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1 /* |
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2 * SSI to SD card adapter. |
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3 * |
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4 * Copyright (c) 2007 CodeSourcery. |
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5 * Written by Paul Brook |
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6 * |
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7 * This code is licenced under the GPL. |
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8 */ |
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9 |
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10 #include "hw.h" |
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11 #include "sd.h" |
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12 |
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13 //#define DEBUG_SSI_SD 1 |
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14 |
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15 #ifdef DEBUG_SSI_SD |
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16 #define DPRINTF(fmt, args...) \ |
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17 do { printf("ssi_sd: " fmt , ##args); } while (0) |
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18 #define BADF(fmt, args...) \ |
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19 do { fprintf(stderr, "ssi_sd: error: " fmt , ##args); exit(1);} while (0) |
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20 #else |
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21 #define DPRINTF(fmt, args...) do {} while(0) |
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22 #define BADF(fmt, args...) \ |
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23 do { fprintf(stderr, "ssi_sd: error: " fmt , ##args);} while (0) |
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24 #endif |
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25 |
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26 typedef enum { |
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27 SSI_SD_CMD, |
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28 SSI_SD_CMDARG, |
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29 SSI_SD_RESPONSE, |
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30 SSI_SD_DATA_START, |
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31 SSI_SD_DATA_READ, |
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32 } ssi_sd_mode; |
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33 |
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34 typedef struct { |
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35 ssi_sd_mode mode; |
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36 int cmd; |
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37 uint8_t cmdarg[4]; |
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38 uint8_t response[5]; |
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39 int arglen; |
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40 int response_pos; |
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41 int stopping; |
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42 SDState *sd; |
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43 } ssi_sd_state; |
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44 |
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45 /* State word bits. */ |
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46 #define SSI_SDR_LOCKED 0x0001 |
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47 #define SSI_SDR_WP_ERASE 0x0002 |
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48 #define SSI_SDR_ERROR 0x0004 |
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49 #define SSI_SDR_CC_ERROR 0x0008 |
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50 #define SSI_SDR_ECC_FAILED 0x0010 |
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51 #define SSI_SDR_WP_VIOLATION 0x0020 |
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52 #define SSI_SDR_ERASE_PARAM 0x0040 |
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53 #define SSI_SDR_OUT_OF_RANGE 0x0080 |
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54 #define SSI_SDR_IDLE 0x0100 |
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55 #define SSI_SDR_ERASE_RESET 0x0200 |
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56 #define SSI_SDR_ILLEGAL_COMMAND 0x0400 |
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57 #define SSI_SDR_COM_CRC_ERROR 0x0800 |
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58 #define SSI_SDR_ERASE_SEQ_ERROR 0x1000 |
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59 #define SSI_SDR_ADDRESS_ERROR 0x2000 |
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60 #define SSI_SDR_PARAMETER_ERROR 0x4000 |
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61 |
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62 int ssi_sd_xfer(void *opaque, int val) |
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63 { |
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64 ssi_sd_state *s = (ssi_sd_state *)opaque; |
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65 |
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66 /* Special case: allow CMD12 (STOP TRANSMISSION) while reading data. */ |
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67 if (s->mode == SSI_SD_DATA_READ && val == 0x4d) { |
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68 s->mode = SSI_SD_CMD; |
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69 /* There must be at least one byte delay before the card responds. */ |
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70 s->stopping = 1; |
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71 } |
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72 |
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73 switch (s->mode) { |
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74 case SSI_SD_CMD: |
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75 if (val == 0xff) { |
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76 DPRINTF("NULL command\n"); |
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77 return 0xff; |
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78 } |
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79 s->cmd = val & 0x3f; |
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80 s->mode = SSI_SD_CMDARG; |
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81 s->arglen = 0; |
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82 return 0xff; |
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83 case SSI_SD_CMDARG: |
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84 if (s->arglen == 4) { |
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85 struct sd_request_s request; |
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86 uint8_t longresp[16]; |
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87 /* FIXME: Check CRC. */ |
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88 request.cmd = s->cmd; |
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89 request.arg = (s->cmdarg[0] << 24) | (s->cmdarg[1] << 16) |
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90 | (s->cmdarg[2] << 8) | s->cmdarg[3]; |
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91 DPRINTF("CMD%d arg 0x%08x\n", s->cmd, request.arg); |
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92 s->arglen = sd_do_command(s->sd, &request, longresp); |
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93 if (s->arglen <= 0) { |
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94 s->arglen = 1; |
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95 s->response[0] = 4; |
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96 DPRINTF("SD command failed\n"); |
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97 } else if (s->cmd == 58) { |
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98 /* CMD58 returns R3 response (OCR) */ |
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99 DPRINTF("Returned OCR\n"); |
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100 s->arglen = 5; |
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101 s->response[0] = 1; |
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102 memcpy(&s->response[1], longresp, 4); |
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103 } else if (s->arglen != 4) { |
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104 BADF("Unexpected response to cmd %d\n", s->cmd); |
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105 /* Illegal command is about as near as we can get. */ |
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106 s->arglen = 1; |
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107 s->response[0] = 4; |
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108 } else { |
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109 /* All other commands return status. */ |
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110 uint32_t cardstatus; |
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111 uint16_t status; |
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112 /* CMD13 returns a 2-byte statuse work. Other commands |
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113 only return the first byte. */ |
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114 s->arglen = (s->cmd == 13) ? 2 : 1; |
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115 cardstatus = (longresp[0] << 24) | (longresp[1] << 16) |
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116 | (longresp[2] << 8) | longresp[3]; |
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117 status = 0; |
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118 if (((cardstatus >> 9) & 0xf) < 4) |
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119 status |= SSI_SDR_IDLE; |
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120 if (cardstatus & ERASE_RESET) |
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121 status |= SSI_SDR_ERASE_RESET; |
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122 if (cardstatus & ILLEGAL_COMMAND) |
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123 status |= SSI_SDR_ILLEGAL_COMMAND; |
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124 if (cardstatus & COM_CRC_ERROR) |
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125 status |= SSI_SDR_COM_CRC_ERROR; |
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126 if (cardstatus & ERASE_SEQ_ERROR) |
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127 status |= SSI_SDR_ERASE_SEQ_ERROR; |
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128 if (cardstatus & ADDRESS_ERROR) |
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129 status |= SSI_SDR_ADDRESS_ERROR; |
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130 if (cardstatus & CARD_IS_LOCKED) |
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131 status |= SSI_SDR_LOCKED; |
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132 if (cardstatus & (LOCK_UNLOCK_FAILED | WP_ERASE_SKIP)) |
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133 status |= SSI_SDR_WP_ERASE; |
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134 if (cardstatus & SD_ERROR) |
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135 status |= SSI_SDR_ERROR; |
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136 if (cardstatus & CC_ERROR) |
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137 status |= SSI_SDR_CC_ERROR; |
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138 if (cardstatus & CARD_ECC_FAILED) |
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139 status |= SSI_SDR_ECC_FAILED; |
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140 if (cardstatus & WP_VIOLATION) |
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141 status |= SSI_SDR_WP_VIOLATION; |
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142 if (cardstatus & ERASE_PARAM) |
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143 status |= SSI_SDR_ERASE_PARAM; |
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144 if (cardstatus & (OUT_OF_RANGE | CID_CSD_OVERWRITE)) |
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145 status |= SSI_SDR_OUT_OF_RANGE; |
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146 /* ??? Don't know what Parameter Error really means, so |
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147 assume it's set if the second byte is nonzero. */ |
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148 if (status & 0xff) |
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149 status |= SSI_SDR_PARAMETER_ERROR; |
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150 s->response[0] = status >> 8; |
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151 s->response[1] = status; |
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152 DPRINTF("Card status 0x%02x\n", status); |
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153 } |
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154 s->mode = SSI_SD_RESPONSE; |
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155 s->response_pos = 0; |
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156 } else { |
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157 s->cmdarg[s->arglen++] = val; |
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158 } |
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159 return 0xff; |
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160 case SSI_SD_RESPONSE: |
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161 if (s->stopping) { |
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162 s->stopping = 0; |
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163 return 0xff; |
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164 } |
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165 if (s->response_pos < s->arglen) { |
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166 DPRINTF("Response 0x%02x\n", s->response[s->response_pos]); |
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167 return s->response[s->response_pos++]; |
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168 } |
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169 if (sd_data_ready(s->sd)) { |
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170 DPRINTF("Data read\n"); |
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171 s->mode = SSI_SD_DATA_START; |
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172 } else { |
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173 DPRINTF("End of command\n"); |
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174 s->mode = SSI_SD_CMD; |
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175 } |
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176 return 0xff; |
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177 case SSI_SD_DATA_START: |
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178 DPRINTF("Start read block\n"); |
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179 s->mode = SSI_SD_DATA_READ; |
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180 return 0xfe; |
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181 case SSI_SD_DATA_READ: |
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182 val = sd_read_data(s->sd); |
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183 if (!sd_data_ready(s->sd)) { |
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184 DPRINTF("Data read end\n"); |
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185 s->mode = SSI_SD_CMD; |
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186 } |
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187 return val; |
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188 } |
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189 /* Should never happen. */ |
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190 return 0xff; |
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191 } |
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192 |
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193 static void ssi_sd_save(QEMUFile *f, void *opaque) |
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194 { |
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195 ssi_sd_state *s = (ssi_sd_state *)opaque; |
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196 int i; |
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197 |
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198 qemu_put_be32(f, s->mode); |
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199 qemu_put_be32(f, s->cmd); |
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200 for (i = 0; i < 4; i++) |
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201 qemu_put_be32(f, s->cmdarg[i]); |
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202 for (i = 0; i < 5; i++) |
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203 qemu_put_be32(f, s->response[i]); |
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204 qemu_put_be32(f, s->arglen); |
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205 qemu_put_be32(f, s->response_pos); |
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206 qemu_put_be32(f, s->stopping); |
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207 } |
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208 |
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209 static int ssi_sd_load(QEMUFile *f, void *opaque, int version_id) |
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210 { |
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211 ssi_sd_state *s = (ssi_sd_state *)opaque; |
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212 int i; |
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213 |
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214 if (version_id != 1) |
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215 return -EINVAL; |
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216 |
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217 s->mode = qemu_get_be32(f); |
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218 s->cmd = qemu_get_be32(f); |
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219 for (i = 0; i < 4; i++) |
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220 s->cmdarg[i] = qemu_get_be32(f); |
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221 for (i = 0; i < 5; i++) |
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222 s->response[i] = qemu_get_be32(f); |
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223 s->arglen = qemu_get_be32(f); |
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224 s->response_pos = qemu_get_be32(f); |
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225 s->stopping = qemu_get_be32(f); |
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226 |
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227 return 0; |
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228 } |
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229 |
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230 void *ssi_sd_init(BlockDriverState *bs) |
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231 { |
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232 ssi_sd_state *s; |
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233 |
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234 s = (ssi_sd_state *)qemu_mallocz(sizeof(ssi_sd_state)); |
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235 s->mode = SSI_SD_CMD; |
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236 s->sd = sd_init(bs, 1); |
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237 register_savevm("ssi_sd", -1, 1, ssi_sd_save, ssi_sd_load, s); |
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238 return s; |
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239 } |