提交 3902b429 编写于 作者: B Bob Pearson 提交者: Jason Gunthorpe

RDMA/rxe: Implement invalidate MW operations

Implement invalidate MW and cleaned up invalidate MR operations.

Added code to perform remote invalidate for send with invalidate.  Added
code to perform local invalidation. Deleted some blank lines in rxe_loc.h.

Link: https://lore.kernel.org/r/20210608042552.33275-9-rpearsonhpe@gmail.comSigned-off-by: NBob Pearson <rpearsonhpe@gmail.com>
Signed-off-by: NJason Gunthorpe <jgg@nvidia.com>
上级 32a577b4
......@@ -349,7 +349,7 @@ static inline enum comp_state do_read(struct rxe_qp *qp,
ret = copy_data(qp->pd, IB_ACCESS_LOCAL_WRITE,
&wqe->dma, payload_addr(pkt),
payload_size(pkt), to_mr_obj, NULL);
payload_size(pkt), RXE_TO_MR_OBJ, NULL);
if (ret)
return COMPST_ERROR;
......@@ -369,7 +369,7 @@ static inline enum comp_state do_atomic(struct rxe_qp *qp,
ret = copy_data(qp->pd, IB_ACCESS_LOCAL_WRITE,
&wqe->dma, &atomic_orig,
sizeof(u64), to_mr_obj, NULL);
sizeof(u64), RXE_TO_MR_OBJ, NULL);
if (ret)
return COMPST_ERROR;
else
......
......@@ -71,46 +71,29 @@ struct rxe_mmap_info *rxe_create_mmap_info(struct rxe_dev *dev, u32 size,
int rxe_mmap(struct ib_ucontext *context, struct vm_area_struct *vma);
/* rxe_mr.c */
enum copy_direction {
to_mr_obj,
from_mr_obj,
};
u8 rxe_get_next_key(u32 last_key);
void rxe_mr_init_dma(struct rxe_pd *pd, int access, struct rxe_mr *mr);
int rxe_mr_init_user(struct rxe_pd *pd, u64 start, u64 length, u64 iova,
int access, struct rxe_mr *mr);
int rxe_mr_init_fast(struct rxe_pd *pd, int max_pages, struct rxe_mr *mr);
int rxe_mr_copy(struct rxe_mr *mr, u64 iova, void *addr, int length,
enum copy_direction dir, u32 *crcp);
enum rxe_mr_copy_dir dir, u32 *crcp);
int copy_data(struct rxe_pd *pd, int access,
struct rxe_dma_info *dma, void *addr, int length,
enum copy_direction dir, u32 *crcp);
enum rxe_mr_copy_dir dir, u32 *crcp);
void *iova_to_vaddr(struct rxe_mr *mr, u64 iova, int length);
enum lookup_type {
lookup_local,
lookup_remote,
};
struct rxe_mr *lookup_mr(struct rxe_pd *pd, int access, u32 key,
enum lookup_type type);
enum rxe_mr_lookup_type type);
int mr_check_range(struct rxe_mr *mr, u64 iova, size_t length);
void rxe_mr_cleanup(struct rxe_pool_entry *arg);
int advance_dma_data(struct rxe_dma_info *dma, unsigned int length);
int rxe_invalidate_mr(struct rxe_qp *qp, u32 rkey);
void rxe_mr_cleanup(struct rxe_pool_entry *arg);
/* rxe_mw.c */
int rxe_alloc_mw(struct ib_mw *ibmw, struct ib_udata *udata);
int rxe_dealloc_mw(struct ib_mw *ibmw);
int rxe_bind_mw(struct rxe_qp *qp, struct rxe_send_wqe *wqe);
int rxe_invalidate_mw(struct rxe_qp *qp, u32 rkey);
void rxe_mw_cleanup(struct rxe_pool_entry *arg);
/* rxe_net.c */
......
......@@ -55,21 +55,6 @@ static void rxe_mr_init(int access, struct rxe_mr *mr)
mr->map_shift = ilog2(RXE_BUF_PER_MAP);
}
void rxe_mr_cleanup(struct rxe_pool_entry *arg)
{
struct rxe_mr *mr = container_of(arg, typeof(*mr), pelem);
int i;
ib_umem_release(mr->umem);
if (mr->map) {
for (i = 0; i < mr->num_map; i++)
kfree(mr->map[i]);
kfree(mr->map);
}
}
static int rxe_mr_alloc(struct rxe_mr *mr, int num_buf)
{
int i;
......@@ -298,7 +283,7 @@ void *iova_to_vaddr(struct rxe_mr *mr, u64 iova, int length)
* crc32 if crcp is not zero. caller must hold a reference to mr
*/
int rxe_mr_copy(struct rxe_mr *mr, u64 iova, void *addr, int length,
enum copy_direction dir, u32 *crcp)
enum rxe_mr_copy_dir dir, u32 *crcp)
{
int err;
int bytes;
......@@ -316,9 +301,9 @@ int rxe_mr_copy(struct rxe_mr *mr, u64 iova, void *addr, int length,
if (mr->type == RXE_MR_TYPE_DMA) {
u8 *src, *dest;
src = (dir == to_mr_obj) ? addr : ((void *)(uintptr_t)iova);
src = (dir == RXE_TO_MR_OBJ) ? addr : ((void *)(uintptr_t)iova);
dest = (dir == to_mr_obj) ? ((void *)(uintptr_t)iova) : addr;
dest = (dir == RXE_TO_MR_OBJ) ? ((void *)(uintptr_t)iova) : addr;
memcpy(dest, src, length);
......@@ -346,8 +331,8 @@ int rxe_mr_copy(struct rxe_mr *mr, u64 iova, void *addr, int length,
u8 *src, *dest;
va = (u8 *)(uintptr_t)buf->addr + offset;
src = (dir == to_mr_obj) ? addr : va;
dest = (dir == to_mr_obj) ? va : addr;
src = (dir == RXE_TO_MR_OBJ) ? addr : va;
dest = (dir == RXE_TO_MR_OBJ) ? va : addr;
bytes = buf->size - offset;
......@@ -392,7 +377,7 @@ int copy_data(
struct rxe_dma_info *dma,
void *addr,
int length,
enum copy_direction dir,
enum rxe_mr_copy_dir dir,
u32 *crcp)
{
int bytes;
......@@ -412,7 +397,7 @@ int copy_data(
}
if (sge->length && (offset < sge->length)) {
mr = lookup_mr(pd, access, sge->lkey, lookup_local);
mr = lookup_mr(pd, access, sge->lkey, RXE_LOOKUP_LOCAL);
if (!mr) {
err = -EINVAL;
goto err1;
......@@ -438,7 +423,7 @@ int copy_data(
if (sge->length) {
mr = lookup_mr(pd, access, sge->lkey,
lookup_local);
RXE_LOOKUP_LOCAL);
if (!mr) {
err = -EINVAL;
goto err1;
......@@ -520,7 +505,7 @@ int advance_dma_data(struct rxe_dma_info *dma, unsigned int length)
* (4) verify that mr state is valid
*/
struct rxe_mr *lookup_mr(struct rxe_pd *pd, int access, u32 key,
enum lookup_type type)
enum rxe_mr_lookup_type type)
{
struct rxe_mr *mr;
struct rxe_dev *rxe = to_rdev(pd->ibpd.device);
......@@ -530,8 +515,8 @@ struct rxe_mr *lookup_mr(struct rxe_pd *pd, int access, u32 key,
if (!mr)
return NULL;
if (unlikely((type == lookup_local && mr_lkey(mr) != key) ||
(type == lookup_remote && mr_rkey(mr) != key) ||
if (unlikely((type == RXE_LOOKUP_LOCAL && mr_lkey(mr) != key) ||
(type == RXE_LOOKUP_REMOTE && mr_rkey(mr) != key) ||
mr_pd(mr) != pd || (access && !(access & mr->access)) ||
mr->state != RXE_MR_STATE_VALID)) {
rxe_drop_ref(mr);
......@@ -540,3 +525,47 @@ struct rxe_mr *lookup_mr(struct rxe_pd *pd, int access, u32 key,
return mr;
}
int rxe_invalidate_mr(struct rxe_qp *qp, u32 rkey)
{
struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
struct rxe_mr *mr;
int ret;
mr = rxe_pool_get_index(&rxe->mr_pool, rkey >> 8);
if (!mr) {
pr_err("%s: No MR for rkey %#x\n", __func__, rkey);
ret = -EINVAL;
goto err;
}
if (rkey != mr->ibmr.rkey) {
pr_err("%s: rkey (%#x) doesn't match mr->ibmr.rkey (%#x)\n",
__func__, rkey, mr->ibmr.rkey);
ret = -EINVAL;
goto err_drop_ref;
}
mr->state = RXE_MR_STATE_FREE;
ret = 0;
err_drop_ref:
rxe_drop_ref(mr);
err:
return ret;
}
void rxe_mr_cleanup(struct rxe_pool_entry *arg)
{
struct rxe_mr *mr = container_of(arg, typeof(*mr), pelem);
int i;
ib_umem_release(mr->umem);
if (mr->map) {
for (i = 0; i < mr->num_map; i++)
kfree(mr->map[i]);
kfree(mr->map);
}
}
......@@ -245,6 +245,73 @@ int rxe_bind_mw(struct rxe_qp *qp, struct rxe_send_wqe *wqe)
return ret;
}
static int rxe_check_invalidate_mw(struct rxe_qp *qp, struct rxe_mw *mw)
{
if (unlikely(mw->state == RXE_MW_STATE_INVALID))
return -EINVAL;
/* o10-37.2.26 */
if (unlikely(mw->ibmw.type == IB_MW_TYPE_1))
return -EINVAL;
return 0;
}
static void rxe_do_invalidate_mw(struct rxe_mw *mw)
{
struct rxe_qp *qp;
struct rxe_mr *mr;
/* valid type 2 MW will always have a QP pointer */
qp = mw->qp;
mw->qp = NULL;
rxe_drop_ref(qp);
/* valid type 2 MW will always have an MR pointer */
mr = mw->mr;
mw->mr = NULL;
atomic_dec(&mr->num_mw);
rxe_drop_ref(mr);
mw->access = 0;
mw->addr = 0;
mw->length = 0;
mw->state = RXE_MW_STATE_FREE;
}
int rxe_invalidate_mw(struct rxe_qp *qp, u32 rkey)
{
struct rxe_dev *rxe = to_rdev(qp->ibqp.device);
unsigned long flags;
struct rxe_mw *mw;
int ret;
mw = rxe_pool_get_index(&rxe->mw_pool, rkey >> 8);
if (!mw) {
ret = -EINVAL;
goto err;
}
if (rkey != mw->ibmw.rkey) {
ret = -EINVAL;
goto err_drop_ref;
}
spin_lock_irqsave(&mw->lock, flags);
ret = rxe_check_invalidate_mw(qp, mw);
if (ret)
goto err_unlock;
rxe_do_invalidate_mw(mw);
err_unlock:
spin_unlock_irqrestore(&mw->lock, flags);
err_drop_ref:
rxe_drop_ref(mw);
err:
return ret;
}
void rxe_mw_cleanup(struct rxe_pool_entry *elem)
{
struct rxe_mw *mw = container_of(elem, typeof(*mw), pelem);
......
......@@ -487,7 +487,7 @@ static int finish_packet(struct rxe_qp *qp, struct rxe_send_wqe *wqe,
} else {
err = copy_data(qp->pd, 0, &wqe->dma,
payload_addr(pkt), paylen,
from_mr_obj,
RXE_FROM_MR_OBJ,
&crc);
if (err)
return err;
......@@ -581,27 +581,25 @@ static void update_state(struct rxe_qp *qp, struct rxe_send_wqe *wqe,
static int rxe_do_local_ops(struct rxe_qp *qp, struct rxe_send_wqe *wqe)
{
u8 opcode = wqe->wr.opcode;
struct rxe_dev *rxe;
struct rxe_mr *mr;
u32 rkey;
int ret;
switch (opcode) {
case IB_WR_LOCAL_INV:
rxe = to_rdev(qp->ibqp.device);
rkey = wqe->wr.ex.invalidate_rkey;
mr = rxe_pool_get_index(&rxe->mr_pool, rkey >> 8);
if (!mr) {
pr_err("No MR for rkey %#x\n", rkey);
if (rkey_is_mw(rkey))
ret = rxe_invalidate_mw(qp, rkey);
else
ret = rxe_invalidate_mr(qp, rkey);
if (unlikely(ret)) {
wqe->status = IB_WC_LOC_QP_OP_ERR;
return -EINVAL;
return ret;
}
mr->state = RXE_MR_STATE_FREE;
rxe_drop_ref(mr);
break;
case IB_WR_REG_MR:
mr = to_rmr(wqe->wr.wr.reg.mr);
rxe_add_ref(mr);
mr->state = RXE_MR_STATE_VALID;
mr->access = wqe->wr.wr.reg.access;
......
......@@ -35,6 +35,7 @@ enum resp_states {
RESPST_ERR_TOO_MANY_RDMA_ATM_REQ,
RESPST_ERR_RNR,
RESPST_ERR_RKEY_VIOLATION,
RESPST_ERR_INVALIDATE_RKEY,
RESPST_ERR_LENGTH,
RESPST_ERR_CQ_OVERFLOW,
RESPST_ERROR,
......@@ -68,6 +69,7 @@ static char *resp_state_name[] = {
[RESPST_ERR_TOO_MANY_RDMA_ATM_REQ] = "ERR_TOO_MANY_RDMA_ATM_REQ",
[RESPST_ERR_RNR] = "ERR_RNR",
[RESPST_ERR_RKEY_VIOLATION] = "ERR_RKEY_VIOLATION",
[RESPST_ERR_INVALIDATE_RKEY] = "ERR_INVALIDATE_RKEY_VIOLATION",
[RESPST_ERR_LENGTH] = "ERR_LENGTH",
[RESPST_ERR_CQ_OVERFLOW] = "ERR_CQ_OVERFLOW",
[RESPST_ERROR] = "ERROR",
......@@ -449,7 +451,7 @@ static enum resp_states check_rkey(struct rxe_qp *qp,
resid = qp->resp.resid;
pktlen = payload_size(pkt);
mr = lookup_mr(qp->pd, access, rkey, lookup_remote);
mr = lookup_mr(qp->pd, access, rkey, RXE_LOOKUP_REMOTE);
if (!mr) {
state = RESPST_ERR_RKEY_VIOLATION;
goto err;
......@@ -503,7 +505,7 @@ static enum resp_states send_data_in(struct rxe_qp *qp, void *data_addr,
int err;
err = copy_data(qp->pd, IB_ACCESS_LOCAL_WRITE, &qp->resp.wqe->dma,
data_addr, data_len, to_mr_obj, NULL);
data_addr, data_len, RXE_TO_MR_OBJ, NULL);
if (unlikely(err))
return (err == -ENOSPC) ? RESPST_ERR_LENGTH
: RESPST_ERR_MALFORMED_WQE;
......@@ -519,7 +521,7 @@ static enum resp_states write_data_in(struct rxe_qp *qp,
int data_len = payload_size(pkt);
err = rxe_mr_copy(qp->resp.mr, qp->resp.va, payload_addr(pkt), data_len,
to_mr_obj, NULL);
RXE_TO_MR_OBJ, NULL);
if (err) {
rc = RESPST_ERR_RKEY_VIOLATION;
goto out;
......@@ -720,7 +722,7 @@ static enum resp_states read_reply(struct rxe_qp *qp,
return RESPST_ERR_RNR;
err = rxe_mr_copy(res->read.mr, res->read.va, payload_addr(&ack_pkt),
payload, from_mr_obj, &icrc);
payload, RXE_FROM_MR_OBJ, &icrc);
if (err)
pr_err("Failed copying memory\n");
......@@ -770,6 +772,14 @@ static void build_rdma_network_hdr(union rdma_network_hdr *hdr,
memcpy(&hdr->ibgrh, ipv6_hdr(skb), sizeof(hdr->ibgrh));
}
static int invalidate_rkey(struct rxe_qp *qp, u32 rkey)
{
if (rkey_is_mw(rkey))
return rxe_invalidate_mw(qp, rkey);
else
return rxe_invalidate_mr(qp, rkey);
}
/* Executes a new request. A retried request never reach that function (send
* and writes are discarded, and reads and atomics are retried elsewhere.
*/
......@@ -809,6 +819,14 @@ static enum resp_states execute(struct rxe_qp *qp, struct rxe_pkt_info *pkt)
WARN_ON_ONCE(1);
}
if (pkt->mask & RXE_IETH_MASK) {
u32 rkey = ieth_rkey(pkt);
err = invalidate_rkey(qp, rkey);
if (err)
return RESPST_ERR_INVALIDATE_RKEY;
}
/* next expected psn, read handles this separately */
qp->resp.psn = (pkt->psn + 1) & BTH_PSN_MASK;
qp->resp.ack_psn = qp->resp.psn;
......@@ -841,13 +859,13 @@ static enum resp_states do_complete(struct rxe_qp *qp,
memset(&cqe, 0, sizeof(cqe));
if (qp->rcq->is_user) {
uwc->status = qp->resp.status;
uwc->qp_num = qp->ibqp.qp_num;
uwc->wr_id = wqe->wr_id;
uwc->status = qp->resp.status;
uwc->qp_num = qp->ibqp.qp_num;
uwc->wr_id = wqe->wr_id;
} else {
wc->status = qp->resp.status;
wc->qp = &qp->ibqp;
wc->wr_id = wqe->wr_id;
wc->status = qp->resp.status;
wc->qp = &qp->ibqp;
wc->wr_id = wqe->wr_id;
}
if (wc->status == IB_WC_SUCCESS) {
......@@ -902,27 +920,14 @@ static enum resp_states do_complete(struct rxe_qp *qp,
}
if (pkt->mask & RXE_IETH_MASK) {
struct rxe_mr *rmr;
wc->wc_flags |= IB_WC_WITH_INVALIDATE;
wc->ex.invalidate_rkey = ieth_rkey(pkt);
rmr = rxe_pool_get_index(&rxe->mr_pool,
wc->ex.invalidate_rkey >> 8);
if (unlikely(!rmr)) {
pr_err("Bad rkey %#x invalidation\n",
wc->ex.invalidate_rkey);
return RESPST_ERROR;
}
rmr->state = RXE_MR_STATE_FREE;
rxe_drop_ref(rmr);
}
wc->qp = &qp->ibqp;
if (pkt->mask & RXE_DETH_MASK)
wc->src_qp = deth_sqp(pkt);
wc->qp = &qp->ibqp;
wc->port_num = qp->attr.port_num;
}
}
......@@ -1336,6 +1341,13 @@ int rxe_responder(void *arg)
}
break;
case RESPST_ERR_INVALIDATE_RKEY:
/* RC - Class J. */
qp->resp.goto_error = 1;
qp->resp.status = IB_WC_REM_INV_REQ_ERR;
state = RESPST_COMPLETE;
break;
case RESPST_ERR_LENGTH:
if (qp_type(qp) == IB_QPT_RC) {
/* Class C */
......
......@@ -278,6 +278,16 @@ enum rxe_mr_type {
RXE_MR_TYPE_MR,
};
enum rxe_mr_copy_dir {
RXE_TO_MR_OBJ,
RXE_FROM_MR_OBJ,
};
enum rxe_mr_lookup_type {
RXE_LOOKUP_LOCAL,
RXE_LOOKUP_REMOTE,
};
#define RXE_BUF_PER_MAP (PAGE_SIZE / sizeof(struct rxe_phys_buf))
struct rxe_phys_buf {
......@@ -289,6 +299,13 @@ struct rxe_map {
struct rxe_phys_buf buf[RXE_BUF_PER_MAP];
};
static inline int rkey_is_mw(u32 rkey)
{
u32 index = rkey >> 8;
return (index >= RXE_MIN_MW_INDEX) && (index <= RXE_MAX_MW_INDEX);
}
struct rxe_mr {
struct rxe_pool_entry pelem;
struct ib_mr ibmr;
......@@ -314,23 +331,23 @@ struct rxe_mr {
u32 max_buf;
u32 num_map;
struct rxe_map **map;
atomic_t num_mw;
struct rxe_map **map;
};
enum rxe_mw_state {
RXE_MW_STATE_INVALID = RXE_MR_STATE_INVALID,
RXE_MW_STATE_FREE = RXE_MR_STATE_FREE,
RXE_MW_STATE_VALID = RXE_MR_STATE_VALID,
RXE_MW_STATE_INVALID = RXE_MR_STATE_INVALID,
RXE_MW_STATE_FREE = RXE_MR_STATE_FREE,
RXE_MW_STATE_VALID = RXE_MR_STATE_VALID,
};
struct rxe_mw {
struct ib_mw ibmw;
struct rxe_pool_entry pelem;
struct ib_mw ibmw;
struct rxe_pool_entry pelem;
spinlock_t lock;
enum rxe_mw_state state;
struct rxe_qp *qp; /* Type 2 only */
struct rxe_qp *qp; /* Type 2 only */
struct rxe_mr *mr;
int access;
u64 addr;
......
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