1 /* 2 * Marvell Dove pinctrl driver based on mvebu pinctrl core 3 * 4 * Author: Sebastian Hesselbarth <sebastian.hesselbarth@gmail.com> 5 * 6 * This program is free software; you can redistribute it and/or modify 7 * it under the terms of the GNU General Public License as published by 8 * the Free Software Foundation; either version 2 of the License, or 9 * (at your option) any later version. 10 */ 11 12 #include <linux/err.h> 13 #include <linux/init.h> 14 #include <linux/io.h> 15 #include <linux/module.h> 16 #include <linux/bitops.h> 17 #include <linux/platform_device.h> 18 #include <linux/clk.h> 19 #include <linux/of.h> 20 #include <linux/of_device.h> 21 #include <linux/pinctrl/pinctrl.h> 22 23 #include "pinctrl-mvebu.h" 24 25 #define DOVE_SB_REGS_VIRT_BASE IOMEM(0xfde00000) 26 #define DOVE_MPP_VIRT_BASE (DOVE_SB_REGS_VIRT_BASE + 0xd0200) 27 #define DOVE_PMU_MPP_GENERAL_CTRL (DOVE_MPP_VIRT_BASE + 0x10) 28 #define DOVE_AU0_AC97_SEL BIT(16) 29 #define DOVE_GLOBAL_CONFIG_1 (DOVE_SB_REGS_VIRT_BASE + 0xe802C) 30 #define DOVE_TWSI_ENABLE_OPTION1 BIT(7) 31 #define DOVE_GLOBAL_CONFIG_2 (DOVE_SB_REGS_VIRT_BASE + 0xe8030) 32 #define DOVE_TWSI_ENABLE_OPTION2 BIT(20) 33 #define DOVE_TWSI_ENABLE_OPTION3 BIT(21) 34 #define DOVE_TWSI_OPTION3_GPIO BIT(22) 35 #define DOVE_SSP_CTRL_STATUS_1 (DOVE_SB_REGS_VIRT_BASE + 0xe8034) 36 #define DOVE_SSP_ON_AU1 BIT(0) 37 #define DOVE_MPP_GENERAL_VIRT_BASE (DOVE_SB_REGS_VIRT_BASE + 0xe803c) 38 #define DOVE_AU1_SPDIFO_GPIO_EN BIT(1) 39 #define DOVE_NAND_GPIO_EN BIT(0) 40 #define DOVE_GPIO_LO_VIRT_BASE (DOVE_SB_REGS_VIRT_BASE + 0xd0400) 41 #define DOVE_MPP_CTRL4_VIRT_BASE (DOVE_GPIO_LO_VIRT_BASE + 0x40) 42 #define DOVE_SPI_GPIO_SEL BIT(5) 43 #define DOVE_UART1_GPIO_SEL BIT(4) 44 #define DOVE_AU1_GPIO_SEL BIT(3) 45 #define DOVE_CAM_GPIO_SEL BIT(2) 46 #define DOVE_SD1_GPIO_SEL BIT(1) 47 #define DOVE_SD0_GPIO_SEL BIT(0) 48 49 #define MPPS_PER_REG 8 50 #define MPP_BITS 4 51 #define MPP_MASK 0xf 52 53 #define CONFIG_PMU BIT(4) 54 55 static int dove_pmu_mpp_ctrl_get(struct mvebu_mpp_ctrl *ctrl, 56 unsigned long *config) 57 { 58 unsigned off = (ctrl->pid / MPPS_PER_REG) * MPP_BITS; 59 unsigned shift = (ctrl->pid % MPPS_PER_REG) * MPP_BITS; 60 unsigned long pmu = readl(DOVE_PMU_MPP_GENERAL_CTRL); 61 unsigned long mpp = readl(DOVE_MPP_VIRT_BASE + off); 62 63 if (pmu & (1 << ctrl->pid)) 64 *config = CONFIG_PMU; 65 else 66 *config = (mpp >> shift) & MPP_MASK; 67 return 0; 68 } 69 70 static int dove_pmu_mpp_ctrl_set(struct mvebu_mpp_ctrl *ctrl, 71 unsigned long config) 72 { 73 unsigned off = (ctrl->pid / MPPS_PER_REG) * MPP_BITS; 74 unsigned shift = (ctrl->pid % MPPS_PER_REG) * MPP_BITS; 75 unsigned long pmu = readl(DOVE_PMU_MPP_GENERAL_CTRL); 76 unsigned long mpp = readl(DOVE_MPP_VIRT_BASE + off); 77 78 if (config == CONFIG_PMU) 79 writel(pmu | (1 << ctrl->pid), DOVE_PMU_MPP_GENERAL_CTRL); 80 else { 81 writel(pmu & ~(1 << ctrl->pid), DOVE_PMU_MPP_GENERAL_CTRL); 82 mpp &= ~(MPP_MASK << shift); 83 mpp |= config << shift; 84 writel(mpp, DOVE_MPP_VIRT_BASE + off); 85 } 86 return 0; 87 } 88 89 static int dove_mpp4_ctrl_get(struct mvebu_mpp_ctrl *ctrl, 90 unsigned long *config) 91 { 92 unsigned long mpp4 = readl(DOVE_MPP_CTRL4_VIRT_BASE); 93 unsigned long mask; 94 95 switch (ctrl->pid) { 96 case 24: /* mpp_camera */ 97 mask = DOVE_CAM_GPIO_SEL; 98 break; 99 case 40: /* mpp_sdio0 */ 100 mask = DOVE_SD0_GPIO_SEL; 101 break; 102 case 46: /* mpp_sdio1 */ 103 mask = DOVE_SD1_GPIO_SEL; 104 break; 105 case 58: /* mpp_spi0 */ 106 mask = DOVE_SPI_GPIO_SEL; 107 break; 108 case 62: /* mpp_uart1 */ 109 mask = DOVE_UART1_GPIO_SEL; 110 break; 111 default: 112 return -EINVAL; 113 } 114 115 *config = ((mpp4 & mask) != 0); 116 117 return 0; 118 } 119 120 static int dove_mpp4_ctrl_set(struct mvebu_mpp_ctrl *ctrl, 121 unsigned long config) 122 { 123 unsigned long mpp4 = readl(DOVE_MPP_CTRL4_VIRT_BASE); 124 unsigned long mask; 125 126 switch (ctrl->pid) { 127 case 24: /* mpp_camera */ 128 mask = DOVE_CAM_GPIO_SEL; 129 break; 130 case 40: /* mpp_sdio0 */ 131 mask = DOVE_SD0_GPIO_SEL; 132 break; 133 case 46: /* mpp_sdio1 */ 134 mask = DOVE_SD1_GPIO_SEL; 135 break; 136 case 58: /* mpp_spi0 */ 137 mask = DOVE_SPI_GPIO_SEL; 138 break; 139 case 62: /* mpp_uart1 */ 140 mask = DOVE_UART1_GPIO_SEL; 141 break; 142 default: 143 return -EINVAL; 144 } 145 146 mpp4 &= ~mask; 147 if (config) 148 mpp4 |= mask; 149 150 writel(mpp4, DOVE_MPP_CTRL4_VIRT_BASE); 151 152 return 0; 153 } 154 155 static int dove_nand_ctrl_get(struct mvebu_mpp_ctrl *ctrl, 156 unsigned long *config) 157 { 158 unsigned long gmpp = readl(DOVE_MPP_GENERAL_VIRT_BASE); 159 160 *config = ((gmpp & DOVE_NAND_GPIO_EN) != 0); 161 162 return 0; 163 } 164 165 static int dove_nand_ctrl_set(struct mvebu_mpp_ctrl *ctrl, 166 unsigned long config) 167 { 168 unsigned long gmpp = readl(DOVE_MPP_GENERAL_VIRT_BASE); 169 170 gmpp &= ~DOVE_NAND_GPIO_EN; 171 if (config) 172 gmpp |= DOVE_NAND_GPIO_EN; 173 174 writel(gmpp, DOVE_MPP_GENERAL_VIRT_BASE); 175 176 return 0; 177 } 178 179 static int dove_audio0_ctrl_get(struct mvebu_mpp_ctrl *ctrl, 180 unsigned long *config) 181 { 182 unsigned long pmu = readl(DOVE_PMU_MPP_GENERAL_CTRL); 183 184 *config = ((pmu & DOVE_AU0_AC97_SEL) != 0); 185 186 return 0; 187 } 188 189 static int dove_audio0_ctrl_set(struct mvebu_mpp_ctrl *ctrl, 190 unsigned long config) 191 { 192 unsigned long pmu = readl(DOVE_PMU_MPP_GENERAL_CTRL); 193 194 pmu &= ~DOVE_AU0_AC97_SEL; 195 if (config) 196 pmu |= DOVE_AU0_AC97_SEL; 197 writel(pmu, DOVE_PMU_MPP_GENERAL_CTRL); 198 199 return 0; 200 } 201 202 static int dove_audio1_ctrl_get(struct mvebu_mpp_ctrl *ctrl, 203 unsigned long *config) 204 { 205 unsigned long mpp4 = readl(DOVE_MPP_CTRL4_VIRT_BASE); 206 unsigned long sspc1 = readl(DOVE_SSP_CTRL_STATUS_1); 207 unsigned long gmpp = readl(DOVE_MPP_GENERAL_VIRT_BASE); 208 unsigned long gcfg2 = readl(DOVE_GLOBAL_CONFIG_2); 209 210 *config = 0; 211 if (mpp4 & DOVE_AU1_GPIO_SEL) 212 *config |= BIT(3); 213 if (sspc1 & DOVE_SSP_ON_AU1) 214 *config |= BIT(2); 215 if (gmpp & DOVE_AU1_SPDIFO_GPIO_EN) 216 *config |= BIT(1); 217 if (gcfg2 & DOVE_TWSI_OPTION3_GPIO) 218 *config |= BIT(0); 219 220 /* SSP/TWSI only if I2S1 not set*/ 221 if ((*config & BIT(3)) == 0) 222 *config &= ~(BIT(2) | BIT(0)); 223 /* TWSI only if SPDIFO not set*/ 224 if ((*config & BIT(1)) == 0) 225 *config &= ~BIT(0); 226 return 0; 227 } 228 229 static int dove_audio1_ctrl_set(struct mvebu_mpp_ctrl *ctrl, 230 unsigned long config) 231 { 232 unsigned long mpp4 = readl(DOVE_MPP_CTRL4_VIRT_BASE); 233 unsigned long sspc1 = readl(DOVE_SSP_CTRL_STATUS_1); 234 unsigned long gmpp = readl(DOVE_MPP_GENERAL_VIRT_BASE); 235 unsigned long gcfg2 = readl(DOVE_GLOBAL_CONFIG_2); 236 237 if (config & BIT(0)) 238 gcfg2 |= DOVE_TWSI_OPTION3_GPIO; 239 if (config & BIT(1)) 240 gmpp |= DOVE_AU1_SPDIFO_GPIO_EN; 241 if (config & BIT(2)) 242 sspc1 |= DOVE_SSP_ON_AU1; 243 if (config & BIT(3)) 244 mpp4 |= DOVE_AU1_GPIO_SEL; 245 246 writel(mpp4, DOVE_MPP_CTRL4_VIRT_BASE); 247 writel(sspc1, DOVE_SSP_CTRL_STATUS_1); 248 writel(gmpp, DOVE_MPP_GENERAL_VIRT_BASE); 249 writel(gcfg2, DOVE_GLOBAL_CONFIG_2); 250 251 return 0; 252 } 253 254 /* mpp[52:57] gpio pins depend heavily on current config; 255 * gpio_req does not try to mux in gpio capabilities to not 256 * break other functions. If you require all mpps as gpio 257 * enforce gpio setting by pinctrl mapping. 258 */ 259 static int dove_audio1_ctrl_gpio_req(struct mvebu_mpp_ctrl *ctrl, u8 pid) 260 { 261 unsigned long config; 262 263 dove_audio1_ctrl_get(ctrl, &config); 264 265 switch (config) { 266 case 0x02: /* i2s1 : gpio[56:57] */ 267 case 0x0e: /* ssp : gpio[56:57] */ 268 if (pid >= 56) 269 return 0; 270 return -ENOTSUPP; 271 case 0x08: /* spdifo : gpio[52:55] */ 272 case 0x0b: /* twsi : gpio[52:55] */ 273 if (pid <= 55) 274 return 0; 275 return -ENOTSUPP; 276 case 0x0a: /* all gpio */ 277 return 0; 278 /* 0x00 : i2s1/spdifo : no gpio */ 279 /* 0x0c : ssp/spdifo : no gpio */ 280 /* 0x0f : ssp/twsi : no gpio */ 281 } 282 return -ENOTSUPP; 283 } 284 285 /* mpp[52:57] has gpio pins capable of in and out */ 286 static int dove_audio1_ctrl_gpio_dir(struct mvebu_mpp_ctrl *ctrl, u8 pid, 287 bool input) 288 { 289 if (pid < 52 || pid > 57) 290 return -ENOTSUPP; 291 return 0; 292 } 293 294 static int dove_twsi_ctrl_get(struct mvebu_mpp_ctrl *ctrl, 295 unsigned long *config) 296 { 297 unsigned long gcfg1 = readl(DOVE_GLOBAL_CONFIG_1); 298 unsigned long gcfg2 = readl(DOVE_GLOBAL_CONFIG_2); 299 300 *config = 0; 301 if (gcfg1 & DOVE_TWSI_ENABLE_OPTION1) 302 *config = 1; 303 else if (gcfg2 & DOVE_TWSI_ENABLE_OPTION2) 304 *config = 2; 305 else if (gcfg2 & DOVE_TWSI_ENABLE_OPTION3) 306 *config = 3; 307 308 return 0; 309 } 310 311 static int dove_twsi_ctrl_set(struct mvebu_mpp_ctrl *ctrl, 312 unsigned long config) 313 { 314 unsigned long gcfg1 = readl(DOVE_GLOBAL_CONFIG_1); 315 unsigned long gcfg2 = readl(DOVE_GLOBAL_CONFIG_2); 316 317 gcfg1 &= ~DOVE_TWSI_ENABLE_OPTION1; 318 gcfg2 &= ~(DOVE_TWSI_ENABLE_OPTION2 | DOVE_TWSI_ENABLE_OPTION2); 319 320 switch (config) { 321 case 1: 322 gcfg1 |= DOVE_TWSI_ENABLE_OPTION1; 323 break; 324 case 2: 325 gcfg2 |= DOVE_TWSI_ENABLE_OPTION2; 326 break; 327 case 3: 328 gcfg2 |= DOVE_TWSI_ENABLE_OPTION3; 329 break; 330 } 331 332 writel(gcfg1, DOVE_GLOBAL_CONFIG_1); 333 writel(gcfg2, DOVE_GLOBAL_CONFIG_2); 334 335 return 0; 336 } 337 338 static struct mvebu_mpp_ctrl dove_mpp_controls[] = { 339 MPP_FUNC_CTRL(0, 0, "mpp0", dove_pmu_mpp_ctrl), 340 MPP_FUNC_CTRL(1, 1, "mpp1", dove_pmu_mpp_ctrl), 341 MPP_FUNC_CTRL(2, 2, "mpp2", dove_pmu_mpp_ctrl), 342 MPP_FUNC_CTRL(3, 3, "mpp3", dove_pmu_mpp_ctrl), 343 MPP_FUNC_CTRL(4, 4, "mpp4", dove_pmu_mpp_ctrl), 344 MPP_FUNC_CTRL(5, 5, "mpp5", dove_pmu_mpp_ctrl), 345 MPP_FUNC_CTRL(6, 6, "mpp6", dove_pmu_mpp_ctrl), 346 MPP_FUNC_CTRL(7, 7, "mpp7", dove_pmu_mpp_ctrl), 347 MPP_FUNC_CTRL(8, 8, "mpp8", dove_pmu_mpp_ctrl), 348 MPP_FUNC_CTRL(9, 9, "mpp9", dove_pmu_mpp_ctrl), 349 MPP_FUNC_CTRL(10, 10, "mpp10", dove_pmu_mpp_ctrl), 350 MPP_FUNC_CTRL(11, 11, "mpp11", dove_pmu_mpp_ctrl), 351 MPP_FUNC_CTRL(12, 12, "mpp12", dove_pmu_mpp_ctrl), 352 MPP_FUNC_CTRL(13, 13, "mpp13", dove_pmu_mpp_ctrl), 353 MPP_FUNC_CTRL(14, 14, "mpp14", dove_pmu_mpp_ctrl), 354 MPP_FUNC_CTRL(15, 15, "mpp15", dove_pmu_mpp_ctrl), 355 MPP_REG_CTRL(16, 23), 356 MPP_FUNC_CTRL(24, 39, "mpp_camera", dove_mpp4_ctrl), 357 MPP_FUNC_CTRL(40, 45, "mpp_sdio0", dove_mpp4_ctrl), 358 MPP_FUNC_CTRL(46, 51, "mpp_sdio1", dove_mpp4_ctrl), 359 MPP_FUNC_GPIO_CTRL(52, 57, "mpp_audio1", dove_audio1_ctrl), 360 MPP_FUNC_CTRL(58, 61, "mpp_spi0", dove_mpp4_ctrl), 361 MPP_FUNC_CTRL(62, 63, "mpp_uart1", dove_mpp4_ctrl), 362 MPP_FUNC_CTRL(64, 71, "mpp_nand", dove_nand_ctrl), 363 MPP_FUNC_CTRL(72, 72, "audio0", dove_audio0_ctrl), 364 MPP_FUNC_CTRL(73, 73, "twsi", dove_twsi_ctrl), 365 }; 366 367 static struct mvebu_mpp_mode dove_mpp_modes[] = { 368 MPP_MODE(0, 369 MPP_FUNCTION(0x00, "gpio", NULL), 370 MPP_FUNCTION(0x02, "uart2", "rts"), 371 MPP_FUNCTION(0x03, "sdio0", "cd"), 372 MPP_FUNCTION(0x0f, "lcd0", "pwm"), 373 MPP_FUNCTION(0x10, "pmu", NULL)), 374 MPP_MODE(1, 375 MPP_FUNCTION(0x00, "gpio", NULL), 376 MPP_FUNCTION(0x02, "uart2", "cts"), 377 MPP_FUNCTION(0x03, "sdio0", "wp"), 378 MPP_FUNCTION(0x0f, "lcd1", "pwm"), 379 MPP_FUNCTION(0x10, "pmu", NULL)), 380 MPP_MODE(2, 381 MPP_FUNCTION(0x00, "gpio", NULL), 382 MPP_FUNCTION(0x01, "sata", "prsnt"), 383 MPP_FUNCTION(0x02, "uart2", "txd"), 384 MPP_FUNCTION(0x03, "sdio0", "buspwr"), 385 MPP_FUNCTION(0x04, "uart1", "rts"), 386 MPP_FUNCTION(0x10, "pmu", NULL)), 387 MPP_MODE(3, 388 MPP_FUNCTION(0x00, "gpio", NULL), 389 MPP_FUNCTION(0x01, "sata", "act"), 390 MPP_FUNCTION(0x02, "uart2", "rxd"), 391 MPP_FUNCTION(0x03, "sdio0", "ledctrl"), 392 MPP_FUNCTION(0x04, "uart1", "cts"), 393 MPP_FUNCTION(0x0f, "lcd-spi", "cs1"), 394 MPP_FUNCTION(0x10, "pmu", NULL)), 395 MPP_MODE(4, 396 MPP_FUNCTION(0x00, "gpio", NULL), 397 MPP_FUNCTION(0x02, "uart3", "rts"), 398 MPP_FUNCTION(0x03, "sdio1", "cd"), 399 MPP_FUNCTION(0x04, "spi1", "miso"), 400 MPP_FUNCTION(0x10, "pmu", NULL)), 401 MPP_MODE(5, 402 MPP_FUNCTION(0x00, "gpio", NULL), 403 MPP_FUNCTION(0x02, "uart3", "cts"), 404 MPP_FUNCTION(0x03, "sdio1", "wp"), 405 MPP_FUNCTION(0x04, "spi1", "cs"), 406 MPP_FUNCTION(0x10, "pmu", NULL)), 407 MPP_MODE(6, 408 MPP_FUNCTION(0x00, "gpio", NULL), 409 MPP_FUNCTION(0x02, "uart3", "txd"), 410 MPP_FUNCTION(0x03, "sdio1", "buspwr"), 411 MPP_FUNCTION(0x04, "spi1", "mosi"), 412 MPP_FUNCTION(0x10, "pmu", NULL)), 413 MPP_MODE(7, 414 MPP_FUNCTION(0x00, "gpio", NULL), 415 MPP_FUNCTION(0x02, "uart3", "rxd"), 416 MPP_FUNCTION(0x03, "sdio1", "ledctrl"), 417 MPP_FUNCTION(0x04, "spi1", "sck"), 418 MPP_FUNCTION(0x10, "pmu", NULL)), 419 MPP_MODE(8, 420 MPP_FUNCTION(0x00, "gpio", NULL), 421 MPP_FUNCTION(0x01, "watchdog", "rstout"), 422 MPP_FUNCTION(0x10, "pmu", NULL)), 423 MPP_MODE(9, 424 MPP_FUNCTION(0x00, "gpio", NULL), 425 MPP_FUNCTION(0x05, "pex1", "clkreq"), 426 MPP_FUNCTION(0x10, "pmu", NULL)), 427 MPP_MODE(10, 428 MPP_FUNCTION(0x00, "gpio", NULL), 429 MPP_FUNCTION(0x05, "ssp", "sclk"), 430 MPP_FUNCTION(0x10, "pmu", NULL)), 431 MPP_MODE(11, 432 MPP_FUNCTION(0x00, "gpio", NULL), 433 MPP_FUNCTION(0x01, "sata", "prsnt"), 434 MPP_FUNCTION(0x02, "sata-1", "act"), 435 MPP_FUNCTION(0x03, "sdio0", "ledctrl"), 436 MPP_FUNCTION(0x04, "sdio1", "ledctrl"), 437 MPP_FUNCTION(0x05, "pex0", "clkreq"), 438 MPP_FUNCTION(0x10, "pmu", NULL)), 439 MPP_MODE(12, 440 MPP_FUNCTION(0x00, "gpio", NULL), 441 MPP_FUNCTION(0x01, "sata", "act"), 442 MPP_FUNCTION(0x02, "uart2", "rts"), 443 MPP_FUNCTION(0x03, "audio0", "extclk"), 444 MPP_FUNCTION(0x04, "sdio1", "cd"), 445 MPP_FUNCTION(0x10, "pmu", NULL)), 446 MPP_MODE(13, 447 MPP_FUNCTION(0x00, "gpio", NULL), 448 MPP_FUNCTION(0x02, "uart2", "cts"), 449 MPP_FUNCTION(0x03, "audio1", "extclk"), 450 MPP_FUNCTION(0x04, "sdio1", "wp"), 451 MPP_FUNCTION(0x05, "ssp", "extclk"), 452 MPP_FUNCTION(0x10, "pmu", NULL)), 453 MPP_MODE(14, 454 MPP_FUNCTION(0x00, "gpio", NULL), 455 MPP_FUNCTION(0x02, "uart2", "txd"), 456 MPP_FUNCTION(0x04, "sdio1", "buspwr"), 457 MPP_FUNCTION(0x05, "ssp", "rxd"), 458 MPP_FUNCTION(0x10, "pmu", NULL)), 459 MPP_MODE(15, 460 MPP_FUNCTION(0x00, "gpio", NULL), 461 MPP_FUNCTION(0x02, "uart2", "rxd"), 462 MPP_FUNCTION(0x04, "sdio1", "ledctrl"), 463 MPP_FUNCTION(0x05, "ssp", "sfrm"), 464 MPP_FUNCTION(0x10, "pmu", NULL)), 465 MPP_MODE(16, 466 MPP_FUNCTION(0x00, "gpio", NULL), 467 MPP_FUNCTION(0x02, "uart3", "rts"), 468 MPP_FUNCTION(0x03, "sdio0", "cd"), 469 MPP_FUNCTION(0x04, "lcd-spi", "cs1"), 470 MPP_FUNCTION(0x05, "ac97", "sdi1")), 471 MPP_MODE(17, 472 MPP_FUNCTION(0x00, "gpio", NULL), 473 MPP_FUNCTION(0x01, "ac97-1", "sysclko"), 474 MPP_FUNCTION(0x02, "uart3", "cts"), 475 MPP_FUNCTION(0x03, "sdio0", "wp"), 476 MPP_FUNCTION(0x04, "twsi", "sda"), 477 MPP_FUNCTION(0x05, "ac97", "sdi2")), 478 MPP_MODE(18, 479 MPP_FUNCTION(0x00, "gpio", NULL), 480 MPP_FUNCTION(0x02, "uart3", "txd"), 481 MPP_FUNCTION(0x03, "sdio0", "buspwr"), 482 MPP_FUNCTION(0x04, "lcd0", "pwm"), 483 MPP_FUNCTION(0x05, "ac97", "sdi3")), 484 MPP_MODE(19, 485 MPP_FUNCTION(0x00, "gpio", NULL), 486 MPP_FUNCTION(0x02, "uart3", "rxd"), 487 MPP_FUNCTION(0x03, "sdio0", "ledctrl"), 488 MPP_FUNCTION(0x04, "twsi", "sck")), 489 MPP_MODE(20, 490 MPP_FUNCTION(0x00, "gpio", NULL), 491 MPP_FUNCTION(0x01, "ac97", "sysclko"), 492 MPP_FUNCTION(0x02, "lcd-spi", "miso"), 493 MPP_FUNCTION(0x03, "sdio1", "cd"), 494 MPP_FUNCTION(0x05, "sdio0", "cd"), 495 MPP_FUNCTION(0x06, "spi1", "miso")), 496 MPP_MODE(21, 497 MPP_FUNCTION(0x00, "gpio", NULL), 498 MPP_FUNCTION(0x01, "uart1", "rts"), 499 MPP_FUNCTION(0x02, "lcd-spi", "cs0"), 500 MPP_FUNCTION(0x03, "sdio1", "wp"), 501 MPP_FUNCTION(0x04, "ssp", "sfrm"), 502 MPP_FUNCTION(0x05, "sdio0", "wp"), 503 MPP_FUNCTION(0x06, "spi1", "cs")), 504 MPP_MODE(22, 505 MPP_FUNCTION(0x00, "gpio", NULL), 506 MPP_FUNCTION(0x01, "uart1", "cts"), 507 MPP_FUNCTION(0x02, "lcd-spi", "mosi"), 508 MPP_FUNCTION(0x03, "sdio1", "buspwr"), 509 MPP_FUNCTION(0x04, "ssp", "txd"), 510 MPP_FUNCTION(0x05, "sdio0", "buspwr"), 511 MPP_FUNCTION(0x06, "spi1", "mosi")), 512 MPP_MODE(23, 513 MPP_FUNCTION(0x00, "gpio", NULL), 514 MPP_FUNCTION(0x02, "lcd-spi", "sck"), 515 MPP_FUNCTION(0x03, "sdio1", "ledctrl"), 516 MPP_FUNCTION(0x04, "ssp", "sclk"), 517 MPP_FUNCTION(0x05, "sdio0", "ledctrl"), 518 MPP_FUNCTION(0x06, "spi1", "sck")), 519 MPP_MODE(24, 520 MPP_FUNCTION(0x00, "camera", NULL), 521 MPP_FUNCTION(0x01, "gpio", NULL)), 522 MPP_MODE(40, 523 MPP_FUNCTION(0x00, "sdio0", NULL), 524 MPP_FUNCTION(0x01, "gpio", NULL)), 525 MPP_MODE(46, 526 MPP_FUNCTION(0x00, "sdio1", NULL), 527 MPP_FUNCTION(0x01, "gpio", NULL)), 528 MPP_MODE(52, 529 MPP_FUNCTION(0x00, "i2s1/spdifo", NULL), 530 MPP_FUNCTION(0x02, "i2s1", NULL), 531 MPP_FUNCTION(0x08, "spdifo", NULL), 532 MPP_FUNCTION(0x0a, "gpio", NULL), 533 MPP_FUNCTION(0x0b, "twsi", NULL), 534 MPP_FUNCTION(0x0c, "ssp/spdifo", NULL), 535 MPP_FUNCTION(0x0e, "ssp", NULL), 536 MPP_FUNCTION(0x0f, "ssp/twsi", NULL)), 537 MPP_MODE(58, 538 MPP_FUNCTION(0x00, "spi0", NULL), 539 MPP_FUNCTION(0x01, "gpio", NULL)), 540 MPP_MODE(62, 541 MPP_FUNCTION(0x00, "uart1", NULL), 542 MPP_FUNCTION(0x01, "gpio", NULL)), 543 MPP_MODE(64, 544 MPP_FUNCTION(0x00, "nand", NULL), 545 MPP_FUNCTION(0x01, "gpo", NULL)), 546 MPP_MODE(72, 547 MPP_FUNCTION(0x00, "i2s", NULL), 548 MPP_FUNCTION(0x01, "ac97", NULL)), 549 MPP_MODE(73, 550 MPP_FUNCTION(0x00, "twsi-none", NULL), 551 MPP_FUNCTION(0x01, "twsi-opt1", NULL), 552 MPP_FUNCTION(0x02, "twsi-opt2", NULL), 553 MPP_FUNCTION(0x03, "twsi-opt3", NULL)), 554 }; 555 556 static struct pinctrl_gpio_range dove_mpp_gpio_ranges[] = { 557 MPP_GPIO_RANGE(0, 0, 0, 32), 558 MPP_GPIO_RANGE(1, 32, 32, 32), 559 MPP_GPIO_RANGE(2, 64, 64, 8), 560 }; 561 562 static struct mvebu_pinctrl_soc_info dove_pinctrl_info = { 563 .controls = dove_mpp_controls, 564 .ncontrols = ARRAY_SIZE(dove_mpp_controls), 565 .modes = dove_mpp_modes, 566 .nmodes = ARRAY_SIZE(dove_mpp_modes), 567 .gpioranges = dove_mpp_gpio_ranges, 568 .ngpioranges = ARRAY_SIZE(dove_mpp_gpio_ranges), 569 .variant = 0, 570 }; 571 572 static struct clk *clk; 573 574 static struct of_device_id dove_pinctrl_of_match[] __devinitdata = { 575 { .compatible = "marvell,dove-pinctrl", .data = &dove_pinctrl_info }, 576 { } 577 }; 578 579 static int __devinit dove_pinctrl_probe(struct platform_device *pdev) 580 { 581 const struct of_device_id *match = 582 of_match_device(dove_pinctrl_of_match, &pdev->dev); 583 pdev->dev.platform_data = match->data; 584 585 /* 586 * General MPP Configuration Register is part of pdma registers. 587 * grab clk to make sure it is ticking. 588 */ 589 clk = devm_clk_get(&pdev->dev, NULL); 590 if (!IS_ERR(clk)) 591 clk_prepare_enable(clk); 592 593 return mvebu_pinctrl_probe(pdev); 594 } 595 596 static int __devexit dove_pinctrl_remove(struct platform_device *pdev) 597 { 598 int ret; 599 600 ret = mvebu_pinctrl_remove(pdev); 601 if (!IS_ERR(clk)) 602 clk_disable_unprepare(clk); 603 return ret; 604 } 605 606 static struct platform_driver dove_pinctrl_driver = { 607 .driver = { 608 .name = "dove-pinctrl", 609 .owner = THIS_MODULE, 610 .of_match_table = of_match_ptr(dove_pinctrl_of_match), 611 }, 612 .probe = dove_pinctrl_probe, 613 .remove = __devexit_p(dove_pinctrl_remove), 614 }; 615 616 module_platform_driver(dove_pinctrl_driver); 617 618 MODULE_AUTHOR("Sebastian Hesselbarth <sebastian.hesselbarth@gmail.com>"); 619 MODULE_DESCRIPTION("Marvell Dove pinctrl driver"); 620 MODULE_LICENSE("GPL v2"); 621