1 /* 2 * Freescale i.MX28 SSP MMC driver 3 * 4 * Copyright (C) 2011 Marek Vasut <marek.vasut@gmail.com> 5 * on behalf of DENX Software Engineering GmbH 6 * 7 * Based on code from LTIB: 8 * (C) Copyright 2008-2010 Freescale Semiconductor, Inc. 9 * Terry Lv 10 * 11 * Copyright 2007, Freescale Semiconductor, Inc 12 * Andy Fleming 13 * 14 * Based vaguely on the pxa mmc code: 15 * (C) Copyright 2003 16 * Kyle Harris, Nexus Technologies, Inc. kharris@nexus-tech.net 17 * 18 * See file CREDITS for list of people who contributed to this 19 * project. 20 * 21 * This program is free software; you can redistribute it and/or 22 * modify it under the terms of the GNU General Public License as 23 * published by the Free Software Foundation; either version 2 of 24 * the License, or (at your option) any later version. 25 * 26 * This program is distributed in the hope that it will be useful, 27 * but WITHOUT ANY WARRANTY; without even the implied warranty of 28 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 29 * GNU General Public License for more details. 30 * 31 * You should have received a copy of the GNU General Public License 32 * along with this program; if not, write to the Free Software 33 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, 34 * MA 02111-1307 USA 35 */ 36 #include <common.h> 37 #include <malloc.h> 38 #include <mmc.h> 39 #include <asm/errno.h> 40 #include <asm/io.h> 41 #include <asm/arch/clock.h> 42 #include <asm/arch/imx-regs.h> 43 #include <asm/arch/sys_proto.h> 44 #include <asm/arch/dma.h> 45 #include <bouncebuf.h> 46 47 struct mxsmmc_priv { 48 int id; 49 struct mxs_ssp_regs *regs; 50 uint32_t buswidth; 51 int (*mmc_is_wp)(int); 52 int (*mmc_cd)(int); 53 struct mxs_dma_desc *desc; 54 }; 55 56 #define MXSMMC_MAX_TIMEOUT 10000 57 #define MXSMMC_SMALL_TRANSFER 512 58 59 static int mxsmmc_cd(struct mxsmmc_priv *priv) 60 { 61 struct mxs_ssp_regs *ssp_regs = priv->regs; 62 63 if (priv->mmc_cd) 64 return priv->mmc_cd(priv->id); 65 66 return !(readl(&ssp_regs->hw_ssp_status) & SSP_STATUS_CARD_DETECT); 67 } 68 69 static int mxsmmc_send_cmd_pio(struct mxsmmc_priv *priv, struct mmc_data *data) 70 { 71 struct mxs_ssp_regs *ssp_regs = priv->regs; 72 uint32_t *data_ptr; 73 int timeout = MXSMMC_MAX_TIMEOUT; 74 uint32_t reg; 75 uint32_t data_count = data->blocksize * data->blocks; 76 77 if (data->flags & MMC_DATA_READ) { 78 data_ptr = (uint32_t *)data->dest; 79 while (data_count && --timeout) { 80 reg = readl(&ssp_regs->hw_ssp_status); 81 if (!(reg & SSP_STATUS_FIFO_EMPTY)) { 82 *data_ptr++ = readl(&ssp_regs->hw_ssp_data); 83 data_count -= 4; 84 timeout = MXSMMC_MAX_TIMEOUT; 85 } else 86 udelay(1000); 87 } 88 } else { 89 data_ptr = (uint32_t *)data->src; 90 timeout *= 100; 91 while (data_count && --timeout) { 92 reg = readl(&ssp_regs->hw_ssp_status); 93 if (!(reg & SSP_STATUS_FIFO_FULL)) { 94 writel(*data_ptr++, &ssp_regs->hw_ssp_data); 95 data_count -= 4; 96 timeout = MXSMMC_MAX_TIMEOUT; 97 } else 98 udelay(1000); 99 } 100 } 101 102 return timeout ? 0 : COMM_ERR; 103 } 104 105 static int mxsmmc_send_cmd_dma(struct mxsmmc_priv *priv, struct mmc_data *data) 106 { 107 uint32_t data_count = data->blocksize * data->blocks; 108 int dmach; 109 struct mxs_dma_desc *desc = priv->desc; 110 void *addr; 111 unsigned int flags; 112 struct bounce_buffer bbstate; 113 114 memset(desc, 0, sizeof(struct mxs_dma_desc)); 115 desc->address = (dma_addr_t)desc; 116 117 if (data->flags & MMC_DATA_READ) { 118 priv->desc->cmd.data = MXS_DMA_DESC_COMMAND_DMA_WRITE; 119 addr = data->dest; 120 flags = GEN_BB_WRITE; 121 } else { 122 priv->desc->cmd.data = MXS_DMA_DESC_COMMAND_DMA_READ; 123 addr = (void *)data->src; 124 flags = GEN_BB_READ; 125 } 126 127 bounce_buffer_start(&bbstate, addr, data_count, flags); 128 129 priv->desc->cmd.address = (dma_addr_t)bbstate.bounce_buffer; 130 131 priv->desc->cmd.data |= MXS_DMA_DESC_IRQ | MXS_DMA_DESC_DEC_SEM | 132 (data_count << MXS_DMA_DESC_BYTES_OFFSET); 133 134 dmach = MXS_DMA_CHANNEL_AHB_APBH_SSP0 + priv->id; 135 mxs_dma_desc_append(dmach, priv->desc); 136 if (mxs_dma_go(dmach)) { 137 bounce_buffer_stop(&bbstate); 138 return COMM_ERR; 139 } 140 141 bounce_buffer_stop(&bbstate); 142 143 return 0; 144 } 145 146 /* 147 * Sends a command out on the bus. Takes the mmc pointer, 148 * a command pointer, and an optional data pointer. 149 */ 150 static int 151 mxsmmc_send_cmd(struct mmc *mmc, struct mmc_cmd *cmd, struct mmc_data *data) 152 { 153 struct mxsmmc_priv *priv = (struct mxsmmc_priv *)mmc->priv; 154 struct mxs_ssp_regs *ssp_regs = priv->regs; 155 uint32_t reg; 156 int timeout; 157 uint32_t ctrl0; 158 int ret; 159 160 debug("MMC%d: CMD%d\n", mmc->block_dev.dev, cmd->cmdidx); 161 162 /* Check bus busy */ 163 timeout = MXSMMC_MAX_TIMEOUT; 164 while (--timeout) { 165 udelay(1000); 166 reg = readl(&ssp_regs->hw_ssp_status); 167 if (!(reg & 168 (SSP_STATUS_BUSY | SSP_STATUS_DATA_BUSY | 169 SSP_STATUS_CMD_BUSY))) { 170 break; 171 } 172 } 173 174 if (!timeout) { 175 printf("MMC%d: Bus busy timeout!\n", mmc->block_dev.dev); 176 return TIMEOUT; 177 } 178 179 /* See if card is present */ 180 if (!mxsmmc_cd(priv)) { 181 printf("MMC%d: No card detected!\n", mmc->block_dev.dev); 182 return NO_CARD_ERR; 183 } 184 185 /* Start building CTRL0 contents */ 186 ctrl0 = priv->buswidth; 187 188 /* Set up command */ 189 if (!(cmd->resp_type & MMC_RSP_CRC)) 190 ctrl0 |= SSP_CTRL0_IGNORE_CRC; 191 if (cmd->resp_type & MMC_RSP_PRESENT) /* Need to get response */ 192 ctrl0 |= SSP_CTRL0_GET_RESP; 193 if (cmd->resp_type & MMC_RSP_136) /* It's a 136 bits response */ 194 ctrl0 |= SSP_CTRL0_LONG_RESP; 195 196 if (data && (data->blocksize * data->blocks < MXSMMC_SMALL_TRANSFER)) 197 writel(SSP_CTRL1_DMA_ENABLE, &ssp_regs->hw_ssp_ctrl1_clr); 198 else 199 writel(SSP_CTRL1_DMA_ENABLE, &ssp_regs->hw_ssp_ctrl1_set); 200 201 /* Command index */ 202 reg = readl(&ssp_regs->hw_ssp_cmd0); 203 reg &= ~(SSP_CMD0_CMD_MASK | SSP_CMD0_APPEND_8CYC); 204 reg |= cmd->cmdidx << SSP_CMD0_CMD_OFFSET; 205 if (cmd->cmdidx == MMC_CMD_STOP_TRANSMISSION) 206 reg |= SSP_CMD0_APPEND_8CYC; 207 writel(reg, &ssp_regs->hw_ssp_cmd0); 208 209 /* Command argument */ 210 writel(cmd->cmdarg, &ssp_regs->hw_ssp_cmd1); 211 212 /* Set up data */ 213 if (data) { 214 /* READ or WRITE */ 215 if (data->flags & MMC_DATA_READ) { 216 ctrl0 |= SSP_CTRL0_READ; 217 } else if (priv->mmc_is_wp && 218 priv->mmc_is_wp(mmc->block_dev.dev)) { 219 printf("MMC%d: Can not write a locked card!\n", 220 mmc->block_dev.dev); 221 return UNUSABLE_ERR; 222 } 223 224 ctrl0 |= SSP_CTRL0_DATA_XFER; 225 reg = ((data->blocks - 1) << 226 SSP_BLOCK_SIZE_BLOCK_COUNT_OFFSET) | 227 ((ffs(data->blocksize) - 1) << 228 SSP_BLOCK_SIZE_BLOCK_SIZE_OFFSET); 229 writel(reg, &ssp_regs->hw_ssp_block_size); 230 231 reg = data->blocksize * data->blocks; 232 writel(reg, &ssp_regs->hw_ssp_xfer_size); 233 } 234 235 /* Kick off the command */ 236 ctrl0 |= SSP_CTRL0_WAIT_FOR_IRQ | SSP_CTRL0_ENABLE | SSP_CTRL0_RUN; 237 writel(ctrl0, &ssp_regs->hw_ssp_ctrl0); 238 239 /* Wait for the command to complete */ 240 timeout = MXSMMC_MAX_TIMEOUT; 241 while (--timeout) { 242 udelay(1000); 243 reg = readl(&ssp_regs->hw_ssp_status); 244 if (!(reg & SSP_STATUS_CMD_BUSY)) 245 break; 246 } 247 248 if (!timeout) { 249 printf("MMC%d: Command %d busy\n", 250 mmc->block_dev.dev, cmd->cmdidx); 251 return TIMEOUT; 252 } 253 254 /* Check command timeout */ 255 if (reg & SSP_STATUS_RESP_TIMEOUT) { 256 printf("MMC%d: Command %d timeout (status 0x%08x)\n", 257 mmc->block_dev.dev, cmd->cmdidx, reg); 258 return TIMEOUT; 259 } 260 261 /* Check command errors */ 262 if (reg & (SSP_STATUS_RESP_CRC_ERR | SSP_STATUS_RESP_ERR)) { 263 printf("MMC%d: Command %d error (status 0x%08x)!\n", 264 mmc->block_dev.dev, cmd->cmdidx, reg); 265 return COMM_ERR; 266 } 267 268 /* Copy response to response buffer */ 269 if (cmd->resp_type & MMC_RSP_136) { 270 cmd->response[3] = readl(&ssp_regs->hw_ssp_sdresp0); 271 cmd->response[2] = readl(&ssp_regs->hw_ssp_sdresp1); 272 cmd->response[1] = readl(&ssp_regs->hw_ssp_sdresp2); 273 cmd->response[0] = readl(&ssp_regs->hw_ssp_sdresp3); 274 } else 275 cmd->response[0] = readl(&ssp_regs->hw_ssp_sdresp0); 276 277 /* Return if no data to process */ 278 if (!data) 279 return 0; 280 281 if (data->blocksize * data->blocks < MXSMMC_SMALL_TRANSFER) { 282 ret = mxsmmc_send_cmd_pio(priv, data); 283 if (ret) { 284 printf("MMC%d: Data timeout with command %d " 285 "(status 0x%08x)!\n", 286 mmc->block_dev.dev, cmd->cmdidx, reg); 287 return ret; 288 } 289 } else { 290 ret = mxsmmc_send_cmd_dma(priv, data); 291 if (ret) { 292 printf("MMC%d: DMA transfer failed\n", 293 mmc->block_dev.dev); 294 return ret; 295 } 296 } 297 298 /* Check data errors */ 299 reg = readl(&ssp_regs->hw_ssp_status); 300 if (reg & 301 (SSP_STATUS_TIMEOUT | SSP_STATUS_DATA_CRC_ERR | 302 SSP_STATUS_FIFO_OVRFLW | SSP_STATUS_FIFO_UNDRFLW)) { 303 printf("MMC%d: Data error with command %d (status 0x%08x)!\n", 304 mmc->block_dev.dev, cmd->cmdidx, reg); 305 return COMM_ERR; 306 } 307 308 return 0; 309 } 310 311 static void mxsmmc_set_ios(struct mmc *mmc) 312 { 313 struct mxsmmc_priv *priv = (struct mxsmmc_priv *)mmc->priv; 314 struct mxs_ssp_regs *ssp_regs = priv->regs; 315 316 /* Set the clock speed */ 317 if (mmc->clock) 318 mxs_set_ssp_busclock(priv->id, mmc->clock / 1000); 319 320 switch (mmc->bus_width) { 321 case 1: 322 priv->buswidth = SSP_CTRL0_BUS_WIDTH_ONE_BIT; 323 break; 324 case 4: 325 priv->buswidth = SSP_CTRL0_BUS_WIDTH_FOUR_BIT; 326 break; 327 case 8: 328 priv->buswidth = SSP_CTRL0_BUS_WIDTH_EIGHT_BIT; 329 break; 330 } 331 332 /* Set the bus width */ 333 clrsetbits_le32(&ssp_regs->hw_ssp_ctrl0, 334 SSP_CTRL0_BUS_WIDTH_MASK, priv->buswidth); 335 336 debug("MMC%d: Set %d bits bus width\n", 337 mmc->block_dev.dev, mmc->bus_width); 338 } 339 340 static int mxsmmc_init(struct mmc *mmc) 341 { 342 struct mxsmmc_priv *priv = (struct mxsmmc_priv *)mmc->priv; 343 struct mxs_ssp_regs *ssp_regs = priv->regs; 344 345 /* Reset SSP */ 346 mxs_reset_block(&ssp_regs->hw_ssp_ctrl0_reg); 347 348 /* Reconfigure the SSP block for MMC operation */ 349 writel(SSP_CTRL1_SSP_MODE_SD_MMC | 350 SSP_CTRL1_WORD_LENGTH_EIGHT_BITS | 351 SSP_CTRL1_DMA_ENABLE | 352 SSP_CTRL1_POLARITY | 353 SSP_CTRL1_RECV_TIMEOUT_IRQ_EN | 354 SSP_CTRL1_DATA_CRC_IRQ_EN | 355 SSP_CTRL1_DATA_TIMEOUT_IRQ_EN | 356 SSP_CTRL1_RESP_TIMEOUT_IRQ_EN | 357 SSP_CTRL1_RESP_ERR_IRQ_EN, 358 &ssp_regs->hw_ssp_ctrl1_set); 359 360 /* Set initial bit clock 400 KHz */ 361 mxs_set_ssp_busclock(priv->id, 400); 362 363 /* Send initial 74 clock cycles (185 us @ 400 KHz)*/ 364 writel(SSP_CMD0_CONT_CLKING_EN, &ssp_regs->hw_ssp_cmd0_set); 365 udelay(200); 366 writel(SSP_CMD0_CONT_CLKING_EN, &ssp_regs->hw_ssp_cmd0_clr); 367 368 return 0; 369 } 370 371 int mxsmmc_initialize(bd_t *bis, int id, int (*wp)(int), int (*cd)(int)) 372 { 373 struct mmc *mmc = NULL; 374 struct mxsmmc_priv *priv = NULL; 375 int ret; 376 #if defined(CONFIG_MX23) 377 const unsigned int mxsmmc_max_id = 2; 378 const unsigned int mxsmmc_clk_id = 0; 379 #elif defined(CONFIG_MX28) 380 const unsigned int mxsmmc_max_id = 4; 381 const unsigned int mxsmmc_clk_id = id; 382 #endif 383 384 if (id >= mxsmmc_max_id) 385 return -ENODEV; 386 387 mmc = malloc(sizeof(struct mmc)); 388 if (!mmc) 389 return -ENOMEM; 390 391 priv = malloc(sizeof(struct mxsmmc_priv)); 392 if (!priv) { 393 free(mmc); 394 return -ENOMEM; 395 } 396 397 priv->desc = mxs_dma_desc_alloc(); 398 if (!priv->desc) { 399 free(priv); 400 free(mmc); 401 return -ENOMEM; 402 } 403 404 ret = mxs_dma_init_channel(id); 405 if (ret) 406 return ret; 407 408 priv->mmc_is_wp = wp; 409 priv->mmc_cd = cd; 410 priv->id = id; 411 priv->regs = mxs_ssp_regs_by_bus(id); 412 413 sprintf(mmc->name, "MXS MMC"); 414 mmc->send_cmd = mxsmmc_send_cmd; 415 mmc->set_ios = mxsmmc_set_ios; 416 mmc->init = mxsmmc_init; 417 mmc->getcd = NULL; 418 mmc->priv = priv; 419 420 mmc->voltages = MMC_VDD_32_33 | MMC_VDD_33_34; 421 422 mmc->host_caps = MMC_MODE_4BIT | MMC_MODE_8BIT | 423 MMC_MODE_HS_52MHz | MMC_MODE_HS; 424 425 /* 426 * SSPCLK = 480 * 18 / 29 / 1 = 297.731 MHz 427 * SSP bit rate = SSPCLK / (CLOCK_DIVIDE * (1 + CLOCK_RATE)), 428 * CLOCK_DIVIDE has to be an even value from 2 to 254, and 429 * CLOCK_RATE could be any integer from 0 to 255. 430 */ 431 mmc->f_min = 400000; 432 mmc->f_max = mxc_get_clock(MXC_SSP0_CLK + mxsmmc_clk_id) * 1000 / 2; 433 mmc->b_max = 0x20; 434 435 mmc_register(mmc); 436 return 0; 437 } 438