| |
| #include "../kernel.h" |
|
|
| #define NVME_QSIZE 64 |
| #define NVME_CREATE_IO_SQ 1 |
| #define NVME_DELETE_IO_SQ 0 |
| #define NVME_IO_WRITE 1 |
| #define NVME_IO_READ 2 |
|
|
| typedef struct { u64 cmd_id; u32 nsid; u64 prp1,prp2; u32 cdw[6]; } NVMeCmd; |
| typedef struct { u64* sq; u64* cq; u16 sq_h,sq_t,cq_h; u32 phase; u8 id; } NVMeQ; |
|
|
| static NVMeQ admin_q, io_q; |
| static NVMeCmd* cmds[256]; |
|
|
| void nvme_init(void) { |
| admin_q.sq=(u64*)alloc_page(); admin_q.cq=(u64*)alloc_page(); |
| io_q.sq=(u64*)alloc_page(); io_q.cq=(u64*)alloc_page(); |
| for(u32 i=0;i<NVME_QSIZE;i++){admin_q.sq[i]=0;admin_q.cq[i]=0;io_q.sq[i]=0;io_q.cq[i]=0;} |
| } |
|
|
| int nvme_submit_admin(NVMeCmd* cmd) { |
| admin_q.sq[admin_q.sq_t]=*(u64*)cmd; |
| admin_q.sq_t=(admin_q.sq_t+1)&(NVME_QSIZE-1); |
| return admin_q.sq_t-1; |
| } |
| int nvme_submit_io(NVMeCmd* cmd) { |
| io_q.sq[io_q.sq_t]=*(u64*)cmd; |
| io_q.sq_t=(io_q.sq_t+1)&(NVME_QSIZE-1); |
| return io_q.sq_t-1; |
| } |
| int nvme_complete_admin(u64* res) { if(admin_q.cq_h==admin_q.sq_t)return 0;*res=admin_q.cq[admin_q.cq_h];admin_q.cq_h=(admin_q.cq_h+1)&(NVME_QSIZE-1);return 1; } |
| int nvme_complete_io(u64* res) { if(io_q.cq_h==io_q.sq_t)return 0;*res=io_q.cq[io_q.cq_h];io_q.cq_h=(io_q.cq_h+1)&(NVME_QSIZE-1);return 1; } |
|
|
| int nvme_read(u32 nsid, u64 lba, void* buf, u32 cnt) { |
| NVMeCmd cmd = {0}; cmd.nsid=nsid; cmd.cdw[0]=NVME_IO_READ; cmd.prp1=(u64)buf; |
| return nvme_submit_io(&cmd); |
| } |
| int nvme_write(u32 nsid, u64 lba, const void* buf, u32 cnt) { |
| NVMeCmd cmd = {0}; cmd.nsid=nsid; cmd.cdw[0]=NVME_IO_WRITE; cmd.prp1=(u64)buf; |
| return nvme_submit_io(&cmd); |
| } |
|
|