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2024-01-07svcrdma: Implement multi-stage Read completion againChuck Lever
Having an nfsd thread waiting for an RDMA Read completion is problematic if the Read responder (ie, the client) stops responding. We need to go back to handling RDMA Reads by getting the svc scheduler to call svc_rdma_recvfrom() a second time to finish building an RPC message after a Read completion. This is the final patch, and makes several changes that have to happen concurrently: 1. svc_rdma_process_read_list no longer waits for a completion, but simply builds and posts the Read WRs. 2. svc_rdma_read_done() now queues a completed Read on sc_read_complete_q for later processing rather than calling complete(). 3. The completed RPC message is no longer built in the svc_rdma_process_read_list() path. Finishing the message is now done in svc_rdma_recvfrom() when it notices work on the sc_read_complete_q. The "finish building this RPC message" code is removed from the svc_rdma_process_read_list() path. This arrangement avoids the need for an nfsd thread to wait for an RDMA Read non-interruptibly without a timeout. It's basically the same code structure that Tom Tucker used for Read chunks along with some clean-up and modernization. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Copy construction of svc_rqst::rq_arg to rdma_read_complete()Chuck Lever
Once a set of RDMA Reads are complete, the Read completion handler will poke the transport to trigger a second call to svc_rdma_recvfrom(). recvfrom() will then merge the RDMA Read payloads with the previously received RPC header to form a completed RPC Call message. The new code is copied from the svc_rdma_process_read_list() path. A subsequent patch will make use of this code and remove the code that this was copied from (svc_rdma_rw.c). Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Add back svcxprt_rdma::sc_read_complete_qChuck Lever
Having an nfsd thread waiting for an RDMA Read completion is problematic if the Read responder (ie, the client) stops responding. We need to go back to handling RDMA Reads by allowing the nfsd thread to return to the svc scheduler, then waking a second thread finish the RPC message once the Read completion fires. As a next step, add a list_head upon which completed Reads are queued. A subsequent patch will make use of this queue. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Add back svc_rdma_recv_ctxt::rc_pagesChuck Lever
Having an nfsd thread waiting for an RDMA Read completion is problematic if the Read responder (the client) stops responding. We need to go back to handling RDMA Reads by allowing the nfsd thread to return to the svc scheduler, then waking a second thread finish the RPC message once the Read completion fires. To start with, restore the rc_pages field so that RDMA Read pages can be managed across calls to svc_rdma_recvfrom(). Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Clean up comment in svc_rdma_accept()Chuck Lever
The comment that starts "Qualify ..." applies to only some of the following code paragraph. Re-arrange the lines so the comment makes more sense. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Remove queue-shortening warningsChuck Lever
These won't have much diagnostic value for site administrators. Since they can't be disabled, they become noise. What's more, the subsequent rdma_create_qp() call adjusts the Send Queue size (possibly downward) without warning, making the size reported by these pr_warns inaccurate. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Remove pointer addresses shown in dprintk()Chuck Lever
There are a couple of dprintk() call sites in svc_rdma_accept() that show pointer addresses. These days, displayed pointer addresses are hashed and thus have little or no diagnostic value, especially for site administrators. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Optimize svc_rdma_cc_init()Chuck Lever
The atomic_inc_return() in svc_rdma_send_cid_init() is expensive. Some svc_rdma_chunk_ctxt's now reside in long-lived container structures. They don't need a fresh completion ID for every I/O operation. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: De-duplicate completion ID initialization helpersChuck Lever
Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Move the svc_rdma_cc_init() callChuck Lever
Now that the chunk_ctxt for Reads is no longer dynamically allocated it can be initialized once for the life of the object that contains it (struct svc_rdma_recv_ctxt). Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Remove struct svc_rdma_read_infoChuck Lever
The remaining fields of struct svc_rdma_read_info are no longer referenced. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update the synopsis of svc_rdma_read_special()Chuck Lever
Since the RDMA Read I/O state is now contained in the recv_ctxt, svc_rdma_read_special() can use that recv_ctxt to derive the read_info rather than the other way around. This removes another usage of the ri_readctxt field, enabling its removal in a subsequent patch. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update the synopsis of svc_rdma_read_call_chunk()Chuck Lever
Since the RDMA Read I/O state is now contained in the recv_ctxt, svc_rdma_read_call_chunk() can use that recv_ctxt to derive the read_info rather than the other way around. This removes another usage of the ri_readctxt field, enabling its removal in a subsequent patch. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update synopsis of svc_rdma_read_multiple_chunks()Chuck Lever
Since the RDMA Read I/O state is now contained in the recv_ctxt, svc_rdma_read_multiple_chunks() can use that recv_ctxt to derive the read_info rather than the other way around. This removes another usage of the ri_readctxt field, enabling its removal in a subsequent patch. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update synopsis of svc_rdma_copy_inline_range()Chuck Lever
Since the RDMA Read I/O state is now contained in the recv_ctxt, svc_rdma_copy_inline_range() can use that recv_ctxt to derive the read_info rather than the other way around. This removes another usage of the ri_readctxt field, enabling its removal in a subsequent patch. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update the synopsis of svc_rdma_read_data_item()Chuck Lever
Since the RDMA Read I/O state is now contained in the recv_ctxt, svc_rdma_build_read_data_item() can use that recv_ctxt to derive that information rather than the other way around. This removes another usage of the ri_readctxt field, enabling its removal in a subsequent patch. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update synopsis of svc_rdma_read_chunk_range()Chuck Lever
Since the RDMA Read I/O state is now contained in the recv_ctxt, svc_rdma_build_read_chunk_range() can use that recv_ctxt to derive that information rather than the other way around. This removes another usage of the ri_readctxt field, enabling its removal in a subsequent patch. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update synopsis of svc_rdma_build_read_chunk()Chuck Lever
Since the RDMA Read I/O state is now contained in the recv_ctxt, svc_rdma_build_read_chunk() can use that recv_ctxt to derive that information rather than the other way around. This removes another usage of the ri_readctxt field, enabling its removal in a subsequent patch. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update synopsis of svc_rdma_build_read_segment()Chuck Lever
Since the RDMA Read I/O state is now contained in the recv_ctxt, svc_rdma_build_read_segment() can use the recv_ctxt to derive that information rather than the other way around. This removes one usage of the ri_readctxt field, enabling its removal in a subsequent patch. At the same time, the use of ri_rqst can similarly be replaced with a passed-in function parameter. Start with build_read_segment() because it is a common utility function at the bottom of the Read chunk path. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Move read_info::ri_pageoff into struct svc_rdma_recv_ctxtChuck Lever
Further clean up: move the starting byte offset field into svc_rdma_recv_ctxt. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Move svc_rdma_read_info::ri_pageno to struct svc_rdma_recv_ctxtChuck Lever
Further clean up: move the page index field into svc_rdma_recv_ctxt. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Start moving fields out of struct svc_rdma_read_infoChuck Lever
Since the request's svc_rdma_recv_ctxt will stay around for the duration of the RDMA Read operation, the contents of struct svc_rdma_read_info can reside in the request's svc_rdma_recv_ctxt rather than being allocated separately. This will eventually save a call to kmalloc() in a hot path. Start this clean-up by moving the Read chunk's svc_rdma_chunk_ctxt. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Move struct svc_rdma_chunk_ctxt to svc_rdma.hChuck Lever
Prepare for nestling these into the send and recv ctxts so they no longer have to be allocated dynamically. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Remove the svc_rdma_chunk_ctxt::cc_rdma fieldChuck Lever
In every instance, the pointer address in that field is now available by other means. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Pass a pointer to the transport to svc_rdma_cc_release()Chuck Lever
Enable the eventual removal of the svc_rdma_chunk_ctxt::cc_rdma field. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Explicitly pass the transport to svc_rdma_post_chunk_ctxt()Chuck Lever
Enable the eventual removal of the svc_rdma_chunk_ctxt::cc_rdma field. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Explicitly pass the transport into Read chunk I/O pathsChuck Lever
Enable the eventual removal of the svc_rdma_chunk_ctxt::cc_rdma field. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Explicitly pass the transport into Write chunk I/O pathsChuck Lever
Enable the eventual removal of the svc_rdma_chunk_ctxt::cc_rdma field. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Acquire the svcxprt_rdma pointer from the CQ contextChuck Lever
Enable the removal of the svc_rdma_chunk_ctxt::cc_rdma field in a subsequent patch. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Reduce size of struct svc_rdma_rw_ctxtChuck Lever
SG_CHUNK_SIZE is 128, making struct svc_rdma_rw_ctxt + the first SGL array more than 4200 bytes in length, pushing the memory allocation well into order 1. Even so, the RDMA rw core doesn't seem to use more than max_send_sge entries in that array (typically 32 or less), so that is all wasted space. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Update some svcrdma DMA-related tracepointsChuck Lever
A send/recv_ctxt already records transport-related information in the cq.id, thus there is no need to record the IP addresses of the transport endpoints. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: DMA error tracepoints should report completion IDsChuck Lever
Update the DMA error flow tracepoints to report the completion ID of the failing context. This ties the wait/failure to a particular operation or request, which is more useful than knowing only the failing transport. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: SQ error tracepoints should report completion IDsChuck Lever
Update the Send Queue's error flow tracepoints to report the completion ID of the waiting or failing context. This ties the wait/failure to a particular operation or request, which is a little more useful than knowing only the transport that is about to close. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07rpcrdma: Introduce a simple cid tracepoint classChuck Lever
De-duplicate some code, making it easier to add new tracepoints that report only a completion ID. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Add lockdep class keys for transport locksChuck Lever
Two svcrdma-related transport locks can become quite contended. Collate their use and make them easy to find in /proc/lock_stat for better observability. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Clean up lockingChuck Lever
There's no need to protect llist_entry() with a spin lock. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Add an async version of svc_rdma_write_info_free()Chuck Lever
DMA unmapping can take quite some time, so it should not be handled in a single-threaded completion handler. Defer releasing write_info structs to the recently-added workqueue. With this patch, DMA unmapping can be handled in parallel, and it does not cause head-of-queue blocking of Write completions. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Add an async version of svc_rdma_send_ctxt_put()Chuck Lever
DMA unmapping can take quite some time, so it should not be handled in a single-threaded completion handler. Defer releasing send_ctxts to the recently-added workqueue. With this patch, DMA unmapping can be handled in parallel, and it does not cause head-of-queue blocking of Send completions. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Add a utility workqueue to svcrdmaChuck Lever
To handle work in the background, set up an UNBOUND workqueue for svcrdma. Subsequent patches will make use of it. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Pre-allocate svc_rdma_recv_ctxt objectsChuck Lever
The original reason for allocating svc_rdma_recv_ctxt objects during Receive completion was to ensure the objects were allocated on the NUMA node closest to the underlying IB device. Since commit c5d68d25bd6b ("svcrdma: Clean up allocation of svc_rdma_recv_ctxt"), however, the device's favored node is explicitly passed to the memory allocator. To enable switching Receive completion to soft IRQ context, move memory allocation out of completion handling, since it can be costly, and it can sleep. A limited number of objects is now allocated at "accept" time. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07svcrdma: Eliminate allocation of recv_ctxt objects in backchannelChuck Lever
The svc_rdma_recv_ctxt free list uses a lockless list to avoid the need for a spin lock in the fast path. llist_del_first(), which is used by svc_rdma_recv_ctxt_get(), requires serialization, however, when there are multiple list producers that are unserialized. I mistakenly thought there was only one caller of svc_rdma_recv_ctxt_get() (svc_rdma_refresh_recvs()), thus explicit serialization would not be necessary. But there is another caller: svc_rdma_bc_sendto(), and these two are not serialized against each other. I haven't seen ill effects that I could directly ascribe to a lack of serialization. It's just an observation based on code audit. When DMA-mapping before sending a Reply, the passed-in struct svc_rdma_recv_ctxt is used only for its write and reply PCLs. These are currently always empty in the backchannel case. So, instead of passing a full svc_rdma_recv_ctxt object to svc_rdma_map_reply_msg(), let's pass in just the Write and Reply PCLs. This change makes it unnecessary for the backchannel to acquire a dummy svc_rdma_recv_ctxt object when sending an RPC Call. The need for svc_rdma_recv_ctxt free list serialization is now completely avoided. Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07SUNRPC: Remove RQ_SPLICE_OKChuck Lever
This flag is no longer used. Reviewed-by: Jeff Layton <jlayton@kernel.org> Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07SUNRPC: Add a server-side API for retrieving an RPC's pseudoflavorChuck Lever
NFSD will use this new API to determine whether nfsd_splice_read is safe to use. This avoids the need to add a dependency to NFSD for CONFIG_SUNRPC_GSS. Reviewed-by: Jeff Layton <jlayton@kernel.org> Signed-off-by: Chuck Lever <chuck.lever@oracle.com>
2024-01-07ip6_tunnel: fix NEXTHDR_FRAGMENT handling in ip6_tnl_parse_tlv_enc_lim()Eric Dumazet
syzbot pointed out [1] that NEXTHDR_FRAGMENT handling is broken. Reading frag_off can only be done if we pulled enough bytes to skb->head. Currently we might access garbage. [1] BUG: KMSAN: uninit-value in ip6_tnl_parse_tlv_enc_lim+0x94f/0xbb0 ip6_tnl_parse_tlv_enc_lim+0x94f/0xbb0 ipxip6_tnl_xmit net/ipv6/ip6_tunnel.c:1326 [inline] ip6_tnl_start_xmit+0xab2/0x1a70 net/ipv6/ip6_tunnel.c:1432 __netdev_start_xmit include/linux/netdevice.h:4940 [inline] netdev_start_xmit include/linux/netdevice.h:4954 [inline] xmit_one net/core/dev.c:3548 [inline] dev_hard_start_xmit+0x247/0xa10 net/core/dev.c:3564 __dev_queue_xmit+0x33b8/0x5130 net/core/dev.c:4349 dev_queue_xmit include/linux/netdevice.h:3134 [inline] neigh_connected_output+0x569/0x660 net/core/neighbour.c:1592 neigh_output include/net/neighbour.h:542 [inline] ip6_finish_output2+0x23a9/0x2b30 net/ipv6/ip6_output.c:137 ip6_finish_output+0x855/0x12b0 net/ipv6/ip6_output.c:222 NF_HOOK_COND include/linux/netfilter.h:303 [inline] ip6_output+0x323/0x610 net/ipv6/ip6_output.c:243 dst_output include/net/dst.h:451 [inline] ip6_local_out+0xe9/0x140 net/ipv6/output_core.c:155 ip6_send_skb net/ipv6/ip6_output.c:1952 [inline] ip6_push_pending_frames+0x1f9/0x560 net/ipv6/ip6_output.c:1972 rawv6_push_pending_frames+0xbe8/0xdf0 net/ipv6/raw.c:582 rawv6_sendmsg+0x2b66/0x2e70 net/ipv6/raw.c:920 inet_sendmsg+0x105/0x190 net/ipv4/af_inet.c:847 sock_sendmsg_nosec net/socket.c:730 [inline] __sock_sendmsg net/socket.c:745 [inline] ____sys_sendmsg+0x9c2/0xd60 net/socket.c:2584 ___sys_sendmsg+0x28d/0x3c0 net/socket.c:2638 __sys_sendmsg net/socket.c:2667 [inline] __do_sys_sendmsg net/socket.c:2676 [inline] __se_sys_sendmsg net/socket.c:2674 [inline] __x64_sys_sendmsg+0x307/0x490 net/socket.c:2674 do_syscall_x64 arch/x86/entry/common.c:52 [inline] do_syscall_64+0x44/0x110 arch/x86/entry/common.c:83 entry_SYSCALL_64_after_hwframe+0x63/0x6b Uninit was created at: slab_post_alloc_hook+0x129/0xa70 mm/slab.h:768 slab_alloc_node mm/slub.c:3478 [inline] __kmem_cache_alloc_node+0x5c9/0x970 mm/slub.c:3517 __do_kmalloc_node mm/slab_common.c:1006 [inline] __kmalloc_node_track_caller+0x118/0x3c0 mm/slab_common.c:1027 kmalloc_reserve+0x249/0x4a0 net/core/skbuff.c:582 pskb_expand_head+0x226/0x1a00 net/core/skbuff.c:2098 __pskb_pull_tail+0x13b/0x2310 net/core/skbuff.c:2655 pskb_may_pull_reason include/linux/skbuff.h:2673 [inline] pskb_may_pull include/linux/skbuff.h:2681 [inline] ip6_tnl_parse_tlv_enc_lim+0x901/0xbb0 net/ipv6/ip6_tunnel.c:408 ipxip6_tnl_xmit net/ipv6/ip6_tunnel.c:1326 [inline] ip6_tnl_start_xmit+0xab2/0x1a70 net/ipv6/ip6_tunnel.c:1432 __netdev_start_xmit include/linux/netdevice.h:4940 [inline] netdev_start_xmit include/linux/netdevice.h:4954 [inline] xmit_one net/core/dev.c:3548 [inline] dev_hard_start_xmit+0x247/0xa10 net/core/dev.c:3564 __dev_queue_xmit+0x33b8/0x5130 net/core/dev.c:4349 dev_queue_xmit include/linux/netdevice.h:3134 [inline] neigh_connected_output+0x569/0x660 net/core/neighbour.c:1592 neigh_output include/net/neighbour.h:542 [inline] ip6_finish_output2+0x23a9/0x2b30 net/ipv6/ip6_output.c:137 ip6_finish_output+0x855/0x12b0 net/ipv6/ip6_output.c:222 NF_HOOK_COND include/linux/netfilter.h:303 [inline] ip6_output+0x323/0x610 net/ipv6/ip6_output.c:243 dst_output include/net/dst.h:451 [inline] ip6_local_out+0xe9/0x140 net/ipv6/output_core.c:155 ip6_send_skb net/ipv6/ip6_output.c:1952 [inline] ip6_push_pending_frames+0x1f9/0x560 net/ipv6/ip6_output.c:1972 rawv6_push_pending_frames+0xbe8/0xdf0 net/ipv6/raw.c:582 rawv6_sendmsg+0x2b66/0x2e70 net/ipv6/raw.c:920 inet_sendmsg+0x105/0x190 net/ipv4/af_inet.c:847 sock_sendmsg_nosec net/socket.c:730 [inline] __sock_sendmsg net/socket.c:745 [inline] ____sys_sendmsg+0x9c2/0xd60 net/socket.c:2584 ___sys_sendmsg+0x28d/0x3c0 net/socket.c:2638 __sys_sendmsg net/socket.c:2667 [inline] __do_sys_sendmsg net/socket.c:2676 [inline] __se_sys_sendmsg net/socket.c:2674 [inline] __x64_sys_sendmsg+0x307/0x490 net/socket.c:2674 do_syscall_x64 arch/x86/entry/common.c:52 [inline] do_syscall_64+0x44/0x110 arch/x86/entry/common.c:83 entry_SYSCALL_64_after_hwframe+0x63/0x6b CPU: 0 PID: 7345 Comm: syz-executor.3 Not tainted 6.7.0-rc8-syzkaller-00024-gac865f00af29 #0 Hardware name: Google Google Compute Engine/Google Compute Engine, BIOS Google 11/17/2023 Fixes: fbfa743a9d2a ("ipv6: fix ip6_tnl_parse_tlv_enc_lim()") Reported-by: syzbot <syzkaller@googlegroups.com> Signed-off-by: Eric Dumazet <edumazet@google.com> Cc: Willem de Bruijn <willemb@google.com> Reviewed-by: Willem de Bruijn <willemb@google.com> Reviewed-by: David Ahern <dsahern@kernel.org> Signed-off-by: David S. Miller <davem@davemloft.net>
2024-01-07rxrpc: Fix skbuff cleanup of call's recvmsg_queue and rx_oos_queueDavid Howells
Fix rxrpc_cleanup_ring() to use rxrpc_purge_queue() rather than skb_queue_purge() so that the count of outstanding skbuffs is correctly updated when a failed call is cleaned up. Without this rmmod may hang waiting for rxrpc_n_rx_skbs to become zero. Fixes: 5d7edbc9231e ("rxrpc: Get rid of the Rx ring") Reported-by: Marc Dionne <marc.dionne@auristor.com> Signed-off-by: David Howells <dhowells@redhat.com> cc: "David S. Miller" <davem@davemloft.net> cc: Eric Dumazet <edumazet@google.com> cc: Jakub Kicinski <kuba@kernel.org> cc: Paolo Abeni <pabeni@redhat.com> cc: linux-afs@lists.infradead.org cc: netdev@vger.kernel.org Signed-off-by: David S. Miller <davem@davemloft.net>
2024-01-07fib: rules: remove repeated assignment in fib_nl2ruleZhengchao Shao
In fib_nl2rule(), 'err' variable has been set to -EINVAL during declaration, and no need to set the 'err' variable to -EINVAL again. So, remove it. Signed-off-by: Zhengchao Shao <shaozhengchao@huawei.com> Reviewed-by: Simon Horman <horms@kernel.org> Reviewed-by: David Ahern <dsahern@kernel.org> Signed-off-by: David S. Miller <davem@davemloft.net>
2024-01-07net/sched: simplify tc_action_load_ops parametersPedro Tammela
Instead of using two bools derived from a flags passed as arguments to the parent function of tc_action_load_ops, just pass the flags itself to tc_action_load_ops to simplify its parameters. Reviewed-by: Jiri Pirko <jiri@nvidia.com> Signed-off-by: Pedro Tammela <pctammela@mojatatu.com> Acked-by: Jamal Hadi Salim <jhs@mojatatu.com> Signed-off-by: David S. Miller <davem@davemloft.net>
2024-01-05net: ethtool: reject unsupported RSS input xfrm valuesAhmed Zaki
RXFH input_xfrm currently has three supported values: 0 (clear all), symmetric_xor and NO_CHANGE. Reject any other value sent from user-space. Fixes: 13e59344fb9d ("net: ethtool: add support for symmetric-xor RSS hash") Suggested-by: Jakub Kicinski <kuba@kernel.org> Signed-off-by: Ahmed Zaki <ahmed.zaki@intel.com> Link: https://lore.kernel.org/r/20240104212653.394424-1-ahmed.zaki@intel.com Signed-off-by: Jakub Kicinski <kuba@kernel.org>
2024-01-05Merge tag 'for-netdev' of ↵Jakub Kicinski
https://git.kernel.org/pub/scm/linux/kernel/git/bpf/bpf-next Daniel Borkmann says: ==================== pull-request: bpf-next 2024-01-05 We've added 40 non-merge commits during the last 2 day(s) which contain a total of 73 files changed, 1526 insertions(+), 951 deletions(-). The main changes are: 1) Fix a memory leak when streaming AF_UNIX sockets were inserted into multiple sockmap slots/maps, from John Fastabend. 2) Fix gotol in s390 BPF JIT with large offsets, from Ilya Leoshkevich. 3) Fix reattachment branch in bpf_tracing_prog_attach() and reject the request if there is no valid attach_btf, from Jiri Olsa. 4) Remove deprecated bpfilter kernel leftovers given the project is developed in user space (https://github.com/facebook/bpfilter), from Quentin Deslandes. 5) Relax tracing BPF program recursive attach rules given right now it is not possible to create tracing program call cycles, from Dmitrii Dolgov. 6) Fix excessive memory consumption for the bpf_global_percpu_ma for systems with a large number of CPUs, from Yonghong Song. 7) Small x86 BPF JIT cleanup to reuse emit_nops instead of open-coding memcpy of x86_nops, from Leon Hwang. 8) Follow-up for libbpf to support __arg_ctx global function argument tag semantics to complement the merged kernel side, from Andrii Nakryiko. 9) Introduce "volatile compare" macros for BPF selftests in order to make the latter more robust against compiler optimization, from Alexei Starovoitov. 10) Small simplification in verifier's size checking of helper accesses along with additional selftests, from Andrei Matei. * tag 'for-netdev' of https://git.kernel.org/pub/scm/linux/kernel/git/bpf/bpf-next: (40 commits) selftests/bpf: Test re-attachment fix for bpf_tracing_prog_attach bpf: Fix re-attachment branch in bpf_tracing_prog_attach selftests/bpf: Add test for recursive attachment of tracing progs bpf: Relax tracing prog recursive attach rules bpf, x86: Use emit_nops to replace memcpy x86_nops selftests/bpf: Test gotol with large offsets selftests/bpf: Double the size of test_loader log s390/bpf: Fix gotol with large offsets bpfilter: remove bpfilter bpf: Remove unnecessary cpu == 0 check in memalloc selftests/bpf: add __arg_ctx BTF rewrite test selftests/bpf: add arg:ctx cases to test_global_funcs tests libbpf: implement __arg_ctx fallback logic libbpf: move BTF loading step after relocation step libbpf: move exception callbacks assignment logic into relocation step libbpf: use stable map placeholder FDs libbpf: don't rely on map->fd as an indicator of map being created libbpf: use explicit map reuse flag to skip map creation steps libbpf: make uniform use of btf__fd() accessor inside libbpf selftests/bpf: Add a selftest with > 512-byte percpu allocation size ... ==================== Link: https://lore.kernel.org/r/20240105170105.21070-1-daniel@iogearbox.net Signed-off-by: Jakub Kicinski <kuba@kernel.org>
2024-01-05net: gro: parse ipv6 ext headers without frag0 invalidationRichard Gobert
The existing code always pulls the IPv6 header and sets the transport offset initially. Then optionally again pulls any extension headers in ipv6_gso_pull_exthdrs and sets the transport offset again on return from that call. skb->data is set at the start of the first extension header before calling ipv6_gso_pull_exthdrs, and must disable the frag0 optimization because that function uses pskb_may_pull/pskb_pull instead of skb_gro_ helpers. It sets the GRO offset to the TCP header with skb_gro_pull and sets the transport header. Then returns skb->data to its position before this block. This commit introduces a new helper function - ipv6_gro_pull_exthdrs - which is used in ipv6_gro_receive to pull ipv6 ext headers instead of ipv6_gso_pull_exthdrs. Thus, there is no modification of skb->data, all operations use skb_gro_* helpers, and the frag0 fast path can be taken for IPv6 packets with ext headers. Signed-off-by: Richard Gobert <richardbgobert@gmail.com> Reviewed-by: Willem de Bruijn <willemb@google.com> Reviewed-by: David Ahern <dsahern@kernel.org> Reviewed-by: Eric Dumazet <edumazet@google.com> Link: https://lore.kernel.org/r/504130f6-b56c-4dcc-882c-97942c59f5b7@gmail.com Signed-off-by: Jakub Kicinski <kuba@kernel.org>