Commit 24949304 authored by Ganesh Goudar's avatar Ganesh Goudar Committed by David S. Miller

cxgb4: IPv6 filter takes 2 tids

on T6, IPv6 filter would occupy 2 tids instead of 4.
Signed-off-by: default avatarKumar Sanghvi <kumaras@chelsio.com>
Signed-off-by: default avatarGanesh Goudar <ganeshgr@chelsio.com>
Signed-off-by: default avatarDavid S. Miller <davem@davemloft.net>
parent bfd072df
...@@ -439,19 +439,32 @@ int cxgb4_get_free_ftid(struct net_device *dev, int family) ...@@ -439,19 +439,32 @@ int cxgb4_get_free_ftid(struct net_device *dev, int family)
if (ftid >= t->nftids) if (ftid >= t->nftids)
ftid = -1; ftid = -1;
} else { } else {
ftid = bitmap_find_free_region(t->ftid_bmap, t->nftids, 2); if (is_t6(adap->params.chip)) {
if (ftid < 0) ftid = bitmap_find_free_region(t->ftid_bmap,
goto out_unlock; t->nftids, 1);
if (ftid < 0)
goto out_unlock;
/* this is only a lookup, keep the found region
* unallocated
*/
bitmap_release_region(t->ftid_bmap, ftid, 1);
} else {
ftid = bitmap_find_free_region(t->ftid_bmap,
t->nftids, 2);
if (ftid < 0)
goto out_unlock;
/* this is only a lookup, keep the found region unallocated */ bitmap_release_region(t->ftid_bmap, ftid, 2);
bitmap_release_region(t->ftid_bmap, ftid, 2); }
} }
out_unlock: out_unlock:
spin_unlock_bh(&t->ftid_lock); spin_unlock_bh(&t->ftid_lock);
return ftid; return ftid;
} }
static int cxgb4_set_ftid(struct tid_info *t, int fidx, int family) static int cxgb4_set_ftid(struct tid_info *t, int fidx, int family,
unsigned int chip_ver)
{ {
spin_lock_bh(&t->ftid_lock); spin_lock_bh(&t->ftid_lock);
...@@ -460,22 +473,31 @@ static int cxgb4_set_ftid(struct tid_info *t, int fidx, int family) ...@@ -460,22 +473,31 @@ static int cxgb4_set_ftid(struct tid_info *t, int fidx, int family)
return -EBUSY; return -EBUSY;
} }
if (family == PF_INET) if (family == PF_INET) {
__set_bit(fidx, t->ftid_bmap); __set_bit(fidx, t->ftid_bmap);
else } else {
bitmap_allocate_region(t->ftid_bmap, fidx, 2); if (chip_ver < CHELSIO_T6)
bitmap_allocate_region(t->ftid_bmap, fidx, 2);
else
bitmap_allocate_region(t->ftid_bmap, fidx, 1);
}
spin_unlock_bh(&t->ftid_lock); spin_unlock_bh(&t->ftid_lock);
return 0; return 0;
} }
static void cxgb4_clear_ftid(struct tid_info *t, int fidx, int family) static void cxgb4_clear_ftid(struct tid_info *t, int fidx, int family,
unsigned int chip_ver)
{ {
spin_lock_bh(&t->ftid_lock); spin_lock_bh(&t->ftid_lock);
if (family == PF_INET) if (family == PF_INET) {
__clear_bit(fidx, t->ftid_bmap); __clear_bit(fidx, t->ftid_bmap);
else } else {
bitmap_release_region(t->ftid_bmap, fidx, 2); if (chip_ver < CHELSIO_T6)
bitmap_release_region(t->ftid_bmap, fidx, 2);
else
bitmap_release_region(t->ftid_bmap, fidx, 1);
}
spin_unlock_bh(&t->ftid_lock); spin_unlock_bh(&t->ftid_lock);
} }
...@@ -1249,23 +1271,42 @@ int __cxgb4_set_filter(struct net_device *dev, int filter_id, ...@@ -1249,23 +1271,42 @@ int __cxgb4_set_filter(struct net_device *dev, int filter_id,
} }
} }
} else { /* IPv6 */ } else { /* IPv6 */
/* Ensure that the IPv6 filter is aligned on a if (chip_ver < CHELSIO_T6) {
* multiple of 4 boundary. /* Ensure that the IPv6 filter is aligned on a
*/ * multiple of 4 boundary.
if (filter_id & 0x3) { */
dev_err(adapter->pdev_dev, if (filter_id & 0x3) {
"Invalid location. IPv6 must be aligned on a 4-slot boundary\n"); dev_err(adapter->pdev_dev,
return -EINVAL; "Invalid location. IPv6 must be aligned on a 4-slot boundary\n");
} return -EINVAL;
}
/* Check all except the base overlapping IPv4 filter slots. */ /* Check all except the base overlapping IPv4 filter
for (fidx = filter_id + 1; fidx < filter_id + 4; fidx++) { * slots.
*/
for (fidx = filter_id + 1; fidx < filter_id + 4;
fidx++) {
f = &adapter->tids.ftid_tab[fidx];
if (f->valid) {
dev_err(adapter->pdev_dev,
"Invalid location. IPv6 requires 4 slots and an IPv4 filter exists at %u\n",
fidx);
return -EBUSY;
}
}
} else {
/* For T6, CLIP being enabled, IPv6 filter would occupy
* 2 entries.
*/
if (filter_id & 0x1)
return -EINVAL;
/* Check overlapping IPv4 filter slot */
fidx = filter_id + 1;
f = &adapter->tids.ftid_tab[fidx]; f = &adapter->tids.ftid_tab[fidx];
if (f->valid) { if (f->valid) {
dev_err(adapter->pdev_dev, pr_err("%s: IPv6 filter requires 2 indices. IPv4 filter already present at %d. Please remove IPv4 filter first.\n",
"Invalid location. IPv6 requires 4 slots and an IPv4 filter exists at %u\n", __func__, fidx);
fidx); return -EBUSY;
return -EINVAL;
} }
} }
} }
...@@ -1279,16 +1320,18 @@ int __cxgb4_set_filter(struct net_device *dev, int filter_id, ...@@ -1279,16 +1320,18 @@ int __cxgb4_set_filter(struct net_device *dev, int filter_id,
fidx = filter_id + adapter->tids.ftid_base; fidx = filter_id + adapter->tids.ftid_base;
ret = cxgb4_set_ftid(&adapter->tids, filter_id, ret = cxgb4_set_ftid(&adapter->tids, filter_id,
fs->type ? PF_INET6 : PF_INET); fs->type ? PF_INET6 : PF_INET,
chip_ver);
if (ret) if (ret)
return ret; return ret;
/* Check to make sure the filter requested is writable ... */ /* Check t make sure the filter requested is writable ... */
ret = writable_filter(f); ret = writable_filter(f);
if (ret) { if (ret) {
/* Clear the bits we have set above */ /* Clear the bits we have set above */
cxgb4_clear_ftid(&adapter->tids, filter_id, cxgb4_clear_ftid(&adapter->tids, filter_id,
fs->type ? PF_INET6 : PF_INET); fs->type ? PF_INET6 : PF_INET,
chip_ver);
return ret; return ret;
} }
...@@ -1303,7 +1346,8 @@ int __cxgb4_set_filter(struct net_device *dev, int filter_id, ...@@ -1303,7 +1346,8 @@ int __cxgb4_set_filter(struct net_device *dev, int filter_id,
IPV6_ADDR_ANY) { IPV6_ADDR_ANY) {
ret = cxgb4_clip_get(dev, (const u32 *)&fs->val.lip, 1); ret = cxgb4_clip_get(dev, (const u32 *)&fs->val.lip, 1);
if (ret) { if (ret) {
cxgb4_clear_ftid(&adapter->tids, filter_id, PF_INET6); cxgb4_clear_ftid(&adapter->tids, filter_id, PF_INET6,
chip_ver);
return ret; return ret;
} }
} }
...@@ -1333,7 +1377,8 @@ int __cxgb4_set_filter(struct net_device *dev, int filter_id, ...@@ -1333,7 +1377,8 @@ int __cxgb4_set_filter(struct net_device *dev, int filter_id,
ret = set_filter_wr(adapter, filter_id); ret = set_filter_wr(adapter, filter_id);
if (ret) { if (ret) {
cxgb4_clear_ftid(&adapter->tids, filter_id, cxgb4_clear_ftid(&adapter->tids, filter_id,
fs->type ? PF_INET6 : PF_INET); fs->type ? PF_INET6 : PF_INET,
chip_ver);
clear_filter(adapter, f); clear_filter(adapter, f);
} }
...@@ -1411,6 +1456,7 @@ int __cxgb4_del_filter(struct net_device *dev, int filter_id, ...@@ -1411,6 +1456,7 @@ int __cxgb4_del_filter(struct net_device *dev, int filter_id,
struct filter_ctx *ctx) struct filter_ctx *ctx)
{ {
struct adapter *adapter = netdev2adap(dev); struct adapter *adapter = netdev2adap(dev);
unsigned int chip_ver = CHELSIO_CHIP_VERSION(adapter->params.chip);
struct filter_entry *f; struct filter_entry *f;
unsigned int max_fidx; unsigned int max_fidx;
int ret; int ret;
...@@ -1436,7 +1482,8 @@ int __cxgb4_del_filter(struct net_device *dev, int filter_id, ...@@ -1436,7 +1482,8 @@ int __cxgb4_del_filter(struct net_device *dev, int filter_id,
if (f->valid) { if (f->valid) {
f->ctx = ctx; f->ctx = ctx;
cxgb4_clear_ftid(&adapter->tids, filter_id, cxgb4_clear_ftid(&adapter->tids, filter_id,
f->fs.type ? PF_INET6 : PF_INET); f->fs.type ? PF_INET6 : PF_INET,
chip_ver);
return del_filter_wr(adapter, filter_id); return del_filter_wr(adapter, filter_id);
} }
......
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