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It is only safe to call the tracepoint before rpc_put_task() because 'data' is freed inside nfs4_lock_release (rpc_release). Fixes: 48c9579 ("Adding stateid information to tracepoints") Signed-off-by: Dave Wysochanski <dwysocha@redhat.com> Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
Several existing dprink()/dfprintk() calls were converted to use the new mount API logging macros by commit ce8866f ("NFS: Attach supplementary error information to fs_context"). If the fs_context was not created using fsopen() then it will not have had a log buffer allocated for it, and the new mount API logging macros will wind up calling printk(). This can result in syslog messages being logged where previously there were none... most notably "NFS4: Couldn't follow remote path", which can happen if the client is auto-negotiating a protocol version with an NFS server that doesn't support the higher v4.x versions. Convert the nfs_errorf(), nfs_invalf(), and nfs_warnf() macros to check for the existence of the fs_context's log buffer and call dprintk() if it doesn't exist. Add nfs_ferrorf(), nfs_finvalf(), and nfs_warnf(), which do the same thing but take an NFS debug flag as an argument and call dfprintk(). Finally, modify the "NFS4: Couldn't follow remote path" message to use nfs_ferrorf(). Bugzilla: https://bugzilla.kernel.org/show_bug.cgi?id=207385 Signed-off-by: Scott Mayhew <smayhew@redhat.com> Reviewed-by: Benjamin Coddington <bcodding@redhat.com> Fixes: ce8866f ("NFS: Attach supplementary error information to fs_context.") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
A return value of 0 means success. This is documented in lib/kstrtox.c. This was found by trying to mount an NFS share from a link-local IPv6 address with the interface specified by its index: mount("[fe80::1%1]:/srv/nfs", "/mnt", "nfs", 0, "nolock,addr=fe80::1%1") Before this commit this failed with EINVAL and also caused the following message in dmesg: [...] NFS: bad IP address specified: addr=fe80::1%1 The syscall using the same address based on the interface name instead of its index succeeds. Credits for this patch go to my colleague Christian Speich, who traced the origin of this bug to this line of code. Signed-off-by: Johannes Nixdorf <j.nixdorf@avm.de> Fixes: 00cfaa9 ("replace strict_strto calls") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
If the layout return-on-close failed because the layoutreturn was never sent, then we should mark the layout for return again. Fixes: 9c47b18 ("pNFS: Ensure we do clear the return-on-close layout stateid on fatal errors") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
If the inode is being evicted, it should be safe to run return-on-close, so we should do it to ensure we don't inadvertently leak layout segments. Fixes: 1c5bd76 ("pNFS: Enable layoutreturn operation for return-on-close") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
Remove the check for whether or not the stateid is NULL, and fix up the callers. Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
If a layout return is in progress, we should wait for it to complete, in case the layout segment we are picking up gets returned too. Fixes: 30cb3ee ("pNFS: Handle NFS4ERR_OLD_STATEID on layoutreturn by bumping the state seqid") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
In pnfs_generic_clear_request_commit(), we try calling pnfs_free_bucket_lseg() before we remove the request from the DS bucket. That will always fail, since the point is to test for whether or not that bucket is empty. Fixes: c84bea5 ("NFS/pNFS: Simplify bucket layout segment reference counting") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
We must ensure that we pass a layout segment to nfs_retry_commit() when we're cleaning up after pnfs_bucket_alloc_ds_commits(). Otherwise, requests that should be committed to the DS will get committed to the MDS. Do so by ensuring that pnfs_bucket_get_committing() always tries to return a layout segment when it returns a non-empty page list. Fixes: c84bea5 ("NFS/pNFS: Simplify bucket layout segment reference counting") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
If we exit _lgopen_prepare_attached() without setting a layout, we will currently leak the plh_outstanding counter. Fixes: 411ae72 ("pNFS: Wait for stale layoutget calls to complete in pnfs_update_layout()") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
…lock Before referencing the inode, we must ensure that the superblock can be referenced. Otherwise, we can end up with iput() calling superblock operations that are no longer valid or accessible. Fixes: e39d8a1 ("NFSv4: Fix an Oops during delegation callbacks") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
Before referencing the inode, we must ensure that the superblock can be referenced. Otherwise, we can end up with iput() calling superblock operations that are no longer valid or accessible. Fixes: ea7c38f ("NFSv4: Ensure we reference the inode for return-on-close in delegreturn") Signed-off-by: Trond Myklebust <trond.myklebust@hammerspace.com>
When attempting to match EXTENDED COPY CSCD descriptors with corresponding se_devices, target_xcopy_locate_se_dev_e4() currently iterates over LIO's global devices list which includes all configured backstores. This change ensures that only initiator-accessible backstores are considered during CSCD descriptor lookup, according to the session's se_node_acl LUN list. To avoid LUN removal race conditions, device pinning is changed from being configfs based to instead using the se_node_acl lun_ref. Reference: CVE-2020-28374 Fixes: cbf031f ("target: Add support for EXTENDED_COPY copy offload emulation") Reviewed-by: Lee Duncan <lduncan@suse.com> Signed-off-by: David Disseldorp <ddiss@suse.de> Signed-off-by: Mike Christie <michael.christie@oracle.com> Signed-off-by: Martin K. Petersen <martin.petersen@oracle.com>
…el/git/mkp/scsi Pull SCSI target fix from Martin Petersen: "This addresses an issue in the SCSI target subsystem. A connected initiator could specify IDs for any configured backing store device, not just the ones explicitly made visible to the host. The remedy is to honor the access control list when doing ID descriptor lookups" * tag 'mkp-scsi-fixes' of git://git.kernel.org/pub/scm/linux/kernel/git/mkp/scsi: scsi: target: Fix XCOPY NAA identifier lookup
…y/linux-nfs Pull NFS client fixes from Trond Myklebust: "Highlights include: - Fix parsing of link-local IPv6 addresses - Fix confusing logging of mount errors that was introduced by the fsopen() patchset. - Fix a tracing use after free in _nfs4_do_setlk() - Layout return-on-close fixes when called from nfs4_evict_inode() - Layout segments were being leaked in pnfs_generic_clear_request_commit() - Don't leak DS commits in pnfs_generic_retry_commit() - Fix an Oopsable use-after-free when nfs_delegation_find_inode_server() calls iput() on an inode after the super block has gone away" * tag 'nfs-for-5.11-2' of git://git.linux-nfs.org/projects/trondmy/linux-nfs: NFS: nfs_igrab_and_active must first reference the superblock NFS: nfs_delegation_find_inode_server must first reference the superblock NFS/pNFS: Fix a leak of the layout 'plh_outstanding' counter NFS/pNFS: Don't leak DS commits in pnfs_generic_retry_commit() NFS/pNFS: Don't call pnfs_free_bucket_lseg() before removing the request pNFS: Stricter ordering of layoutget and layoutreturn pNFS: Clean up pnfs_layoutreturn_free_lsegs() pNFS: We want return-on-close to complete when evicting the inode pNFS: Mark layout for return if return-on-close was not sent net: sunrpc: interpret the return value of kstrtou32 correctly NFS: Adjust fs_context error logging NFS4: Fix use-after-free in trace_event_raw_event_nfs4_set_lock
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Enable the cpu v4 tests for LoongArch. Currently, we don't have BPF trampoline in LoongArch JIT, so the fentry test `test_ptr_struct_arg` still failed, will followup. Test result attached below: # ./test_progs -t verifier_sdiv,verifier_movsx,verifier_ldsx,verifier_gotol,verifier_bswap #316/1 verifier_bswap/BSWAP, 16:OK #316/2 verifier_bswap/BSWAP, 16 @unpriv:OK #316/3 verifier_bswap/BSWAP, 32:OK #316/4 verifier_bswap/BSWAP, 32 @unpriv:OK #316/5 verifier_bswap/BSWAP, 64:OK #316/6 verifier_bswap/BSWAP, 64 @unpriv:OK #316 verifier_bswap:OK #330/1 verifier_gotol/gotol, small_imm:OK #330/2 verifier_gotol/gotol, small_imm @unpriv:OK #330 verifier_gotol:OK #338/1 verifier_ldsx/LDSX, S8:OK #338/2 verifier_ldsx/LDSX, S8 @unpriv:OK #338/3 verifier_ldsx/LDSX, S16:OK #338/4 verifier_ldsx/LDSX, S16 @unpriv:OK #338/5 verifier_ldsx/LDSX, S32:OK #338/6 verifier_ldsx/LDSX, S32 @unpriv:OK #338/7 verifier_ldsx/LDSX, S8 range checking, privileged:OK #338/8 verifier_ldsx/LDSX, S16 range checking:OK #338/9 verifier_ldsx/LDSX, S16 range checking @unpriv:OK #338/10 verifier_ldsx/LDSX, S32 range checking:OK #338/11 verifier_ldsx/LDSX, S32 range checking @unpriv:OK #338 verifier_ldsx:OK #349/1 verifier_movsx/MOV32SX, S8:OK #349/2 verifier_movsx/MOV32SX, S8 @unpriv:OK #349/3 verifier_movsx/MOV32SX, S16:OK #349/4 verifier_movsx/MOV32SX, S16 @unpriv:OK #349/5 verifier_movsx/MOV64SX, S8:OK #349/6 verifier_movsx/MOV64SX, S8 @unpriv:OK #349/7 verifier_movsx/MOV64SX, S16:OK #349/8 verifier_movsx/MOV64SX, S16 @unpriv:OK #349/9 verifier_movsx/MOV64SX, S32:OK #349/10 verifier_movsx/MOV64SX, S32 @unpriv:OK #349/11 verifier_movsx/MOV32SX, S8, range_check:OK #349/12 verifier_movsx/MOV32SX, S8, range_check @unpriv:OK #349/13 verifier_movsx/MOV32SX, S16, range_check:OK #349/14 verifier_movsx/MOV32SX, S16, range_check @unpriv:OK #349/15 verifier_movsx/MOV32SX, S16, range_check 2:OK #349/16 verifier_movsx/MOV32SX, S16, range_check 2 @unpriv:OK #349/17 verifier_movsx/MOV64SX, S8, range_check:OK #349/18 verifier_movsx/MOV64SX, S8, range_check @unpriv:OK #349/19 verifier_movsx/MOV64SX, S16, range_check:OK #349/20 verifier_movsx/MOV64SX, S16, range_check @unpriv:OK #349/21 verifier_movsx/MOV64SX, S32, range_check:OK #349/22 verifier_movsx/MOV64SX, S32, range_check @unpriv:OK #349/23 verifier_movsx/MOV64SX, S16, R10 Sign Extension:OK #349/24 verifier_movsx/MOV64SX, S16, R10 Sign Extension @unpriv:OK #349 verifier_movsx:OK #361/1 verifier_sdiv/SDIV32, non-zero imm divisor, check 1:OK #361/2 verifier_sdiv/SDIV32, non-zero imm divisor, check 1 @unpriv:OK #361/3 verifier_sdiv/SDIV32, non-zero imm divisor, check 2:OK #361/4 verifier_sdiv/SDIV32, non-zero imm divisor, check 2 @unpriv:OK #361/5 verifier_sdiv/SDIV32, non-zero imm divisor, check 3:OK #361/6 verifier_sdiv/SDIV32, non-zero imm divisor, check 3 @unpriv:OK #361/7 verifier_sdiv/SDIV32, non-zero imm divisor, check 4:OK #361/8 verifier_sdiv/SDIV32, non-zero imm divisor, check 4 @unpriv:OK #361/9 verifier_sdiv/SDIV32, non-zero imm divisor, check 5:OK #361/10 verifier_sdiv/SDIV32, non-zero imm divisor, check 5 @unpriv:OK #361/11 verifier_sdiv/SDIV32, non-zero imm divisor, check 6:OK #361/12 verifier_sdiv/SDIV32, non-zero imm divisor, check 6 @unpriv:OK #361/13 verifier_sdiv/SDIV32, non-zero imm divisor, check 7:OK #361/14 verifier_sdiv/SDIV32, non-zero imm divisor, check 7 @unpriv:OK #361/15 verifier_sdiv/SDIV32, non-zero imm divisor, check 8:OK #361/16 verifier_sdiv/SDIV32, non-zero imm divisor, check 8 @unpriv:OK #361/17 verifier_sdiv/SDIV32, non-zero reg divisor, check 1:OK #361/18 verifier_sdiv/SDIV32, non-zero reg divisor, check 1 @unpriv:OK #361/19 verifier_sdiv/SDIV32, non-zero reg divisor, check 2:OK #361/20 verifier_sdiv/SDIV32, non-zero reg divisor, check 2 @unpriv:OK #361/21 verifier_sdiv/SDIV32, non-zero reg divisor, check 3:OK #361/22 verifier_sdiv/SDIV32, non-zero reg divisor, check 3 @unpriv:OK #361/23 verifier_sdiv/SDIV32, non-zero reg divisor, check 4:OK #361/24 verifier_sdiv/SDIV32, non-zero reg divisor, check 4 @unpriv:OK #361/25 verifier_sdiv/SDIV32, non-zero reg divisor, check 5:OK #361/26 verifier_sdiv/SDIV32, non-zero reg divisor, check 5 @unpriv:OK #361/27 verifier_sdiv/SDIV32, non-zero reg divisor, check 6:OK #361/28 verifier_sdiv/SDIV32, non-zero reg divisor, check 6 @unpriv:OK #361/29 verifier_sdiv/SDIV32, non-zero reg divisor, check 7:OK #361/30 verifier_sdiv/SDIV32, non-zero reg divisor, check 7 @unpriv:OK #361/31 verifier_sdiv/SDIV32, non-zero reg divisor, check 8:OK #361/32 verifier_sdiv/SDIV32, non-zero reg divisor, check 8 @unpriv:OK #361/33 verifier_sdiv/SDIV64, non-zero imm divisor, check 1:OK #361/34 verifier_sdiv/SDIV64, non-zero imm divisor, check 1 @unpriv:OK #361/35 verifier_sdiv/SDIV64, non-zero imm divisor, check 2:OK #361/36 verifier_sdiv/SDIV64, non-zero imm divisor, check 2 @unpriv:OK #361/37 verifier_sdiv/SDIV64, non-zero imm divisor, check 3:OK #361/38 verifier_sdiv/SDIV64, non-zero imm divisor, check 3 @unpriv:OK #361/39 verifier_sdiv/SDIV64, non-zero imm divisor, check 4:OK #361/40 verifier_sdiv/SDIV64, non-zero imm divisor, check 4 @unpriv:OK #361/41 verifier_sdiv/SDIV64, non-zero imm divisor, check 5:OK #361/42 verifier_sdiv/SDIV64, non-zero imm divisor, check 5 @unpriv:OK #361/43 verifier_sdiv/SDIV64, non-zero imm divisor, check 6:OK #361/44 verifier_sdiv/SDIV64, non-zero imm divisor, check 6 @unpriv:OK #361/45 verifier_sdiv/SDIV64, non-zero reg divisor, check 1:OK #361/46 verifier_sdiv/SDIV64, non-zero reg divisor, check 1 @unpriv:OK #361/47 verifier_sdiv/SDIV64, non-zero reg divisor, check 2:OK #361/48 verifier_sdiv/SDIV64, non-zero reg divisor, check 2 @unpriv:OK #361/49 verifier_sdiv/SDIV64, non-zero reg divisor, check 3:OK #361/50 verifier_sdiv/SDIV64, non-zero reg divisor, check 3 @unpriv:OK #361/51 verifier_sdiv/SDIV64, non-zero reg divisor, check 4:OK #361/52 verifier_sdiv/SDIV64, non-zero reg divisor, check 4 @unpriv:OK #361/53 verifier_sdiv/SDIV64, non-zero reg divisor, check 5:OK #361/54 verifier_sdiv/SDIV64, non-zero reg divisor, check 5 @unpriv:OK #361/55 verifier_sdiv/SDIV64, non-zero reg divisor, check 6:OK #361/56 verifier_sdiv/SDIV64, non-zero reg divisor, check 6 @unpriv:OK #361/57 verifier_sdiv/SMOD32, non-zero imm divisor, check 1:OK #361/58 verifier_sdiv/SMOD32, non-zero imm divisor, check 1 @unpriv:OK #361/59 verifier_sdiv/SMOD32, non-zero imm divisor, check 2:OK #361/60 verifier_sdiv/SMOD32, non-zero imm divisor, check 2 @unpriv:OK #361/61 verifier_sdiv/SMOD32, non-zero imm divisor, check 3:OK #361/62 verifier_sdiv/SMOD32, non-zero imm divisor, check 3 @unpriv:OK #361/63 verifier_sdiv/SMOD32, non-zero imm divisor, check 4:OK #361/64 verifier_sdiv/SMOD32, non-zero imm divisor, check 4 @unpriv:OK #361/65 verifier_sdiv/SMOD32, non-zero imm divisor, check 5:OK #361/66 verifier_sdiv/SMOD32, non-zero imm divisor, check 5 @unpriv:OK #361/67 verifier_sdiv/SMOD32, non-zero imm divisor, check 6:OK #361/68 verifier_sdiv/SMOD32, non-zero imm divisor, check 6 @unpriv:OK #361/69 verifier_sdiv/SMOD32, non-zero reg divisor, check 1:OK #361/70 verifier_sdiv/SMOD32, non-zero reg divisor, check 1 @unpriv:OK #361/71 verifier_sdiv/SMOD32, non-zero reg divisor, check 2:OK #361/72 verifier_sdiv/SMOD32, non-zero reg divisor, check 2 @unpriv:OK #361/73 verifier_sdiv/SMOD32, non-zero reg divisor, check 3:OK #361/74 verifier_sdiv/SMOD32, non-zero reg divisor, check 3 @unpriv:OK #361/75 verifier_sdiv/SMOD32, non-zero reg divisor, check 4:OK #361/76 verifier_sdiv/SMOD32, non-zero reg divisor, check 4 @unpriv:OK #361/77 verifier_sdiv/SMOD32, non-zero reg divisor, check 5:OK #361/78 verifier_sdiv/SMOD32, non-zero reg divisor, check 5 @unpriv:OK #361/79 verifier_sdiv/SMOD32, non-zero reg divisor, check 6:OK #361/80 verifier_sdiv/SMOD32, non-zero reg divisor, check 6 @unpriv:OK #361/81 verifier_sdiv/SMOD64, non-zero imm divisor, check 1:OK #361/82 verifier_sdiv/SMOD64, non-zero imm divisor, check 1 @unpriv:OK #361/83 verifier_sdiv/SMOD64, non-zero imm divisor, check 2:OK #361/84 verifier_sdiv/SMOD64, non-zero imm divisor, check 2 @unpriv:OK #361/85 verifier_sdiv/SMOD64, non-zero imm divisor, check 3:OK #361/86 verifier_sdiv/SMOD64, non-zero imm divisor, check 3 @unpriv:OK #361/87 verifier_sdiv/SMOD64, non-zero imm divisor, check 4:OK #361/88 verifier_sdiv/SMOD64, non-zero imm divisor, check 4 @unpriv:OK #361/89 verifier_sdiv/SMOD64, non-zero imm divisor, check 5:OK #361/90 verifier_sdiv/SMOD64, non-zero imm divisor, check 5 @unpriv:OK #361/91 verifier_sdiv/SMOD64, non-zero imm divisor, check 6:OK #361/92 verifier_sdiv/SMOD64, non-zero imm divisor, check 6 @unpriv:OK #361/93 verifier_sdiv/SMOD64, non-zero imm divisor, check 7:OK #361/94 verifier_sdiv/SMOD64, non-zero imm divisor, check 7 @unpriv:OK #361/95 verifier_sdiv/SMOD64, non-zero imm divisor, check 8:OK #361/96 verifier_sdiv/SMOD64, non-zero imm divisor, check 8 @unpriv:OK #361/97 verifier_sdiv/SMOD64, non-zero reg divisor, check 1:OK #361/98 verifier_sdiv/SMOD64, non-zero reg divisor, check 1 @unpriv:OK #361/99 verifier_sdiv/SMOD64, non-zero reg divisor, check 2:OK #361/100 verifier_sdiv/SMOD64, non-zero reg divisor, check 2 @unpriv:OK #361/101 verifier_sdiv/SMOD64, non-zero reg divisor, check 3:OK #361/102 verifier_sdiv/SMOD64, non-zero reg divisor, check 3 @unpriv:OK #361/103 verifier_sdiv/SMOD64, non-zero reg divisor, check 4:OK #361/104 verifier_sdiv/SMOD64, non-zero reg divisor, check 4 @unpriv:OK #361/105 verifier_sdiv/SMOD64, non-zero reg divisor, check 5:OK #361/106 verifier_sdiv/SMOD64, non-zero reg divisor, check 5 @unpriv:OK #361/107 verifier_sdiv/SMOD64, non-zero reg divisor, check 6:OK #361/108 verifier_sdiv/SMOD64, non-zero reg divisor, check 6 @unpriv:OK #361/109 verifier_sdiv/SMOD64, non-zero reg divisor, check 7:OK #361/110 verifier_sdiv/SMOD64, non-zero reg divisor, check 7 @unpriv:OK #361/111 verifier_sdiv/SMOD64, non-zero reg divisor, check 8:OK #361/112 verifier_sdiv/SMOD64, non-zero reg divisor, check 8 @unpriv:OK #361/113 verifier_sdiv/SDIV32, zero divisor:OK #361/114 verifier_sdiv/SDIV32, zero divisor @unpriv:OK #361/115 verifier_sdiv/SDIV64, zero divisor:OK #361/116 verifier_sdiv/SDIV64, zero divisor @unpriv:OK #361/117 verifier_sdiv/SMOD32, zero divisor:OK #361/118 verifier_sdiv/SMOD32, zero divisor @unpriv:OK #361/119 verifier_sdiv/SMOD64, zero divisor:OK #361/120 verifier_sdiv/SMOD64, zero divisor @unpriv:OK #361 verifier_sdiv:OK Summary: 5/163 PASSED, 0 SKIPPED, 0 FAILED # ./test_progs -t ldsx_insn test_map_val_and_probed_memory:PASS:test_ldsx_insn__open 0 nsec test_map_val_and_probed_memory:PASS:test_ldsx_insn__load 0 nsec libbpf: prog 'test_ptr_struct_arg': failed to attach: ERROR: strerror_r(-524)=22 libbpf: prog 'test_ptr_struct_arg': failed to auto-attach: -524 test_map_val_and_probed_memory:FAIL:test_ldsx_insn__attach unexpected error: -524 (errno 524) #116/1 ldsx_insn/map_val and probed_memory:FAIL #116/2 ldsx_insn/ctx_member_sign_ext:OK #116/3 ldsx_insn/ctx_member_narrow_sign_ext:OK #116 ldsx_insn:FAIL All error logs: test_map_val_and_probed_memory:PASS:test_ldsx_insn__open 0 nsec test_map_val_and_probed_memory:PASS:test_ldsx_insn__load 0 nsec libbpf: prog 'test_ptr_struct_arg': failed to attach: ERROR: strerror_r(-524)=22 libbpf: prog 'test_ptr_struct_arg': failed to auto-attach: -524 test_map_val_and_probed_memory:FAIL:test_ldsx_insn__attach unexpected error: -524 (errno 524) #116/1 ldsx_insn/map_val and probed_memory:FAIL #116 ldsx_insn:FAIL Summary: 0/2 PASSED, 0 SKIPPED, 1 FAILED Signed-off-by: Hengqi Chen <hengqi.chen@gmail.com> Signed-off-by: Huacai Chen <chenhuacai@loongson.cn>
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In case when is64 == 1 in emit(A64_REV32(is64, dst, dst), ctx) the generated insn reverses byte order for both high and low 32-bit words, resuling in an incorrect swap as indicated by the jit test: [ 9757.262607] test_bpf: #312 BSWAP 16: 0x0123456789abcdef -> 0xefcd jited:1 8 PASS [ 9757.264435] test_bpf: #313 BSWAP 32: 0x0123456789abcdef -> 0xefcdab89 jited:1 ret 1460850314 != -271733879 (0x5712ce8a != 0xefcdab89)FAIL (1 times) [ 9757.266260] test_bpf: #314 BSWAP 64: 0x0123456789abcdef -> 0x67452301 jited:1 8 PASS [ 9757.268000] test_bpf: #315 BSWAP 64: 0x0123456789abcdef >> 32 -> 0xefcdab89 jited:1 8 PASS [ 9757.269686] test_bpf: #316 BSWAP 16: 0xfedcba9876543210 -> 0x1032 jited:1 8 PASS [ 9757.271380] test_bpf: #317 BSWAP 32: 0xfedcba9876543210 -> 0x10325476 jited:1 ret -1460850316 != 271733878 (0xa8ed3174 != 0x10325476)FAIL (1 times) [ 9757.273022] test_bpf: #318 BSWAP 64: 0xfedcba9876543210 -> 0x98badcfe jited:1 7 PASS [ 9757.274721] test_bpf: #319 BSWAP 64: 0xfedcba9876543210 >> 32 -> 0x10325476 jited:1 9 PASS Fix this by forcing 32bit variant of rev32. Fixes: 1104247 ("bpf, arm64: Support unconditional bswap") Signed-off-by: Artem Savkov <asavkov@redhat.com> Tested-by: Puranjay Mohan <puranjay12@gmail.com> Acked-by: Puranjay Mohan <puranjay12@gmail.com> Acked-by: Xu Kuohai <xukuohai@huawei.com> Message-ID: <20240321081809.158803-1-asavkov@redhat.com> Signed-off-by: Alexei Starovoitov <ast@kernel.org>
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May 17, 2024
Recent additions in BPF like cpu v4 instructions, test_bpf module exhibits the following failures: test_bpf: #82 ALU_MOVSX | BPF_B jited:1 ret 2 != 1 (0x2 != 0x1)FAIL (1 times) test_bpf: #83 ALU_MOVSX | BPF_H jited:1 ret 2 != 1 (0x2 != 0x1)FAIL (1 times) test_bpf: #84 ALU64_MOVSX | BPF_B jited:1 ret 2 != 1 (0x2 != 0x1)FAIL (1 times) test_bpf: #85 ALU64_MOVSX | BPF_H jited:1 ret 2 != 1 (0x2 != 0x1)FAIL (1 times) test_bpf: #86 ALU64_MOVSX | BPF_W jited:1 ret 2 != 1 (0x2 != 0x1)FAIL (1 times) test_bpf: #165 ALU_SDIV_X: -6 / 2 = -3 jited:1 ret 2147483645 != -3 (0x7ffffffd != 0xfffffffd)FAIL (1 times) test_bpf: #166 ALU_SDIV_K: -6 / 2 = -3 jited:1 ret 2147483645 != -3 (0x7ffffffd != 0xfffffffd)FAIL (1 times) test_bpf: #169 ALU_SMOD_X: -7 % 2 = -1 jited:1 ret 1 != -1 (0x1 != 0xffffffff)FAIL (1 times) test_bpf: #170 ALU_SMOD_K: -7 % 2 = -1 jited:1 ret 1 != -1 (0x1 != 0xffffffff)FAIL (1 times) test_bpf: #172 ALU64_SMOD_K: -7 % 2 = -1 jited:1 ret 1 != -1 (0x1 != 0xffffffff)FAIL (1 times) test_bpf: #313 BSWAP 16: 0x0123456789abcdef -> 0xefcd eBPF filter opcode 00d7 (@2) unsupported jited:0 301 PASS test_bpf: #314 BSWAP 32: 0x0123456789abcdef -> 0xefcdab89 eBPF filter opcode 00d7 (@2) unsupported jited:0 555 PASS test_bpf: #315 BSWAP 64: 0x0123456789abcdef -> 0x67452301 eBPF filter opcode 00d7 (@2) unsupported jited:0 268 PASS test_bpf: #316 BSWAP 64: 0x0123456789abcdef >> 32 -> 0xefcdab89 eBPF filter opcode 00d7 (@2) unsupported jited:0 269 PASS test_bpf: #317 BSWAP 16: 0xfedcba9876543210 -> 0x1032 eBPF filter opcode 00d7 (@2) unsupported jited:0 460 PASS test_bpf: #318 BSWAP 32: 0xfedcba9876543210 -> 0x10325476 eBPF filter opcode 00d7 (@2) unsupported jited:0 320 PASS test_bpf: #319 BSWAP 64: 0xfedcba9876543210 -> 0x98badcfe eBPF filter opcode 00d7 (@2) unsupported jited:0 222 PASS test_bpf: #320 BSWAP 64: 0xfedcba9876543210 >> 32 -> 0x10325476 eBPF filter opcode 00d7 (@2) unsupported jited:0 273 PASS test_bpf: #344 BPF_LDX_MEMSX | BPF_B eBPF filter opcode 0091 (@5) unsupported jited:0 432 PASS test_bpf: #345 BPF_LDX_MEMSX | BPF_H eBPF filter opcode 0089 (@5) unsupported jited:0 381 PASS test_bpf: #346 BPF_LDX_MEMSX | BPF_W eBPF filter opcode 0081 (@5) unsupported jited:0 505 PASS test_bpf: #490 JMP32_JA: Unconditional jump: if (true) return 1 eBPF filter opcode 0006 (@1) unsupported jited:0 261 PASS test_bpf: Summary: 1040 PASSED, 10 FAILED, [924/1038 JIT'ed] Fix them by adding missing processing. Fixes: daabb2b ("bpf/tests: add tests for cpuv4 instructions") Signed-off-by: Christophe Leroy <christophe.leroy@csgroup.eu> Signed-off-by: Michael Ellerman <mpe@ellerman.id.au> Link: https://msgid.link/91de862dda99d170697eb79ffb478678af7e0b27.1709652689.git.christophe.leroy@csgroup.eu
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