| /linux/arch/parisc/kernel/ |
| H A D | perf_asm.S | 141 blr %r1,%r0 ; branch to 8-instruction sequence 149 ; RDR 0 sequence 161 ; RDR 1 sequence 173 ; RDR 2 read sequence 185 ; RDR 3 read sequence 197 ; RDR 4 read sequence 209 ; RDR 5 read sequence 221 ; RDR 6 read sequence 233 ; RDR 7 read sequence 245 ; RDR 8 read sequence [all …]
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| /linux/lib/zstd/decompress/ |
| H A D | zstd_decompress_block.c | 909 BYTE* const oend, seq_t sequence, in ZSTD_execSequenceEnd() argument 913 BYTE* const oLitEnd = op + sequence.litLength; in ZSTD_execSequenceEnd() 914 size_t const sequenceLength = sequence.litLength + sequence.matchLength; in ZSTD_execSequenceEnd() 915 const BYTE* const iLitEnd = *litPtr + sequence.litLength; in ZSTD_execSequenceEnd() 916 const BYTE* match = oLitEnd - sequence.offset; in ZSTD_execSequenceEnd() 921 …RETURN_ERROR_IF(sequence.litLength > (size_t)(litLimit - *litPtr), corruption_detected, "try to re… in ZSTD_execSequenceEnd() 926 ZSTD_safecopy(op, oend_w, *litPtr, sequence.litLength, ZSTD_no_overlap); in ZSTD_execSequenceEnd() 931 if (sequence.offset > (size_t)(oLitEnd - prefixStart)) { in ZSTD_execSequenceEnd() 933 … RETURN_ERROR_IF(sequence.offset > (size_t)(oLitEnd - virtualStart), corruption_detected, ""); in ZSTD_execSequenceEnd() 935 if (match + sequence.matchLength <= dictEnd) { in ZSTD_execSequenceEnd() [all …]
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| /linux/tools/testing/selftests/bpf/progs/ |
| H A D | modify_return.c | 13 static int sequence = 0; variable 23 sequence++; in BPF_PROG() 24 fentry_result = (sequence == 1); 34 sequence++; 36 fmod_ret_result = (sequence == 2 && ret == 0); 46 sequence++; in BPF_PROG() 51 fexit_result = (sequence == 3 && ret == input_retval); 53 fexit_result = (sequence == 3 && ret == 4);
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| /linux/drivers/gpu/drm/nouveau/nvkm/subdev/bus/ |
| H A D | hwsq.h | 9 int sequence; member 13 int sequence; member 25 .sequence = 0, in hwsq_stride() 38 .sequence = 0, in hwsq_reg2() 51 .sequence = 0, in hwsq_reg() 69 ram->sequence++; in hwsq_init() 89 if (reg->sequence != ram->sequence) in hwsq_rd32() 99 reg->sequence = ram->sequence; in hwsq_wr32()
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| /linux/drivers/gpu/drm/nouveau/nvkm/subdev/fb/ |
| H A D | ramfuc.h | 10 int sequence; member 14 int sequence; member 26 .sequence = 0, in ramfuc_stride() 38 .sequence = 0, in ramfuc_reg2() 50 .sequence = 0, in ramfuc_reg() 65 ram->sequence++; in ramfuc_init() 85 if (reg->sequence != ram->sequence) in ramfuc_rd32() 95 reg->sequence = ram->sequence; in ramfuc_wr32()
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| /linux/Documentation/filesystems/ext4/ |
| H A D | mmp.rst | 10 sequence number. If the sequence number is EXT4_MMP_SEQ_CLEAN, the 11 open continues. If the sequence number is EXT4_MMP_SEQ_FSCK, then 14 the sequence number again. If the sequence number has changed, then the 16 code passes all of those checks, a new MMP sequence number is generated 21 the MMP sequence number is re-read; if it does not match the in-memory 22 MMP sequence number, then another node (node B) has mounted the 24 sequence numbers match, the sequence number is incremented both in
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| /linux/lib/zstd/compress/ |
| H A D | zstd_ldm.c | 644 rawSeq sequence = rawSeqStore->seq[rawSeqStore->pos]; in maybeSplitSequence() local 645 assert(sequence.offset > 0); in maybeSplitSequence() 647 if (remaining >= sequence.litLength + sequence.matchLength) { in maybeSplitSequence() 649 return sequence; in maybeSplitSequence() 652 if (remaining <= sequence.litLength) { in maybeSplitSequence() 653 sequence.offset = 0; in maybeSplitSequence() 654 } else if (remaining < sequence.litLength + sequence.matchLength) { in maybeSplitSequence() 655 sequence.matchLength = remaining - sequence.litLength; in maybeSplitSequence() 656 if (sequence.matchLength < minMatch) { in maybeSplitSequence() 657 sequence.offset = 0; in maybeSplitSequence() [all …]
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| /linux/security/selinux/ |
| H A D | status.c | 55 status->sequence = 0; in selinux_kernel_status_page() 87 status->sequence++; in selinux_status_update_setenforce() 93 status->sequence++; in selinux_status_update_setenforce() 112 status->sequence++; in selinux_status_update_policyload() 119 status->sequence++; in selinux_status_update_policyload()
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| /linux/arch/riscv/kvm/ |
| H A D | vcpu_sbi_sta.c | 33 u32 sequence; in kvm_riscv_vcpu_record_steal_time() local 55 offsetof(struct sbi_sta_struct, sequence)); in kvm_riscv_vcpu_record_steal_time() 62 sequence = le32_to_cpu(sequence_le); in kvm_riscv_vcpu_record_steal_time() 63 sequence += 1; in kvm_riscv_vcpu_record_steal_time() 65 if (WARN_ON(put_user(cpu_to_le32(sequence), sequence_ptr))) in kvm_riscv_vcpu_record_steal_time() 75 sequence += 1; in kvm_riscv_vcpu_record_steal_time() 76 WARN_ON(put_user(cpu_to_le32(sequence), sequence_ptr)); in kvm_riscv_vcpu_record_steal_time()
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| /linux/include/clocksource/ |
| H A D | hyperv_timer.h | 45 u32 sequence; in hv_read_tsc_page_tsc() local 64 sequence = READ_ONCE(tsc_pg->tsc_sequence); in hv_read_tsc_page_tsc() 65 if (!sequence) in hv_read_tsc_page_tsc() 83 } while (READ_ONCE(tsc_pg->tsc_sequence) != sequence); in hv_read_tsc_page_tsc()
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| /linux/Documentation/ABI/testing/ |
| H A D | sysfs-class-rc-nuvoton | 6 Reading this file returns the stored CIR wakeup sequence. 9 The same format can be used to store a wakeup sequence 12 Note: Some systems reset the stored wakeup sequence to a 14 wakeup sequence in a file and set it on boot using e.g.
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| /linux/drivers/gpu/drm/nouveau/ |
| H A D | nvc0_fence.c | 35 nvc0_fence_emit32(struct nouveau_channel *chan, u64 virtual, u32 sequence) in nvc0_fence_emit32() argument 44 SEMAPHOREC, sequence, in nvc0_fence_emit32() 58 nvc0_fence_sync32(struct nouveau_channel *chan, u64 virtual, u32 sequence) in nvc0_fence_sync32() argument 67 SEMAPHOREC, sequence, in nvc0_fence_sync32()
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| H A D | gv100_fence.c | 16 gv100_fence_emit32(struct nouveau_channel *chan, u64 virtual, u32 sequence) in gv100_fence_emit32() argument 27 SEM_PAYLOAD_LO, sequence); in gv100_fence_emit32() 47 gv100_fence_sync32(struct nouveau_channel *chan, u64 virtual, u32 sequence) in gv100_fence_sync32() argument 58 SEM_PAYLOAD_LO, sequence); in gv100_fence_sync32()
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| H A D | nv84_fence.c | 36 nv84_fence_emit32(struct nouveau_channel *chan, u64 virtual, u32 sequence) in nv84_fence_emit32() argument 47 SEMAPHOREC, sequence, in nv84_fence_emit32() 59 nv84_fence_sync32(struct nouveau_channel *chan, u64 virtual, u32 sequence) in nv84_fence_sync32() argument 70 SEMAPHOREC, sequence, in nv84_fence_sync32() 118 nouveau_bo_wr32(priv->bo, nv84_fence_chid(chan) * 16 / 4, fctx->base.sequence); in nv84_fence_context_del() 144 fctx->base.sequence = nv84_fence_read(chan); in nv84_fence_context_new()
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| /linux/lib/ |
| H A D | flex_proportions.c | 47 seqcount_init(&p->sequence); in fprop_global_init() 75 write_seqcount_begin(&p->sequence); in fprop_new_period() 81 write_seqcount_end(&p->sequence); in fprop_new_period() 156 seq = read_seqcount_begin(&p->sequence); in fprop_fraction_percpu() 160 } while (read_seqcount_retry(&p->sequence, seq)); in fprop_fraction_percpu()
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| /linux/include/trace/events/ |
| H A D | v4l2.h | 123 __field(u32, sequence) 144 __entry->sequence = buf->sequence; 167 __entry->sequence 200 __field(u32, sequence) 221 __entry->sequence = vbuf->sequence; 241 __entry->sequence
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| /linux/fs/xfs/ |
| H A D | xfs_log_cil.c | 188 ctx->sequence = ++cil->xc_current_sequence; in xlog_cil_ctx_switch() 208 log->l_cilp->xc_ctx->sequence = 1; in xlog_cil_init_post_recovery() 409 lv->lv_item->li_seq = log->l_cilp->xc_ctx->sequence; in xfs_cil_prepare_item() 1114 xfs_csn_t sequence, in xlog_cil_order_write() argument 1136 if (ctx->sequence >= sequence) in xlog_cil_order_write() 1173 error = xlog_cil_order_write(ctx->cil, ctx->sequence, _START_RECORD); in xlog_cil_write_chain() 1205 error = xlog_cil_order_write(ctx->cil, ctx->sequence, _COMMIT_RECORD); in xlog_cil_write_commit_record() 1402 ASSERT(push_seq <= ctx->sequence); in xlog_cil_push_work() 1432 if (push_seq < ctx->sequence) { in xlog_cil_push_work() 1867 lip->li_ops->iop_committing(lip, cil->xc_ctx->sequence); in xlog_cil_commit() [all …]
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| /linux/drivers/firewire/ |
| H A D | phy-packet-definitions.h | 212 static inline void phy_packet_self_id_extended_set_sequence(u32 *quadlet, unsigned int sequence) in phy_packet_self_id_extended_set_sequence() argument 215 *quadlet |= (sequence << SELF_ID_EXTENDED_SHIFT) & SELF_ID_EXTENDED_SEQUENCE_MASK; in phy_packet_self_id_extended_set_sequence() 229 unsigned int sequence; in self_id_sequence_enumerator_next() local 237 sequence = 0; in self_id_sequence_enumerator_next() 247 sequence != phy_packet_self_id_extended_get_sequence(quadlet)) in self_id_sequence_enumerator_next() 249 ++sequence; in self_id_sequence_enumerator_next()
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| /linux/Documentation/driver-api/ |
| H A D | pwrseq.rst | 17 exposed by the power sequence provider and delegate the actual requesting and 28 A unit is a discrete chunk of a power sequence. For instance one unit may 38 share the same parts of a power sequence but ignore parts that are 52 specify the name of the target it wants to reach in the sequence after calling 65 Each provider can logically split the power-up sequence into discrete chunks 67 consumers may use as the final point in the sequence that they wish to reach. 76 mechanism for dynamic matching of consumers and providers. Every power sequence
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| /linux/arch/um/drivers/ |
| H A D | vector_transports.c | 32 uint32_t sequence; member 100 uint32_t *sequence; in gre_form_header() local 105 sequence = (uint32_t *)(header + td->sequence_offset); in gre_form_header() 107 *sequence = 0; in gre_form_header() 109 *sequence = cpu_to_be32(++td->sequence); in gre_form_header() 252 td->sequence = 0; in build_gre_transport_data() 283 td->sequence = false; in build_gre_transport_data()
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| /linux/drivers/md/dm-vdo/ |
| H A D | recovery-journal.h | 230 sequence_number_t sequence) in vdo_get_recovery_journal_block_number() argument 236 return vdo_compute_recovery_journal_block_number(journal->size, sequence); in vdo_get_recovery_journal_block_number() 248 sequence_number_t sequence) in vdo_compute_recovery_journal_check_byte() argument 251 return (((sequence / journal->size) & 0x7F) | 0x80); in vdo_compute_recovery_journal_check_byte()
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| /linux/arch/powerpc/platforms/pseries/ |
| H A D | papr-phy-attest.c | 43 u32 sequence; member 88 params->sequence); in rtas_physical_attestation() 99 params->sequence = rets[0]; in rtas_physical_attestation() 152 param->sequence = 1; in phy_attest_sequence_begin()
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| /linux/Documentation/devicetree/bindings/input/ |
| H A D | input-reset.txt | 1 Input: sysrq reset sequence 4 include/uapi/linux/input.h. This is to communicate a sequence of keys to the 20 sequence has been recognized.
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| /linux/Documentation/security/ |
| H A D | sak.rst | 12 this key sequence before they log in to the system. 15 providing SAK. One is the ALT-SYSRQ-K sequence. You shouldn't use 16 this sequence. It is only available if the kernel was compiled with 19 The proper way of generating a SAK is to define the key sequence using 28 What key sequence should you use? Well, CTRL-ALT-DEL is used to reboot
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| /linux/arch/s390/kernel/diag/ |
| H A D | diag324.c | 86 u64 sequence; member 175 data->sequence++; in diag324_pibbuf() 184 rc |= put_user(data->sequence, &udata->sequence); in diag324_pibbuf()
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