hw/sd: Support SDHC size cards
This patch adds SHDC support (-sd sd.img, where sd.img is larger than 1GB) to qemu. Signed-off-by: Jason S. McMullan <jason.mcmullan@gmail.com> Signed-off-by: Andrzej Zaborowski <andrew.zaborowski@intel.com>
This commit is contained in:
parent
2d9f27d2fd
commit
2d7adea4fe
144
hw/sd.c
144
hw/sd.c
@ -81,7 +81,7 @@ struct SDState {
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uint32_t vhs;
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int wp_switch;
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int *wp_groups;
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uint32_t size;
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uint64_t size;
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int blk_len;
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uint32_t erase_start;
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uint32_t erase_end;
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@ -92,7 +92,7 @@ struct SDState {
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int spi;
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int current_cmd;
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int blk_written;
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uint32_t data_start;
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uint64_t data_start;
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uint32_t data_offset;
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uint8_t data[512];
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qemu_irq readonly_cb;
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@ -249,37 +249,59 @@ static const uint8_t sd_csd_rw_mask[16] = {
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xfc, 0xfe,
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};
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static void sd_set_csd(SDState *sd, uint32_t size)
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static void sd_set_csd(SDState *sd, uint64_t size)
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{
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uint32_t csize = (size >> (CMULT_SHIFT + HWBLOCK_SHIFT)) - 1;
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uint32_t sectsize = (1 << (SECTOR_SHIFT + 1)) - 1;
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uint32_t wpsize = (1 << (WPGROUP_SHIFT + 1)) - 1;
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sd->csd[0] = 0x00; /* CSD structure */
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sd->csd[1] = 0x26; /* Data read access-time-1 */
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sd->csd[2] = 0x00; /* Data read access-time-2 */
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sd->csd[3] = 0x5a; /* Max. data transfer rate */
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sd->csd[4] = 0x5f; /* Card Command Classes */
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sd->csd[5] = 0x50 | /* Max. read data block length */
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HWBLOCK_SHIFT;
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sd->csd[6] = 0xe0 | /* Partial block for read allowed */
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((csize >> 10) & 0x03);
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sd->csd[7] = 0x00 | /* Device size */
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((csize >> 2) & 0xff);
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sd->csd[8] = 0x3f | /* Max. read current */
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((csize << 6) & 0xc0);
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sd->csd[9] = 0xfc | /* Max. write current */
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((CMULT_SHIFT - 2) >> 1);
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sd->csd[10] = 0x40 | /* Erase sector size */
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(((CMULT_SHIFT - 2) << 7) & 0x80) | (sectsize >> 1);
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sd->csd[11] = 0x00 | /* Write protect group size */
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((sectsize << 7) & 0x80) | wpsize;
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sd->csd[12] = 0x90 | /* Write speed factor */
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(HWBLOCK_SHIFT >> 2);
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sd->csd[13] = 0x20 | /* Max. write data block length */
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((HWBLOCK_SHIFT << 6) & 0xc0);
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sd->csd[14] = 0x00; /* File format group */
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sd->csd[15] = (sd_crc7(sd->csd, 15) << 1) | 1;
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if (size <= 0x40000000) { /* Standard Capacity SD */
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sd->csd[0] = 0x00; /* CSD structure */
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sd->csd[1] = 0x26; /* Data read access-time-1 */
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sd->csd[2] = 0x00; /* Data read access-time-2 */
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sd->csd[3] = 0x5a; /* Max. data transfer rate */
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sd->csd[4] = 0x5f; /* Card Command Classes */
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sd->csd[5] = 0x50 | /* Max. read data block length */
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HWBLOCK_SHIFT;
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sd->csd[6] = 0xe0 | /* Partial block for read allowed */
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((csize >> 10) & 0x03);
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sd->csd[7] = 0x00 | /* Device size */
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((csize >> 2) & 0xff);
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sd->csd[8] = 0x3f | /* Max. read current */
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((csize << 6) & 0xc0);
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sd->csd[9] = 0xfc | /* Max. write current */
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((CMULT_SHIFT - 2) >> 1);
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sd->csd[10] = 0x40 | /* Erase sector size */
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(((CMULT_SHIFT - 2) << 7) & 0x80) | (sectsize >> 1);
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sd->csd[11] = 0x00 | /* Write protect group size */
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((sectsize << 7) & 0x80) | wpsize;
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sd->csd[12] = 0x90 | /* Write speed factor */
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(HWBLOCK_SHIFT >> 2);
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sd->csd[13] = 0x20 | /* Max. write data block length */
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((HWBLOCK_SHIFT << 6) & 0xc0);
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sd->csd[14] = 0x00; /* File format group */
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sd->csd[15] = (sd_crc7(sd->csd, 15) << 1) | 1;
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} else { /* SDHC */
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size /= 512 * 1024;
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size -= 1;
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sd->csd[0] = 0x40;
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sd->csd[1] = 0x0e;
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sd->csd[2] = 0x00;
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sd->csd[3] = 0x32;
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sd->csd[4] = 0x5b;
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sd->csd[5] = 0x59;
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sd->csd[6] = 0x00;
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sd->csd[7] = (size >> 16) & 0xff;
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sd->csd[8] = (size >> 8) & 0xff;
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sd->csd[9] = (size & 0xff);
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sd->csd[10] = 0x7f;
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sd->csd[11] = 0x80;
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sd->csd[12] = 0x0a;
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sd->csd[13] = 0x40;
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sd->csd[14] = 0x00;
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sd->csd[15] = 0x00;
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sd->ocr |= 1 << 30; /* High Capacity SD Memort Card */
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}
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}
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static void sd_set_rca(SDState *sd)
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@ -362,7 +384,7 @@ static void sd_response_r7_make(SDState *sd, uint8_t *response)
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static void sd_reset(SDState *sd, BlockDriverState *bdrv)
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{
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uint32_t size;
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uint64_t size;
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uint64_t sect;
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if (bdrv) {
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@ -372,10 +394,7 @@ static void sd_reset(SDState *sd, BlockDriverState *bdrv)
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}
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sect <<= 9;
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if (sect > 0x40000000)
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size = 0x40000000; /* 1 gig */
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else
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size = sect + 1;
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size = sect + 1;
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sect = (size >> (HWBLOCK_SHIFT + SECTOR_SHIFT + WPGROUP_SHIFT)) + 1;
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@ -460,7 +479,7 @@ static void sd_erase(SDState *sd)
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sd->card_status |= WP_ERASE_SKIP;
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}
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static uint32_t sd_wpbits(SDState *sd, uint32_t addr)
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static uint32_t sd_wpbits(SDState *sd, uint64_t addr)
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{
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uint32_t i, wpnum;
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uint32_t ret = 0;
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@ -583,6 +602,7 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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SDRequest req)
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{
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uint32_t rca = 0x0000;
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uint64_t addr = (sd->ocr & (1 << 30)) ? (uint64_t) req.arg << 9 : req.arg;
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if (sd_cmd_type[req.cmd] == sd_ac || sd_cmd_type[req.cmd] == sd_adtc)
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rca = req.arg >> 16;
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@ -735,7 +755,7 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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break;
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sd->state = sd_sendingdata_state;
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memcpy(sd->data, sd->csd, 16);
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sd->data_start = req.arg;
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sd->data_start = addr;
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sd->data_offset = 0;
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return sd_r1;
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@ -757,7 +777,7 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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break;
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sd->state = sd_sendingdata_state;
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memcpy(sd->data, sd->cid, 16);
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sd->data_start = req.arg;
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sd->data_start = addr;
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sd->data_offset = 0;
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return sd_r1;
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@ -850,7 +870,7 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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switch (sd->state) {
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case sd_transfer_state:
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sd->state = sd_sendingdata_state;
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sd->data_start = req.arg;
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sd->data_start = addr;
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sd->data_offset = 0;
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if (sd->data_start + sd->blk_len > sd->size)
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@ -866,7 +886,7 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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switch (sd->state) {
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case sd_transfer_state:
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sd->state = sd_sendingdata_state;
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sd->data_start = req.arg;
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sd->data_start = addr;
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sd->data_offset = 0;
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if (sd->data_start + sd->blk_len > sd->size)
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@ -888,7 +908,7 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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if (sd->spi)
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break;
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sd->state = sd_receivingdata_state;
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sd->data_start = req.arg;
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sd->data_start = addr;
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sd->data_offset = 0;
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sd->blk_written = 0;
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@ -914,7 +934,7 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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if (sd->spi)
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break;
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sd->state = sd_receivingdata_state;
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sd->data_start = req.arg;
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sd->data_start = addr;
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sd->data_offset = 0;
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sd->blk_written = 0;
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@ -965,13 +985,13 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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case 28: /* CMD28: SET_WRITE_PROT */
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switch (sd->state) {
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case sd_transfer_state:
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if (req.arg >= sd->size) {
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if (addr >= sd->size) {
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sd->card_status = ADDRESS_ERROR;
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return sd_r1b;
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}
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sd->state = sd_programming_state;
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sd->wp_groups[req.arg >> (HWBLOCK_SHIFT +
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sd->wp_groups[addr >> (HWBLOCK_SHIFT +
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SECTOR_SHIFT + WPGROUP_SHIFT)] = 1;
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/* Bzzzzzzztt .... Operation complete. */
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sd->state = sd_transfer_state;
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@ -985,13 +1005,13 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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case 29: /* CMD29: CLR_WRITE_PROT */
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switch (sd->state) {
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case sd_transfer_state:
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if (req.arg >= sd->size) {
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if (addr >= sd->size) {
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sd->card_status = ADDRESS_ERROR;
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return sd_r1b;
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}
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sd->state = sd_programming_state;
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sd->wp_groups[req.arg >> (HWBLOCK_SHIFT +
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sd->wp_groups[addr >> (HWBLOCK_SHIFT +
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SECTOR_SHIFT + WPGROUP_SHIFT)] = 0;
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/* Bzzzzzzztt .... Operation complete. */
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sd->state = sd_transfer_state;
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@ -1007,7 +1027,7 @@ static sd_rsp_type_t sd_normal_command(SDState *sd,
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case sd_transfer_state:
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sd->state = sd_sendingdata_state;
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*(uint32_t *) sd->data = sd_wpbits(sd, req.arg);
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sd->data_start = req.arg;
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sd->data_start = addr;
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sd->data_offset = 0;
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return sd_r1b;
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@ -1322,11 +1342,12 @@ int sd_do_command(SDState *sd, SDRequest *req,
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return rsplen;
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}
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/* No real need for 64 bit addresses here */
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static void sd_blk_read(SDState *sd, uint32_t addr, uint32_t len)
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static void sd_blk_read(SDState *sd, uint64_t addr, uint32_t len)
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{
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uint32_t end = addr + len;
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uint64_t end = addr + len;
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DPRINTF("sd_blk_read: addr = 0x%08llx, len = %d\n",
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(unsigned long long) addr, len);
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if (!sd->bdrv || bdrv_read(sd->bdrv, addr >> 9, sd->buf, 1) == -1) {
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fprintf(stderr, "sd_blk_read: read error on host side\n");
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return;
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@ -1344,9 +1365,9 @@ static void sd_blk_read(SDState *sd, uint32_t addr, uint32_t len)
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memcpy(sd->data, sd->buf + (addr & 511), len);
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}
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static void sd_blk_write(SDState *sd, uint32_t addr, uint32_t len)
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static void sd_blk_write(SDState *sd, uint64_t addr, uint32_t len)
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{
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uint32_t end = addr + len;
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uint64_t end = addr + len;
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if ((addr & 511) || len < 512)
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if (!sd->bdrv || bdrv_read(sd->bdrv, addr >> 9, sd->buf, 1) == -1) {
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@ -1505,6 +1526,7 @@ uint8_t sd_read_data(SDState *sd)
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{
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/* TODO: Append CRCs */
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uint8_t ret;
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int io_len;
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if (!sd->bdrv || !bdrv_is_inserted(sd->bdrv) || !sd->enable)
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return 0x00;
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@ -1517,6 +1539,8 @@ uint8_t sd_read_data(SDState *sd)
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if (sd->card_status & (ADDRESS_ERROR | WP_VIOLATION))
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return 0x00;
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io_len = (sd->ocr & (1 << 30)) ? 512 : sd->blk_len;
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switch (sd->current_cmd) {
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case 6: /* CMD6: SWITCH_FUNCTION */
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ret = sd->data[sd->data_offset ++];
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@ -1535,13 +1559,13 @@ uint8_t sd_read_data(SDState *sd)
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case 11: /* CMD11: READ_DAT_UNTIL_STOP */
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if (sd->data_offset == 0)
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BLK_READ_BLOCK(sd->data_start, sd->blk_len);
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BLK_READ_BLOCK(sd->data_start, io_len);
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ret = sd->data[sd->data_offset ++];
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if (sd->data_offset >= sd->blk_len) {
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sd->data_start += sd->blk_len;
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if (sd->data_offset >= io_len) {
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sd->data_start += io_len;
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sd->data_offset = 0;
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if (sd->data_start + sd->blk_len > sd->size) {
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if (sd->data_start + io_len > sd->size) {
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sd->card_status |= ADDRESS_ERROR;
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break;
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}
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@ -1557,22 +1581,22 @@ uint8_t sd_read_data(SDState *sd)
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case 17: /* CMD17: READ_SINGLE_BLOCK */
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if (sd->data_offset == 0)
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BLK_READ_BLOCK(sd->data_start, sd->blk_len);
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BLK_READ_BLOCK(sd->data_start, io_len);
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ret = sd->data[sd->data_offset ++];
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if (sd->data_offset >= sd->blk_len)
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if (sd->data_offset >= io_len)
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sd->state = sd_transfer_state;
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break;
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case 18: /* CMD18: READ_MULTIPLE_BLOCK */
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if (sd->data_offset == 0)
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BLK_READ_BLOCK(sd->data_start, sd->blk_len);
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BLK_READ_BLOCK(sd->data_start, io_len);
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ret = sd->data[sd->data_offset ++];
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if (sd->data_offset >= sd->blk_len) {
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sd->data_start += sd->blk_len;
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if (sd->data_offset >= io_len) {
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sd->data_start += io_len;
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sd->data_offset = 0;
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if (sd->data_start + sd->blk_len > sd->size) {
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if (sd->data_start + io_len > sd->size) {
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sd->card_status |= ADDRESS_ERROR;
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break;
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}
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