void
scsi_create_packet12(struct scsi_cdb12* cdb,
- uint8_t opcode,
- uint32_t lba,
- uint32_t alloc_size)
+ u8_t opcode,
+ u32_t lba,
+ u32_t alloc_size)
{
memset(cdb, 0, sizeof(*cdb));
cdb->opcode = opcode;
void
scsi_create_packet16(struct scsi_cdb16* cdb,
- uint8_t opcode,
- uint64_t lba,
- uint32_t alloc_size)
+ u8_t opcode,
+ lba_t lba,
+ u32_t alloc_size)
{
memset(cdb, 0, sizeof(*cdb));
cdb->opcode = opcode;
- cdb->lba_be_hi = SCSI_FLIP((uint32_t)(lba >> 32));
- cdb->lba_be_lo = SCSI_FLIP((uint32_t)lba);
+ cdb->lba_be_hi = SCSI_FLIP((u32_t)(lba >> 32));
+ cdb->lba_be_lo = SCSI_FLIP((u32_t)lba);
cdb->length = SCSI_FLIP(alloc_size);
}
void
-scsi_parse_capacity(struct hba_device* device, uint32_t* parameter)
+scsi_parse_capacity(struct hba_device* device, u32_t* parameter)
{
if (device->cbd_size == SCSI_CDB16) {
- device->max_lba =
- SCSI_FLIP(*(parameter + 1)) | (SCSI_FLIP(*parameter) << 32);
+ device->max_lba = (lba_t)SCSI_FLIP(*(parameter + 1)) |
+ ((lba_t)SCSI_FLIP(*parameter) << 32);
device->block_size = SCSI_FLIP(*(parameter + 2));
} else {
// for READ_CAPACITY(10)
header->options |= (HBA_CMDH_WRITE * (write == 1)) | HBA_CMDH_ATAPI;
size_t size = vbuf_size(io_req->vbuf);
- uint32_t count = ICEIL(size, port->device->block_size);
+ u32_t count = ICEIL(size, port->device->block_size);
struct sata_reg_fis* fis = (struct sata_reg_fis*)table->command_fis;
void* cdb = table->atapi_cmd;
} else {
scsi_create_packet12((struct scsi_cdb12*)cdb,
write ? SCSI_WRITE_BLOCKS_12 : SCSI_READ_BLOCKS_12,
- io_req->blk_addr & -1,
+ io_req->blk_addr & (u32_t)-1,
count);
}
// field: cdb->misc1
- *((uint8_t*)cdb + 1) = 3 << 5; // RPROTECT=011b 禁用保护检查
+ *((u8_t*)cdb + 1) = 3 << 5; // RPROTECT=011b 禁用保护检查
// The async way...
struct hba_cmd_state* cmds = valloc(sizeof(struct hba_cmd_state));