VP0_POST_SCL_CTRL 0xC40 232 #define RK3568_VP0_POST_DSP_VACT_INFO_F1 0xC44 233 #define RK3568_VP0_DSP_HTOTAL_HS_END 0xC48 234 #define RK3568_VP0_DSP_HACT_ST_END 0xC4C 235 #define RK3568_VP0_DSP_VTOTAL_VS_END 0xC50 236 #define RK3568_VP0_DSP_VACT_ST_END 0xC54 237 #define RK3568_VP0_DSP_VS_ST_END_F1 0xC58 238 #define RK3568_VP0_DSP_VACT_ST_END_F1 0xC5C 239 240 #define RK3568_VP0_BCSH_CTRL 0xC60 241 #define BCSH_CTRL_Y2R_SHIFT 0 242 #define BCSH_CTRL_Y2R_MASK 0x1 243 #define BCSH_CTRL_Y2R_CSC_MODE_SHIFT 2 244 #define BCSH_CTRL_Y2R_CSC_MODE_MASK 0x3 245 #define BCSH_CTRL_R2Y_SHIFT 4 246 #define BCSH_CTRL_R2Y_MASK 0x1 247 #define BCSH_CTRL_R2Y_CSC_MODE_SHIFT 6 248 #define BCSH_CTRL_R2Y_CSC_MODE_MASK 0x3 249 250 #define RK3568_VP0_BCSH_BCS 0xC64 251 #define BCSH_BRIGHTNESS_SHIFT 0 252 #define BCSH_BRIGHTNESS_MASK 0xFF 253 #define BCSH_CONTRAST_SHIFT 8 254 #define BCSH_CONTRAST_MASK 0x1FF 255 #define BCSH_SATURATION_SHIFT 20 256 #define BCSH_SATURATION_MASK 0x3FF 257 #define BCSH_OUT_MODE_SHIFT 30 258 #define BCSH_OUT_MODE_MASK 0x3 259 260 #define RK3568_VP0_BCSH_H 0xC68 261 #define BCSH_SIN_HUE_SHIFT 0 262 #define BCSH_SIN_HUE_MASK 0x1FF 263 #define BCSH_COS_HUE_SHIFT 16 264 #define BCSH_COS_HUE_MASK 0x1FF 265 266 #define RK3568_VP0_BCSH_COLOR 0xC6C 267 #define BCSH_EN_SHIFT 31 268 #define BCSH_EN_MASK 1 269 270 #define RK3568_VP1_DSP_CTRL 0xD00 271 #define RK3568_VP1_MIPI_CTRL 0xD04 272 #define RK3568_VP1_COLOR_BAR_CTRL 0xD08 273 #define RK3568_VP1_PRE_SCAN_HTIMING 0xD30 274 #define RK3568_VP1_POST_DSP_HACT_INFO 0xD34 275 #define RK3568_VP1_POST_DSP_VACT_INFO 0xD38 276 #define RK3568_VP1_POST_SCL_FACTOR_YRGB 0xD3C 277 #define RK3568_VP1_POST_SCL_CTRL 0xD40 278 #define RK3568_VP1_DSP_HACT_INFO 0xD34 279 #define RK3568_VP1_DSP_VACT_INFO 0xD38 280 #define RK3568_VP1_POST_DSP_VACT_INFO_F1 0xD44 281 #define RK3568_VP1_DSP_HTOTAL_HS_END 0xD48 282 #define RK3568_VP1_DSP_HACT_ST_END 0xD4C 283 #define RK3568_VP1_DSP_VTOTAL_VS_END 0xD50 284 #define RK3568_VP1_DSP_VACT_ST_END 0xD54 285 #define RK3568_VP1_DSP_VS_ST_END_F1 0xD58 286 #define RK3568_VP1_DSP_VACT_ST_END_F1 0xD5C 287 288 #define RK3568_VP2_DSP_CTRL 0xE00 289 #define RK3568_VP2_MIPI_CTRL 0xE04 290 #define RK3568_VP2_COLOR_BAR_CTRL 0xE08 291 #define RK3568_VP2_PRE_SCAN_HTIMING 0xE30 292 #define RK3568_VP2_POST_DSP_HACT_INFO 0xE34 293 #define RK3568_VP2_POST_DSP_VACT_INFO 0xE38 294 #define RK3568_VP2_POST_SCL_FACTOR_YRGB 0xE3C 295 #define RK3568_VP2_POST_SCL_CTRL 0xE40 296 #define RK3568_VP2_DSP_HACT_INFO 0xE34 297 #define RK3568_VP2_DSP_VACT_INFO 0xE38 298 #define RK3568_VP2_POST_DSP_VACT_INFO_F1 0xE44 299 #define RK3568_VP2_DSP_HTOTAL_HS_END 0xE48 300 #define RK3568_VP2_DSP_HACT_ST_END 0xE4C 301 #define RK3568_VP2_DSP_VTOTAL_VS_END 0xE50 302 #define RK3568_VP2_DSP_VACT_ST_END 0xE54 303 #define RK3568_VP2_DSP_VS_ST_END_F1 0xE58 304 #define RK3568_VP2_DSP_VACT_ST_END_F1 0xE5C 305 306 /* Cluster0 register definition */ 307 #define RK3568_CLUSTER0_WIN0_CTRL0 0x1000 308 #define CLUSTER_YUV2RGB_EN_SHIFT 8 309 #define CLUSTER_RGB2YUV_EN_SHIFT 9 310 #define CLUSTER_CSC_MODE_SHIFT 10 311 #define CLUSTER_YRGB_XSCL_MODE_SHIFT 12 312 #define CLUSTER_YRGB_YSCL_MODE_SHIFT 14 313 #define RK3568_CLUSTER0_WIN0_CTRL1 0x1004 314 #define CLUSTER_YRGB_GT2_SHIFT 28 315 #define CLUSTER_YRGB_GT4_SHIFT 29 316 #define RK3568_CLUSTER0_WIN0_YRGB_MST 0x1010 317 #define RK3568_CLUSTER0_WIN0_CBR_MST 0x1014 318 #define RK3568_CLUSTER0_WIN0_VIR 0x1018 319 #define RK3568_CLUSTER0_WIN0_ACT_INFO 0x1020 320 #define RK3568_CLUSTER0_WIN0_DSP_INFO 0x1024 321 #define RK3568_CLUSTER0_WIN0_DSP_ST 0x1028 322 #define RK3568_CLUSTER0_WIN0_SCL_FACTOR_YRGB 0x1030 323 #define RK3568_CLUSTER0_WIN0_AFBCD_ROTATE_MODE 0x1054 324 #define RK3568_CLUSTER0_WIN0_AFBCD_HDR_PTR 0x1058 325 #define RK3568_CLUSTER0_WIN0_AFBCD_VIR_WIDTH 0x105C 326 #define RK3568_CLUSTER0_WIN0_AFBCD_PIC_SIZE 0x1060 327 #define RK3568_CLUSTER0_WIN0_AFBCD_PIC_OFFSET 0x1064 328 #define RK3568_CLUSTER0_WIN0_AFBCD_DSP_OFFSET 0x1068 329 #define RK3568_CLUSTER0_WIN0_AFBCD_CTRL 0x106C 330 331 #define RK3568_CLUSTER0_WIN1_CTRL0 0x1080 332 #define RK3568_CLUSTER0_WIN1_CTRL1 0x1084 333 #define RK3568_CLUSTER0_WIN1_YRGB_MST 0x1090 334 #define RK3568_CLUSTER0_WIN1_CBR_MST 0x1094 335 #define RK3568_CLUSTER0_WIN1_VIR 0x1098 336 #define RK3568_CLUSTER0_WIN1_ACT_INFO 0x10A0 337 #define RK3568_CLUSTER0_WIN1_DSP_INFO 0x10A4 338 #define RK3568_CLUSTER0_WIN1_DSP_ST 0x10A8 339 #define RK3568_CLUSTER0_WIN1_SCL_FACTOR_YRGB 0x10B0 340 #define RK3568_CLUSTER0_WIN1_AFBCD_ROTATE_MODE 0x10D4 341 #define RK3568_CLUSTER0_WIN1_AFBCD_HDR_PTR 0x10D8 342 #define RK3568_CLUSTER0_WIN1_AFBCD_VIR_WIDTH 0x10DC 343 #define RK3568_CLUSTER0_WIN1_AFBCD_PIC_SIZE 0x10E0 344 #define RK3568_CLUSTER0_WIN1_AFBCD_PIC_OFFSET 0x10E4 345 #define RK3568_CLUSTER0_WIN1_AFBCD_DSP_OFFSET 0x10E8 346 #define RK3568_CLUSTER0_WIN1_AFBCD_CTRL 0x10EC 347 348 #define RK3568_CLUSTER0_CTRL 0x1100 349 #define CLUSTER_EN_SHIFT 0 350 351 #define RK3568_CLUSTER1_WIN0_CTRL0 0x1200 352 #define RK3568_CLUSTER1_WIN0_CTRL1 0x1204 353 #define RK3568_CLUSTER1_WIN0_YRGB_MST 0x1210 354 #define RK3568_CLUSTER1_WIN0_CBR_MST 0x1214 355 #define RK3568_CLUSTER1_WIN0_VIR 0x1218 356 #define RK3568_CLUSTER1_WIN0_ACT_INFO 0x1220 357 #define RK3568_CLUSTER1_WIN0_DSP_INFO 0x1224 358 #define RK3568_CLUSTER1_WIN0_DSP_ST 0x1228 359 #define RK3568_CLUSTER1_WIN0_SCL_FACTOR_YRGB 0x1230 360 #define RK3568_CLUSTER1_WIN0_AFBCD_ROTATE_MODE 0x1254 361 #define RK3568_CLUSTER1_WIN0_AFBCD_HDR_PTR 0x1258 362 #define RK3568_CLUSTER1_WIN0_AFBCD_VIR_WIDTH 0x125C 363 #define RK3568_CLUSTER1_WIN0_AFBCD_PIC_SIZE 0x1260 364 #define RK3568_CLUSTER1_WIN0_AFBCD_PIC_OFFSET 0x1264 365 #define RK3568_CLUSTER1_WIN0_AFBCD_DSP_OFFSET 0x1268 366 #define RK3568_CLUSTER1_WIN0_AFBCD_CTRL 0x126C 367 368 #define RK3568_CLUSTER1_WIN1_CTRL0 0x1280 369 #define RK3568_CLUSTER1_WIN1_CTRL1 0x1284 370 #define RK3568_CLUSTER1_WIN1_YRGB_MST 0x1290 371 #define RK3568_CLUSTER1_WIN1_CBR_MST 0x1294 372 #define RK3568_CLUSTER1_WIN1_VIR 0x1298 373 #define RK3568_CLUSTER1_WIN1_ACT_INFO 0x12A0 374 #define RK3568_CLUSTER1_WIN1_DSP_INFO 0x12A4 375 #define RK3568_CLUSTER1_WIN1_DSP_ST 0x12A8 376 #define RK3568_CLUSTER1_WIN1_SCL_FACTOR_YRGB 0x12B0 377 #define RK3568_CLUSTER1_WIN1_AFBCD_ROTATE_MODE 0x12D4 378 #define RK3568_CLUSTER1_WIN1_AFBCD_HDR_PTR 0x12D8 379 #define RK3568_CLUSTER1_WIN1_AFBCD_VIR_WIDTH 0x12DC 380 #define RK3568_CLUSTER1_WIN1_AFBCD_PIC_SIZE 0x12E0 381 #define RK3568_CLUSTER1_WIN1_AFBCD_PIC_OFFSET 0x12E4 382 #define RK3568_CLUSTER1_WIN1_AFBCD_DSP_OFFSET 0x12E8 383 #define RK3568_CLUSTER1_WIN1_AFBCD_CTRL 0x12EC 384 385 #define RK3568_CLUSTER1_CTRL 0x1300 386 387 /* Esmart register definition */ 388 #define RK3568_ESMART0_CTRL0 0x1800 389 #define RGB2YUV_EN_SHIFT 1 390 #define CSC_MODE_SHIFT 2 391 #define CSC_MODE_MASK 0x3 392 393 #define RK3568_ESMART0_CTRL1 0x1804 394 #define YMIRROR_EN_SHIFT 31 395 #define RK3568_ESMART0_REGION0_CTRL 0x1810 396 #define REGION0_RB_SWAP_SHIFT 14 397 #define WIN_EN_SHIFT 0 398 #define WIN_FORMAT_MASK 0x1f 399 #define WIN_FORMAT_SHIFT 1 400 401 #define RK3568_ESMART0_REGION0_YRGB_MST 0x1814 402 #define RK3568_ESMART0_REGION0_CBR_MST 0x1818 403 #define RK3568_ESMART0_REGION0_VIR 0x181C 404 #define RK3568_ESMART0_REGION0_ACT_INFO 0x1820 405 #define RK3568_ESMART0_REGION0_DSP_INFO 0x1824 406 #define RK3568_ESMART0_REGION0_DSP_ST 0x1828 407 #define RK3568_ESMART0_REGION0_SCL_CTRL 0x1830 408 #define YRGB_XSCL_MODE_MASK 0x3 409 #define YRGB_XSCL_MODE_SHIFT 0 410 #define YRGB_XSCL_FILTER_MODE_MASK 0x3 411 #define YRGB_XSCL_FILTER_MODE_SHIFT 2 412 #define YRGB_YSCL_MODE_MASK 0x3 413 #define YRGB_YSCL_MODE_SHIFT 4 414 #define YRGB_YSCL_FILTER_MODE_MASK 0x3 415 #define YRGB_YSCL_FILTER_MODE_SHIFT 6 416 417 #define RK3568_ESMART0_REGION0_SCL_FACTOR_YRGB 0x1834 418 #define RK3568_ESMART0_REGION0_SCL_FACTOR_CBR 0x1838 419 #define RK3568_ESMART0_REGION0_SCL_OFFSET 0x183C 420 #define RK3568_ESMART0_REGION1_CTRL 0x1840 421 #define YRGB_GT2_MASK 0x1 422 #define YRGB_GT2_SHIFT 8 423 #define YRGB_GT4_MASK 0x1 424 #define YRGB_GT4_SHIFT 9 425 426 #define RK3568_ESMART0_REGION1_YRGB_MST 0x1844 427 #define RK3568_ESMART0_REGION1_CBR_MST 0x1848 428 #define RK3568_ESMART0_REGION1_VIR 0x184C 429 #define RK3568_ESMART0_REGION1_ACT_INFO 0x1850 430 #define RK3568_ESMART0_REGION1_DSP_INFO 0x1854 431 #define RK3568_ESMART0_REGION1_DSP_ST 0x1858 432 #define RK3568_ESMART0_REGION1_SCL_CTRL 0x1860 433 #define RK3568_ESMART0_REGION1_SCL_FACTOR_YRGB 0x1864 434 #define RK3568_ESMART0_REGION1_SCL_FACTOR_CBR 0x1868 435 #define RK3568_ESMART0_REGION1_SCL_OFFSET 0x186C 436 #define RK3568_ESMART0_REGION2_CTRL 0x1870 437 #define RK3568_ESMART0_REGION2_YRGB_MST 0x1874 438 #define RK3568_ESMART0_REGION2_CBR_MST 0x1878 439 #define RK3568_ESMART0_REGION2_VIR 0x187C 440 #define RK3568_ESMART0_REGION2_ACT_INFO 0x1880 441 #define RK3568_ESMART0_REGION2_DSP_INFO 0x1884 442 #define RK3568_ESMART0_REGION2_DSP_ST 0x1888 443 #define RK3568_ESMART0_REGION2_SCL_CTRL 0x1890 444 #define RK3568_ESMART0_REGION2_SCL_FACTOR_YRGB 0x1894 445 #define RK3568_ESMART0_REGION2_SCL_FACTOR_CBR 0x1898 446 #define RK3568_ESMART0_REGION2_SCL_OFFSET 0x189C 447 #define RK3568_ESMART0_REGION3_CTRL 0x18A0 448 #define RK3568_ESMART0_REGION3_YRGB_MST 0x18A4 449 #define RK3568_ESMART0_REGION3_CBR_MST 0x18A8 450 #define RK3568_ESMART0_REGION3_VIR 0x18AC 451 #define RK3568_ESMART0_REGION3_ACT_INFO 0x18B0 452 #define RK3568_ESMART0_REGION3_DSP_INFO 0x18B4 453 #define RK3568_ESMART0_REGION3_DSP_ST 0x18B8 454 #define RK3568_ESMART0_REGION3_SCL_CTRL 0x18C0 455 #define RK3568_ESMART0_REGION3_SCL_FACTOR_YRGB 0x18C4 456 #define RK3568_ESMART0_REGION3_SCL_FACTOR_CBR 0x18C8 457 #define RK3568_ESMART0_REGION3_SCL_OFFSET 0x18CC 458 459 #define RK3568_ESMART1_CTRL0 0x1A00 460 #define RK3568_ESMART1_CTRL1 0x1A04 461 #define RK3568_ESMART1_REGION0_CTRL 0x1A10 462 #define RK3568_ESMART1_REGION0_YRGB_MST 0x1A14 463 #define RK3568_ESMART1_REGION0_CBR_MST 0x1A18 464 #define RK3568_ESMART1_REGION0_VIR 0x1A1C 465 #define RK3568_ESMART1_REGION0_ACT_INFO 0x1A20 466 #define RK3568_ESMART1_REGION0_DSP_INFO 0x1A24 467 #define RK3568_ESMART1_REGION0_DSP_ST 0x1A28 468 #define RK3568_ESMART1_REGION0_SCL_CTRL 0x1A30 469 #define RK3568_ESMART1_REGION0_SCL_FACTOR_YRGB 0x1A34 470 #define RK3568_ESMART1_REGION0_SCL_FACTOR_CBR 0x1A38 471 #define RK3568_ESMART1_REGION0_SCL_OFFSET 0x1A3C 472 #define RK3568_ESMART1_REGION1_CTRL 0x1A40 473 #define RK3568_ESMART1_REGION1_YRGB_MST 0x1A44 474 #define RK3568_ESMART1_REGION1_CBR_MST 0x1A48 475 #define RK3568_ESMART1_REGION1_VIR 0x1A4C 476 #define RK3568_ESMART1_REGION1_ACT_INFO 0x1A50 477 #define RK3568_ESMART1_REGION1_DSP_INFO 0x1A54 478 #define RK3568_ESMART1_REGION1_DSP_ST 0x1A58 479 #define RK3568_ESMART1_REGION1_SCL_CTRL 0x1A60 480 #define RK3568_ESMART1_REGION1_SCL_FACTOR_YRGB 0x1A64 481 #define RK3568_ESMART1_REGION1_SCL_FACTOR_CBR 0x1A68 482 #define RK3568_ESMART1_REGION1_SCL_OFFSET 0x1A6C 483 #define RK3568_ESMART1_REGION2_CTRL 0x1A70 484 #define RK3568_ESMART1_REGION2_YRGB_MST 0x1A74 485 #define RK3568_ESMART1_REGION2_CBR_MST 0x1A78 486 #define RK3568_ESMART1_REGION2_VIR 0x1A7C 487 #define RK3568_ESMART1_REGION2_ACT_INFO 0x1A80 488 #define RK3568_ESMART1_REGION2_DSP_INFO 0x1A84 489 #define RK3568_ESMART1_REGION2_DSP_ST 0x1A88 490 #define RK3568_ESMART1_REGION2_SCL_CTRL 0x1A90 491 #define RK3568_ESMART1_REGION2_SCL_FACTOR_YRGB 0x1A94 492 #define RK3568_ESMART1_REGION2_SCL_FACTOR_CBR 0x1A98 493 #define RK3568_ESMART1_REGION2_SCL_OFFSET 0x1A9C 494 #define RK3568_ESMART1_REGION3_CTRL 0x1AA0 495 #define RK3568_ESMART1_REGION3_YRGB_MST 0x1AA4 496 #define RK3568_ESMART1_REGION3_CBR_MST 0x1AA8 497 #define RK3568_ESMART1_REGION3_VIR 0x1AAC 498 #define RK3568_ESMART1_REGION3_ACT_INFO 0x1AB0 499 #define RK3568_ESMART1_REGION3_DSP_INFO 0x1AB4 500 #define RK3568_ESMART1_REGION3_DSP_ST 0x1AB8 501 #define RK3568_ESMART1_REGION3_SCL_CTRL 0x1AC0 502 #define RK3568_ESMART1_REGION3_SCL_FACTOR_YRGB 0x1AC4 503 #define RK3568_ESMART1_REGION3_SCL_FACTOR_CBR 0x1AC8 504 #define RK3568_ESMART1_REGION3_SCL_OFFSET 0x1ACC 505 506 #define RK3568_SMART0_CTRL0 0x1C00 507 #define RK3568_SMART0_CTRL1 0x1C04 508 #define RK3568_SMART0_REGION0_CTRL 0x1C10 509 #define RK3568_SMART0_REGION0_YRGB_MST 0x1C14 510 #define RK3568_SMART0_REGION0_CBR_MST 0x1C18 511 #define RK3568_SMART0_REGION0_VIR 0x1C1C 512 #define RK3568_SMART0_REGION0_ACT_INFO 0x1C20 513 #define RK3568_SMART0_REGION0_DSP_INFO 0x1C24 514 #define RK3568_SMART0_REGION0_DSP_ST 0x1C28 515 #define RK3568_SMART0_REGION0_SCL_CTRL 0x1C30 516 #define RK3568_SMART0_REGION0_SCL_FACTOR_YRGB 0x1C34 517 #define RK3568_SMART0_REGION0_SCL_FACTOR_CBR 0x1C38 518 #define RK3568_SMART0_REGION0_SCL_OFFSET 0x1C3C 519 #define RK3568_SMART0_REGION1_CTRL 0x1C40 520 #define RK3568_SMART0_REGION1_YRGB_MST 0x1C44 521 #define RK3568_SMART0_REGION1_CBR_MST 0x1C48 522 #define RK3568_SMART0_REGION1_VIR 0x1C4C 523 #define RK3568_SMART0_REGION1_ACT_INFO 0x1C50 524 #define RK3568_SMART0_REGION1_DSP_INFO 0x1C54 525 #define RK3568_SMART0_REGION1_DSP_ST 0x1C58 526 #define RK3568_SMART0_REGION1_SCL_CTRL 0x1C60 527 #define RK3568_SMART0_REGION1_SCL_FACTOR_YRGB 0x1C64 528 #define RK3568_SMART0_REGION1_SCL_FACTOR_CBR 0x1C68 529 #define RK3568_SMART0_REGION1_SCL_OFFSET 0x1C6C 530 #define RK3568_SMART0_REGION2_CTRL 0x1C70 531 #define RK3568_SMART0_REGION2_YRGB_MST 0x1C74 532 #define RK3568_SMART0_REGION2_CBR_MST 0x1C78 533 #define RK3568_SMART0_REGION2_VIR 0x1C7C 534 #define RK3568_SMART0_REGION2_ACT_INFO 0x1C80 535 #define RK3568_SMART0_REGION2_DSP_INFO 0x1C84 536 #define RK3568_SMART0_REGION2_DSP_ST 0x1C88 537 #define RK3568_SMART0_REGION2_SCL_CTRL 0x1C90 538 #define RK3568_SMART0_REGION2_SCL_FACTOR_YRGB 0x1C94 539 #define RK3568_SMART0_REGION2_SCL_FACTOR_CBR 0x1C98 540 #define RK3568_SMART0_REGION2_SCL_OFFSET 0x1C9C 541 #define RK3568_SMART0_REGION3_CTRL 0x1CA0 542 #define RK3568_SMART0_REGION3_YRGB_MST 0x1CA4 543 #define RK3568_SMART0_REGION3_CBR_MST 0x1CA8 544 #define RK3568_SMART0_REGION3_VIR 0x1CAC 545 #define RK3568_SMART0_REGION3_ACT_INFO 0x1CB0 546 #define RK3568_SMART0_REGION3_DSP_INFO 0x1CB4 547 #define RK3568_SMART0_REGION3_DSP_ST 0x1CB8 548 #define RK3568_SMART0_REGION3_SCL_CTRL 0x1CC0 549 #define RK3568_SMART0_REGION3_SCL_FACTOR_YRGB 0x1CC4 550 #define RK3568_SMART0_REGION3_SCL_FACTOR_CBR 0x1CC8 551 #define RK3568_SMART0_REGION3_SCL_OFFSET 0x1CCC 552 553 #define RK3568_SMART1_CTRL0 0x1E00 554 #define RK3568_SMART1_CTRL1 0x1E04 555 #define RK3568_SMART1_REGION0_CTRL 0x1E10 556 #define RK3568_SMART1_REGION0_YRGB_MST 0x1E14 557 #define RK3568_SMART1_REGION0_CBR_MST 0x1E18 558 #define RK3568_SMART1_REGION0_VIR 0x1E1C 559 #define RK3568_SMART1_REGION0_ACT_INFO 0x1E20 560 #define RK3568_SMART1_REGION0_DSP_INFO 0x1E24 561 #define RK3568_SMART1_REGION0_DSP_ST 0x1E28 562 #define RK3568_SMART1_REGION0_SCL_CTRL 0x1E30 563 #define RK3568_SMART1_REGION0_SCL_FACTOR_YRGB 0x1E34 564 #define RK3568_SMART1_REGION0_SCL_FACTOR_CBR 0x1E38 565 #define RK3568_SMART1_REGION0_SCL_OFFSET 0x1E3C 566 #define RK3568_SMART1_REGION1_CTRL 0x1E40 567 #define RK3568_SMART1_REGION1_YRGB_MST 0x1E44 568 #define RK3568_SMART1_REGION1_CBR_MST 0x1E48 569 #define RK3568_SMART1_REGION1_VIR 0x1E4C 570 #define RK3568_SMART1_REGION1_ACT_INFO 0x1E50 571 #define RK3568_SMART1_REGION1_DSP_INFO 0x1E54 572 #define RK3568_SMART1_REGION1_DSP_ST 0x1E58 573 #define RK3568_SMART1_REGION1_SCL_CTRL 0x1E60 574 #define RK3568_SMART1_REGION1_SCL_FACTOR_YRGB 0x1E64 575 #define RK3568_SMART1_REGION1_SCL_FACTOR_CBR 0x1E68 576 #define RK3568_SMART1_REGION1_SCL_OFFSET 0x1E6C 577 #define RK3568_SMART1_REGION2_CTRL 0x1E70 578 #define RK3568_SMART1_REGION2_YRGB_MST 0x1E74 579 #define RK3568_SMART1_REGION2_CBR_MST 0x1E78 580 #define RK3568_SMART1_REGION2_VIR 0x1E7C 581 #define RK3568_SMART1_REGION2_ACT_INFO 0x1E80 582 #define RK3568_SMART1_REGION2_DSP_INFO 0x1E84 583 #define RK3568_SMART1_REGION2_DSP_ST 0x1E88 584 #define RK3568_SMART1_REGION2_SCL_CTRL 0x1E90 585 #define RK3568_SMART1_REGION2_SCL_FACTOR_YRGB 0x1E94 586 #define RK3568_SMART1_REGION2_SCL_FACTOR_CBR 0x1E98 587 #define RK3568_SMART1_REGION2_SCL_OFFSET 0x1E9C 588 #define RK3568_SMART1_REGION3_CTRL 0x1EA0 589 #define RK3568_SMART1_REGION3_YRGB_MST 0x1EA4 590 #define RK3568_SMART1_REGION3_CBR_MST 0x1EA8 591 #define RK3568_SMART1_REGION3_VIR 0x1EAC 592 #define RK3568_SMART1_REGION3_ACT_INFO 0x1EB0 593 #define RK3568_SMART1_REGION3_DSP_INFO 0x1EB4 594 #define RK3568_SMART1_REGION3_DSP_ST 0x1EB8 595 #define RK3568_SMART1_REGION3_SCL_CTRL 0x1EC0 596 #define RK3568_SMART1_REGION3_SCL_FACTOR_YRGB 0x1EC4 597 #define RK3568_SMART1_REGION3_SCL_FACTOR_CBR 0x1EC8 598 #define RK3568_SMART1_REGION3_SCL_OFFSET 0x1ECC 599 600 #define RK3568_MAX_REG 0x1ED0 601 602 #define RK3568_GRF_VO_CON1 0x0364 603 #define GRF_BT656_CLK_INV_SHIFT 1 604 #define GRF_BT1120_CLK_INV_SHIFT 2 605 #define GRF_RGB_DCLK_INV_SHIFT 3 606 607 #define RK3588_GRF_VOP_CON2 0x0008 608 #define RK3588_GRF_EDP0_ENABLE_SHIFT 0 609 #define RK3588_GRF_HDMITX0_ENABLE_SHIFT 1 610 #define RK3588_GRF_EDP1_ENABLE_SHIFT 3 611 #define RK3588_GRF_HDMITX1_ENABLE_SHIFT 4 612 613 #define RK3588_GRF_VO1_CON0 0x0000 614 #define HDMI_SYNC_POL_MASK 0x3 615 #define HDMI0_SYNC_POL_SHIFT 5 616 #define HDMI1_SYNC_POL_SHIFT 7 617 618 #define RK3588_PMU_BISR_CON3 0x20C 619 #define RK3588_PD_CLUSTER0_REPAIR_EN_SHIFT 9 620 #define RK3588_PD_CLUSTER1_REPAIR_EN_SHIFT 10 621 #define RK3588_PD_CLUSTER2_REPAIR_EN_SHIFT 11 622 #define RK3588_PD_CLUSTER3_REPAIR_EN_SHIFT 12 623 #define RK3588_PD_ESMART_REPAIR_EN_SHIFT 15 624 625 #define RK3588_PMU_BISR_STATUS5 0x294 626 #define RK3588_PD_CLUSTER0_PWR_STAT_SHIFI 9 627 #define RK3588_PD_CLUSTER1_PWR_STAT_SHIFI 10 628 #define RK3588_PD_CLUSTER2_PWR_STAT_SHIFI 11 629 #define RK3588_PD_CLUSTER3_PWR_STAT_SHIFI 12 630 #define RK3588_PD_ESMART_PWR_STAT_SHIFI 15 631 632 #define VOP2_LAYER_MAX 8 633 634 #define VOP_FEATURE_OUTPUT_10BIT BIT(0) 635 636 enum vop2_csc_format { 637 CSC_BT601L, 638 CSC_BT709L, 639 CSC_BT601F, 640 CSC_BT2020, 641 }; 642 643 enum vop2_pol { 644 HSYNC_POSITIVE = 0, 645 VSYNC_POSITIVE = 1, 646 DEN_NEGATIVE = 2, 647 DCLK_INVERT = 3 648 }; 649 650 enum vop2_bcsh_out_mode { 651 BCSH_OUT_MODE_BLACK, 652 BCSH_OUT_MODE_BLUE, 653 BCSH_OUT_MODE_COLOR_BAR, 654 BCSH_OUT_MODE_NORMAL_VIDEO, 655 }; 656 657 #define _VOP_REG(off, _mask, _shift, _write_mask) \ 658 { \ 659 .offset = off, \ 660 .mask = _mask, \ 661 .shift = _shift, \ 662 .write_mask = _write_mask, \ 663 } 664 665 #define VOP_REG(off, _mask, _shift) \ 666 _VOP_REG(off, _mask, _shift, false) 667 enum dither_down_mode { 668 RGB888_TO_RGB565 = 0x0, 669 RGB888_TO_RGB666 = 0x1 670 }; 671 672 enum vop2_video_ports_id { 673 VOP2_VP0, 674 VOP2_VP1, 675 VOP2_VP2, 676 VOP2_VP3, 677 VOP2_VP_MAX, 678 }; 679 680 enum vop2_layer_type { 681 CLUSTER_LAYER = 0, 682 ESMART_LAYER = 1, 683 SMART_LAYER = 2, 684 }; 685 686 /* This define must same with kernel win phy id */ 687 enum vop2_layer_phy_id { 688 ROCKCHIP_VOP2_CLUSTER0 = 0, 689 ROCKCHIP_VOP2_CLUSTER1, 690 ROCKCHIP_VOP2_ESMART0, 691 ROCKCHIP_VOP2_ESMART1, 692 ROCKCHIP_VOP2_SMART0, 693 ROCKCHIP_VOP2_SMART1, 694 ROCKCHIP_VOP2_CLUSTER2, 695 ROCKCHIP_VOP2_CLUSTER3, 696 ROCKCHIP_VOP2_ESMART2, 697 ROCKCHIP_VOP2_ESMART3, 698 ROCKCHIP_VOP2_LAYER_MAX, 699 }; 700 701 enum vop2_scale_up_mode { 702 VOP2_SCALE_UP_NRST_NBOR, 703 VOP2_SCALE_UP_BIL, 704 VOP2_SCALE_UP_BIC, 705 }; 706 707 enum vop2_scale_down_mode { 708 VOP2_SCALE_DOWN_NRST_NBOR, 709 VOP2_SCALE_DOWN_BIL, 710 VOP2_SCALE_DOWN_AVG, 711 }; 712 713 enum scale_mode { 714 SCALE_NONE = 0x0, 715 SCALE_UP = 0x1, 716 SCALE_DOWN = 0x2 717 }; 718 719 struct vop2_layer { 720 u8 id; 721 /** 722 * @win_phys_id: window id of the layer selected. 723 * Every layer must make sure to select different 724 * windows of others. 725 */ 726 u8 win_phys_id; 727 }; 728 729 struct vop2_power_domain_data { 730 bool is_parent_needed; 731 u8 pd_en_shift; 732 u8 pd_status_shift; 733 u8 pmu_status_shift; 734 u8 bisr_en_status_shift; 735 u8 parent_phy_id; 736 }; 737 738 struct vop2_win_data { 739 char *name; 740 u8 phys_id; 741 enum vop2_layer_type type; 742 u8 win_sel_port_offset; 743 u8 layer_sel_win_id; 744 u32 reg_offset; 745 struct vop2_power_domain_data *pd_data; 746 }; 747 748 struct vop2_vp_data { 749 u32 feature; 750 u8 pre_scan_max_dly; 751 struct vop_rect max_output; 752 u32 max_dclk; 753 }; 754 755 struct vop2_plane_table { 756 enum vop2_layer_phy_id plane_id; 757 enum vop2_layer_type plane_type; 758 }; 759 760 struct vop2_vp_plane_mask { 761 u8 primary_plane_id; /* use this win to show logo */ 762 u8 attached_layers_nr; /* number layers attach to this vp */ 763 u8 attached_layers[VOP2_LAYER_MAX]; /* the layers attached to this vp */ 764 u32 plane_mask; 765 int cursor_plane_id; 766 }; 767 768 struct vop2_data { 769 u32 version; 770 struct vop2_vp_data *vp_data; 771 struct vop2_win_data *win_data; 772 struct vop2_vp_plane_mask *plane_mask; 773 struct vop2_plane_table *plane_table; 774 u8 nr_vps; 775 u8 nr_layers; 776 u8 nr_mixers; 777 u8 nr_gammas; 778 u8 nr_dscs; 779 u32 reg_len; 780 }; 781 782 struct vop2 { 783 u32 *regsbak; 784 void *regs; 785 void *grf; 786 void *vop_grf; 787 void *vo1_grf; 788 void *sys_pmu; 789 u32 reg_len; 790 u32 version; 791 bool global_init; 792 const struct vop2_data *data; 793 struct vop2_vp_plane_mask vp_plane_mask[VOP2_VP_MAX]; 794 }; 795 796 static struct vop2 *rockchip_vop2; 797 /* 798 * bli_sd_factor = (src - 1) / (dst - 1) << 12; 799 * avg_sd_factor: 800 * bli_su_factor: 801 * bic_su_factor: 802 * = (src - 1) / (dst - 1) << 16; 803 * 804 * gt2 enable: dst get one line from two line of the src 805 * gt4 enable: dst get one line from four line of the src. 806 * 807 */ 808 #define VOP2_BILI_SCL_DN(src, dst) (((src - 1) << 12) / (dst - 1)) 809 #define VOP2_COMMON_SCL(src, dst) (((src - 1) << 16) / (dst - 1)) 810 811 #define VOP2_BILI_SCL_FAC_CHECK(src, dst, fac) \ 812 (fac * (dst - 1) >> 12 < (src - 1)) 813 #define VOP2_COMMON_SCL_FAC_CHECK(src, dst, fac) \ 814 (fac * (dst - 1) >> 16 < (src - 1)) 815 816 static uint16_t vop2_scale_factor(enum scale_mode mode, 817 int32_t filter_mode, 818 uint32_t src, uint32_t dst) 819 { 820 uint32_t fac = 0; 821 int i = 0; 822 823 if (mode == SCALE_NONE) 824 return 0; 825 826 /* 827 * A workaround to avoid zero div. 828 */ 829 if ((dst == 1) || (src == 1)) { 830 dst = dst + 1; 831 src = src + 1; 832 } 833 834 if ((mode == SCALE_DOWN) && (filter_mode == VOP2_SCALE_DOWN_BIL)) { 835 fac = VOP2_BILI_SCL_DN(src, dst); 836 for (i = 0; i < 100; i++) { 837 if (VOP2_BILI_SCL_FAC_CHECK(src, dst, fac)) 838 break; 839 fac -= 1; 840 printf("down fac cali: src:%d, dst:%d, fac:0x%x\n", src, dst, fac); 841 } 842 } else { 843 fac = VOP2_COMMON_SCL(src, dst); 844 for (i = 0; i < 100; i++) { 845 if (VOP2_COMMON_SCL_FAC_CHECK(src, dst, fac)) 846 break; 847 fac -= 1; 848 printf("up fac cali: src:%d, dst:%d, fac:0x%x\n", src, dst, fac); 849 } 850 } 851 852 return fac; 853 } 854 855 static inline enum scale_mode scl_get_scl_mode(int src, int dst) 856 { 857 if (src < dst) 858 return SCALE_UP; 859 else if (src > dst) 860 return SCALE_DOWN; 861 862 return SCALE_NONE; 863 } 864 865 static u8 rk3588_vop2_vp_primary_plane_order[VOP2_VP_MAX] = { 866 ROCKCHIP_VOP2_ESMART0, 867 ROCKCHIP_VOP2_ESMART1, 868 ROCKCHIP_VOP2_ESMART2, 869 ROCKCHIP_VOP2_ESMART3, 870 }; 871 872 static u8 rk3568_vop2_vp_primary_plane_order[VOP2_VP_MAX] = { 873 ROCKCHIP_VOP2_SMART0, 874 ROCKCHIP_VOP2_SMART1, 875 ROCKCHIP_VOP2_ESMART1, 876 }; 877 878 static inline int interpolate(int x1, int y1, int x2, int y2, int x) 879 { 880 return y1 + (y2 - y1) * (x - x1) / (x2 - x1); 881 } 882 883 static int vop2_get_primary_plane(struct vop2 *vop2, u32 plane_mask) 884 { 885 int i = 0; 886 u8 *vop2_vp_primary_plane_order; 887 u8 default_primary_plane; 888 889 if (vop2->version == VOP_VERSION_RK3588) { 890 vop2_vp_primary_plane_order = rk3588_vop2_vp_primary_plane_order; 891 default_primary_plane = ROCKCHIP_VOP2_ESMART0; 892 } else { 893 vop2_vp_primary_plane_order = rk3568_vop2_vp_primary_plane_order; 894 default_primary_plane = ROCKCHIP_VOP2_SMART0; 895 } 896 897 for (i = 0; i < vop2->data->nr_vps; i++) { 898 if (plane_mask & BIT(vop2_vp_primary_plane_order[i])) 899 return vop2_vp_primary_plane_order[i]; 900 } 901 902 return default_primary_plane; 903 } 904 905 static inline u16 scl_cal_scale(int src, int dst, int shift) 906 { 907 return ((src * 2 - 3) << (shift - 1)) / (dst - 1); 908 } 909 910 static inline u16 scl_cal_scale2(int src, int dst) 911 { 912 return ((src - 1) << 12) / (dst - 1); 913 } 914 915 static inline void vop2_writel(struct vop2 *vop2, u32 offset, u32 v) 916 { 917 writel(v, vop2->regs + offset); 918 vop2->regsbak[offset >> 2] = v; 919 } 920 921 static inline u32 vop2_readl(struct vop2 *vop2, u32 offset) 922 { 923 return readl(vop2->regs + offset); 924 } 925 926 static inline void vop2_mask_write(struct vop2 *vop2, u32 offset, 927 u32 mask, u32 shift, u32 v, 928 bool write_mask) 929 { 930 if (!mask) 931 return; 932 933 if (write_mask) { 934 v = ((v & mask) << shift) | (mask << (shift + 16)); 935 } else { 936 u32 cached_val = vop2->regsbak[offset >> 2]; 937 938 v = (cached_val & ~(mask << shift)) | ((v & mask) << shift); 939 vop2->regsbak[offset >> 2] = v; 940 } 941 942 writel(v, vop2->regs + offset); 943 } 944 945 static inline void vop2_grf_writel(struct vop2 *vop, void *grf_base, u32 offset, 946 u32 mask, u32 shift, u32 v) 947 { 948 u32 val = 0; 949 950 val = (v << shift) | (mask << (shift + 16)); 951 writel(val, grf_base + offset); 952 } 953 954 static inline u32 vop2_grf_readl(struct vop2 *vop, void *grf_base, u32 offset, 955 u32 mask, u32 shift) 956 { 957 return (readl(grf_base + offset) >> shift) & mask; 958 } 959 960 static char* get_output_if_name(u32 output_if, char *name) 961 { 962 if (output_if & VOP_OUTPUT_IF_RGB) 963 strcat(name, " RGB"); 964 if (output_if & VOP_OUTPUT_IF_BT1120) 965 strcat(name, " BT1120"); 966 if (output_if & VOP_OUTPUT_IF_BT656) 967 strcat(name, " BT656"); 968 if (output_if & VOP_OUTPUT_IF_LVDS0) 969 strcat(name, " LVDS0"); 970 if (output_if & VOP_OUTPUT_IF_LVDS1) 971 strcat(name, " LVDS1"); 972 if (output_if & VOP_OUTPUT_IF_MIPI0) 973 strcat(name, " MIPI0"); 974 if (output_if & VOP_OUTPUT_IF_MIPI1) 975 strcat(name, " MIPI1"); 976 if (output_if & VOP_OUTPUT_IF_eDP0) 977 strcat(name, " eDP0"); 978 if (output_if & VOP_OUTPUT_IF_eDP1) 979 strcat(name, " eDP1"); 980 if (output_if & VOP_OUTPUT_IF_DP0) 981 strcat(name, " DP0"); 982 if (output_if & VOP_OUTPUT_IF_DP1) 983 strcat(name, " DP1"); 984 if (output_if & VOP_OUTPUT_IF_HDMI0) 985 strcat(name, " HDMI0"); 986 if (output_if & VOP_OUTPUT_IF_HDMI1) 987 strcat(name, " HDMI1"); 988 989 return name; 990 } 991 992 static char *get_plane_name(int plane_id, char *name) 993 { 994 switch (plane_id) { 995 case ROCKCHIP_VOP2_CLUSTER0: 996 strcat(name, "Cluster0"); 997 break; 998 case ROCKCHIP_VOP2_CLUSTER1: 999 strcat(name, "Cluster1"); 1000 break; 1001 case ROCKCHIP_VOP2_ESMART0: 1002 strcat(name, "Esmart0"); 1003 break; 1004 case ROCKCHIP_VOP2_ESMART1: 1005 strcat(name, "Esmart1"); 1006 break; 1007 case ROCKCHIP_VOP2_SMART0: 1008 strcat(name, "Smart0"); 1009 break; 1010 case ROCKCHIP_VOP2_SMART1: 1011 strcat(name, "Smart1"); 1012 break; 1013 case ROCKCHIP_VOP2_CLUSTER2: 1014 strcat(name, "Cluster2"); 1015 break; 1016 case ROCKCHIP_VOP2_CLUSTER3: 1017 strcat(name, "Cluster3"); 1018 break; 1019 case ROCKCHIP_VOP2_ESMART2: 1020 strcat(name, "Esmart2"); 1021 break; 1022 case ROCKCHIP_VOP2_ESMART3: 1023 strcat(name, "Esmart3"); 1024 break; 1025 } 1026 1027 return name; 1028 } 1029 1030 static bool is_yuv_output(u32 bus_format) 1031 { 1032 switch (bus_format) { 1033 case MEDIA_BUS_FMT_YUV8_1X24: 1034 case MEDIA_BUS_FMT_YUV10_1X30: 1035 case MEDIA_BUS_FMT_UYYVYY8_0_5X24: 1036 case MEDIA_BUS_FMT_UYYVYY10_0_5X30: 1037 case MEDIA_BUS_FMT_YUYV8_2X8: 1038 case MEDIA_BUS_FMT_YVYU8_2X8: 1039 case MEDIA_BUS_FMT_UYVY8_2X8: 1040 case MEDIA_BUS_FMT_VYUY8_2X8: 1041 case MEDIA_BUS_FMT_YUYV8_1X16: 1042 case MEDIA_BUS_FMT_YVYU8_1X16: 1043 case MEDIA_BUS_FMT_UYVY8_1X16: 1044 case MEDIA_BUS_FMT_VYUY8_1X16: 1045 return true; 1046 default: 1047 return false; 1048 } 1049 } 1050 1051 static int vop2_convert_csc_mode(int csc_mode) 1052 { 1053 switch (csc_mode) { 1054 case V4L2_COLORSPACE_SMPTE170M: 1055 case V4L2_COLORSPACE_470_SYSTEM_M: 1056 case V4L2_COLORSPACE_470_SYSTEM_BG: 1057 return CSC_BT601L; 1058 case V4L2_COLORSPACE_REC709: 1059 case V4L2_COLORSPACE_SMPTE240M: 1060 case V4L2_COLORSPACE_DEFAULT: 1061 return CSC_BT709L; 1062 case V4L2_COLORSPACE_JPEG: 1063 return CSC_BT601F; 1064 case V4L2_COLORSPACE_BT2020: 1065 return CSC_BT2020; 1066 default: 1067 return CSC_BT709L; 1068 } 1069 } 1070 1071 static bool is_uv_swap(u32 bus_format, u32 output_mode) 1072 { 1073 /* 1074 * FIXME: 1075 * 1076 * There is no media type for YUV444 output, 1077 * so when out_mode is AAAA or P888, assume output is YUV444 on 1078 * yuv format. 1079 * 1080 * From H/W testing, YUV444 mode need a rb swap. 1081 */ 1082 if (bus_format == MEDIA_BUS_FMT_YVYU8_1X16 || 1083 bus_format == MEDIA_BUS_FMT_VYUY8_1X16 || 1084 bus_format == MEDIA_BUS_FMT_YVYU8_2X8 || 1085 bus_format == MEDIA_BUS_FMT_VYUY8_2X8 || 1086 ((bus_format == MEDIA_BUS_FMT_YUV8_1X24 || 1087 bus_format == MEDIA_BUS_FMT_YUV10_1X30) && 1088 (output_mode == ROCKCHIP_OUT_MODE_AAAA || 1089 output_mode == ROCKCHIP_OUT_MODE_P888))) 1090 return true; 1091 else 1092 return false; 1093 } 1094 1095 static inline bool is_hot_plug_devices(int output_type) 1096 { 1097 switch (output_type) { 1098 case DRM_MODE_CONNECTOR_HDMIA: 1099 case DRM_MODE_CONNECTOR_HDMIB: 1100 case DRM_MODE_CONNECTOR_TV: 1101 case DRM_MODE_CONNECTOR_DisplayPort: 1102 case DRM_MODE_CONNECTOR_VGA: 1103 case DRM_MODE_CONNECTOR_Unknown: 1104 return true; 1105 default: 1106 return false; 1107 } 1108 } 1109 1110 static struct vop2_win_data *vop2_find_win_by_phys_id(struct vop2 *vop2, int phys_id) 1111 { 1112 int i = 0; 1113 1114 for (i = 0; i < vop2->data->nr_layers; i++) { 1115 if (vop2->data->win_data[i].phys_id == phys_id) 1116 return &vop2->data->win_data[i]; 1117 } 1118 1119 return NULL; 1120 } 1121 1122 static int rockchip_vop2_gamma_lut_init(struct vop2 *vop2, 1123 struct display_state *state) 1124 { 1125 struct connector_state *conn_state = &state->conn_state; 1126 struct crtc_state *cstate = &state->crtc_state; 1127 struct resource gamma_res; 1128 fdt_size_t lut_size; 1129 int i, lut_len, ret = 0; 1130 u32 *lut_regs; 1131 u32 *lut_val; 1132 u32 r, g, b; 1133 u32 vp_offset = cstate->crtc_id * 0x100; 1134 struct base2_disp_info *disp_info = conn_state->disp_info; 1135 static int gamma_lut_en_num = 1; 1136 1137 if (gamma_lut_en_num > vop2->data->nr_gammas) { 1138 printf("warn: only %d vp support gamma\n", vop2->data->nr_gammas); 1139 return 0; 1140 } 1141 1142 if (!disp_info) 1143 return 0; 1144 1145 if (!disp_info->gamma_lut_data.size) 1146 return 0; 1147 1148 ret = ofnode_read_resource_byname(cstate->node, "gamma_lut", &gamma_res); 1149 if (ret) 1150 printf("failed to get gamma lut res\n"); 1151 lut_regs = (u32 *)gamma_res.start; 1152 lut_size = gamma_res.end - gamma_res.start + 1; 1153 if (lut_regs == (u32 *)FDT_ADDR_T_NONE) { 1154 printf("failed to get gamma lut register\n"); 1155 return 0; 1156 } 1157 lut_len = lut_size / 4; 1158 if (lut_len != 256 && lut_len != 1024) { 1159 printf("Warning: unsupport gamma lut table[%d]\n", lut_len); 1160 return 0; 1161 } 1162 lut_val = (u32 *)calloc(1, lut_size); 1163 for (i = 0; i < lut_len; i++) { 1164 r = disp_info->gamma_lut_data.lred[i] * (lut_len - 1) / 0xffff; 1165 g = disp_info->gamma_lut_data.lgreen[i] * (lut_len - 1) / 0xffff; 1166 b = disp_info->gamma_lut_data.lblue[i] * (lut_len - 1) / 0xffff; 1167 1168 lut_val[i] = b * lut_len * lut_len + g * lut_len + r; 1169 } 1170 1171 for (i = 0; i < lut_len; i++) 1172 writel(lut_val[i], lut_regs + i); 1173 1174 vop2_mask_write(vop2, RK3568_SYS_LUT_PORT_SEL, 1175 GAMMA_PORT_SEL_MASK, GAMMA_PORT_SEL_SHIFT, 1176 cstate->crtc_id , false); 1177 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, 1178 EN_MASK, DSP_LUT_EN_SHIFT, 1, false); 1179 gamma_lut_en_num++; 1180 1181 return 0; 1182 } 1183 1184 static int rockchip_vop2_cubic_lut_init(struct vop2 *vop2, 1185 struct display_state *state) 1186 { 1187 struct connector_state *conn_state = &state->conn_state; 1188 struct crtc_state *cstate = &state->crtc_state; 1189 int i, cubic_lut_len; 1190 u32 vp_offset = cstate->crtc_id * 0x100; 1191 struct base2_disp_info *disp_info = conn_state->disp_info; 1192 struct base2_cubic_lut_data *lut = &conn_state->disp_info->cubic_lut_data; 1193 u32 *cubic_lut_addr; 1194 1195 if (!disp_info || CONFIG_ROCKCHIP_CUBIC_LUT_SIZE == 0) 1196 return 0; 1197 1198 if (!disp_info->cubic_lut_data.size) 1199 return 0; 1200 1201 cubic_lut_addr = (u32 *)get_cubic_lut_buffer(cstate->crtc_id); 1202 cubic_lut_len = disp_info->cubic_lut_data.size; 1203 1204 for (i = 0; i < cubic_lut_len / 2; i++) { 1205 *cubic_lut_addr++ = ((lut->lred[2 * i]) & 0xfff) + 1206 ((lut->lgreen[2 * i] & 0xfff) << 12) + 1207 ((lut->lblue[2 * i] & 0xff) << 24); 1208 *cubic_lut_addr++ = ((lut->lblue[2 * i] & 0xf00) >> 8) + 1209 ((lut->lred[2 * i + 1] & 0xfff) << 4) + 1210 ((lut->lgreen[2 * i + 1] & 0xfff) << 16) + 1211 ((lut->lblue[2 * i + 1] & 0xf) << 28); 1212 *cubic_lut_addr++ = (lut->lblue[2 * i + 1] & 0xff0) >> 4; 1213 *cubic_lut_addr++ = 0; 1214 } 1215 1216 if (cubic_lut_len % 2) { 1217 *cubic_lut_addr++ = (lut->lred[2 * i] & 0xfff) + 1218 ((lut->lgreen[2 * i] & 0xfff) << 12) + 1219 ((lut->lblue[2 * i] & 0xff) << 24); 1220 *cubic_lut_addr++ = (lut->lblue[2 * i] & 0xf00) >> 8; 1221 *cubic_lut_addr++ = 0; 1222 *cubic_lut_addr = 0; 1223 } 1224 1225 vop2_writel(vop2, RK3568_VP0_3D_LUT_MST + vp_offset, 1226 get_cubic_lut_buffer(cstate->crtc_id)); 1227 vop2_mask_write(vop2, RK3568_SYS_AXI_LUT_CTRL, 1228 EN_MASK, LUT_DMA_EN_SHIFT, 1, false); 1229 vop2_mask_write(vop2, RK3568_VP0_3D_LUT_CTRL + vp_offset, 1230 EN_MASK, VP0_3D_LUT_EN_SHIFT, 1, false); 1231 vop2_mask_write(vop2, RK3568_VP0_3D_LUT_CTRL + vp_offset, 1232 EN_MASK, VP0_3D_LUT_UPDATE_SHIFT, 1, false); 1233 1234 return 0; 1235 } 1236 1237 static void vop2_tv_config_update(struct display_state *state, struct vop2 *vop2) 1238 { 1239 struct connector_state *conn_state = &state->conn_state; 1240 struct base_bcsh_info *bcsh_info; 1241 struct crtc_state *cstate = &state->crtc_state; 1242 int brightness, contrast, saturation, hue, sin_hue, cos_hue; 1243 bool bcsh_en = false, post_r2y_en = false, post_y2r_en = false; 1244 u32 vp_offset = (cstate->crtc_id * 0x100); 1245 int post_csc_mode; 1246 1247 if (!conn_state->disp_info) 1248 return; 1249 bcsh_info = &conn_state->disp_info->bcsh_info; 1250 if (!bcsh_info) 1251 return; 1252 1253 if (bcsh_info->brightness != 50 || 1254 bcsh_info->contrast != 50 || 1255 bcsh_info->saturation != 50 || bcsh_info->hue != 50) 1256 bcsh_en = true; 1257 1258 if (bcsh_en) { 1259 if (!cstate->yuv_overlay) 1260 post_r2y_en = 1; 1261 if (!is_yuv_output(conn_state->bus_format)) 1262 post_y2r_en = 1; 1263 } else { 1264 if (!cstate->yuv_overlay && is_yuv_output(conn_state->bus_format)) 1265 post_r2y_en = 1; 1266 if (cstate->yuv_overlay && !is_yuv_output(conn_state->bus_format)) 1267 post_y2r_en = 1; 1268 } 1269 1270 post_csc_mode = vop2_convert_csc_mode(conn_state->color_space); 1271 1272 1273 vop2_mask_write(vop2, RK3568_VP0_BCSH_CTRL + vp_offset, BCSH_CTRL_R2Y_MASK, 1274 BCSH_CTRL_R2Y_SHIFT, post_r2y_en, false); 1275 vop2_mask_write(vop2, RK3568_VP0_BCSH_CTRL + vp_offset, BCSH_CTRL_Y2R_MASK, 1276 BCSH_CTRL_Y2R_SHIFT, post_y2r_en, false); 1277 1278 vop2_mask_write(vop2, RK3568_VP0_BCSH_CTRL + vp_offset, BCSH_CTRL_R2Y_CSC_MODE_MASK, 1279 BCSH_CTRL_R2Y_CSC_MODE_SHIFT, post_csc_mode, false); 1280 vop2_mask_write(vop2, RK3568_VP0_BCSH_CTRL + vp_offset, BCSH_CTRL_Y2R_CSC_MODE_MASK, 1281 BCSH_CTRL_Y2R_CSC_MODE_SHIFT, post_csc_mode, false); 1282 if (!bcsh_en) { 1283 vop2_mask_write(vop2, RK3568_VP0_BCSH_COLOR + vp_offset, 1284 BCSH_EN_MASK, BCSH_EN_SHIFT, 0, false); 1285 return; 1286 } 1287 1288 if (cstate->feature & VOP_FEATURE_OUTPUT_10BIT) 1289 brightness = interpolate(0, -128, 100, 127, 1290 bcsh_info->brightness); 1291 else 1292 brightness = interpolate(0, -32, 100, 31, 1293 bcsh_info->brightness); 1294 contrast = interpolate(0, 0, 100, 511, bcsh_info->contrast); 1295 saturation = interpolate(0, 0, 100, 511, bcsh_info->saturation); 1296 hue = interpolate(0, -30, 100, 30, bcsh_info->hue); 1297 1298 1299 /* 1300 * a:[-30~0): 1301 * sin_hue = 0x100 - sin(a)*256; 1302 * cos_hue = cos(a)*256; 1303 * a:[0~30] 1304 * sin_hue = sin(a)*256; 1305 * cos_hue = cos(a)*256; 1306 */ 1307 sin_hue = fixp_sin32(hue) >> 23; 1308 cos_hue = fixp_cos32(hue) >> 23; 1309 1310 vop2_mask_write(vop2, RK3568_VP0_BCSH_BCS + vp_offset, 1311 BCSH_BRIGHTNESS_MASK, BCSH_BRIGHTNESS_SHIFT, 1312 brightness, false); 1313 vop2_mask_write(vop2, RK3568_VP0_BCSH_BCS + vp_offset, 1314 BCSH_CONTRAST_MASK, BCSH_CONTRAST_SHIFT, contrast, false); 1315 vop2_mask_write(vop2, RK3568_VP0_BCSH_BCS + vp_offset, 1316 BCSH_SATURATION_MASK, BCSH_SATURATION_SHIFT, 1317 saturation * contrast / 0x100, false); 1318 vop2_mask_write(vop2, RK3568_VP0_BCSH_H + vp_offset, 1319 BCSH_SIN_HUE_MASK, BCSH_SIN_HUE_SHIFT, sin_hue, false); 1320 vop2_mask_write(vop2, RK3568_VP0_BCSH_H + vp_offset, 1321 BCSH_COS_HUE_MASK, BCSH_COS_HUE_SHIFT, cos_hue, false); 1322 vop2_mask_write(vop2, RK3568_VP0_BCSH_BCS + vp_offset, 1323 BCSH_OUT_MODE_MASK, BCSH_OUT_MODE_SHIFT, 1324 BCSH_OUT_MODE_NORMAL_VIDEO, false); 1325 vop2_mask_write(vop2, RK3568_VP0_BCSH_COLOR + vp_offset, 1326 BCSH_EN_MASK, BCSH_EN_SHIFT, 1, false); 1327 } 1328 1329 static void vop2_post_config(struct display_state *state, struct vop2 *vop2) 1330 { 1331 struct connector_state *conn_state = &state->conn_state; 1332 struct drm_display_mode *mode = &conn_state->mode; 1333 struct crtc_state *cstate = &state->crtc_state; 1334 u32 vp_offset = (cstate->crtc_id * 0x100); 1335 u16 vtotal = mode->crtc_vtotal; 1336 u16 hact_st = mode->crtc_htotal - mode->crtc_hsync_start; 1337 u16 vact_st = mode->crtc_vtotal - mode->crtc_vsync_start; 1338 u16 hdisplay = mode->crtc_hdisplay; 1339 u16 vdisplay = mode->crtc_vdisplay; 1340 u16 hsize = 1341 hdisplay * (conn_state->overscan.left_margin + 1342 conn_state->overscan.right_margin) / 200; 1343 u16 vsize = 1344 vdisplay * (conn_state->overscan.top_margin + 1345 conn_state->overscan.bottom_margin) / 200; 1346 u16 hact_end, vact_end; 1347 u32 val; 1348 u32 bg_ovl_dly, bg_dly, pre_scan_dly; 1349 u16 hsync_len = mode->crtc_hsync_end - mode->crtc_hsync_start; 1350 1351 hsize = round_down(hsize, 2); 1352 vsize = round_down(vsize, 2); 1353 1354 hact_st += hdisplay * (100 - conn_state->overscan.left_margin) / 200; 1355 hact_end = hact_st + hsize; 1356 val = hact_st << 16; 1357 val |= hact_end; 1358 1359 vop2_writel(vop2, RK3568_VP0_POST_DSP_HACT_INFO + vp_offset, val); 1360 vact_st += vdisplay * (100 - conn_state->overscan.top_margin) / 200; 1361 vact_end = vact_st + vsize; 1362 val = vact_st << 16; 1363 val |= vact_end; 1364 vop2_writel(vop2, RK3568_VP0_POST_DSP_VACT_INFO + vp_offset, val); 1365 val = scl_cal_scale2(vdisplay, vsize) << 16; 1366 val |= scl_cal_scale2(hdisplay, hsize); 1367 vop2_writel(vop2, RK3568_VP0_POST_SCL_FACTOR_YRGB + vp_offset, val); 1368 #define POST_HORIZONTAL_SCALEDOWN_EN(x) ((x) << 0) 1369 #define POST_VERTICAL_SCALEDOWN_EN(x) ((x) << 1) 1370 vop2_writel(vop2, RK3568_VP0_POST_SCL_CTRL + vp_offset, 1371 POST_HORIZONTAL_SCALEDOWN_EN(hdisplay != hsize) | 1372 POST_VERTICAL_SCALEDOWN_EN(vdisplay != vsize)); 1373 if (mode->flags & DRM_MODE_FLAG_INTERLACE) { 1374 u16 vact_st_f1 = vtotal + vact_st + 1; 1375 u16 vact_end_f1 = vact_st_f1 + vsize; 1376 1377 val = vact_st_f1 << 16 | vact_end_f1; 1378 vop2_writel(vop2, RK3568_VP0_POST_DSP_VACT_INFO_F1 + vp_offset, val); 1379 } 1380 1381 bg_ovl_dly = cstate->crtc->vps[cstate->crtc_id].bg_ovl_dly; 1382 bg_dly = vop2->data->vp_data[cstate->crtc_id].pre_scan_max_dly; 1383 bg_dly -= bg_ovl_dly; 1384 pre_scan_dly = bg_dly + (hdisplay >> 1) - 1; 1385 if (vop2->version == VOP_VERSION_RK3588 && hsync_len < 8) 1386 hsync_len = 8; 1387 pre_scan_dly = (pre_scan_dly << 16) | hsync_len; 1388 vop2_mask_write(vop2, RK3568_VP0_BG_MIX_CTRL + cstate->crtc_id * 4, 1389 BG_MIX_CTRL_MASK, BG_MIX_CTRL_SHIFT, bg_dly, false); 1390 vop2_writel(vop2, RK3568_VP0_PRE_SCAN_HTIMING + vp_offset, pre_scan_dly); 1391 } 1392 1393 /* 1394 * Read VOP internal power domain on/off status. 1395 * We should query BISR_STS register in PMU for 1396 * power up/down status when memory repair is enabled. 1397 * Return value: 1 for power on, 0 for power off; 1398 */ 1399 static int vop2_wait_power_domain_on(struct vop2 *vop2, struct vop2_power_domain_data *pd_data) 1400 { 1401 int val = 0; 1402 int shift = 0; 1403 bool is_bisr_en = false; 1404 1405 is_bisr_en = vop2_grf_readl(vop2, vop2->sys_pmu, RK3588_PMU_BISR_CON3, EN_MASK, 1406 pd_data->bisr_en_status_shift); 1407 if (is_bisr_en) { 1408 shift = pd_data->pmu_status_shift; 1409 return readl_poll_timeout(vop2->sys_pmu + RK3588_PMU_BISR_STATUS5, val, 1410 ((val >> shift) & 0x1), 50 * 1000); 1411 } else { 1412 shift = pd_data->pd_status_shift; 1413 return readl_poll_timeout(vop2->regs + RK3568_SYS_STATUS0, val, 1414 !((val >> shift) & 0x1), 50 * 1000); 1415 } 1416 } 1417 1418 static int vop2_power_domain_on(struct vop2 *vop2, int plane_id) 1419 { 1420 struct vop2_win_data *win_data; 1421 struct vop2_power_domain_data *pd_data; 1422 int ret = 0; 1423 1424 win_data = vop2_find_win_by_phys_id(vop2, plane_id); 1425 if (!win_data) { 1426 printf("can't find win_data by phys_id\n"); 1427 return -EINVAL; 1428 } 1429 pd_data = win_data->pd_data; 1430 if (pd_data->is_parent_needed) { 1431 ret = vop2_power_domain_on(vop2, pd_data->parent_phy_id); 1432 if (ret) { 1433 printf("can't open parent power domain\n"); 1434 return -EINVAL; 1435 } 1436 } 1437 1438 vop2_mask_write(vop2, RK3568_SYS_PD_CTRL, EN_MASK, pd_data->pd_en_shift, 0, false); 1439 ret = vop2_wait_power_domain_on(vop2, pd_data); 1440 if (ret) { 1441 printf("wait vop2 power domain timeout\n"); 1442 return ret; 1443 } 1444 1445 return 0; 1446 } 1447 1448 static void rk3588_vop2_regsbak(struct vop2 *vop2) 1449 { 1450 u32 *base = vop2->regs; 1451 int i = 0; 1452 1453 /* 1454 * No need to backup HDR/DSC/GAMMA_LUT/BPP_LUT/MMU 1455 */ 1456 for (i = 0; i < (vop2->reg_len >> 2); i++) 1457 vop2->regsbak[i] = base[i]; 1458 } 1459 1460 static void vop2_global_initial(struct vop2 *vop2, struct display_state *state) 1461 { 1462 struct crtc_state *cstate = &state->crtc_state; 1463 int i, j, port_mux = 0, total_used_layer = 0; 1464 u8 shift = 0; 1465 int layer_phy_id = 0; 1466 u32 layer_nr = 0; 1467 struct vop2_win_data *win_data; 1468 struct vop2_vp_plane_mask *plane_mask; 1469 1470 if (vop2->global_init) 1471 return; 1472 1473 /* OTP must enable at the first time, otherwise mirror layer register is error */ 1474 if (soc_is_rk3566()) 1475 vop2_mask_write(vop2, RK3568_SYS_OTP_WIN_EN, EN_MASK, 1476 OTP_WIN_EN_SHIFT, 1, false); 1477 1478 if (cstate->crtc->assign_plane) {/* dts assign plane */ 1479 u32 plane_mask; 1480 int primary_plane_id; 1481 1482 for (i = 0; i < vop2->data->nr_vps; i++) { 1483 plane_mask = cstate->crtc->vps[i].plane_mask; 1484 vop2->vp_plane_mask[i].plane_mask = plane_mask; 1485 layer_nr = hweight32(plane_mask); /* use bitmap to store plane mask */ 1486 vop2->vp_plane_mask[i].attached_layers_nr = layer_nr; 1487 primary_plane_id = vop2_get_primary_plane(vop2, plane_mask); 1488 vop2->vp_plane_mask[i].primary_plane_id = primary_plane_id; 1489 vop2->vp_plane_mask[i].plane_mask = plane_mask; 1490 1491 /* plane mask[bitmap] convert into layer phy id[enum vop2_layer_phy_id]*/ 1492 for (j = 0; j < layer_nr; j++) { 1493 vop2->vp_plane_mask[i].attached_layers[j] = ffs(plane_mask) - 1; 1494 plane_mask &= ~BIT(vop2->vp_plane_mask[i].attached_layers[j]); 1495 } 1496 } 1497 } else {/* need soft assign plane mask */ 1498 /* find the first unplug devices and set it as main display */ 1499 int main_vp_index = -1; 1500 int active_vp_num = 0; 1501 1502 for (i = 0; i < vop2->data->nr_vps; i++) { 1503 if (cstate->crtc->vps[i].enable) 1504 active_vp_num++; 1505 } 1506 printf("VOP have %d active VP\n", active_vp_num); 1507 1508 if (soc_is_rk3566() && active_vp_num > 2) 1509 printf("ERROR: rk3566 only support 2 display output!!\n"); 1510 plane_mask = vop2->data->plane_mask; 1511 plane_mask += (active_vp_num - 1) * VOP2_VP_MAX; 1512 1513 for (i = 0; i < vop2->data->nr_vps; i++) { 1514 if (!is_hot_plug_devices(cstate->crtc->vps[i].output_type)) { 1515 vop2->vp_plane_mask[i] = plane_mask[0]; /* the first store main display plane mask*/ 1516 main_vp_index = i; 1517 break; 1518 } 1519 } 1520 1521 /* if no find unplug devices, use vp0 as main display */ 1522 if (main_vp_index < 0) { 1523 main_vp_index = 0; 1524 vop2->vp_plane_mask[0] = plane_mask[0]; 1525 } 1526 1527 j = 1; /* plane_mask[0] store main display, so we from plane_mask[1] */ 1528 1529 /* init other display except main display */ 1530 for (i = 0; i < vop2->data->nr_vps; i++) { 1531 if (i == main_vp_index || !cstate->crtc->vps[i].enable) /* main display or no connect devices */ 1532 continue; 1533 vop2->vp_plane_mask[i] = plane_mask[j++]; 1534 } 1535 1536 /* store plane mask for vop2_fixup_dts */ 1537 for (i = 0; i < vop2->data->nr_vps; i++) { 1538 layer_nr = vop2->vp_plane_mask[i].attached_layers_nr; 1539 /* rk3566 only support 3+3 policy */ 1540 if (soc_is_rk3566() && active_vp_num == 1) { 1541 if (cstate->crtc->vps[i].enable) { 1542 for (j = 0; j < 3; j++) { 1543 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 1544 vop2->vp_plane_mask[i].plane_mask |= BIT(layer_phy_id); 1545 } 1546 } 1547 } else { 1548 for (j = 0; j < layer_nr; j++) { 1549 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 1550 vop2->vp_plane_mask[i].plane_mask |= BIT(layer_phy_id); 1551 } 1552 } 1553 } 1554 } 1555 1556 if (vop2->version == VOP_VERSION_RK3588) 1557 rk3588_vop2_regsbak(vop2); 1558 else 1559 memcpy(vop2->regsbak, vop2->regs, vop2->reg_len); 1560 1561 vop2_mask_write(vop2, RK3568_OVL_CTRL, EN_MASK, 1562 OVL_PORT_MUX_REG_DONE_IMD_SHIFT, 1, false); 1563 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 1564 IF_CTRL_REG_DONE_IMD_SHIFT, 1, false); 1565 1566 for (i = 0; i < vop2->data->nr_vps; i++) { 1567 printf("vp%d have layer nr:%d[", i, vop2->vp_plane_mask[i].attached_layers_nr); 1568 for (j = 0; j < vop2->vp_plane_mask[i].attached_layers_nr; j++) 1569 printf("%d ", vop2->vp_plane_mask[i].attached_layers[j]); 1570 printf("], primary plane: %d\n", vop2->vp_plane_mask[i].primary_plane_id); 1571 } 1572 1573 shift = 0; 1574 /* layer sel win id */ 1575 for (i = 0; i < vop2->data->nr_vps; i++) { 1576 layer_nr = vop2->vp_plane_mask[i].attached_layers_nr; 1577 for (j = 0; j < layer_nr; j++) { 1578 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 1579 win_data = vop2_find_win_by_phys_id(vop2, layer_phy_id); 1580 vop2_mask_write(vop2, RK3568_OVL_LAYER_SEL, LAYER_SEL_MASK, 1581 shift, win_data->layer_sel_win_id, false); 1582 shift += 4; 1583 } 1584 } 1585 1586 /* win sel port */ 1587 for (i = 0; i < vop2->data->nr_vps; i++) { 1588 layer_nr = vop2->vp_plane_mask[i].attached_layers_nr; 1589 for (j = 0; j < layer_nr; j++) { 1590 if (!vop2->vp_plane_mask[i].attached_layers[j]) 1591 continue; 1592 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 1593 win_data = vop2_find_win_by_phys_id(vop2, layer_phy_id); 1594 shift = win_data->win_sel_port_offset * 2; 1595 vop2_mask_write(vop2, RK3568_OVL_PORT_SEL, LAYER_SEL_PORT_MASK, 1596 LAYER_SEL_PORT_SHIFT + shift, i, false); 1597 } 1598 } 1599 1600 /** 1601 * port mux config 1602 */ 1603 for (i = 0; i < vop2->data->nr_vps; i++) { 1604 shift = i * 4; 1605 if (vop2->vp_plane_mask[i].attached_layers_nr) { 1606 total_used_layer += vop2->vp_plane_mask[i].attached_layers_nr; 1607 port_mux = total_used_layer - 1; 1608 } else { 1609 port_mux = 8; 1610 } 1611 1612 if (i == vop2->data->nr_vps - 1) 1613 port_mux = vop2->data->nr_mixers; 1614 1615 cstate->crtc->vps[i].bg_ovl_dly = (vop2->data->nr_mixers - port_mux) << 1; 1616 vop2_mask_write(vop2, RK3568_OVL_PORT_SEL, PORT_MUX_MASK, 1617 PORT_MUX_SHIFT + shift, port_mux, false); 1618 } 1619 1620 if (vop2->version == VOP_VERSION_RK3568) 1621 vop2_writel(vop2, RK3568_AUTO_GATING_CTRL, 0); 1622 1623 vop2->global_init = true; 1624 } 1625 1626 static int vop2_initial(struct vop2 *vop2, struct display_state *state) 1627 { 1628 struct crtc_state *cstate = &state->crtc_state; 1629 int ret; 1630 1631 /* Process 'assigned-{clocks/clock-parents/clock-rates}' properties */ 1632 ret = clk_set_defaults(cstate->dev); 1633 if (ret) 1634 debug("%s clk_set_defaults failed %d\n", __func__, ret); 1635 1636 rockchip_vop2_gamma_lut_init(vop2, state); 1637 rockchip_vop2_cubic_lut_init(vop2, state); 1638 1639 return 0; 1640 } 1641 1642 /* 1643 * VOP2 have multi video ports. 1644 * video port ------- crtc 1645 */ 1646 static int rockchip_vop2_preinit(struct display_state *state) 1647 { 1648 struct crtc_state *cstate = &state->crtc_state; 1649 const struct vop2_data *vop2_data = cstate->crtc->data; 1650 1651 if (!rockchip_vop2) { 1652 rockchip_vop2 = calloc(1, sizeof(struct vop2)); 1653 if (!rockchip_vop2) 1654 return -ENOMEM; 1655 rockchip_vop2->regs = dev_read_addr_ptr(cstate->dev); 1656 rockchip_vop2->regsbak = malloc(RK3568_MAX_REG); 1657 rockchip_vop2->reg_len = RK3568_MAX_REG; 1658 rockchip_vop2->grf = syscon_get_first_range(ROCKCHIP_SYSCON_GRF); 1659 if (rockchip_vop2->grf <= 0) 1660 printf("%s: Get syscon grf failed (ret=%p)\n", __func__, rockchip_vop2->grf); 1661 rockchip_vop2->version = vop2_data->version; 1662 rockchip_vop2->data = vop2_data; 1663 if (rockchip_vop2->version == VOP_VERSION_RK3588) { 1664 struct regmap *map; 1665 1666 rockchip_vop2->vop_grf = syscon_get_first_range(ROCKCHIP_SYSCON_VOP_GRF); 1667 if (rockchip_vop2->vop_grf <= 0) 1668 printf("%s: Get syscon vop_grf failed (ret=%p)\n", __func__, rockchip_vop2->vop_grf); 1669 map = syscon_regmap_lookup_by_phandle(cstate->dev, "rockchip,vo1-grf"); 1670 rockchip_vop2->vo1_grf = regmap_get_range(map, 0); 1671 if (rockchip_vop2->vo1_grf <= 0) 1672 printf("%s: Get syscon vo1_grf failed (ret=%p)\n", __func__, rockchip_vop2->vo1_grf); 1673 rockchip_vop2->sys_pmu = syscon_get_first_range(ROCKCHIP_SYSCON_PMU); 1674 if (rockchip_vop2->sys_pmu <= 0) 1675 printf("%s: Get syscon sys_pmu failed (ret=%p)\n", __func__, rockchip_vop2->sys_pmu); 1676 } 1677 } 1678 1679 cstate->private = rockchip_vop2; 1680 cstate->max_output = vop2_data->vp_data[cstate->crtc_id].max_output; 1681 cstate->feature = vop2_data->vp_data[cstate->crtc_id].feature; 1682 1683 vop2_global_initial(rockchip_vop2, state); 1684 1685 return 0; 1686 } 1687 1688 /* 1689 * calc the dclk on rk3588 1690 * the available div of dclk is 1, 2, 4 1691 * 1692 */ 1693 static unsigned long vop2_calc_dclk(unsigned long child_clk, unsigned long max_dclk) 1694 { 1695 if (child_clk * 4 <= max_dclk) 1696 return child_clk * 4; 1697 else if (child_clk * 2 <= max_dclk) 1698 return child_clk * 2; 1699 else if (child_clk <= max_dclk) 1700 return child_clk; 1701 else 1702 return 0; 1703 } 1704 1705 /* 1706 * 4 pixclk/cycle on rk3588 1707 * RGB/eDP/HDMI: if_pixclk >= dclk_core 1708 * DP: dp_pixclk = dclk_out <= dclk_core 1709 * DSI: mipi_pixclk <= dclk_out <= dclk_core 1710 */ 1711 static unsigned long vop2_calc_cru_cfg(struct display_state *state, 1712 int *dclk_core_div, int *dclk_out_div, 1713 int *if_pixclk_div, int *if_dclk_div) 1714 { 1715 struct crtc_state *cstate = &state->crtc_state; 1716 struct connector_state *conn_state = &state->conn_state; 1717 struct drm_display_mode *mode = &conn_state->mode; 1718 struct vop2 *vop2 = cstate->private; 1719 unsigned long v_pixclk = mode->clock; 1720 unsigned long dclk_core_rate = v_pixclk >> 2; 1721 unsigned long dclk_rate = v_pixclk; 1722 unsigned long dclk_out_rate; 1723 u64 if_dclk_rate; 1724 u64 if_pixclk_rate; 1725 int output_type = conn_state->type; 1726 int output_mode = conn_state->output_mode; 1727 int K = 1; 1728 1729 if (output_type == DRM_MODE_CONNECTOR_HDMIA) { 1730 /* 1731 * K = 2: dclk_core = if_pixclk_rate > if_dclk_rate 1732 * K = 1: dclk_core = hdmie_edp_dclk > if_pixclk_rate 1733 */ 1734 if (output_mode == ROCKCHIP_OUT_MODE_YUV420) { 1735 dclk_rate = dclk_rate >> 1; 1736 K = 2; 1737 } 1738 if (conn_state->dsc_enable) { 1739 if_pixclk_rate = conn_state->dsc_cds_clk << 1; 1740 if_dclk_rate = conn_state->dsc_cds_clk; 1741 } else { 1742 if_pixclk_rate = (dclk_core_rate << 1) / K; 1743 if_dclk_rate = dclk_core_rate / K; 1744 } 1745 1746 if (!dclk_rate) { 1747 printf("DP if_pixclk_rate out of range(max_dclk: %d KHZ, dclk_core: %lld KHZ)\n", 1748 vop2->data->vp_data->max_dclk, if_pixclk_rate); 1749 return -EINVAL; 1750 } 1751 *if_pixclk_div = dclk_rate / if_pixclk_rate; 1752 *if_dclk_div = dclk_rate / if_dclk_rate; 1753 *dclk_core_div = dclk_rate / dclk_core_rate; 1754 printf("dclk:%lu,if_pixclk_div;%d,if_dclk_div:%d\n", 1755 dclk_rate, *if_pixclk_div, *if_dclk_div); 1756 } else if (output_type == DRM_MODE_CONNECTOR_eDP) { 1757 /* edp_pixclk = edp_dclk > dclk_core */ 1758 if_pixclk_rate = v_pixclk / K; 1759 if_dclk_rate = v_pixclk / K; 1760 dclk_rate = if_pixclk_rate * K; 1761 *dclk_core_div = dclk_rate / dclk_core_rate; 1762 *if_pixclk_div = dclk_rate / if_pixclk_rate; 1763 *if_dclk_div = *if_pixclk_div; 1764 } else if (output_type == DRM_MODE_CONNECTOR_DisplayPort) { 1765 if (output_mode == ROCKCHIP_OUT_MODE_YUV420) 1766 dclk_out_rate = v_pixclk >> 3; 1767 else 1768 dclk_out_rate = v_pixclk >> 2; 1769 1770 dclk_rate = vop2_calc_dclk(dclk_out_rate, vop2->data->vp_data->max_dclk); 1771 if (!dclk_rate) { 1772 printf("DP dclk_core out of range(max_dclk: %d KHZ, dclk_core: %ld KHZ)\n", 1773 vop2->data->vp_data->max_dclk, dclk_core_rate); 1774 return -EINVAL; 1775 } 1776 *dclk_out_div = dclk_rate / dclk_out_rate; 1777 *dclk_core_div = dclk_rate / dclk_core_rate; 1778 1779 } else if (output_type == DRM_MODE_CONNECTOR_DSI) { 1780 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) 1781 K = 2; 1782 if (conn_state->dsc_enable) 1783 if_pixclk_rate = conn_state->dsc_cds_clk >> 1; 1784 else 1785 if_pixclk_rate = dclk_core_rate / K; 1786 /* dclk_core = dclk_out * K = if_pixclk * K = v_pixclk / 4 */ 1787 dclk_out_rate = if_pixclk_rate; 1788 /* dclk_rate = N * dclk_core_rate N = (1,2,4 ), we get a little factor here */ 1789 dclk_rate = vop2_calc_dclk(dclk_out_rate, vop2->data->vp_data->max_dclk); 1790 if (!dclk_rate) { 1791 printf("MIPI dclk out of range(max_dclk: %d KHZ, dclk_rate: %ld KHZ)\n", 1792 vop2->data->vp_data->max_dclk, dclk_rate); 1793 return -EINVAL; 1794 } 1795 *dclk_out_div = dclk_rate / dclk_out_rate; 1796 *dclk_core_div = dclk_rate / dclk_core_rate; 1797 *if_pixclk_div = 1; /*mipi pixclk == dclk_out*/ 1798 1799 } else if (output_type == DRM_MODE_CONNECTOR_DPI) { 1800 dclk_rate = v_pixclk; 1801 *dclk_core_div = dclk_rate / dclk_core_rate; 1802 } 1803 1804 *if_pixclk_div = ilog2(*if_pixclk_div); 1805 *if_dclk_div = ilog2(*if_dclk_div); 1806 *dclk_core_div = ilog2(*dclk_core_div); 1807 *dclk_out_div = ilog2(*dclk_out_div); 1808 1809 return dclk_rate; 1810 } 1811 1812 static int vop2_calc_dsc_clk(struct connector_state *conn_state) 1813 { 1814 struct drm_display_mode *mode = &conn_state->mode; 1815 u64 v_pixclk = mode->clock * 1000LL; /* video timing pixclk */ 1816 u8 k = 1; 1817 1818 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) 1819 k = 2; 1820 1821 conn_state->dsc_pxl_clk = v_pixclk; 1822 do_div(conn_state->dsc_pxl_clk, (conn_state->dsc_slice_num * k)); 1823 1824 conn_state->dsc_txp_clk = v_pixclk; 1825 do_div(conn_state->dsc_txp_clk, (conn_state->dsc_pixel_num * k)); 1826 1827 /* dsc_cds = crtc_clock / (cds_dat_width / bits_per_pixel) 1828 * cds_dat_width = 96; 1829 * bits_per_pixel = [8-12]; 1830 * As only support 1/2/4 div, so we set dsc_cds = crtc_clock / 8; 1831 */ 1832 conn_state->dsc_cds_clk = mode->crtc_clock / 8 * 1000; 1833 1834 return 0; 1835 } 1836 1837 static unsigned long rk3588_vop2_if_cfg(struct display_state *state) 1838 { 1839 struct crtc_state *cstate = &state->crtc_state; 1840 struct connector_state *conn_state = &state->conn_state; 1841 struct drm_display_mode *mode = &conn_state->mode; 1842 struct rockchip_dsc_sink_cap *dsc_sink_cap = &conn_state->dsc_sink_cap; 1843 struct vop2 *vop2 = cstate->private; 1844 u32 vp_offset = (cstate->crtc_id * 0x100); 1845 u16 hdisplay = mode->crtc_hdisplay; 1846 int output_if = conn_state->output_if; 1847 int dclk_core_div = 0; 1848 int dclk_out_div = 0; 1849 int if_pixclk_div = 0; 1850 int if_dclk_div = 0; 1851 unsigned long dclk_rate; 1852 u32 val; 1853 1854 if (output_if & (VOP_OUTPUT_IF_HDMI0 | VOP_OUTPUT_IF_HDMI1)) { 1855 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? BIT(HSYNC_POSITIVE) : 0; 1856 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? BIT(VSYNC_POSITIVE) : 0; 1857 } else { 1858 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? 0 : BIT(HSYNC_POSITIVE); 1859 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? 0 : BIT(VSYNC_POSITIVE); 1860 } 1861 1862 if (conn_state->dsc_enable) { 1863 if (!vop2->data->nr_dscs) { 1864 printf("No DSC\n"); 1865 return 0; 1866 } 1867 conn_state->dsc_id = output_if & (VOP_OUTPUT_IF_MIPI0 | VOP_OUTPUT_IF_HDMI0) ? 0 : 1; 1868 conn_state->dsc_slice_num = hdisplay / dsc_sink_cap->slice_width; 1869 conn_state->dsc_pixel_num = conn_state->dsc_slice_num >= 4 ? 1870 4 : conn_state->dsc_slice_num >= 2 ? 2 : 1; 1871 vop2_calc_dsc_clk(conn_state); 1872 } 1873 1874 dclk_rate = vop2_calc_cru_cfg(state, &dclk_core_div, &dclk_out_div, &if_pixclk_div, &if_dclk_div); 1875 1876 if (output_if & VOP_OUTPUT_IF_RGB) { 1877 vop2_mask_write(vop2, RK3568_DSP_IF_EN, 0x7, RK3588_RGB_EN_SHIFT, 1878 4, false); 1879 } 1880 1881 if (output_if & VOP_OUTPUT_IF_BT1120) { 1882 vop2_mask_write(vop2, RK3568_DSP_IF_EN, 0x7, RK3588_RGB_EN_SHIFT, 1883 3, false); 1884 } 1885 1886 if (output_if & VOP_OUTPUT_IF_BT656) { 1887 vop2_mask_write(vop2, RK3568_DSP_IF_EN, 0x7, RK3588_RGB_EN_SHIFT, 1888 2, false); 1889 } 1890 1891 if (output_if & VOP_OUTPUT_IF_MIPI0) { 1892 if (cstate->crtc_id == 2) 1893 val = 0; 1894 else 1895 val = 1; 1896 1897 if (conn_state->output_flags & ROCKCHIP_OUTPUT_MIPI_DS_MODE) 1898 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 1899 RK3588_MIPI_DSI0_MODE_SEL_SHIFT, 1, false); 1900 1901 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_MIPI0_EN_SHIFT, 1902 1, false); 1903 vop2_mask_write(vop2, RK3568_DSP_IF_EN, 1, RK3588_MIPI0_MUX_SHIFT, val, false); 1904 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, MIPI0_PIXCLK_DIV_SHIFT, 1905 if_pixclk_div, false); 1906 1907 if (conn_state->hold_mode) { 1908 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 1909 EN_MASK, EDPI_TE_EN, 1, false); 1910 1911 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 1912 EN_MASK, EDPI_WMS_HOLD_EN, 1, false); 1913 } 1914 } 1915 1916 if (output_if & VOP_OUTPUT_IF_MIPI1) { 1917 if (cstate->crtc_id == 2) 1918 val = 0; 1919 else if (cstate->crtc_id == 3) 1920 val = 1; 1921 else 1922 val = 3; /*VP1*/ 1923 if (conn_state->output_flags & ROCKCHIP_OUTPUT_MIPI_DS_MODE) 1924 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 1925 RK3588_MIPI_DSI1_MODE_SEL_SHIFT, 1, false); 1926 1927 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_MIPI1_EN_SHIFT, 1928 1, false); 1929 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, MIPI1_MUX_SHIFT, 1930 val, false); 1931 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, MIPI1_PIXCLK_DIV_SHIFT, 1932 if_pixclk_div, false); 1933 1934 if (conn_state->hold_mode) { 1935 /* UNDO: RK3588 VP1->DSC1->DSI1 only can support soft TE mode */ 1936 if (vop2->version == VOP_VERSION_RK3588 && val == 3) 1937 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 1938 EN_MASK, EDPI_TE_EN, 0, false); 1939 else 1940 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 1941 EN_MASK, EDPI_TE_EN, 1, false); 1942 1943 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 1944 EN_MASK, EDPI_WMS_HOLD_EN, 1, false); 1945 } 1946 } 1947 1948 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) { 1949 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 1950 RK3568_MIPI_DUAL_EN_SHIFT, 1, false); 1951 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 1952 MIPI_DUAL_EN_SHIFT, 1, false); 1953 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DATA_SWAP) 1954 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 1955 EN_MASK, MIPI_DUAL_SWAP_EN_SHIFT, 1, 1956 false); 1957 } 1958 1959 if (output_if & VOP_OUTPUT_IF_eDP0) { 1960 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_EDP0_EN_SHIFT, 1961 1, false); 1962 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_HDMI_EDP0_MUX_SHIFT, 1963 cstate->crtc_id, false); 1964 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP0_DCLK_DIV_SHIFT, 1965 if_dclk_div, false); 1966 1967 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP0_PIXCLK_DIV_SHIFT, 1968 if_pixclk_div, false); 1969 1970 vop2_grf_writel(vop2, vop2->vop_grf, RK3588_GRF_VOP_CON2, EN_MASK, 1971 RK3588_GRF_EDP0_ENABLE_SHIFT, 1); 1972 } 1973 1974 if (output_if & VOP_OUTPUT_IF_eDP1) { 1975 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_EDP1_EN_SHIFT, 1976 1, false); 1977 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_HDMI_EDP1_MUX_SHIFT, 1978 cstate->crtc_id, false); 1979 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP1_DCLK_DIV_SHIFT, 1980 if_dclk_div, false); 1981 1982 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP1_PIXCLK_DIV_SHIFT, 1983 if_pixclk_div, false); 1984 } 1985 1986 if (output_if & VOP_OUTPUT_IF_HDMI0) { 1987 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_HDMI0_EN_SHIFT, 1988 1, false); 1989 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_HDMI_EDP0_MUX_SHIFT, 1990 cstate->crtc_id, false); 1991 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP0_DCLK_DIV_SHIFT, 1992 if_dclk_div, false); 1993 1994 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP0_PIXCLK_DIV_SHIFT, 1995 if_pixclk_div, false); 1996 1997 vop2_grf_writel(vop2, vop2->vop_grf, RK3588_GRF_VOP_CON2, EN_MASK, 1998 RK3588_GRF_HDMITX0_ENABLE_SHIFT, 1); 1999 vop2_grf_writel(vop2, vop2->vo1_grf, RK3588_GRF_VO1_CON0, 2000 HDMI_SYNC_POL_MASK, 2001 HDMI0_SYNC_POL_SHIFT, val); 2002 } 2003 2004 if (output_if & VOP_OUTPUT_IF_HDMI1) { 2005 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_HDMI1_EN_SHIFT, 2006 1, false); 2007 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_HDMI_EDP1_MUX_SHIFT, 2008 cstate->crtc_id, false); 2009 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP1_DCLK_DIV_SHIFT, 2010 if_dclk_div, false); 2011 2012 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP1_PIXCLK_DIV_SHIFT, 2013 if_pixclk_div, false); 2014 2015 vop2_grf_writel(vop2, vop2->vop_grf, RK3588_GRF_VOP_CON2, EN_MASK, 2016 RK3588_GRF_HDMITX1_ENABLE_SHIFT, 1); 2017 vop2_grf_writel(vop2, vop2->vo1_grf, RK3588_GRF_VO1_CON0, 2018 HDMI_SYNC_POL_MASK, 2019 HDMI1_SYNC_POL_SHIFT, val); 2020 } 2021 2022 if (output_if & VOP_OUTPUT_IF_DP0) { 2023 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_DP0_EN_SHIFT, 2024 1, false); 2025 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_DP0_MUX_SHIFT, 2026 cstate->crtc_id, false); 2027 vop2_mask_write(vop2, RK3568_DSP_IF_POL, RK3588_IF_PIN_POL_MASK, 2028 RK3588_DP0_PIN_POL_SHIFT, val, false); 2029 } 2030 2031 if (output_if & VOP_OUTPUT_IF_DP1) { 2032 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_DP1_EN_SHIFT, 2033 1, false); 2034 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_DP1_MUX_SHIFT, 2035 cstate->crtc_id, false); 2036 vop2_mask_write(vop2, RK3568_DSP_IF_POL, RK3588_IF_PIN_POL_MASK, 2037 RK3588_DP1_PIN_POL_SHIFT, val, false); 2038 } 2039 2040 vop2_mask_write(vop2, RK3588_VP0_CLK_CTRL + vp_offset, 0x3, 2041 DCLK_CORE_DIV_SHIFT, dclk_core_div, false); 2042 vop2_mask_write(vop2, RK3588_VP0_CLK_CTRL + vp_offset, 0x3, 2043 DCLK_OUT_DIV_SHIFT, dclk_out_div, false); 2044 2045 return dclk_rate; 2046 } 2047 2048 static unsigned long rk3568_vop2_if_cfg(struct display_state *state) 2049 { 2050 struct crtc_state *cstate = &state->crtc_state; 2051 struct connector_state *conn_state = &state->conn_state; 2052 struct drm_display_mode *mode = &conn_state->mode; 2053 struct vop2 *vop2 = cstate->private; 2054 u32 vp_offset = (cstate->crtc_id * 0x100); 2055 bool dclk_inv; 2056 u32 val; 2057 2058 dclk_inv = (mode->flags & DRM_MODE_FLAG_PPIXDATA) ? 0 : 1; 2059 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? 0 : BIT(HSYNC_POSITIVE); 2060 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? 0 : BIT(VSYNC_POSITIVE); 2061 2062 if (conn_state->output_if & VOP_OUTPUT_IF_RGB) { 2063 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RGB_EN_SHIFT, 2064 1, false); 2065 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2066 RGB_MUX_SHIFT, cstate->crtc_id, false); 2067 vop2_grf_writel(vop2, vop2->grf, RK3568_GRF_VO_CON1, EN_MASK, 2068 GRF_RGB_DCLK_INV_SHIFT, dclk_inv); 2069 } 2070 2071 if (conn_state->output_if & VOP_OUTPUT_IF_BT1120) { 2072 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RGB_EN_SHIFT, 2073 1, false); 2074 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, 2075 BT1120_EN_SHIFT, 1, false); 2076 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2077 RGB_MUX_SHIFT, cstate->crtc_id, false); 2078 vop2_grf_writel(vop2, vop2->grf, RK3568_GRF_VO_CON1, EN_MASK, 2079 GRF_BT1120_CLK_INV_SHIFT, !dclk_inv); 2080 } 2081 2082 if (conn_state->output_if & VOP_OUTPUT_IF_BT656) { 2083 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, BT656_EN_SHIFT, 2084 1, false); 2085 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2086 RGB_MUX_SHIFT, cstate->crtc_id, false); 2087 vop2_grf_writel(vop2, vop2->grf, RK3568_GRF_VO_CON1, EN_MASK, 2088 GRF_BT656_CLK_INV_SHIFT, !dclk_inv); 2089 } 2090 2091 if (conn_state->output_if & VOP_OUTPUT_IF_LVDS0) { 2092 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, LVDS0_EN_SHIFT, 2093 1, false); 2094 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2095 LVDS0_MUX_SHIFT, cstate->crtc_id, false); 2096 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 2097 IF_CRTL_RGB_LVDS_DCLK_POL_SHIT, dclk_inv, false); 2098 } 2099 2100 if (conn_state->output_if & VOP_OUTPUT_IF_LVDS1) { 2101 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, LVDS1_EN_SHIFT, 2102 1, false); 2103 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2104 LVDS1_MUX_SHIFT, cstate->crtc_id, false); 2105 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 2106 IF_CRTL_RGB_LVDS_DCLK_POL_SHIT, dclk_inv, false); 2107 } 2108 2109 if (conn_state->output_flags & 2110 (ROCKCHIP_OUTPUT_DUAL_CHANNEL_ODD_EVEN_MODE | 2111 ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE)) { 2112 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 2113 LVDS_DUAL_EN_SHIFT, 1, false); 2114 if (conn_state->output_flags & 2115 ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) 2116 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 2117 LVDS_DUAL_LEFT_RIGHT_EN_SHIFT, 1, 2118 false); 2119 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DATA_SWAP) 2120 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 2121 LVDS_DUAL_SWAP_EN_SHIFT, 1, false); 2122 } 2123 2124 if (conn_state->output_if & VOP_OUTPUT_IF_MIPI0) { 2125 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, MIPI0_EN_SHIFT, 2126 1, false); 2127 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2128 MIPI0_MUX_SHIFT, cstate->crtc_id, false); 2129 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 2130 IF_CRTL_MIPI_DCLK_POL_SHIT, dclk_inv, false); 2131 } 2132 2133 if (conn_state->output_if & VOP_OUTPUT_IF_MIPI1) { 2134 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, MIPI1_EN_SHIFT, 2135 1, false); 2136 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2137 MIPI1_MUX_SHIFT, cstate->crtc_id, false); 2138 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 2139 IF_CRTL_MIPI_DCLK_POL_SHIT, dclk_inv, false); 2140 } 2141 2142 if (conn_state->output_flags & 2143 ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) { 2144 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 2145 MIPI_DUAL_EN_SHIFT, 1, false); 2146 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DATA_SWAP) 2147 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 2148 EN_MASK, MIPI_DUAL_SWAP_EN_SHIFT, 1, 2149 false); 2150 } 2151 2152 if (conn_state->output_if & VOP_OUTPUT_IF_eDP0) { 2153 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, EDP0_EN_SHIFT, 2154 1, false); 2155 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2156 EDP0_MUX_SHIFT, cstate->crtc_id, false); 2157 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 2158 IF_CRTL_EDP_DCLK_POL_SHIT, dclk_inv, false); 2159 } 2160 2161 if (conn_state->output_if & VOP_OUTPUT_IF_HDMI0) { 2162 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, HDMI0_EN_SHIFT, 2163 1, false); 2164 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 2165 HDMI0_MUX_SHIFT, cstate->crtc_id, false); 2166 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 2167 IF_CRTL_HDMI_DCLK_POL_SHIT, 1, false); 2168 vop2_mask_write(vop2, RK3568_DSP_IF_POL, 2169 IF_CRTL_HDMI_PIN_POL_MASK, 2170 IF_CRTL_HDMI_PIN_POL_SHIT, val, false); 2171 } 2172 2173 return mode->clock; 2174 } 2175 2176 static void vop2_post_color_swap(struct display_state *state) 2177 { 2178 struct crtc_state *cstate = &state->crtc_state; 2179 struct connector_state *conn_state = &state->conn_state; 2180 struct vop2 *vop2 = cstate->private; 2181 u32 vp_offset = (cstate->crtc_id * 0x100); 2182 u32 output_type = conn_state->type; 2183 u32 data_swap = 0; 2184 2185 if (is_uv_swap(conn_state->bus_format, conn_state->output_mode)) 2186 data_swap = DSP_RB_SWAP; 2187 2188 if (vop2->version == VOP_VERSION_RK3588 && 2189 (output_type == DRM_MODE_CONNECTOR_HDMIA || 2190 output_type == DRM_MODE_CONNECTOR_eDP) && 2191 (conn_state->bus_format == MEDIA_BUS_FMT_YUV8_1X24 || 2192 conn_state->bus_format == MEDIA_BUS_FMT_YUV10_1X30)) 2193 data_swap |= DSP_RG_SWAP; 2194 2195 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, 2196 DATA_SWAP_MASK, DATA_SWAP_SHIFT, data_swap, false); 2197 } 2198 2199 static void vop2_clk_set_parent(struct clk *clk, struct clk *parent) 2200 { 2201 int ret = 0; 2202 2203 if (parent->dev) 2204 ret = clk_set_parent(clk, parent); 2205 if (ret < 0) 2206 debug("failed to set %s as parent for %s\n", 2207 parent->dev->name, clk->dev->name); 2208 } 2209 2210 static ulong vop2_clk_set_rate(struct clk *clk, ulong rate) 2211 { 2212 int ret = 0; 2213 2214 if (clk->dev) 2215 ret = clk_set_rate(clk, rate); 2216 if (ret < 0) 2217 debug("failed to set %s rate %lu \n", clk->dev->name, rate); 2218 2219 return ret; 2220 } 2221 2222 static int rockchip_vop2_init(struct display_state *state) 2223 { 2224 struct crtc_state *cstate = &state->crtc_state; 2225 struct connector_state *conn_state = &state->conn_state; 2226 struct drm_display_mode *mode = &conn_state->mode; 2227 struct vop2 *vop2 = cstate->private; 2228 u16 hsync_len = mode->crtc_hsync_end - mode->crtc_hsync_start; 2229 u16 hdisplay = mode->crtc_hdisplay; 2230 u16 htotal = mode->crtc_htotal; 2231 u16 hact_st = mode->crtc_htotal - mode->crtc_hsync_start; 2232 u16 hact_end = hact_st + hdisplay; 2233 u16 vdisplay = mode->crtc_vdisplay; 2234 u16 vtotal = mode->crtc_vtotal; 2235 u16 vsync_len = mode->crtc_vsync_end - mode->crtc_vsync_start; 2236 u16 vact_st = mode->crtc_vtotal - mode->crtc_vsync_start; 2237 u16 vact_end = vact_st + vdisplay; 2238 bool yuv_overlay = false; 2239 u32 vp_offset = (cstate->crtc_id * 0x100); 2240 u32 line_flag_offset = (cstate->crtc_id * 4); 2241 u32 val, act_end; 2242 u8 dither_down_en = 0; 2243 u8 pre_dither_down_en = 0; 2244 char output_type_name[30] = {0}; 2245 char dclk_name[9]; 2246 struct clk dclk; 2247 struct clk hdmi0_phy_pll; 2248 struct clk hdmi1_phy_pll; 2249 unsigned long dclk_rate; 2250 int ret; 2251 2252 printf("VOP update mode to: %dx%d%s%d, type:%s for VP%d\n", 2253 mode->hdisplay, mode->vdisplay, 2254 mode->flags & DRM_MODE_FLAG_INTERLACE ? "i" : "p", 2255 mode->vscan, 2256 get_output_if_name(conn_state->output_if, output_type_name), 2257 cstate->crtc_id); 2258 2259 vop2_initial(vop2, state); 2260 if (vop2->version == VOP_VERSION_RK3588) 2261 dclk_rate = rk3588_vop2_if_cfg(state); 2262 else 2263 dclk_rate = rk3568_vop2_if_cfg(state); 2264 2265 if (conn_state->output_mode == ROCKCHIP_OUT_MODE_AAAA && 2266 !(cstate->feature & VOP_FEATURE_OUTPUT_10BIT)) 2267 conn_state->output_mode = ROCKCHIP_OUT_MODE_P888; 2268 2269 vop2_post_color_swap(state); 2270 2271 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, OUT_MODE_MASK, 2272 OUT_MODE_SHIFT, conn_state->output_mode, false); 2273 2274 switch (conn_state->bus_format) { 2275 case MEDIA_BUS_FMT_RGB565_1X16: 2276 dither_down_en = 1; 2277 break; 2278 case MEDIA_BUS_FMT_RGB666_1X18: 2279 case MEDIA_BUS_FMT_RGB666_1X24_CPADHI: 2280 case MEDIA_BUS_FMT_RGB666_1X7X3_SPWG: 2281 case MEDIA_BUS_FMT_RGB666_1X7X3_JEIDA: 2282 dither_down_en = 1; 2283 break; 2284 case MEDIA_BUS_FMT_YUV8_1X24: 2285 case MEDIA_BUS_FMT_UYYVYY8_0_5X24: 2286 dither_down_en = 0; 2287 pre_dither_down_en = 1; 2288 break; 2289 case MEDIA_BUS_FMT_YUV10_1X30: 2290 case MEDIA_BUS_FMT_UYYVYY10_0_5X30: 2291 case MEDIA_BUS_FMT_RGB888_1X24: 2292 case MEDIA_BUS_FMT_RGB888_1X7X4_SPWG: 2293 case MEDIA_BUS_FMT_RGB888_1X7X4_JEIDA: 2294 default: 2295 dither_down_en = 0; 2296 pre_dither_down_en = 0; 2297 break; 2298 } 2299 2300 if (conn_state->output_mode == ROCKCHIP_OUT_MODE_AAAA) 2301 pre_dither_down_en = 0; 2302 else 2303 pre_dither_down_en = 1; 2304 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2305 DITHER_DOWN_EN_SHIFT, dither_down_en, false); 2306 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2307 PRE_DITHER_DOWN_EN_SHIFT, pre_dither_down_en, false); 2308 2309 yuv_overlay = is_yuv_output(conn_state->bus_format) ? 1 : 0; 2310 vop2_mask_write(vop2, RK3568_OVL_CTRL, EN_MASK, cstate->crtc_id, 2311 yuv_overlay, false); 2312 2313 cstate->yuv_overlay = yuv_overlay; 2314 2315 vop2_writel(vop2, RK3568_VP0_DSP_HTOTAL_HS_END + vp_offset, 2316 (htotal << 16) | hsync_len); 2317 val = hact_st << 16; 2318 val |= hact_end; 2319 vop2_writel(vop2, RK3568_VP0_DSP_HACT_ST_END + vp_offset, val); 2320 val = vact_st << 16; 2321 val |= vact_end; 2322 vop2_writel(vop2, RK3568_VP0_DSP_VACT_ST_END + vp_offset, val); 2323 if (mode->flags & DRM_MODE_FLAG_INTERLACE) { 2324 u16 vact_st_f1 = vtotal + vact_st + 1; 2325 u16 vact_end_f1 = vact_st_f1 + vdisplay; 2326 2327 val = vact_st_f1 << 16 | vact_end_f1; 2328 vop2_writel(vop2, RK3568_VP0_DSP_VACT_ST_END_F1 + vp_offset, 2329 val); 2330 2331 val = vtotal << 16 | (vtotal + vsync_len); 2332 vop2_writel(vop2, RK3568_VP0_DSP_VS_ST_END_F1 + vp_offset, val); 2333 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2334 INTERLACE_EN_SHIFT, 1, false); 2335 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2336 DSP_FILED_POL, 1, false); 2337 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2338 P2I_EN_SHIFT, 1, false); 2339 vtotal += vtotal + 1; 2340 act_end = vact_end_f1; 2341 } else { 2342 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2343 INTERLACE_EN_SHIFT, 0, false); 2344 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2345 P2I_EN_SHIFT, 0, false); 2346 act_end = vact_end; 2347 } 2348 vop2_writel(vop2, RK3568_VP0_DSP_VTOTAL_VS_END + vp_offset, 2349 (vtotal << 16) | vsync_len); 2350 2351 if (vop2->version == VOP_VERSION_RK3568) { 2352 if (mode->flags & DRM_MODE_FLAG_DBLCLK || 2353 conn_state->output_if & VOP_OUTPUT_IF_BT656) 2354 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2355 CORE_DCLK_DIV_EN_SHIFT, 1, false); 2356 else 2357 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2358 CORE_DCLK_DIV_EN_SHIFT, 0, false); 2359 } 2360 2361 if (conn_state->output_mode == ROCKCHIP_OUT_MODE_YUV420) 2362 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 2363 DCLK_DIV2_MASK, DCLK_DIV2_SHIFT, 0x3, false); 2364 else 2365 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 2366 DCLK_DIV2_MASK, DCLK_DIV2_SHIFT, 0, false); 2367 2368 if (yuv_overlay) 2369 val = 0x20010200; 2370 else 2371 val = 0; 2372 vop2_writel(vop2, RK3568_VP0_DSP_BG + vp_offset, val); 2373 2374 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2375 POST_DSP_OUT_R2Y_SHIFT, yuv_overlay, false); 2376 2377 vop2_tv_config_update(state, vop2); 2378 vop2_post_config(state, vop2); 2379 2380 snprintf(dclk_name, sizeof(dclk_name), "dclk_vp%d", cstate->crtc_id); 2381 ret = clk_get_by_name(cstate->dev, dclk_name, &dclk); 2382 if (ret) { 2383 printf("%s: Failed to get dclk ret=%d\n", __func__, ret); 2384 return ret; 2385 } 2386 2387 ret = uclass_get_device_by_name(UCLASS_CLK, "hdmiphypll_clk0", 2388 &hdmi0_phy_pll.dev); 2389 if (ret) { 2390 hdmi0_phy_pll.dev = NULL; 2391 printf("%s:No hdmiphypll clk0 found, use system clk\n", 2392 __func__); 2393 } 2394 2395 ret = uclass_get_device_by_name(UCLASS_CLK, "hdmiphypll_clk1", 2396 &hdmi1_phy_pll.dev); 2397 if (ret) { 2398 hdmi1_phy_pll.dev = NULL; 2399 printf("%s:No hdmiphypll clk1 found, use system clk\n", 2400 __func__); 2401 } 2402 2403 if (conn_state->output_if & VOP_OUTPUT_IF_HDMI0) 2404 vop2_clk_set_parent(&dclk, &hdmi0_phy_pll); 2405 else if (conn_state->output_if & VOP_OUTPUT_IF_HDMI1) 2406 vop2_clk_set_parent(&dclk, &hdmi1_phy_pll); 2407 2408 /* 2409 * uboot clk driver won't set dclk parent's rate when use 2410 * hdmi phypll as dclk source. 2411 * So set dclk rate is meaningless. Set hdmi phypll rate 2412 * directly. 2413 */ 2414 if ((conn_state->output_if & VOP_OUTPUT_IF_HDMI0) && hdmi0_phy_pll.dev) 2415 ret = vop2_clk_set_rate(&hdmi0_phy_pll, dclk_rate * 1000); 2416 else if ((conn_state->output_if & VOP_OUTPUT_IF_HDMI1) && hdmi1_phy_pll.dev) 2417 ret = vop2_clk_set_rate(&hdmi1_phy_pll, dclk_rate * 1000); 2418 else 2419 ret = vop2_clk_set_rate(&dclk, dclk_rate * 1000); 2420 2421 if (IS_ERR_VALUE(ret)) { 2422 printf("%s: Failed to set vp%d dclk[%ld KHZ] ret=%d\n", 2423 __func__, cstate->crtc_id, dclk_rate, ret); 2424 return ret; 2425 } 2426 2427 vop2_mask_write(vop2, RK3568_SYS_CTRL_LINE_FLAG0 + line_flag_offset, LINE_FLAG_NUM_MASK, 2428 RK3568_DSP_LINE_FLAG_NUM0_SHIFT, act_end, false); 2429 vop2_mask_write(vop2, RK3568_SYS_CTRL_LINE_FLAG0 + line_flag_offset, LINE_FLAG_NUM_MASK, 2430 RK3568_DSP_LINE_FLAG_NUM1_SHIFT, act_end, false); 2431 2432 if (vop2->version == VOP_VERSION_RK3588) { 2433 if (vop2_power_domain_on(vop2, vop2->vp_plane_mask[cstate->crtc_id].primary_plane_id)) 2434 printf("open vp%d plane pd fail\n", cstate->crtc_id); 2435 } 2436 2437 return 0; 2438 } 2439 2440 static void vop2_setup_scale(struct vop2 *vop2, struct vop2_win_data *win, 2441 uint32_t src_w, uint32_t src_h, uint32_t dst_w, 2442 uint32_t dst_h) 2443 { 2444 uint16_t yrgb_hor_scl_mode, yrgb_ver_scl_mode; 2445 uint16_t hscl_filter_mode, vscl_filter_mode; 2446 uint8_t gt2 = 0, gt4 = 0; 2447 uint32_t xfac = 0, yfac = 0; 2448 uint16_t hsu_filter_mode = VOP2_SCALE_UP_BIC; 2449 uint16_t hsd_filter_mode = VOP2_SCALE_DOWN_BIL; 2450 uint16_t vsu_filter_mode = VOP2_SCALE_UP_BIL; 2451 uint16_t vsd_filter_mode = VOP2_SCALE_DOWN_BIL; 2452 u32 win_offset = win->reg_offset; 2453 2454 if (src_h >= (4 * dst_h)) 2455 gt4 = 1; 2456 else if (src_h >= (2 * dst_h)) 2457 gt2 = 1; 2458 2459 if (gt4) 2460 src_h >>= 2; 2461 else if (gt2) 2462 src_h >>= 1; 2463 2464 yrgb_hor_scl_mode = scl_get_scl_mode(src_w, dst_w); 2465 yrgb_ver_scl_mode = scl_get_scl_mode(src_h, dst_h); 2466 2467 if (yrgb_hor_scl_mode == SCALE_UP) 2468 hscl_filter_mode = hsu_filter_mode; 2469 else 2470 hscl_filter_mode = hsd_filter_mode; 2471 2472 if (yrgb_ver_scl_mode == SCALE_UP) 2473 vscl_filter_mode = vsu_filter_mode; 2474 else 2475 vscl_filter_mode = vsd_filter_mode; 2476 2477 /* 2478 * RK3568 VOP Esmart/Smart dsp_w should be even pixel 2479 * at scale down mode 2480 */ 2481 if ((yrgb_hor_scl_mode == SCALE_DOWN) && (dst_w & 0x1)) { 2482 printf("win dst_w[%d] should align as 2 pixel\n", dst_w); 2483 dst_w += 1; 2484 } 2485 2486 xfac = vop2_scale_factor(yrgb_hor_scl_mode, hscl_filter_mode, src_w, dst_w); 2487 yfac = vop2_scale_factor(yrgb_ver_scl_mode, vscl_filter_mode, src_h, dst_h); 2488 2489 if (win->type == CLUSTER_LAYER) { 2490 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_SCL_FACTOR_YRGB + win_offset, 2491 yfac << 16 | xfac); 2492 2493 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 2494 YRGB_GT2_MASK, CLUSTER_YRGB_GT2_SHIFT, gt2, false); 2495 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 2496 YRGB_GT4_MASK, CLUSTER_YRGB_GT4_SHIFT, gt4, false); 2497 2498 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 2499 YRGB_XSCL_MODE_MASK, CLUSTER_YRGB_XSCL_MODE_SHIFT, yrgb_hor_scl_mode, false); 2500 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 2501 YRGB_YSCL_MODE_MASK, CLUSTER_YRGB_YSCL_MODE_SHIFT, yrgb_ver_scl_mode, false); 2502 2503 } else { 2504 vop2_writel(vop2, RK3568_ESMART0_REGION0_SCL_FACTOR_YRGB + win_offset, 2505 yfac << 16 | xfac); 2506 2507 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 2508 YRGB_GT2_MASK, YRGB_GT2_SHIFT, gt2, false); 2509 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 2510 YRGB_GT4_MASK, YRGB_GT4_SHIFT, gt4, false); 2511 2512 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_SCL_CTRL + win_offset, 2513 YRGB_XSCL_MODE_MASK, YRGB_XSCL_MODE_SHIFT, yrgb_hor_scl_mode, false); 2514 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_SCL_CTRL + win_offset, 2515 YRGB_YSCL_MODE_MASK, YRGB_YSCL_MODE_SHIFT, yrgb_ver_scl_mode, false); 2516 2517 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_SCL_CTRL + win_offset, 2518 YRGB_XSCL_FILTER_MODE_MASK, YRGB_XSCL_FILTER_MODE_SHIFT, 2519 hscl_filter_mode, false); 2520 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_SCL_CTRL + win_offset, 2521 YRGB_YSCL_FILTER_MODE_MASK, YRGB_YSCL_FILTER_MODE_SHIFT, 2522 vscl_filter_mode, false); 2523 } 2524 } 2525 2526 static void vop2_set_cluster_win(struct display_state *state, struct vop2_win_data *win) 2527 { 2528 struct crtc_state *cstate = &state->crtc_state; 2529 struct connector_state *conn_state = &state->conn_state; 2530 struct drm_display_mode *mode = &conn_state->mode; 2531 struct vop2 *vop2 = cstate->private; 2532 int src_w = cstate->src_w; 2533 int src_h = cstate->src_h; 2534 int crtc_x = cstate->crtc_x; 2535 int crtc_y = cstate->crtc_y; 2536 int crtc_w = cstate->crtc_w; 2537 int crtc_h = cstate->crtc_h; 2538 int xvir = cstate->xvir; 2539 int y_mirror = 0; 2540 int csc_mode; 2541 u32 act_info, dsp_info, dsp_st, dsp_stx, dsp_sty; 2542 u32 win_offset = win->reg_offset; 2543 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 2544 2545 act_info = (src_h - 1) << 16; 2546 act_info |= (src_w - 1) & 0xffff; 2547 2548 dsp_info = (crtc_h - 1) << 16; 2549 dsp_info |= (crtc_w - 1) & 0xffff; 2550 2551 dsp_stx = crtc_x; 2552 dsp_sty = crtc_y; 2553 dsp_st = dsp_sty << 16 | (dsp_stx & 0xffff); 2554 2555 if (mode->flags & DRM_MODE_FLAG_YMIRROR) 2556 y_mirror = 1; 2557 else 2558 y_mirror = 0; 2559 2560 vop2_setup_scale(vop2, win, src_w, src_h, crtc_w, crtc_h); 2561 2562 if (y_mirror) 2563 printf("WARN: y mirror is unsupported by cluster window\n"); 2564 2565 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, 2566 WIN_FORMAT_MASK, WIN_FORMAT_SHIFT, cstate->format, 2567 false); 2568 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_VIR + win_offset, xvir); 2569 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_YRGB_MST + win_offset, cstate->dma_addr); 2570 2571 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_ACT_INFO + win_offset, act_info); 2572 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_DSP_INFO + win_offset, dsp_info); 2573 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_DSP_ST + win_offset, dsp_st); 2574 2575 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, EN_MASK, WIN_EN_SHIFT, 1, false); 2576 2577 csc_mode = vop2_convert_csc_mode(conn_state->color_space); 2578 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, EN_MASK, 2579 CLUSTER_RGB2YUV_EN_SHIFT, 2580 is_yuv_output(conn_state->bus_format), false); 2581 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, CSC_MODE_MASK, 2582 CLUSTER_CSC_MODE_SHIFT, csc_mode, false); 2583 vop2_mask_write(vop2, RK3568_CLUSTER0_CTRL + win_offset, EN_MASK, CLUSTER_EN_SHIFT, 1, false); 2584 2585 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 2586 } 2587 2588 static void vop2_set_smart_win(struct display_state *state, struct vop2_win_data *win) 2589 { 2590 struct crtc_state *cstate = &state->crtc_state; 2591 struct connector_state *conn_state = &state->conn_state; 2592 struct drm_display_mode *mode = &conn_state->mode; 2593 struct vop2 *vop2 = cstate->private; 2594 int src_w = cstate->src_w; 2595 int src_h = cstate->src_h; 2596 int crtc_x = cstate->crtc_x; 2597 int crtc_y = cstate->crtc_y; 2598 int crtc_w = cstate->crtc_w; 2599 int crtc_h = cstate->crtc_h; 2600 int xvir = cstate->xvir; 2601 int y_mirror = 0; 2602 int csc_mode; 2603 u32 act_info, dsp_info, dsp_st, dsp_stx, dsp_sty; 2604 u32 win_offset = win->reg_offset; 2605 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 2606 2607 /* 2608 * This is workaround solution for IC design: 2609 * esmart can't support scale down when actual_w % 16 == 1. 2610 */ 2611 if (src_w > crtc_w && (src_w & 0xf) == 1) { 2612 printf("WARN: vp%d unsupported act_w[%d] mode 16 = 1 when scale down\n", cstate->crtc_id, src_w); 2613 src_w -= 1; 2614 } 2615 2616 act_info = (src_h - 1) << 16; 2617 act_info |= (src_w - 1) & 0xffff; 2618 2619 dsp_info = (crtc_h - 1) << 16; 2620 dsp_info |= (crtc_w - 1) & 0xffff; 2621 2622 dsp_stx = crtc_x; 2623 dsp_sty = crtc_y; 2624 dsp_st = dsp_sty << 16 | (dsp_stx & 0xffff); 2625 2626 if (mode->flags & DRM_MODE_FLAG_YMIRROR) 2627 y_mirror = 1; 2628 else 2629 y_mirror = 0; 2630 2631 vop2_setup_scale(vop2, win, src_w, src_h, crtc_w, crtc_h); 2632 2633 if (y_mirror) 2634 cstate->dma_addr += (src_h - 1) * xvir * 4; 2635 vop2_mask_write(vop2, RK3568_ESMART0_CTRL1 + win_offset, EN_MASK, 2636 YMIRROR_EN_SHIFT, y_mirror, false); 2637 2638 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 2639 WIN_FORMAT_MASK, WIN_FORMAT_SHIFT, cstate->format, 2640 false); 2641 vop2_writel(vop2, RK3568_ESMART0_REGION0_VIR + win_offset, xvir); 2642 vop2_writel(vop2, RK3568_ESMART0_REGION0_YRGB_MST + win_offset, 2643 cstate->dma_addr); 2644 2645 vop2_writel(vop2, RK3568_ESMART0_REGION0_ACT_INFO + win_offset, 2646 act_info); 2647 vop2_writel(vop2, RK3568_ESMART0_REGION0_DSP_INFO + win_offset, 2648 dsp_info); 2649 vop2_writel(vop2, RK3568_ESMART0_REGION0_DSP_ST + win_offset, dsp_st); 2650 2651 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, EN_MASK, 2652 WIN_EN_SHIFT, 1, false); 2653 2654 csc_mode = vop2_convert_csc_mode(conn_state->color_space); 2655 vop2_mask_write(vop2, RK3568_ESMART0_CTRL0 + win_offset, EN_MASK, 2656 RGB2YUV_EN_SHIFT, 2657 is_yuv_output(conn_state->bus_format), false); 2658 vop2_mask_write(vop2, RK3568_ESMART0_CTRL0 + win_offset, CSC_MODE_MASK, 2659 CSC_MODE_SHIFT, csc_mode, false); 2660 2661 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 2662 } 2663 2664 static int rockchip_vop2_set_plane(struct display_state *state) 2665 { 2666 struct crtc_state *cstate = &state->crtc_state; 2667 struct vop2 *vop2 = cstate->private; 2668 struct vop2_win_data *win_data; 2669 u8 primary_plane_id = vop2->vp_plane_mask[cstate->crtc_id].primary_plane_id; 2670 char plane_name[10] = {0}; 2671 2672 if (cstate->crtc_w > cstate->max_output.width) { 2673 printf("ERROR: output w[%d] exceeded max width[%d]\n", 2674 cstate->crtc_w, cstate->max_output.width); 2675 return -EINVAL; 2676 } 2677 2678 win_data = vop2_find_win_by_phys_id(vop2, primary_plane_id); 2679 if (!win_data) { 2680 printf("invalid win id %d\n", primary_plane_id); 2681 return -ENODEV; 2682 } 2683 2684 if (win_data->type == CLUSTER_LAYER) 2685 vop2_set_cluster_win(state, win_data); 2686 else 2687 vop2_set_smart_win(state, win_data); 2688 2689 printf("VOP VP%d enable %s[%dx%d->%dx%d@%dx%d] fmt[%d] addr[0x%x]\n", 2690 cstate->crtc_id, get_plane_name(primary_plane_id, plane_name), 2691 cstate->src_w, cstate->src_h, cstate->crtc_w, cstate->crtc_h, 2692 cstate->crtc_x, cstate->crtc_y, cstate->format, 2693 cstate->dma_addr); 2694 2695 return 0; 2696 } 2697 2698 static int rockchip_vop2_prepare(struct display_state *state) 2699 { 2700 return 0; 2701 } 2702 2703 static int rockchip_vop2_enable(struct display_state *state) 2704 { 2705 struct crtc_state *cstate = &state->crtc_state; 2706 struct vop2 *vop2 = cstate->private; 2707 u32 vp_offset = (cstate->crtc_id * 0x100); 2708 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 2709 2710 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2711 STANDBY_EN_SHIFT, 0, false); 2712 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 2713 2714 return 0; 2715 } 2716 2717 static int rockchip_vop2_disable(struct display_state *state) 2718 { 2719 struct crtc_state *cstate = &state->crtc_state; 2720 struct vop2 *vop2 = cstate->private; 2721 u32 vp_offset = (cstate->crtc_id * 0x100); 2722 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 2723 2724 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 2725 STANDBY_EN_SHIFT, 1, false); 2726 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 2727 2728 return 0; 2729 } 2730 2731 static int rockchip_vop2_get_cursor_plane(struct display_state *state, u32 plane_mask, int cursor_plane) 2732 { 2733 struct crtc_state *cstate = &state->crtc_state; 2734 struct vop2 *vop2 = cstate->private; 2735 int i = 0; 2736 int correct_cursor_plane = -1; 2737 int plane_type = -1; 2738 2739 if (cursor_plane < 0) 2740 return -1; 2741 2742 if (plane_mask & (1 << cursor_plane)) 2743 return cursor_plane; 2744 2745 /* Get current cursor plane type */ 2746 for (i = 0; i < vop2->data->nr_layers; i++) { 2747 if (vop2->data->plane_table[i].plane_id == cursor_plane) { 2748 plane_type = vop2->data->plane_table[i].plane_type; 2749 break; 2750 } 2751 } 2752 2753 /* Get the other same plane type plane id */ 2754 for (i = 0; i < vop2->data->nr_layers; i++) { 2755 if (vop2->data->plane_table[i].plane_type == plane_type && 2756 vop2->data->plane_table[i].plane_id != cursor_plane) { 2757 correct_cursor_plane = vop2->data->plane_table[i].plane_id; 2758 break; 2759 } 2760 } 2761 2762 /* To check whether the new correct_cursor_plane is attach to current vp */ 2763 if (correct_cursor_plane < 0 || !(plane_mask & (1 << correct_cursor_plane))) { 2764 printf("error: faild to find correct plane as cursor plane\n"); 2765 return -1; 2766 } 2767 2768 printf("vp%d adjust cursor plane from %d to %d\n", 2769 cstate->crtc_id, cursor_plane, correct_cursor_plane); 2770 2771 return correct_cursor_plane; 2772 } 2773 2774 static int rockchip_vop2_fixup_dts(struct display_state *state, void *blob) 2775 { 2776 struct crtc_state *cstate = &state->crtc_state; 2777 struct vop2 *vop2 = cstate->private; 2778 ofnode vp_node; 2779 struct device_node *port_parent_node = cstate->ports_node; 2780 static bool vop_fix_dts; 2781 const char *path; 2782 u32 plane_mask = 0; 2783 int vp_id = 0; 2784 int cursor_plane_id = -1; 2785 2786 if (vop_fix_dts) 2787 return 0; 2788 2789 ofnode_for_each_subnode(vp_node, np_to_ofnode(port_parent_node)) { 2790 path = vp_node.np->full_name; 2791 plane_mask = vop2->vp_plane_mask[vp_id].plane_mask; 2792 2793 if (cstate->crtc->assign_plane) 2794 continue; 2795 cursor_plane_id = rockchip_vop2_get_cursor_plane(state, plane_mask, 2796 cstate->crtc->vps[vp_id].cursor_plane); 2797 printf("vp%d, plane_mask:0x%x, primary-id:%d, curser-id:%d\n", 2798 vp_id, plane_mask, 2799 vop2->vp_plane_mask[vp_id].primary_plane_id, 2800 cursor_plane_id); 2801 2802 do_fixup_by_path_u32(blob, path, "rockchip,plane-mask", 2803 plane_mask, 1); 2804 do_fixup_by_path_u32(blob, path, "rockchip,primary-plane", 2805 vop2->vp_plane_mask[vp_id].primary_plane_id, 1); 2806 if (cursor_plane_id >= 0) 2807 do_fixup_by_path_u32(blob, path, "cursor-win-id", 2808 cursor_plane_id, 1); 2809 vp_id++; 2810 } 2811 2812 vop_fix_dts = true; 2813 2814 return 0; 2815 } 2816 2817 static struct vop2_plane_table rk356x_plane_table[ROCKCHIP_VOP2_LAYER_MAX] = { 2818 {ROCKCHIP_VOP2_CLUSTER0, CLUSTER_LAYER}, 2819 {ROCKCHIP_VOP2_CLUSTER1, CLUSTER_LAYER}, 2820 {ROCKCHIP_VOP2_ESMART0, ESMART_LAYER}, 2821 {ROCKCHIP_VOP2_ESMART1, ESMART_LAYER}, 2822 {ROCKCHIP_VOP2_SMART0, SMART_LAYER}, 2823 {ROCKCHIP_VOP2_SMART0, SMART_LAYER}, 2824 }; 2825 2826 static struct vop2_vp_plane_mask rk356x_vp_plane_mask[VOP2_VP_MAX][VOP2_VP_MAX] = { 2827 { /* one display policy */ 2828 {/* main display */ 2829 .primary_plane_id = ROCKCHIP_VOP2_SMART0, 2830 .attached_layers_nr = 6, 2831 .attached_layers = { 2832 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_SMART0, 2833 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1, ROCKCHIP_VOP2_SMART1 2834 }, 2835 }, 2836 {/* second display */}, 2837 {/* third display */}, 2838 {/* fourth display */}, 2839 }, 2840 2841 { /* two display policy */ 2842 {/* main display */ 2843 .primary_plane_id = ROCKCHIP_VOP2_SMART0, 2844 .attached_layers_nr = 3, 2845 .attached_layers = { 2846 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_SMART0 2847 }, 2848 }, 2849 2850 {/* second display */ 2851 .primary_plane_id = ROCKCHIP_VOP2_SMART1, 2852 .attached_layers_nr = 3, 2853 .attached_layers = { 2854 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1, ROCKCHIP_VOP2_SMART1 2855 }, 2856 }, 2857 {/* third display */}, 2858 {/* fourth display */}, 2859 }, 2860 2861 { /* three display policy */ 2862 {/* main display */ 2863 .primary_plane_id = ROCKCHIP_VOP2_SMART0, 2864 .attached_layers_nr = 3, 2865 .attached_layers = { 2866 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_SMART0 2867 }, 2868 }, 2869 2870 {/* second display */ 2871 .primary_plane_id = ROCKCHIP_VOP2_SMART1, 2872 .attached_layers_nr = 2, 2873 .attached_layers = { 2874 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_SMART1 2875 }, 2876 }, 2877 2878 {/* third display */ 2879 .primary_plane_id = ROCKCHIP_VOP2_ESMART1, 2880 .attached_layers_nr = 1, 2881 .attached_layers = { ROCKCHIP_VOP2_ESMART1 }, 2882 }, 2883 2884 {/* fourth display */}, 2885 }, 2886 2887 {/* reserved for four display policy */}, 2888 }; 2889 2890 static struct vop2_win_data rk3568_win_data[6] = { 2891 { 2892 .name = "Cluster0", 2893 .phys_id = ROCKCHIP_VOP2_CLUSTER0, 2894 .type = CLUSTER_LAYER, 2895 .win_sel_port_offset = 0, 2896 .layer_sel_win_id = 0, 2897 .reg_offset = 0, 2898 }, 2899 2900 { 2901 .name = "Cluster1", 2902 .phys_id = ROCKCHIP_VOP2_CLUSTER1, 2903 .type = CLUSTER_LAYER, 2904 .win_sel_port_offset = 1, 2905 .layer_sel_win_id = 1, 2906 .reg_offset = 0x200, 2907 }, 2908 2909 { 2910 .name = "Esmart0", 2911 .phys_id = ROCKCHIP_VOP2_ESMART0, 2912 .type = ESMART_LAYER, 2913 .win_sel_port_offset = 4, 2914 .layer_sel_win_id = 2, 2915 .reg_offset = 0, 2916 }, 2917 2918 { 2919 .name = "Esmart1", 2920 .phys_id = ROCKCHIP_VOP2_ESMART1, 2921 .type = ESMART_LAYER, 2922 .win_sel_port_offset = 5, 2923 .layer_sel_win_id = 6, 2924 .reg_offset = 0x200, 2925 }, 2926 2927 { 2928 .name = "Smart0", 2929 .phys_id = ROCKCHIP_VOP2_SMART0, 2930 .type = SMART_LAYER, 2931 .win_sel_port_offset = 6, 2932 .layer_sel_win_id = 3, 2933 .reg_offset = 0x400, 2934 }, 2935 2936 { 2937 .name = "Smart1", 2938 .phys_id = ROCKCHIP_VOP2_SMART1, 2939 .type = SMART_LAYER, 2940 .win_sel_port_offset = 7, 2941 .layer_sel_win_id = 7, 2942 .reg_offset = 0x600, 2943 }, 2944 }; 2945 2946 static struct vop2_vp_data rk3568_vp_data[3] = { 2947 { 2948 .feature = VOP_FEATURE_OUTPUT_10BIT, 2949 .pre_scan_max_dly = 42, 2950 .max_output = {4096, 2304}, 2951 }, 2952 { 2953 .feature = 0, 2954 .pre_scan_max_dly = 40, 2955 .max_output = {2048, 1536}, 2956 }, 2957 { 2958 .feature = 0, 2959 .pre_scan_max_dly = 40, 2960 .max_output = {1920, 1080}, 2961 }, 2962 }; 2963 2964 const struct vop2_data rk3568_vop = { 2965 .version = VOP_VERSION_RK3568, 2966 .nr_vps = 3, 2967 .vp_data = rk3568_vp_data, 2968 .win_data = rk3568_win_data, 2969 .plane_mask = rk356x_vp_plane_mask[0], 2970 .plane_table = rk356x_plane_table, 2971 .nr_layers = 6, 2972 .nr_mixers = 5, 2973 .nr_gammas = 1, 2974 }; 2975 2976 static struct vop2_plane_table rk3588_plane_table[ROCKCHIP_VOP2_LAYER_MAX] = { 2977 {ROCKCHIP_VOP2_CLUSTER0, CLUSTER_LAYER}, 2978 {ROCKCHIP_VOP2_CLUSTER1, CLUSTER_LAYER}, 2979 {ROCKCHIP_VOP2_CLUSTER2, CLUSTER_LAYER}, 2980 {ROCKCHIP_VOP2_CLUSTER3, CLUSTER_LAYER}, 2981 {ROCKCHIP_VOP2_ESMART0, ESMART_LAYER}, 2982 {ROCKCHIP_VOP2_ESMART1, ESMART_LAYER}, 2983 {ROCKCHIP_VOP2_ESMART2, ESMART_LAYER}, 2984 {ROCKCHIP_VOP2_ESMART3, ESMART_LAYER}, 2985 }; 2986 2987 static struct vop2_vp_plane_mask rk3588_vp_plane_mask[VOP2_VP_MAX][VOP2_VP_MAX] = { 2988 { /* one display policy */ 2989 {/* main display */ 2990 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER0, 2991 .attached_layers_nr = 8, 2992 .attached_layers = { 2993 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_ESMART2, 2994 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1, ROCKCHIP_VOP2_ESMART3, 2995 ROCKCHIP_VOP2_CLUSTER2, ROCKCHIP_VOP2_CLUSTER3 2996 }, 2997 }, 2998 {/* second display */}, 2999 {/* third display */}, 3000 {/* fourth display */}, 3001 }, 3002 3003 { /* two display policy */ 3004 {/* main display */ 3005 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER0, 3006 .attached_layers_nr = 4, 3007 .attached_layers = { 3008 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, 3009 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1 3010 }, 3011 }, 3012 3013 {/* second display */ 3014 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER2, 3015 .attached_layers_nr = 4, 3016 .attached_layers = { 3017 ROCKCHIP_VOP2_CLUSTER2, ROCKCHIP_VOP2_ESMART2, 3018 ROCKCHIP_VOP2_CLUSTER3, ROCKCHIP_VOP2_ESMART3 3019 }, 3020 }, 3021 {/* third display */}, 3022 {/* fourth display */}, 3023 }, 3024 3025 { /* three display policy */ 3026 {/* main display */ 3027 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER0, 3028 .attached_layers_nr = 3, 3029 .attached_layers = { 3030 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART0 3031 }, 3032 }, 3033 3034 {/* second display */ 3035 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER2, 3036 .attached_layers_nr = 3, 3037 .attached_layers = { 3038 ROCKCHIP_VOP2_CLUSTER2, ROCKCHIP_VOP2_CLUSTER3, ROCKCHIP_VOP2_ESMART1 3039 }, 3040 }, 3041 3042 {/* third display */ 3043 .primary_plane_id = ROCKCHIP_VOP2_ESMART2, 3044 .attached_layers_nr = 2, 3045 .attached_layers = { ROCKCHIP_VOP2_ESMART2, ROCKCHIP_VOP2_ESMART3 }, 3046 }, 3047 3048 {/* fourth display */}, 3049 }, 3050 3051 { /* four display policy */ 3052 {/* main display */ 3053 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER0, 3054 .attached_layers_nr = 2, 3055 .attached_layers = { ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0 }, 3056 }, 3057 3058 {/* second display */ 3059 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER1, 3060 .attached_layers_nr = 2, 3061 .attached_layers = { ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1 }, 3062 }, 3063 3064 {/* third display */ 3065 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER2, 3066 .attached_layers_nr = 2, 3067 .attached_layers = { ROCKCHIP_VOP2_CLUSTER2, ROCKCHIP_VOP2_ESMART2 }, 3068 }, 3069 3070 {/* fourth display */ 3071 .primary_plane_id = ROCKCHIP_VOP2_CLUSTER3, 3072 .attached_layers_nr = 2, 3073 .attached_layers = { ROCKCHIP_VOP2_CLUSTER3, ROCKCHIP_VOP2_ESMART3 }, 3074 }, 3075 }, 3076 3077 }; 3078 3079 static struct vop2_power_domain_data rk3588_cluster0_pd_data = { 3080 .pd_en_shift = RK3588_CLUSTER0_PD_EN_SHIFT, 3081 .pd_status_shift = RK3588_CLUSTER0_PD_STATUS_SHIFT, 3082 .pmu_status_shift = RK3588_PD_CLUSTER0_PWR_STAT_SHIFI, 3083 .bisr_en_status_shift = RK3588_PD_CLUSTER0_REPAIR_EN_SHIFT, 3084 }; 3085 3086 static struct vop2_power_domain_data rk3588_cluster1_pd_data = { 3087 .is_parent_needed = true, 3088 .pd_en_shift = RK3588_CLUSTER1_PD_EN_SHIFT, 3089 .pd_status_shift = RK3588_CLUSTER1_PD_STATUS_SHIFT, 3090 .pmu_status_shift = RK3588_PD_CLUSTER1_PWR_STAT_SHIFI, 3091 .bisr_en_status_shift = RK3588_PD_CLUSTER1_REPAIR_EN_SHIFT, 3092 .parent_phy_id = ROCKCHIP_VOP2_CLUSTER0, 3093 }; 3094 3095 static struct vop2_power_domain_data rk3588_cluster2_pd_data = { 3096 .is_parent_needed = true, 3097 .pd_en_shift = RK3588_CLUSTER2_PD_EN_SHIFT, 3098 .pd_status_shift = RK3588_CLUSTER2_PD_STATUS_SHIFT, 3099 .pmu_status_shift = RK3588_PD_CLUSTER2_PWR_STAT_SHIFI, 3100 .bisr_en_status_shift = RK3588_PD_CLUSTER2_REPAIR_EN_SHIFT, 3101 .parent_phy_id = ROCKCHIP_VOP2_CLUSTER0, 3102 }; 3103 3104 static struct vop2_power_domain_data rk3588_cluster3_pd_data = { 3105 .is_parent_needed = true, 3106 .pd_en_shift = RK3588_CLUSTER3_PD_EN_SHIFT, 3107 .pd_status_shift = RK3588_CLUSTER3_PD_STATUS_SHIFT, 3108 .pmu_status_shift = RK3588_PD_CLUSTER3_PWR_STAT_SHIFI, 3109 .bisr_en_status_shift = RK3588_PD_CLUSTER3_REPAIR_EN_SHIFT, 3110 .parent_phy_id = ROCKCHIP_VOP2_CLUSTER0, 3111 }; 3112 3113 static struct vop2_power_domain_data rk3588_esmart_pd_data = { 3114 .pd_en_shift = RK3588_ESMART_PD_EN_SHIFT, 3115 .pd_status_shift = RK3588_ESMART_PD_STATUS_SHIFT, 3116 .pmu_status_shift = RK3588_PD_ESMART_PWR_STAT_SHIFI, 3117 .bisr_en_status_shift = RK3588_PD_ESMART_REPAIR_EN_SHIFT, 3118 }; 3119 3120 static struct vop2_win_data rk3588_win_data[8] = { 3121 { 3122 .name = "Cluster0", 3123 .phys_id = ROCKCHIP_VOP2_CLUSTER0, 3124 .type = CLUSTER_LAYER, 3125 .win_sel_port_offset = 0, 3126 .layer_sel_win_id = 0, 3127 .reg_offset = 0, 3128 .pd_data = &rk3588_cluster0_pd_data, 3129 }, 3130 3131 { 3132 .name = "Cluster1", 3133 .phys_id = ROCKCHIP_VOP2_CLUSTER1, 3134 .type = CLUSTER_LAYER, 3135 .win_sel_port_offset = 1, 3136 .layer_sel_win_id = 1, 3137 .reg_offset = 0x200, 3138 .pd_data = &rk3588_cluster1_pd_data, 3139 }, 3140 3141 { 3142 .name = "Cluster2", 3143 .phys_id = ROCKCHIP_VOP2_CLUSTER2, 3144 .type = CLUSTER_LAYER, 3145 .win_sel_port_offset = 2, 3146 .layer_sel_win_id = 4, 3147 .reg_offset = 0x400, 3148 .pd_data = &rk3588_cluster2_pd_data, 3149 }, 3150 3151 { 3152 .name = "Cluster3", 3153 .phys_id = ROCKCHIP_VOP2_CLUSTER3, 3154 .type = CLUSTER_LAYER, 3155 .win_sel_port_offset = 3, 3156 .layer_sel_win_id = 5, 3157 .reg_offset = 0x600, 3158 .pd_data = &rk3588_cluster3_pd_data, 3159 }, 3160 3161 { 3162 .name = "Esmart0", 3163 .phys_id = ROCKCHIP_VOP2_ESMART0, 3164 .type = ESMART_LAYER, 3165 .win_sel_port_offset = 4, 3166 .layer_sel_win_id = 2, 3167 .reg_offset = 0, 3168 .pd_data = &rk3588_esmart_pd_data, 3169 }, 3170 3171 { 3172 .name = "Esmart1", 3173 .phys_id = ROCKCHIP_VOP2_ESMART1, 3174 .type = ESMART_LAYER, 3175 .win_sel_port_offset = 5, 3176 .layer_sel_win_id = 3, 3177 .reg_offset = 0x200, 3178 .pd_data = &rk3588_esmart_pd_data, 3179 }, 3180 3181 { 3182 .name = "Esmart2", 3183 .phys_id = ROCKCHIP_VOP2_ESMART2, 3184 .type = ESMART_LAYER, 3185 .win_sel_port_offset = 6, 3186 .layer_sel_win_id = 6, 3187 .reg_offset = 0x400, 3188 .pd_data = &rk3588_esmart_pd_data, 3189 }, 3190 3191 { 3192 .name = "Esmart3", 3193 .phys_id = ROCKCHIP_VOP2_ESMART3, 3194 .type = ESMART_LAYER, 3195 .win_sel_port_offset = 7, 3196 .layer_sel_win_id = 7, 3197 .reg_offset = 0x600, 3198 .pd_data = &rk3588_esmart_pd_data, 3199 }, 3200 }; 3201 3202 static struct vop2_vp_data rk3588_vp_data[4] = { 3203 { 3204 .feature = VOP_FEATURE_OUTPUT_10BIT, 3205 .pre_scan_max_dly = 54, 3206 .max_dclk = 600000, 3207 .max_output = {7680, 4320}, 3208 }, 3209 { 3210 .feature = VOP_FEATURE_OUTPUT_10BIT, 3211 .pre_scan_max_dly = 40, 3212 .max_dclk = 600000, 3213 .max_output = {4096, 2304}, 3214 }, 3215 { 3216 .feature = VOP_FEATURE_OUTPUT_10BIT, 3217 .pre_scan_max_dly = 52, 3218 .max_dclk = 600000, 3219 .max_output = {4096, 2304}, 3220 }, 3221 { 3222 .feature = 0, 3223 .pre_scan_max_dly = 52, 3224 .max_dclk = 200000, 3225 .max_output = {1920, 1080}, 3226 }, 3227 }; 3228 3229 const struct vop2_data rk3588_vop = { 3230 .version = VOP_VERSION_RK3588, 3231 .nr_vps = 4, 3232 .vp_data = rk3588_vp_data, 3233 .win_data = rk3588_win_data, 3234 .plane_mask = rk3588_vp_plane_mask[0], 3235 .plane_table = rk3588_plane_table, 3236 .nr_layers = 8, 3237 .nr_mixers = 7, 3238 .nr_gammas = 4, 3239 .nr_dscs = 2, 3240 }; 3241 3242 const struct rockchip_crtc_funcs rockchip_vop2_funcs = { 3243 .preinit = rockchip_vop2_preinit, 3244 .prepare = rockchip_vop2_prepare, 3245 .init = rockchip_vop2_init, 3246 .set_plane = rockchip_vop2_set_plane, 3247 .enable = rockchip_vop2_enable, 3248 .disable = rockchip_vop2_disable, 3249 .fixup_dts = rockchip_vop2_fixup_dts, 3250 }; 3251