octeontx2-af: cn10k: Support configurable LMTST regions

This patch extends the lmtst_tbl_setup_req mbox to support run time
LMTST configuration.
RVU PF/VF and DPDK/ODP allocates a LMT region, creates a translation
entry for a device via VFIO IOCTLs.
This IOVA is shared with AF through above mbox. AF then uses
RVU_SMMU transulation Widget and gets PA for the IOVA and updates
the LMTtable entry for that device.

Signed-off-by: Geetha sowjanya <gakula@marvell.com>
Signed-off-by: Sunil Kovvuri Goutham <sgoutham@marvell.com>
Signed-off-by: David S. Miller <davem@davemloft.net>
This commit is contained in:
Geetha sowjanya 2021-06-29 22:30:05 +05:30 committed by David S. Miller
parent 873a1e3d20
commit 893ae97214
3 changed files with 103 additions and 35 deletions

View File

@ -1283,6 +1283,9 @@ struct set_vf_perm {
struct lmtst_tbl_setup_req {
struct mbox_msghdr hdr;
u16 base_pcifunc;
u8 use_local_lmt_region;
u64 lmt_iova;
u64 rsvd[4];
};
/* CPT mailbox error codes

View File

@ -55,14 +55,101 @@ static u32 rvu_get_lmtst_tbl_index(struct rvu *rvu, u16 pcifunc)
(pcifunc & RVU_PFVF_FUNC_MASK)) * LMT_MAPTBL_ENTRY_SIZE;
}
static int rvu_get_lmtaddr(struct rvu *rvu, u16 pcifunc,
u64 iova, u64 *lmt_addr)
{
u64 pa, val, pf;
int err;
if (!iova) {
dev_err(rvu->dev, "%s Requested Null address for transulation\n", __func__);
return -EINVAL;
}
rvu_write64(rvu, BLKADDR_RVUM, RVU_AF_SMMU_ADDR_REQ, iova);
pf = rvu_get_pf(pcifunc) & 0x1F;
val = BIT_ULL(63) | BIT_ULL(14) | BIT_ULL(13) | pf << 8 |
((pcifunc & RVU_PFVF_FUNC_MASK) & 0xFF);
rvu_write64(rvu, BLKADDR_RVUM, RVU_AF_SMMU_TXN_REQ, val);
err = rvu_poll_reg(rvu, BLKADDR_RVUM, RVU_AF_SMMU_ADDR_RSP_STS, BIT_ULL(0), false);
if (err) {
dev_err(rvu->dev, "%s LMTLINE iova transulation failed\n", __func__);
return err;
}
val = rvu_read64(rvu, BLKADDR_RVUM, RVU_AF_SMMU_ADDR_RSP_STS);
if (val & ~0x1ULL) {
dev_err(rvu->dev, "%s LMTLINE iova transulation failed err:%llx\n", __func__, val);
return -EIO;
}
/* PA[51:12] = RVU_AF_SMMU_TLN_FLIT1[60:21]
* PA[11:0] = IOVA[11:0]
*/
pa = rvu_read64(rvu, BLKADDR_RVUM, RVU_AF_SMMU_TLN_FLIT1) >> 21;
pa &= GENMASK_ULL(39, 0);
*lmt_addr = (pa << 12) | (iova & 0xFFF);
return 0;
}
static int rvu_update_lmtaddr(struct rvu *rvu, u16 pcifunc, u64 lmt_addr)
{
struct rvu_pfvf *pfvf = rvu_get_pfvf(rvu, pcifunc);
u32 tbl_idx;
int err = 0;
u64 val;
/* Read the current lmt addr of pcifunc */
tbl_idx = rvu_get_lmtst_tbl_index(rvu, pcifunc);
err = lmtst_map_table_ops(rvu, tbl_idx, &val, LMT_TBL_OP_READ);
if (err) {
dev_err(rvu->dev,
"Failed to read LMT map table: index 0x%x err %d\n",
tbl_idx, err);
return err;
}
/* Storing the seondary's lmt base address as this needs to be
* reverted in FLR. Also making sure this default value doesn't
* get overwritten on multiple calls to this mailbox.
*/
if (!pfvf->lmt_base_addr)
pfvf->lmt_base_addr = val;
/* Update the LMT table with new addr */
err = lmtst_map_table_ops(rvu, tbl_idx, &lmt_addr, LMT_TBL_OP_WRITE);
if (err) {
dev_err(rvu->dev,
"Failed to update LMT map table: index 0x%x err %d\n",
tbl_idx, err);
return err;
}
return 0;
}
int rvu_mbox_handler_lmtst_tbl_setup(struct rvu *rvu,
struct lmtst_tbl_setup_req *req,
struct msg_rsp *rsp)
{
struct rvu_pfvf *pfvf = rvu_get_pfvf(rvu, req->hdr.pcifunc);
u32 pri_tbl_idx, sec_tbl_idx;
u64 lmt_addr, val;
u32 pri_tbl_idx;
int err = 0;
u64 val;
/* Check if PF_FUNC wants to use it's own local memory as LMTLINE
* region, if so, convert that IOVA to physical address and
* populate LMT table with that address
*/
if (req->use_local_lmt_region) {
err = rvu_get_lmtaddr(rvu, req->hdr.pcifunc,
req->lmt_iova, &lmt_addr);
if (err < 0)
return err;
/* Update the lmt addr for this PFFUNC in the LMT table */
err = rvu_update_lmtaddr(rvu, req->hdr.pcifunc, lmt_addr);
if (err)
return err;
}
/* Reconfiguring lmtst map table in lmt region shared mode i.e. make
* multiple PF_FUNCs to share an LMTLINE region, so primary/base
@ -76,27 +163,6 @@ int rvu_mbox_handler_lmtst_tbl_setup(struct rvu *rvu,
*/
pri_tbl_idx = rvu_get_lmtst_tbl_index(rvu, req->base_pcifunc);
/* Truncating secondary pcifunc to calculate the LMT table index
* equivalent to secondary pcifunc.
*/
sec_tbl_idx = rvu_get_lmtst_tbl_index(rvu, req->hdr.pcifunc);
/* Read the base lmt addr of the secondary pcifunc */
err = lmtst_map_table_ops(rvu, sec_tbl_idx, &val,
LMT_TBL_OP_READ);
if (err) {
dev_err(rvu->dev,
"Failed to read LMT map table: index 0x%x err %d\n",
sec_tbl_idx, err);
goto error;
}
/* Storing the seondary's lmt base address as this needs to be
* reverted in FLR. Also making sure this default value doesn't
* get overwritten on multiple calls to this mailbox.
*/
if (!pfvf->lmt_base_addr)
pfvf->lmt_base_addr = val;
/* Read the base lmt addr of the primary pcifunc */
err = lmtst_map_table_ops(rvu, pri_tbl_idx, &val,
LMT_TBL_OP_READ);
@ -104,24 +170,18 @@ int rvu_mbox_handler_lmtst_tbl_setup(struct rvu *rvu,
dev_err(rvu->dev,
"Failed to read LMT map table: index 0x%x err %d\n",
pri_tbl_idx, err);
goto error;
return err;
}
/* Update the base lmt addr of secondary with primary's base
* lmt addr.
*/
err = lmtst_map_table_ops(rvu, sec_tbl_idx, &val,
LMT_TBL_OP_WRITE);
if (err) {
dev_err(rvu->dev,
"Failed to update LMT map table: index 0x%x err %d\n",
sec_tbl_idx, err);
goto error;
}
err = rvu_update_lmtaddr(rvu, req->hdr.pcifunc, val);
if (err)
return err;
}
error:
return err;
return 0;
}
/* Resetting the lmtst map table to original base addresses */

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@ -49,6 +49,11 @@
#define RVU_AF_PFX_VF_BAR4_ADDR (0x5400 | (a) << 4)
#define RVU_AF_PFX_VF_BAR4_CFG (0x5600 | (a) << 4)
#define RVU_AF_PFX_LMTLINE_ADDR (0x5800 | (a) << 4)
#define RVU_AF_SMMU_ADDR_REQ (0x6000)
#define RVU_AF_SMMU_TXN_REQ (0x6008)
#define RVU_AF_SMMU_ADDR_RSP_STS (0x6010)
#define RVU_AF_SMMU_ADDR_TLN (0x6018)
#define RVU_AF_SMMU_TLN_FLIT1 (0x6030)
/* Admin function's privileged PF/VF registers */
#define RVU_PRIV_CONST (0x8000000)