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 <asm/arch/clock.h> 21 #include <asm/gpio.h> 22 #include <linux/err.h> 23 #include <linux/ioport.h> 24 #include <dm/device.h> 25 #include <dm/read.h> 26 #include <dm/ofnode.h> 27 #include <fixp-arith.h> 28 #include <syscon.h> 29 #include <linux/iopoll.h> 30 #include <dm/uclass-internal.h> 31 #include <stdlib.h> 32 #include <dm/of_access.h> 33 34 #include "rockchip_display.h" 35 #include "rockchip_crtc.h" 36 #include "rockchip_connector.h" 37 #include "rockchip_phy.h" 38 #include "rockchip_post_csc.h" 39 40 /* System registers definition */ 41 #define RK3568_REG_CFG_DONE 0x000 42 #define CFG_DONE_EN BIT(15) 43 44 #define RK3568_VERSION_INFO 0x004 45 #define EN_MASK 1 46 47 #define RK3568_AUTO_GATING_CTRL 0x008 48 #define AUTO_GATING_EN_SHIFT 31 49 #define PORT_DCLK_AUTO_GATING_EN_SHIFT 14 50 #define ACLK_PRE_AUTO_GATING_EN_SHIFT 7 51 52 #define RK3576_SYS_AXI_HURRY_CTRL0_IMD 0x014 53 #define AXI0_PORT_URGENCY_EN_SHIFT 24 54 55 #define RK3576_SYS_AXI_HURRY_CTRL1_IMD 0x018 56 #define AXI1_PORT_URGENCY_EN_SHIFT 24 57 58 #define RK3576_SYS_MMU_CTRL 0x020 59 #define RKMMU_V2_EN_SHIFT 0 60 #define RKMMU_V2_SEL_AXI_SHIFT 1 61 62 #define RK3568_SYS_AXI_LUT_CTRL 0x024 63 #define LUT_DMA_EN_SHIFT 0 64 #define DSP_VS_T_SEL_SHIFT 16 65 66 #define RK3568_DSP_IF_EN 0x028 67 #define RGB_EN_SHIFT 0 68 #define RK3588_DP0_EN_SHIFT 0 69 #define RK3588_DP1_EN_SHIFT 1 70 #define RK3588_RGB_EN_SHIFT 8 71 #define HDMI0_EN_SHIFT 1 72 #define EDP0_EN_SHIFT 3 73 #define RK3588_EDP0_EN_SHIFT 2 74 #define RK3588_HDMI0_EN_SHIFT 3 75 #define MIPI0_EN_SHIFT 4 76 #define RK3588_EDP1_EN_SHIFT 4 77 #define RK3588_HDMI1_EN_SHIFT 5 78 #define RK3588_MIPI0_EN_SHIFT 6 79 #define MIPI1_EN_SHIFT 20 80 #define RK3588_MIPI1_EN_SHIFT 7 81 #define LVDS0_EN_SHIFT 5 82 #define LVDS1_EN_SHIFT 24 83 #define BT1120_EN_SHIFT 6 84 #define BT656_EN_SHIFT 7 85 #define IF_MUX_MASK 3 86 #define RGB_MUX_SHIFT 8 87 #define HDMI0_MUX_SHIFT 10 88 #define RK3588_DP0_MUX_SHIFT 12 89 #define RK3588_DP1_MUX_SHIFT 14 90 #define EDP0_MUX_SHIFT 14 91 #define RK3588_HDMI_EDP0_MUX_SHIFT 16 92 #define RK3588_HDMI_EDP1_MUX_SHIFT 18 93 #define MIPI0_MUX_SHIFT 16 94 #define RK3588_MIPI0_MUX_SHIFT 20 95 #define MIPI1_MUX_SHIFT 21 96 #define LVDS0_MUX_SHIFT 18 97 #define LVDS1_MUX_SHIFT 25 98 99 #define RK3576_SYS_PORT_CTRL 0x028 100 #define VP_INTR_MERGE_EN_SHIFT 14 101 #define RK3576_DSP_VS_T_SEL_SHIFT 4 102 #define INTERLACE_FRM_REG_DONE_MASK 0x7 103 #define INTERLACE_FRM_REG_DONE_SHIFT 0 104 105 #define RK3568_DSP_IF_CTRL 0x02c 106 #define LVDS_DUAL_EN_SHIFT 0 107 #define RK3588_BT656_UV_SWAP_SHIFT 0 108 #define LVDS_DUAL_LEFT_RIGHT_EN_SHIFT 1 109 #define RK3588_BT656_YC_SWAP_SHIFT 1 110 #define LVDS_DUAL_SWAP_EN_SHIFT 2 111 #define BT656_UV_SWAP 4 112 #define RK3588_BT1120_UV_SWAP_SHIFT 4 113 #define BT656_YC_SWAP 5 114 #define RK3588_BT1120_YC_SWAP_SHIFT 5 115 #define BT656_DCLK_POL 6 116 #define RK3588_HDMI_DUAL_EN_SHIFT 8 117 #define RK3588_EDP_DUAL_EN_SHIFT 8 118 #define RK3588_DP_DUAL_EN_SHIFT 9 119 #define RK3568_MIPI_DUAL_EN_SHIFT 10 120 #define RK3588_MIPI_DSI0_MODE_SEL_SHIFT 11 121 #define RK3588_MIPI_DSI1_MODE_SEL_SHIFT 12 122 123 #define RK3568_DSP_IF_POL 0x030 124 #define IF_CTRL_REG_DONE_IMD_SHIFT 28 125 #define IF_CRTL_MIPI_DCLK_POL_SHIT 19 126 #define IF_CTRL_MIPI_PIN_POL_MASK 0x7 127 #define IF_CTRL_MIPI_PIN_POL_SHIFT 16 128 #define IF_CRTL_EDP_DCLK_POL_SHIT 15 129 #define IF_CTRL_EDP_PIN_POL_MASK 0x7 130 #define IF_CTRL_EDP_PIN_POL_SHIFT 12 131 #define IF_CRTL_HDMI_DCLK_POL_SHIT 7 132 #define IF_CRTL_HDMI_PIN_POL_MASK 0x7 133 #define IF_CRTL_HDMI_PIN_POL_SHIT 4 134 #define IF_CTRL_RGB_LVDS_DCLK_POL_SHIFT 3 135 #define IF_CTRL_RGB_LVDS_PIN_POL_MASK 0x7 136 #define IF_CTRL_RGB_LVDS_PIN_POL_SHIFT 0 137 138 #define RK3562_MIPI_DCLK_POL_SHIFT 15 139 #define RK3562_MIPI_PIN_POL_SHIFT 12 140 #define RK3562_IF_PIN_POL_MASK 0x7 141 142 #define RK3588_DP0_PIN_POL_SHIFT 8 143 #define RK3588_DP1_PIN_POL_SHIFT 12 144 #define RK3588_IF_PIN_POL_MASK 0x7 145 146 #define HDMI_EDP0_DCLK_DIV_SHIFT 16 147 #define HDMI_EDP0_PIXCLK_DIV_SHIFT 18 148 #define HDMI_EDP1_DCLK_DIV_SHIFT 20 149 #define HDMI_EDP1_PIXCLK_DIV_SHIFT 22 150 #define MIPI0_PIXCLK_DIV_SHIFT 24 151 #define MIPI1_PIXCLK_DIV_SHIFT 26 152 153 #define RK3576_SYS_CLUSTER_PD_CTRL 0x030 154 #define RK3576_CLUSTER_PD_EN_SHIFT 0 155 156 #define RK3588_SYS_PD_CTRL 0x034 157 #define RK3588_CLUSTER0_PD_EN_SHIFT 0 158 #define RK3588_CLUSTER1_PD_EN_SHIFT 1 159 #define RK3588_CLUSTER2_PD_EN_SHIFT 2 160 #define RK3588_CLUSTER3_PD_EN_SHIFT 3 161 #define RK3588_DSC_8K_PD_EN_SHIFT 5 162 #define RK3588_DSC_4K_PD_EN_SHIFT 6 163 #define RK3588_ESMART_PD_EN_SHIFT 7 164 165 #define RK3576_SYS_ESMART_PD_CTRL 0x034 166 #define RK3576_ESMART_PD_EN_SHIFT 0 167 #define RK3576_ESMART_LB_MODE_SEL_SHIFT 6 168 #define RK3576_ESMART_LB_MODE_SEL_MASK 0x3 169 170 #define RK3568_SYS_OTP_WIN_EN 0x50 171 #define OTP_WIN_EN_SHIFT 0 172 #define RK3568_SYS_LUT_PORT_SEL 0x58 173 #define GAMMA_PORT_SEL_MASK 0x3 174 #define GAMMA_PORT_SEL_SHIFT 0 175 #define GAMMA_AHB_WRITE_SEL_MASK 0x3 176 #define GAMMA_AHB_WRITE_SEL_SHIFT 12 177 #define PORT_MERGE_EN_SHIFT 16 178 #define ESMART_LB_MODE_SEL_MASK 0x3 179 #define ESMART_LB_MODE_SEL_SHIFT 26 180 181 #define RK3568_VP0_LINE_FLAG 0x70 182 #define RK3568_VP1_LINE_FLAG 0x74 183 #define RK3568_VP2_LINE_FLAG 0x78 184 #define RK3568_SYS0_INT_EN 0x80 185 #define RK3568_SYS0_INT_CLR 0x84 186 #define RK3568_SYS0_INT_STATUS 0x88 187 #define RK3568_SYS1_INT_EN 0x90 188 #define RK3568_SYS1_INT_CLR 0x94 189 #define RK3568_SYS1_INT_STATUS 0x98 190 #define RK3568_VP0_INT_EN 0xA0 191 #define RK3568_VP0_INT_CLR 0xA4 192 #define RK3568_VP0_INT_STATUS 0xA8 193 #define RK3568_VP1_INT_EN 0xB0 194 #define RK3568_VP1_INT_CLR 0xB4 195 #define RK3568_VP1_INT_STATUS 0xB8 196 #define RK3568_VP2_INT_EN 0xC0 197 #define RK3568_VP2_INT_CLR 0xC4 198 #define RK3568_VP2_INT_STATUS 0xC8 199 #define RK3568_VP2_INT_RAW_STATUS 0xCC 200 #define RK3588_VP3_INT_EN 0xD0 201 #define RK3588_VP3_INT_CLR 0xD4 202 #define RK3588_VP3_INT_STATUS 0xD8 203 #define RK3576_WB_CTRL 0x100 204 #define RK3576_WB_XSCAL_FACTOR 0x104 205 #define RK3576_WB_YRGB_MST 0x108 206 #define RK3576_WB_CBR_MST 0x10C 207 #define RK3576_WB_VIR_STRIDE 0x110 208 #define RK3576_WB_TIMEOUT_CTRL 0x114 209 #define RK3576_MIPI0_IF_CTRL 0x180 210 #define RK3576_IF_OUT_EN_SHIFT 0 211 #define RK3576_IF_CLK_OUT_EN_SHIFT 1 212 #define RK3576_IF_PORT_SEL_SHIFT 2 213 #define RK3576_IF_PORT_SEL_MASK 0x3 214 #define RK3576_IF_PIN_POL_SHIFT 4 215 #define RK3576_IF_PIN_POL_MASK 0x7 216 #define RK3576_IF_SPLIT_EN_SHIFT 8 217 #define RK3576_IF_DATA1_SEL_SHIFT 9 218 #define RK3576_MIPI_CMD_MODE_SHIFT 11 219 #define RK3576_IF_DCLK_SEL_SHIFT 21 220 #define RK3576_IF_DCLK_SEL_MASK 0x1 221 #define RK3576_IF_PIX_CLK_SEL_SHIFT 20 222 #define RK3576_IF_PIX_CLK_SEL_MASK 0x1 223 #define RK3576_IF_REGDONE_IMD_EN_SHIFT 31 224 #define RK3576_HDMI0_IF_CTRL 0x184 225 #define RK3576_EDP0_IF_CTRL 0x188 226 #define RK3576_DP0_IF_CTRL 0x18C 227 #define RK3576_RGB_IF_CTRL 0x194 228 #define RK3576_BT656_OUT_EN_SHIFT 12 229 #define RK3576_BT656_UV_SWAP_SHIFT 13 230 #define RK3576_BT656_YC_SWAP_SHIFT 14 231 #define RK3576_BT1120_OUT_EN_SHIFT 16 232 #define RK3576_BT1120_UV_SWAP_SHIFT 17 233 #define RK3576_BT1120_YC_SWAP_SHIFT 18 234 #define RK3576_DP1_IF_CTRL 0x1A4 235 #define RK3576_DP2_IF_CTRL 0x1B0 236 237 #define RK3588_SYS_VAR_FREQ_CTRL 0x038 238 #define RK3588_VP0_LINE_FLAG_OR_EN_SHIFT 20 239 #define RK3588_VP0_DSP_HOLD_OR_EN_SHIFT 24 240 #define RK3588_VP0_ALMOST_FULL_OR_EN_SHIFT 28 241 242 #define RK3568_SYS_STATUS0 0x60 243 #define RK3588_CLUSTER0_PD_STATUS_SHIFT 8 244 #define RK3588_CLUSTER1_PD_STATUS_SHIFT 9 245 #define RK3588_CLUSTER2_PD_STATUS_SHIFT 10 246 #define RK3588_CLUSTER3_PD_STATUS_SHIFT 11 247 #define RK3588_DSC_8K_PD_STATUS_SHIFT 13 248 #define RK3588_DSC_4K_PD_STATUS_SHIFT 14 249 #define RK3588_ESMART_PD_STATUS_SHIFT 15 250 251 #define RK3568_SYS_CTRL_LINE_FLAG0 0x70 252 #define LINE_FLAG_NUM_MASK 0x1fff 253 #define RK3568_DSP_LINE_FLAG_NUM0_SHIFT 0 254 #define RK3568_DSP_LINE_FLAG_NUM1_SHIFT 16 255 256 /* DSC CTRL registers definition */ 257 #define RK3588_DSC_8K_SYS_CTRL 0x200 258 #define DSC_PORT_SEL_MASK 0x3 259 #define DSC_PORT_SEL_SHIFT 0 260 #define DSC_MAN_MODE_MASK 0x1 261 #define DSC_MAN_MODE_SHIFT 2 262 #define DSC_INTERFACE_MODE_MASK 0x3 263 #define DSC_INTERFACE_MODE_SHIFT 4 264 #define DSC_PIXEL_NUM_MASK 0x3 265 #define DSC_PIXEL_NUM_SHIFT 6 266 #define DSC_PXL_CLK_DIV_MASK 0x1 267 #define DSC_PXL_CLK_DIV_SHIFT 8 268 #define DSC_CDS_CLK_DIV_MASK 0x3 269 #define DSC_CDS_CLK_DIV_SHIFT 12 270 #define DSC_TXP_CLK_DIV_MASK 0x3 271 #define DSC_TXP_CLK_DIV_SHIFT 14 272 #define DSC_INIT_DLY_MODE_MASK 0x1 273 #define DSC_INIT_DLY_MODE_SHIFT 16 274 #define DSC_SCAN_EN_SHIFT 17 275 #define DSC_HALT_EN_SHIFT 18 276 277 #define RK3588_DSC_8K_RST 0x204 278 #define RST_DEASSERT_MASK 0x1 279 #define RST_DEASSERT_SHIFT 0 280 281 #define RK3588_DSC_8K_CFG_DONE 0x208 282 #define DSC_CFG_DONE_SHIFT 0 283 284 #define RK3588_DSC_8K_INIT_DLY 0x20C 285 #define DSC_INIT_DLY_NUM_MASK 0xffff 286 #define DSC_INIT_DLY_NUM_SHIFT 0 287 #define SCAN_TIMING_PARA_IMD_EN_SHIFT 16 288 289 #define RK3588_DSC_8K_HTOTAL_HS_END 0x210 290 #define DSC_HTOTAL_PW_MASK 0xffffffff 291 #define DSC_HTOTAL_PW_SHIFT 0 292 293 #define RK3588_DSC_8K_HACT_ST_END 0x214 294 #define DSC_HACT_ST_END_MASK 0xffffffff 295 #define DSC_HACT_ST_END_SHIFT 0 296 297 #define RK3588_DSC_8K_VTOTAL_VS_END 0x218 298 #define DSC_VTOTAL_PW_MASK 0xffffffff 299 #define DSC_VTOTAL_PW_SHIFT 0 300 301 #define RK3588_DSC_8K_VACT_ST_END 0x21C 302 #define DSC_VACT_ST_END_MASK 0xffffffff 303 #define DSC_VACT_ST_END_SHIFT 0 304 305 #define RK3588_DSC_8K_STATUS 0x220 306 307 /* Overlay registers definition */ 308 #define RK3528_OVL_SYS 0x500 309 #define RK3528_OVL_SYS_PORT_SEL 0x504 310 #define RK3528_OVL_SYS_GATING_EN 0x508 311 #define RK3528_OVL_SYS_CLUSTER0_CTRL 0x510 312 #define RK3528_OVL_SYS_ESMART0_CTRL 0x520 313 #define ESMART_DLY_NUM_MASK 0xff 314 #define ESMART_DLY_NUM_SHIFT 0 315 #define RK3528_OVL_SYS_ESMART1_CTRL 0x524 316 #define RK3528_OVL_SYS_ESMART2_CTRL 0x528 317 #define RK3528_OVL_SYS_ESMART3_CTRL 0x52C 318 #define RK3528_CLUSTER0_MIX_SRC_COLOR_CTRL 0x530 319 #define RK3528_CLUSTER0_MIX_DST_COLOR_CTRL 0x534 320 #define RK3528_CLUSTER0_MIX_SRC_ALPHA_CTRL 0x538 321 #define RK3528_CLUSTER0_MIX_DST_ALPHA_CTRL 0x53c 322 #define RK3576_CLUSTER1_MIX_SRC_COLOR_CTRL 0x540 323 #define RK3576_CLUSTER1_MIX_DST_COLOR_CTRL 0x544 324 #define RK3576_CLUSTER1_MIX_SRC_ALPHA_CTRL 0x548 325 #define RK3576_CLUSTER1_MIX_DST_ALPHA_CTRL 0x54c 326 327 #define RK3528_OVL_PORT0_CTRL 0x600 328 #define RK3568_OVL_CTRL 0x600 329 #define OVL_MODE_SEL_MASK 0x1 330 #define OVL_MODE_SEL_SHIFT 0 331 #define OVL_PORT_MUX_REG_DONE_IMD_SHIFT 28 332 #define RK3528_OVL_PORT0_LAYER_SEL 0x604 333 #define RK3568_OVL_LAYER_SEL 0x604 334 #define LAYER_SEL_MASK 0xf 335 336 #define RK3568_OVL_PORT_SEL 0x608 337 #define PORT_MUX_MASK 0xf 338 #define PORT_MUX_SHIFT 0 339 #define LAYER_SEL_PORT_MASK 0x3 340 #define LAYER_SEL_PORT_SHIFT 16 341 342 #define RK3568_CLUSTER0_MIX_SRC_COLOR_CTRL 0x610 343 #define RK3568_CLUSTER0_MIX_DST_COLOR_CTRL 0x614 344 #define RK3568_CLUSTER0_MIX_SRC_ALPHA_CTRL 0x618 345 #define RK3568_CLUSTER0_MIX_DST_ALPHA_CTRL 0x61C 346 #define RK3528_OVL_PORT0_MIX0_SRC_COLOR_CTRL 0x620 347 #define RK3528_OVL_PORT0_MIX0_DST_COLOR_CTRL 0x624 348 #define RK3528_OVL_PORT0_MIX0_SRC_ALPHA_CTRL 0x628 349 #define RK3528_OVL_PORT0_MIX0_DST_ALPHA_CTRL 0x62C 350 #define RK3528_OVL_PORT0_MIX1_SRC_COLOR_CTRL 0x630 351 #define RK3528_OVL_PORT0_MIX1_DST_COLOR_CTRL 0x634 352 #define RK3528_OVL_PORT0_MIX1_SRC_ALPHA_CTRL 0x638 353 #define RK3528_OVL_PORT0_MIX1_DST_ALPHA_CTRL 0x63C 354 #define RK3528_OVL_PORT0_MIX2_SRC_COLOR_CTRL 0x640 355 #define RK3528_OVL_PORT0_MIX2_DST_COLOR_CTRL 0x644 356 #define RK3528_OVL_PORT0_MIX2_SRC_ALPHA_CTRL 0x648 357 #define RK3528_OVL_PORT0_MIX2_DST_ALPHA_CTRL 0x64C 358 #define RK3568_MIX0_SRC_COLOR_CTRL 0x650 359 #define RK3568_MIX0_DST_COLOR_CTRL 0x654 360 #define RK3568_MIX0_SRC_ALPHA_CTRL 0x658 361 #define RK3568_MIX0_DST_ALPHA_CTRL 0x65C 362 #define RK3576_EXTRA_SRC_COLOR_CTRL 0x650 363 #define RK3576_EXTRA_DST_COLOR_CTRL 0x654 364 #define RK3576_EXTRA_SRC_ALPHA_CTRL 0x658 365 #define RK3576_EXTRA_DST_ALPHA_CTRL 0x65C 366 #define RK3528_HDR_SRC_COLOR_CTRL 0x660 367 #define RK3528_HDR_DST_COLOR_CTRL 0x664 368 #define RK3528_HDR_SRC_ALPHA_CTRL 0x668 369 #define RK3528_HDR_DST_ALPHA_CTRL 0x66C 370 #define RK3528_OVL_PORT0_BG_MIX_CTRL 0x670 371 #define RK3568_HDR0_SRC_COLOR_CTRL 0x6C0 372 #define RK3568_HDR0_DST_COLOR_CTRL 0x6C4 373 #define RK3568_HDR0_SRC_ALPHA_CTRL 0x6C8 374 #define RK3568_HDR0_DST_ALPHA_CTRL 0x6CC 375 #define RK3568_VP0_BG_MIX_CTRL 0x6E0 376 #define BG_MIX_CTRL_MASK 0xff 377 #define BG_MIX_CTRL_SHIFT 24 378 #define RK3568_VP1_BG_MIX_CTRL 0x6E4 379 #define RK3568_VP2_BG_MIX_CTRL 0x6E8 380 #define RK3568_CLUSTER_DLY_NUM 0x6F0 381 #define RK3568_SMART_DLY_NUM 0x6F8 382 383 #define RK3528_OVL_PORT1_CTRL 0x700 384 #define RK3528_OVL_PORT1_LAYER_SEL 0x704 385 #define RK3528_OVL_PORT1_MIX0_SRC_COLOR_CTRL 0x720 386 #define RK3528_OVL_PORT1_MIX0_DST_COLOR_CTRL 0x724 387 #define RK3528_OVL_PORT1_MIX0_SRC_ALPHA_CTRL 0x728 388 #define RK3528_OVL_PORT1_MIX0_DST_ALPHA_CTRL 0x72C 389 #define RK3528_OVL_PORT1_MIX1_SRC_COLOR_CTRL 0x730 390 #define RK3528_OVL_PORT1_MIX1_DST_COLOR_CTRL 0x734 391 #define RK3528_OVL_PORT1_MIX1_SRC_ALPHA_CTRL 0x738 392 #define RK3528_OVL_PORT1_MIX1_DST_ALPHA_CTRL 0x73C 393 #define RK3528_OVL_PORT1_MIX2_SRC_COLOR_CTRL 0x740 394 #define RK3528_OVL_PORT1_MIX2_DST_COLOR_CTRL 0x744 395 #define RK3528_OVL_PORT1_MIX2_SRC_ALPHA_CTRL 0x748 396 #define RK3528_OVL_PORT1_MIX2_DST_ALPHA_CTRL 0x74C 397 #define RK3528_OVL_PORT1_BG_MIX_CTRL 0x770 398 #define RK3576_OVL_PORT2_CTRL 0x800 399 #define RK3576_OVL_PORT2_LAYER_SEL 0x804 400 #define RK3576_OVL_PORT2_MIX0_SRC_COLOR_CTRL 0x820 401 #define RK3576_OVL_PORT2_MIX0_DST_COLOR_CTRL 0x824 402 #define RK3576_OVL_PORT2_MIX0_SRC_ALPHA_CTRL 0x828 403 #define RK3576_OVL_PORT2_MIX0_DST_ALPHA_CTRL 0x82C 404 #define RK3576_OVL_PORT2_BG_MIX_CTRL 0x870 405 406 /* Video Port registers definition */ 407 #define RK3568_VP0_DSP_CTRL 0xC00 408 #define OUT_MODE_MASK 0xf 409 #define OUT_MODE_SHIFT 0 410 #define DATA_SWAP_MASK 0x1f 411 #define DATA_SWAP_SHIFT 8 412 #define DSP_BG_SWAP 0x1 413 #define DSP_RB_SWAP 0x2 414 #define DSP_RG_SWAP 0x4 415 #define DSP_DELTA_SWAP 0x8 416 #define CORE_DCLK_DIV_EN_SHIFT 4 417 #define P2I_EN_SHIFT 5 418 #define DSP_FILED_POL 6 419 #define INTERLACE_EN_SHIFT 7 420 #define DSP_X_MIR_EN_SHIFT 13 421 #define POST_DSP_OUT_R2Y_SHIFT 15 422 #define PRE_DITHER_DOWN_EN_SHIFT 16 423 #define DITHER_DOWN_EN_SHIFT 17 424 #define DITHER_DOWN_SEL_SHIFT 18 425 #define DITHER_DOWN_SEL_MASK 0x3 426 #define DITHER_DOWN_MODE_SHIFT 20 427 #define GAMMA_UPDATE_EN_SHIFT 22 428 #define DSP_LUT_EN_SHIFT 28 429 430 #define STANDBY_EN_SHIFT 31 431 432 #define RK3568_VP0_MIPI_CTRL 0xC04 433 #define DCLK_DIV2_SHIFT 4 434 #define DCLK_DIV2_MASK 0x3 435 #define MIPI_DUAL_EN_SHIFT 20 436 #define MIPI_DUAL_SWAP_EN_SHIFT 21 437 #define EDPI_TE_EN 28 438 #define EDPI_WMS_HOLD_EN 30 439 #define EDPI_WMS_FS 31 440 441 442 #define RK3568_VP0_COLOR_BAR_CTRL 0xC08 443 #define POST_URGENCY_EN_SHIFT 8 444 #define POST_URGENCY_THL_SHIFT 16 445 #define POST_URGENCY_THL_MASK 0xf 446 #define POST_URGENCY_THH_SHIFT 20 447 #define POST_URGENCY_THH_MASK 0xf 448 449 #define RK3568_VP0_DCLK_SEL 0xC0C 450 #define RK3576_DCLK_CORE_SEL_SHIFT 0 451 #define RK3576_DCLK_OUT_SEL_SHIFT 2 452 453 #define RK3568_VP0_3D_LUT_CTRL 0xC10 454 #define VP0_3D_LUT_EN_SHIFT 0 455 #define VP0_3D_LUT_UPDATE_SHIFT 2 456 457 #define RK3588_VP0_CLK_CTRL 0xC0C 458 #define DCLK_CORE_DIV_SHIFT 0 459 #define DCLK_OUT_DIV_SHIFT 2 460 461 #define RK3568_VP0_3D_LUT_MST 0xC20 462 463 #define RK3568_VP0_DSP_BG 0xC2C 464 #define RK3568_VP0_PRE_SCAN_HTIMING 0xC30 465 #define RK3568_VP0_POST_DSP_HACT_INFO 0xC34 466 #define RK3568_VP0_POST_DSP_VACT_INFO 0xC38 467 #define RK3568_VP0_POST_SCL_FACTOR_YRGB 0xC3C 468 #define RK3568_VP0_POST_SCL_CTRL 0xC40 469 #define RK3568_VP0_POST_SCALE_MASK 0x3 470 #define RK3568_VP0_POST_SCALE_SHIFT 0 471 #define RK3568_VP0_POST_DSP_VACT_INFO_F1 0xC44 472 #define RK3568_VP0_DSP_HTOTAL_HS_END 0xC48 473 #define RK3568_VP0_DSP_HACT_ST_END 0xC4C 474 #define RK3568_VP0_DSP_VTOTAL_VS_END 0xC50 475 #define RK3568_VP0_DSP_VACT_ST_END 0xC54 476 #define RK3568_VP0_DSP_VS_ST_END_F1 0xC58 477 #define RK3568_VP0_DSP_VACT_ST_END_F1 0xC5C 478 479 #define RK3568_VP0_BCSH_CTRL 0xC60 480 #define BCSH_CTRL_Y2R_SHIFT 0 481 #define BCSH_CTRL_Y2R_MASK 0x1 482 #define BCSH_CTRL_Y2R_CSC_MODE_SHIFT 2 483 #define BCSH_CTRL_Y2R_CSC_MODE_MASK 0x3 484 #define BCSH_CTRL_R2Y_SHIFT 4 485 #define BCSH_CTRL_R2Y_MASK 0x1 486 #define BCSH_CTRL_R2Y_CSC_MODE_SHIFT 6 487 #define BCSH_CTRL_R2Y_CSC_MODE_MASK 0x3 488 489 #define RK3568_VP0_BCSH_BCS 0xC64 490 #define BCSH_BRIGHTNESS_SHIFT 0 491 #define BCSH_BRIGHTNESS_MASK 0xFF 492 #define BCSH_CONTRAST_SHIFT 8 493 #define BCSH_CONTRAST_MASK 0x1FF 494 #define BCSH_SATURATION_SHIFT 20 495 #define BCSH_SATURATION_MASK 0x3FF 496 #define BCSH_OUT_MODE_SHIFT 30 497 #define BCSH_OUT_MODE_MASK 0x3 498 499 #define RK3568_VP0_BCSH_H 0xC68 500 #define BCSH_SIN_HUE_SHIFT 0 501 #define BCSH_SIN_HUE_MASK 0x1FF 502 #define BCSH_COS_HUE_SHIFT 16 503 #define BCSH_COS_HUE_MASK 0x1FF 504 505 #define RK3568_VP0_BCSH_COLOR 0xC6C 506 #define BCSH_EN_SHIFT 31 507 #define BCSH_EN_MASK 1 508 509 #define RK3576_VP0_POST_DITHER_FRC_0 0xCA0 510 #define RK3576_VP0_POST_DITHER_FRC_1 0xCA4 511 #define RK3576_VP0_POST_DITHER_FRC_2 0xCA8 512 513 #define RK3528_VP0_ACM_CTRL 0xCD0 514 #define POST_CSC_COE00_MASK 0xFFFF 515 #define POST_CSC_COE00_SHIFT 16 516 #define POST_R2Y_MODE_MASK 0x7 517 #define POST_R2Y_MODE_SHIFT 8 518 #define POST_CSC_MODE_MASK 0x7 519 #define POST_CSC_MODE_SHIFT 3 520 #define POST_R2Y_EN_MASK 0x1 521 #define POST_R2Y_EN_SHIFT 2 522 #define POST_CSC_EN_MASK 0x1 523 #define POST_CSC_EN_SHIFT 1 524 #define POST_ACM_BYPASS_EN_MASK 0x1 525 #define POST_ACM_BYPASS_EN_SHIFT 0 526 #define RK3528_VP0_CSC_COE01_02 0xCD4 527 #define RK3528_VP0_CSC_COE10_11 0xCD8 528 #define RK3528_VP0_CSC_COE12_20 0xCDC 529 #define RK3528_VP0_CSC_COE21_22 0xCE0 530 #define RK3528_VP0_CSC_OFFSET0 0xCE4 531 #define RK3528_VP0_CSC_OFFSET1 0xCE8 532 #define RK3528_VP0_CSC_OFFSET2 0xCEC 533 534 #define RK3562_VP0_MCU_CTRL 0xCF8 535 #define MCU_TYPE_SHIFT 31 536 #define MCU_BYPASS_SHIFT 30 537 #define MCU_RS_SHIFT 29 538 #define MCU_FRAME_ST_SHIFT 28 539 #define MCU_HOLD_MODE_SHIFT 27 540 #define MCU_CLK_SEL_SHIFT 26 541 #define MCU_CLK_SEL_MASK 0x1 542 #define MCU_RW_PEND_SHIFT 20 543 #define MCU_RW_PEND_MASK 0x3F 544 #define MCU_RW_PST_SHIFT 16 545 #define MCU_RW_PST_MASK 0xF 546 #define MCU_CS_PEND_SHIFT 10 547 #define MCU_CS_PEND_MASK 0x3F 548 #define MCU_CS_PST_SHIFT 6 549 #define MCU_CS_PST_MASK 0xF 550 #define MCU_PIX_TOTAL_SHIFT 0 551 #define MCU_PIX_TOTAL_MASK 0x3F 552 553 #define RK3562_VP0_MCU_RW_BYPASS_PORT 0xCFC 554 #define MCU_WRITE_DATA_BYPASS_SHIFT 0 555 #define MCU_WRITE_DATA_BYPASS_MASK 0xFFFFFFFF 556 557 #define RK3568_VP1_DSP_CTRL 0xD00 558 #define RK3568_VP1_MIPI_CTRL 0xD04 559 #define RK3568_VP1_COLOR_BAR_CTRL 0xD08 560 #define RK3568_VP1_PRE_SCAN_HTIMING 0xD30 561 #define RK3568_VP1_POST_DSP_HACT_INFO 0xD34 562 #define RK3568_VP1_POST_DSP_VACT_INFO 0xD38 563 #define RK3568_VP1_POST_SCL_FACTOR_YRGB 0xD3C 564 #define RK3568_VP1_POST_SCL_CTRL 0xD40 565 #define RK3568_VP1_DSP_HACT_INFO 0xD34 566 #define RK3568_VP1_DSP_VACT_INFO 0xD38 567 #define RK3568_VP1_POST_DSP_VACT_INFO_F1 0xD44 568 #define RK3568_VP1_DSP_HTOTAL_HS_END 0xD48 569 #define RK3568_VP1_DSP_HACT_ST_END 0xD4C 570 #define RK3568_VP1_DSP_VTOTAL_VS_END 0xD50 571 #define RK3568_VP1_DSP_VACT_ST_END 0xD54 572 #define RK3568_VP1_DSP_VS_ST_END_F1 0xD58 573 #define RK3568_VP1_DSP_VACT_ST_END_F1 0xD5C 574 575 #define RK3568_VP2_DSP_CTRL 0xE00 576 #define RK3568_VP2_MIPI_CTRL 0xE04 577 #define RK3568_VP2_COLOR_BAR_CTRL 0xE08 578 #define RK3568_VP2_PRE_SCAN_HTIMING 0xE30 579 #define RK3568_VP2_POST_DSP_HACT_INFO 0xE34 580 #define RK3568_VP2_POST_DSP_VACT_INFO 0xE38 581 #define RK3568_VP2_POST_SCL_FACTOR_YRGB 0xE3C 582 #define RK3568_VP2_POST_SCL_CTRL 0xE40 583 #define RK3568_VP2_DSP_HACT_INFO 0xE34 584 #define RK3568_VP2_DSP_VACT_INFO 0xE38 585 #define RK3568_VP2_POST_DSP_VACT_INFO_F1 0xE44 586 #define RK3568_VP2_DSP_HTOTAL_HS_END 0xE48 587 #define RK3568_VP2_DSP_HACT_ST_END 0xE4C 588 #define RK3568_VP2_DSP_VTOTAL_VS_END 0xE50 589 #define RK3568_VP2_DSP_VACT_ST_END 0xE54 590 #define RK3568_VP2_DSP_VS_ST_END_F1 0xE58 591 #define RK3568_VP2_DSP_VACT_ST_END_F1 0xE5C 592 #define RK3568_VP2_BCSH_CTRL 0xE60 593 #define RK3568_VP2_BCSH_BCS 0xE64 594 #define RK3568_VP2_BCSH_H 0xE68 595 #define RK3568_VP2_BCSH_COLOR_BAR 0xE6C 596 #define RK3576_VP2_MCU_CTRL 0xEF8 597 #define RK3576_VP2_MCU_RW_BYPASS_PORT 0xEFC 598 599 /* Cluster0 register definition */ 600 #define RK3568_CLUSTER0_WIN0_CTRL0 0x1000 601 #define CLUSTER_YUV2RGB_EN_SHIFT 8 602 #define CLUSTER_RGB2YUV_EN_SHIFT 9 603 #define CLUSTER_CSC_MODE_SHIFT 10 604 #define CLUSTER_DITHER_UP_EN_SHIFT 18 605 #define RK3568_CLUSTER0_WIN0_CTRL1 0x1004 606 #define RK3568_CLUSTER_YRGB_XSCL_MODE_SHIFT 12 607 #define RK3568_CLUSTER_YRGB_YSCL_MODE_SHIFT 14 608 #define RK3528_CLUSTER_YRGB_YSCL_MODE_SHIFT 14 609 #define AVG2_MASK 0x1 610 #define CLUSTER_AVG2_SHIFT 18 611 #define AVG4_MASK 0x1 612 #define CLUSTER_AVG4_SHIFT 19 613 #define RK3528_CLUSTER_YRGB_XSCL_MODE_SHIFT 22 614 #define CLUSTER_XGT_EN_SHIFT 24 615 #define XGT_MODE_MASK 0x3 616 #define CLUSTER_XGT_MODE_SHIFT 25 617 #define CLUSTER_XAVG_EN_SHIFT 27 618 #define CLUSTER_YRGB_GT2_SHIFT 28 619 #define CLUSTER_YRGB_GT4_SHIFT 29 620 #define RK3568_CLUSTER0_WIN0_CTRL2 0x1008 621 #define CLUSTER_AXI_YRGB_ID_MASK 0x1f 622 #define CLUSTER_AXI_YRGB_ID_SHIFT 0 623 #define CLUSTER_AXI_UV_ID_MASK 0x1f 624 #define CLUSTER_AXI_UV_ID_SHIFT 5 625 626 #define RK3568_CLUSTER0_WIN0_YRGB_MST 0x1010 627 #define RK3568_CLUSTER0_WIN0_CBR_MST 0x1014 628 #define RK3568_CLUSTER0_WIN0_VIR 0x1018 629 #define RK3568_CLUSTER0_WIN0_ACT_INFO 0x1020 630 #define RK3568_CLUSTER0_WIN0_DSP_INFO 0x1024 631 #define RK3568_CLUSTER0_WIN0_DSP_ST 0x1028 632 #define RK3568_CLUSTER0_WIN0_SCL_FACTOR_YRGB 0x1030 633 #define RK3576_CLUSTER0_WIN0_ZME_CTRL 0x1040 634 #define WIN0_ZME_DERING_EN_SHIFT 3 635 #define WIN0_ZME_GATING_EN_SHIFT 31 636 #define RK3576_CLUSTER0_WIN0_ZME_DERING_PARA 0x1044 637 #define RK3568_CLUSTER0_WIN0_AFBCD_ROTATE_MODE 0x1054 638 #define RK3568_CLUSTER0_WIN0_AFBCD_HDR_PTR 0x1058 639 #define RK3568_CLUSTER0_WIN0_AFBCD_VIR_WIDTH 0x105C 640 #define RK3568_CLUSTER0_WIN0_AFBCD_PIC_SIZE 0x1060 641 #define RK3568_CLUSTER0_WIN0_AFBCD_PIC_OFFSET 0x1064 642 #define RK3568_CLUSTER0_WIN0_AFBCD_DSP_OFFSET 0x1068 643 #define RK3568_CLUSTER0_WIN0_AFBCD_CTRL 0x106C 644 #define CLUSTER_AFBCD_HALF_BLOCK_SHIFT 7 645 #define RK3576_CLUSTER0_WIN0_PLD_PTR_OFFSET 0x1078 646 #define RK3576_CLUSTER0_WIN0_PLD_PTR_RANGE 0x107C 647 648 #define RK3568_CLUSTER0_WIN1_CTRL0 0x1080 649 #define RK3568_CLUSTER0_WIN1_CTRL1 0x1084 650 #define RK3568_CLUSTER0_WIN1_YRGB_MST 0x1090 651 #define RK3568_CLUSTER0_WIN1_CBR_MST 0x1094 652 #define RK3568_CLUSTER0_WIN1_VIR 0x1098 653 #define RK3568_CLUSTER0_WIN1_ACT_INFO 0x10A0 654 #define RK3568_CLUSTER0_WIN1_DSP_INFO 0x10A4 655 #define RK3568_CLUSTER0_WIN1_DSP_ST 0x10A8 656 #define RK3568_CLUSTER0_WIN1_SCL_FACTOR_YRGB 0x10B0 657 #define RK3568_CLUSTER0_WIN1_AFBCD_ROTATE_MODE 0x10D4 658 #define RK3568_CLUSTER0_WIN1_AFBCD_HDR_PTR 0x10D8 659 #define RK3568_CLUSTER0_WIN1_AFBCD_VIR_WIDTH 0x10DC 660 #define RK3568_CLUSTER0_WIN1_AFBCD_PIC_SIZE 0x10E0 661 #define RK3568_CLUSTER0_WIN1_AFBCD_PIC_OFFSET 0x10E4 662 #define RK3568_CLUSTER0_WIN1_AFBCD_DSP_OFFSET 0x10E8 663 #define RK3568_CLUSTER0_WIN1_AFBCD_CTRL 0x10EC 664 #define RK3576_CLUSTER0_WIN1_PLD_PTR_OFFSET 0x10F8 665 #define RK3576_CLUSTER0_WIN1_PLD_PTR_RANGE 0x10FC 666 667 #define RK3568_CLUSTER0_CTRL 0x1100 668 #define CLUSTER_EN_SHIFT 0 669 #define CLUSTER_AXI_ID_MASK 0x1 670 #define CLUSTER_AXI_ID_SHIFT 13 671 #define RK3576_CLUSTER0_PORT_SEL 0x11F4 672 #define CLUSTER_PORT_SEL_SHIFT 0 673 #define CLUSTER_PORT_SEL_MASK 0x3 674 #define RK3576_CLUSTER0_DLY_NUM 0x11F8 675 #define CLUSTER_WIN0_DLY_NUM_SHIFT 0 676 #define CLUSTER_WIN0_DLY_NUM_MASK 0xff 677 #define CLUSTER_WIN1_DLY_NUM_SHIFT 0 678 #define CLUSTER_WIN1_DLY_NUM_MASK 0xff 679 680 #define RK3568_CLUSTER1_WIN0_CTRL0 0x1200 681 #define RK3568_CLUSTER1_WIN0_CTRL1 0x1204 682 #define RK3568_CLUSTER1_WIN0_YRGB_MST 0x1210 683 #define RK3568_CLUSTER1_WIN0_CBR_MST 0x1214 684 #define RK3568_CLUSTER1_WIN0_VIR 0x1218 685 #define RK3568_CLUSTER1_WIN0_ACT_INFO 0x1220 686 #define RK3568_CLUSTER1_WIN0_DSP_INFO 0x1224 687 #define RK3568_CLUSTER1_WIN0_DSP_ST 0x1228 688 #define RK3568_CLUSTER1_WIN0_SCL_FACTOR_YRGB 0x1230 689 #define RK3576_CLUSTER1_WIN0_ZME_CTRL 0x1240 690 #define RK3576_CLUSTER1_WIN0_ZME_DERING_PARA 0x1244 691 #define RK3568_CLUSTER1_WIN0_AFBCD_ROTATE_MODE 0x1254 692 #define RK3568_CLUSTER1_WIN0_AFBCD_HDR_PTR 0x1258 693 #define RK3568_CLUSTER1_WIN0_AFBCD_VIR_WIDTH 0x125C 694 #define RK3568_CLUSTER1_WIN0_AFBCD_PIC_SIZE 0x1260 695 #define RK3568_CLUSTER1_WIN0_AFBCD_PIC_OFFSET 0x1264 696 #define RK3568_CLUSTER1_WIN0_AFBCD_DSP_OFFSET 0x1268 697 #define RK3568_CLUSTER1_WIN0_AFBCD_CTRL 0x126C 698 #define RK3576_CLUSTER1_WIN0_PLD_PTR_OFFSET 0x1278 699 #define RK3576_CLUSTER1_WIN0_PLD_PTR_RANGE 0x127C 700 701 #define RK3568_CLUSTER1_WIN1_CTRL0 0x1280 702 #define RK3568_CLUSTER1_WIN1_CTRL1 0x1284 703 #define RK3568_CLUSTER1_WIN1_YRGB_MST 0x1290 704 #define RK3568_CLUSTER1_WIN1_CBR_MST 0x1294 705 #define RK3568_CLUSTER1_WIN1_VIR 0x1298 706 #define RK3568_CLUSTER1_WIN1_ACT_INFO 0x12A0 707 #define RK3568_CLUSTER1_WIN1_DSP_INFO 0x12A4 708 #define RK3568_CLUSTER1_WIN1_DSP_ST 0x12A8 709 #define RK3568_CLUSTER1_WIN1_SCL_FACTOR_YRGB 0x12B0 710 #define RK3568_CLUSTER1_WIN1_AFBCD_ROTATE_MODE 0x12D4 711 #define RK3568_CLUSTER1_WIN1_AFBCD_HDR_PTR 0x12D8 712 #define RK3568_CLUSTER1_WIN1_AFBCD_VIR_WIDTH 0x12DC 713 #define RK3568_CLUSTER1_WIN1_AFBCD_PIC_SIZE 0x12E0 714 #define RK3568_CLUSTER1_WIN1_AFBCD_PIC_OFFSET 0x12E4 715 #define RK3568_CLUSTER1_WIN1_AFBCD_DSP_OFFSET 0x12E8 716 #define RK3568_CLUSTER1_WIN1_AFBCD_CTRL 0x12EC 717 #define RK3576_CLUSTER1_WIN1_PLD_PTR_OFFSET 0x12F8 718 #define RK3576_CLUSTER1_WIN1_PLD_PTR_RANGE 0x12FC 719 720 #define RK3568_CLUSTER1_CTRL 0x1300 721 #define RK3576_CLUSTER1_PORT_SEL 0x13F4 722 #define RK3576_CLUSTER1_DLY_NUM 0x13F8 723 724 /* Esmart register definition */ 725 #define RK3568_ESMART0_CTRL0 0x1800 726 #define RGB2YUV_EN_SHIFT 1 727 #define CSC_MODE_SHIFT 2 728 #define CSC_MODE_MASK 0x3 729 #define ESMART_LB_SELECT_SHIFT 12 730 #define ESMART_LB_SELECT_MASK 0x3 731 732 #define RK3568_ESMART0_CTRL1 0x1804 733 #define ESMART_AXI_YRGB_ID_MASK 0x1f 734 #define ESMART_AXI_YRGB_ID_SHIFT 4 735 #define ESMART_AXI_UV_ID_MASK 0x1f 736 #define ESMART_AXI_UV_ID_SHIFT 12 737 #define YMIRROR_EN_SHIFT 31 738 739 #define RK3568_ESMART0_AXI_CTRL 0x1808 740 #define ESMART_AXI_ID_MASK 0x1 741 #define ESMART_AXI_ID_SHIFT 1 742 743 #define RK3568_ESMART0_REGION0_CTRL 0x1810 744 #define WIN_EN_SHIFT 0 745 #define WIN_FORMAT_MASK 0x1f 746 #define WIN_FORMAT_SHIFT 1 747 #define REGION0_DITHER_UP_EN_SHIFT 12 748 #define REGION0_RB_SWAP_SHIFT 14 749 #define ESMART_XAVG_EN_SHIFT 20 750 #define ESMART_XGT_EN_SHIFT 21 751 #define ESMART_XGT_MODE_SHIFT 22 752 753 #define RK3568_ESMART0_REGION0_YRGB_MST 0x1814 754 #define RK3568_ESMART0_REGION0_CBR_MST 0x1818 755 #define RK3568_ESMART0_REGION0_VIR 0x181C 756 #define RK3568_ESMART0_REGION0_ACT_INFO 0x1820 757 #define RK3568_ESMART0_REGION0_DSP_INFO 0x1824 758 #define RK3568_ESMART0_REGION0_DSP_ST 0x1828 759 #define RK3568_ESMART0_REGION0_SCL_CTRL 0x1830 760 #define YRGB_XSCL_MODE_MASK 0x3 761 #define YRGB_XSCL_MODE_SHIFT 0 762 #define YRGB_XSCL_FILTER_MODE_MASK 0x3 763 #define YRGB_XSCL_FILTER_MODE_SHIFT 2 764 #define YRGB_YSCL_MODE_MASK 0x3 765 #define YRGB_YSCL_MODE_SHIFT 4 766 #define YRGB_YSCL_FILTER_MODE_MASK 0x3 767 #define YRGB_YSCL_FILTER_MODE_SHIFT 6 768 769 #define RK3568_ESMART0_REGION0_SCL_FACTOR_YRGB 0x1834 770 #define RK3568_ESMART0_REGION0_SCL_FACTOR_CBR 0x1838 771 #define RK3568_ESMART0_REGION0_SCL_OFFSET 0x183C 772 #define RK3568_ESMART0_REGION1_CTRL 0x1840 773 #define YRGB_GT2_MASK 0x1 774 #define YRGB_GT2_SHIFT 8 775 #define YRGB_GT4_MASK 0x1 776 #define YRGB_GT4_SHIFT 9 777 778 #define RK3568_ESMART0_REGION1_YRGB_MST 0x1844 779 #define RK3568_ESMART0_REGION1_CBR_MST 0x1848 780 #define RK3568_ESMART0_REGION1_VIR 0x184C 781 #define RK3568_ESMART0_REGION1_ACT_INFO 0x1850 782 #define RK3568_ESMART0_REGION1_DSP_INFO 0x1854 783 #define RK3568_ESMART0_REGION1_DSP_ST 0x1858 784 #define RK3568_ESMART0_REGION1_SCL_CTRL 0x1860 785 #define RK3568_ESMART0_REGION1_SCL_FACTOR_YRGB 0x1864 786 #define RK3568_ESMART0_REGION1_SCL_FACTOR_CBR 0x1868 787 #define RK3568_ESMART0_REGION1_SCL_OFFSET 0x186C 788 #define RK3568_ESMART0_REGION2_CTRL 0x1870 789 #define RK3568_ESMART0_REGION2_YRGB_MST 0x1874 790 #define RK3568_ESMART0_REGION2_CBR_MST 0x1878 791 #define RK3568_ESMART0_REGION2_VIR 0x187C 792 #define RK3568_ESMART0_REGION2_ACT_INFO 0x1880 793 #define RK3568_ESMART0_REGION2_DSP_INFO 0x1884 794 #define RK3568_ESMART0_REGION2_DSP_ST 0x1888 795 #define RK3568_ESMART0_REGION2_SCL_CTRL 0x1890 796 #define RK3568_ESMART0_REGION2_SCL_FACTOR_YRGB 0x1894 797 #define RK3568_ESMART0_REGION2_SCL_FACTOR_CBR 0x1898 798 #define RK3568_ESMART0_REGION2_SCL_OFFSET 0x189C 799 #define RK3568_ESMART0_REGION3_CTRL 0x18A0 800 #define RK3568_ESMART0_REGION3_YRGB_MST 0x18A4 801 #define RK3568_ESMART0_REGION3_CBR_MST 0x18A8 802 #define RK3568_ESMART0_REGION3_VIR 0x18AC 803 #define RK3568_ESMART0_REGION3_ACT_INFO 0x18B0 804 #define RK3568_ESMART0_REGION3_DSP_INFO 0x18B4 805 #define RK3568_ESMART0_REGION3_DSP_ST 0x18B8 806 #define RK3568_ESMART0_REGION3_SCL_CTRL 0x18C0 807 #define RK3568_ESMART0_REGION3_SCL_FACTOR_YRGB 0x18C4 808 #define RK3568_ESMART0_REGION3_SCL_FACTOR_CBR 0x18C8 809 #define RK3568_ESMART0_REGION3_SCL_OFFSET 0x18CC 810 #define RK3568_ESMART0_COLOR_KEY_CTRL 0x18D0 811 #define RK3576_ESMART0_ALPHA_MAP 0x18D8 812 #define RK3576_ESMART0_PORT_SEL 0x18F4 813 #define ESMART_PORT_SEL_SHIFT 0 814 #define ESMART_PORT_SEL_MASK 0x3 815 #define RK3576_ESMART0_DLY_NUM 0x18F8 816 817 #define RK3568_ESMART1_CTRL0 0x1A00 818 #define RK3568_ESMART1_CTRL1 0x1A04 819 #define RK3568_ESMART1_REGION0_CTRL 0x1A10 820 #define RK3568_ESMART1_REGION0_YRGB_MST 0x1A14 821 #define RK3568_ESMART1_REGION0_CBR_MST 0x1A18 822 #define RK3568_ESMART1_REGION0_VIR 0x1A1C 823 #define RK3568_ESMART1_REGION0_ACT_INFO 0x1A20 824 #define RK3568_ESMART1_REGION0_DSP_INFO 0x1A24 825 #define RK3568_ESMART1_REGION0_DSP_ST 0x1A28 826 #define RK3568_ESMART1_REGION0_SCL_CTRL 0x1A30 827 #define RK3568_ESMART1_REGION0_SCL_FACTOR_YRGB 0x1A34 828 #define RK3568_ESMART1_REGION0_SCL_FACTOR_CBR 0x1A38 829 #define RK3568_ESMART1_REGION0_SCL_OFFSET 0x1A3C 830 #define RK3568_ESMART1_REGION1_CTRL 0x1A40 831 #define RK3568_ESMART1_REGION1_YRGB_MST 0x1A44 832 #define RK3568_ESMART1_REGION1_CBR_MST 0x1A48 833 #define RK3568_ESMART1_REGION1_VIR 0x1A4C 834 #define RK3568_ESMART1_REGION1_ACT_INFO 0x1A50 835 #define RK3568_ESMART1_REGION1_DSP_INFO 0x1A54 836 #define RK3568_ESMART1_REGION1_DSP_ST 0x1A58 837 #define RK3568_ESMART1_REGION1_SCL_CTRL 0x1A60 838 #define RK3568_ESMART1_REGION1_SCL_FACTOR_YRGB 0x1A64 839 #define RK3568_ESMART1_REGION1_SCL_FACTOR_CBR 0x1A68 840 #define RK3568_ESMART1_REGION1_SCL_OFFSET 0x1A6C 841 #define RK3568_ESMART1_REGION2_CTRL 0x1A70 842 #define RK3568_ESMART1_REGION2_YRGB_MST 0x1A74 843 #define RK3568_ESMART1_REGION2_CBR_MST 0x1A78 844 #define RK3568_ESMART1_REGION2_VIR 0x1A7C 845 #define RK3568_ESMART1_REGION2_ACT_INFO 0x1A80 846 #define RK3568_ESMART1_REGION2_DSP_INFO 0x1A84 847 #define RK3568_ESMART1_REGION2_DSP_ST 0x1A88 848 #define RK3568_ESMART1_REGION2_SCL_CTRL 0x1A90 849 #define RK3568_ESMART1_REGION2_SCL_FACTOR_YRGB 0x1A94 850 #define RK3568_ESMART1_REGION2_SCL_FACTOR_CBR 0x1A98 851 #define RK3568_ESMART1_REGION2_SCL_OFFSET 0x1A9C 852 #define RK3568_ESMART1_REGION3_CTRL 0x1AA0 853 #define RK3568_ESMART1_REGION3_YRGB_MST 0x1AA4 854 #define RK3568_ESMART1_REGION3_CBR_MST 0x1AA8 855 #define RK3568_ESMART1_REGION3_VIR 0x1AAC 856 #define RK3568_ESMART1_REGION3_ACT_INFO 0x1AB0 857 #define RK3568_ESMART1_REGION3_DSP_INFO 0x1AB4 858 #define RK3568_ESMART1_REGION3_DSP_ST 0x1AB8 859 #define RK3568_ESMART1_REGION3_SCL_CTRL 0x1AC0 860 #define RK3568_ESMART1_REGION3_SCL_FACTOR_YRGB 0x1AC4 861 #define RK3568_ESMART1_REGION3_SCL_FACTOR_CBR 0x1AC8 862 #define RK3568_ESMART1_REGION3_SCL_OFFSET 0x1ACC 863 #define RK3576_ESMART1_ALPHA_MAP 0x1AD8 864 #define RK3576_ESMART1_PORT_SEL 0x1AF4 865 #define RK3576_ESMART1_DLY_NUM 0x1AF8 866 867 #define RK3568_SMART0_CTRL0 0x1C00 868 #define RK3568_SMART0_CTRL1 0x1C04 869 #define RK3568_SMART0_REGION0_CTRL 0x1C10 870 #define RK3568_SMART0_REGION0_YRGB_MST 0x1C14 871 #define RK3568_SMART0_REGION0_CBR_MST 0x1C18 872 #define RK3568_SMART0_REGION0_VIR 0x1C1C 873 #define RK3568_SMART0_REGION0_ACT_INFO 0x1C20 874 #define RK3568_SMART0_REGION0_DSP_INFO 0x1C24 875 #define RK3568_SMART0_REGION0_DSP_ST 0x1C28 876 #define RK3568_SMART0_REGION0_SCL_CTRL 0x1C30 877 #define RK3568_SMART0_REGION0_SCL_FACTOR_YRGB 0x1C34 878 #define RK3568_SMART0_REGION0_SCL_FACTOR_CBR 0x1C38 879 #define RK3568_SMART0_REGION0_SCL_OFFSET 0x1C3C 880 #define RK3568_SMART0_REGION1_CTRL 0x1C40 881 #define RK3568_SMART0_REGION1_YRGB_MST 0x1C44 882 #define RK3568_SMART0_REGION1_CBR_MST 0x1C48 883 #define RK3568_SMART0_REGION1_VIR 0x1C4C 884 #define RK3568_SMART0_REGION1_ACT_INFO 0x1C50 885 #define RK3568_SMART0_REGION1_DSP_INFO 0x1C54 886 #define RK3568_SMART0_REGION1_DSP_ST 0x1C58 887 #define RK3568_SMART0_REGION1_SCL_CTRL 0x1C60 888 #define RK3568_SMART0_REGION1_SCL_FACTOR_YRGB 0x1C64 889 #define RK3568_SMART0_REGION1_SCL_FACTOR_CBR 0x1C68 890 #define RK3568_SMART0_REGION1_SCL_OFFSET 0x1C6C 891 #define RK3568_SMART0_REGION2_CTRL 0x1C70 892 #define RK3568_SMART0_REGION2_YRGB_MST 0x1C74 893 #define RK3568_SMART0_REGION2_CBR_MST 0x1C78 894 #define RK3568_SMART0_REGION2_VIR 0x1C7C 895 #define RK3568_SMART0_REGION2_ACT_INFO 0x1C80 896 #define RK3568_SMART0_REGION2_DSP_INFO 0x1C84 897 #define RK3568_SMART0_REGION2_DSP_ST 0x1C88 898 #define RK3568_SMART0_REGION2_SCL_CTRL 0x1C90 899 #define RK3568_SMART0_REGION2_SCL_FACTOR_YRGB 0x1C94 900 #define RK3568_SMART0_REGION2_SCL_FACTOR_CBR 0x1C98 901 #define RK3568_SMART0_REGION2_SCL_OFFSET 0x1C9C 902 #define RK3568_SMART0_REGION3_CTRL 0x1CA0 903 #define RK3568_SMART0_REGION3_YRGB_MST 0x1CA4 904 #define RK3568_SMART0_REGION3_CBR_MST 0x1CA8 905 #define RK3568_SMART0_REGION3_VIR 0x1CAC 906 #define RK3568_SMART0_REGION3_ACT_INFO 0x1CB0 907 #define RK3568_SMART0_REGION3_DSP_INFO 0x1CB4 908 #define RK3568_SMART0_REGION3_DSP_ST 0x1CB8 909 #define RK3568_SMART0_REGION3_SCL_CTRL 0x1CC0 910 #define RK3568_SMART0_REGION3_SCL_FACTOR_YRGB 0x1CC4 911 #define RK3568_SMART0_REGION3_SCL_FACTOR_CBR 0x1CC8 912 #define RK3568_SMART0_REGION3_SCL_OFFSET 0x1CCC 913 #define RK3576_ESMART2_ALPHA_MAP 0x1CD8 914 #define RK3576_ESMART2_PORT_SEL 0x1CF4 915 #define RK3576_ESMART2_DLY_NUM 0x1CF8 916 917 #define RK3568_SMART1_CTRL0 0x1E00 918 #define RK3568_SMART1_CTRL1 0x1E04 919 #define RK3568_SMART1_REGION0_CTRL 0x1E10 920 #define RK3568_SMART1_REGION0_YRGB_MST 0x1E14 921 #define RK3568_SMART1_REGION0_CBR_MST 0x1E18 922 #define RK3568_SMART1_REGION0_VIR 0x1E1C 923 #define RK3568_SMART1_REGION0_ACT_INFO 0x1E20 924 #define RK3568_SMART1_REGION0_DSP_INFO 0x1E24 925 #define RK3568_SMART1_REGION0_DSP_ST 0x1E28 926 #define RK3568_SMART1_REGION0_SCL_CTRL 0x1E30 927 #define RK3568_SMART1_REGION0_SCL_FACTOR_YRGB 0x1E34 928 #define RK3568_SMART1_REGION0_SCL_FACTOR_CBR 0x1E38 929 #define RK3568_SMART1_REGION0_SCL_OFFSET 0x1E3C 930 #define RK3568_SMART1_REGION1_CTRL 0x1E40 931 #define RK3568_SMART1_REGION1_YRGB_MST 0x1E44 932 #define RK3568_SMART1_REGION1_CBR_MST 0x1E48 933 #define RK3568_SMART1_REGION1_VIR 0x1E4C 934 #define RK3568_SMART1_REGION1_ACT_INFO 0x1E50 935 #define RK3568_SMART1_REGION1_DSP_INFO 0x1E54 936 #define RK3568_SMART1_REGION1_DSP_ST 0x1E58 937 #define RK3568_SMART1_REGION1_SCL_CTRL 0x1E60 938 #define RK3568_SMART1_REGION1_SCL_FACTOR_YRGB 0x1E64 939 #define RK3568_SMART1_REGION1_SCL_FACTOR_CBR 0x1E68 940 #define RK3568_SMART1_REGION1_SCL_OFFSET 0x1E6C 941 #define RK3568_SMART1_REGION2_CTRL 0x1E70 942 #define RK3568_SMART1_REGION2_YRGB_MST 0x1E74 943 #define RK3568_SMART1_REGION2_CBR_MST 0x1E78 944 #define RK3568_SMART1_REGION2_VIR 0x1E7C 945 #define RK3568_SMART1_REGION2_ACT_INFO 0x1E80 946 #define RK3568_SMART1_REGION2_DSP_INFO 0x1E84 947 #define RK3568_SMART1_REGION2_DSP_ST 0x1E88 948 #define RK3568_SMART1_REGION2_SCL_CTRL 0x1E90 949 #define RK3568_SMART1_REGION2_SCL_FACTOR_YRGB 0x1E94 950 #define RK3568_SMART1_REGION2_SCL_FACTOR_CBR 0x1E98 951 #define RK3568_SMART1_REGION2_SCL_OFFSET 0x1E9C 952 #define RK3568_SMART1_REGION3_CTRL 0x1EA0 953 #define RK3568_SMART1_REGION3_YRGB_MST 0x1EA4 954 #define RK3568_SMART1_REGION3_CBR_MST 0x1EA8 955 #define RK3568_SMART1_REGION3_VIR 0x1EAC 956 #define RK3568_SMART1_REGION3_ACT_INFO 0x1EB0 957 #define RK3568_SMART1_REGION3_DSP_INFO 0x1EB4 958 #define RK3568_SMART1_REGION3_DSP_ST 0x1EB8 959 #define RK3568_SMART1_REGION3_SCL_CTRL 0x1EC0 960 #define RK3568_SMART1_REGION3_SCL_FACTOR_YRGB 0x1EC4 961 #define RK3568_SMART1_REGION3_SCL_FACTOR_CBR 0x1EC8 962 #define RK3568_SMART1_REGION3_SCL_OFFSET 0x1ECC 963 #define RK3576_ESMART3_ALPHA_MAP 0x1ED8 964 #define RK3576_ESMART3_PORT_SEL 0x1EF4 965 #define RK3576_ESMART3_DLY_NUM 0x1EF8 966 967 /* HDR register definition */ 968 #define RK3568_HDR_LUT_CTRL 0x2000 969 970 #define RK3588_VP3_DSP_CTRL 0xF00 971 #define RK3588_CLUSTER2_WIN0_CTRL0 0x1400 972 #define RK3588_CLUSTER3_WIN0_CTRL0 0x1600 973 974 /* DSC 8K/4K register definition */ 975 #define RK3588_DSC_8K_PPS0_3 0x4000 976 #define RK3588_DSC_8K_CTRL0 0x40A0 977 #define DSC_EN_SHIFT 0 978 #define DSC_RBIT_SHIFT 2 979 #define DSC_RBYT_SHIFT 3 980 #define DSC_FLAL_SHIFT 4 981 #define DSC_MER_SHIFT 5 982 #define DSC_EPB_SHIFT 6 983 #define DSC_EPL_SHIFT 7 984 #define DSC_NSLC_MASK 0x7 985 #define DSC_NSLC_SHIFT 16 986 #define DSC_SBO_SHIFT 28 987 #define DSC_IFEP_SHIFT 29 988 #define DSC_PPS_UPD_SHIFT 31 989 #define DSC_CTRL0_DEF_CON ((1 << DSC_EN_SHIFT) | (1 << DSC_RBIT_SHIFT) | (0 << DSC_RBYT_SHIFT) | \ 990 (1 << DSC_FLAL_SHIFT) | (1 << DSC_MER_SHIFT) | (0 << DSC_EPB_SHIFT) | \ 991 (1 << DSC_EPL_SHIFT) | (1 << DSC_SBO_SHIFT)) 992 993 #define RK3588_DSC_8K_CTRL1 0x40A4 994 #define RK3588_DSC_8K_STS0 0x40A8 995 #define RK3588_DSC_8K_ERS 0x40C4 996 997 #define RK3588_DSC_4K_PPS0_3 0x4100 998 #define RK3588_DSC_4K_CTRL0 0x41A0 999 #define RK3588_DSC_4K_CTRL1 0x41A4 1000 #define RK3588_DSC_4K_STS0 0x41A8 1001 #define RK3588_DSC_4K_ERS 0x41C4 1002 1003 /* RK3528 HDR register definition */ 1004 #define RK3528_HDR_LUT_CTRL 0x2000 1005 1006 /* RK3528 ACM register definition */ 1007 #define RK3528_ACM_CTRL 0x6400 1008 #define RK3528_ACM_DELTA_RANGE 0x6404 1009 #define RK3528_ACM_FETCH_START 0x6408 1010 #define RK3528_ACM_FETCH_DONE 0x6420 1011 #define RK3528_ACM_YHS_DEL_HY_SEG0 0x6500 1012 #define RK3528_ACM_YHS_DEL_HY_SEG152 0x6760 1013 #define RK3528_ACM_YHS_DEL_HS_SEG0 0x6764 1014 #define RK3528_ACM_YHS_DEL_HS_SEG220 0x6ad4 1015 #define RK3528_ACM_YHS_DEL_HGAIN_SEG0 0x6ad8 1016 #define RK3528_ACM_YHS_DEL_HGAIN_SEG64 0x6bd8 1017 1018 #define RK3568_MAX_REG 0x1ED0 1019 1020 #define RK3562_GRF_IOC_VO_IO_CON 0x10500 1021 #define RK3568_GRF_VO_CON1 0x0364 1022 #define GRF_BT656_CLK_INV_SHIFT 1 1023 #define GRF_BT1120_CLK_INV_SHIFT 2 1024 #define GRF_RGB_DCLK_INV_SHIFT 3 1025 1026 /* Base SYS_GRF: 0x2600a000*/ 1027 #define RK3576_SYS_GRF_MEMFAULT_STATUS0 0x0148 1028 1029 /* Base IOC_GRF: 0x26040000 */ 1030 #define RK3576_VCCIO_IOC_MISC_CON8 0x6420 1031 #define RK3576_IOC_VOP_DCLK_INV_SEL_SHIFT 9 1032 #define RK3576_IOC_VOPLITE_SEL_SHIFT 11 1033 1034 /* Base PMU2: 0x27380000 */ 1035 #define RK3576_PMU_PWR_GATE_STS 0x0230 1036 #define PD_VOP_ESMART_DWN_STAT 12 1037 #define PD_VOP_CLUSTER_DWN_STAT 13 1038 #define RK3576_PMU_BISR_PDGEN_CON0 0x0510 1039 #define PD_VOP_ESMART_REPAIR_ENA_SHIFT 12 1040 #define PD_VOP_CLUSTER_REPAIR_ENA_SHIFT 13 1041 #define RK3576_PMU_BISR_PWR_REPAIR_STATUS0 0x0570 1042 #define PD_VOP_ESMART_PWR_REPAIR_STAT_SHIFT 12 1043 #define PD_VOP_CLUSTER_PWR_REPAIR_STAT_SHIFT 13 1044 1045 #define RK3588_GRF_SOC_CON1 0x0304 1046 #define RK3588_GRF_VOP_DCLK_INV_SEL_SHIFT 14 1047 1048 #define RK3588_GRF_VOP_CON2 0x0008 1049 #define RK3588_GRF_EDP0_ENABLE_SHIFT 0 1050 #define RK3588_GRF_HDMITX0_ENABLE_SHIFT 1 1051 #define RK3588_GRF_EDP1_ENABLE_SHIFT 3 1052 #define RK3588_GRF_HDMITX1_ENABLE_SHIFT 4 1053 1054 #define RK3588_GRF_VO1_CON0 0x0000 1055 #define HDMI_SYNC_POL_MASK 0x3 1056 #define HDMI0_SYNC_POL_SHIFT 5 1057 #define HDMI1_SYNC_POL_SHIFT 7 1058 1059 #define RK3588_PMU_BISR_CON3 0x20C 1060 #define RK3588_PD_CLUSTER0_REPAIR_EN_SHIFT 9 1061 #define RK3588_PD_CLUSTER1_REPAIR_EN_SHIFT 10 1062 #define RK3588_PD_CLUSTER2_REPAIR_EN_SHIFT 11 1063 #define RK3588_PD_CLUSTER3_REPAIR_EN_SHIFT 12 1064 #define RK3588_PD_DSC_8K_REPAIR_EN_SHIFT 13 1065 #define RK3588_PD_DSC_4K_REPAIR_EN_SHIFT 14 1066 #define RK3588_PD_ESMART_REPAIR_EN_SHIFT 15 1067 1068 #define RK3588_PMU_BISR_STATUS5 0x294 1069 #define RK3588_PD_CLUSTER0_PWR_STAT_SHIFI 9 1070 #define RK3588_PD_CLUSTER1_PWR_STAT_SHIFI 10 1071 #define RK3588_PD_CLUSTER2_PWR_STAT_SHIFI 11 1072 #define RK3588_PD_CLUSTER3_PWR_STAT_SHIFI 12 1073 #define RK3588_PD_DSC_8K_PWR_STAT_SHIFI 13 1074 #define RK3588_PD_DSC_4K_PWR_STAT_SHIFI 14 1075 #define RK3588_PD_ESMART_PWR_STAT_SHIFI 15 1076 1077 #define VOP2_LAYER_MAX 8 1078 1079 #define VOP2_MAX_VP_OUTPUT_WIDTH 4096 1080 1081 /* KHz */ 1082 #define VOP2_MAX_DCLK_RATE 600000 1083 1084 /* 1085 * vop2 dsc id 1086 */ 1087 #define ROCKCHIP_VOP2_DSC_8K 0 1088 #define ROCKCHIP_VOP2_DSC_4K 1 1089 1090 /* 1091 * vop2 internal power domain id, 1092 * should be all none zero, 0 will be 1093 * treat as invalid; 1094 */ 1095 #define VOP2_PD_CLUSTER0 BIT(0) 1096 #define VOP2_PD_CLUSTER1 BIT(1) 1097 #define VOP2_PD_CLUSTER2 BIT(2) 1098 #define VOP2_PD_CLUSTER3 BIT(3) 1099 #define VOP2_PD_DSC_8K BIT(5) 1100 #define VOP2_PD_DSC_4K BIT(6) 1101 #define VOP2_PD_ESMART BIT(7) 1102 #define VOP2_PD_CLUSTER BIT(8) 1103 1104 #define VOP2_PLANE_NO_SCALING BIT(16) 1105 1106 #define VOP_FEATURE_OUTPUT_10BIT BIT(0) 1107 #define VOP_FEATURE_AFBDC BIT(1) 1108 #define VOP_FEATURE_ALPHA_SCALE BIT(2) 1109 #define VOP_FEATURE_HDR10 BIT(3) 1110 #define VOP_FEATURE_NEXT_HDR BIT(4) 1111 /* a feature to splice two windows and two vps to support resolution > 4096 */ 1112 #define VOP_FEATURE_SPLICE BIT(5) 1113 #define VOP_FEATURE_OVERSCAN BIT(6) 1114 #define VOP_FEATURE_VIVID_HDR BIT(7) 1115 #define VOP_FEATURE_POST_ACM BIT(8) 1116 #define VOP_FEATURE_POST_CSC BIT(9) 1117 #define VOP_FEATURE_POST_FRC_V2 BIT(10) 1118 #define VOP_FEATURE_POST_SHARP BIT(11) 1119 1120 #define WIN_FEATURE_HDR2SDR BIT(0) 1121 #define WIN_FEATURE_SDR2HDR BIT(1) 1122 #define WIN_FEATURE_PRE_OVERLAY BIT(2) 1123 #define WIN_FEATURE_AFBDC BIT(3) 1124 #define WIN_FEATURE_CLUSTER_MAIN BIT(4) 1125 #define WIN_FEATURE_CLUSTER_SUB BIT(5) 1126 /* a mirror win can only get fb address 1127 * from source win: 1128 * Cluster1---->Cluster0 1129 * Esmart1 ---->Esmart0 1130 * Smart1 ---->Smart0 1131 * This is a feather on rk3566 1132 */ 1133 #define WIN_FEATURE_MIRROR BIT(6) 1134 #define WIN_FEATURE_MULTI_AREA BIT(7) 1135 #define WIN_FEATURE_Y2R_13BIT_DEPTH BIT(8) 1136 #define WIN_FEATURE_DCI BIT(9) 1137 1138 #define V4L2_COLORSPACE_BT709F 0xfe 1139 #define V4L2_COLORSPACE_BT2020F 0xff 1140 1141 enum vop_csc_format { 1142 CSC_BT601L, 1143 CSC_BT709L, 1144 CSC_BT601F, 1145 CSC_BT2020L, 1146 CSC_BT709L_13BIT, 1147 CSC_BT709F_13BIT, 1148 CSC_BT2020L_13BIT, 1149 CSC_BT2020F_13BIT, 1150 }; 1151 1152 enum vop_csc_bit_depth { 1153 CSC_10BIT_DEPTH, 1154 CSC_13BIT_DEPTH, 1155 }; 1156 1157 enum vop2_pol { 1158 HSYNC_POSITIVE = 0, 1159 VSYNC_POSITIVE = 1, 1160 DEN_NEGATIVE = 2, 1161 DCLK_INVERT = 3 1162 }; 1163 1164 enum vop2_bcsh_out_mode { 1165 BCSH_OUT_MODE_BLACK, 1166 BCSH_OUT_MODE_BLUE, 1167 BCSH_OUT_MODE_COLOR_BAR, 1168 BCSH_OUT_MODE_NORMAL_VIDEO, 1169 }; 1170 1171 #define _VOP_REG(off, _mask, _shift, _write_mask) \ 1172 { \ 1173 .offset = off, \ 1174 .mask = _mask, \ 1175 .shift = _shift, \ 1176 .write_mask = _write_mask, \ 1177 } 1178 1179 #define VOP_REG(off, _mask, _shift) \ 1180 _VOP_REG(off, _mask, _shift, false) 1181 enum dither_down_mode { 1182 RGB888_TO_RGB565 = 0x0, 1183 RGB888_TO_RGB666 = 0x1 1184 }; 1185 1186 enum dither_down_mode_sel { 1187 DITHER_DOWN_ALLEGRO = 0x0, 1188 DITHER_DOWN_FRC = 0x1 1189 }; 1190 1191 enum vop2_video_ports_id { 1192 VOP2_VP0, 1193 VOP2_VP1, 1194 VOP2_VP2, 1195 VOP2_VP3, 1196 VOP2_VP_MAX, 1197 }; 1198 1199 enum vop2_layer_type { 1200 CLUSTER_LAYER = 0, 1201 ESMART_LAYER = 1, 1202 SMART_LAYER = 2, 1203 }; 1204 1205 /* This define must same with kernel win phy id */ 1206 enum vop2_layer_phy_id { 1207 ROCKCHIP_VOP2_CLUSTER0 = 0, 1208 ROCKCHIP_VOP2_CLUSTER1, 1209 ROCKCHIP_VOP2_ESMART0, 1210 ROCKCHIP_VOP2_ESMART1, 1211 ROCKCHIP_VOP2_SMART0, 1212 ROCKCHIP_VOP2_SMART1, 1213 ROCKCHIP_VOP2_CLUSTER2, 1214 ROCKCHIP_VOP2_CLUSTER3, 1215 ROCKCHIP_VOP2_ESMART2, 1216 ROCKCHIP_VOP2_ESMART3, 1217 ROCKCHIP_VOP2_LAYER_MAX, 1218 ROCKCHIP_VOP2_PHY_ID_INVALID = -1, 1219 }; 1220 1221 enum vop2_scale_up_mode { 1222 VOP2_SCALE_UP_NRST_NBOR, 1223 VOP2_SCALE_UP_BIL, 1224 VOP2_SCALE_UP_BIC, 1225 VOP2_SCALE_UP_ZME, 1226 }; 1227 1228 enum vop2_scale_down_mode { 1229 VOP2_SCALE_DOWN_NRST_NBOR, 1230 VOP2_SCALE_DOWN_BIL, 1231 VOP2_SCALE_DOWN_AVG, 1232 VOP2_SCALE_DOWN_ZME, 1233 }; 1234 1235 enum scale_mode { 1236 SCALE_NONE = 0x0, 1237 SCALE_UP = 0x1, 1238 SCALE_DOWN = 0x2 1239 }; 1240 1241 enum vop_dsc_interface_mode { 1242 VOP_DSC_IF_DISABLE = 0, 1243 VOP_DSC_IF_HDMI = 1, 1244 VOP_DSC_IF_MIPI_DS_MODE = 2, 1245 VOP_DSC_IF_MIPI_VIDEO_MODE = 3, 1246 }; 1247 1248 enum vop3_pre_scale_down_mode { 1249 VOP3_PRE_SCALE_UNSPPORT, 1250 VOP3_PRE_SCALE_DOWN_GT, 1251 VOP3_PRE_SCALE_DOWN_AVG, 1252 }; 1253 1254 enum vop3_esmart_lb_mode { 1255 VOP3_ESMART_8K_MODE, 1256 VOP3_ESMART_4K_4K_MODE, 1257 VOP3_ESMART_4K_2K_2K_MODE, 1258 VOP3_ESMART_2K_2K_2K_2K_MODE, 1259 VOP3_ESMART_4K_4K_4K_MODE, 1260 VOP3_ESMART_4K_4K_2K_2K_MODE, 1261 }; 1262 1263 struct vop2_layer { 1264 u8 id; 1265 /** 1266 * @win_phys_id: window id of the layer selected. 1267 * Every layer must make sure to select different 1268 * windows of others. 1269 */ 1270 u8 win_phys_id; 1271 }; 1272 1273 struct vop2_power_domain_data { 1274 u16 id; 1275 u16 parent_id; 1276 /* 1277 * @module_id_mask: module id of which module this power domain is belongs to. 1278 * PD_CLUSTER0,1,2,3 only belongs to CLUSTER0/1/2/3, PD_Esmart0 shared by Esmart1/2/3 1279 */ 1280 u32 module_id_mask; 1281 }; 1282 1283 struct vop2_win_data { 1284 char *name; 1285 u8 phys_id; 1286 enum vop2_layer_type type; 1287 u8 win_sel_port_offset; 1288 u8 layer_sel_win_id[VOP2_VP_MAX]; 1289 u8 axi_id; 1290 u8 axi_uv_id; 1291 u8 axi_yrgb_id; 1292 u8 splice_win_id; 1293 u8 hsu_filter_mode; 1294 u8 hsd_filter_mode; 1295 u8 vsu_filter_mode; 1296 u8 vsd_filter_mode; 1297 u8 hsd_pre_filter_mode; 1298 u8 vsd_pre_filter_mode; 1299 u8 scale_engine_num; 1300 u8 source_win_id; 1301 u8 possible_crtcs; 1302 u16 pd_id; 1303 u32 reg_offset; 1304 u32 max_upscale_factor; 1305 u32 max_downscale_factor; 1306 u32 feature; 1307 u32 supported_rotations; 1308 bool splice_mode_right; 1309 }; 1310 1311 struct vop2_vp_data { 1312 u32 feature; 1313 u32 max_dclk; 1314 u8 pre_scan_max_dly; 1315 u8 layer_mix_dly; 1316 u8 hdrvivid_dly; 1317 u8 sdr2hdr_dly; 1318 u8 hdr_mix_dly; 1319 u8 win_dly; 1320 u8 splice_vp_id; 1321 u8 pixel_rate; 1322 struct vop_rect max_output; 1323 struct vop_urgency *urgency; 1324 }; 1325 1326 struct vop2_plane_table { 1327 enum vop2_layer_phy_id plane_id; 1328 enum vop2_layer_type plane_type; 1329 }; 1330 1331 struct vop2_vp_plane_mask { 1332 u8 primary_plane_id; /* use this win to show logo */ 1333 u8 attached_layers_nr; /* number layers attach to this vp */ 1334 u8 attached_layers[VOP2_LAYER_MAX]; /* the layers attached to this vp */ 1335 u32 plane_mask; 1336 int cursor_plane_id; 1337 }; 1338 1339 struct vop2_dsc_data { 1340 u8 id; 1341 u8 max_slice_num; 1342 u8 max_linebuf_depth; /* used to generate the bitstream */ 1343 u8 min_bits_per_pixel; /* bit num after encoder compress */ 1344 u16 pd_id; 1345 const char *dsc_txp_clk_src_name; 1346 const char *dsc_txp_clk_name; 1347 const char *dsc_pxl_clk_name; 1348 const char *dsc_cds_clk_name; 1349 }; 1350 1351 struct dsc_error_info { 1352 u32 dsc_error_val; 1353 char dsc_error_info[50]; 1354 }; 1355 1356 struct vop2_dump_regs { 1357 u32 offset; 1358 const char *name; 1359 u32 state_base; 1360 u32 state_mask; 1361 u32 state_shift; 1362 bool enable_state; 1363 u32 size; 1364 }; 1365 1366 struct vop2_esmart_lb_map { 1367 u8 lb_mode; 1368 u8 lb_map_value; 1369 }; 1370 1371 struct vop2_data { 1372 u32 version; 1373 u32 esmart_lb_mode; 1374 struct vop2_vp_data *vp_data; 1375 struct vop2_win_data *win_data; 1376 struct vop2_vp_plane_mask *plane_mask; 1377 struct vop2_plane_table *plane_table; 1378 struct vop2_power_domain_data *pd; 1379 struct vop2_dsc_data *dsc; 1380 struct dsc_error_info *dsc_error_ecw; 1381 struct dsc_error_info *dsc_error_buffer_flow; 1382 struct vop2_dump_regs *dump_regs; 1383 const struct vop2_esmart_lb_map *esmart_lb_mode_map; 1384 u8 *vp_primary_plane_order; 1385 u8 *vp_default_primary_plane; 1386 u8 nr_vps; 1387 u8 nr_layers; 1388 u8 nr_mixers; 1389 u8 nr_gammas; 1390 u8 nr_pd; 1391 u8 nr_dscs; 1392 u8 nr_dsc_ecw; 1393 u8 nr_dsc_buffer_flow; 1394 u8 esmart_lb_mode_num; 1395 u32 reg_len; 1396 u32 dump_regs_size; 1397 }; 1398 1399 struct vop2 { 1400 u32 *regsbak; 1401 void *regs; 1402 void *grf; 1403 void *vop_grf; 1404 void *vo1_grf; 1405 void *sys_pmu; 1406 void *ioc_grf; 1407 u32 reg_len; 1408 u32 version; 1409 u32 esmart_lb_mode; 1410 bool global_init; 1411 bool merge_irq; 1412 const struct vop2_data *data; 1413 struct vop2_vp_plane_mask vp_plane_mask[VOP2_VP_MAX]; 1414 }; 1415 1416 static struct vop2 *rockchip_vop2; 1417 1418 /* vop2_layer_phy_id */ 1419 static const char *const vop2_layer_name_list[] = { 1420 "Cluster0", 1421 "Cluster1", 1422 "Esmart0", 1423 "Esmart1", 1424 "Smart0", 1425 "Smart1", 1426 "Cluster2", 1427 "Cluster3", 1428 "Esmart2", 1429 "Esmart3", 1430 }; 1431 1432 static inline const char *vop2_plane_id_to_string(unsigned long phy) 1433 { 1434 if (phy == ROCKCHIP_VOP2_PHY_ID_INVALID) 1435 return "INVALID"; 1436 1437 if (WARN_ON(phy >= ARRAY_SIZE(vop2_layer_name_list))) 1438 return NULL; 1439 1440 return vop2_layer_name_list[phy]; 1441 } 1442 1443 static inline bool is_vop3(struct vop2 *vop2) 1444 { 1445 if (vop2->version == VOP_VERSION_RK3568 || vop2->version == VOP_VERSION_RK3588) 1446 return false; 1447 else 1448 return true; 1449 } 1450 1451 /* 1452 * bli_sd_factor = (src - 1) / (dst - 1) << 12; 1453 * avg_sd_factor: 1454 * bli_su_factor: 1455 * bic_su_factor: 1456 * = (src - 1) / (dst - 1) << 16; 1457 * 1458 * ygt2 enable: dst get one line from two line of the src 1459 * ygt4 enable: dst get one line from four line of the src. 1460 * 1461 */ 1462 #define VOP2_BILI_SCL_DN(src, dst) (((src - 1) << 12) / (dst - 1)) 1463 #define VOP2_COMMON_SCL(src, dst) (((src - 1) << 16) / (dst - 1)) 1464 1465 #define VOP2_BILI_SCL_FAC_CHECK(src, dst, fac) \ 1466 (fac * (dst - 1) >> 12 < (src - 1)) 1467 #define VOP2_COMMON_SCL_FAC_CHECK(src, dst, fac) \ 1468 (fac * (dst - 1) >> 16 < (src - 1)) 1469 #define VOP3_COMMON_HOR_SCL_FAC_CHECK(src, dst, fac) \ 1470 (fac * (dst - 1) >> 16 < (src - 1)) 1471 1472 static uint16_t vop2_scale_factor(enum scale_mode mode, 1473 int32_t filter_mode, 1474 uint32_t src, uint32_t dst) 1475 { 1476 uint32_t fac = 0; 1477 int i = 0; 1478 1479 if (mode == SCALE_NONE) 1480 return 0; 1481 1482 /* 1483 * A workaround to avoid zero div. 1484 */ 1485 if ((dst == 1) || (src == 1)) { 1486 dst = dst + 1; 1487 src = src + 1; 1488 } 1489 1490 if ((mode == SCALE_DOWN) && (filter_mode == VOP2_SCALE_DOWN_BIL)) { 1491 fac = VOP2_BILI_SCL_DN(src, dst); 1492 for (i = 0; i < 100; i++) { 1493 if (VOP2_BILI_SCL_FAC_CHECK(src, dst, fac)) 1494 break; 1495 fac -= 1; 1496 printf("down fac cali: src:%d, dst:%d, fac:0x%x\n", src, dst, fac); 1497 } 1498 } else { 1499 fac = VOP2_COMMON_SCL(src, dst); 1500 for (i = 0; i < 100; i++) { 1501 if (VOP2_COMMON_SCL_FAC_CHECK(src, dst, fac)) 1502 break; 1503 fac -= 1; 1504 printf("up fac cali: src:%d, dst:%d, fac:0x%x\n", src, dst, fac); 1505 } 1506 } 1507 1508 return fac; 1509 } 1510 1511 static bool vop3_scale_up_fac_check(uint32_t src, uint32_t dst, uint32_t fac, bool is_hor) 1512 { 1513 if (is_hor) 1514 return VOP3_COMMON_HOR_SCL_FAC_CHECK(src, dst, fac); 1515 return VOP2_COMMON_SCL_FAC_CHECK(src, dst, fac); 1516 } 1517 1518 static uint16_t vop3_scale_factor(enum scale_mode mode, 1519 uint32_t src, uint32_t dst, bool is_hor) 1520 { 1521 uint32_t fac = 0; 1522 int i = 0; 1523 1524 if (mode == SCALE_NONE) 1525 return 0; 1526 1527 /* 1528 * A workaround to avoid zero div. 1529 */ 1530 if ((dst == 1) || (src == 1)) { 1531 dst = dst + 1; 1532 src = src + 1; 1533 } 1534 1535 if (mode == SCALE_DOWN) { 1536 fac = VOP2_BILI_SCL_DN(src, dst); 1537 for (i = 0; i < 100; i++) { 1538 if (VOP2_BILI_SCL_FAC_CHECK(src, dst, fac)) 1539 break; 1540 fac -= 1; 1541 printf("down fac cali: src:%d, dst:%d, fac:0x%x\n", src, dst, fac); 1542 } 1543 } else { 1544 fac = VOP2_COMMON_SCL(src, dst); 1545 for (i = 0; i < 100; i++) { 1546 if (vop3_scale_up_fac_check(src, dst, fac, is_hor)) 1547 break; 1548 fac -= 1; 1549 printf("up fac cali: src:%d, dst:%d, fac:0x%x\n", src, dst, fac); 1550 } 1551 } 1552 1553 return fac; 1554 } 1555 1556 static inline enum scale_mode scl_get_scl_mode(int src, int dst) 1557 { 1558 if (src < dst) 1559 return SCALE_UP; 1560 else if (src > dst) 1561 return SCALE_DOWN; 1562 1563 return SCALE_NONE; 1564 } 1565 1566 static inline int interpolate(int x1, int y1, int x2, int y2, int x) 1567 { 1568 return y1 + (y2 - y1) * (x - x1) / (x2 - x1); 1569 } 1570 1571 static int vop2_get_primary_plane(struct vop2 *vop2, u32 plane_mask) 1572 { 1573 int i = 0; 1574 1575 for (i = 0; i < vop2->data->nr_layers; i++) { 1576 if (plane_mask & BIT(vop2->data->vp_primary_plane_order[i])) 1577 return vop2->data->vp_primary_plane_order[i]; 1578 } 1579 1580 return vop2->data->vp_primary_plane_order[0]; 1581 } 1582 1583 static inline u16 scl_cal_scale(int src, int dst, int shift) 1584 { 1585 return ((src * 2 - 3) << (shift - 1)) / (dst - 1); 1586 } 1587 1588 static inline u16 scl_cal_scale2(int src, int dst) 1589 { 1590 return ((src - 1) << 12) / (dst - 1); 1591 } 1592 1593 static inline void vop2_writel(struct vop2 *vop2, u32 offset, u32 v) 1594 { 1595 writel(v, vop2->regs + offset); 1596 vop2->regsbak[offset >> 2] = v; 1597 } 1598 1599 static inline u32 vop2_readl(struct vop2 *vop2, u32 offset) 1600 { 1601 return readl(vop2->regs + offset); 1602 } 1603 1604 static inline void vop2_mask_write(struct vop2 *vop2, u32 offset, 1605 u32 mask, u32 shift, u32 v, 1606 bool write_mask) 1607 { 1608 if (!mask) 1609 return; 1610 1611 if (write_mask) { 1612 v = ((v & mask) << shift) | (mask << (shift + 16)); 1613 } else { 1614 u32 cached_val = vop2->regsbak[offset >> 2]; 1615 1616 v = (cached_val & ~(mask << shift)) | ((v & mask) << shift); 1617 vop2->regsbak[offset >> 2] = v; 1618 } 1619 1620 writel(v, vop2->regs + offset); 1621 } 1622 1623 static inline void vop2_grf_writel(struct vop2 *vop, void *grf_base, u32 offset, 1624 u32 mask, u32 shift, u32 v) 1625 { 1626 u32 val = 0; 1627 1628 val = (v << shift) | (mask << (shift + 16)); 1629 writel(val, grf_base + offset); 1630 } 1631 1632 static inline u32 vop2_grf_readl(struct vop2 *vop, void *grf_base, u32 offset, 1633 u32 mask, u32 shift) 1634 { 1635 return (readl(grf_base + offset) >> shift) & mask; 1636 } 1637 1638 static bool is_yuv_output(u32 bus_format) 1639 { 1640 switch (bus_format) { 1641 case MEDIA_BUS_FMT_YUV8_1X24: 1642 case MEDIA_BUS_FMT_YUV10_1X30: 1643 case MEDIA_BUS_FMT_YUYV10_1X20: 1644 case MEDIA_BUS_FMT_UYYVYY8_0_5X24: 1645 case MEDIA_BUS_FMT_UYYVYY10_0_5X30: 1646 case MEDIA_BUS_FMT_YUYV8_2X8: 1647 case MEDIA_BUS_FMT_YVYU8_2X8: 1648 case MEDIA_BUS_FMT_UYVY8_2X8: 1649 case MEDIA_BUS_FMT_VYUY8_2X8: 1650 case MEDIA_BUS_FMT_YUYV8_1X16: 1651 case MEDIA_BUS_FMT_YVYU8_1X16: 1652 case MEDIA_BUS_FMT_UYVY8_1X16: 1653 case MEDIA_BUS_FMT_VYUY8_1X16: 1654 return true; 1655 default: 1656 return false; 1657 } 1658 } 1659 1660 static enum vop_csc_format vop2_convert_csc_mode(enum drm_color_encoding color_encoding, 1661 enum drm_color_range color_range, 1662 int bit_depth) 1663 { 1664 bool full_range = color_range == DRM_COLOR_YCBCR_FULL_RANGE ? 1 : 0; 1665 enum vop_csc_format csc_mode = CSC_BT709L; 1666 1667 1668 switch (color_encoding) { 1669 case DRM_COLOR_YCBCR_BT601: 1670 if (full_range) 1671 csc_mode = CSC_BT601F; 1672 else 1673 csc_mode = CSC_BT601L; 1674 break; 1675 1676 case DRM_COLOR_YCBCR_BT709: 1677 if (full_range) { 1678 csc_mode = bit_depth == CSC_13BIT_DEPTH ? CSC_BT709F_13BIT : CSC_BT601F; 1679 if (bit_depth != CSC_13BIT_DEPTH) 1680 printf("Unsupported bt709f at 10bit csc depth, use bt601f instead\n"); 1681 } else { 1682 csc_mode = CSC_BT709L; 1683 } 1684 break; 1685 1686 case DRM_COLOR_YCBCR_BT2020: 1687 if (full_range) { 1688 csc_mode = bit_depth == CSC_13BIT_DEPTH ? CSC_BT2020F_13BIT : CSC_BT601F; 1689 if (bit_depth != CSC_13BIT_DEPTH) 1690 printf("Unsupported bt2020f at 10bit csc depth, use bt601f instead\n"); 1691 } else { 1692 csc_mode = bit_depth == CSC_13BIT_DEPTH ? CSC_BT2020L_13BIT : CSC_BT2020L; 1693 } 1694 break; 1695 1696 default: 1697 printf("Unsuport color_encoding:%d\n", color_encoding); 1698 } 1699 1700 return csc_mode; 1701 } 1702 1703 static bool is_uv_swap(struct display_state *state) 1704 { 1705 struct connector_state *conn_state = &state->conn_state; 1706 u32 bus_format = conn_state->bus_format; 1707 u32 output_mode = conn_state->output_mode; 1708 u32 output_type = conn_state->type; 1709 1710 /* 1711 * FIXME: 1712 * 1713 * There is no media type for YUV444 output, 1714 * so when out_mode is AAAA or P888, assume output is YUV444 on 1715 * yuv format. 1716 * 1717 * From H/W testing, YUV444 mode need a rb swap except eDP. 1718 */ 1719 if (bus_format == MEDIA_BUS_FMT_YVYU8_1X16 || 1720 bus_format == MEDIA_BUS_FMT_VYUY8_1X16 || 1721 bus_format == MEDIA_BUS_FMT_YVYU8_2X8 || 1722 bus_format == MEDIA_BUS_FMT_VYUY8_2X8 || 1723 ((bus_format == MEDIA_BUS_FMT_YUV8_1X24 || 1724 bus_format == MEDIA_BUS_FMT_YUV10_1X30) && 1725 (output_mode == ROCKCHIP_OUT_MODE_AAAA || 1726 output_mode == ROCKCHIP_OUT_MODE_P888) && 1727 !(output_type == DRM_MODE_CONNECTOR_eDP))) 1728 return true; 1729 else 1730 return false; 1731 } 1732 1733 static bool is_rb_swap(struct display_state *state) 1734 { 1735 struct connector_state *conn_state = &state->conn_state; 1736 u32 bus_format = conn_state->bus_format; 1737 1738 /* 1739 * The default component order of serial rgb3x8 formats 1740 * is BGR. So it is needed to enable RB swap. 1741 */ 1742 if (bus_format == MEDIA_BUS_FMT_RGB888_3X8 || 1743 bus_format == MEDIA_BUS_FMT_RGB888_DUMMY_4X8) 1744 return true; 1745 else 1746 return false; 1747 } 1748 1749 static bool is_yc_swap(u32 bus_format) 1750 { 1751 switch (bus_format) { 1752 case MEDIA_BUS_FMT_YUYV8_1X16: 1753 case MEDIA_BUS_FMT_YVYU8_1X16: 1754 case MEDIA_BUS_FMT_YUYV8_2X8: 1755 case MEDIA_BUS_FMT_YVYU8_2X8: 1756 return true; 1757 default: 1758 return false; 1759 } 1760 } 1761 1762 static inline bool is_hot_plug_devices(int output_type) 1763 { 1764 switch (output_type) { 1765 case DRM_MODE_CONNECTOR_HDMIA: 1766 case DRM_MODE_CONNECTOR_HDMIB: 1767 case DRM_MODE_CONNECTOR_TV: 1768 case DRM_MODE_CONNECTOR_DisplayPort: 1769 case DRM_MODE_CONNECTOR_VGA: 1770 case DRM_MODE_CONNECTOR_Unknown: 1771 return true; 1772 default: 1773 return false; 1774 } 1775 } 1776 1777 static struct vop2_win_data *vop2_find_win_by_phys_id(struct vop2 *vop2, int phys_id) 1778 { 1779 int i = 0; 1780 1781 for (i = 0; i < vop2->data->nr_layers; i++) { 1782 if (vop2->data->win_data[i].phys_id == phys_id) 1783 return &vop2->data->win_data[i]; 1784 } 1785 1786 return NULL; 1787 } 1788 1789 static struct vop2_power_domain_data *vop2_find_pd_data_by_id(struct vop2 *vop2, int pd_id) 1790 { 1791 int i = 0; 1792 1793 for (i = 0; i < vop2->data->nr_pd; i++) { 1794 if (vop2->data->pd[i].id == pd_id) 1795 return &vop2->data->pd[i]; 1796 } 1797 1798 return NULL; 1799 } 1800 1801 static void rk3568_vop2_load_lut(struct vop2 *vop2, int crtc_id, 1802 u32 *lut_regs, u32 *lut_val, int lut_len) 1803 { 1804 u32 vp_offset = crtc_id * 0x100; 1805 int i; 1806 1807 vop2_mask_write(vop2, RK3568_SYS_LUT_PORT_SEL, 1808 GAMMA_PORT_SEL_MASK, GAMMA_PORT_SEL_SHIFT, 1809 crtc_id, false); 1810 1811 for (i = 0; i < lut_len; i++) 1812 writel(lut_val[i], lut_regs + i); 1813 1814 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, 1815 EN_MASK, DSP_LUT_EN_SHIFT, 1, false); 1816 } 1817 1818 static void rk3588_vop2_load_lut(struct vop2 *vop2, int crtc_id, 1819 u32 *lut_regs, u32 *lut_val, int lut_len) 1820 { 1821 u32 vp_offset = crtc_id * 0x100; 1822 int i; 1823 1824 vop2_mask_write(vop2, RK3568_SYS_LUT_PORT_SEL, 1825 GAMMA_AHB_WRITE_SEL_MASK, GAMMA_AHB_WRITE_SEL_SHIFT, 1826 crtc_id, false); 1827 1828 for (i = 0; i < lut_len; i++) 1829 writel(lut_val[i], lut_regs + i); 1830 1831 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, 1832 EN_MASK, DSP_LUT_EN_SHIFT, 1, false); 1833 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, 1834 EN_MASK, GAMMA_UPDATE_EN_SHIFT, 1, false); 1835 } 1836 1837 static int rockchip_vop2_gamma_lut_init(struct vop2 *vop2, 1838 struct display_state *state) 1839 { 1840 struct connector_state *conn_state = &state->conn_state; 1841 struct crtc_state *cstate = &state->crtc_state; 1842 struct resource gamma_res; 1843 fdt_size_t lut_size; 1844 int i, lut_len, ret = 0; 1845 u32 *lut_regs; 1846 u32 r, g, b; 1847 struct base2_disp_info *disp_info = conn_state->disp_info; 1848 static int gamma_lut_en_num = 1; 1849 1850 if (gamma_lut_en_num > vop2->data->nr_gammas) { 1851 printf("warn: only %d vp support gamma\n", vop2->data->nr_gammas); 1852 return 0; 1853 } 1854 1855 ret = ofnode_read_resource_byname(cstate->node, "gamma_lut", &gamma_res); 1856 if (ret) 1857 printf("failed to get gamma lut res\n"); 1858 lut_regs = (u32 *)gamma_res.start; 1859 lut_size = gamma_res.end - gamma_res.start + 1; 1860 if (lut_regs == (u32 *)FDT_ADDR_T_NONE) { 1861 printf("failed to get gamma lut register\n"); 1862 return 0; 1863 } 1864 lut_len = lut_size / 4; 1865 if (lut_len != 256 && lut_len != 1024) { 1866 printf("Warning: unsupport gamma lut table[%d]\n", lut_len); 1867 return 0; 1868 } 1869 1870 if (!cstate->lut_val) { 1871 if (!disp_info) 1872 return 0; 1873 1874 if (!disp_info->gamma_lut_data.size) 1875 return 0; 1876 1877 cstate->lut_val = (u32 *)calloc(1, lut_size); 1878 for (i = 0; i < lut_len; i++) { 1879 r = disp_info->gamma_lut_data.lred[i] * (lut_len - 1) / 0xffff; 1880 g = disp_info->gamma_lut_data.lgreen[i] * (lut_len - 1) / 0xffff; 1881 b = disp_info->gamma_lut_data.lblue[i] * (lut_len - 1) / 0xffff; 1882 1883 cstate->lut_val[i] = b * lut_len * lut_len + g * lut_len + r; 1884 } 1885 } 1886 1887 if (vop2->version == VOP_VERSION_RK3568) { 1888 rk3568_vop2_load_lut(vop2, cstate->crtc_id, lut_regs, 1889 cstate->lut_val, lut_len); 1890 gamma_lut_en_num++; 1891 } else { 1892 rk3588_vop2_load_lut(vop2, cstate->crtc_id, lut_regs, 1893 cstate->lut_val, lut_len); 1894 if (cstate->splice_mode) { 1895 rk3588_vop2_load_lut(vop2, cstate->splice_crtc_id, lut_regs, 1896 cstate->lut_val, lut_len); 1897 gamma_lut_en_num++; 1898 } 1899 gamma_lut_en_num++; 1900 } 1901 1902 free(cstate->lut_val); 1903 1904 return 0; 1905 } 1906 1907 static int rockchip_vop2_cubic_lut_init(struct vop2 *vop2, 1908 struct display_state *state) 1909 { 1910 struct connector_state *conn_state = &state->conn_state; 1911 struct crtc_state *cstate = &state->crtc_state; 1912 int i, cubic_lut_len; 1913 u32 vp_offset = cstate->crtc_id * 0x100; 1914 struct base2_disp_info *disp_info = conn_state->disp_info; 1915 struct base2_cubic_lut_data *lut = &conn_state->disp_info->cubic_lut_data; 1916 u32 *cubic_lut_addr; 1917 1918 if (!disp_info || CONFIG_ROCKCHIP_CUBIC_LUT_SIZE == 0) 1919 return 0; 1920 1921 if (!disp_info->cubic_lut_data.size) 1922 return 0; 1923 1924 cubic_lut_addr = (u32 *)get_cubic_lut_buffer(cstate->crtc_id); 1925 cubic_lut_len = disp_info->cubic_lut_data.size; 1926 1927 for (i = 0; i < cubic_lut_len / 2; i++) { 1928 *cubic_lut_addr++ = ((lut->lred[2 * i]) & 0xfff) + 1929 ((lut->lgreen[2 * i] & 0xfff) << 12) + 1930 ((lut->lblue[2 * i] & 0xff) << 24); 1931 *cubic_lut_addr++ = ((lut->lblue[2 * i] & 0xf00) >> 8) + 1932 ((lut->lred[2 * i + 1] & 0xfff) << 4) + 1933 ((lut->lgreen[2 * i + 1] & 0xfff) << 16) + 1934 ((lut->lblue[2 * i + 1] & 0xf) << 28); 1935 *cubic_lut_addr++ = (lut->lblue[2 * i + 1] & 0xff0) >> 4; 1936 *cubic_lut_addr++ = 0; 1937 } 1938 1939 if (cubic_lut_len % 2) { 1940 *cubic_lut_addr++ = (lut->lred[2 * i] & 0xfff) + 1941 ((lut->lgreen[2 * i] & 0xfff) << 12) + 1942 ((lut->lblue[2 * i] & 0xff) << 24); 1943 *cubic_lut_addr++ = (lut->lblue[2 * i] & 0xf00) >> 8; 1944 *cubic_lut_addr++ = 0; 1945 *cubic_lut_addr = 0; 1946 } 1947 1948 vop2_writel(vop2, RK3568_VP0_3D_LUT_MST + vp_offset, 1949 get_cubic_lut_buffer(cstate->crtc_id)); 1950 vop2_mask_write(vop2, RK3568_SYS_AXI_LUT_CTRL, 1951 EN_MASK, LUT_DMA_EN_SHIFT, 1, false); 1952 vop2_mask_write(vop2, RK3568_VP0_3D_LUT_CTRL + vp_offset, 1953 EN_MASK, VP0_3D_LUT_EN_SHIFT, 1, false); 1954 vop2_mask_write(vop2, RK3568_VP0_3D_LUT_CTRL + vp_offset, 1955 EN_MASK, VP0_3D_LUT_UPDATE_SHIFT, 1, false); 1956 1957 return 0; 1958 } 1959 1960 static void vop2_bcsh_reg_update(struct display_state *state, struct vop2 *vop2, 1961 struct bcsh_state *bcsh_state, int crtc_id) 1962 { 1963 struct crtc_state *cstate = &state->crtc_state; 1964 u32 vp_offset = crtc_id * 0x100; 1965 1966 vop2_mask_write(vop2, RK3568_VP0_BCSH_CTRL + vp_offset, BCSH_CTRL_R2Y_MASK, 1967 BCSH_CTRL_R2Y_SHIFT, cstate->post_r2y_en, false); 1968 vop2_mask_write(vop2, RK3568_VP0_BCSH_CTRL + vp_offset, BCSH_CTRL_Y2R_MASK, 1969 BCSH_CTRL_Y2R_SHIFT, cstate->post_y2r_en, false); 1970 1971 vop2_mask_write(vop2, RK3568_VP0_BCSH_CTRL + vp_offset, BCSH_CTRL_R2Y_CSC_MODE_MASK, 1972 BCSH_CTRL_R2Y_CSC_MODE_SHIFT, cstate->post_csc_mode, false); 1973 vop2_mask_write(vop2, RK3568_VP0_BCSH_CTRL + vp_offset, BCSH_CTRL_Y2R_CSC_MODE_MASK, 1974 BCSH_CTRL_Y2R_CSC_MODE_SHIFT, cstate->post_csc_mode, false); 1975 1976 if (!cstate->bcsh_en) { 1977 vop2_mask_write(vop2, RK3568_VP0_BCSH_COLOR + vp_offset, 1978 BCSH_EN_MASK, BCSH_EN_SHIFT, 0, false); 1979 return; 1980 } 1981 1982 vop2_mask_write(vop2, RK3568_VP0_BCSH_BCS + vp_offset, 1983 BCSH_BRIGHTNESS_MASK, BCSH_BRIGHTNESS_SHIFT, 1984 bcsh_state->brightness, false); 1985 vop2_mask_write(vop2, RK3568_VP0_BCSH_BCS + vp_offset, 1986 BCSH_CONTRAST_MASK, BCSH_CONTRAST_SHIFT, bcsh_state->contrast, false); 1987 vop2_mask_write(vop2, RK3568_VP0_BCSH_BCS + vp_offset, 1988 BCSH_SATURATION_MASK, BCSH_SATURATION_SHIFT, 1989 bcsh_state->saturation * bcsh_state->contrast / 0x100, false); 1990 vop2_mask_write(vop2, RK3568_VP0_BCSH_H + vp_offset, 1991 BCSH_SIN_HUE_MASK, BCSH_SIN_HUE_SHIFT, bcsh_state->sin_hue, false); 1992 vop2_mask_write(vop2, RK3568_VP0_BCSH_H + vp_offset, 1993 BCSH_COS_HUE_MASK, BCSH_COS_HUE_SHIFT, bcsh_state->cos_hue, false); 1994 vop2_mask_write(vop2, RK3568_VP0_BCSH_BCS + vp_offset, 1995 BCSH_OUT_MODE_MASK, BCSH_OUT_MODE_SHIFT, 1996 BCSH_OUT_MODE_NORMAL_VIDEO, false); 1997 vop2_mask_write(vop2, RK3568_VP0_BCSH_COLOR + vp_offset, 1998 BCSH_EN_MASK, BCSH_EN_SHIFT, 1, false); 1999 } 2000 2001 static void vop2_tv_config_update(struct display_state *state, struct vop2 *vop2) 2002 { 2003 struct connector_state *conn_state = &state->conn_state; 2004 struct base_bcsh_info *bcsh_info; 2005 struct crtc_state *cstate = &state->crtc_state; 2006 struct bcsh_state bcsh_state; 2007 int brightness, contrast, saturation, hue, sin_hue, cos_hue; 2008 2009 if (!conn_state->disp_info) 2010 return; 2011 bcsh_info = &conn_state->disp_info->bcsh_info; 2012 if (!bcsh_info) 2013 return; 2014 2015 if (bcsh_info->brightness != 50 || 2016 bcsh_info->contrast != 50 || 2017 bcsh_info->saturation != 50 || bcsh_info->hue != 50) 2018 cstate->bcsh_en = true; 2019 2020 if (cstate->bcsh_en) { 2021 if (!cstate->yuv_overlay) 2022 cstate->post_r2y_en = 1; 2023 if (!is_yuv_output(conn_state->bus_format)) 2024 cstate->post_y2r_en = 1; 2025 } else { 2026 if (!cstate->yuv_overlay && is_yuv_output(conn_state->bus_format)) 2027 cstate->post_r2y_en = 1; 2028 if (cstate->yuv_overlay && !is_yuv_output(conn_state->bus_format)) 2029 cstate->post_y2r_en = 1; 2030 } 2031 2032 cstate->post_csc_mode = vop2_convert_csc_mode(conn_state->color_encoding, 2033 conn_state->color_range, 2034 CSC_10BIT_DEPTH); 2035 2036 if (cstate->feature & VOP_FEATURE_OUTPUT_10BIT) 2037 brightness = interpolate(0, -128, 100, 127, 2038 bcsh_info->brightness); 2039 else 2040 brightness = interpolate(0, -32, 100, 31, 2041 bcsh_info->brightness); 2042 contrast = interpolate(0, 0, 100, 511, bcsh_info->contrast); 2043 saturation = interpolate(0, 0, 100, 511, bcsh_info->saturation); 2044 hue = interpolate(0, -30, 100, 30, bcsh_info->hue); 2045 2046 2047 /* 2048 * a:[-30~0): 2049 * sin_hue = 0x100 - sin(a)*256; 2050 * cos_hue = cos(a)*256; 2051 * a:[0~30] 2052 * sin_hue = sin(a)*256; 2053 * cos_hue = cos(a)*256; 2054 */ 2055 sin_hue = fixp_sin32(hue) >> 23; 2056 cos_hue = fixp_cos32(hue) >> 23; 2057 2058 bcsh_state.brightness = brightness; 2059 bcsh_state.contrast = contrast; 2060 bcsh_state.saturation = saturation; 2061 bcsh_state.sin_hue = sin_hue; 2062 bcsh_state.cos_hue = cos_hue; 2063 2064 vop2_bcsh_reg_update(state, vop2, &bcsh_state, cstate->crtc_id); 2065 if (cstate->splice_mode) 2066 vop2_bcsh_reg_update(state, vop2, &bcsh_state, cstate->splice_crtc_id); 2067 } 2068 2069 static void vop2_setup_dly_for_vp(struct display_state *state, struct vop2 *vop2, int crtc_id) 2070 { 2071 struct connector_state *conn_state = &state->conn_state; 2072 struct drm_display_mode *mode = &conn_state->mode; 2073 struct crtc_state *cstate = &state->crtc_state; 2074 u32 bg_ovl_dly, bg_dly, pre_scan_dly; 2075 u16 hdisplay = mode->crtc_hdisplay; 2076 u16 hsync_len = mode->crtc_hsync_end - mode->crtc_hsync_start; 2077 2078 bg_ovl_dly = cstate->crtc->vps[crtc_id].bg_ovl_dly; 2079 bg_dly = vop2->data->vp_data[crtc_id].pre_scan_max_dly; 2080 bg_dly -= bg_ovl_dly; 2081 2082 /* 2083 * splice mode: hdisplay must roundup as 4 pixel, 2084 * no splice mode: hdisplay must roundup as 2 pixel. 2085 */ 2086 if (cstate->splice_mode) 2087 pre_scan_dly = bg_dly + (roundup(hdisplay, 4) >> 2) - 1; 2088 else 2089 pre_scan_dly = bg_dly + (roundup(hdisplay, 2) >> 1) - 1; 2090 2091 if (vop2->version == VOP_VERSION_RK3588 && hsync_len < 8) 2092 hsync_len = 8; 2093 pre_scan_dly = (pre_scan_dly << 16) | hsync_len; 2094 vop2_mask_write(vop2, RK3568_VP0_BG_MIX_CTRL + crtc_id * 4, 2095 BG_MIX_CTRL_MASK, BG_MIX_CTRL_SHIFT, bg_dly, false); 2096 vop2_writel(vop2, RK3568_VP0_PRE_SCAN_HTIMING + (crtc_id * 0x100), pre_scan_dly); 2097 } 2098 2099 static void vop3_setup_pipe_dly(struct display_state *state, struct vop2 *vop2, int crtc_id) 2100 { 2101 struct connector_state *conn_state = &state->conn_state; 2102 struct drm_display_mode *mode = &conn_state->mode; 2103 struct crtc_state *cstate = &state->crtc_state; 2104 struct vop2_win_data *win_data; 2105 u32 bg_dly, pre_scan_dly; 2106 u16 hdisplay = mode->crtc_hdisplay; 2107 u16 hsync_len = mode->crtc_hsync_end - mode->crtc_hsync_start; 2108 u8 primary_plane_id = vop2->vp_plane_mask[cstate->crtc_id].primary_plane_id; 2109 u8 win_id; 2110 2111 win_data = vop2_find_win_by_phys_id(vop2, primary_plane_id); 2112 win_id = atoi(&win_data->name[strlen(win_data->name) - 1]); 2113 vop2_mask_write(vop2, RK3528_OVL_SYS_ESMART0_CTRL + win_id * 4, 2114 ESMART_DLY_NUM_MASK, ESMART_DLY_NUM_SHIFT, 0, false); 2115 2116 bg_dly = vop2->data->vp_data[crtc_id].win_dly + 2117 vop2->data->vp_data[crtc_id].layer_mix_dly + 2118 vop2->data->vp_data[crtc_id].hdr_mix_dly; 2119 /* hdisplay must roundup as 2 pixel */ 2120 pre_scan_dly = bg_dly + (roundup(hdisplay, 2) >> 1) - 1; 2121 /** 2122 * pre_scan_hblank minimum value is 8, otherwise the win reset signal will 2123 * lead to first line data be zero. 2124 */ 2125 pre_scan_dly = (pre_scan_dly << 16) | (hsync_len < 8 ? 8 : hsync_len); 2126 vop2_mask_write(vop2, RK3528_OVL_PORT0_BG_MIX_CTRL + crtc_id * 0x100, 2127 BG_MIX_CTRL_MASK, BG_MIX_CTRL_SHIFT, bg_dly, false); 2128 vop2_writel(vop2, RK3568_VP0_PRE_SCAN_HTIMING + (crtc_id * 0x100), pre_scan_dly); 2129 } 2130 2131 static void vop2_post_config(struct display_state *state, struct vop2 *vop2) 2132 { 2133 struct connector_state *conn_state = &state->conn_state; 2134 struct drm_display_mode *mode = &conn_state->mode; 2135 struct crtc_state *cstate = &state->crtc_state; 2136 u32 vp_offset = (cstate->crtc_id * 0x100); 2137 u16 vtotal = mode->crtc_vtotal; 2138 u16 hact_st = mode->crtc_htotal - mode->crtc_hsync_start; 2139 u16 vact_st = mode->crtc_vtotal - mode->crtc_vsync_start; 2140 u16 hdisplay = mode->crtc_hdisplay; 2141 u16 vdisplay = mode->crtc_vdisplay; 2142 u16 hsize = 2143 hdisplay * (conn_state->overscan.left_margin + 2144 conn_state->overscan.right_margin) / 200; 2145 u16 vsize = 2146 vdisplay * (conn_state->overscan.top_margin + 2147 conn_state->overscan.bottom_margin) / 200; 2148 u16 hact_end, vact_end; 2149 u32 val; 2150 2151 hsize = round_down(hsize, 2); 2152 vsize = round_down(vsize, 2); 2153 2154 hact_st += hdisplay * (100 - conn_state->overscan.left_margin) / 200; 2155 hact_end = hact_st + hsize; 2156 val = hact_st << 16; 2157 val |= hact_end; 2158 2159 vop2_writel(vop2, RK3568_VP0_POST_DSP_HACT_INFO + vp_offset, val); 2160 vact_st += vdisplay * (100 - conn_state->overscan.top_margin) / 200; 2161 vact_end = vact_st + vsize; 2162 val = vact_st << 16; 2163 val |= vact_end; 2164 vop2_writel(vop2, RK3568_VP0_POST_DSP_VACT_INFO + vp_offset, val); 2165 val = scl_cal_scale2(vdisplay, vsize) << 16; 2166 val |= scl_cal_scale2(hdisplay, hsize); 2167 vop2_writel(vop2, RK3568_VP0_POST_SCL_FACTOR_YRGB + vp_offset, val); 2168 #define POST_HORIZONTAL_SCALEDOWN_EN(x) ((x) << 0) 2169 #define POST_VERTICAL_SCALEDOWN_EN(x) ((x) << 1) 2170 vop2_mask_write(vop2, RK3568_VP0_POST_SCL_CTRL + vp_offset, 2171 RK3568_VP0_POST_SCALE_MASK, RK3568_VP0_POST_SCALE_SHIFT, 2172 POST_HORIZONTAL_SCALEDOWN_EN(hdisplay != hsize) | 2173 POST_VERTICAL_SCALEDOWN_EN(vdisplay != vsize), false); 2174 if (mode->flags & DRM_MODE_FLAG_INTERLACE) { 2175 u16 vact_st_f1 = vtotal + vact_st + 1; 2176 u16 vact_end_f1 = vact_st_f1 + vsize; 2177 2178 val = vact_st_f1 << 16 | vact_end_f1; 2179 vop2_writel(vop2, RK3568_VP0_POST_DSP_VACT_INFO_F1 + vp_offset, val); 2180 } 2181 2182 if (is_vop3(vop2)) { 2183 vop3_setup_pipe_dly(state, vop2, cstate->crtc_id); 2184 } else { 2185 vop2_setup_dly_for_vp(state, vop2, cstate->crtc_id); 2186 if (cstate->splice_mode) 2187 vop2_setup_dly_for_vp(state, vop2, cstate->splice_crtc_id); 2188 } 2189 } 2190 2191 static void vop3_post_acm_config(struct display_state *state, struct vop2 *vop2) 2192 { 2193 struct connector_state *conn_state = &state->conn_state; 2194 struct crtc_state *cstate = &state->crtc_state; 2195 struct acm_data *acm = &conn_state->disp_info->acm_data; 2196 struct drm_display_mode *mode = &conn_state->mode; 2197 u32 vp_offset = (cstate->crtc_id * 0x100); 2198 s16 *lut_y; 2199 s16 *lut_h; 2200 s16 *lut_s; 2201 u32 value; 2202 int i; 2203 2204 vop2_mask_write(vop2, RK3528_VP0_ACM_CTRL + vp_offset, 2205 POST_ACM_BYPASS_EN_MASK, POST_ACM_BYPASS_EN_SHIFT, 0, false); 2206 if (!acm->acm_enable) { 2207 writel(0, vop2->regs + RK3528_ACM_CTRL); 2208 return; 2209 } 2210 2211 printf("post acm enable\n"); 2212 2213 writel(1, vop2->regs + RK3528_ACM_FETCH_START); 2214 2215 value = (acm->acm_enable & 0x1) + ((mode->hdisplay & 0xfff) << 8) + 2216 ((mode->vdisplay & 0xfff) << 20); 2217 writel(value, vop2->regs + RK3528_ACM_CTRL); 2218 2219 value = (acm->y_gain & 0x3ff) + ((acm->h_gain << 10) & 0xffc00) + 2220 ((acm->s_gain << 20) & 0x3ff00000); 2221 writel(value, vop2->regs + RK3528_ACM_DELTA_RANGE); 2222 2223 lut_y = &acm->gain_lut_hy[0]; 2224 lut_h = &acm->gain_lut_hy[ACM_GAIN_LUT_HY_LENGTH]; 2225 lut_s = &acm->gain_lut_hy[ACM_GAIN_LUT_HY_LENGTH * 2]; 2226 for (i = 0; i < ACM_GAIN_LUT_HY_LENGTH; i++) { 2227 value = (lut_y[i] & 0xff) + ((lut_h[i] << 8) & 0xff00) + 2228 ((lut_s[i] << 16) & 0xff0000); 2229 writel(value, vop2->regs + RK3528_ACM_YHS_DEL_HY_SEG0 + (i << 2)); 2230 } 2231 2232 lut_y = &acm->gain_lut_hs[0]; 2233 lut_h = &acm->gain_lut_hs[ACM_GAIN_LUT_HS_LENGTH]; 2234 lut_s = &acm->gain_lut_hs[ACM_GAIN_LUT_HS_LENGTH * 2]; 2235 for (i = 0; i < ACM_GAIN_LUT_HS_LENGTH; i++) { 2236 value = (lut_y[i] & 0xff) + ((lut_h[i] << 8) & 0xff00) + 2237 ((lut_s[i] << 16) & 0xff0000); 2238 writel(value, vop2->regs + RK3528_ACM_YHS_DEL_HS_SEG0 + (i << 2)); 2239 } 2240 2241 lut_y = &acm->delta_lut_h[0]; 2242 lut_h = &acm->delta_lut_h[ACM_DELTA_LUT_H_LENGTH]; 2243 lut_s = &acm->delta_lut_h[ACM_DELTA_LUT_H_LENGTH * 2]; 2244 for (i = 0; i < ACM_DELTA_LUT_H_LENGTH; i++) { 2245 value = (lut_y[i] & 0x3ff) + ((lut_h[i] << 12) & 0xff000) + 2246 ((lut_s[i] << 20) & 0x3ff00000); 2247 writel(value, vop2->regs + RK3528_ACM_YHS_DEL_HGAIN_SEG0 + (i << 2)); 2248 } 2249 2250 writel(1, vop2->regs + RK3528_ACM_FETCH_DONE); 2251 } 2252 2253 static void vop3_post_csc_config(struct display_state *state, struct vop2 *vop2) 2254 { 2255 struct connector_state *conn_state = &state->conn_state; 2256 struct crtc_state *cstate = &state->crtc_state; 2257 struct acm_data *acm = &conn_state->disp_info->acm_data; 2258 struct csc_info *csc = &conn_state->disp_info->csc_info; 2259 struct post_csc_coef csc_coef; 2260 bool is_input_yuv = false; 2261 bool is_output_yuv = false; 2262 bool post_r2y_en = false; 2263 bool post_csc_en = false; 2264 u32 vp_offset = (cstate->crtc_id * 0x100); 2265 u32 value; 2266 int range_type; 2267 2268 printf("post csc enable\n"); 2269 2270 if (acm->acm_enable) { 2271 if (!cstate->yuv_overlay) 2272 post_r2y_en = true; 2273 2274 /* do y2r in csc module */ 2275 if (!is_yuv_output(conn_state->bus_format)) 2276 post_csc_en = true; 2277 } else { 2278 if (!cstate->yuv_overlay && is_yuv_output(conn_state->bus_format)) 2279 post_r2y_en = true; 2280 2281 /* do y2r in csc module */ 2282 if (cstate->yuv_overlay && !is_yuv_output(conn_state->bus_format)) 2283 post_csc_en = true; 2284 } 2285 2286 if (csc->csc_enable) 2287 post_csc_en = true; 2288 2289 if (cstate->yuv_overlay || post_r2y_en) 2290 is_input_yuv = true; 2291 2292 if (is_yuv_output(conn_state->bus_format)) 2293 is_output_yuv = true; 2294 2295 cstate->post_csc_mode = vop2_convert_csc_mode(conn_state->color_encoding, 2296 conn_state->color_range, 2297 CSC_13BIT_DEPTH); 2298 2299 if (post_csc_en) { 2300 rockchip_calc_post_csc(csc, &csc_coef, cstate->post_csc_mode, is_input_yuv, 2301 is_output_yuv); 2302 2303 vop2_mask_write(vop2, RK3528_VP0_ACM_CTRL + vp_offset, 2304 POST_CSC_COE00_MASK, POST_CSC_COE00_SHIFT, 2305 csc_coef.csc_coef00, false); 2306 value = csc_coef.csc_coef01 & 0xffff; 2307 value |= (csc_coef.csc_coef02 << 16) & 0xffff0000; 2308 writel(value, vop2->regs + RK3528_VP0_CSC_COE01_02); 2309 value = csc_coef.csc_coef10 & 0xffff; 2310 value |= (csc_coef.csc_coef11 << 16) & 0xffff0000; 2311 writel(value, vop2->regs + RK3528_VP0_CSC_COE10_11); 2312 value = csc_coef.csc_coef12 & 0xffff; 2313 value |= (csc_coef.csc_coef20 << 16) & 0xffff0000; 2314 writel(value, vop2->regs + RK3528_VP0_CSC_COE12_20); 2315 value = csc_coef.csc_coef21 & 0xffff; 2316 value |= (csc_coef.csc_coef22 << 16) & 0xffff0000; 2317 writel(value, vop2->regs + RK3528_VP0_CSC_COE21_22); 2318 writel(csc_coef.csc_dc0, vop2->regs + RK3528_VP0_CSC_OFFSET0); 2319 writel(csc_coef.csc_dc1, vop2->regs + RK3528_VP0_CSC_OFFSET1); 2320 writel(csc_coef.csc_dc2, vop2->regs + RK3528_VP0_CSC_OFFSET2); 2321 2322 range_type = csc_coef.range_type ? 0 : 1; 2323 range_type <<= is_input_yuv ? 0 : 1; 2324 vop2_mask_write(vop2, RK3528_VP0_ACM_CTRL + vp_offset, 2325 POST_CSC_MODE_MASK, POST_CSC_MODE_SHIFT, range_type, false); 2326 } 2327 2328 vop2_mask_write(vop2, RK3528_VP0_ACM_CTRL + vp_offset, 2329 POST_R2Y_EN_MASK, POST_R2Y_EN_SHIFT, post_r2y_en ? 1 : 0, false); 2330 vop2_mask_write(vop2, RK3528_VP0_ACM_CTRL + vp_offset, 2331 POST_CSC_EN_MASK, POST_CSC_EN_SHIFT, post_csc_en ? 1 : 0, false); 2332 vop2_mask_write(vop2, RK3528_VP0_ACM_CTRL + vp_offset, 2333 POST_R2Y_MODE_MASK, POST_R2Y_MODE_SHIFT, cstate->post_csc_mode, false); 2334 } 2335 2336 static void vop3_post_config(struct display_state *state, struct vop2 *vop2) 2337 { 2338 struct connector_state *conn_state = &state->conn_state; 2339 struct base2_disp_info *disp_info = conn_state->disp_info; 2340 const char *enable_flag; 2341 if (!disp_info) { 2342 printf("disp_info is empty\n"); 2343 return; 2344 } 2345 2346 enable_flag = (const char *)&disp_info->cacm_header; 2347 if (strncasecmp(enable_flag, "CACM", 4)) { 2348 printf("acm and csc is not support\n"); 2349 return; 2350 } 2351 2352 vop3_post_acm_config(state, vop2); 2353 vop3_post_csc_config(state, vop2); 2354 } 2355 2356 static int rk3576_vop2_wait_power_domain_on(struct vop2 *vop2, 2357 struct vop2_power_domain_data *pd_data) 2358 { 2359 int val = 0; 2360 bool is_bisr_en, is_otp_bisr_en; 2361 2362 if (pd_data->id == VOP2_PD_CLUSTER) { 2363 is_bisr_en = vop2_grf_readl(vop2, vop2->sys_pmu, RK3576_PMU_BISR_PDGEN_CON0, 2364 EN_MASK, PD_VOP_CLUSTER_REPAIR_ENA_SHIFT); 2365 is_otp_bisr_en = vop2_grf_readl(vop2, vop2->grf, RK3576_SYS_GRF_MEMFAULT_STATUS0, 2366 EN_MASK, PD_VOP_CLUSTER_REPAIR_ENA_SHIFT); 2367 if (is_bisr_en && is_otp_bisr_en) 2368 return readl_poll_timeout(vop2->sys_pmu + RK3576_PMU_BISR_PWR_REPAIR_STATUS0, 2369 val, ((val >> PD_VOP_CLUSTER_PWR_REPAIR_STAT_SHIFT) & 0x1), 2370 50 * 1000); 2371 else 2372 return readl_poll_timeout(vop2->sys_pmu + RK3576_PMU_PWR_GATE_STS, 2373 val, !((val >> PD_VOP_CLUSTER_DWN_STAT) & 0x1), 2374 50 * 1000); 2375 } else { 2376 is_bisr_en = vop2_grf_readl(vop2, vop2->sys_pmu, RK3576_PMU_BISR_PDGEN_CON0, 2377 EN_MASK, PD_VOP_ESMART_REPAIR_ENA_SHIFT); 2378 is_otp_bisr_en = vop2_grf_readl(vop2, vop2->grf, RK3576_SYS_GRF_MEMFAULT_STATUS0, 2379 EN_MASK, PD_VOP_ESMART_REPAIR_ENA_SHIFT); 2380 if (is_bisr_en && is_otp_bisr_en) 2381 return readl_poll_timeout(vop2->sys_pmu + RK3576_PMU_BISR_PWR_REPAIR_STATUS0, 2382 val, ((val >> PD_VOP_ESMART_PWR_REPAIR_STAT_SHIFT) & 0x1), 2383 50 * 1000); 2384 else 2385 return readl_poll_timeout(vop2->sys_pmu + RK3576_PMU_PWR_GATE_STS, 2386 val, !((val >> PD_VOP_ESMART_DWN_STAT) & 0x1), 2387 50 * 1000); 2388 } 2389 } 2390 2391 static int rk3576_vop2_power_domain_on(struct vop2 *vop2, struct vop2_power_domain_data *pd_data) 2392 { 2393 int ret = 0; 2394 2395 if (pd_data->id == VOP2_PD_CLUSTER) 2396 vop2_mask_write(vop2, RK3576_SYS_CLUSTER_PD_CTRL, EN_MASK, 2397 RK3576_CLUSTER_PD_EN_SHIFT, 0, true); 2398 else 2399 vop2_mask_write(vop2, RK3576_SYS_ESMART_PD_CTRL, EN_MASK, 2400 RK3576_ESMART_PD_EN_SHIFT, 0, true); 2401 ret = rk3576_vop2_wait_power_domain_on(vop2, pd_data); 2402 if (ret) { 2403 printf("wait vop2 power domain timeout\n"); 2404 return ret; 2405 } 2406 2407 return 0; 2408 } 2409 2410 static int rk3588_vop2_wait_power_domain_on(struct vop2 *vop2, 2411 struct vop2_power_domain_data *pd_data) 2412 { 2413 int val = 0; 2414 int shift = 0; 2415 int shift_factor = 0; 2416 bool is_bisr_en = false; 2417 2418 /* 2419 * The order of pd status bits in BISR_STS register 2420 * is different from that in VOP SYS_STS register. 2421 */ 2422 if (pd_data->id == VOP2_PD_DSC_8K || 2423 pd_data->id == VOP2_PD_DSC_4K || 2424 pd_data->id == VOP2_PD_ESMART) 2425 shift_factor = 1; 2426 2427 shift = RK3588_PD_CLUSTER0_REPAIR_EN_SHIFT + generic_ffs(pd_data->id) - 1 - shift_factor; 2428 is_bisr_en = vop2_grf_readl(vop2, vop2->sys_pmu, RK3588_PMU_BISR_CON3, EN_MASK, shift); 2429 if (is_bisr_en) { 2430 shift = RK3588_PD_CLUSTER0_PWR_STAT_SHIFI + generic_ffs(pd_data->id) - 1 - shift_factor; 2431 2432 return readl_poll_timeout(vop2->sys_pmu + RK3588_PMU_BISR_STATUS5, val, 2433 ((val >> shift) & 0x1), 50 * 1000); 2434 } else { 2435 shift = RK3588_CLUSTER0_PD_STATUS_SHIFT + generic_ffs(pd_data->id) - 1; 2436 2437 return readl_poll_timeout(vop2->regs + RK3568_SYS_STATUS0, val, 2438 !((val >> shift) & 0x1), 50 * 1000); 2439 } 2440 } 2441 2442 static int rk3588_vop2_power_domain_on(struct vop2 *vop2, struct vop2_power_domain_data *pd_data) 2443 { 2444 int ret = 0; 2445 2446 vop2_mask_write(vop2, RK3588_SYS_PD_CTRL, EN_MASK, 2447 RK3588_CLUSTER0_PD_EN_SHIFT + generic_ffs(pd_data->id) - 1, 0, false); 2448 ret = rk3588_vop2_wait_power_domain_on(vop2, pd_data); 2449 if (ret) { 2450 printf("wait vop2 power domain timeout\n"); 2451 return ret; 2452 } 2453 2454 return 0; 2455 } 2456 2457 static int vop2_power_domain_on(struct vop2 *vop2, int pd_id) 2458 { 2459 struct vop2_power_domain_data *pd_data; 2460 int ret = 0; 2461 2462 if (!pd_id) 2463 return 0; 2464 2465 pd_data = vop2_find_pd_data_by_id(vop2, pd_id); 2466 if (!pd_data) { 2467 printf("can't find pd_data by id\n"); 2468 return -EINVAL; 2469 } 2470 2471 if (pd_data->parent_id) { 2472 ret = vop2_power_domain_on(vop2, pd_data->parent_id); 2473 if (ret) { 2474 printf("can't open parent power domain\n"); 2475 return -EINVAL; 2476 } 2477 } 2478 2479 /* 2480 * Read VOP internal power domain on/off status. 2481 * We should query BISR_STS register in PMU for 2482 * power up/down status when memory repair is enabled. 2483 * Return value: 1 for power on, 0 for power off; 2484 */ 2485 if (vop2->version == VOP_VERSION_RK3576) 2486 ret = rk3576_vop2_power_domain_on(vop2, pd_data); 2487 else 2488 ret = rk3588_vop2_power_domain_on(vop2, pd_data); 2489 2490 return ret; 2491 } 2492 2493 static void rk3588_vop2_regsbak(struct vop2 *vop2) 2494 { 2495 u32 *base = vop2->regs; 2496 int i = 0; 2497 2498 /* 2499 * No need to backup HDR/DSC/GAMMA_LUT/BPP_LUT/MMU 2500 */ 2501 for (i = 0; i < (vop2->reg_len >> 2); i++) 2502 vop2->regsbak[i] = base[i]; 2503 } 2504 2505 static void vop3_overlay_init(struct vop2 *vop2, struct display_state *state) 2506 { 2507 struct vop2_win_data *win_data; 2508 int layer_phy_id = 0; 2509 int i, j; 2510 u32 ovl_port_offset = 0; 2511 u32 layer_nr = 0; 2512 u8 shift = 0; 2513 2514 /* layer sel win id */ 2515 for (i = 0; i < vop2->data->nr_vps; i++) { 2516 shift = 0; 2517 ovl_port_offset = 0x100 * i; 2518 layer_nr = vop2->vp_plane_mask[i].attached_layers_nr; 2519 for (j = 0; j < layer_nr; j++) { 2520 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 2521 win_data = vop2_find_win_by_phys_id(vop2, layer_phy_id); 2522 vop2_mask_write(vop2, RK3528_OVL_PORT0_LAYER_SEL + ovl_port_offset, LAYER_SEL_MASK, 2523 shift, win_data->layer_sel_win_id[i], false); 2524 shift += 4; 2525 } 2526 } 2527 2528 if (vop2->version != VOP_VERSION_RK3576) { 2529 /* win sel port */ 2530 for (i = 0; i < vop2->data->nr_vps; i++) { 2531 layer_nr = vop2->vp_plane_mask[i].attached_layers_nr; 2532 for (j = 0; j < layer_nr; j++) { 2533 if (!vop2->vp_plane_mask[i].attached_layers[j]) 2534 continue; 2535 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 2536 win_data = vop2_find_win_by_phys_id(vop2, layer_phy_id); 2537 shift = win_data->win_sel_port_offset * 2; 2538 vop2_mask_write(vop2, RK3528_OVL_SYS_PORT_SEL, 2539 LAYER_SEL_PORT_MASK, shift, i, false); 2540 } 2541 } 2542 } 2543 } 2544 2545 static void vop2_overlay_init(struct vop2 *vop2, struct display_state *state) 2546 { 2547 struct crtc_state *cstate = &state->crtc_state; 2548 struct vop2_win_data *win_data; 2549 int layer_phy_id = 0; 2550 int total_used_layer = 0; 2551 int port_mux = 0; 2552 int i, j; 2553 u32 layer_nr = 0; 2554 u8 shift = 0; 2555 2556 /* layer sel win id */ 2557 for (i = 0; i < vop2->data->nr_vps; i++) { 2558 layer_nr = vop2->vp_plane_mask[i].attached_layers_nr; 2559 for (j = 0; j < layer_nr; j++) { 2560 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 2561 win_data = vop2_find_win_by_phys_id(vop2, layer_phy_id); 2562 vop2_mask_write(vop2, RK3568_OVL_LAYER_SEL, LAYER_SEL_MASK, 2563 shift, win_data->layer_sel_win_id[i], false); 2564 shift += 4; 2565 } 2566 } 2567 2568 /* win sel port */ 2569 for (i = 0; i < vop2->data->nr_vps; i++) { 2570 layer_nr = vop2->vp_plane_mask[i].attached_layers_nr; 2571 for (j = 0; j < layer_nr; j++) { 2572 if (!vop2->vp_plane_mask[i].attached_layers[j]) 2573 continue; 2574 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 2575 win_data = vop2_find_win_by_phys_id(vop2, layer_phy_id); 2576 shift = win_data->win_sel_port_offset * 2; 2577 vop2_mask_write(vop2, RK3568_OVL_PORT_SEL, LAYER_SEL_PORT_MASK, 2578 LAYER_SEL_PORT_SHIFT + shift, i, false); 2579 } 2580 } 2581 2582 /** 2583 * port mux config 2584 */ 2585 for (i = 0; i < vop2->data->nr_vps; i++) { 2586 shift = i * 4; 2587 if (vop2->vp_plane_mask[i].attached_layers_nr) { 2588 total_used_layer += vop2->vp_plane_mask[i].attached_layers_nr; 2589 port_mux = total_used_layer - 1; 2590 } else { 2591 port_mux = 8; 2592 } 2593 2594 if (i == vop2->data->nr_vps - 1) 2595 port_mux = vop2->data->nr_mixers; 2596 2597 cstate->crtc->vps[i].bg_ovl_dly = (vop2->data->nr_mixers - port_mux) << 1; 2598 vop2_mask_write(vop2, RK3568_OVL_PORT_SEL, PORT_MUX_MASK, 2599 PORT_MUX_SHIFT + shift, port_mux, false); 2600 } 2601 } 2602 2603 static bool vop3_ignore_plane(struct vop2 *vop2, struct vop2_win_data *win) 2604 { 2605 if (!is_vop3(vop2)) 2606 return false; 2607 2608 if (vop2->esmart_lb_mode == VOP3_ESMART_8K_MODE && 2609 win->phys_id != ROCKCHIP_VOP2_ESMART0) 2610 return true; 2611 else if (vop2->esmart_lb_mode == VOP3_ESMART_4K_4K_MODE && 2612 (win->phys_id == ROCKCHIP_VOP2_ESMART1 || win->phys_id == ROCKCHIP_VOP2_ESMART3)) 2613 return true; 2614 else if (vop2->esmart_lb_mode == VOP3_ESMART_4K_2K_2K_MODE && 2615 win->phys_id == ROCKCHIP_VOP2_ESMART1) 2616 return true; 2617 else if (vop2->esmart_lb_mode == VOP3_ESMART_4K_4K_4K_MODE && 2618 win->phys_id == ROCKCHIP_VOP2_ESMART3) 2619 return true; 2620 else 2621 return false; 2622 } 2623 2624 static void vop3_init_esmart_scale_engine(struct vop2 *vop2) 2625 { 2626 struct vop2_win_data *win_data; 2627 int i; 2628 u8 scale_engine_num = 0; 2629 2630 /* store plane mask for vop2_fixup_dts */ 2631 for (i = 0; i < vop2->data->nr_layers; i++) { 2632 win_data = &vop2->data->win_data[i]; 2633 if (win_data->type == CLUSTER_LAYER || vop3_ignore_plane(vop2, win_data)) 2634 continue; 2635 2636 win_data->scale_engine_num = scale_engine_num++; 2637 } 2638 } 2639 2640 static int vop3_get_esmart_lb_mode(struct vop2 *vop2) 2641 { 2642 const struct vop2_esmart_lb_map *esmart_lb_mode_map = vop2->data->esmart_lb_mode_map; 2643 int i; 2644 2645 if (!esmart_lb_mode_map) 2646 return vop2->esmart_lb_mode; 2647 2648 for (i = 0; i < vop2->data->esmart_lb_mode_num; i++) { 2649 if (vop2->esmart_lb_mode == esmart_lb_mode_map->lb_mode) 2650 return esmart_lb_mode_map->lb_map_value; 2651 esmart_lb_mode_map++; 2652 } 2653 2654 if (i == vop2->data->esmart_lb_mode_num) 2655 printf("Unsupported esmart_lb_mode:%d\n", vop2->esmart_lb_mode); 2656 2657 return vop2->data->esmart_lb_mode_map[0].lb_map_value; 2658 } 2659 2660 static void vop2_global_initial(struct vop2 *vop2, struct display_state *state) 2661 { 2662 struct crtc_state *cstate = &state->crtc_state; 2663 struct vop2_vp_plane_mask *plane_mask; 2664 int active_vp_num = 0; 2665 int layer_phy_id = 0; 2666 int i, j; 2667 u32 layer_nr = 0; 2668 const u8 *tmp; 2669 2670 if (vop2->global_init) 2671 return; 2672 2673 /* OTP must enable at the first time, otherwise mirror layer register is error */ 2674 if (soc_is_rk3566()) 2675 vop2_mask_write(vop2, RK3568_SYS_OTP_WIN_EN, EN_MASK, 2676 OTP_WIN_EN_SHIFT, 1, false); 2677 2678 if (cstate->crtc->assign_plane) {/* dts assign plane */ 2679 u32 plane_mask; 2680 int primary_plane_id; 2681 2682 for (i = 0; i < vop2->data->nr_vps; i++) { 2683 plane_mask = cstate->crtc->vps[i].plane_mask; 2684 vop2->vp_plane_mask[i].plane_mask = plane_mask; 2685 layer_nr = hweight32(plane_mask); /* use bitmap to store plane mask */ 2686 vop2->vp_plane_mask[i].attached_layers_nr = layer_nr; 2687 primary_plane_id = cstate->crtc->vps[i].primary_plane_id; 2688 if (primary_plane_id >= ROCKCHIP_VOP2_LAYER_MAX) 2689 primary_plane_id = vop2_get_primary_plane(vop2, plane_mask); 2690 vop2->vp_plane_mask[i].primary_plane_id = primary_plane_id; 2691 vop2->vp_plane_mask[i].plane_mask = plane_mask; 2692 2693 /* plane mask[bitmap] convert into layer phy id[enum vop2_layer_phy_id]*/ 2694 for (j = 0; j < layer_nr; j++) { 2695 vop2->vp_plane_mask[i].attached_layers[j] = ffs(plane_mask) - 1; 2696 plane_mask &= ~BIT(vop2->vp_plane_mask[i].attached_layers[j]); 2697 } 2698 } 2699 } else {/* need soft assign plane mask */ 2700 printf("Assign plane mask automatically\n"); 2701 if (vop2->version == VOP_VERSION_RK3576) { 2702 for (i = 0; i < vop2->data->nr_vps; i++) { 2703 if (cstate->crtc->vps[i].enable) { 2704 vop2->vp_plane_mask[i].attached_layers_nr = 1; 2705 vop2->vp_plane_mask[i].primary_plane_id = 2706 vop2->data->vp_default_primary_plane[i]; 2707 vop2->vp_plane_mask[i].attached_layers[0] = 2708 vop2->data->vp_default_primary_plane[i]; 2709 vop2->vp_plane_mask[i].plane_mask |= 2710 BIT(vop2->data->vp_default_primary_plane[i]); 2711 active_vp_num++; 2712 } 2713 } 2714 printf("VOP have %d active VP\n", active_vp_num); 2715 } else { 2716 /* find the first unplug devices and set it as main display */ 2717 int main_vp_index = -1; 2718 2719 for (i = 0; i < vop2->data->nr_vps; i++) { 2720 if (cstate->crtc->vps[i].enable) 2721 active_vp_num++; 2722 } 2723 printf("VOP have %d active VP\n", active_vp_num); 2724 2725 if (soc_is_rk3566() && active_vp_num > 2) 2726 printf("ERROR: rk3566 only support 2 display output!!\n"); 2727 plane_mask = vop2->data->plane_mask; 2728 plane_mask += (active_vp_num - 1) * VOP2_VP_MAX; 2729 /* 2730 * For rk3528, one display policy for hdmi store in plane_mask[0], and 2731 * the other for cvbs store in plane_mask[2]. 2732 */ 2733 if (vop2->version == VOP_VERSION_RK3528 && active_vp_num == 1 && 2734 cstate->crtc->vps[1].output_type == DRM_MODE_CONNECTOR_TV) 2735 plane_mask += 2 * VOP2_VP_MAX; 2736 2737 if (vop2->version == VOP_VERSION_RK3528) { 2738 /* 2739 * For rk3528, the plane mask of vp is limited, only esmart2 can 2740 * be selected by both vp0 and vp1. 2741 */ 2742 j = 0; 2743 } else { 2744 for (i = 0; i < vop2->data->nr_vps; i++) { 2745 if (!is_hot_plug_devices(cstate->crtc->vps[i].output_type)) { 2746 /* the first store main display plane mask */ 2747 vop2->vp_plane_mask[i] = plane_mask[0]; 2748 main_vp_index = i; 2749 break; 2750 } 2751 } 2752 2753 /* if no find unplug devices, use vp0 as main display */ 2754 if (main_vp_index < 0) { 2755 main_vp_index = 0; 2756 vop2->vp_plane_mask[0] = plane_mask[0]; 2757 } 2758 2759 /* plane_mask[0] store main display, so we from plane_mask[1] */ 2760 j = 1; 2761 } 2762 2763 /* init other display except main display */ 2764 for (i = 0; i < vop2->data->nr_vps; i++) { 2765 /* main display or no connect devices */ 2766 if (i == main_vp_index || !cstate->crtc->vps[i].enable) 2767 continue; 2768 vop2->vp_plane_mask[i] = plane_mask[j++]; 2769 /* 2770 * For rk3588, the main window should attach to the VP0 while 2771 * the splice window should attach to the VP1 when the display 2772 * mode is over 4k. 2773 * If only one VP is enabled and the plane mask is not assigned 2774 * in DTS, all main windows will be assigned to the enabled VPx, 2775 * and all splice windows will be assigned to the VPx+1, in order 2776 * to ensure that the splice mode work well. 2777 */ 2778 if (vop2->version == VOP_VERSION_RK3588 && active_vp_num == 1) 2779 vop2->vp_plane_mask[(i + 1) % vop2->data->nr_vps] = plane_mask[j++]; 2780 } 2781 } 2782 /* store plane mask for vop2_fixup_dts */ 2783 for (i = 0; i < vop2->data->nr_vps; i++) { 2784 layer_nr = vop2->vp_plane_mask[i].attached_layers_nr; 2785 for (j = 0; j < layer_nr; j++) { 2786 layer_phy_id = vop2->vp_plane_mask[i].attached_layers[j]; 2787 vop2->vp_plane_mask[i].plane_mask |= BIT(layer_phy_id); 2788 } 2789 } 2790 } 2791 2792 if (vop2->version == VOP_VERSION_RK3588) 2793 rk3588_vop2_regsbak(vop2); 2794 else 2795 memcpy(vop2->regsbak, vop2->regs, vop2->reg_len); 2796 2797 vop2_mask_write(vop2, RK3568_OVL_CTRL, EN_MASK, 2798 OVL_PORT_MUX_REG_DONE_IMD_SHIFT, 1, false); 2799 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 2800 IF_CTRL_REG_DONE_IMD_SHIFT, 1, false); 2801 2802 for (i = 0; i < vop2->data->nr_vps; i++) { 2803 printf("vp%d have layer nr:%d[", i, vop2->vp_plane_mask[i].attached_layers_nr); 2804 for (j = 0; j < vop2->vp_plane_mask[i].attached_layers_nr; j++) 2805 printf("%s ", 2806 vop2_plane_id_to_string(vop2->vp_plane_mask[i].attached_layers[j])); 2807 printf("], primary plane: %s\n", 2808 vop2_plane_id_to_string(vop2->vp_plane_mask[i].primary_plane_id)); 2809 } 2810 2811 if (is_vop3(vop2)) 2812 vop3_overlay_init(vop2, state); 2813 else 2814 vop2_overlay_init(vop2, state); 2815 2816 if (is_vop3(vop2)) { 2817 /* 2818 * you can rewrite at dts vop node: 2819 * 2820 * VOP3_ESMART_8K_MODE = 0, 2821 * VOP3_ESMART_4K_4K_MODE = 1, 2822 * VOP3_ESMART_4K_2K_2K_MODE = 2, 2823 * VOP3_ESMART_2K_2K_2K_2K_MODE = 3, 2824 * 2825 * &vop { 2826 * esmart_lb_mode = /bits/ 8 <2>; 2827 * }; 2828 */ 2829 tmp = dev_read_u8_array_ptr(cstate->dev, "esmart_lb_mode", 1); 2830 if (tmp) 2831 vop2->esmart_lb_mode = *tmp; 2832 else 2833 vop2->esmart_lb_mode = vop2->data->esmart_lb_mode; 2834 if (vop2->version == VOP_VERSION_RK3576) 2835 vop2_mask_write(vop2, RK3576_SYS_ESMART_PD_CTRL, 2836 RK3576_ESMART_LB_MODE_SEL_MASK, 2837 RK3576_ESMART_LB_MODE_SEL_SHIFT, 2838 vop3_get_esmart_lb_mode(vop2), true); 2839 else 2840 vop2_mask_write(vop2, RK3568_SYS_LUT_PORT_SEL, 2841 ESMART_LB_MODE_SEL_MASK, 2842 ESMART_LB_MODE_SEL_SHIFT, 2843 vop3_get_esmart_lb_mode(vop2), false); 2844 2845 vop3_init_esmart_scale_engine(vop2); 2846 2847 if (vop2->version == VOP_VERSION_RK3576) 2848 vop2_mask_write(vop2, RK3576_SYS_PORT_CTRL, EN_MASK, 2849 RK3576_DSP_VS_T_SEL_SHIFT, 0, true); 2850 else 2851 vop2_mask_write(vop2, RK3568_SYS_AXI_LUT_CTRL, EN_MASK, 2852 DSP_VS_T_SEL_SHIFT, 0, false); 2853 2854 /* 2855 * This is a workaround for RK3528/RK3562/RK3576: 2856 * 2857 * The aclk pre auto gating function may disable the aclk 2858 * in some unexpected cases, which detected by hardware 2859 * automatically. 2860 * 2861 * For example, if the above function is enabled, the post 2862 * scale function will be affected, resulting in abnormal 2863 * display. 2864 */ 2865 if (vop2->version == VOP_VERSION_RK3528 || vop2->version == VOP_VERSION_RK3562 || 2866 vop2->version == VOP_VERSION_RK3576) 2867 vop2_mask_write(vop2, RK3568_AUTO_GATING_CTRL, EN_MASK, 2868 ACLK_PRE_AUTO_GATING_EN_SHIFT, 0, false); 2869 } 2870 2871 if (vop2->version == VOP_VERSION_RK3568) 2872 vop2_writel(vop2, RK3568_AUTO_GATING_CTRL, 0); 2873 2874 if (vop2->version == VOP_VERSION_RK3576) { 2875 vop2->merge_irq = ofnode_read_bool(cstate->node, "rockchip,vop-merge-irq"); 2876 2877 /* Default use rkiommu 1.0 for axi0 */ 2878 vop2_mask_write(vop2, RK3576_SYS_MMU_CTRL, EN_MASK, RKMMU_V2_EN_SHIFT, 0, true); 2879 2880 /* Init frc2.0 config */ 2881 vop2_writel(vop2, 0xca0, 0xc8); 2882 vop2_writel(vop2, 0xca4, 0x01000100); 2883 vop2_writel(vop2, 0xca8, 0x03ff0100); 2884 vop2_writel(vop2, 0xda0, 0xc8); 2885 vop2_writel(vop2, 0xda4, 0x01000100); 2886 vop2_writel(vop2, 0xda8, 0x03ff0100); 2887 2888 if (vop2->version == VOP_VERSION_RK3576 && vop2->merge_irq == true) 2889 vop2_mask_write(vop2, RK3576_SYS_PORT_CTRL, EN_MASK, 2890 VP_INTR_MERGE_EN_SHIFT, 1, true); 2891 2892 /* Set reg done every field for interlace */ 2893 vop2_mask_write(vop2, RK3576_SYS_PORT_CTRL, INTERLACE_FRM_REG_DONE_MASK, 2894 INTERLACE_FRM_REG_DONE_SHIFT, 0, false); 2895 } 2896 2897 vop2->global_init = true; 2898 } 2899 2900 static void rockchip_vop2_sharp_init(struct vop2 *vop2, struct display_state *state) 2901 { 2902 struct crtc_state *cstate = &state->crtc_state; 2903 const struct vop2_data *vop2_data = vop2->data; 2904 const struct vop2_vp_data *vp_data = &vop2_data->vp_data[cstate->crtc_id]; 2905 struct resource sharp_regs; 2906 u32 *sharp_reg_base; 2907 int ret; 2908 2909 if (!(vp_data->feature & VOP_FEATURE_POST_SHARP)) 2910 return; 2911 2912 ret = ofnode_read_resource_byname(cstate->node, "sharp_regs", &sharp_regs); 2913 if (ret) { 2914 printf("failed to get sharp regs\n"); 2915 return; 2916 } 2917 sharp_reg_base = (u32 *)sharp_regs.start; 2918 2919 /* 2920 * After vop initialization, keep sw_sharp_enable always on. 2921 * Only enable/disable sharp submodule to avoid black screen. 2922 */ 2923 writel(0x1, sharp_reg_base); 2924 } 2925 2926 static void rockchip_vop2_acm_init(struct vop2 *vop2, struct display_state *state) 2927 { 2928 struct crtc_state *cstate = &state->crtc_state; 2929 const struct vop2_data *vop2_data = vop2->data; 2930 const struct vop2_vp_data *vp_data = &vop2_data->vp_data[cstate->crtc_id]; 2931 struct resource acm_regs; 2932 u32 *acm_reg_base; 2933 u32 vp_offset = (cstate->crtc_id * 0x100); 2934 int ret; 2935 2936 if (!(vp_data->feature & VOP_FEATURE_POST_ACM)) 2937 return; 2938 2939 ret = ofnode_read_resource_byname(cstate->node, "acm_regs", &acm_regs); 2940 if (ret) { 2941 printf("failed to get acm regs\n"); 2942 return; 2943 } 2944 acm_reg_base = (u32 *)acm_regs.start; 2945 2946 /* 2947 * Black screen is displayed when acm bypass switched 2948 * between enable and disable. Therefore, disable acm 2949 * bypass by default after system boot. 2950 */ 2951 vop2_mask_write(vop2, RK3528_VP0_ACM_CTRL + vp_offset, 2952 POST_ACM_BYPASS_EN_MASK, POST_ACM_BYPASS_EN_SHIFT, 0, false); 2953 2954 writel(0, acm_reg_base + 0); 2955 } 2956 2957 static int rockchip_vop2_of_get_gamma_lut(struct display_state *state, 2958 struct device_node *dsp_lut_node) 2959 { 2960 struct crtc_state *cstate = &state->crtc_state; 2961 struct resource gamma_res; 2962 fdt_size_t lut_size; 2963 u32 *lut_regs; 2964 u32 *lut; 2965 u32 r, g, b; 2966 int lut_len; 2967 int length; 2968 int i, j; 2969 int ret = 0; 2970 2971 of_get_property(dsp_lut_node, "gamma-lut", &length); 2972 if (!length) 2973 return -EINVAL; 2974 2975 ret = ofnode_read_resource_byname(cstate->node, "gamma_lut", &gamma_res); 2976 if (ret) 2977 printf("failed to get gamma lut res\n"); 2978 lut_regs = (u32 *)gamma_res.start; 2979 lut_size = gamma_res.end - gamma_res.start + 1; 2980 if (lut_regs == (u32 *)FDT_ADDR_T_NONE) { 2981 printf("failed to get gamma lut register\n"); 2982 return -EINVAL; 2983 } 2984 lut_len = lut_size / 4; 2985 2986 cstate->lut_val = (u32 *)calloc(1, lut_size); 2987 if (!cstate->lut_val) 2988 return -ENOMEM; 2989 2990 length >>= 2; 2991 if (length != lut_len) { 2992 lut = (u32 *)calloc(1, lut_len); 2993 if (!lut) { 2994 free(cstate->lut_val); 2995 return -ENOMEM; 2996 } 2997 2998 ret = of_read_u32_array(dsp_lut_node, "gamma-lut", lut, length); 2999 if (ret) { 3000 printf("Failed to load gamma-lut for vp%d\n", cstate->crtc_id); 3001 free(cstate->lut_val); 3002 free(lut); 3003 return -EINVAL; 3004 } 3005 3006 /* 3007 * In order to achieve the same gamma correction effect in different 3008 * platforms, the following conversion helps to translate from 8bit 3009 * gamma table with 256 parameters to 10bit gamma with 1024 parameters. 3010 */ 3011 for (i = 0; i < lut_len; i++) { 3012 j = i * length / lut_len; 3013 r = lut[j] / length / length * lut_len / length; 3014 g = lut[j] / length % length * lut_len / length; 3015 b = lut[j] % length * lut_len / length; 3016 3017 cstate->lut_val[i] = r * lut_len * lut_len + g * lut_len + b; 3018 } 3019 free(lut); 3020 } else { 3021 of_read_u32_array(dsp_lut_node, "gamma-lut", cstate->lut_val, lut_len); 3022 } 3023 3024 return 0; 3025 } 3026 3027 static void rockchip_vop2_of_get_dsp_lut(struct vop2 *vop2, struct display_state *state) 3028 { 3029 struct crtc_state *cstate = &state->crtc_state; 3030 struct device_node *dsp_lut_node; 3031 int phandle; 3032 int ret = 0; 3033 3034 phandle = ofnode_read_u32_default(np_to_ofnode(cstate->port_node), "dsp-lut", -1); 3035 if (phandle < 0) 3036 return; 3037 3038 dsp_lut_node = of_find_node_by_phandle(phandle); 3039 if (!dsp_lut_node) 3040 return; 3041 3042 ret = rockchip_vop2_of_get_gamma_lut(state, dsp_lut_node); 3043 if (ret) 3044 printf("failed to load vp%d gamma-lut from dts\n", cstate->crtc_id); 3045 } 3046 3047 static int vop2_initial(struct vop2 *vop2, struct display_state *state) 3048 { 3049 rockchip_vop2_of_get_dsp_lut(vop2, state); 3050 3051 rockchip_vop2_gamma_lut_init(vop2, state); 3052 rockchip_vop2_cubic_lut_init(vop2, state); 3053 rockchip_vop2_sharp_init(vop2, state); 3054 rockchip_vop2_acm_init(vop2, state); 3055 3056 return 0; 3057 } 3058 3059 /* 3060 * VOP2 have multi video ports. 3061 * video port ------- crtc 3062 */ 3063 static int rockchip_vop2_preinit(struct display_state *state) 3064 { 3065 struct crtc_state *cstate = &state->crtc_state; 3066 const struct vop2_data *vop2_data = cstate->crtc->data; 3067 struct regmap *map; 3068 char dclk_name[16]; 3069 int ret; 3070 3071 if (!rockchip_vop2) { 3072 rockchip_vop2 = calloc(1, sizeof(struct vop2)); 3073 if (!rockchip_vop2) 3074 return -ENOMEM; 3075 memset(rockchip_vop2, 0, sizeof(struct vop2)); 3076 rockchip_vop2->regsbak = malloc(RK3568_MAX_REG); 3077 rockchip_vop2->reg_len = RK3568_MAX_REG; 3078 #ifdef CONFIG_SPL_BUILD 3079 rockchip_vop2->regs = (void *)RK3528_VOP_BASE; 3080 #else 3081 rockchip_vop2->regs = dev_read_addr_ptr(cstate->dev); 3082 map = syscon_regmap_lookup_by_phandle(cstate->dev, "rockchip,grf"); 3083 rockchip_vop2->grf = regmap_get_range(map, 0); 3084 if (rockchip_vop2->grf <= 0) 3085 printf("%s: Get syscon grf failed (ret=%p)\n", __func__, rockchip_vop2->grf); 3086 #endif 3087 rockchip_vop2->version = vop2_data->version; 3088 rockchip_vop2->data = vop2_data; 3089 if (rockchip_vop2->version == VOP_VERSION_RK3588) { 3090 map = syscon_regmap_lookup_by_phandle(cstate->dev, "rockchip,vop-grf"); 3091 rockchip_vop2->vop_grf = regmap_get_range(map, 0); 3092 if (rockchip_vop2->vop_grf <= 0) 3093 printf("%s: Get syscon vop_grf failed (ret=%p)\n", 3094 __func__, rockchip_vop2->vop_grf); 3095 map = syscon_regmap_lookup_by_phandle(cstate->dev, "rockchip,vo1-grf"); 3096 rockchip_vop2->vo1_grf = regmap_get_range(map, 0); 3097 if (rockchip_vop2->vo1_grf <= 0) 3098 printf("%s: Get syscon vo1_grf failed (ret=%p)\n", 3099 __func__, rockchip_vop2->vo1_grf); 3100 map = syscon_regmap_lookup_by_phandle(cstate->dev, "rockchip,pmu"); 3101 rockchip_vop2->sys_pmu = regmap_get_range(map, 0); 3102 if (rockchip_vop2->sys_pmu <= 0) 3103 printf("%s: Get syscon sys_pmu failed (ret=%p)\n", 3104 __func__, rockchip_vop2->sys_pmu); 3105 } else if (rockchip_vop2->version == VOP_VERSION_RK3576) { 3106 map = syscon_regmap_lookup_by_phandle(cstate->dev, "rockchip,ioc-grf"); 3107 rockchip_vop2->ioc_grf = regmap_get_range(map, 0); 3108 if (rockchip_vop2->ioc_grf <= 0) 3109 printf("%s: Get syscon ioc_grf failed (ret=%p)\n", 3110 __func__, rockchip_vop2->ioc_grf); 3111 map = syscon_regmap_lookup_by_phandle(cstate->dev, "rockchip,pmu"); 3112 rockchip_vop2->sys_pmu = regmap_get_range(map, 0); 3113 if (rockchip_vop2->sys_pmu <= 0) 3114 printf("%s: Get syscon sys_pmu failed (ret=%p)\n", 3115 __func__, rockchip_vop2->sys_pmu); 3116 } 3117 } 3118 3119 snprintf(dclk_name, sizeof(dclk_name), "dclk_vp%d", cstate->crtc_id); 3120 if (dev_read_stringlist_search(cstate->dev, "reset-names", dclk_name) > 0) { 3121 ret = reset_get_by_name(cstate->dev, dclk_name, &cstate->dclk_rst); 3122 if (ret < 0) { 3123 printf("%s: failed to get dclk reset: %d\n", __func__, ret); 3124 cstate->dclk_rst.dev = NULL; 3125 } 3126 } 3127 3128 cstate->private = rockchip_vop2; 3129 cstate->max_output = vop2_data->vp_data[cstate->crtc_id].max_output; 3130 cstate->feature = vop2_data->vp_data[cstate->crtc_id].feature; 3131 3132 vop2_global_initial(rockchip_vop2, state); 3133 3134 return 0; 3135 } 3136 3137 /* 3138 * calc the dclk on rk3588 3139 * the available div of dclk is 1, 2, 4 3140 * 3141 */ 3142 static unsigned long vop2_calc_dclk(unsigned long child_clk, unsigned long max_dclk) 3143 { 3144 if (child_clk * 4 <= max_dclk) 3145 return child_clk * 4; 3146 else if (child_clk * 2 <= max_dclk) 3147 return child_clk * 2; 3148 else if (child_clk <= max_dclk) 3149 return child_clk; 3150 else 3151 return 0; 3152 } 3153 3154 /* 3155 * 4 pixclk/cycle on rk3588 3156 * RGB/eDP/HDMI: if_pixclk >= dclk_core 3157 * DP: dp_pixclk = dclk_out <= dclk_core 3158 * DSI: mipi_pixclk <= dclk_out <= dclk_core 3159 */ 3160 static unsigned long vop2_calc_cru_cfg(struct display_state *state, 3161 int *dclk_core_div, int *dclk_out_div, 3162 int *if_pixclk_div, int *if_dclk_div) 3163 { 3164 struct crtc_state *cstate = &state->crtc_state; 3165 struct connector_state *conn_state = &state->conn_state; 3166 struct drm_display_mode *mode = &conn_state->mode; 3167 struct vop2 *vop2 = cstate->private; 3168 unsigned long v_pixclk = mode->crtc_clock; 3169 unsigned long dclk_core_rate = v_pixclk >> 2; 3170 unsigned long dclk_rate = v_pixclk; 3171 unsigned long dclk_out_rate; 3172 u64 if_dclk_rate; 3173 u64 if_pixclk_rate; 3174 int output_type = conn_state->type; 3175 int output_mode = conn_state->output_mode; 3176 int K = 1; 3177 3178 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE && 3179 output_mode == ROCKCHIP_OUT_MODE_YUV420) { 3180 printf("Dual channel and YUV420 can't work together\n"); 3181 return -EINVAL; 3182 } 3183 3184 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE || 3185 output_mode == ROCKCHIP_OUT_MODE_YUV420) 3186 K = 2; 3187 3188 if (output_type == DRM_MODE_CONNECTOR_HDMIA) { 3189 /* 3190 * K = 2: dclk_core = if_pixclk_rate > if_dclk_rate 3191 * K = 1: dclk_core = hdmie_edp_dclk > if_pixclk_rate 3192 */ 3193 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE || 3194 output_mode == ROCKCHIP_OUT_MODE_YUV420) { 3195 dclk_rate = dclk_rate >> 1; 3196 K = 2; 3197 } 3198 if (cstate->dsc_enable) { 3199 if_pixclk_rate = cstate->dsc_cds_clk_rate << 1; 3200 if_dclk_rate = cstate->dsc_cds_clk_rate; 3201 } else { 3202 if_pixclk_rate = (dclk_core_rate << 1) / K; 3203 if_dclk_rate = dclk_core_rate / K; 3204 } 3205 3206 if (v_pixclk > VOP2_MAX_DCLK_RATE) 3207 dclk_rate = vop2_calc_dclk(dclk_core_rate, 3208 vop2->data->vp_data[cstate->crtc_id].max_dclk); 3209 3210 if (!dclk_rate) { 3211 printf("DP if_pixclk_rate out of range(max_dclk: %d KHZ, dclk_core: %lld KHZ)\n", 3212 vop2->data->vp_data[cstate->crtc_id].max_dclk, if_pixclk_rate); 3213 return -EINVAL; 3214 } 3215 *if_pixclk_div = dclk_rate / if_pixclk_rate; 3216 *if_dclk_div = dclk_rate / if_dclk_rate; 3217 *dclk_core_div = dclk_rate / dclk_core_rate; 3218 printf("dclk:%lu,if_pixclk_div;%d,if_dclk_div:%d\n", 3219 dclk_rate, *if_pixclk_div, *if_dclk_div); 3220 } else if (output_type == DRM_MODE_CONNECTOR_eDP) { 3221 /* edp_pixclk = edp_dclk > dclk_core */ 3222 if_pixclk_rate = v_pixclk / K; 3223 if_dclk_rate = v_pixclk / K; 3224 dclk_rate = if_pixclk_rate * K; 3225 *dclk_core_div = dclk_rate / dclk_core_rate; 3226 *if_pixclk_div = dclk_rate / if_pixclk_rate; 3227 *if_dclk_div = *if_pixclk_div; 3228 } else if (output_type == DRM_MODE_CONNECTOR_DisplayPort) { 3229 dclk_out_rate = v_pixclk >> 2; 3230 dclk_out_rate = dclk_out_rate / K; 3231 3232 dclk_rate = vop2_calc_dclk(dclk_out_rate, 3233 vop2->data->vp_data[cstate->crtc_id].max_dclk); 3234 if (!dclk_rate) { 3235 printf("DP dclk_core out of range(max_dclk: %d KHZ, dclk_core: %ld KHZ)\n", 3236 vop2->data->vp_data[cstate->crtc_id].max_dclk, dclk_core_rate); 3237 return -EINVAL; 3238 } 3239 *dclk_out_div = dclk_rate / dclk_out_rate; 3240 *dclk_core_div = dclk_rate / dclk_core_rate; 3241 } else if (output_type == DRM_MODE_CONNECTOR_DSI) { 3242 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) 3243 K = 2; 3244 if (cstate->dsc_enable) 3245 /* dsc output is 96bit, dsi input is 192 bit */ 3246 if_pixclk_rate = cstate->dsc_cds_clk_rate >> 1; 3247 else 3248 if_pixclk_rate = dclk_core_rate / K; 3249 /* dclk_core = dclk_out * K = if_pixclk * K = v_pixclk / 4 */ 3250 dclk_out_rate = dclk_core_rate / K; 3251 /* dclk_rate = N * dclk_core_rate N = (1,2,4 ), we get a little factor here */ 3252 dclk_rate = vop2_calc_dclk(dclk_out_rate, 3253 vop2->data->vp_data[cstate->crtc_id].max_dclk); 3254 if (!dclk_rate) { 3255 printf("MIPI dclk out of range(max_dclk: %d KHZ, dclk_rate: %ld KHZ)\n", 3256 vop2->data->vp_data[cstate->crtc_id].max_dclk, dclk_rate); 3257 return -EINVAL; 3258 } 3259 3260 if (cstate->dsc_enable) 3261 dclk_rate /= cstate->dsc_slice_num; 3262 3263 *dclk_out_div = dclk_rate / dclk_out_rate; 3264 *dclk_core_div = dclk_rate / dclk_core_rate; 3265 *if_pixclk_div = 1; /*mipi pixclk == dclk_out*/ 3266 if (cstate->dsc_enable) 3267 *if_pixclk_div = dclk_out_rate * 1000LL / if_pixclk_rate; 3268 3269 } else if (output_type == DRM_MODE_CONNECTOR_DPI) { 3270 dclk_rate = v_pixclk; 3271 *dclk_core_div = dclk_rate / dclk_core_rate; 3272 } 3273 3274 *if_pixclk_div = ilog2(*if_pixclk_div); 3275 *if_dclk_div = ilog2(*if_dclk_div); 3276 *dclk_core_div = ilog2(*dclk_core_div); 3277 *dclk_out_div = ilog2(*dclk_out_div); 3278 3279 return dclk_rate; 3280 } 3281 3282 static int vop2_calc_dsc_clk(struct display_state *state) 3283 { 3284 struct connector_state *conn_state = &state->conn_state; 3285 struct drm_display_mode *mode = &conn_state->mode; 3286 struct crtc_state *cstate = &state->crtc_state; 3287 u64 v_pixclk = mode->crtc_clock * 1000LL; /* video timing pixclk */ 3288 u8 k = 1; 3289 3290 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) 3291 k = 2; 3292 3293 cstate->dsc_txp_clk_rate = v_pixclk; 3294 do_div(cstate->dsc_txp_clk_rate, (cstate->dsc_pixel_num * k)); 3295 3296 cstate->dsc_pxl_clk_rate = v_pixclk; 3297 do_div(cstate->dsc_pxl_clk_rate, (cstate->dsc_slice_num * k)); 3298 3299 /* dsc_cds = crtc_clock / (cds_dat_width / bits_per_pixel) 3300 * cds_dat_width = 96; 3301 * bits_per_pixel = [8-12]; 3302 * As cds clk is div from txp clk and only support 1/2/4 div, 3303 * so when txp_clk is equal to v_pixclk, we set dsc_cds = crtc_clock / 4, 3304 * otherwise dsc_cds = crtc_clock / 8; 3305 */ 3306 cstate->dsc_cds_clk_rate = v_pixclk / (cstate->dsc_txp_clk_rate == v_pixclk ? 4 : 8); 3307 3308 return 0; 3309 } 3310 3311 static unsigned long rk3588_vop2_if_cfg(struct display_state *state) 3312 { 3313 struct crtc_state *cstate = &state->crtc_state; 3314 struct connector_state *conn_state = &state->conn_state; 3315 struct drm_display_mode *mode = &conn_state->mode; 3316 struct rockchip_dsc_sink_cap *dsc_sink_cap = &cstate->dsc_sink_cap; 3317 struct vop2 *vop2 = cstate->private; 3318 u32 vp_offset = (cstate->crtc_id * 0x100); 3319 u16 hdisplay = mode->crtc_hdisplay; 3320 int output_if = conn_state->output_if; 3321 int if_pixclk_div = 0; 3322 int if_dclk_div = 0; 3323 unsigned long dclk_rate; 3324 bool dclk_inv, yc_swap = false; 3325 u32 val; 3326 3327 dclk_inv = (conn_state->bus_flags & DRM_BUS_FLAG_PIXDATA_DRIVE_NEGEDGE) ? 1 : 0; 3328 if (output_if & (VOP_OUTPUT_IF_HDMI0 | VOP_OUTPUT_IF_HDMI1)) { 3329 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? BIT(HSYNC_POSITIVE) : 0; 3330 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? BIT(VSYNC_POSITIVE) : 0; 3331 } else { 3332 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? 0 : BIT(HSYNC_POSITIVE); 3333 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? 0 : BIT(VSYNC_POSITIVE); 3334 } 3335 3336 if (cstate->dsc_enable) { 3337 int k = 1; 3338 3339 if (!vop2->data->nr_dscs) { 3340 printf("Unsupported DSC\n"); 3341 return 0; 3342 } 3343 3344 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) 3345 k = 2; 3346 3347 cstate->dsc_id = output_if & (VOP_OUTPUT_IF_MIPI0 | VOP_OUTPUT_IF_HDMI0) ? 0 : 1; 3348 cstate->dsc_slice_num = hdisplay / dsc_sink_cap->slice_width / k; 3349 cstate->dsc_pixel_num = cstate->dsc_slice_num > 4 ? 4 : cstate->dsc_slice_num; 3350 3351 vop2_calc_dsc_clk(state); 3352 printf("Enable DSC%d slice:%dx%d, slice num:%d\n", 3353 cstate->dsc_id, dsc_sink_cap->slice_width, 3354 dsc_sink_cap->slice_height, cstate->dsc_slice_num); 3355 } 3356 3357 dclk_rate = vop2_calc_cru_cfg(state, &cstate->dclk_core_div, &cstate->dclk_out_div, &if_pixclk_div, &if_dclk_div); 3358 3359 if (output_if & VOP_OUTPUT_IF_RGB) { 3360 vop2_mask_write(vop2, RK3568_DSP_IF_EN, 0x7, RK3588_RGB_EN_SHIFT, 3361 4, false); 3362 vop2_grf_writel(vop2, vop2->grf, RK3588_GRF_SOC_CON1, EN_MASK, 3363 RK3588_GRF_VOP_DCLK_INV_SEL_SHIFT, !dclk_inv); 3364 } 3365 3366 if (output_if & VOP_OUTPUT_IF_BT1120) { 3367 vop2_mask_write(vop2, RK3568_DSP_IF_EN, 0x7, RK3588_RGB_EN_SHIFT, 3368 3, false); 3369 vop2_grf_writel(vop2, vop2->grf, RK3588_GRF_SOC_CON1, EN_MASK, 3370 RK3588_GRF_VOP_DCLK_INV_SEL_SHIFT, !dclk_inv); 3371 yc_swap = is_yc_swap(conn_state->bus_format); 3372 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, RK3588_BT1120_YC_SWAP_SHIFT, 3373 yc_swap, false); 3374 } 3375 3376 if (output_if & VOP_OUTPUT_IF_BT656) { 3377 vop2_mask_write(vop2, RK3568_DSP_IF_EN, 0x7, RK3588_RGB_EN_SHIFT, 3378 2, false); 3379 vop2_grf_writel(vop2, vop2->grf, RK3588_GRF_SOC_CON1, EN_MASK, 3380 RK3588_GRF_VOP_DCLK_INV_SEL_SHIFT, !dclk_inv); 3381 yc_swap = is_yc_swap(conn_state->bus_format); 3382 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, RK3588_BT656_YC_SWAP_SHIFT, 3383 yc_swap, false); 3384 } 3385 3386 if (output_if & VOP_OUTPUT_IF_MIPI0) { 3387 if (cstate->crtc_id == 2) 3388 val = 0; 3389 else 3390 val = 1; 3391 3392 if (conn_state->output_flags & ROCKCHIP_OUTPUT_MIPI_DS_MODE) 3393 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3394 RK3588_MIPI_DSI0_MODE_SEL_SHIFT, 1, false); 3395 3396 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_MIPI0_EN_SHIFT, 3397 1, false); 3398 vop2_mask_write(vop2, RK3568_DSP_IF_EN, 1, RK3588_MIPI0_MUX_SHIFT, val, false); 3399 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, MIPI0_PIXCLK_DIV_SHIFT, 3400 if_pixclk_div, false); 3401 3402 if (conn_state->hold_mode) { 3403 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 3404 EN_MASK, EDPI_TE_EN, !cstate->soft_te, false); 3405 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 3406 EN_MASK, EDPI_WMS_HOLD_EN, 1, false); 3407 } 3408 } 3409 3410 if (output_if & VOP_OUTPUT_IF_MIPI1) { 3411 if (cstate->crtc_id == 2) 3412 val = 0; 3413 else if (cstate->crtc_id == 3) 3414 val = 1; 3415 else 3416 val = 3; /*VP1*/ 3417 if (conn_state->output_flags & ROCKCHIP_OUTPUT_MIPI_DS_MODE) 3418 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3419 RK3588_MIPI_DSI1_MODE_SEL_SHIFT, 1, false); 3420 3421 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_MIPI1_EN_SHIFT, 3422 1, false); 3423 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, MIPI1_MUX_SHIFT, 3424 val, false); 3425 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, MIPI1_PIXCLK_DIV_SHIFT, 3426 if_pixclk_div, false); 3427 3428 if (conn_state->hold_mode) { 3429 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 3430 EN_MASK, EDPI_TE_EN, !cstate->soft_te, false); 3431 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 3432 EN_MASK, EDPI_WMS_HOLD_EN, 1, false); 3433 } 3434 } 3435 3436 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) { 3437 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 3438 MIPI_DUAL_EN_SHIFT, 1, false); 3439 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DATA_SWAP) 3440 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 3441 EN_MASK, MIPI_DUAL_SWAP_EN_SHIFT, 1, 3442 false); 3443 switch (conn_state->type) { 3444 case DRM_MODE_CONNECTOR_DisplayPort: 3445 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3446 RK3588_DP_DUAL_EN_SHIFT, 1, false); 3447 break; 3448 case DRM_MODE_CONNECTOR_eDP: 3449 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3450 RK3588_EDP_DUAL_EN_SHIFT, 1, false); 3451 break; 3452 case DRM_MODE_CONNECTOR_HDMIA: 3453 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3454 RK3588_HDMI_DUAL_EN_SHIFT, 1, false); 3455 break; 3456 case DRM_MODE_CONNECTOR_DSI: 3457 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3458 RK3568_MIPI_DUAL_EN_SHIFT, 1, false); 3459 break; 3460 default: 3461 break; 3462 } 3463 } 3464 3465 if (output_if & VOP_OUTPUT_IF_eDP0) { 3466 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_EDP0_EN_SHIFT, 3467 1, false); 3468 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_HDMI_EDP0_MUX_SHIFT, 3469 cstate->crtc_id, false); 3470 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP0_DCLK_DIV_SHIFT, 3471 if_dclk_div, false); 3472 3473 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP0_PIXCLK_DIV_SHIFT, 3474 if_pixclk_div, false); 3475 3476 vop2_grf_writel(vop2, vop2->vop_grf, RK3588_GRF_VOP_CON2, EN_MASK, 3477 RK3588_GRF_EDP0_ENABLE_SHIFT, 1); 3478 } 3479 3480 if (output_if & VOP_OUTPUT_IF_eDP1) { 3481 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_EDP1_EN_SHIFT, 3482 1, false); 3483 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_HDMI_EDP1_MUX_SHIFT, 3484 cstate->crtc_id, false); 3485 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP1_DCLK_DIV_SHIFT, 3486 if_dclk_div, false); 3487 3488 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP1_PIXCLK_DIV_SHIFT, 3489 if_pixclk_div, false); 3490 3491 vop2_grf_writel(vop2, vop2->vop_grf, RK3588_GRF_VOP_CON2, EN_MASK, 3492 RK3588_GRF_EDP1_ENABLE_SHIFT, 1); 3493 } 3494 3495 if (output_if & VOP_OUTPUT_IF_HDMI0) { 3496 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_HDMI0_EN_SHIFT, 3497 1, false); 3498 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_HDMI_EDP0_MUX_SHIFT, 3499 cstate->crtc_id, false); 3500 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP0_DCLK_DIV_SHIFT, 3501 if_dclk_div, false); 3502 3503 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP0_PIXCLK_DIV_SHIFT, 3504 if_pixclk_div, false); 3505 3506 vop2_grf_writel(vop2, vop2->vop_grf, RK3588_GRF_VOP_CON2, EN_MASK, 3507 RK3588_GRF_HDMITX0_ENABLE_SHIFT, 1); 3508 vop2_grf_writel(vop2, vop2->vo1_grf, RK3588_GRF_VO1_CON0, 3509 HDMI_SYNC_POL_MASK, 3510 HDMI0_SYNC_POL_SHIFT, val); 3511 } 3512 3513 if (output_if & VOP_OUTPUT_IF_HDMI1) { 3514 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_HDMI1_EN_SHIFT, 3515 1, false); 3516 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_HDMI_EDP1_MUX_SHIFT, 3517 cstate->crtc_id, false); 3518 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP1_DCLK_DIV_SHIFT, 3519 if_dclk_div, false); 3520 3521 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, 3, HDMI_EDP1_PIXCLK_DIV_SHIFT, 3522 if_pixclk_div, false); 3523 3524 vop2_grf_writel(vop2, vop2->vop_grf, RK3588_GRF_VOP_CON2, EN_MASK, 3525 RK3588_GRF_HDMITX1_ENABLE_SHIFT, 1); 3526 vop2_grf_writel(vop2, vop2->vo1_grf, RK3588_GRF_VO1_CON0, 3527 HDMI_SYNC_POL_MASK, 3528 HDMI1_SYNC_POL_SHIFT, val); 3529 } 3530 3531 if (output_if & VOP_OUTPUT_IF_DP0) { 3532 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_DP0_MUX_SHIFT, 3533 cstate->crtc_id, false); 3534 vop2_mask_write(vop2, RK3568_DSP_IF_POL, RK3588_IF_PIN_POL_MASK, 3535 RK3588_DP0_PIN_POL_SHIFT, val, false); 3536 } 3537 3538 if (output_if & VOP_OUTPUT_IF_DP1) { 3539 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, RK3588_DP1_MUX_SHIFT, 3540 cstate->crtc_id, false); 3541 vop2_mask_write(vop2, RK3568_DSP_IF_POL, RK3588_IF_PIN_POL_MASK, 3542 RK3588_DP1_PIN_POL_SHIFT, val, false); 3543 } 3544 3545 vop2_mask_write(vop2, RK3588_VP0_CLK_CTRL + vp_offset, 0x3, 3546 DCLK_CORE_DIV_SHIFT, cstate->dclk_core_div, false); 3547 vop2_mask_write(vop2, RK3588_VP0_CLK_CTRL + vp_offset, 0x3, 3548 DCLK_OUT_DIV_SHIFT, cstate->dclk_out_div, false); 3549 3550 return dclk_rate; 3551 } 3552 3553 static unsigned long rk3576_vop2_if_cfg(struct display_state *state) 3554 { 3555 struct crtc_state *cstate = &state->crtc_state; 3556 struct connector_state *conn_state = &state->conn_state; 3557 struct drm_display_mode *mode = &conn_state->mode; 3558 struct vop2 *vop2 = cstate->private; 3559 u32 vp_offset = (cstate->crtc_id * 0x100); 3560 u8 port_pix_rate = vop2->data->vp_data[cstate->crtc_id].pixel_rate; 3561 int output_if = conn_state->output_if; 3562 bool dclk_inv, yc_swap = false; 3563 bool split_mode = !!(conn_state->output_flags & 3564 ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE); 3565 bool post_dclk_core_sel = false, pix_half_rate = false, post_dclk_out_sel = false; 3566 bool interface_dclk_sel, interface_pix_clk_sel = false; 3567 bool double_pixel = mode->flags & DRM_MODE_FLAG_DBLCLK || 3568 conn_state->output_if & VOP_OUTPUT_IF_BT656; 3569 unsigned long dclk_in_rate, dclk_core_rate; 3570 u32 val; 3571 3572 dclk_inv = (conn_state->bus_flags & DRM_BUS_FLAG_PIXDATA_DRIVE_NEGEDGE) ? 1 : 0; 3573 if (output_if & VOP_OUTPUT_IF_MIPI0) { 3574 /* 3575 * RK3576 DSI CTRL hsync/vsync polarity is positive and can't update, 3576 * so set VOP hsync/vsync polarity as positive by default. 3577 */ 3578 val = BIT(HSYNC_POSITIVE) | BIT(VSYNC_POSITIVE); 3579 } else { 3580 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? 0 : BIT(HSYNC_POSITIVE); 3581 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? 0 : BIT(VSYNC_POSITIVE); 3582 } 3583 3584 if (conn_state->output_mode == ROCKCHIP_OUT_MODE_YUV420 || 3585 mode->crtc_clock > VOP2_MAX_DCLK_RATE || (cstate->crtc_id == 0 && split_mode)) 3586 cstate->crtc->vps[cstate->crtc_id].dclk_div = 2; /* div2 */ 3587 else 3588 cstate->crtc->vps[cstate->crtc_id].dclk_div = 1; /* no div */ 3589 dclk_in_rate = mode->crtc_clock / cstate->crtc->vps[cstate->crtc_id].dclk_div; 3590 3591 if (double_pixel) 3592 dclk_core_rate = mode->crtc_clock / 2; 3593 else 3594 dclk_core_rate = mode->crtc_clock / port_pix_rate; 3595 post_dclk_core_sel = dclk_in_rate > dclk_core_rate ? 1 : 0; /* 0: no div, 1: div2 */ 3596 3597 if (split_mode || conn_state->output_mode == ROCKCHIP_OUT_MODE_YUV420) { 3598 pix_half_rate = true; 3599 post_dclk_out_sel = true; 3600 } 3601 3602 if (output_if & VOP_OUTPUT_IF_RGB) { 3603 interface_dclk_sel = pix_half_rate == 1 ? 1 : 0; 3604 /* 3605 * RGB interface_pix_clk_sel will auto config according 3606 * to rgb_en/bt1120_en/bt656_en. 3607 */ 3608 } else if (output_if & VOP_OUTPUT_IF_eDP0) { 3609 interface_dclk_sel = pix_half_rate == 1 ? 1 : 0; 3610 interface_pix_clk_sel = port_pix_rate == 2 ? 1 : 0; 3611 } else { 3612 interface_dclk_sel = pix_half_rate == 1 ? 1 : 0; 3613 interface_pix_clk_sel = port_pix_rate == 1 ? 1 : 0; 3614 } 3615 3616 /* dclk_core */ 3617 vop2_mask_write(vop2, RK3568_VP0_DCLK_SEL + vp_offset, EN_MASK, 3618 RK3576_DCLK_CORE_SEL_SHIFT, post_dclk_core_sel, false); 3619 /* dclk_out */ 3620 vop2_mask_write(vop2, RK3568_VP0_DCLK_SEL + vp_offset, EN_MASK, 3621 RK3576_DCLK_OUT_SEL_SHIFT, post_dclk_out_sel, false); 3622 3623 if (output_if & VOP_OUTPUT_IF_RGB) { 3624 /* 0: dclk_core, 1: dclk_out */ 3625 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3626 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3627 3628 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3629 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3630 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3631 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3632 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3633 RK3576_IF_OUT_EN_SHIFT, 1, false); 3634 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3635 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3636 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, RK3576_IF_PIN_POL_MASK, 3637 RK3576_IF_PIN_POL_SHIFT, val, false); 3638 vop2_grf_writel(vop2, vop2->ioc_grf, RK3576_VCCIO_IOC_MISC_CON8, EN_MASK, 3639 RK3576_IOC_VOP_DCLK_INV_SEL_SHIFT, dclk_inv); 3640 } 3641 3642 if (output_if & VOP_OUTPUT_IF_BT1120) { 3643 /* 0: dclk_core, 1: dclk_out */ 3644 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3645 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3646 3647 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3648 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3649 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3650 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3651 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3652 RK3576_IF_OUT_EN_SHIFT, 1, false); 3653 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3654 RK3576_BT1120_OUT_EN_SHIFT, 1, false); 3655 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3656 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3657 vop2_grf_writel(vop2, vop2->ioc_grf, RK3576_VCCIO_IOC_MISC_CON8, EN_MASK, 3658 RK3576_IOC_VOP_DCLK_INV_SEL_SHIFT, !dclk_inv); 3659 yc_swap = is_yc_swap(conn_state->bus_format); 3660 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3661 RK3576_BT1120_YC_SWAP_SHIFT, yc_swap, false); 3662 } 3663 3664 if (output_if & VOP_OUTPUT_IF_BT656) { 3665 /* 0: dclk_core, 1: dclk_out */ 3666 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3667 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3668 3669 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3670 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3671 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3672 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3673 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3674 RK3576_IF_OUT_EN_SHIFT, 1, false); 3675 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3676 RK3576_BT656_OUT_EN_SHIFT, 1, false); 3677 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3678 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3679 vop2_grf_writel(vop2, vop2->ioc_grf, RK3576_VCCIO_IOC_MISC_CON8, EN_MASK, 3680 RK3576_IOC_VOP_DCLK_INV_SEL_SHIFT, !dclk_inv); 3681 yc_swap = is_yc_swap(conn_state->bus_format); 3682 vop2_mask_write(vop2, RK3576_RGB_IF_CTRL, EN_MASK, 3683 RK3576_BT656_YC_SWAP_SHIFT, yc_swap, false); 3684 } 3685 3686 if (output_if & VOP_OUTPUT_IF_MIPI0) { 3687 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3688 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3689 /* 0: div2, 1: div4 */ 3690 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, RK3576_IF_PIX_CLK_SEL_MASK, 3691 RK3576_IF_PIX_CLK_SEL_SHIFT, interface_pix_clk_sel, false); 3692 3693 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, EN_MASK, 3694 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3695 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, EN_MASK, 3696 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3697 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, EN_MASK, 3698 RK3576_IF_OUT_EN_SHIFT, 1, false); 3699 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3700 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3701 /* 3702 * RK3576 DSI CTRL hsync/vsync polarity is positive and can't update, 3703 * so set VOP hsync/vsync polarity as positive by default. 3704 */ 3705 if (vop2->version == VOP_VERSION_RK3576) 3706 val = BIT(HSYNC_POSITIVE) | BIT(VSYNC_POSITIVE); 3707 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, RK3576_IF_PIN_POL_MASK, 3708 RK3576_IF_PIN_POL_SHIFT, val, false); 3709 3710 if (conn_state->output_flags & ROCKCHIP_OUTPUT_MIPI_DS_MODE) 3711 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, EN_MASK, 3712 RK3576_MIPI_CMD_MODE_SHIFT, 1, false); 3713 3714 if (conn_state->hold_mode) { 3715 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 3716 EDPI_TE_EN, !cstate->soft_te, false); 3717 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 3718 EDPI_WMS_HOLD_EN, 1, false); 3719 } 3720 } 3721 3722 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) { 3723 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 3724 MIPI_DUAL_EN_SHIFT, 1, false); 3725 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DATA_SWAP) 3726 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 3727 MIPI_DUAL_SWAP_EN_SHIFT, 1, false); 3728 switch (conn_state->type) { 3729 case DRM_MODE_CONNECTOR_DisplayPort: 3730 vop2_mask_write(vop2, RK3576_DP0_IF_CTRL, EN_MASK, 3731 RK3576_IF_SPLIT_EN_SHIFT, 1, false); 3732 break; 3733 case DRM_MODE_CONNECTOR_eDP: 3734 vop2_mask_write(vop2, RK3576_EDP0_IF_CTRL, EN_MASK, 3735 RK3576_IF_SPLIT_EN_SHIFT, 1, false); 3736 break; 3737 case DRM_MODE_CONNECTOR_HDMIA: 3738 vop2_mask_write(vop2, RK3576_HDMI0_IF_CTRL, EN_MASK, 3739 RK3576_IF_SPLIT_EN_SHIFT, 1, false); 3740 break; 3741 case DRM_MODE_CONNECTOR_DSI: 3742 vop2_mask_write(vop2, RK3576_MIPI0_IF_CTRL, EN_MASK, 3743 RK3576_IF_SPLIT_EN_SHIFT, 1, false); 3744 break; 3745 default: 3746 break; 3747 } 3748 } 3749 3750 if (output_if & VOP_OUTPUT_IF_eDP0) { 3751 vop2_mask_write(vop2, RK3576_EDP0_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3752 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3753 /* 0: dclk, 1: port0_dclk */ 3754 vop2_mask_write(vop2, RK3576_EDP0_IF_CTRL, RK3576_IF_PIX_CLK_SEL_MASK, 3755 RK3576_IF_PIX_CLK_SEL_SHIFT, interface_pix_clk_sel, false); 3756 3757 vop2_mask_write(vop2, RK3576_EDP0_IF_CTRL, EN_MASK, 3758 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3759 vop2_mask_write(vop2, RK3576_EDP0_IF_CTRL, EN_MASK, 3760 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3761 vop2_mask_write(vop2, RK3576_EDP0_IF_CTRL, EN_MASK, 3762 RK3576_IF_OUT_EN_SHIFT, 1, false); 3763 vop2_mask_write(vop2, RK3576_EDP0_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3764 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3765 vop2_mask_write(vop2, RK3576_EDP0_IF_CTRL, RK3576_IF_PIN_POL_MASK, 3766 RK3576_IF_PIN_POL_SHIFT, val, false); 3767 } 3768 3769 if (output_if & VOP_OUTPUT_IF_HDMI0) { 3770 vop2_mask_write(vop2, RK3576_HDMI0_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3771 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3772 /* 0: div2, 1: div4 */ 3773 vop2_mask_write(vop2, RK3576_HDMI0_IF_CTRL, RK3576_IF_PIX_CLK_SEL_MASK, 3774 RK3576_IF_PIX_CLK_SEL_SHIFT, interface_pix_clk_sel, false); 3775 3776 vop2_mask_write(vop2, RK3576_HDMI0_IF_CTRL, EN_MASK, 3777 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3778 vop2_mask_write(vop2, RK3576_HDMI0_IF_CTRL, EN_MASK, 3779 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3780 vop2_mask_write(vop2, RK3576_HDMI0_IF_CTRL, EN_MASK, 3781 RK3576_IF_OUT_EN_SHIFT, 1, false); 3782 vop2_mask_write(vop2, RK3576_HDMI0_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3783 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3784 vop2_mask_write(vop2, RK3576_HDMI0_IF_CTRL, RK3576_IF_PIN_POL_MASK, 3785 RK3576_IF_PIN_POL_SHIFT, val, false); 3786 } 3787 3788 if (output_if & VOP_OUTPUT_IF_DP0) { 3789 vop2_mask_write(vop2, RK3576_DP0_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3790 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3791 /* 0: no div, 1: div2 */ 3792 vop2_mask_write(vop2, RK3576_DP0_IF_CTRL, RK3576_IF_PIX_CLK_SEL_MASK, 3793 RK3576_IF_PIX_CLK_SEL_SHIFT, interface_pix_clk_sel, false); 3794 3795 vop2_mask_write(vop2, RK3576_DP0_IF_CTRL, EN_MASK, 3796 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3797 vop2_mask_write(vop2, RK3576_DP0_IF_CTRL, EN_MASK, 3798 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3799 vop2_mask_write(vop2, RK3576_DP0_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3800 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3801 vop2_mask_write(vop2, RK3576_DP0_IF_CTRL, RK3576_IF_PIN_POL_MASK, 3802 RK3576_IF_PIN_POL_SHIFT, val, false); 3803 } 3804 3805 if (output_if & VOP_OUTPUT_IF_DP1) { 3806 vop2_mask_write(vop2, RK3576_DP1_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3807 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3808 /* 0: no div, 1: div2 */ 3809 vop2_mask_write(vop2, RK3576_DP1_IF_CTRL, RK3576_IF_PIX_CLK_SEL_MASK, 3810 RK3576_IF_PIX_CLK_SEL_SHIFT, interface_pix_clk_sel, false); 3811 3812 vop2_mask_write(vop2, RK3576_DP1_IF_CTRL, EN_MASK, 3813 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3814 vop2_mask_write(vop2, RK3576_DP1_IF_CTRL, EN_MASK, 3815 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3816 vop2_mask_write(vop2, RK3576_DP1_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3817 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3818 vop2_mask_write(vop2, RK3576_DP1_IF_CTRL, RK3576_IF_PIN_POL_MASK, 3819 RK3576_IF_PIN_POL_SHIFT, val, false); 3820 } 3821 3822 if (output_if & VOP_OUTPUT_IF_DP2) { 3823 vop2_mask_write(vop2, RK3576_DP2_IF_CTRL, RK3576_IF_DCLK_SEL_MASK, 3824 RK3576_IF_DCLK_SEL_SHIFT, interface_dclk_sel, false); 3825 /* 0: no div, 1: div2 */ 3826 vop2_mask_write(vop2, RK3576_DP2_IF_CTRL, RK3576_IF_PIX_CLK_SEL_MASK, 3827 RK3576_IF_PIX_CLK_SEL_SHIFT, interface_pix_clk_sel, false); 3828 3829 vop2_mask_write(vop2, RK3576_DP2_IF_CTRL, EN_MASK, 3830 RK3576_IF_REGDONE_IMD_EN_SHIFT, 1, false); 3831 vop2_mask_write(vop2, RK3576_DP2_IF_CTRL, EN_MASK, 3832 RK3576_IF_CLK_OUT_EN_SHIFT, 1, false); 3833 vop2_mask_write(vop2, RK3576_DP2_IF_CTRL, RK3576_IF_PORT_SEL_MASK, 3834 RK3576_IF_PORT_SEL_SHIFT, cstate->crtc_id, false); 3835 vop2_mask_write(vop2, RK3576_DP2_IF_CTRL, RK3576_IF_PIN_POL_MASK, 3836 RK3576_IF_PIN_POL_SHIFT, val, false); 3837 } 3838 3839 return mode->crtc_clock; 3840 } 3841 3842 static void rk3568_vop2_setup_dual_channel_if(struct display_state *state) 3843 { 3844 struct crtc_state *cstate = &state->crtc_state; 3845 struct connector_state *conn_state = &state->conn_state; 3846 struct vop2 *vop2 = cstate->private; 3847 u32 vp_offset = (cstate->crtc_id * 0x100); 3848 3849 if (conn_state->output_flags & 3850 ROCKCHIP_OUTPUT_DUAL_CHANNEL_ODD_EVEN_MODE) { 3851 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3852 LVDS_DUAL_EN_SHIFT, 1, false); 3853 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3854 LVDS_DUAL_LEFT_RIGHT_EN_SHIFT, 0, false); 3855 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DATA_SWAP) 3856 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3857 LVDS_DUAL_SWAP_EN_SHIFT, 1, false); 3858 3859 return; 3860 } 3861 3862 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 3863 MIPI_DUAL_EN_SHIFT, 1, false); 3864 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DATA_SWAP) { 3865 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, EN_MASK, 3866 MIPI_DUAL_SWAP_EN_SHIFT, 1, false); 3867 } 3868 3869 if (conn_state->output_if & VOP_OUTPUT_IF_LVDS1) { 3870 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3871 LVDS_DUAL_EN_SHIFT, 1, false); 3872 vop2_mask_write(vop2, RK3568_DSP_IF_CTRL, EN_MASK, 3873 LVDS_DUAL_LEFT_RIGHT_EN_SHIFT, 1, false); 3874 } 3875 } 3876 3877 static unsigned long rk3568_vop2_if_cfg(struct display_state *state) 3878 { 3879 struct crtc_state *cstate = &state->crtc_state; 3880 struct connector_state *conn_state = &state->conn_state; 3881 struct drm_display_mode *mode = &conn_state->mode; 3882 struct vop2 *vop2 = cstate->private; 3883 bool dclk_inv; 3884 u32 val; 3885 3886 dclk_inv = (conn_state->bus_flags & DRM_BUS_FLAG_PIXDATA_DRIVE_NEGEDGE) ? 1 : 0; 3887 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? 0 : BIT(HSYNC_POSITIVE); 3888 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? 0 : BIT(VSYNC_POSITIVE); 3889 3890 if (conn_state->output_if & VOP_OUTPUT_IF_RGB) { 3891 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RGB_EN_SHIFT, 3892 1, false); 3893 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3894 RGB_MUX_SHIFT, cstate->crtc_id, false); 3895 vop2_mask_write(vop2, RK3568_DSP_IF_POL, IF_CTRL_RGB_LVDS_PIN_POL_MASK, 3896 IF_CTRL_RGB_LVDS_PIN_POL_SHIFT, val, false); 3897 vop2_grf_writel(vop2, vop2->grf, RK3568_GRF_VO_CON1, EN_MASK, 3898 GRF_RGB_DCLK_INV_SHIFT, dclk_inv); 3899 } 3900 3901 if (conn_state->output_if & VOP_OUTPUT_IF_BT1120) { 3902 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RGB_EN_SHIFT, 3903 1, false); 3904 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, 3905 BT1120_EN_SHIFT, 1, false); 3906 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3907 RGB_MUX_SHIFT, cstate->crtc_id, false); 3908 vop2_grf_writel(vop2, vop2->grf, RK3568_GRF_VO_CON1, EN_MASK, 3909 GRF_BT1120_CLK_INV_SHIFT, !dclk_inv); 3910 } 3911 3912 if (conn_state->output_if & VOP_OUTPUT_IF_BT656) { 3913 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, BT656_EN_SHIFT, 3914 1, false); 3915 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3916 RGB_MUX_SHIFT, cstate->crtc_id, false); 3917 vop2_grf_writel(vop2, vop2->grf, RK3568_GRF_VO_CON1, EN_MASK, 3918 GRF_BT656_CLK_INV_SHIFT, !dclk_inv); 3919 } 3920 3921 if (conn_state->output_if & VOP_OUTPUT_IF_LVDS0) { 3922 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, LVDS0_EN_SHIFT, 3923 1, false); 3924 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3925 LVDS0_MUX_SHIFT, cstate->crtc_id, false); 3926 vop2_mask_write(vop2, RK3568_DSP_IF_POL, IF_CTRL_RGB_LVDS_PIN_POL_MASK, 3927 IF_CTRL_RGB_LVDS_PIN_POL_SHIFT, val, false); 3928 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 3929 IF_CTRL_RGB_LVDS_DCLK_POL_SHIFT, dclk_inv, false); 3930 } 3931 3932 if (conn_state->output_if & VOP_OUTPUT_IF_LVDS1) { 3933 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, LVDS1_EN_SHIFT, 3934 1, false); 3935 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3936 LVDS1_MUX_SHIFT, cstate->crtc_id, false); 3937 vop2_mask_write(vop2, RK3568_DSP_IF_POL, IF_CTRL_RGB_LVDS_PIN_POL_MASK, 3938 IF_CTRL_RGB_LVDS_PIN_POL_SHIFT, val, false); 3939 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 3940 IF_CTRL_RGB_LVDS_DCLK_POL_SHIFT, dclk_inv, false); 3941 } 3942 3943 3944 if (conn_state->output_if & VOP_OUTPUT_IF_MIPI0) { 3945 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, MIPI0_EN_SHIFT, 3946 1, false); 3947 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3948 MIPI0_MUX_SHIFT, cstate->crtc_id, false); 3949 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 3950 IF_CRTL_MIPI_DCLK_POL_SHIT, dclk_inv, false); 3951 vop2_mask_write(vop2, RK3568_DSP_IF_POL, IF_CTRL_MIPI_PIN_POL_MASK, 3952 IF_CTRL_MIPI_PIN_POL_SHIFT, val, false); 3953 } 3954 3955 if (conn_state->output_if & VOP_OUTPUT_IF_MIPI1) { 3956 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, MIPI1_EN_SHIFT, 3957 1, false); 3958 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3959 MIPI1_MUX_SHIFT, cstate->crtc_id, false); 3960 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 3961 IF_CRTL_MIPI_DCLK_POL_SHIT, dclk_inv, false); 3962 vop2_mask_write(vop2, RK3568_DSP_IF_POL, IF_CTRL_MIPI_PIN_POL_MASK, 3963 IF_CTRL_MIPI_PIN_POL_SHIFT, val, false); 3964 } 3965 3966 if (conn_state->output_flags & 3967 ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE || 3968 conn_state->output_flags & 3969 ROCKCHIP_OUTPUT_DUAL_CHANNEL_ODD_EVEN_MODE) 3970 rk3568_vop2_setup_dual_channel_if(state); 3971 3972 if (conn_state->output_if & VOP_OUTPUT_IF_eDP0) { 3973 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, EDP0_EN_SHIFT, 3974 1, false); 3975 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3976 EDP0_MUX_SHIFT, cstate->crtc_id, false); 3977 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 3978 IF_CRTL_EDP_DCLK_POL_SHIT, dclk_inv, false); 3979 vop2_mask_write(vop2, RK3568_DSP_IF_POL, IF_CTRL_EDP_PIN_POL_MASK, 3980 IF_CTRL_EDP_PIN_POL_SHIFT, val, false); 3981 } 3982 3983 if (conn_state->output_if & VOP_OUTPUT_IF_HDMI0) { 3984 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, HDMI0_EN_SHIFT, 3985 1, false); 3986 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 3987 HDMI0_MUX_SHIFT, cstate->crtc_id, false); 3988 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 3989 IF_CRTL_HDMI_DCLK_POL_SHIT, 1, false); 3990 vop2_mask_write(vop2, RK3568_DSP_IF_POL, 3991 IF_CRTL_HDMI_PIN_POL_MASK, 3992 IF_CRTL_HDMI_PIN_POL_SHIT, val, false); 3993 } 3994 3995 return mode->crtc_clock; 3996 } 3997 3998 static unsigned long rk3562_vop2_if_cfg(struct display_state *state) 3999 { 4000 struct crtc_state *cstate = &state->crtc_state; 4001 struct connector_state *conn_state = &state->conn_state; 4002 struct drm_display_mode *mode = &conn_state->mode; 4003 struct vop2 *vop2 = cstate->private; 4004 bool dclk_inv; 4005 u32 vp_offset = (cstate->crtc_id * 0x100); 4006 u32 val; 4007 4008 dclk_inv = (conn_state->bus_flags & DRM_BUS_FLAG_PIXDATA_DRIVE_NEGEDGE) ? 1 : 0; 4009 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? 0 : BIT(HSYNC_POSITIVE); 4010 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? 0 : BIT(VSYNC_POSITIVE); 4011 4012 if (conn_state->output_if & VOP_OUTPUT_IF_RGB) { 4013 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RGB_EN_SHIFT, 4014 1, false); 4015 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 4016 RGB_MUX_SHIFT, cstate->crtc_id, false); 4017 vop2_grf_writel(vop2, vop2->grf, RK3562_GRF_IOC_VO_IO_CON, EN_MASK, 4018 GRF_RGB_DCLK_INV_SHIFT, dclk_inv); 4019 vop2_mask_write(vop2, RK3568_DSP_IF_POL, RK3562_IF_PIN_POL_MASK, 4020 IF_CTRL_RGB_LVDS_PIN_POL_SHIFT, val, false); 4021 } 4022 4023 if (conn_state->output_if & VOP_OUTPUT_IF_LVDS0) { 4024 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, LVDS0_EN_SHIFT, 4025 1, false); 4026 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 4027 LVDS0_MUX_SHIFT, cstate->crtc_id, false); 4028 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 4029 IF_CTRL_RGB_LVDS_DCLK_POL_SHIFT, dclk_inv, false); 4030 vop2_mask_write(vop2, RK3568_DSP_IF_POL, RK3562_IF_PIN_POL_MASK, 4031 IF_CTRL_RGB_LVDS_PIN_POL_SHIFT, val, false); 4032 } 4033 4034 if (conn_state->output_if & VOP_OUTPUT_IF_MIPI0) { 4035 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, MIPI0_EN_SHIFT, 4036 1, false); 4037 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 4038 MIPI0_MUX_SHIFT, cstate->crtc_id, false); 4039 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 4040 RK3562_MIPI_DCLK_POL_SHIFT, dclk_inv, false); 4041 vop2_mask_write(vop2, RK3568_DSP_IF_POL, RK3562_IF_PIN_POL_MASK, 4042 RK3562_MIPI_PIN_POL_SHIFT, val, false); 4043 4044 if (conn_state->hold_mode) { 4045 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 4046 EN_MASK, EDPI_TE_EN, !cstate->soft_te, false); 4047 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 4048 EN_MASK, EDPI_WMS_HOLD_EN, 1, false); 4049 } 4050 } 4051 4052 return mode->crtc_clock; 4053 } 4054 4055 static unsigned long rk3528_vop2_if_cfg(struct display_state *state) 4056 { 4057 struct crtc_state *cstate = &state->crtc_state; 4058 struct connector_state *conn_state = &state->conn_state; 4059 struct drm_display_mode *mode = &conn_state->mode; 4060 struct vop2 *vop2 = cstate->private; 4061 u32 val; 4062 4063 val = (mode->flags & DRM_MODE_FLAG_NHSYNC) ? 0 : BIT(HSYNC_POSITIVE); 4064 val |= (mode->flags & DRM_MODE_FLAG_NVSYNC) ? 0 : BIT(VSYNC_POSITIVE); 4065 4066 if (conn_state->output_if & VOP_OUTPUT_IF_BT656) { 4067 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, BT656_EN_SHIFT, 4068 1, false); 4069 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 4070 RGB_MUX_SHIFT, cstate->crtc_id, false); 4071 } 4072 4073 if (conn_state->output_if & VOP_OUTPUT_IF_HDMI0) { 4074 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, HDMI0_EN_SHIFT, 4075 1, false); 4076 vop2_mask_write(vop2, RK3568_DSP_IF_EN, IF_MUX_MASK, 4077 HDMI0_MUX_SHIFT, cstate->crtc_id, false); 4078 vop2_mask_write(vop2, RK3568_DSP_IF_POL, EN_MASK, 4079 IF_CRTL_HDMI_DCLK_POL_SHIT, 1, false); 4080 vop2_mask_write(vop2, RK3568_DSP_IF_POL, 4081 IF_CRTL_HDMI_PIN_POL_MASK, 4082 IF_CRTL_HDMI_PIN_POL_SHIT, val, false); 4083 } 4084 4085 return mode->crtc_clock; 4086 } 4087 4088 static void vop2_post_color_swap(struct display_state *state) 4089 { 4090 struct crtc_state *cstate = &state->crtc_state; 4091 struct connector_state *conn_state = &state->conn_state; 4092 struct vop2 *vop2 = cstate->private; 4093 u32 vp_offset = (cstate->crtc_id * 0x100); 4094 u32 output_type = conn_state->type; 4095 u32 data_swap = 0; 4096 4097 if (is_uv_swap(state) || is_rb_swap(state)) 4098 data_swap = DSP_RB_SWAP; 4099 4100 if ((vop2->version == VOP_VERSION_RK3588 || vop2->version == VOP_VERSION_RK3576)) { 4101 if ((output_type == DRM_MODE_CONNECTOR_HDMIA || 4102 output_type == DRM_MODE_CONNECTOR_DisplayPort) && 4103 (conn_state->bus_format == MEDIA_BUS_FMT_YUV8_1X24 || 4104 conn_state->bus_format == MEDIA_BUS_FMT_YUV10_1X30)) 4105 data_swap |= DSP_RG_SWAP; 4106 } 4107 4108 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, 4109 DATA_SWAP_MASK, DATA_SWAP_SHIFT, data_swap, false); 4110 } 4111 4112 static void vop2_clk_set_parent(struct clk *clk, struct clk *parent) 4113 { 4114 int ret = 0; 4115 4116 if (parent->dev) 4117 ret = clk_set_parent(clk, parent); 4118 if (ret < 0) 4119 debug("failed to set %s as parent for %s\n", 4120 parent->dev->name, clk->dev->name); 4121 } 4122 4123 static ulong vop2_clk_set_rate(struct clk *clk, ulong rate) 4124 { 4125 int ret = 0; 4126 4127 if (clk->dev) 4128 ret = clk_set_rate(clk, rate); 4129 if (ret < 0) 4130 debug("failed to set %s rate %lu \n", clk->dev->name, rate); 4131 4132 return ret; 4133 } 4134 4135 static void vop2_calc_dsc_cru_cfg(struct display_state *state, 4136 int *dsc_txp_clk_div, int *dsc_pxl_clk_div, 4137 int *dsc_cds_clk_div, u64 dclk_rate) 4138 { 4139 struct crtc_state *cstate = &state->crtc_state; 4140 4141 *dsc_txp_clk_div = dclk_rate / cstate->dsc_txp_clk_rate; 4142 *dsc_pxl_clk_div = dclk_rate / cstate->dsc_pxl_clk_rate; 4143 *dsc_cds_clk_div = dclk_rate / cstate->dsc_cds_clk_rate; 4144 4145 *dsc_txp_clk_div = ilog2(*dsc_txp_clk_div); 4146 *dsc_pxl_clk_div = ilog2(*dsc_pxl_clk_div); 4147 *dsc_cds_clk_div = ilog2(*dsc_cds_clk_div); 4148 } 4149 4150 static void vop2_load_pps(struct display_state *state, struct vop2 *vop2, u8 dsc_id) 4151 { 4152 struct crtc_state *cstate = &state->crtc_state; 4153 struct drm_dsc_picture_parameter_set *pps = &cstate->pps; 4154 struct drm_dsc_picture_parameter_set config_pps; 4155 const struct vop2_data *vop2_data = vop2->data; 4156 const struct vop2_dsc_data *dsc_data = &vop2_data->dsc[dsc_id]; 4157 u32 *pps_val = (u32 *)&config_pps; 4158 u32 decoder_regs_offset = (dsc_id * 0x100); 4159 int i = 0; 4160 4161 memcpy(&config_pps, pps, sizeof(config_pps)); 4162 4163 if ((config_pps.pps_3 & 0xf) > dsc_data->max_linebuf_depth) { 4164 config_pps.pps_3 &= 0xf0; 4165 config_pps.pps_3 |= dsc_data->max_linebuf_depth; 4166 printf("DSC%d max_linebuf_depth is: %d, current set value is: %d\n", 4167 dsc_id, dsc_data->max_linebuf_depth, config_pps.pps_3 & 0xf); 4168 } 4169 4170 for (i = 0; i < DSC_NUM_BUF_RANGES; i++) { 4171 config_pps.rc_range_parameters[i] = 4172 (pps->rc_range_parameters[i] >> 3 & 0x1f) | 4173 ((pps->rc_range_parameters[i] >> 14 & 0x3) << 5) | 4174 ((pps->rc_range_parameters[i] >> 0 & 0x7) << 7) | 4175 ((pps->rc_range_parameters[i] >> 8 & 0x3f) << 10); 4176 } 4177 4178 for (i = 0; i < ROCKCHIP_DSC_PPS_SIZE_BYTE / 4; i++) 4179 vop2_writel(vop2, RK3588_DSC_8K_PPS0_3 + decoder_regs_offset + i * 4, *pps_val++); 4180 } 4181 4182 static void vop2_dsc_enable(struct display_state *state, struct vop2 *vop2, u8 dsc_id, u64 dclk_rate) 4183 { 4184 struct connector_state *conn_state = &state->conn_state; 4185 struct drm_display_mode *mode = &conn_state->mode; 4186 struct crtc_state *cstate = &state->crtc_state; 4187 struct rockchip_dsc_sink_cap *dsc_sink_cap = &cstate->dsc_sink_cap; 4188 const struct vop2_data *vop2_data = vop2->data; 4189 const struct vop2_dsc_data *dsc_data = &vop2_data->dsc[dsc_id]; 4190 bool mipi_ds_mode = false; 4191 u8 dsc_interface_mode = 0; 4192 u16 hsync_len = mode->crtc_hsync_end - mode->crtc_hsync_start; 4193 u16 hdisplay = mode->crtc_hdisplay; 4194 u16 htotal = mode->crtc_htotal; 4195 u16 hact_st = mode->crtc_htotal - mode->crtc_hsync_start; 4196 u16 vdisplay = mode->crtc_vdisplay; 4197 u16 vtotal = mode->crtc_vtotal; 4198 u16 vsync_len = mode->crtc_vsync_end - mode->crtc_vsync_start; 4199 u16 vact_st = mode->crtc_vtotal - mode->crtc_vsync_start; 4200 u16 vact_end = vact_st + vdisplay; 4201 u32 ctrl_regs_offset = (dsc_id * 0x30); 4202 u32 decoder_regs_offset = (dsc_id * 0x100); 4203 int dsc_txp_clk_div = 0; 4204 int dsc_pxl_clk_div = 0; 4205 int dsc_cds_clk_div = 0; 4206 int val = 0; 4207 4208 if (!vop2->data->nr_dscs) { 4209 printf("Unsupported DSC\n"); 4210 return; 4211 } 4212 4213 if (cstate->dsc_slice_num > dsc_data->max_slice_num) 4214 printf("DSC%d supported max slice is: %d, current is: %d\n", 4215 dsc_data->id, dsc_data->max_slice_num, cstate->dsc_slice_num); 4216 4217 if (dsc_data->pd_id) { 4218 if (vop2_power_domain_on(vop2, dsc_data->pd_id)) 4219 printf("open dsc%d pd fail\n", dsc_id); 4220 } 4221 4222 vop2_mask_write(vop2, RK3588_DSC_8K_INIT_DLY + ctrl_regs_offset, EN_MASK, 4223 SCAN_TIMING_PARA_IMD_EN_SHIFT, 1, false); 4224 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_PORT_SEL_MASK, 4225 DSC_PORT_SEL_SHIFT, cstate->crtc_id, false); 4226 if (conn_state->output_if & (VOP_OUTPUT_IF_HDMI0 | VOP_OUTPUT_IF_HDMI1)) { 4227 dsc_interface_mode = VOP_DSC_IF_HDMI; 4228 } else { 4229 mipi_ds_mode = !!(conn_state->output_flags & ROCKCHIP_OUTPUT_MIPI_DS_MODE); 4230 if (mipi_ds_mode) 4231 dsc_interface_mode = VOP_DSC_IF_MIPI_DS_MODE; 4232 else 4233 dsc_interface_mode = VOP_DSC_IF_MIPI_VIDEO_MODE; 4234 } 4235 4236 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) 4237 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_MAN_MODE_MASK, 4238 DSC_MAN_MODE_SHIFT, 0, false); 4239 else 4240 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_MAN_MODE_MASK, 4241 DSC_MAN_MODE_SHIFT, 1, false); 4242 4243 vop2_calc_dsc_cru_cfg(state, &dsc_txp_clk_div, &dsc_pxl_clk_div, &dsc_cds_clk_div, dclk_rate); 4244 4245 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_INTERFACE_MODE_MASK, 4246 DSC_INTERFACE_MODE_SHIFT, dsc_interface_mode, false); 4247 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_PIXEL_NUM_MASK, 4248 DSC_PIXEL_NUM_SHIFT, cstate->dsc_pixel_num >> 1, false); 4249 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_TXP_CLK_DIV_MASK, 4250 DSC_TXP_CLK_DIV_SHIFT, dsc_txp_clk_div, false); 4251 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_PXL_CLK_DIV_MASK, 4252 DSC_PXL_CLK_DIV_SHIFT, dsc_pxl_clk_div, false); 4253 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_CDS_CLK_DIV_MASK, 4254 DSC_CDS_CLK_DIV_SHIFT, dsc_cds_clk_div, false); 4255 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, EN_MASK, 4256 DSC_SCAN_EN_SHIFT, !mipi_ds_mode, false); 4257 vop2_mask_write(vop2, RK3588_DSC_8K_SYS_CTRL + ctrl_regs_offset, DSC_CDS_CLK_DIV_MASK, 4258 DSC_HALT_EN_SHIFT, mipi_ds_mode, false); 4259 4260 if (!mipi_ds_mode) { 4261 u16 dsc_hsync, dsc_htotal, dsc_hact_st, dsc_hact_end; 4262 u32 target_bpp = dsc_sink_cap->target_bits_per_pixel_x16; 4263 u64 dsc_cds_rate = cstate->dsc_cds_clk_rate; 4264 u32 v_pixclk_mhz = mode->crtc_clock / 1000; /* video timing pixclk */ 4265 u32 dly_num, dsc_cds_rate_mhz, val = 0; 4266 int k = 1; 4267 4268 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) 4269 k = 2; 4270 4271 if (target_bpp >> 4 < dsc_data->min_bits_per_pixel) 4272 printf("Unsupported bpp less than: %d\n", dsc_data->min_bits_per_pixel); 4273 4274 /* 4275 * dly_num = delay_line_num * T(one-line) / T (dsc_cds) 4276 * T (one-line) = 1/v_pixclk_mhz * htotal = htotal/v_pixclk_mhz 4277 * T (dsc_cds) = 1 / dsc_cds_rate_mhz 4278 * 4279 * HDMI: 4280 * delay_line_num: according the pps initial_xmit_delay to adjust vop dsc delay 4281 * delay_line_num = 4 - BPP / 8 4282 * = (64 - target_bpp / 8) / 16 4283 * dly_num = htotal * dsc_cds_rate_mhz / v_pixclk_mhz * (64 - target_bpp / 8) / 16; 4284 * 4285 * MIPI DSI[4320 and 9216 is buffer size for DSC]: 4286 * DSC0:delay_line_num = 4320 * 8 / slince_num / chunk_size; 4287 * delay_line_num = delay_line_num > 5 ? 5 : delay_line_num; 4288 * DSC1:delay_line_num = 9216 * 2 / slince_num / chunk_size; 4289 * delay_line_num = delay_line_num > 5 ? 5 : delay_line_num; 4290 * dly_num = htotal * dsc_cds_rate_mhz / v_pixclk_mhz * delay_line_num 4291 */ 4292 do_div(dsc_cds_rate, 1000000); /* hz to Mhz */ 4293 dsc_cds_rate_mhz = dsc_cds_rate; 4294 dsc_hsync = hsync_len / 2; 4295 if (dsc_interface_mode == VOP_DSC_IF_HDMI) { 4296 dly_num = htotal * dsc_cds_rate_mhz / v_pixclk_mhz * (64 - target_bpp / 8) / 16; 4297 } else { 4298 int dsc_buf_size = dsc_id == 0 ? 4320 * 8 : 9216 * 2; 4299 int delay_line_num = dsc_buf_size / cstate->dsc_slice_num / 4300 be16_to_cpu(cstate->pps.chunk_size); 4301 4302 delay_line_num = delay_line_num > 5 ? 5 : delay_line_num; 4303 dly_num = htotal * dsc_cds_rate_mhz / v_pixclk_mhz * delay_line_num; 4304 4305 /* The dsc mipi video mode dsc_hsync minimum size is 8 pixels */ 4306 if (dsc_hsync < 8) 4307 dsc_hsync = 8; 4308 } 4309 vop2_mask_write(vop2, RK3588_DSC_8K_INIT_DLY + ctrl_regs_offset, DSC_INIT_DLY_MODE_MASK, 4310 DSC_INIT_DLY_MODE_SHIFT, 0, false); 4311 vop2_mask_write(vop2, RK3588_DSC_8K_INIT_DLY + ctrl_regs_offset, DSC_INIT_DLY_NUM_MASK, 4312 DSC_INIT_DLY_NUM_SHIFT, dly_num, false); 4313 4314 /* 4315 * htotal / dclk_core = dsc_htotal /cds_clk 4316 * 4317 * dclk_core = DCLK / (1 << dclk_core->div_val) 4318 * cds_clk = txp_clk / (1 << dsc_cds_clk->div_val) 4319 * txp_clk = DCLK / (1 << dsc_txp_clk->div_val) 4320 * 4321 * dsc_htotal = htotal * (1 << dclk_core->div_val) / 4322 * ((1 << dsc_txp_clk->div_val) * (1 << dsc_cds_clk->div_val)) 4323 */ 4324 dsc_htotal = htotal * (1 << cstate->dclk_core_div) / 4325 ((1 << dsc_txp_clk_div) * (1 << dsc_cds_clk_div)); 4326 val = dsc_htotal << 16 | dsc_hsync; 4327 vop2_mask_write(vop2, RK3588_DSC_8K_HTOTAL_HS_END + ctrl_regs_offset, DSC_HTOTAL_PW_MASK, 4328 DSC_HTOTAL_PW_SHIFT, val, false); 4329 4330 dsc_hact_st = hact_st / 2; 4331 dsc_hact_end = (hdisplay / k * target_bpp >> 4) / 24 + dsc_hact_st; 4332 val = dsc_hact_end << 16 | dsc_hact_st; 4333 vop2_mask_write(vop2, RK3588_DSC_8K_HACT_ST_END + ctrl_regs_offset, DSC_HACT_ST_END_MASK, 4334 DSC_HACT_ST_END_SHIFT, val, false); 4335 4336 vop2_mask_write(vop2, RK3588_DSC_8K_VTOTAL_VS_END + ctrl_regs_offset, DSC_VTOTAL_PW_MASK, 4337 DSC_VTOTAL_PW_SHIFT, vtotal << 16 | vsync_len, false); 4338 vop2_mask_write(vop2, RK3588_DSC_8K_VACT_ST_END + ctrl_regs_offset, DSC_VACT_ST_END_MASK, 4339 DSC_VACT_ST_END_SHIFT, vact_end << 16 | vact_st, false); 4340 } 4341 4342 vop2_mask_write(vop2, RK3588_DSC_8K_RST + ctrl_regs_offset, RST_DEASSERT_MASK, 4343 RST_DEASSERT_SHIFT, 1, false); 4344 udelay(10); 4345 4346 val |= DSC_CTRL0_DEF_CON | (ilog2(cstate->dsc_slice_num) << DSC_NSLC_SHIFT) | 4347 ((dsc_sink_cap->version_minor == 2 ? 1 : 0) << DSC_IFEP_SHIFT); 4348 vop2_writel(vop2, RK3588_DSC_8K_CTRL0 + decoder_regs_offset, val); 4349 4350 vop2_load_pps(state, vop2, dsc_id); 4351 4352 val |= (1 << DSC_PPS_UPD_SHIFT); 4353 vop2_writel(vop2, RK3588_DSC_8K_CTRL0 + decoder_regs_offset, val); 4354 4355 printf("DSC%d: txp:%lld div:%d, pxl:%lld div:%d, dsc:%lld div:%d\n", 4356 dsc_id, 4357 cstate->dsc_txp_clk_rate, dsc_txp_clk_div, 4358 cstate->dsc_pxl_clk_rate, dsc_pxl_clk_div, 4359 cstate->dsc_cds_clk_rate, dsc_cds_clk_div); 4360 } 4361 4362 static bool is_extend_pll(struct display_state *state, struct udevice **clk_dev) 4363 { 4364 struct crtc_state *cstate = &state->crtc_state; 4365 struct vop2 *vop2 = cstate->private; 4366 struct udevice *vp_dev, *dev; 4367 struct ofnode_phandle_args args; 4368 char vp_name[10]; 4369 int ret; 4370 4371 if (vop2->version != VOP_VERSION_RK3588 && vop2->version != VOP_VERSION_RK3576) 4372 return false; 4373 4374 sprintf(vp_name, "port@%d", cstate->crtc_id); 4375 if (uclass_find_device_by_name(UCLASS_VIDEO_CRTC, vp_name, &vp_dev)) { 4376 debug("warn: can't get vp device\n"); 4377 return false; 4378 } 4379 4380 ret = dev_read_phandle_with_args(vp_dev, "assigned-clock-parents", "#clock-cells", 0, 4381 0, &args); 4382 if (ret) { 4383 debug("assigned-clock-parents's node not define\n"); 4384 return false; 4385 } 4386 4387 if (uclass_find_device_by_ofnode(UCLASS_CLK, args.node, &dev)) { 4388 debug("warn: can't get clk device\n"); 4389 return false; 4390 } 4391 4392 if (!strcmp(dev->name, "hdmiphypll_clk0") || !strcmp(dev->name, "hdmiphypll_clk1")) { 4393 printf("%s: clk dev :%s: vp port:%s\n", __func__, dev->name, vp_dev->name); 4394 if (clk_dev) 4395 *clk_dev = dev; 4396 return true; 4397 } 4398 4399 return false; 4400 } 4401 4402 static void vop3_mcu_mode_setup(struct display_state *state) 4403 { 4404 struct crtc_state *cstate = &state->crtc_state; 4405 struct vop2 *vop2 = cstate->private; 4406 u32 vp_offset = (cstate->crtc_id * 0x100); 4407 4408 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 4409 MCU_TYPE_SHIFT, 1, false); 4410 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 4411 MCU_HOLD_MODE_SHIFT, 1, false); 4412 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_PIX_TOTAL_MASK, 4413 MCU_PIX_TOTAL_SHIFT, cstate->mcu_timing.mcu_pix_total, false); 4414 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_CS_PST_MASK, 4415 MCU_CS_PST_SHIFT, cstate->mcu_timing.mcu_cs_pst, false); 4416 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_CS_PEND_MASK, 4417 MCU_CS_PEND_SHIFT, cstate->mcu_timing.mcu_cs_pend, false); 4418 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_RW_PST_MASK, 4419 MCU_RW_PST_SHIFT, cstate->mcu_timing.mcu_rw_pst, false); 4420 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_RW_PEND_MASK, 4421 MCU_RW_PEND_SHIFT, cstate->mcu_timing.mcu_rw_pend, false); 4422 } 4423 4424 static void vop3_mcu_bypass_mode_setup(struct display_state *state) 4425 { 4426 struct crtc_state *cstate = &state->crtc_state; 4427 struct vop2 *vop2 = cstate->private; 4428 u32 vp_offset = (cstate->crtc_id * 0x100); 4429 4430 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 4431 MCU_TYPE_SHIFT, 1, false); 4432 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 4433 MCU_HOLD_MODE_SHIFT, 1, false); 4434 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_PIX_TOTAL_MASK, 4435 MCU_PIX_TOTAL_SHIFT, 53, false); 4436 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_CS_PST_MASK, 4437 MCU_CS_PST_SHIFT, 6, false); 4438 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_CS_PEND_MASK, 4439 MCU_CS_PEND_SHIFT, 48, false); 4440 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_RW_PST_MASK, 4441 MCU_RW_PST_SHIFT, 12, false); 4442 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, MCU_RW_PEND_MASK, 4443 MCU_RW_PEND_SHIFT, 30, false); 4444 } 4445 4446 static int rockchip_vop2_send_mcu_cmd(struct display_state *state, u32 type, u32 value) 4447 { 4448 struct crtc_state *cstate = &state->crtc_state; 4449 struct connector_state *conn_state = &state->conn_state; 4450 struct drm_display_mode *mode = &conn_state->mode; 4451 struct vop2 *vop2 = cstate->private; 4452 u32 vp_offset = (cstate->crtc_id * 0x100); 4453 4454 /* 4455 * 1.set mcu bypass mode timing. 4456 * 2.set dclk rate to 150M. 4457 */ 4458 if (type == MCU_SETBYPASS && value) { 4459 vop3_mcu_bypass_mode_setup(state); 4460 vop2_clk_set_rate(&cstate->dclk, 150000000); 4461 } 4462 4463 switch (type) { 4464 case MCU_WRCMD: 4465 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 4466 MCU_RS_SHIFT, 0, false); 4467 vop2_mask_write(vop2, RK3562_VP0_MCU_RW_BYPASS_PORT + vp_offset, 4468 MCU_WRITE_DATA_BYPASS_MASK, MCU_WRITE_DATA_BYPASS_SHIFT, 4469 value, false); 4470 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 4471 MCU_RS_SHIFT, 1, false); 4472 break; 4473 case MCU_WRDATA: 4474 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 4475 MCU_RS_SHIFT, 1, false); 4476 vop2_mask_write(vop2, RK3562_VP0_MCU_RW_BYPASS_PORT + vp_offset, 4477 MCU_WRITE_DATA_BYPASS_MASK, MCU_WRITE_DATA_BYPASS_SHIFT, 4478 value, false); 4479 break; 4480 case MCU_SETBYPASS: 4481 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 4482 MCU_BYPASS_SHIFT, value ? 1 : 0, false); 4483 break; 4484 default: 4485 break; 4486 } 4487 4488 /* 4489 * 1.restore mcu data mode timing. 4490 * 2.restore dclk rate to crtc_clock. 4491 */ 4492 if (type == MCU_SETBYPASS && !value) { 4493 vop3_mcu_mode_setup(state); 4494 vop2_clk_set_rate(&cstate->dclk, mode->crtc_clock * 1000); 4495 } 4496 4497 return 0; 4498 } 4499 4500 static void vop2_dither_setup(struct vop2 *vop2, int bus_format, int crtc_id) 4501 { 4502 const struct vop2_data *vop2_data = vop2->data; 4503 const struct vop2_vp_data *vp_data = &vop2_data->vp_data[crtc_id]; 4504 u32 vp_offset = crtc_id * 0x100; 4505 bool pre_dither_down_en = false; 4506 4507 switch (bus_format) { 4508 case MEDIA_BUS_FMT_RGB565_1X16: 4509 case MEDIA_BUS_FMT_RGB565_2X8_LE: 4510 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4511 PRE_DITHER_DOWN_EN_SHIFT, true, false); 4512 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4513 DITHER_DOWN_MODE_SHIFT, RGB888_TO_RGB565, false); 4514 pre_dither_down_en = true; 4515 break; 4516 case MEDIA_BUS_FMT_RGB666_1X18: 4517 case MEDIA_BUS_FMT_RGB666_1X24_CPADHI: 4518 case MEDIA_BUS_FMT_RGB666_1X7X3_SPWG: 4519 case MEDIA_BUS_FMT_RGB666_3X6: 4520 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4521 PRE_DITHER_DOWN_EN_SHIFT, true, false); 4522 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4523 DITHER_DOWN_MODE_SHIFT, RGB888_TO_RGB666, false); 4524 pre_dither_down_en = true; 4525 break; 4526 case MEDIA_BUS_FMT_YUYV8_1X16: 4527 case MEDIA_BUS_FMT_YUV8_1X24: 4528 case MEDIA_BUS_FMT_UYYVYY8_0_5X24: 4529 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4530 PRE_DITHER_DOWN_EN_SHIFT, false, false); 4531 pre_dither_down_en = true; 4532 break; 4533 case MEDIA_BUS_FMT_YUYV10_1X20: 4534 case MEDIA_BUS_FMT_YUV10_1X30: 4535 case MEDIA_BUS_FMT_UYYVYY10_0_5X30: 4536 case MEDIA_BUS_FMT_RGB101010_1X30: 4537 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4538 PRE_DITHER_DOWN_EN_SHIFT, false, false); 4539 pre_dither_down_en = false; 4540 break; 4541 case MEDIA_BUS_FMT_RGB888_3X8: 4542 case MEDIA_BUS_FMT_RGB888_DUMMY_4X8: 4543 case MEDIA_BUS_FMT_RGB888_1X24: 4544 case MEDIA_BUS_FMT_RGB888_1X7X4_SPWG: 4545 case MEDIA_BUS_FMT_RGB888_1X7X4_JEIDA: 4546 default: 4547 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4548 PRE_DITHER_DOWN_EN_SHIFT, false, false); 4549 pre_dither_down_en = true; 4550 break; 4551 } 4552 4553 if (is_yuv_output(bus_format) && (vp_data->feature & VOP_FEATURE_POST_FRC_V2) == 0) 4554 pre_dither_down_en = false; 4555 4556 if ((vp_data->feature & VOP_FEATURE_POST_FRC_V2) && pre_dither_down_en) { 4557 if (vop2->version == VOP_VERSION_RK3576) { 4558 vop2_writel(vop2, RK3576_VP0_POST_DITHER_FRC_0 + vp_offset, 0x00000000); 4559 vop2_writel(vop2, RK3576_VP0_POST_DITHER_FRC_1 + vp_offset, 0x01000100); 4560 vop2_writel(vop2, RK3576_VP0_POST_DITHER_FRC_2 + vp_offset, 0x04030100); 4561 } 4562 4563 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4564 PRE_DITHER_DOWN_EN_SHIFT, 0, false); 4565 /* enable frc2.0 do 10->8 */ 4566 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4567 DITHER_DOWN_EN_SHIFT, 1, false); 4568 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, DITHER_DOWN_SEL_MASK, 4569 DITHER_DOWN_SEL_SHIFT, DITHER_DOWN_FRC, false); 4570 } else { 4571 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4572 PRE_DITHER_DOWN_EN_SHIFT, pre_dither_down_en, false); 4573 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, DITHER_DOWN_SEL_MASK, 4574 DITHER_DOWN_SEL_SHIFT, DITHER_DOWN_ALLEGRO, false); 4575 } 4576 } 4577 4578 static int rockchip_vop2_init(struct display_state *state) 4579 { 4580 struct crtc_state *cstate = &state->crtc_state; 4581 struct rockchip_vp *vp = &cstate->crtc->vps[cstate->crtc_id]; 4582 struct connector_state *conn_state = &state->conn_state; 4583 struct drm_display_mode *mode = &conn_state->mode; 4584 struct vop2 *vop2 = cstate->private; 4585 u16 hsync_len = mode->crtc_hsync_end - mode->crtc_hsync_start; 4586 u16 hdisplay = mode->crtc_hdisplay; 4587 u16 htotal = mode->crtc_htotal; 4588 u16 hact_st = mode->crtc_htotal - mode->crtc_hsync_start; 4589 u16 hact_end = hact_st + hdisplay; 4590 u16 vdisplay = mode->crtc_vdisplay; 4591 u16 vtotal = mode->crtc_vtotal; 4592 u16 vsync_len = mode->crtc_vsync_end - mode->crtc_vsync_start; 4593 u16 vact_st = mode->crtc_vtotal - mode->crtc_vsync_start; 4594 u16 vact_end = vact_st + vdisplay; 4595 bool yuv_overlay = false; 4596 u32 vp_offset = (cstate->crtc_id * 0x100); 4597 u32 line_flag_offset = (cstate->crtc_id * 4); 4598 u32 val, act_end; 4599 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 4600 u8 dclk_div_factor = 0; 4601 u8 vp_dclk_div = 1; 4602 char output_type_name[30] = {0}; 4603 #ifndef CONFIG_SPL_BUILD 4604 char dclk_name[9]; 4605 #endif 4606 struct clk hdmi0_phy_pll; 4607 struct clk hdmi1_phy_pll; 4608 struct clk hdmi_phy_pll; 4609 struct udevice *disp_dev; 4610 unsigned long dclk_rate = 0; 4611 int ret; 4612 4613 printf("VOP update mode to: %dx%d%s%d, type:%s for VP%d\n", 4614 mode->crtc_hdisplay, mode->vdisplay, 4615 mode->flags & DRM_MODE_FLAG_INTERLACE ? "i" : "p", 4616 mode->vrefresh, 4617 rockchip_get_output_if_name(conn_state->output_if, output_type_name), 4618 cstate->crtc_id); 4619 4620 if (mode->hdisplay > VOP2_MAX_VP_OUTPUT_WIDTH) { 4621 cstate->splice_mode = true; 4622 cstate->splice_crtc_id = vop2->data->vp_data[cstate->crtc_id].splice_vp_id; 4623 if (!cstate->splice_crtc_id) { 4624 printf("%s: Splice mode is unsupported by vp%d\n", 4625 __func__, cstate->crtc_id); 4626 return -EINVAL; 4627 } 4628 4629 vop2_mask_write(vop2, RK3568_SYS_LUT_PORT_SEL, EN_MASK, 4630 PORT_MERGE_EN_SHIFT, 1, false); 4631 } 4632 4633 vop2_mask_write(vop2, RK3588_SYS_VAR_FREQ_CTRL, EN_MASK, 4634 RK3588_VP0_LINE_FLAG_OR_EN_SHIFT + cstate->crtc_id, 1, false); 4635 vop2_mask_write(vop2, RK3588_SYS_VAR_FREQ_CTRL, EN_MASK, 4636 RK3588_VP0_ALMOST_FULL_OR_EN_SHIFT + cstate->crtc_id, 1, false); 4637 4638 if (vop2->data->vp_data[cstate->crtc_id].urgency) { 4639 u8 urgen_thl = vop2->data->vp_data[cstate->crtc_id].urgency->urgen_thl; 4640 u8 urgen_thh = vop2->data->vp_data[cstate->crtc_id].urgency->urgen_thh; 4641 4642 vop2_mask_write(vop2, RK3576_SYS_AXI_HURRY_CTRL0_IMD, EN_MASK, 4643 AXI0_PORT_URGENCY_EN_SHIFT + cstate->crtc_id, 1, false); 4644 vop2_mask_write(vop2, RK3576_SYS_AXI_HURRY_CTRL1_IMD, EN_MASK, 4645 AXI1_PORT_URGENCY_EN_SHIFT + cstate->crtc_id, 1, false); 4646 vop2_mask_write(vop2, RK3568_VP0_COLOR_BAR_CTRL + vp_offset, EN_MASK, 4647 POST_URGENCY_EN_SHIFT, 1, false); 4648 vop2_mask_write(vop2, RK3568_VP0_COLOR_BAR_CTRL + vp_offset, POST_URGENCY_THL_MASK, 4649 POST_URGENCY_THL_SHIFT, urgen_thl, false); 4650 vop2_mask_write(vop2, RK3568_VP0_COLOR_BAR_CTRL + vp_offset, POST_URGENCY_THH_MASK, 4651 POST_URGENCY_THH_SHIFT, urgen_thh, false); 4652 } 4653 4654 vop2_initial(vop2, state); 4655 if (vop2->version == VOP_VERSION_RK3588) 4656 dclk_rate = rk3588_vop2_if_cfg(state); 4657 else if (vop2->version == VOP_VERSION_RK3576) 4658 dclk_rate = rk3576_vop2_if_cfg(state); 4659 else if (vop2->version == VOP_VERSION_RK3568) 4660 dclk_rate = rk3568_vop2_if_cfg(state); 4661 else if (vop2->version == VOP_VERSION_RK3562) 4662 dclk_rate = rk3562_vop2_if_cfg(state); 4663 else if (vop2->version == VOP_VERSION_RK3528) 4664 dclk_rate = rk3528_vop2_if_cfg(state); 4665 4666 if ((conn_state->output_mode == ROCKCHIP_OUT_MODE_AAAA && 4667 !(cstate->feature & VOP_FEATURE_OUTPUT_10BIT)) || 4668 conn_state->output_if & VOP_OUTPUT_IF_BT656) 4669 conn_state->output_mode = ROCKCHIP_OUT_MODE_P888; 4670 4671 if (conn_state->output_mode == ROCKCHIP_OUT_MODE_YUV420) { 4672 if (vop2->version == VOP_VERSION_RK3588 && 4673 conn_state->type == DRM_MODE_CONNECTOR_DisplayPort) 4674 conn_state->output_mode = RK3588_DP_OUT_MODE_YUV420; 4675 } else if (conn_state->output_mode == ROCKCHIP_OUT_MODE_YUV422) { 4676 if (vop2->version == VOP_VERSION_RK3576 && 4677 conn_state->type == DRM_MODE_CONNECTOR_eDP) 4678 conn_state->output_mode = RK3576_EDP_OUT_MODE_YUV422; 4679 else if (vop2->version == VOP_VERSION_RK3588 && 4680 conn_state->type == DRM_MODE_CONNECTOR_eDP) 4681 conn_state->output_mode = RK3588_EDP_OUTPUT_MODE_YUV422; 4682 else if (vop2->version == VOP_VERSION_RK3576 && 4683 conn_state->type == DRM_MODE_CONNECTOR_HDMIA) 4684 conn_state->output_mode = RK3576_HDMI_OUT_MODE_YUV422; 4685 else if (conn_state->type == DRM_MODE_CONNECTOR_DisplayPort) 4686 conn_state->output_mode = RK3588_DP_OUT_MODE_YUV422; 4687 } 4688 4689 vop2_post_color_swap(state); 4690 4691 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, OUT_MODE_MASK, 4692 OUT_MODE_SHIFT, conn_state->output_mode, false); 4693 4694 vop2_dither_setup(vop2, conn_state->bus_format, cstate->crtc_id); 4695 if (cstate->splice_mode) 4696 vop2_dither_setup(vop2, conn_state->bus_format, cstate->splice_crtc_id); 4697 4698 yuv_overlay = is_yuv_output(conn_state->bus_format) ? 1 : 0; 4699 vop2_mask_write(vop2, RK3568_OVL_CTRL, EN_MASK, cstate->crtc_id, 4700 yuv_overlay, false); 4701 4702 cstate->yuv_overlay = yuv_overlay; 4703 4704 vop2_writel(vop2, RK3568_VP0_DSP_HTOTAL_HS_END + vp_offset, 4705 (htotal << 16) | hsync_len); 4706 val = hact_st << 16; 4707 val |= hact_end; 4708 vop2_writel(vop2, RK3568_VP0_DSP_HACT_ST_END + vp_offset, val); 4709 val = vact_st << 16; 4710 val |= vact_end; 4711 vop2_writel(vop2, RK3568_VP0_DSP_VACT_ST_END + vp_offset, val); 4712 if (mode->flags & DRM_MODE_FLAG_INTERLACE) { 4713 u16 vact_st_f1 = vtotal + vact_st + 1; 4714 u16 vact_end_f1 = vact_st_f1 + vdisplay; 4715 4716 val = vact_st_f1 << 16 | vact_end_f1; 4717 vop2_writel(vop2, RK3568_VP0_DSP_VACT_ST_END_F1 + vp_offset, 4718 val); 4719 4720 val = vtotal << 16 | (vtotal + vsync_len); 4721 vop2_writel(vop2, RK3568_VP0_DSP_VS_ST_END_F1 + vp_offset, val); 4722 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4723 INTERLACE_EN_SHIFT, 1, false); 4724 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4725 DSP_FILED_POL, 1, false); 4726 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4727 P2I_EN_SHIFT, 1, false); 4728 vtotal += vtotal + 1; 4729 act_end = vact_end_f1; 4730 } else { 4731 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4732 INTERLACE_EN_SHIFT, 0, false); 4733 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4734 P2I_EN_SHIFT, 0, false); 4735 act_end = vact_end; 4736 } 4737 vop2_writel(vop2, RK3568_VP0_DSP_VTOTAL_VS_END + vp_offset, 4738 (vtotal << 16) | vsync_len); 4739 4740 if (vop2->version == VOP_VERSION_RK3528 || 4741 vop2->version == VOP_VERSION_RK3562 || 4742 vop2->version == VOP_VERSION_RK3568) { 4743 if (mode->flags & DRM_MODE_FLAG_DBLCLK || 4744 conn_state->output_if & VOP_OUTPUT_IF_BT656) 4745 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4746 CORE_DCLK_DIV_EN_SHIFT, 1, false); 4747 else 4748 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4749 CORE_DCLK_DIV_EN_SHIFT, 0, false); 4750 4751 if (conn_state->output_mode == ROCKCHIP_OUT_MODE_YUV420) 4752 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 4753 DCLK_DIV2_MASK, DCLK_DIV2_SHIFT, 0x3, false); 4754 else 4755 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 4756 DCLK_DIV2_MASK, DCLK_DIV2_SHIFT, 0, false); 4757 } 4758 4759 vop2_mask_write(vop2, RK3568_OVL_CTRL, OVL_MODE_SEL_MASK, 4760 OVL_MODE_SEL_SHIFT + cstate->crtc_id, yuv_overlay, false); 4761 4762 if (yuv_overlay) 4763 val = 0x20010200; 4764 else 4765 val = 0; 4766 vop2_writel(vop2, RK3568_VP0_DSP_BG + vp_offset, val); 4767 if (cstate->splice_mode) { 4768 vop2_mask_write(vop2, RK3568_OVL_CTRL, OVL_MODE_SEL_MASK, 4769 OVL_MODE_SEL_SHIFT + cstate->splice_crtc_id, 4770 yuv_overlay, false); 4771 vop2_writel(vop2, RK3568_VP0_DSP_BG + (cstate->splice_crtc_id * 0x100), val); 4772 } 4773 4774 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4775 POST_DSP_OUT_R2Y_SHIFT, yuv_overlay, false); 4776 4777 if (vp->xmirror_en) 4778 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4779 DSP_X_MIR_EN_SHIFT, 1, false); 4780 4781 vop2_tv_config_update(state, vop2); 4782 vop2_post_config(state, vop2); 4783 if (cstate->feature & (VOP_FEATURE_POST_ACM | VOP_FEATURE_POST_CSC)) 4784 vop3_post_config(state, vop2); 4785 4786 if (cstate->dsc_enable) { 4787 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) { 4788 vop2_dsc_enable(state, vop2, 0, dclk_rate * 1000LL); 4789 vop2_dsc_enable(state, vop2, 1, dclk_rate * 1000LL); 4790 } else { 4791 vop2_dsc_enable(state, vop2, cstate->dsc_id, dclk_rate * 1000LL); 4792 } 4793 } 4794 4795 #ifndef CONFIG_SPL_BUILD 4796 snprintf(dclk_name, sizeof(dclk_name), "dclk_vp%d", cstate->crtc_id); 4797 ret = clk_get_by_name(cstate->dev, dclk_name, &cstate->dclk); 4798 if (ret) { 4799 printf("%s: Failed to get dclk ret=%d\n", __func__, ret); 4800 return ret; 4801 } 4802 #endif 4803 4804 ret = uclass_get_device_by_name(UCLASS_VIDEO, "display-subsystem", &disp_dev); 4805 if (!ret) { 4806 ret = clk_get_by_name(disp_dev, "hdmi0_phy_pll", &hdmi0_phy_pll); 4807 if (ret) 4808 debug("%s: hdmi0_phy_pll may not define\n", __func__); 4809 ret = clk_get_by_name(disp_dev, "hdmi1_phy_pll", &hdmi1_phy_pll); 4810 if (ret) 4811 debug("%s: hdmi1_phy_pll may not define\n", __func__); 4812 } else { 4813 hdmi0_phy_pll.dev = NULL; 4814 hdmi1_phy_pll.dev = NULL; 4815 debug("%s: Faile to find display-subsystem node\n", __func__); 4816 } 4817 4818 if (vop2->version == VOP_VERSION_RK3528) { 4819 struct ofnode_phandle_args args; 4820 4821 ret = dev_read_phandle_with_args(cstate->dev, "assigned-clock-parents", 4822 "#clock-cells", 0, 0, &args); 4823 if (!ret) { 4824 ret = uclass_find_device_by_ofnode(UCLASS_CLK, args.node, &hdmi0_phy_pll.dev); 4825 if (ret) { 4826 debug("warn: can't get clk device\n"); 4827 return ret; 4828 } 4829 } else { 4830 debug("assigned-clock-parents's node not define\n"); 4831 } 4832 } 4833 4834 if (vop2->version == VOP_VERSION_RK3576) 4835 vp_dclk_div = cstate->crtc->vps[cstate->crtc_id].dclk_div; 4836 4837 if (mode->crtc_clock < VOP2_MAX_DCLK_RATE) { 4838 if (conn_state->output_if & VOP_OUTPUT_IF_HDMI0) 4839 vop2_clk_set_parent(&cstate->dclk, &hdmi0_phy_pll); 4840 else if (conn_state->output_if & VOP_OUTPUT_IF_HDMI1) 4841 vop2_clk_set_parent(&cstate->dclk, &hdmi1_phy_pll); 4842 4843 /* 4844 * uboot clk driver won't set dclk parent's rate when use 4845 * hdmi phypll as dclk source. 4846 * So set dclk rate is meaningless. Set hdmi phypll rate 4847 * directly. 4848 */ 4849 if ((conn_state->output_if & VOP_OUTPUT_IF_HDMI0) && hdmi0_phy_pll.dev) { 4850 ret = vop2_clk_set_rate(&hdmi0_phy_pll, dclk_rate / vp_dclk_div * 1000); 4851 } else if ((conn_state->output_if & VOP_OUTPUT_IF_HDMI1) && hdmi1_phy_pll.dev) { 4852 ret = vop2_clk_set_rate(&hdmi1_phy_pll, dclk_rate / vp_dclk_div * 1000); 4853 } else { 4854 if (is_extend_pll(state, &hdmi_phy_pll.dev)) { 4855 ret = vop2_clk_set_rate(&hdmi_phy_pll, 4856 dclk_rate / vp_dclk_div * 1000); 4857 } else { 4858 #ifndef CONFIG_SPL_BUILD 4859 ret = vop2_clk_set_rate(&cstate->dclk, 4860 dclk_rate / vp_dclk_div * 1000); 4861 #else 4862 if (vop2->version == VOP_VERSION_RK3528) { 4863 void *cru_base = (void *)RK3528_CRU_BASE; 4864 4865 /* dclk src switch to hdmiphy pll */ 4866 writel((BIT(0) << 16) | BIT(0), cru_base + 0x450); 4867 rockchip_phy_set_pll(conn_state->connector->phy, dclk_rate * 1000); 4868 ret = dclk_rate * 1000; 4869 } 4870 #endif 4871 } 4872 } 4873 } else { 4874 if (is_extend_pll(state, &hdmi_phy_pll.dev)) 4875 ret = vop2_clk_set_rate(&hdmi_phy_pll, dclk_rate / vp_dclk_div * 1000); 4876 else 4877 ret = vop2_clk_set_rate(&cstate->dclk, dclk_rate / vp_dclk_div * 1000); 4878 } 4879 4880 if (IS_ERR_VALUE(ret)) { 4881 printf("%s: Failed to set vp%d dclk[%ld KHZ] ret=%d\n", 4882 __func__, cstate->crtc_id, dclk_rate, ret); 4883 return ret; 4884 } else { 4885 if (cstate->mcu_timing.mcu_pix_total) { 4886 mode->crtc_clock = roundup(ret, 1000) / 1000; 4887 } else { 4888 dclk_div_factor = mode->crtc_clock / dclk_rate; 4889 mode->crtc_clock = roundup(ret, 1000) * dclk_div_factor / 1000; 4890 } 4891 printf("VP%d set crtc_clock to %dKHz\n", cstate->crtc_id, mode->crtc_clock); 4892 } 4893 4894 vop2_mask_write(vop2, RK3568_SYS_CTRL_LINE_FLAG0 + line_flag_offset, LINE_FLAG_NUM_MASK, 4895 RK3568_DSP_LINE_FLAG_NUM0_SHIFT, act_end, false); 4896 vop2_mask_write(vop2, RK3568_SYS_CTRL_LINE_FLAG0 + line_flag_offset, LINE_FLAG_NUM_MASK, 4897 RK3568_DSP_LINE_FLAG_NUM1_SHIFT, act_end, false); 4898 4899 if (cstate->mcu_timing.mcu_pix_total) { 4900 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 4901 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 4902 STANDBY_EN_SHIFT, 0, false); 4903 vop3_mcu_mode_setup(state); 4904 } 4905 4906 return 0; 4907 } 4908 4909 static void vop2_setup_scale(struct vop2 *vop2, struct vop2_win_data *win, 4910 uint32_t src_w, uint32_t src_h, uint32_t dst_w, 4911 uint32_t dst_h) 4912 { 4913 uint16_t yrgb_hor_scl_mode, yrgb_ver_scl_mode; 4914 uint16_t hscl_filter_mode, vscl_filter_mode; 4915 uint8_t xgt2 = 0, xgt4 = 0; 4916 uint8_t ygt2 = 0, ygt4 = 0; 4917 uint32_t xfac = 0, yfac = 0; 4918 u32 win_offset = win->reg_offset; 4919 bool xgt_en = false; 4920 bool xavg_en = false; 4921 4922 if (is_vop3(vop2)) { 4923 if (vop2->version == VOP_VERSION_RK3576 && win->type == CLUSTER_LAYER) { 4924 if (src_w >= (8 * dst_w)) { 4925 xgt4 = 1; 4926 src_w >>= 2; 4927 } else if (src_w >= (4 * dst_w)) { 4928 xgt2 = 1; 4929 src_w >>= 1; 4930 } 4931 } else { 4932 if (src_w >= (4 * dst_w)) { 4933 xgt4 = 1; 4934 src_w >>= 2; 4935 } else if (src_w >= (2 * dst_w)) { 4936 xgt2 = 1; 4937 src_w >>= 1; 4938 } 4939 } 4940 } 4941 4942 /** 4943 * The rk3528 is processed as 2 pixel/cycle, 4944 * so ygt2/ygt4 needs to be triggered in advance to improve performance 4945 * when src_w is bigger than 1920. 4946 * dst_h / src_h is at [1, 0.65) ygt2=0; ygt4=0; 4947 * dst_h / src_h is at [0.65, 0.35) ygt2=1; ygt4=0; 4948 * dst_h / src_h is at [0.35, 0) ygt2=0; ygt4=1; 4949 */ 4950 if (vop2->version == VOP_VERSION_RK3528 && src_w > 1920) { 4951 if (src_h >= (100 * dst_h / 35)) { 4952 ygt4 = 1; 4953 src_h >>= 2; 4954 } else if ((src_h >= 100 * dst_h / 65) && (src_h < 100 * dst_h / 35)) { 4955 ygt2 = 1; 4956 src_h >>= 1; 4957 } 4958 } else { 4959 if (win->vsd_filter_mode == VOP2_SCALE_DOWN_ZME) { 4960 if (src_h >= (8 * dst_h)) { 4961 ygt4 = 1; 4962 src_h >>= 2; 4963 } else if (src_h >= (4 * dst_h)) { 4964 ygt2 = 1; 4965 src_h >>= 1; 4966 } 4967 } else { 4968 if (src_h >= (4 * dst_h)) { 4969 ygt4 = 1; 4970 src_h >>= 2; 4971 } else if (src_h >= (2 * dst_h)) { 4972 ygt2 = 1; 4973 src_h >>= 1; 4974 } 4975 } 4976 } 4977 4978 yrgb_hor_scl_mode = scl_get_scl_mode(src_w, dst_w); 4979 yrgb_ver_scl_mode = scl_get_scl_mode(src_h, dst_h); 4980 4981 if (yrgb_hor_scl_mode == SCALE_UP) 4982 hscl_filter_mode = win->hsu_filter_mode; 4983 else 4984 hscl_filter_mode = win->hsd_filter_mode; 4985 4986 if (yrgb_ver_scl_mode == SCALE_UP) 4987 vscl_filter_mode = win->vsu_filter_mode; 4988 else 4989 vscl_filter_mode = win->vsd_filter_mode; 4990 4991 /* 4992 * RK3568 VOP Esmart/Smart dsp_w should be even pixel 4993 * at scale down mode 4994 */ 4995 if ((yrgb_hor_scl_mode == SCALE_DOWN) && (dst_w & 0x1) && !is_vop3(vop2)) { 4996 printf("win dst_w[%d] should align as 2 pixel\n", dst_w); 4997 dst_w += 1; 4998 } 4999 5000 if (is_vop3(vop2)) { 5001 xfac = vop3_scale_factor(yrgb_hor_scl_mode, src_w, dst_w, true); 5002 yfac = vop3_scale_factor(yrgb_ver_scl_mode, src_h, dst_h, false); 5003 5004 if (win->hsd_pre_filter_mode == VOP3_PRE_SCALE_DOWN_AVG) 5005 xavg_en = xgt2 || xgt4; 5006 else 5007 xgt_en = xgt2 || xgt4; 5008 5009 if (vop2->version == VOP_VERSION_RK3576) { 5010 bool zme_dering_en = false; 5011 5012 if ((yrgb_hor_scl_mode == SCALE_UP && 5013 hscl_filter_mode == VOP2_SCALE_UP_ZME) || 5014 (yrgb_ver_scl_mode == SCALE_UP && 5015 vscl_filter_mode == VOP2_SCALE_UP_ZME)) 5016 zme_dering_en = true; 5017 5018 /* Recommended configuration from the algorithm */ 5019 vop2_writel(vop2, RK3576_CLUSTER0_WIN0_ZME_DERING_PARA + win_offset, 5020 0x04100d10); 5021 vop2_mask_write(vop2, RK3576_CLUSTER0_WIN0_ZME_CTRL + win_offset, 5022 EN_MASK, WIN0_ZME_DERING_EN_SHIFT, zme_dering_en, false); 5023 } 5024 } else { 5025 xfac = vop2_scale_factor(yrgb_hor_scl_mode, hscl_filter_mode, src_w, dst_w); 5026 yfac = vop2_scale_factor(yrgb_ver_scl_mode, vscl_filter_mode, src_h, dst_h); 5027 } 5028 5029 if (win->type == CLUSTER_LAYER) { 5030 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_SCL_FACTOR_YRGB + win_offset, 5031 yfac << 16 | xfac); 5032 5033 if (is_vop3(vop2)) { 5034 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5035 EN_MASK, CLUSTER_XGT_EN_SHIFT, xgt_en, false); 5036 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5037 EN_MASK, CLUSTER_XAVG_EN_SHIFT, xavg_en, false); 5038 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5039 XGT_MODE_MASK, CLUSTER_XGT_MODE_SHIFT, xgt2 ? 0 : 1, false); 5040 5041 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5042 YRGB_XSCL_MODE_MASK, RK3528_CLUSTER_YRGB_XSCL_MODE_SHIFT, 5043 yrgb_hor_scl_mode, false); 5044 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5045 YRGB_YSCL_MODE_MASK, RK3528_CLUSTER_YRGB_YSCL_MODE_SHIFT, 5046 yrgb_ver_scl_mode, false); 5047 } else { 5048 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5049 YRGB_XSCL_MODE_MASK, RK3568_CLUSTER_YRGB_XSCL_MODE_SHIFT, 5050 yrgb_hor_scl_mode, false); 5051 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5052 YRGB_YSCL_MODE_MASK, RK3568_CLUSTER_YRGB_YSCL_MODE_SHIFT, 5053 yrgb_ver_scl_mode, false); 5054 } 5055 5056 if (!is_vop3(vop2) || win->vsd_pre_filter_mode == VOP3_PRE_SCALE_DOWN_GT) { 5057 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5058 YRGB_GT2_MASK, CLUSTER_YRGB_GT2_SHIFT, ygt2, false); 5059 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5060 YRGB_GT4_MASK, CLUSTER_YRGB_GT4_SHIFT, ygt4, false); 5061 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5062 AVG2_MASK, CLUSTER_AVG2_SHIFT, 0, false); 5063 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5064 AVG4_MASK, CLUSTER_AVG4_SHIFT, 0, false); 5065 } else { 5066 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5067 YRGB_GT2_MASK, CLUSTER_YRGB_GT2_SHIFT, 0, false); 5068 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5069 YRGB_GT4_MASK, CLUSTER_YRGB_GT4_SHIFT, 0, false); 5070 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5071 AVG2_MASK, CLUSTER_AVG2_SHIFT, ygt2, false); 5072 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL1 + win_offset, 5073 AVG4_MASK, CLUSTER_AVG4_SHIFT, ygt4, false); 5074 } 5075 } else { 5076 vop2_writel(vop2, RK3568_ESMART0_REGION0_SCL_FACTOR_YRGB + win_offset, 5077 yfac << 16 | xfac); 5078 5079 if (is_vop3(vop2)) { 5080 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 5081 EN_MASK, ESMART_XGT_EN_SHIFT, xgt_en, false); 5082 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 5083 EN_MASK, ESMART_XAVG_EN_SHIFT, xavg_en, false); 5084 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 5085 XGT_MODE_MASK, ESMART_XGT_MODE_SHIFT, xgt2 ? 0 : 1, false); 5086 } 5087 5088 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 5089 YRGB_GT2_MASK, YRGB_GT2_SHIFT, ygt2, false); 5090 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 5091 YRGB_GT4_MASK, YRGB_GT4_SHIFT, ygt4, false); 5092 5093 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_SCL_CTRL + win_offset, 5094 YRGB_XSCL_MODE_MASK, YRGB_XSCL_MODE_SHIFT, yrgb_hor_scl_mode, false); 5095 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_SCL_CTRL + win_offset, 5096 YRGB_YSCL_MODE_MASK, YRGB_YSCL_MODE_SHIFT, yrgb_ver_scl_mode, false); 5097 5098 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_SCL_CTRL + win_offset, 5099 YRGB_XSCL_FILTER_MODE_MASK, YRGB_XSCL_FILTER_MODE_SHIFT, 5100 hscl_filter_mode, false); 5101 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_SCL_CTRL + win_offset, 5102 YRGB_YSCL_FILTER_MODE_MASK, YRGB_YSCL_FILTER_MODE_SHIFT, 5103 vscl_filter_mode, false); 5104 } 5105 } 5106 5107 static void vop2_axi_config(struct vop2 *vop2, struct vop2_win_data *win) 5108 { 5109 u32 win_offset = win->reg_offset; 5110 5111 if (win->type == CLUSTER_LAYER) { 5112 vop2_mask_write(vop2, RK3568_CLUSTER0_CTRL + win_offset, CLUSTER_AXI_ID_MASK, 5113 CLUSTER_AXI_ID_SHIFT, win->axi_id, false); 5114 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL2 + win_offset, CLUSTER_AXI_YRGB_ID_MASK, 5115 CLUSTER_AXI_YRGB_ID_SHIFT, win->axi_yrgb_id, false); 5116 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL2 + win_offset, CLUSTER_AXI_UV_ID_MASK, 5117 CLUSTER_AXI_UV_ID_SHIFT, win->axi_uv_id, false); 5118 } else { 5119 vop2_mask_write(vop2, RK3568_ESMART0_AXI_CTRL + win_offset, ESMART_AXI_ID_MASK, 5120 ESMART_AXI_ID_SHIFT, win->axi_id, false); 5121 vop2_mask_write(vop2, RK3568_ESMART0_CTRL1 + win_offset, ESMART_AXI_YRGB_ID_MASK, 5122 ESMART_AXI_YRGB_ID_SHIFT, win->axi_yrgb_id, false); 5123 vop2_mask_write(vop2, RK3568_ESMART0_CTRL1 + win_offset, ESMART_AXI_UV_ID_MASK, 5124 ESMART_AXI_UV_ID_SHIFT, win->axi_uv_id, false); 5125 } 5126 } 5127 5128 static bool vop2_win_dither_up(uint32_t format) 5129 { 5130 switch (format) { 5131 case ROCKCHIP_FMT_RGB565: 5132 return true; 5133 default: 5134 return false; 5135 } 5136 } 5137 5138 static bool vop2_is_mirror_win(struct vop2_win_data *win) 5139 { 5140 return soc_is_rk3566() && (win->feature & WIN_FEATURE_MIRROR); 5141 } 5142 5143 static int vop2_set_cluster_win(struct display_state *state, struct vop2_win_data *win) 5144 { 5145 struct crtc_state *cstate = &state->crtc_state; 5146 struct connector_state *conn_state = &state->conn_state; 5147 struct drm_display_mode *mode = &conn_state->mode; 5148 struct vop2 *vop2 = cstate->private; 5149 int src_w = cstate->src_rect.w; 5150 int src_h = cstate->src_rect.h; 5151 int crtc_x = cstate->crtc_rect.x; 5152 int crtc_y = cstate->crtc_rect.y; 5153 int crtc_w = cstate->crtc_rect.w; 5154 int crtc_h = cstate->crtc_rect.h; 5155 int xvir = cstate->xvir; 5156 int y_mirror = 0; 5157 int csc_mode; 5158 u32 act_info, dsp_info, dsp_st, dsp_stx, dsp_sty; 5159 /* offset of the right window in splice mode */ 5160 u32 splice_pixel_offset = 0; 5161 u32 splice_yrgb_offset = 0; 5162 u32 win_offset = win->reg_offset; 5163 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 5164 bool dither_up; 5165 5166 if (win->splice_mode_right) { 5167 src_w = cstate->right_src_rect.w; 5168 src_h = cstate->right_src_rect.h; 5169 crtc_x = cstate->right_crtc_rect.x; 5170 crtc_y = cstate->right_crtc_rect.y; 5171 crtc_w = cstate->right_crtc_rect.w; 5172 crtc_h = cstate->right_crtc_rect.h; 5173 splice_pixel_offset = cstate->right_src_rect.x - cstate->src_rect.x; 5174 splice_yrgb_offset = splice_pixel_offset * (state->logo.bpp >> 3); 5175 cfg_done = CFG_DONE_EN | BIT(cstate->splice_crtc_id) | (BIT(cstate->splice_crtc_id) << 16); 5176 } 5177 5178 act_info = (src_h - 1) << 16; 5179 act_info |= (src_w - 1) & 0xffff; 5180 5181 dsp_info = (crtc_h - 1) << 16; 5182 dsp_info |= (crtc_w - 1) & 0xffff; 5183 5184 dsp_stx = crtc_x; 5185 dsp_sty = crtc_y; 5186 dsp_st = dsp_sty << 16 | (dsp_stx & 0xffff); 5187 5188 if (mode->flags & DRM_MODE_FLAG_YMIRROR) 5189 y_mirror = 1; 5190 else 5191 y_mirror = 0; 5192 5193 vop2_setup_scale(vop2, win, src_w, src_h, crtc_w, crtc_h); 5194 5195 if (vop2->version != VOP_VERSION_RK3568) 5196 vop2_axi_config(vop2, win); 5197 5198 if (y_mirror) 5199 printf("WARN: y mirror is unsupported by cluster window\n"); 5200 5201 if (vop2->version >= VOP_VERSION_RK3576) 5202 vop2_mask_write(vop2, RK3576_CLUSTER0_PORT_SEL + win_offset, 5203 CLUSTER_PORT_SEL_MASK, CLUSTER_PORT_SEL_SHIFT, 5204 cstate->crtc_id, false); 5205 5206 /* 5207 * rk3588 and later platforms should set half_blocK_en to 1 in line and tile mode. 5208 */ 5209 if (vop2->version >= VOP_VERSION_RK3588) 5210 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_AFBCD_CTRL + win_offset, 5211 EN_MASK, CLUSTER_AFBCD_HALF_BLOCK_SHIFT, 1, false); 5212 5213 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, 5214 WIN_FORMAT_MASK, WIN_FORMAT_SHIFT, cstate->format, 5215 false); 5216 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_VIR + win_offset, xvir); 5217 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_YRGB_MST + win_offset, 5218 cstate->dma_addr + splice_yrgb_offset); 5219 5220 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_ACT_INFO + win_offset, act_info); 5221 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_DSP_INFO + win_offset, dsp_info); 5222 vop2_writel(vop2, RK3568_CLUSTER0_WIN0_DSP_ST + win_offset, dsp_st); 5223 5224 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, EN_MASK, WIN_EN_SHIFT, 1, false); 5225 5226 csc_mode = vop2_convert_csc_mode(conn_state->color_encoding, conn_state->color_range, 5227 CSC_10BIT_DEPTH); 5228 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, EN_MASK, 5229 CLUSTER_RGB2YUV_EN_SHIFT, 5230 is_yuv_output(conn_state->bus_format), false); 5231 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, CSC_MODE_MASK, 5232 CLUSTER_CSC_MODE_SHIFT, csc_mode, false); 5233 5234 dither_up = vop2_win_dither_up(cstate->format); 5235 vop2_mask_write(vop2, RK3568_CLUSTER0_WIN0_CTRL0 + win_offset, EN_MASK, 5236 CLUSTER_DITHER_UP_EN_SHIFT, dither_up, false); 5237 5238 vop2_mask_write(vop2, RK3568_CLUSTER0_CTRL + win_offset, EN_MASK, CLUSTER_EN_SHIFT, 1, false); 5239 5240 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 5241 5242 return 0; 5243 } 5244 5245 static int vop2_set_smart_win(struct display_state *state, struct vop2_win_data *win) 5246 { 5247 struct crtc_state *cstate = &state->crtc_state; 5248 struct connector_state *conn_state = &state->conn_state; 5249 struct drm_display_mode *mode = &conn_state->mode; 5250 struct vop2 *vop2 = cstate->private; 5251 int src_w = cstate->src_rect.w; 5252 int src_h = cstate->src_rect.h; 5253 int crtc_x = cstate->crtc_rect.x; 5254 int crtc_y = cstate->crtc_rect.y; 5255 int crtc_w = cstate->crtc_rect.w; 5256 int crtc_h = cstate->crtc_rect.h; 5257 int xvir = cstate->xvir; 5258 int y_mirror = 0; 5259 int csc_mode; 5260 u32 act_info, dsp_info, dsp_st, dsp_stx, dsp_sty; 5261 /* offset of the right window in splice mode */ 5262 u32 splice_pixel_offset = 0; 5263 u32 splice_yrgb_offset = 0; 5264 u32 win_offset = win->reg_offset; 5265 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 5266 u32 val; 5267 bool dither_up; 5268 5269 if (vop2_is_mirror_win(win)) { 5270 struct vop2_win_data *source_win = vop2_find_win_by_phys_id(vop2, win->source_win_id); 5271 5272 if (!source_win) { 5273 printf("invalid source win id %d\n", win->source_win_id); 5274 return -ENODEV; 5275 } 5276 5277 val = vop2_readl(vop2, RK3568_ESMART0_REGION0_CTRL + source_win->reg_offset); 5278 if (!(val & BIT(WIN_EN_SHIFT))) { 5279 printf("WARN: the source win should be enabled before mirror win\n"); 5280 return -EAGAIN; 5281 } 5282 } 5283 5284 if (win->splice_mode_right) { 5285 src_w = cstate->right_src_rect.w; 5286 src_h = cstate->right_src_rect.h; 5287 crtc_x = cstate->right_crtc_rect.x; 5288 crtc_y = cstate->right_crtc_rect.y; 5289 crtc_w = cstate->right_crtc_rect.w; 5290 crtc_h = cstate->right_crtc_rect.h; 5291 splice_pixel_offset = cstate->right_src_rect.x - cstate->src_rect.x; 5292 splice_yrgb_offset = splice_pixel_offset * (state->logo.bpp >> 3); 5293 cfg_done = CFG_DONE_EN | BIT(cstate->splice_crtc_id) | (BIT(cstate->splice_crtc_id) << 16); 5294 } 5295 5296 /* 5297 * This is workaround solution for IC design: 5298 * esmart can't support scale down when actual_w % 16 == 1. 5299 */ 5300 if (src_w > crtc_w && (src_w & 0xf) == 1) { 5301 printf("WARN: vp%d unsupported act_w[%d] mode 16 = 1 when scale down\n", cstate->crtc_id, src_w); 5302 src_w -= 1; 5303 } 5304 5305 act_info = (src_h - 1) << 16; 5306 act_info |= (src_w - 1) & 0xffff; 5307 5308 dsp_info = (crtc_h - 1) << 16; 5309 dsp_info |= (crtc_w - 1) & 0xffff; 5310 5311 dsp_stx = crtc_x; 5312 dsp_sty = crtc_y; 5313 dsp_st = dsp_sty << 16 | (dsp_stx & 0xffff); 5314 5315 if (mode->flags & DRM_MODE_FLAG_YMIRROR) 5316 y_mirror = 1; 5317 else 5318 y_mirror = 0; 5319 5320 if (is_vop3(vop2)) { 5321 vop2_mask_write(vop2, RK3568_ESMART0_CTRL0 + win_offset, 5322 ESMART_LB_SELECT_MASK, ESMART_LB_SELECT_SHIFT, 5323 win->scale_engine_num, false); 5324 vop2_mask_write(vop2, RK3576_ESMART0_PORT_SEL + win_offset, 5325 ESMART_PORT_SEL_MASK, ESMART_PORT_SEL_SHIFT, 5326 cstate->crtc_id, false); 5327 vop2_mask_write(vop2, RK3576_ESMART0_DLY_NUM + win_offset, 5328 ESMART_DLY_NUM_MASK, ESMART_DLY_NUM_SHIFT, 5329 0, false); 5330 5331 /* Merge esmart1/3 from vp1 post to vp0 */ 5332 if (vop2->version == VOP_VERSION_RK3576 && cstate->crtc_id == 0 && 5333 (win->phys_id == ROCKCHIP_VOP2_ESMART1 || 5334 win->phys_id == ROCKCHIP_VOP2_ESMART3)) 5335 vop2_mask_write(vop2, RK3576_ESMART0_PORT_SEL + win_offset, 5336 ESMART_PORT_SEL_MASK, ESMART_PORT_SEL_SHIFT, 5337 1, false); 5338 } 5339 5340 vop2_setup_scale(vop2, win, src_w, src_h, crtc_w, crtc_h); 5341 5342 if (vop2->version != VOP_VERSION_RK3568) 5343 vop2_axi_config(vop2, win); 5344 5345 if (y_mirror) 5346 cstate->dma_addr += (src_h - 1) * xvir * 4; 5347 vop2_mask_write(vop2, RK3568_ESMART0_CTRL1 + win_offset, EN_MASK, 5348 YMIRROR_EN_SHIFT, y_mirror, false); 5349 5350 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, 5351 WIN_FORMAT_MASK, WIN_FORMAT_SHIFT, cstate->format, 5352 false); 5353 5354 if (vop2->version == VOP_VERSION_RK3576) 5355 vop2_writel(vop2, RK3576_ESMART0_ALPHA_MAP + win_offset, 0x8000ff00); 5356 5357 vop2_writel(vop2, RK3568_ESMART0_REGION0_VIR + win_offset, xvir); 5358 vop2_writel(vop2, RK3568_ESMART0_REGION0_YRGB_MST + win_offset, 5359 cstate->dma_addr + splice_yrgb_offset); 5360 5361 vop2_writel(vop2, RK3568_ESMART0_REGION0_ACT_INFO + win_offset, 5362 act_info); 5363 vop2_writel(vop2, RK3568_ESMART0_REGION0_DSP_INFO + win_offset, 5364 dsp_info); 5365 vop2_writel(vop2, RK3568_ESMART0_REGION0_DSP_ST + win_offset, dsp_st); 5366 5367 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, EN_MASK, 5368 WIN_EN_SHIFT, 1, false); 5369 5370 csc_mode = vop2_convert_csc_mode(conn_state->color_encoding, conn_state->color_range, 5371 CSC_10BIT_DEPTH); 5372 vop2_mask_write(vop2, RK3568_ESMART0_CTRL0 + win_offset, EN_MASK, 5373 RGB2YUV_EN_SHIFT, 5374 is_yuv_output(conn_state->bus_format), false); 5375 vop2_mask_write(vop2, RK3568_ESMART0_CTRL0 + win_offset, CSC_MODE_MASK, 5376 CSC_MODE_SHIFT, csc_mode, false); 5377 5378 dither_up = vop2_win_dither_up(cstate->format); 5379 vop2_mask_write(vop2, RK3568_ESMART0_REGION0_CTRL + win_offset, EN_MASK, 5380 REGION0_DITHER_UP_EN_SHIFT, dither_up, false); 5381 5382 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 5383 5384 return 0; 5385 } 5386 5387 static void vop2_calc_display_rect_for_splice(struct display_state *state) 5388 { 5389 struct crtc_state *cstate = &state->crtc_state; 5390 struct connector_state *conn_state = &state->conn_state; 5391 struct drm_display_mode *mode = &conn_state->mode; 5392 struct display_rect *src_rect = &cstate->src_rect; 5393 struct display_rect *dst_rect = &cstate->crtc_rect; 5394 struct display_rect left_src, left_dst, right_src, right_dst; 5395 u16 half_hdisplay = mode->crtc_hdisplay >> 1; 5396 int left_src_w, left_dst_w, right_dst_w; 5397 5398 left_dst_w = min_t(u16, half_hdisplay, dst_rect->x + dst_rect->w) - dst_rect->x; 5399 if (left_dst_w < 0) 5400 left_dst_w = 0; 5401 right_dst_w = dst_rect->w - left_dst_w; 5402 5403 if (!right_dst_w) 5404 left_src_w = src_rect->w; 5405 else 5406 left_src_w = src_rect->x + src_rect->w - src_rect->w / 2; 5407 5408 left_src.x = src_rect->x; 5409 left_src.w = left_src_w; 5410 left_dst.x = dst_rect->x; 5411 left_dst.w = left_dst_w; 5412 right_src.x = left_src.x + left_src.w; 5413 right_src.w = src_rect->x + src_rect->w - left_src.x - left_src.w; 5414 right_dst.x = dst_rect->x + left_dst_w - half_hdisplay; 5415 right_dst.w = right_dst_w; 5416 5417 left_src.y = src_rect->y; 5418 left_src.h = src_rect->h; 5419 left_dst.y = dst_rect->y; 5420 left_dst.h = dst_rect->h; 5421 right_src.y = src_rect->y; 5422 right_src.h = src_rect->h; 5423 right_dst.y = dst_rect->y; 5424 right_dst.h = dst_rect->h; 5425 5426 memcpy(&cstate->src_rect, &left_src, sizeof(struct display_rect)); 5427 memcpy(&cstate->crtc_rect, &left_dst, sizeof(struct display_rect)); 5428 memcpy(&cstate->right_src_rect, &right_src, sizeof(struct display_rect)); 5429 memcpy(&cstate->right_crtc_rect, &right_dst, sizeof(struct display_rect)); 5430 } 5431 5432 static int rockchip_vop2_set_plane(struct display_state *state) 5433 { 5434 struct crtc_state *cstate = &state->crtc_state; 5435 struct vop2 *vop2 = cstate->private; 5436 struct vop2_win_data *win_data; 5437 struct vop2_win_data *splice_win_data; 5438 u8 primary_plane_id = vop2->vp_plane_mask[cstate->crtc_id].primary_plane_id; 5439 int ret; 5440 5441 if (cstate->crtc_rect.w > cstate->max_output.width) { 5442 printf("ERROR: output w[%d] exceeded max width[%d]\n", 5443 cstate->crtc_rect.w, cstate->max_output.width); 5444 return -EINVAL; 5445 } 5446 5447 win_data = vop2_find_win_by_phys_id(vop2, primary_plane_id); 5448 if (!win_data) { 5449 printf("invalid win id %d\n", primary_plane_id); 5450 return -ENODEV; 5451 } 5452 5453 /* ignore some plane register according vop3 esmart lb mode */ 5454 if (vop3_ignore_plane(vop2, win_data)) 5455 return -EACCES; 5456 5457 if (vop2->version == VOP_VERSION_RK3588 || vop2->version == VOP_VERSION_RK3576) { 5458 if (vop2_power_domain_on(vop2, win_data->pd_id)) 5459 printf("open vp%d plane pd fail\n", cstate->crtc_id); 5460 } 5461 5462 if (cstate->splice_mode) { 5463 if (win_data->splice_win_id) { 5464 splice_win_data = vop2_find_win_by_phys_id(vop2, win_data->splice_win_id); 5465 splice_win_data->splice_mode_right = true; 5466 5467 if (vop2_power_domain_on(vop2, splice_win_data->pd_id)) 5468 printf("splice mode: open vp%d plane pd fail\n", cstate->splice_crtc_id); 5469 5470 vop2_calc_display_rect_for_splice(state); 5471 if (win_data->type == CLUSTER_LAYER) 5472 vop2_set_cluster_win(state, splice_win_data); 5473 else 5474 vop2_set_smart_win(state, splice_win_data); 5475 } else { 5476 printf("ERROR: splice mode is unsupported by plane %s\n", 5477 vop2_plane_id_to_string(primary_plane_id)); 5478 return -EINVAL; 5479 } 5480 } 5481 5482 if (win_data->type == CLUSTER_LAYER) 5483 ret = vop2_set_cluster_win(state, win_data); 5484 else 5485 ret = vop2_set_smart_win(state, win_data); 5486 if (ret) 5487 return ret; 5488 5489 printf("VOP VP%d enable %s[%dx%d->%dx%d@%dx%d] fmt[%d] addr[0x%x]\n", 5490 cstate->crtc_id, vop2_plane_id_to_string(primary_plane_id), 5491 cstate->src_rect.w, cstate->src_rect.h, cstate->crtc_rect.w, cstate->crtc_rect.h, 5492 cstate->crtc_rect.x, cstate->crtc_rect.y, cstate->format, 5493 cstate->dma_addr); 5494 5495 return 0; 5496 } 5497 5498 static int rockchip_vop2_prepare(struct display_state *state) 5499 { 5500 return 0; 5501 } 5502 5503 static void vop2_dsc_cfg_done(struct display_state *state) 5504 { 5505 struct connector_state *conn_state = &state->conn_state; 5506 struct crtc_state *cstate = &state->crtc_state; 5507 struct vop2 *vop2 = cstate->private; 5508 u8 dsc_id = cstate->dsc_id; 5509 u32 ctrl_regs_offset = (dsc_id * 0x30); 5510 5511 if (conn_state->output_flags & ROCKCHIP_OUTPUT_DUAL_CHANNEL_LEFT_RIGHT_MODE) { 5512 vop2_mask_write(vop2, RK3588_DSC_8K_CFG_DONE, EN_MASK, 5513 DSC_CFG_DONE_SHIFT, 1, false); 5514 vop2_mask_write(vop2, RK3588_DSC_8K_CFG_DONE + 0x30, EN_MASK, 5515 DSC_CFG_DONE_SHIFT, 1, false); 5516 } else { 5517 vop2_mask_write(vop2, RK3588_DSC_8K_CFG_DONE + ctrl_regs_offset, EN_MASK, 5518 DSC_CFG_DONE_SHIFT, 1, false); 5519 } 5520 } 5521 5522 static int rockchip_vop2_enable(struct display_state *state) 5523 { 5524 struct crtc_state *cstate = &state->crtc_state; 5525 struct vop2 *vop2 = cstate->private; 5526 u32 vp_offset = (cstate->crtc_id * 0x100); 5527 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 5528 5529 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 5530 STANDBY_EN_SHIFT, 0, false); 5531 5532 if (cstate->splice_mode) 5533 cfg_done |= BIT(cstate->splice_crtc_id) | (BIT(cstate->splice_crtc_id) << 16); 5534 5535 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 5536 5537 if (cstate->dsc_enable) 5538 vop2_dsc_cfg_done(state); 5539 5540 if (cstate->mcu_timing.mcu_pix_total) 5541 vop2_mask_write(vop2, RK3562_VP0_MCU_CTRL + vp_offset, EN_MASK, 5542 MCU_HOLD_MODE_SHIFT, 0, false); 5543 5544 return 0; 5545 } 5546 5547 static int rk3588_vop2_post_enable(struct display_state *state) 5548 { 5549 struct connector_state *conn_state = &state->conn_state; 5550 struct crtc_state *cstate = &state->crtc_state; 5551 struct vop2 *vop2 = cstate->private; 5552 int output_if = conn_state->output_if; 5553 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 5554 int ret, val; 5555 5556 if (output_if & VOP_OUTPUT_IF_DP0) 5557 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_DP0_EN_SHIFT, 5558 1, false); 5559 5560 if (output_if & VOP_OUTPUT_IF_DP1) 5561 vop2_mask_write(vop2, RK3568_DSP_IF_EN, EN_MASK, RK3588_DP1_EN_SHIFT, 5562 1, false); 5563 5564 if (output_if & (VOP_OUTPUT_IF_DP0 | VOP_OUTPUT_IF_DP1)) { 5565 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 5566 ret = readl_poll_timeout(vop2->regs + RK3568_REG_CFG_DONE, val, 5567 val & BIT(cstate->crtc_id), 50 * 1000); 5568 if (ret) 5569 printf("%s wait cfg done timeout\n", __func__); 5570 5571 if (cstate->dclk_rst.dev) { 5572 reset_assert(&cstate->dclk_rst); 5573 udelay(20); 5574 reset_deassert(&cstate->dclk_rst); 5575 } 5576 } 5577 5578 return 0; 5579 } 5580 5581 static int rk3576_vop2_post_enable(struct display_state *state) 5582 { 5583 struct connector_state *conn_state = &state->conn_state; 5584 struct crtc_state *cstate = &state->crtc_state; 5585 struct vop2 *vop2 = cstate->private; 5586 int output_if = conn_state->output_if; 5587 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 5588 int ret, val; 5589 5590 if (output_if & VOP_OUTPUT_IF_DP0) 5591 vop2_mask_write(vop2, RK3576_DP0_IF_CTRL, EN_MASK, 5592 RK3576_IF_OUT_EN_SHIFT, 1, false); 5593 5594 if (output_if & VOP_OUTPUT_IF_DP1) 5595 vop2_mask_write(vop2, RK3576_DP1_IF_CTRL, EN_MASK, 5596 RK3576_IF_OUT_EN_SHIFT, 1, false); 5597 5598 if (output_if & VOP_OUTPUT_IF_DP2) 5599 vop2_mask_write(vop2, RK3576_DP2_IF_CTRL, EN_MASK, 5600 RK3576_IF_OUT_EN_SHIFT, 1, false); 5601 5602 if (output_if & (VOP_OUTPUT_IF_DP0 | VOP_OUTPUT_IF_DP1 | VOP_OUTPUT_IF_DP2)) { 5603 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 5604 ret = readl_poll_timeout(vop2->regs + RK3568_REG_CFG_DONE, val, 5605 val & BIT(cstate->crtc_id), 50 * 1000); 5606 if (ret) 5607 printf("%s wait cfg done timeout\n", __func__); 5608 5609 if (cstate->dclk_rst.dev) { 5610 reset_assert(&cstate->dclk_rst); 5611 udelay(20); 5612 reset_deassert(&cstate->dclk_rst); 5613 } 5614 } 5615 5616 return 0; 5617 } 5618 5619 static int rockchip_vop2_post_enable(struct display_state *state) 5620 { 5621 struct crtc_state *cstate = &state->crtc_state; 5622 struct vop2 *vop2 = cstate->private; 5623 5624 if (vop2->version == VOP_VERSION_RK3588) 5625 rk3588_vop2_post_enable(state); 5626 else if (vop2->version == VOP_VERSION_RK3576) 5627 rk3576_vop2_post_enable(state); 5628 5629 return 0; 5630 } 5631 5632 static int rockchip_vop2_disable(struct display_state *state) 5633 { 5634 struct crtc_state *cstate = &state->crtc_state; 5635 struct vop2 *vop2 = cstate->private; 5636 u32 vp_offset = (cstate->crtc_id * 0x100); 5637 u32 cfg_done = CFG_DONE_EN | BIT(cstate->crtc_id) | (BIT(cstate->crtc_id) << 16); 5638 5639 vop2_mask_write(vop2, RK3568_VP0_DSP_CTRL + vp_offset, EN_MASK, 5640 STANDBY_EN_SHIFT, 1, false); 5641 5642 if (cstate->splice_mode) 5643 cfg_done |= BIT(cstate->splice_crtc_id) | (BIT(cstate->splice_crtc_id) << 16); 5644 5645 vop2_writel(vop2, RK3568_REG_CFG_DONE, cfg_done); 5646 5647 return 0; 5648 } 5649 5650 static int rockchip_vop2_get_cursor_plane(struct display_state *state, u32 plane_mask, int cursor_plane) 5651 { 5652 struct crtc_state *cstate = &state->crtc_state; 5653 struct vop2 *vop2 = cstate->private; 5654 int i = 0; 5655 int correct_cursor_plane = -1; 5656 int plane_type = -1; 5657 5658 if (cursor_plane < 0) 5659 return -1; 5660 5661 if (plane_mask & (1 << cursor_plane)) 5662 return cursor_plane; 5663 5664 /* Get current cursor plane type */ 5665 for (i = 0; i < vop2->data->nr_layers; i++) { 5666 if (vop2->data->plane_table[i].plane_id == cursor_plane) { 5667 plane_type = vop2->data->plane_table[i].plane_type; 5668 break; 5669 } 5670 } 5671 5672 /* Get the other same plane type plane id */ 5673 for (i = 0; i < vop2->data->nr_layers; i++) { 5674 if (vop2->data->plane_table[i].plane_type == plane_type && 5675 vop2->data->plane_table[i].plane_id != cursor_plane) { 5676 correct_cursor_plane = vop2->data->plane_table[i].plane_id; 5677 break; 5678 } 5679 } 5680 5681 /* To check whether the new correct_cursor_plane is attach to current vp */ 5682 if (correct_cursor_plane < 0 || !(plane_mask & (1 << correct_cursor_plane))) { 5683 printf("error: faild to find correct plane as cursor plane\n"); 5684 return -1; 5685 } 5686 5687 printf("vp%d adjust cursor plane from %d to %d\n", 5688 cstate->crtc_id, cursor_plane, correct_cursor_plane); 5689 5690 return correct_cursor_plane; 5691 } 5692 5693 static int rockchip_vop2_fixup_dts(struct display_state *state, void *blob) 5694 { 5695 struct crtc_state *cstate = &state->crtc_state; 5696 struct vop2 *vop2 = cstate->private; 5697 ofnode vp_node; 5698 struct device_node *port_parent_node = cstate->ports_node; 5699 static bool vop_fix_dts; 5700 const char *path; 5701 u32 plane_mask = 0; 5702 int vp_id = 0; 5703 int cursor_plane_id = -1; 5704 5705 if (vop_fix_dts || vop2->version == VOP_VERSION_RK3528) 5706 return 0; 5707 5708 ofnode_for_each_subnode(vp_node, np_to_ofnode(port_parent_node)) { 5709 path = vp_node.np->full_name; 5710 plane_mask = vop2->vp_plane_mask[vp_id].plane_mask; 5711 5712 if (cstate->crtc->assign_plane) 5713 continue; 5714 cursor_plane_id = rockchip_vop2_get_cursor_plane(state, plane_mask, 5715 cstate->crtc->vps[vp_id].cursor_plane); 5716 printf("vp%d, plane_mask:0x%x, primary-id:%d, curser-id:%d\n", 5717 vp_id, plane_mask, 5718 vop2->vp_plane_mask[vp_id].primary_plane_id, 5719 cursor_plane_id); 5720 5721 do_fixup_by_path_u32(blob, path, "rockchip,plane-mask", 5722 plane_mask, 1); 5723 do_fixup_by_path_u32(blob, path, "rockchip,primary-plane", 5724 vop2->vp_plane_mask[vp_id].primary_plane_id, 1); 5725 if (cursor_plane_id >= 0) 5726 do_fixup_by_path_u32(blob, path, "cursor-win-id", 5727 cursor_plane_id, 1); 5728 vp_id++; 5729 } 5730 5731 vop_fix_dts = true; 5732 5733 return 0; 5734 } 5735 5736 static int rockchip_vop2_check(struct display_state *state) 5737 { 5738 struct crtc_state *cstate = &state->crtc_state; 5739 struct rockchip_crtc *crtc = cstate->crtc; 5740 5741 if (crtc->splice_mode && cstate->crtc_id == crtc->splice_crtc_id) { 5742 printf("WARN: VP%d is busy in splice mode\n", cstate->crtc_id); 5743 return -ENOTSUPP; 5744 } 5745 5746 if (cstate->splice_mode) { 5747 crtc->splice_mode = true; 5748 crtc->splice_crtc_id = cstate->splice_crtc_id; 5749 } 5750 5751 return 0; 5752 } 5753 5754 static int rockchip_vop2_mode_valid(struct display_state *state) 5755 { 5756 struct connector_state *conn_state = &state->conn_state; 5757 struct crtc_state *cstate = &state->crtc_state; 5758 struct drm_display_mode *mode = &conn_state->mode; 5759 struct videomode vm; 5760 5761 drm_display_mode_to_videomode(mode, &vm); 5762 5763 if (vm.hactive < 32 || vm.vactive < 32 || 5764 (vm.hfront_porch * vm.hsync_len * vm.hback_porch * 5765 vm.vfront_porch * vm.vsync_len * vm.vback_porch == 0)) { 5766 printf("ERROR: VP%d: unsupported display timing\n", cstate->crtc_id); 5767 return -EINVAL; 5768 } 5769 5770 return 0; 5771 } 5772 5773 static int rockchip_vop2_mode_fixup(struct display_state *state) 5774 { 5775 struct connector_state *conn_state = &state->conn_state; 5776 struct rockchip_connector *conn = conn_state->connector; 5777 struct drm_display_mode *mode = &conn_state->mode; 5778 struct crtc_state *cstate = &state->crtc_state; 5779 struct vop2 *vop2 = cstate->private; 5780 5781 if (conn_state->secondary) { 5782 if (!(conn->dual_channel_mode && 5783 conn_state->secondary->type == DRM_MODE_CONNECTOR_eDP) && 5784 conn_state->secondary->type != DRM_MODE_CONNECTOR_LVDS) 5785 drm_mode_convert_to_split_mode(mode); 5786 } 5787 5788 drm_mode_set_crtcinfo(mode, CRTC_INTERLACE_HALVE_V | CRTC_STEREO_DOUBLE); 5789 5790 /* 5791 * For RK3568 and RK3588, the hactive of video timing must 5792 * be 4-pixel aligned. 5793 */ 5794 if (vop2->version == VOP_VERSION_RK3568 || vop2->version == VOP_VERSION_RK3588) { 5795 if (mode->crtc_hdisplay % 4) { 5796 int old_hdisplay = mode->crtc_hdisplay; 5797 int align = 4 - (mode->crtc_hdisplay % 4); 5798 5799 mode->crtc_hdisplay += align; 5800 mode->crtc_hsync_start += align; 5801 mode->crtc_hsync_end += align; 5802 mode->crtc_htotal += align; 5803 5804 printf("WARN: hactive need to be aligned with 4-pixel, %d -> %d\n", 5805 old_hdisplay, mode->hdisplay); 5806 } 5807 } 5808 5809 /* 5810 * For RK3576 YUV420 output, hden signal introduce one cycle delay, 5811 * so we need to adjust hfp and hbp to compatible with this design. 5812 */ 5813 if (vop2->version == VOP_VERSION_RK3576 && 5814 conn_state->output_mode == ROCKCHIP_OUT_MODE_YUV420) { 5815 mode->crtc_hsync_start += 2; 5816 mode->crtc_hsync_end += 2; 5817 } 5818 5819 if (mode->flags & DRM_MODE_FLAG_DBLCLK || conn_state->output_if & VOP_OUTPUT_IF_BT656) 5820 mode->crtc_clock *= 2; 5821 5822 /* 5823 * For RK3528, the path of CVBS output is like: 5824 * VOP BT656 ENCODER -> CVBS BT656 DECODER -> CVBS ENCODER -> CVBS VDAC 5825 * The vop2 dclk should be four times crtc_clock for CVBS sampling 5826 * clock needs. 5827 */ 5828 if (vop2->version == VOP_VERSION_RK3528 && conn_state->output_if & VOP_OUTPUT_IF_BT656) 5829 mode->crtc_clock *= 4; 5830 5831 mode->crtc_clock *= rockchip_drm_get_cycles_per_pixel(conn_state->bus_format); 5832 if (cstate->mcu_timing.mcu_pix_total) 5833 mode->crtc_clock *= cstate->mcu_timing.mcu_pix_total + 1; 5834 5835 return 0; 5836 } 5837 5838 #define FRAC_16_16(mult, div) (((mult) << 16) / (div)) 5839 5840 static int rockchip_vop2_plane_check(struct display_state *state) 5841 { 5842 struct crtc_state *cstate = &state->crtc_state; 5843 struct vop2 *vop2 = cstate->private; 5844 struct display_rect *src = &cstate->src_rect; 5845 struct display_rect *dst = &cstate->crtc_rect; 5846 struct vop2_win_data *win_data; 5847 int min_scale, max_scale; 5848 int hscale, vscale; 5849 u8 primary_plane_id = vop2->vp_plane_mask[cstate->crtc_id].primary_plane_id; 5850 5851 win_data = vop2_find_win_by_phys_id(vop2, primary_plane_id); 5852 if (!win_data) { 5853 printf("ERROR: invalid win id %d\n", primary_plane_id); 5854 return -ENODEV; 5855 } 5856 5857 min_scale = FRAC_16_16(1, win_data->max_downscale_factor); 5858 max_scale = FRAC_16_16(win_data->max_upscale_factor, 1); 5859 5860 hscale = display_rect_calc_hscale(src, dst, min_scale, max_scale); 5861 vscale = display_rect_calc_vscale(src, dst, min_scale, max_scale); 5862 if (hscale < 0 || vscale < 0) { 5863 printf("ERROR: VP%d %s: scale factor is out of range\n", cstate->crtc_id, win_data->name); 5864 return -ERANGE; 5865 } 5866 5867 return 0; 5868 } 5869 5870 static int rockchip_vop2_apply_soft_te(struct display_state *state) 5871 { 5872 __maybe_unused struct connector_state *conn_state = &state->conn_state; 5873 struct crtc_state *cstate = &state->crtc_state; 5874 struct vop2 *vop2 = cstate->private; 5875 u32 vp_offset = (cstate->crtc_id * 0x100); 5876 int val = 0; 5877 int ret = 0; 5878 5879 ret = readl_poll_timeout(vop2->regs + RK3568_VP0_MIPI_CTRL + vp_offset, val, 5880 (val >> EDPI_WMS_FS) & 0x1, 50 * 1000); 5881 if (!ret) { 5882 #ifndef CONFIG_SPL_BUILD 5883 ret = readx_poll_timeout(dm_gpio_get_value, conn_state->te_gpio, val, 5884 !val, 50 * 1000); 5885 if (!ret) { 5886 ret = readx_poll_timeout(dm_gpio_get_value, conn_state->te_gpio, val, 5887 val, 50 * 1000); 5888 if (!ret) { 5889 vop2_mask_write(vop2, RK3568_VP0_MIPI_CTRL + vp_offset, 5890 EN_MASK, EDPI_WMS_FS, 1, false); 5891 } else { 5892 printf("ERROR: vp%d wait for active TE signal timeout\n", 5893 cstate->crtc_id); 5894 return ret; 5895 } 5896 } else { 5897 printf("ERROR: vp%d TE signal maybe always high\n", cstate->crtc_id); 5898 return ret; 5899 } 5900 #endif 5901 } else { 5902 printf("ERROR: vp%d wait vop2 frame start timeout in hold mode\n", cstate->crtc_id); 5903 return ret; 5904 } 5905 5906 return 0; 5907 } 5908 5909 static int rockchip_vop2_regs_dump(struct display_state *state) 5910 { 5911 struct crtc_state *cstate = &state->crtc_state; 5912 struct vop2 *vop2 = cstate->private; 5913 const struct vop2_data *vop2_data = vop2->data; 5914 const struct vop2_dump_regs *regs = vop2_data->dump_regs; 5915 u32 len = 128; 5916 u32 n, i, j; 5917 u32 base; 5918 5919 if (!cstate->crtc->active) 5920 return -EINVAL; 5921 5922 n = vop2_data->dump_regs_size; 5923 for (i = 0; i < n; i++) { 5924 base = regs[i].offset; 5925 len = 128; 5926 if (regs[i].size) 5927 len = min(len, regs[i].size >> 2); 5928 printf("\n%s:\n", regs[i].name); 5929 for (j = 0; j < len;) { 5930 printf("%08lx: %08x %08x %08x %08x\n", (uintptr_t)vop2->regs + base + j * 4, 5931 vop2_readl(vop2, base + (4 * j)), 5932 vop2_readl(vop2, base + (4 * (j + 1))), 5933 vop2_readl(vop2, base + (4 * (j + 2))), 5934 vop2_readl(vop2, base + (4 * (j + 3)))); 5935 j += 4; 5936 } 5937 } 5938 5939 return 0; 5940 } 5941 5942 static int rockchip_vop2_active_regs_dump(struct display_state *state) 5943 { 5944 struct crtc_state *cstate = &state->crtc_state; 5945 struct vop2 *vop2 = cstate->private; 5946 const struct vop2_data *vop2_data = vop2->data; 5947 const struct vop2_dump_regs *regs = vop2_data->dump_regs; 5948 u32 len = 128; 5949 u32 n, i, j; 5950 u32 base; 5951 bool enable_state; 5952 5953 if (!cstate->crtc->active) 5954 return -EINVAL; 5955 5956 n = vop2_data->dump_regs_size; 5957 for (i = 0; i < n; i++) { 5958 if (regs[i].state_mask) { 5959 enable_state = (vop2_readl(vop2, regs[i].state_base) >> regs[i].state_shift) & 5960 regs[i].state_mask; 5961 if (enable_state != regs[i].enable_state) 5962 continue; 5963 } 5964 5965 base = regs[i].offset; 5966 len = 128; 5967 if (regs[i].size) 5968 len = min(len, regs[i].size >> 2); 5969 printf("\n%s:\n", regs[i].name); 5970 for (j = 0; j < len;) { 5971 printf("%08lx: %08x %08x %08x %08x\n", (uintptr_t)vop2->regs + base + j * 4, 5972 vop2_readl(vop2, base + (4 * j)), 5973 vop2_readl(vop2, base + (4 * (j + 1))), 5974 vop2_readl(vop2, base + (4 * (j + 2))), 5975 vop2_readl(vop2, base + (4 * (j + 3)))); 5976 j += 4; 5977 } 5978 } 5979 5980 return 0; 5981 } 5982 5983 static struct vop2_dump_regs rk3528_dump_regs[] = { 5984 { RK3568_REG_CFG_DONE, "SYS", 0, 0, 0, 0 }, 5985 { RK3528_OVL_SYS, "OVL_SYS", 0, 0, 0, 0 }, 5986 { RK3528_OVL_PORT0_CTRL, "OVL_VP0", RK3568_VP0_DSP_CTRL, 0x1, 31, 0 }, 5987 { RK3528_OVL_PORT1_CTRL, "OVL_VP1", RK3568_VP1_DSP_CTRL, 0x1, 31, 0 }, 5988 { RK3568_VP0_DSP_CTRL, "VP0", RK3568_VP0_DSP_CTRL, 0x1, 31, 0 }, 5989 { RK3568_VP1_DSP_CTRL, "VP1", RK3568_VP1_DSP_CTRL, 0x1, 31, 0 }, 5990 { RK3568_CLUSTER0_WIN0_CTRL0, "Cluster0", RK3568_CLUSTER0_WIN0_CTRL0, 0x1, 0, 1 }, 5991 { RK3568_ESMART0_CTRL0, "Esmart0", RK3568_ESMART0_REGION0_CTRL, 0x1, 0, 1 }, 5992 { RK3568_ESMART1_CTRL0, "Esmart1", RK3568_ESMART1_REGION0_CTRL, 0x1, 0, 1 }, 5993 { RK3568_SMART0_CTRL0, "Esmart2", RK3568_SMART0_CTRL0, 0x1, 0, 1 }, 5994 { RK3568_SMART1_CTRL0, "Esmart3", RK3568_SMART1_CTRL0, 0x1, 0, 1 }, 5995 { RK3528_HDR_LUT_CTRL, "HDR", 0, 0, 0, 0 }, 5996 { RK3528_ACM_CTRL, "ACM", RK3528_ACM_CTRL, 0x1, 0, 1}, 5997 }; 5998 5999 static u8 rk3528_vp_primary_plane_order[ROCKCHIP_VOP2_LAYER_MAX] = { 6000 ROCKCHIP_VOP2_ESMART0, 6001 ROCKCHIP_VOP2_ESMART1, 6002 ROCKCHIP_VOP2_ESMART2, 6003 ROCKCHIP_VOP2_ESMART3, 6004 }; 6005 6006 static struct vop2_plane_table rk3528_plane_table[ROCKCHIP_VOP2_LAYER_MAX] = { 6007 {ROCKCHIP_VOP2_CLUSTER0, CLUSTER_LAYER}, 6008 {ROCKCHIP_VOP2_ESMART0, ESMART_LAYER}, 6009 {ROCKCHIP_VOP2_ESMART1, ESMART_LAYER}, 6010 {ROCKCHIP_VOP2_ESMART2, ESMART_LAYER}, 6011 {ROCKCHIP_VOP2_ESMART3, ESMART_LAYER}, 6012 }; 6013 6014 static struct vop2_vp_plane_mask rk3528_vp_plane_mask[VOP2_VP_MAX][VOP2_VP_MAX] = { 6015 { /* one display policy for hdmi */ 6016 {/* main display */ 6017 .primary_plane_id = ROCKCHIP_VOP2_ESMART0, 6018 .attached_layers_nr = 4, 6019 .attached_layers = { 6020 ROCKCHIP_VOP2_CLUSTER0, 6021 ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_ESMART1, ROCKCHIP_VOP2_ESMART2 6022 }, 6023 }, 6024 {/* second display */}, 6025 {/* third display */}, 6026 {/* fourth display */}, 6027 }, 6028 6029 { /* two display policy */ 6030 {/* main display */ 6031 .primary_plane_id = ROCKCHIP_VOP2_ESMART0, 6032 .attached_layers_nr = 3, 6033 .attached_layers = { 6034 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_ESMART1 6035 }, 6036 }, 6037 6038 {/* second display */ 6039 .primary_plane_id = ROCKCHIP_VOP2_ESMART3, 6040 .attached_layers_nr = 2, 6041 .attached_layers = { 6042 ROCKCHIP_VOP2_ESMART2, ROCKCHIP_VOP2_ESMART3 6043 }, 6044 }, 6045 {/* third display */}, 6046 {/* fourth display */}, 6047 }, 6048 6049 { /* one display policy for cvbs */ 6050 {/* main display */ 6051 .primary_plane_id = ROCKCHIP_VOP2_ESMART3, 6052 .attached_layers_nr = 2, 6053 .attached_layers = { 6054 ROCKCHIP_VOP2_ESMART2, ROCKCHIP_VOP2_ESMART3 6055 }, 6056 }, 6057 {/* second display */}, 6058 {/* third display */}, 6059 {/* fourth display */}, 6060 }, 6061 6062 {/* reserved */}, 6063 }; 6064 6065 static struct vop2_win_data rk3528_win_data[5] = { 6066 { 6067 .name = "Esmart0", 6068 .phys_id = ROCKCHIP_VOP2_ESMART0, 6069 .type = ESMART_LAYER, 6070 .win_sel_port_offset = 8, 6071 .layer_sel_win_id = { 1, 0xff, 0xff, 0xff }, 6072 .reg_offset = 0, 6073 .axi_id = 0, 6074 .axi_yrgb_id = 0x06, 6075 .axi_uv_id = 0x07, 6076 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6077 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6078 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6079 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6080 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG, /* gt or avg */ 6081 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_GT, /* gt only */ 6082 .max_upscale_factor = 8, 6083 .max_downscale_factor = 8, 6084 }, 6085 6086 { 6087 .name = "Esmart1", 6088 .phys_id = ROCKCHIP_VOP2_ESMART1, 6089 .type = ESMART_LAYER, 6090 .win_sel_port_offset = 10, 6091 .layer_sel_win_id = { 2, 0xff, 0xff, 0xff }, 6092 .reg_offset = 0x200, 6093 .axi_id = 0, 6094 .axi_yrgb_id = 0x08, 6095 .axi_uv_id = 0x09, 6096 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6097 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6098 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6099 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6100 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG, /* gt or avg */ 6101 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_GT, /* gt only */ 6102 .max_upscale_factor = 8, 6103 .max_downscale_factor = 8, 6104 }, 6105 6106 { 6107 .name = "Esmart2", 6108 .phys_id = ROCKCHIP_VOP2_ESMART2, 6109 .type = ESMART_LAYER, 6110 .win_sel_port_offset = 12, 6111 .layer_sel_win_id = { 3, 0, 0xff, 0xff }, 6112 .reg_offset = 0x400, 6113 .axi_id = 0, 6114 .axi_yrgb_id = 0x0a, 6115 .axi_uv_id = 0x0b, 6116 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6117 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6118 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6119 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6120 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG, /* gt or avg */ 6121 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_GT, /* gt only */ 6122 .max_upscale_factor = 8, 6123 .max_downscale_factor = 8, 6124 }, 6125 6126 { 6127 .name = "Esmart3", 6128 .phys_id = ROCKCHIP_VOP2_ESMART3, 6129 .type = ESMART_LAYER, 6130 .win_sel_port_offset = 14, 6131 .layer_sel_win_id = { 0xff, 1, 0xff, 0xff }, 6132 .reg_offset = 0x600, 6133 .axi_id = 0, 6134 .axi_yrgb_id = 0x0c, 6135 .axi_uv_id = 0x0d, 6136 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6137 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6138 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6139 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6140 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG, /* gt or avg */ 6141 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_GT, /* gt only */ 6142 .max_upscale_factor = 8, 6143 .max_downscale_factor = 8, 6144 }, 6145 6146 { 6147 .name = "Cluster0", 6148 .phys_id = ROCKCHIP_VOP2_CLUSTER0, 6149 .type = CLUSTER_LAYER, 6150 .win_sel_port_offset = 0, 6151 .layer_sel_win_id = { 0, 0xff, 0xff, 0xff }, 6152 .reg_offset = 0, 6153 .axi_id = 0, 6154 .axi_yrgb_id = 0x02, 6155 .axi_uv_id = 0x03, 6156 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6157 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6158 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6159 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6160 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG, /* gt or avg */ 6161 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG, /* gt or avg */ 6162 .max_upscale_factor = 8, 6163 .max_downscale_factor = 8, 6164 }, 6165 }; 6166 6167 static struct vop2_vp_data rk3528_vp_data[2] = { 6168 { 6169 .feature = VOP_FEATURE_ALPHA_SCALE | VOP_FEATURE_OVERSCAN | VOP_FEATURE_POST_ACM | 6170 VOP_FEATURE_POST_CSC, 6171 .max_output = {4096, 4096}, 6172 .layer_mix_dly = 6, 6173 .hdr_mix_dly = 2, 6174 .win_dly = 8, 6175 }, 6176 { 6177 .feature = VOP_FEATURE_ALPHA_SCALE | VOP_FEATURE_OVERSCAN, 6178 .max_output = {1920, 1080}, 6179 .layer_mix_dly = 2, 6180 .hdr_mix_dly = 0, 6181 .win_dly = 8, 6182 }, 6183 }; 6184 6185 const struct vop2_data rk3528_vop = { 6186 .version = VOP_VERSION_RK3528, 6187 .nr_vps = 2, 6188 .vp_data = rk3528_vp_data, 6189 .win_data = rk3528_win_data, 6190 .plane_mask = rk3528_vp_plane_mask[0], 6191 .plane_table = rk3528_plane_table, 6192 .vp_primary_plane_order = rk3528_vp_primary_plane_order, 6193 .nr_layers = 5, 6194 .nr_mixers = 3, 6195 .nr_gammas = 2, 6196 .esmart_lb_mode = VOP3_ESMART_4K_2K_2K_MODE, 6197 .dump_regs = rk3528_dump_regs, 6198 .dump_regs_size = ARRAY_SIZE(rk3528_dump_regs), 6199 }; 6200 6201 static struct vop2_dump_regs rk3562_dump_regs[] = { 6202 { RK3568_REG_CFG_DONE, "SYS", 0, 0, 0, 0 }, 6203 { RK3528_OVL_SYS, "OVL_SYS", 0, 0, 0, 0 }, 6204 { RK3528_OVL_PORT0_CTRL, "OVL_VP0", RK3568_VP0_DSP_CTRL, 0x1, 31, 0 }, 6205 { RK3528_OVL_PORT1_CTRL, "OVL_VP1", RK3568_VP1_DSP_CTRL, 0x1, 31, 0 }, 6206 { RK3568_VP0_DSP_CTRL, "VP0", RK3568_VP0_DSP_CTRL, 0x1, 31, 0 }, 6207 { RK3568_VP1_DSP_CTRL, "VP1", RK3568_VP1_DSP_CTRL, 0x1, 31, 0 }, 6208 { RK3568_ESMART0_CTRL0, "Esmart0", RK3568_ESMART0_REGION0_CTRL, 0x1, 0, 1 }, 6209 { RK3568_ESMART1_CTRL0, "Esmart1", RK3568_ESMART1_REGION0_CTRL, 0x1, 0, 1 }, 6210 { RK3568_SMART0_CTRL0, "Esmart2", RK3568_SMART0_CTRL0, 0x1, 0, 1 }, 6211 { RK3568_SMART1_CTRL0, "Esmart3", RK3568_SMART1_CTRL0, 0x1, 0, 1 }, 6212 }; 6213 6214 static u8 rk3562_vp_primary_plane_order[ROCKCHIP_VOP2_LAYER_MAX] = { 6215 ROCKCHIP_VOP2_ESMART0, 6216 ROCKCHIP_VOP2_ESMART1, 6217 ROCKCHIP_VOP2_ESMART2, 6218 ROCKCHIP_VOP2_ESMART3, 6219 }; 6220 6221 static struct vop2_plane_table rk3562_plane_table[ROCKCHIP_VOP2_LAYER_MAX] = { 6222 {ROCKCHIP_VOP2_ESMART0, ESMART_LAYER}, 6223 {ROCKCHIP_VOP2_ESMART1, ESMART_LAYER}, 6224 {ROCKCHIP_VOP2_ESMART2, ESMART_LAYER}, 6225 {ROCKCHIP_VOP2_ESMART3, ESMART_LAYER}, 6226 }; 6227 6228 static struct vop2_vp_plane_mask rk3562_vp_plane_mask[VOP2_VP_MAX][VOP2_VP_MAX] = { 6229 { /* one display policy for hdmi */ 6230 {/* main display */ 6231 .primary_plane_id = ROCKCHIP_VOP2_ESMART0, 6232 .attached_layers_nr = 4, 6233 .attached_layers = { 6234 ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_ESMART1, 6235 ROCKCHIP_VOP2_ESMART2, ROCKCHIP_VOP2_ESMART3 6236 }, 6237 }, 6238 {/* second display */}, 6239 {/* third display */}, 6240 {/* fourth display */}, 6241 }, 6242 6243 { /* two display policy */ 6244 {/* main display */ 6245 .primary_plane_id = ROCKCHIP_VOP2_ESMART0, 6246 .attached_layers_nr = 2, 6247 .attached_layers = { 6248 ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_ESMART1 6249 }, 6250 }, 6251 6252 {/* second display */ 6253 .primary_plane_id = ROCKCHIP_VOP2_ESMART2, 6254 .attached_layers_nr = 2, 6255 .attached_layers = { 6256 ROCKCHIP_VOP2_ESMART2, ROCKCHIP_VOP2_ESMART3 6257 }, 6258 }, 6259 {/* third display */}, 6260 {/* fourth display */}, 6261 }, 6262 6263 {/* reserved */}, 6264 }; 6265 6266 static struct vop2_win_data rk3562_win_data[4] = { 6267 { 6268 .name = "Esmart0", 6269 .phys_id = ROCKCHIP_VOP2_ESMART0, 6270 .type = ESMART_LAYER, 6271 .win_sel_port_offset = 8, 6272 .layer_sel_win_id = { 0, 0, 0xff, 0xff }, 6273 .reg_offset = 0, 6274 .axi_id = 0, 6275 .axi_yrgb_id = 0x02, 6276 .axi_uv_id = 0x03, 6277 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6278 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6279 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6280 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6281 .max_upscale_factor = 8, 6282 .max_downscale_factor = 8, 6283 }, 6284 6285 { 6286 .name = "Esmart1", 6287 .phys_id = ROCKCHIP_VOP2_ESMART1, 6288 .type = ESMART_LAYER, 6289 .win_sel_port_offset = 10, 6290 .layer_sel_win_id = { 1, 1, 0xff, 0xff }, 6291 .reg_offset = 0x200, 6292 .axi_id = 0, 6293 .axi_yrgb_id = 0x04, 6294 .axi_uv_id = 0x05, 6295 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6296 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6297 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6298 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6299 .max_upscale_factor = 8, 6300 .max_downscale_factor = 8, 6301 }, 6302 6303 { 6304 .name = "Esmart2", 6305 .phys_id = ROCKCHIP_VOP2_ESMART2, 6306 .type = ESMART_LAYER, 6307 .win_sel_port_offset = 12, 6308 .layer_sel_win_id = { 2, 2, 0xff, 0xff }, 6309 .reg_offset = 0x400, 6310 .axi_id = 0, 6311 .axi_yrgb_id = 0x06, 6312 .axi_uv_id = 0x07, 6313 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6314 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6315 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6316 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6317 .max_upscale_factor = 8, 6318 .max_downscale_factor = 8, 6319 }, 6320 6321 { 6322 .name = "Esmart3", 6323 .phys_id = ROCKCHIP_VOP2_ESMART3, 6324 .type = ESMART_LAYER, 6325 .win_sel_port_offset = 14, 6326 .layer_sel_win_id = { 3, 3, 0xff, 0xff }, 6327 .reg_offset = 0x600, 6328 .axi_id = 0, 6329 .axi_yrgb_id = 0x08, 6330 .axi_uv_id = 0x0d, 6331 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6332 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6333 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6334 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6335 .max_upscale_factor = 8, 6336 .max_downscale_factor = 8, 6337 }, 6338 }; 6339 6340 static struct vop2_vp_data rk3562_vp_data[2] = { 6341 { 6342 .feature = VOP_FEATURE_ALPHA_SCALE | VOP_FEATURE_OVERSCAN, 6343 .max_output = {2048, 4096}, 6344 .win_dly = 6, 6345 .layer_mix_dly = 8, 6346 }, 6347 { 6348 .feature = VOP_FEATURE_ALPHA_SCALE | VOP_FEATURE_OVERSCAN, 6349 .max_output = {2048, 1080}, 6350 .win_dly = 8, 6351 .layer_mix_dly = 8, 6352 }, 6353 }; 6354 6355 const struct vop2_data rk3562_vop = { 6356 .version = VOP_VERSION_RK3562, 6357 .nr_vps = 2, 6358 .vp_data = rk3562_vp_data, 6359 .win_data = rk3562_win_data, 6360 .plane_mask = rk3562_vp_plane_mask[0], 6361 .plane_table = rk3562_plane_table, 6362 .vp_primary_plane_order = rk3562_vp_primary_plane_order, 6363 .nr_layers = 4, 6364 .nr_mixers = 3, 6365 .nr_gammas = 2, 6366 .esmart_lb_mode = VOP3_ESMART_2K_2K_2K_2K_MODE, 6367 .dump_regs = rk3562_dump_regs, 6368 .dump_regs_size = ARRAY_SIZE(rk3562_dump_regs), 6369 }; 6370 6371 static struct vop2_dump_regs rk3568_dump_regs[] = { 6372 { RK3568_REG_CFG_DONE, "SYS", 0, 0, 0, 0 }, 6373 { RK3568_OVL_CTRL, "OVL", 0, 0, 0, 0 }, 6374 { RK3568_VP0_DSP_CTRL, "VP0", RK3568_VP1_DSP_CTRL, 0x1, 31, 0 }, 6375 { RK3568_VP1_DSP_CTRL, "VP1", RK3568_VP1_DSP_CTRL, 0x1, 31, 0 }, 6376 { RK3568_VP2_DSP_CTRL, "VP2", RK3568_VP2_DSP_CTRL, 0x1, 31, 0 }, 6377 { RK3568_CLUSTER0_WIN0_CTRL0, "Cluster0", RK3568_CLUSTER0_WIN0_CTRL0, 0x1, 0, 1 }, 6378 { RK3568_CLUSTER1_WIN0_CTRL0, "Cluster1", RK3568_CLUSTER1_WIN0_CTRL0, 0x1, 0, 1 }, 6379 { RK3568_ESMART0_CTRL0, "Esmart0", RK3568_ESMART0_REGION0_CTRL, 0x1, 0, 1 }, 6380 { RK3568_ESMART1_CTRL0, "Esmart1", RK3568_ESMART1_REGION0_CTRL, 0x1, 0, 1 }, 6381 { RK3568_SMART0_CTRL0, "Smart0", RK3568_SMART0_REGION0_CTRL, 0x1, 0, 1 }, 6382 { RK3568_SMART1_CTRL0, "Smart1", RK3568_SMART1_REGION0_CTRL, 0x1, 0, 1 }, 6383 { RK3568_HDR_LUT_CTRL, "HDR", 0, 0, 0, 0 }, 6384 }; 6385 6386 static u8 rk3568_vp_primary_plane_order[ROCKCHIP_VOP2_LAYER_MAX] = { 6387 ROCKCHIP_VOP2_SMART0, 6388 ROCKCHIP_VOP2_SMART1, 6389 ROCKCHIP_VOP2_ESMART0, 6390 ROCKCHIP_VOP2_ESMART1, 6391 }; 6392 6393 static struct vop2_plane_table rk356x_plane_table[ROCKCHIP_VOP2_LAYER_MAX] = { 6394 {ROCKCHIP_VOP2_CLUSTER0, CLUSTER_LAYER}, 6395 {ROCKCHIP_VOP2_CLUSTER1, CLUSTER_LAYER}, 6396 {ROCKCHIP_VOP2_ESMART0, ESMART_LAYER}, 6397 {ROCKCHIP_VOP2_ESMART1, ESMART_LAYER}, 6398 {ROCKCHIP_VOP2_SMART0, SMART_LAYER}, 6399 {ROCKCHIP_VOP2_SMART0, SMART_LAYER}, 6400 }; 6401 6402 static struct vop2_vp_plane_mask rk356x_vp_plane_mask[VOP2_VP_MAX][VOP2_VP_MAX] = { 6403 { /* one display policy */ 6404 {/* main display */ 6405 .primary_plane_id = ROCKCHIP_VOP2_SMART0, 6406 .attached_layers_nr = 6, 6407 .attached_layers = { 6408 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_SMART0, 6409 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1, ROCKCHIP_VOP2_SMART1 6410 }, 6411 }, 6412 {/* second display */}, 6413 {/* third display */}, 6414 {/* fourth display */}, 6415 }, 6416 6417 { /* two display policy */ 6418 {/* main display */ 6419 .primary_plane_id = ROCKCHIP_VOP2_SMART0, 6420 .attached_layers_nr = 3, 6421 .attached_layers = { 6422 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_SMART0 6423 }, 6424 }, 6425 6426 {/* second display */ 6427 .primary_plane_id = ROCKCHIP_VOP2_SMART1, 6428 .attached_layers_nr = 3, 6429 .attached_layers = { 6430 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1, ROCKCHIP_VOP2_SMART1 6431 }, 6432 }, 6433 {/* third display */}, 6434 {/* fourth display */}, 6435 }, 6436 6437 { /* three display policy */ 6438 {/* main display */ 6439 .primary_plane_id = ROCKCHIP_VOP2_SMART0, 6440 .attached_layers_nr = 3, 6441 .attached_layers = { 6442 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, ROCKCHIP_VOP2_SMART0 6443 }, 6444 }, 6445 6446 {/* second display */ 6447 .primary_plane_id = ROCKCHIP_VOP2_SMART1, 6448 .attached_layers_nr = 2, 6449 .attached_layers = { 6450 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_SMART1 6451 }, 6452 }, 6453 6454 {/* third display */ 6455 .primary_plane_id = ROCKCHIP_VOP2_ESMART1, 6456 .attached_layers_nr = 1, 6457 .attached_layers = { ROCKCHIP_VOP2_ESMART1 }, 6458 }, 6459 6460 {/* fourth display */}, 6461 }, 6462 6463 {/* reserved for four display policy */}, 6464 }; 6465 6466 static struct vop2_win_data rk3568_win_data[6] = { 6467 { 6468 .name = "Cluster0", 6469 .phys_id = ROCKCHIP_VOP2_CLUSTER0, 6470 .type = CLUSTER_LAYER, 6471 .win_sel_port_offset = 0, 6472 .layer_sel_win_id = { 0, 0, 0, 0xff }, 6473 .reg_offset = 0, 6474 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6475 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6476 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6477 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6478 .max_upscale_factor = 4, 6479 .max_downscale_factor = 4, 6480 }, 6481 6482 { 6483 .name = "Cluster1", 6484 .phys_id = ROCKCHIP_VOP2_CLUSTER1, 6485 .type = CLUSTER_LAYER, 6486 .win_sel_port_offset = 1, 6487 .layer_sel_win_id = { 1, 1, 1, 0xff }, 6488 .reg_offset = 0x200, 6489 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6490 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6491 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6492 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6493 .max_upscale_factor = 4, 6494 .max_downscale_factor = 4, 6495 .source_win_id = ROCKCHIP_VOP2_CLUSTER0, 6496 .feature = WIN_FEATURE_MIRROR, 6497 }, 6498 6499 { 6500 .name = "Esmart0", 6501 .phys_id = ROCKCHIP_VOP2_ESMART0, 6502 .type = ESMART_LAYER, 6503 .win_sel_port_offset = 4, 6504 .layer_sel_win_id = { 2, 2, 2, 0xff }, 6505 .reg_offset = 0, 6506 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6507 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6508 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6509 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6510 .max_upscale_factor = 8, 6511 .max_downscale_factor = 8, 6512 }, 6513 6514 { 6515 .name = "Esmart1", 6516 .phys_id = ROCKCHIP_VOP2_ESMART1, 6517 .type = ESMART_LAYER, 6518 .win_sel_port_offset = 5, 6519 .layer_sel_win_id = { 6, 6, 6, 0xff }, 6520 .reg_offset = 0x200, 6521 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6522 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6523 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6524 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6525 .max_upscale_factor = 8, 6526 .max_downscale_factor = 8, 6527 .source_win_id = ROCKCHIP_VOP2_ESMART0, 6528 .feature = WIN_FEATURE_MIRROR, 6529 }, 6530 6531 { 6532 .name = "Smart0", 6533 .phys_id = ROCKCHIP_VOP2_SMART0, 6534 .type = SMART_LAYER, 6535 .win_sel_port_offset = 6, 6536 .layer_sel_win_id = { 3, 3, 3, 0xff }, 6537 .reg_offset = 0x400, 6538 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6539 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6540 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6541 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6542 .max_upscale_factor = 8, 6543 .max_downscale_factor = 8, 6544 }, 6545 6546 { 6547 .name = "Smart1", 6548 .phys_id = ROCKCHIP_VOP2_SMART1, 6549 .type = SMART_LAYER, 6550 .win_sel_port_offset = 7, 6551 .layer_sel_win_id = { 7, 7, 7, 0xff }, 6552 .reg_offset = 0x600, 6553 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6554 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6555 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6556 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6557 .max_upscale_factor = 8, 6558 .max_downscale_factor = 8, 6559 .source_win_id = ROCKCHIP_VOP2_SMART0, 6560 .feature = WIN_FEATURE_MIRROR, 6561 }, 6562 }; 6563 6564 static struct vop2_vp_data rk3568_vp_data[3] = { 6565 { 6566 .feature = VOP_FEATURE_OUTPUT_10BIT, 6567 .pre_scan_max_dly = 42, 6568 .max_output = {4096, 2304}, 6569 }, 6570 { 6571 .feature = 0, 6572 .pre_scan_max_dly = 40, 6573 .max_output = {2048, 1536}, 6574 }, 6575 { 6576 .feature = 0, 6577 .pre_scan_max_dly = 40, 6578 .max_output = {1920, 1080}, 6579 }, 6580 }; 6581 6582 const struct vop2_data rk3568_vop = { 6583 .version = VOP_VERSION_RK3568, 6584 .nr_vps = 3, 6585 .vp_data = rk3568_vp_data, 6586 .win_data = rk3568_win_data, 6587 .plane_mask = rk356x_vp_plane_mask[0], 6588 .plane_table = rk356x_plane_table, 6589 .vp_primary_plane_order = rk3568_vp_primary_plane_order, 6590 .nr_layers = 6, 6591 .nr_mixers = 5, 6592 .nr_gammas = 1, 6593 .dump_regs = rk3568_dump_regs, 6594 .dump_regs_size = ARRAY_SIZE(rk3568_dump_regs), 6595 }; 6596 6597 static u8 rk3576_vp_default_primary_plane[VOP2_VP_MAX] = { 6598 ROCKCHIP_VOP2_ESMART0, 6599 ROCKCHIP_VOP2_ESMART1, 6600 ROCKCHIP_VOP2_ESMART2, 6601 }; 6602 6603 static struct vop2_plane_table rk3576_plane_table[ROCKCHIP_VOP2_LAYER_MAX] = { 6604 {ROCKCHIP_VOP2_ESMART0, ESMART_LAYER}, 6605 {ROCKCHIP_VOP2_ESMART1, ESMART_LAYER}, 6606 {ROCKCHIP_VOP2_ESMART2, ESMART_LAYER}, 6607 {ROCKCHIP_VOP2_ESMART3, ESMART_LAYER}, 6608 {ROCKCHIP_VOP2_CLUSTER0, CLUSTER_LAYER}, 6609 {ROCKCHIP_VOP2_CLUSTER1, CLUSTER_LAYER}, 6610 }; 6611 6612 static struct vop2_dump_regs rk3576_dump_regs[] = { 6613 { RK3568_REG_CFG_DONE, "SYS", 0, 0, 0, 0, 0x200 }, 6614 { RK3528_OVL_SYS, "OVL_SYS", 0, 0, 0, 0, 0x50 }, 6615 { RK3528_OVL_PORT0_CTRL, "OVL_VP0", RK3568_VP0_DSP_CTRL, 0x1, 31, 0, 0x80 }, 6616 { RK3528_OVL_PORT1_CTRL, "OVL_VP1", RK3568_VP1_DSP_CTRL, 0x1, 31, 0, 0x80 }, 6617 { RK3576_OVL_PORT2_CTRL, "OVL_VP2", RK3568_VP2_DSP_CTRL, 0x1, 31, 0, 0x80 }, 6618 { RK3568_VP0_DSP_CTRL, "VP0", RK3568_VP0_DSP_CTRL, 0x1, 31, 0, 0x100 }, 6619 { RK3568_VP1_DSP_CTRL, "VP1", RK3568_VP0_DSP_CTRL, 0x1, 31, 0, 0x100 }, 6620 { RK3568_VP2_DSP_CTRL, "VP2", RK3568_VP0_DSP_CTRL, 0x1, 31, 0, 0x100 }, 6621 { RK3568_CLUSTER0_WIN0_CTRL0, "Cluster0", RK3568_CLUSTER0_WIN0_CTRL0, 0x1, 0, 1, 0x200 }, 6622 { RK3568_CLUSTER1_WIN0_CTRL0, "Cluster1", RK3568_CLUSTER1_WIN0_CTRL0, 0x1, 0, 1, 0x200 }, 6623 { RK3568_ESMART0_CTRL0, "Esmart0", RK3568_ESMART0_REGION0_CTRL, 0x1, 0, 1, 0x100 }, 6624 { RK3568_ESMART1_CTRL0, "Esmart1", RK3568_ESMART1_REGION0_CTRL, 0x1, 0, 1, 0x100 }, 6625 { RK3568_SMART0_CTRL0, "Esmart2", RK3568_SMART0_CTRL0, 0x1, 0, 1, 0x100 }, 6626 { RK3568_SMART1_CTRL0, "Esmart3", RK3568_SMART1_CTRL0, 0x1, 0, 1, 0x100 }, 6627 { RK3528_HDR_LUT_CTRL, "HDR", 0, 0, 0, 0, 0x100 }, 6628 }; 6629 6630 /* 6631 * RK3576 VOP with 2 Cluster win and 4 Esmart win. 6632 * Every Esmart win support 4 multi-region. 6633 * VP0 can use Cluster0/1 and Esmart0/2 6634 * VP1 can use Cluster0/1 and Esmart1/3 6635 * VP2 can use Esmart0/1/2/3 6636 * 6637 * Scale filter mode: 6638 * 6639 * * Cluster: 6640 * * Support prescale down: 6641 * * H/V: gt2/avg2 or gt4/avg4 6642 * * After prescale down: 6643 * * nearest-neighbor/bilinear/multi-phase filter for scale up 6644 * * nearest-neighbor/bilinear/multi-phase filter for scale down 6645 * 6646 * * Esmart: 6647 * * Support prescale down: 6648 * * H: gt2/avg2 or gt4/avg4 6649 * * V: gt2 or gt4 6650 * * After prescale down: 6651 * * nearest-neighbor/bilinear/bicubic for scale up 6652 * * nearest-neighbor/bilinear for scale down 6653 * 6654 * AXI config:: 6655 * 6656 * * Cluster0 win0: 0xa, 0xb [AXI0] 6657 * * Cluster0 win1: 0xc, 0xd [AXI0] 6658 * * Cluster1 win0: 0x6, 0x7 [AXI0] 6659 * * Cluster1 win1: 0x8, 0x9 [AXI0] 6660 * * Esmart0: 0x10, 0x11 [AXI0] 6661 * * Esmart1: 0x12, 0x13 [AXI0] 6662 * * Esmart2: 0xa, 0xb [AXI1] 6663 * * Esmart3: 0xc, 0xd [AXI1] 6664 * * Lut dma rid: 0x1, 0x2, 0x3 [AXI0] 6665 * * DCI dma rid: 0x4 [AXI0] 6666 * * Metadata rid: 0x5 [AXI0] 6667 * 6668 * * Limit: 6669 * * (1) 0x0 and 0xf can't be used; 6670 * * (2) cluster and lut/dci/metadata rid must smaller than 0xf, If Cluster rid is bigger than 0xf, 6671 * * VOP will dead at the system bandwidth very terrible scene. 6672 */ 6673 static struct vop2_win_data rk3576_win_data[6] = { 6674 { 6675 .name = "Esmart0", 6676 .phys_id = ROCKCHIP_VOP2_ESMART0, 6677 .type = ESMART_LAYER, 6678 .layer_sel_win_id = { 2, 0xff, 0, 0xff }, 6679 .reg_offset = 0x0, 6680 .supported_rotations = DRM_MODE_REFLECT_Y, 6681 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6682 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6683 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6684 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6685 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG,/* gt or avg */ 6686 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_GT,/* gt only */ 6687 .pd_id = VOP2_PD_ESMART, 6688 .axi_id = 0, 6689 .axi_yrgb_id = 0x10, 6690 .axi_uv_id = 0x11, 6691 .possible_crtcs = 0x5,/* vp0 or vp2 */ 6692 .max_upscale_factor = 8, 6693 .max_downscale_factor = 8, 6694 .feature = WIN_FEATURE_MULTI_AREA | WIN_FEATURE_Y2R_13BIT_DEPTH, 6695 }, 6696 { 6697 .name = "Esmart1", 6698 .phys_id = ROCKCHIP_VOP2_ESMART1, 6699 .type = ESMART_LAYER, 6700 .layer_sel_win_id = { 0xff, 2, 1, 0xff }, 6701 .reg_offset = 0x200, 6702 .supported_rotations = DRM_MODE_REFLECT_Y, 6703 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6704 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6705 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6706 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6707 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG,/* gt or avg */ 6708 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_GT,/* gt only */ 6709 .pd_id = VOP2_PD_ESMART, 6710 .axi_id = 0, 6711 .axi_yrgb_id = 0x12, 6712 .axi_uv_id = 0x13, 6713 .possible_crtcs = 0x6,/* vp1 or vp2 */ 6714 .max_upscale_factor = 8, 6715 .max_downscale_factor = 8, 6716 .feature = WIN_FEATURE_MULTI_AREA, 6717 }, 6718 6719 { 6720 .name = "Esmart2", 6721 .phys_id = ROCKCHIP_VOP2_ESMART2, 6722 .type = ESMART_LAYER, 6723 .layer_sel_win_id = { 3, 0xff, 2, 0xff }, 6724 .reg_offset = 0x400, 6725 .supported_rotations = DRM_MODE_REFLECT_Y, 6726 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6727 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6728 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6729 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6730 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG,/* gt or avg */ 6731 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_GT,/* gt only */ 6732 .pd_id = VOP2_PD_ESMART, 6733 .axi_id = 1, 6734 .axi_yrgb_id = 0x0a, 6735 .axi_uv_id = 0x0b, 6736 .possible_crtcs = 0x5,/* vp0 or vp2 */ 6737 .max_upscale_factor = 8, 6738 .max_downscale_factor = 8, 6739 .feature = WIN_FEATURE_MULTI_AREA, 6740 }, 6741 6742 { 6743 .name = "Esmart3", 6744 .phys_id = ROCKCHIP_VOP2_ESMART3, 6745 .type = ESMART_LAYER, 6746 .layer_sel_win_id = { 0xff, 3, 3, 0xff }, 6747 .reg_offset = 0x600, 6748 .supported_rotations = DRM_MODE_REFLECT_Y, 6749 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 6750 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6751 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6752 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6753 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG,/* gt or avg */ 6754 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_GT,/* gt only */ 6755 .pd_id = VOP2_PD_ESMART, 6756 .axi_id = 1, 6757 .axi_yrgb_id = 0x0c, 6758 .axi_uv_id = 0x0d, 6759 .possible_crtcs = 0x6,/* vp1 or vp2 */ 6760 .max_upscale_factor = 8, 6761 .max_downscale_factor = 8, 6762 .feature = WIN_FEATURE_MULTI_AREA, 6763 }, 6764 6765 { 6766 .name = "Cluster0", 6767 .phys_id = ROCKCHIP_VOP2_CLUSTER0, 6768 .type = CLUSTER_LAYER, 6769 .layer_sel_win_id = { 0, 0, 0xff, 0xff }, 6770 .reg_offset = 0x0, 6771 .supported_rotations = DRM_MODE_REFLECT_X | DRM_MODE_REFLECT_Y, 6772 .hsu_filter_mode = VOP2_SCALE_UP_BIL, 6773 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6774 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6775 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6776 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG,/* gt or avg */ 6777 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG,/* gt or avg */ 6778 .pd_id = VOP2_PD_CLUSTER, 6779 .axi_yrgb_id = 0x0a, 6780 .axi_uv_id = 0x0b, 6781 .possible_crtcs = 0x3,/* vp0 or vp1 */ 6782 .max_upscale_factor = 8, 6783 .max_downscale_factor = 8, 6784 .feature = WIN_FEATURE_AFBDC | WIN_FEATURE_CLUSTER_MAIN | 6785 WIN_FEATURE_Y2R_13BIT_DEPTH | WIN_FEATURE_DCI, 6786 }, 6787 6788 { 6789 .name = "Cluster1", 6790 .phys_id = ROCKCHIP_VOP2_CLUSTER1, 6791 .type = CLUSTER_LAYER, 6792 .layer_sel_win_id = { 1, 1, 0xff, 0xff }, 6793 .reg_offset = 0x200, 6794 .supported_rotations = DRM_MODE_REFLECT_X | DRM_MODE_REFLECT_Y, 6795 .hsu_filter_mode = VOP2_SCALE_UP_BIL, 6796 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6797 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 6798 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 6799 .hsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG,/* gt or avg */ 6800 .vsd_pre_filter_mode = VOP3_PRE_SCALE_DOWN_AVG,/* gt or avg */ 6801 .pd_id = VOP2_PD_CLUSTER, 6802 .axi_yrgb_id = 0x06, 6803 .axi_uv_id = 0x07, 6804 .possible_crtcs = 0x3,/* vp0 or vp1 */ 6805 .max_upscale_factor = 8, 6806 .max_downscale_factor = 8, 6807 .feature = WIN_FEATURE_AFBDC | WIN_FEATURE_CLUSTER_MAIN | 6808 WIN_FEATURE_Y2R_13BIT_DEPTH, 6809 }, 6810 }; 6811 6812 /* 6813 * RK3576 VP0 has 8 lines post linebuffer, when full post line buffer is less 4, 6814 * the urgency signal will be set to 1, when full post line buffer is over 6, the 6815 * urgency signal will be set to 0. 6816 */ 6817 static struct vop_urgency rk3576_vp0_urgency = { 6818 .urgen_thl = 4, 6819 .urgen_thh = 6, 6820 }; 6821 6822 static struct vop2_vp_data rk3576_vp_data[3] = { 6823 { 6824 .feature = VOP_FEATURE_ALPHA_SCALE | VOP_FEATURE_OVERSCAN | VOP_FEATURE_VIVID_HDR | 6825 VOP_FEATURE_POST_ACM | VOP_FEATURE_POST_CSC | VOP_FEATURE_OUTPUT_10BIT | 6826 VOP_FEATURE_POST_FRC_V2 | VOP_FEATURE_POST_SHARP, 6827 .max_output = { 4096, 4096 }, 6828 .hdrvivid_dly = 21, 6829 .sdr2hdr_dly = 21, 6830 .layer_mix_dly = 8, 6831 .hdr_mix_dly = 2, 6832 .win_dly = 10, 6833 .pixel_rate = 2, 6834 .urgency = &rk3576_vp0_urgency, 6835 }, 6836 { 6837 .feature = VOP_FEATURE_ALPHA_SCALE | VOP_FEATURE_OVERSCAN | 6838 VOP_FEATURE_OUTPUT_10BIT | VOP_FEATURE_POST_FRC_V2, 6839 .max_output = { 2560, 2560 }, 6840 .hdrvivid_dly = 0, 6841 .sdr2hdr_dly = 0, 6842 .layer_mix_dly = 6, 6843 .hdr_mix_dly = 0, 6844 .win_dly = 10, 6845 .pixel_rate = 1, 6846 }, 6847 { 6848 .feature = VOP_FEATURE_ALPHA_SCALE | VOP_FEATURE_OVERSCAN, 6849 .max_output = { 1920, 1920 }, 6850 .hdrvivid_dly = 0, 6851 .sdr2hdr_dly = 0, 6852 .layer_mix_dly = 6, 6853 .hdr_mix_dly = 0, 6854 .win_dly = 10, 6855 .pixel_rate = 1, 6856 }, 6857 }; 6858 6859 static struct vop2_power_domain_data rk3576_vop_pd_data[] = { 6860 { 6861 .id = VOP2_PD_CLUSTER, 6862 .module_id_mask = BIT(ROCKCHIP_VOP2_CLUSTER0) | BIT(ROCKCHIP_VOP2_CLUSTER1), 6863 }, 6864 { 6865 .id = VOP2_PD_ESMART, 6866 .module_id_mask = BIT(ROCKCHIP_VOP2_ESMART0) | BIT(ROCKCHIP_VOP2_ESMART1) | 6867 BIT(ROCKCHIP_VOP2_ESMART2) | BIT(ROCKCHIP_VOP2_ESMART3), 6868 }, 6869 }; 6870 6871 static const struct vop2_esmart_lb_map rk3576_esmart_lb_mode_map[] = { 6872 {VOP3_ESMART_4K_4K_4K_MODE, 2}, 6873 {VOP3_ESMART_4K_4K_2K_2K_MODE, 3} 6874 }; 6875 6876 const struct vop2_data rk3576_vop = { 6877 .version = VOP_VERSION_RK3576, 6878 .nr_vps = 3, 6879 .nr_mixers = 4, 6880 .nr_layers = 6, 6881 .nr_gammas = 3, 6882 .esmart_lb_mode = VOP3_ESMART_4K_4K_2K_2K_MODE, 6883 .esmart_lb_mode_num = ARRAY_SIZE(rk3576_esmart_lb_mode_map), 6884 .esmart_lb_mode_map = rk3576_esmart_lb_mode_map, 6885 .vp_data = rk3576_vp_data, 6886 .win_data = rk3576_win_data, 6887 .plane_table = rk3576_plane_table, 6888 .pd = rk3576_vop_pd_data, 6889 .vp_default_primary_plane = rk3576_vp_default_primary_plane, 6890 .nr_pd = ARRAY_SIZE(rk3576_vop_pd_data), 6891 .dump_regs = rk3576_dump_regs, 6892 .dump_regs_size = ARRAY_SIZE(rk3576_dump_regs), 6893 }; 6894 6895 static u8 rk3588_vp_primary_plane_order[ROCKCHIP_VOP2_LAYER_MAX] = { 6896 ROCKCHIP_VOP2_ESMART0, 6897 ROCKCHIP_VOP2_ESMART1, 6898 ROCKCHIP_VOP2_ESMART2, 6899 ROCKCHIP_VOP2_ESMART3, 6900 ROCKCHIP_VOP2_CLUSTER0, 6901 ROCKCHIP_VOP2_CLUSTER1, 6902 ROCKCHIP_VOP2_CLUSTER2, 6903 ROCKCHIP_VOP2_CLUSTER3, 6904 }; 6905 6906 static struct vop2_plane_table rk3588_plane_table[ROCKCHIP_VOP2_LAYER_MAX] = { 6907 {ROCKCHIP_VOP2_CLUSTER0, CLUSTER_LAYER}, 6908 {ROCKCHIP_VOP2_CLUSTER1, CLUSTER_LAYER}, 6909 {ROCKCHIP_VOP2_CLUSTER2, CLUSTER_LAYER}, 6910 {ROCKCHIP_VOP2_CLUSTER3, CLUSTER_LAYER}, 6911 {ROCKCHIP_VOP2_ESMART0, ESMART_LAYER}, 6912 {ROCKCHIP_VOP2_ESMART1, ESMART_LAYER}, 6913 {ROCKCHIP_VOP2_ESMART2, ESMART_LAYER}, 6914 {ROCKCHIP_VOP2_ESMART3, ESMART_LAYER}, 6915 }; 6916 6917 static struct vop2_dump_regs rk3588_dump_regs[] = { 6918 { RK3568_REG_CFG_DONE, "SYS", 0, 0, 0, 0 }, 6919 { RK3568_OVL_CTRL, "OVL", 0, 0, 0, 0 }, 6920 { RK3568_VP0_DSP_CTRL, "VP0", RK3568_VP0_DSP_CTRL, 0x1, 31, 0 }, 6921 { RK3568_VP1_DSP_CTRL, "VP1", RK3568_VP1_DSP_CTRL, 0x1, 31, 0 }, 6922 { RK3568_VP2_DSP_CTRL, "VP2", RK3568_VP2_DSP_CTRL, 0x1, 31, 0 }, 6923 { RK3588_VP3_DSP_CTRL, "VP3", RK3588_VP3_DSP_CTRL, 0x1, 31, 0 }, 6924 { RK3568_CLUSTER0_WIN0_CTRL0, "Cluster0", RK3568_CLUSTER0_WIN0_CTRL0, 0x1, 0, 1 }, 6925 { RK3568_CLUSTER1_WIN0_CTRL0, "Cluster1", RK3568_CLUSTER1_WIN0_CTRL0, 0x1, 0, 1 }, 6926 { RK3588_CLUSTER2_WIN0_CTRL0, "Cluster2", RK3588_CLUSTER2_WIN0_CTRL0, 0x1, 0, 1 }, 6927 { RK3588_CLUSTER3_WIN0_CTRL0, "Cluster3", RK3588_CLUSTER3_WIN0_CTRL0, 0x1, 0, 1 }, 6928 { RK3568_ESMART0_CTRL0, "Esmart0", RK3568_ESMART0_REGION0_CTRL, 0x1, 0, 1 }, 6929 { RK3568_ESMART1_CTRL0, "Esmart1", RK3568_ESMART1_REGION0_CTRL, 0x1, 0, 1 }, 6930 { RK3568_SMART0_CTRL0, "Esmart2", RK3568_SMART0_REGION0_CTRL, 0x1, 0, 1 }, 6931 { RK3568_SMART1_CTRL0, "Esmart3", RK3568_SMART1_REGION0_CTRL, 0x1, 0, 1 }, 6932 { RK3568_HDR_LUT_CTRL, "HDR", 0, 0, 0, 0 }, 6933 }; 6934 6935 static struct vop2_vp_plane_mask rk3588_vp_plane_mask[VOP2_VP_MAX][VOP2_VP_MAX] = { 6936 { /* one display policy */ 6937 {/* main display */ 6938 .primary_plane_id = ROCKCHIP_VOP2_ESMART0, 6939 .attached_layers_nr = 4, 6940 .attached_layers = { 6941 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, 6942 ROCKCHIP_VOP2_CLUSTER2, ROCKCHIP_VOP2_ESMART2 6943 }, 6944 }, 6945 6946 {/* planes for the splice mode */ 6947 .primary_plane_id = ROCKCHIP_VOP2_ESMART1, 6948 .attached_layers_nr = 4, 6949 .attached_layers = { 6950 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1, 6951 ROCKCHIP_VOP2_CLUSTER3, ROCKCHIP_VOP2_ESMART3 6952 }, 6953 }, 6954 {/* third display */}, 6955 {/* fourth display */}, 6956 }, 6957 6958 { /* two display policy */ 6959 {/* main display */ 6960 .primary_plane_id = ROCKCHIP_VOP2_ESMART0, 6961 .attached_layers_nr = 4, 6962 .attached_layers = { 6963 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0, 6964 ROCKCHIP_VOP2_CLUSTER2, ROCKCHIP_VOP2_ESMART2 6965 }, 6966 }, 6967 6968 {/* second display */ 6969 .primary_plane_id = ROCKCHIP_VOP2_ESMART1, 6970 .attached_layers_nr = 4, 6971 .attached_layers = { 6972 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1, 6973 ROCKCHIP_VOP2_CLUSTER3, ROCKCHIP_VOP2_ESMART3 6974 }, 6975 }, 6976 {/* third display */}, 6977 {/* fourth display */}, 6978 }, 6979 6980 { /* three display policy */ 6981 {/* main display */ 6982 .primary_plane_id = ROCKCHIP_VOP2_ESMART0, 6983 .attached_layers_nr = 3, 6984 .attached_layers = { 6985 ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_CLUSTER2, 6986 ROCKCHIP_VOP2_ESMART0 6987 }, 6988 }, 6989 6990 {/* second display */ 6991 .primary_plane_id = ROCKCHIP_VOP2_ESMART1, 6992 .attached_layers_nr = 3, 6993 .attached_layers = { 6994 ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_CLUSTER3, 6995 ROCKCHIP_VOP2_ESMART1 6996 }, 6997 }, 6998 6999 {/* third display */ 7000 .primary_plane_id = ROCKCHIP_VOP2_ESMART2, 7001 .attached_layers_nr = 2, 7002 .attached_layers = { ROCKCHIP_VOP2_ESMART2, ROCKCHIP_VOP2_ESMART3 }, 7003 }, 7004 7005 {/* fourth display */}, 7006 }, 7007 7008 { /* four display policy */ 7009 {/* main display */ 7010 .primary_plane_id = ROCKCHIP_VOP2_ESMART0, 7011 .attached_layers_nr = 2, 7012 .attached_layers = { ROCKCHIP_VOP2_CLUSTER0, ROCKCHIP_VOP2_ESMART0 }, 7013 }, 7014 7015 {/* second display */ 7016 .primary_plane_id = ROCKCHIP_VOP2_ESMART1, 7017 .attached_layers_nr = 2, 7018 .attached_layers = { ROCKCHIP_VOP2_CLUSTER1, ROCKCHIP_VOP2_ESMART1 }, 7019 }, 7020 7021 {/* third display */ 7022 .primary_plane_id = ROCKCHIP_VOP2_ESMART2, 7023 .attached_layers_nr = 2, 7024 .attached_layers = { ROCKCHIP_VOP2_CLUSTER2, ROCKCHIP_VOP2_ESMART2 }, 7025 }, 7026 7027 {/* fourth display */ 7028 .primary_plane_id = ROCKCHIP_VOP2_ESMART3, 7029 .attached_layers_nr = 2, 7030 .attached_layers = { ROCKCHIP_VOP2_CLUSTER3, ROCKCHIP_VOP2_ESMART3 }, 7031 }, 7032 }, 7033 7034 }; 7035 7036 static struct vop2_win_data rk3588_win_data[8] = { 7037 { 7038 .name = "Cluster0", 7039 .phys_id = ROCKCHIP_VOP2_CLUSTER0, 7040 .splice_win_id = ROCKCHIP_VOP2_CLUSTER1, 7041 .type = CLUSTER_LAYER, 7042 .win_sel_port_offset = 0, 7043 .layer_sel_win_id = { 0, 0, 0, 0 }, 7044 .reg_offset = 0, 7045 .axi_id = 0, 7046 .axi_yrgb_id = 2, 7047 .axi_uv_id = 3, 7048 .pd_id = VOP2_PD_CLUSTER0, 7049 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 7050 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7051 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 7052 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7053 .max_upscale_factor = 4, 7054 .max_downscale_factor = 4, 7055 }, 7056 7057 { 7058 .name = "Cluster1", 7059 .phys_id = ROCKCHIP_VOP2_CLUSTER1, 7060 .type = CLUSTER_LAYER, 7061 .win_sel_port_offset = 1, 7062 .layer_sel_win_id = { 1, 1, 1, 1 }, 7063 .reg_offset = 0x200, 7064 .axi_id = 0, 7065 .axi_yrgb_id = 6, 7066 .axi_uv_id = 7, 7067 .pd_id = VOP2_PD_CLUSTER1, 7068 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 7069 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7070 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 7071 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7072 .max_upscale_factor = 4, 7073 .max_downscale_factor = 4, 7074 }, 7075 7076 { 7077 .name = "Cluster2", 7078 .phys_id = ROCKCHIP_VOP2_CLUSTER2, 7079 .splice_win_id = ROCKCHIP_VOP2_CLUSTER3, 7080 .type = CLUSTER_LAYER, 7081 .win_sel_port_offset = 2, 7082 .layer_sel_win_id = { 4, 4, 4, 4 }, 7083 .reg_offset = 0x400, 7084 .axi_id = 1, 7085 .axi_yrgb_id = 2, 7086 .axi_uv_id = 3, 7087 .pd_id = VOP2_PD_CLUSTER2, 7088 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 7089 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7090 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 7091 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7092 .max_upscale_factor = 4, 7093 .max_downscale_factor = 4, 7094 }, 7095 7096 { 7097 .name = "Cluster3", 7098 .phys_id = ROCKCHIP_VOP2_CLUSTER3, 7099 .type = CLUSTER_LAYER, 7100 .win_sel_port_offset = 3, 7101 .layer_sel_win_id = { 5, 5, 5, 5 }, 7102 .reg_offset = 0x600, 7103 .axi_id = 1, 7104 .axi_yrgb_id = 6, 7105 .axi_uv_id = 7, 7106 .pd_id = VOP2_PD_CLUSTER3, 7107 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 7108 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7109 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 7110 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7111 .max_upscale_factor = 4, 7112 .max_downscale_factor = 4, 7113 }, 7114 7115 { 7116 .name = "Esmart0", 7117 .phys_id = ROCKCHIP_VOP2_ESMART0, 7118 .splice_win_id = ROCKCHIP_VOP2_ESMART1, 7119 .type = ESMART_LAYER, 7120 .win_sel_port_offset = 4, 7121 .layer_sel_win_id = { 2, 2, 2, 2 }, 7122 .reg_offset = 0, 7123 .axi_id = 0, 7124 .axi_yrgb_id = 0x0a, 7125 .axi_uv_id = 0x0b, 7126 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 7127 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7128 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 7129 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7130 .max_upscale_factor = 8, 7131 .max_downscale_factor = 8, 7132 }, 7133 7134 { 7135 .name = "Esmart1", 7136 .phys_id = ROCKCHIP_VOP2_ESMART1, 7137 .type = ESMART_LAYER, 7138 .win_sel_port_offset = 5, 7139 .layer_sel_win_id = { 3, 3, 3, 3 }, 7140 .reg_offset = 0x200, 7141 .axi_id = 0, 7142 .axi_yrgb_id = 0x0c, 7143 .axi_uv_id = 0x0d, 7144 .pd_id = VOP2_PD_ESMART, 7145 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 7146 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7147 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 7148 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7149 .max_upscale_factor = 8, 7150 .max_downscale_factor = 8, 7151 }, 7152 7153 { 7154 .name = "Esmart2", 7155 .phys_id = ROCKCHIP_VOP2_ESMART2, 7156 .splice_win_id = ROCKCHIP_VOP2_ESMART3, 7157 .type = ESMART_LAYER, 7158 .win_sel_port_offset = 6, 7159 .layer_sel_win_id = { 6, 6, 6, 6 }, 7160 .reg_offset = 0x400, 7161 .axi_id = 1, 7162 .axi_yrgb_id = 0x0a, 7163 .axi_uv_id = 0x0b, 7164 .pd_id = VOP2_PD_ESMART, 7165 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 7166 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7167 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 7168 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7169 .max_upscale_factor = 8, 7170 .max_downscale_factor = 8, 7171 }, 7172 7173 { 7174 .name = "Esmart3", 7175 .phys_id = ROCKCHIP_VOP2_ESMART3, 7176 .type = ESMART_LAYER, 7177 .win_sel_port_offset = 7, 7178 .layer_sel_win_id = { 7, 7, 7, 7 }, 7179 .reg_offset = 0x600, 7180 .axi_id = 1, 7181 .axi_yrgb_id = 0x0c, 7182 .axi_uv_id = 0x0d, 7183 .pd_id = VOP2_PD_ESMART, 7184 .hsu_filter_mode = VOP2_SCALE_UP_BIC, 7185 .hsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7186 .vsu_filter_mode = VOP2_SCALE_UP_BIL, 7187 .vsd_filter_mode = VOP2_SCALE_DOWN_BIL, 7188 .max_upscale_factor = 8, 7189 .max_downscale_factor = 8, 7190 }, 7191 }; 7192 7193 static struct dsc_error_info dsc_ecw[] = { 7194 {0x00000000, "no error detected by DSC encoder"}, 7195 {0x0030ffff, "bits per component error"}, 7196 {0x0040ffff, "multiple mode error"}, 7197 {0x0050ffff, "line buffer depth error"}, 7198 {0x0060ffff, "minor version error"}, 7199 {0x0070ffff, "picture height error"}, 7200 {0x0080ffff, "picture width error"}, 7201 {0x0090ffff, "number of slices error"}, 7202 {0x00c0ffff, "slice height Error "}, 7203 {0x00d0ffff, "slice width error"}, 7204 {0x00e0ffff, "second line BPG offset error"}, 7205 {0x00f0ffff, "non second line BPG offset error"}, 7206 {0x0100ffff, "PPS ID error"}, 7207 {0x0110ffff, "bits per pixel (BPP) Error"}, 7208 {0x0120ffff, "buffer flow error"}, /* dsc_buffer_flow */ 7209 7210 {0x01510001, "slice 0 RC buffer model overflow error"}, 7211 {0x01510002, "slice 1 RC buffer model overflow error"}, 7212 {0x01510004, "slice 2 RC buffer model overflow error"}, 7213 {0x01510008, "slice 3 RC buffer model overflow error"}, 7214 {0x01510010, "slice 4 RC buffer model overflow error"}, 7215 {0x01510020, "slice 5 RC buffer model overflow error"}, 7216 {0x01510040, "slice 6 RC buffer model overflow error"}, 7217 {0x01510080, "slice 7 RC buffer model overflow error"}, 7218 7219 {0x01610001, "slice 0 RC buffer model underflow error"}, 7220 {0x01610002, "slice 1 RC buffer model underflow error"}, 7221 {0x01610004, "slice 2 RC buffer model underflow error"}, 7222 {0x01610008, "slice 3 RC buffer model underflow error"}, 7223 {0x01610010, "slice 4 RC buffer model underflow error"}, 7224 {0x01610020, "slice 5 RC buffer model underflow error"}, 7225 {0x01610040, "slice 6 RC buffer model underflow error"}, 7226 {0x01610080, "slice 7 RC buffer model underflow error"}, 7227 7228 {0xffffffff, "unsuccessful RESET cycle status"}, 7229 {0x00a0ffff, "ICH full error precision settings error"}, 7230 {0x0020ffff, "native mode"}, 7231 }; 7232 7233 static struct dsc_error_info dsc_buffer_flow[] = { 7234 {0x00000000, "rate buffer status"}, 7235 {0x00000001, "line buffer status"}, 7236 {0x00000002, "decoder model status"}, 7237 {0x00000003, "pixel buffer status"}, 7238 {0x00000004, "balance fifo buffer status"}, 7239 {0x00000005, "syntax element fifo status"}, 7240 }; 7241 7242 static struct vop2_dsc_data rk3588_dsc_data[] = { 7243 { 7244 .id = ROCKCHIP_VOP2_DSC_8K, 7245 .pd_id = VOP2_PD_DSC_8K, 7246 .max_slice_num = 8, 7247 .max_linebuf_depth = 11, 7248 .min_bits_per_pixel = 8, 7249 .dsc_txp_clk_src_name = "dsc_8k_txp_clk_src", 7250 .dsc_txp_clk_name = "dsc_8k_txp_clk", 7251 .dsc_pxl_clk_name = "dsc_8k_pxl_clk", 7252 .dsc_cds_clk_name = "dsc_8k_cds_clk", 7253 }, 7254 7255 { 7256 .id = ROCKCHIP_VOP2_DSC_4K, 7257 .pd_id = VOP2_PD_DSC_4K, 7258 .max_slice_num = 2, 7259 .max_linebuf_depth = 11, 7260 .min_bits_per_pixel = 8, 7261 .dsc_txp_clk_src_name = "dsc_4k_txp_clk_src", 7262 .dsc_txp_clk_name = "dsc_4k_txp_clk", 7263 .dsc_pxl_clk_name = "dsc_4k_pxl_clk", 7264 .dsc_cds_clk_name = "dsc_4k_cds_clk", 7265 }, 7266 }; 7267 7268 static struct vop2_vp_data rk3588_vp_data[4] = { 7269 { 7270 .splice_vp_id = 1, 7271 .feature = VOP_FEATURE_OUTPUT_10BIT, 7272 .pre_scan_max_dly = 54, 7273 .max_dclk = 600000, 7274 .max_output = {7680, 4320}, 7275 }, 7276 { 7277 .feature = VOP_FEATURE_OUTPUT_10BIT, 7278 .pre_scan_max_dly = 54, 7279 .max_dclk = 600000, 7280 .max_output = {4096, 2304}, 7281 }, 7282 { 7283 .feature = VOP_FEATURE_OUTPUT_10BIT, 7284 .pre_scan_max_dly = 52, 7285 .max_dclk = 600000, 7286 .max_output = {4096, 2304}, 7287 }, 7288 { 7289 .feature = 0, 7290 .pre_scan_max_dly = 52, 7291 .max_dclk = 200000, 7292 .max_output = {1920, 1080}, 7293 }, 7294 }; 7295 7296 static struct vop2_power_domain_data rk3588_vop_pd_data[] = { 7297 { 7298 .id = VOP2_PD_CLUSTER0, 7299 .module_id_mask = BIT(ROCKCHIP_VOP2_CLUSTER0), 7300 }, 7301 { 7302 .id = VOP2_PD_CLUSTER1, 7303 .module_id_mask = BIT(ROCKCHIP_VOP2_CLUSTER1), 7304 .parent_id = VOP2_PD_CLUSTER0, 7305 }, 7306 { 7307 .id = VOP2_PD_CLUSTER2, 7308 .module_id_mask = BIT(ROCKCHIP_VOP2_CLUSTER2), 7309 .parent_id = VOP2_PD_CLUSTER0, 7310 }, 7311 { 7312 .id = VOP2_PD_CLUSTER3, 7313 .module_id_mask = BIT(ROCKCHIP_VOP2_CLUSTER3), 7314 .parent_id = VOP2_PD_CLUSTER0, 7315 }, 7316 { 7317 .id = VOP2_PD_ESMART, 7318 .module_id_mask = BIT(ROCKCHIP_VOP2_ESMART1) | 7319 BIT(ROCKCHIP_VOP2_ESMART2) | 7320 BIT(ROCKCHIP_VOP2_ESMART3), 7321 }, 7322 { 7323 .id = VOP2_PD_DSC_8K, 7324 .module_id_mask = BIT(ROCKCHIP_VOP2_DSC_8K), 7325 }, 7326 { 7327 .id = VOP2_PD_DSC_4K, 7328 .module_id_mask = BIT(ROCKCHIP_VOP2_DSC_4K), 7329 }, 7330 }; 7331 7332 const struct vop2_data rk3588_vop = { 7333 .version = VOP_VERSION_RK3588, 7334 .nr_vps = 4, 7335 .vp_data = rk3588_vp_data, 7336 .win_data = rk3588_win_data, 7337 .plane_mask = rk3588_vp_plane_mask[0], 7338 .plane_table = rk3588_plane_table, 7339 .pd = rk3588_vop_pd_data, 7340 .dsc = rk3588_dsc_data, 7341 .dsc_error_ecw = dsc_ecw, 7342 .dsc_error_buffer_flow = dsc_buffer_flow, 7343 .vp_primary_plane_order = rk3588_vp_primary_plane_order, 7344 .nr_layers = 8, 7345 .nr_mixers = 7, 7346 .nr_gammas = 4, 7347 .nr_pd = ARRAY_SIZE(rk3588_vop_pd_data), 7348 .nr_dscs = 2, 7349 .nr_dsc_ecw = ARRAY_SIZE(dsc_ecw), 7350 .nr_dsc_buffer_flow = ARRAY_SIZE(dsc_buffer_flow), 7351 .dump_regs = rk3588_dump_regs, 7352 .dump_regs_size = ARRAY_SIZE(rk3588_dump_regs), 7353 }; 7354 7355 const struct rockchip_crtc_funcs rockchip_vop2_funcs = { 7356 .preinit = rockchip_vop2_preinit, 7357 .prepare = rockchip_vop2_prepare, 7358 .init = rockchip_vop2_init, 7359 .set_plane = rockchip_vop2_set_plane, 7360 .enable = rockchip_vop2_enable, 7361 .post_enable = rockchip_vop2_post_enable, 7362 .disable = rockchip_vop2_disable, 7363 .fixup_dts = rockchip_vop2_fixup_dts, 7364 .send_mcu_cmd = rockchip_vop2_send_mcu_cmd, 7365 .check = rockchip_vop2_check, 7366 .mode_valid = rockchip_vop2_mode_valid, 7367 .mode_fixup = rockchip_vop2_mode_fixup, 7368 .plane_check = rockchip_vop2_plane_check, 7369 .regs_dump = rockchip_vop2_regs_dump, 7370 .active_regs_dump = rockchip_vop2_active_regs_dump, 7371 .apply_soft_te = rockchip_vop2_apply_soft_te, 7372 }; 7373