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perf intel-pt: Add support for decoding FUP/TIP only
Use the new itrace 'q' option to add support for a mode of decoding that ignores TNT, does not walk object code, but gets the ip from FUP and TIP packets. Example: $ perf record -e intel_pt//u grep -rI pudding drivers [ perf record: Woken up 52 times to write data ] [ perf record: Captured and wrote 57.870 MB perf.data ] $ time perf script --itrace=bi | wc -l 58948289 real 1m23.863s user 1m23.251s sys 0m7.452s $ time perf script --itrace=biq | wc -l 3385694 real 0m4.453s user 0m4.455s sys 0m0.328s Signed-off-by: Adrian Hunter <adrian.hunter@intel.com> Reviewed-by: Andi Kleen <ak@linux.intel.com> Tested-by: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Jiri Olsa <jolsa@redhat.com> Link: http://lore.kernel.org/lkml/20200710151104.15137-12-adrian.hunter@intel.com Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
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@ -825,6 +825,7 @@ The letters are:
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l synthesize last branch entries (use with i or x)
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L synthesize last branch entries on existing event records
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s skip initial number of events
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q quicker (less detailed) decoding
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"Instructions" events look like they were recorded by "perf record -e
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instructions".
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@ -969,6 +970,36 @@ at the beginning. This is useful to ignore initialization code.
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skips the first million instructions.
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The q option changes the way the trace is decoded. The decoding is much faster
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but much less detailed. Specifically, with the q option, the decoder does not
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decode TNT packets, and does not walk object code, but gets the ip from FUP and
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TIP packets. The q option can be used with the b and i options but the period
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is not used. The q option decodes more quickly, but is useful only if the
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control flow of interest is represented or indicated by FUP, TIP, TIP.PGE, or
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TIP.PGD packets (refer below). However the q option could be used to find time
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ranges that could then be decoded fully using the --time option.
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What will *not* be decoded with the (single) q option:
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- direct calls and jmps
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- conditional branches
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- non-branch instructions
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What *will* be decoded with the (single) q option:
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- asynchronous branches such as interrupts
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- indirect branches
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- function return target address *if* the noretcomp config term (refer
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config terms section) was used
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- start of (control-flow) tracing
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- end of (control-flow) tracing, if it is not out of context
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- power events, ptwrite, transaction start and abort
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- instruction pointer associated with PSB packets
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Note the q option does not specify what events will be synthesized e.g. the p
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option must be used also to show power events.
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dump option
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~~~~~~~~~~~
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@ -55,6 +55,7 @@ enum intel_pt_pkt_state {
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INTEL_PT_STATE_TIP_PGD,
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INTEL_PT_STATE_FUP,
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INTEL_PT_STATE_FUP_NO_TIP,
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INTEL_PT_STATE_RESAMPLE,
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};
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static inline bool intel_pt_sample_time(enum intel_pt_pkt_state pkt_state)
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@ -65,6 +66,7 @@ static inline bool intel_pt_sample_time(enum intel_pt_pkt_state pkt_state)
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case INTEL_PT_STATE_ERR_RESYNC:
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case INTEL_PT_STATE_IN_SYNC:
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case INTEL_PT_STATE_TNT_CONT:
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case INTEL_PT_STATE_RESAMPLE:
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return true;
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case INTEL_PT_STATE_TNT:
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case INTEL_PT_STATE_TIP:
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@ -109,6 +111,8 @@ struct intel_pt_decoder {
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bool fixup_last_mtc;
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bool have_last_ip;
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bool in_psb;
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bool hop;
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bool hop_psb_fup;
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enum intel_pt_param_flags flags;
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uint64_t pos;
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uint64_t last_ip;
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@ -235,6 +239,7 @@ struct intel_pt_decoder *intel_pt_decoder_new(struct intel_pt_params *params)
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decoder->data = params->data;
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decoder->return_compression = params->return_compression;
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decoder->branch_enable = params->branch_enable;
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decoder->hop = params->quick >= 1;
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decoder->flags = params->flags;
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@ -275,6 +280,9 @@ struct intel_pt_decoder *intel_pt_decoder_new(struct intel_pt_params *params)
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intel_pt_log("timestamp: tsc_ctc_mult %u\n", decoder->tsc_ctc_mult);
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intel_pt_log("timestamp: tsc_slip %#x\n", decoder->tsc_slip);
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if (decoder->hop)
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intel_pt_log("Hop mode: decoding FUP and TIPs, but not TNT\n");
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return decoder;
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}
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@ -1730,8 +1738,14 @@ static int intel_pt_walk_psbend(struct intel_pt_decoder *decoder)
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case INTEL_PT_FUP:
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decoder->pge = true;
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if (decoder->packet.count)
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if (decoder->packet.count) {
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intel_pt_set_last_ip(decoder);
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if (decoder->hop) {
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/* Act on FUP at PSBEND */
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decoder->ip = decoder->last_ip;
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decoder->hop_psb_fup = true;
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}
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}
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break;
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case INTEL_PT_MODE_TSX:
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@ -1875,6 +1889,118 @@ static int intel_pt_walk_fup_tip(struct intel_pt_decoder *decoder)
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}
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}
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static int intel_pt_resample(struct intel_pt_decoder *decoder)
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{
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decoder->pkt_state = INTEL_PT_STATE_IN_SYNC;
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decoder->state.type = INTEL_PT_INSTRUCTION;
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decoder->state.from_ip = decoder->ip;
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decoder->state.to_ip = 0;
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return 0;
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}
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#define HOP_PROCESS 0
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#define HOP_IGNORE 1
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#define HOP_RETURN 2
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#define HOP_AGAIN 3
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/* Hop mode: Ignore TNT, do not walk code, but get ip from FUPs and TIPs */
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static int intel_pt_hop_trace(struct intel_pt_decoder *decoder, bool *no_tip, int *err)
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{
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switch (decoder->packet.type) {
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case INTEL_PT_TNT:
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return HOP_IGNORE;
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case INTEL_PT_TIP_PGD:
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if (!decoder->packet.count)
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return HOP_IGNORE;
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intel_pt_set_ip(decoder);
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decoder->state.type |= INTEL_PT_TRACE_END;
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decoder->state.from_ip = 0;
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decoder->state.to_ip = decoder->ip;
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return HOP_RETURN;
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case INTEL_PT_TIP:
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if (!decoder->packet.count)
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return HOP_IGNORE;
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intel_pt_set_ip(decoder);
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decoder->state.type = INTEL_PT_INSTRUCTION;
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decoder->state.from_ip = decoder->ip;
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decoder->state.to_ip = 0;
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return HOP_RETURN;
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case INTEL_PT_FUP:
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if (!decoder->packet.count)
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return HOP_IGNORE;
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intel_pt_set_ip(decoder);
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if (intel_pt_fup_event(decoder))
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return HOP_RETURN;
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if (!decoder->branch_enable)
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*no_tip = true;
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if (*no_tip) {
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decoder->state.type = INTEL_PT_INSTRUCTION;
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decoder->state.from_ip = decoder->ip;
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decoder->state.to_ip = 0;
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return HOP_RETURN;
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}
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*err = intel_pt_walk_fup_tip(decoder);
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if (!*err)
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decoder->pkt_state = INTEL_PT_STATE_RESAMPLE;
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return HOP_RETURN;
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case INTEL_PT_PSB:
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decoder->last_ip = 0;
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decoder->have_last_ip = true;
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decoder->hop_psb_fup = false;
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*err = intel_pt_walk_psbend(decoder);
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if (*err == -EAGAIN)
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return HOP_AGAIN;
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if (*err)
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return HOP_RETURN;
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if (decoder->hop_psb_fup) {
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decoder->hop_psb_fup = false;
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decoder->state.type = INTEL_PT_INSTRUCTION;
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decoder->state.from_ip = decoder->ip;
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decoder->state.to_ip = 0;
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return HOP_RETURN;
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}
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if (decoder->cbr != decoder->cbr_seen) {
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decoder->state.type = 0;
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return HOP_RETURN;
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}
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return HOP_IGNORE;
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case INTEL_PT_BAD:
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case INTEL_PT_PAD:
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case INTEL_PT_TIP_PGE:
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case INTEL_PT_TSC:
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case INTEL_PT_TMA:
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case INTEL_PT_MODE_EXEC:
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case INTEL_PT_MODE_TSX:
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case INTEL_PT_MTC:
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case INTEL_PT_CYC:
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case INTEL_PT_VMCS:
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case INTEL_PT_PSBEND:
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case INTEL_PT_CBR:
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case INTEL_PT_TRACESTOP:
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case INTEL_PT_PIP:
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case INTEL_PT_OVF:
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case INTEL_PT_MNT:
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case INTEL_PT_PTWRITE:
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case INTEL_PT_PTWRITE_IP:
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case INTEL_PT_EXSTOP:
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case INTEL_PT_EXSTOP_IP:
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case INTEL_PT_MWAIT:
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case INTEL_PT_PWRE:
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case INTEL_PT_PWRX:
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case INTEL_PT_BBP:
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case INTEL_PT_BIP:
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case INTEL_PT_BEP:
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case INTEL_PT_BEP_IP:
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default:
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return HOP_PROCESS;
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}
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}
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static int intel_pt_walk_trace(struct intel_pt_decoder *decoder)
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{
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bool no_tip = false;
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@ -1885,6 +2011,19 @@ static int intel_pt_walk_trace(struct intel_pt_decoder *decoder)
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if (err)
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return err;
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next:
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if (decoder->hop) {
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switch (intel_pt_hop_trace(decoder, &no_tip, &err)) {
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case HOP_IGNORE:
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continue;
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case HOP_RETURN:
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return err;
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case HOP_AGAIN:
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goto next;
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default:
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break;
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}
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}
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switch (decoder->packet.type) {
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case INTEL_PT_TNT:
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if (!decoder->packet.count)
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@ -1914,6 +2053,12 @@ next:
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decoder->state.from_ip = 0;
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decoder->state.to_ip = decoder->ip;
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decoder->state.type |= INTEL_PT_TRACE_BEGIN;
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/*
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* In hop mode, resample to get the to_ip as an
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* "instruction" sample.
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*/
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if (decoder->hop)
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decoder->pkt_state = INTEL_PT_STATE_RESAMPLE;
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return 0;
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}
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@ -2033,7 +2178,7 @@ next:
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case INTEL_PT_MODE_TSX:
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/* MODE_TSX need not be followed by FUP */
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if (!decoder->pge) {
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if (!decoder->pge || decoder->in_psb) {
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intel_pt_update_in_tx(decoder);
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break;
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}
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@ -2424,7 +2569,11 @@ static int intel_pt_sync_ip(struct intel_pt_decoder *decoder)
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if (err)
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return err;
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decoder->pkt_state = INTEL_PT_STATE_IN_SYNC;
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/* In hop mode, resample to get the to_ip as an "instruction" sample */
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if (decoder->hop)
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decoder->pkt_state = INTEL_PT_STATE_RESAMPLE;
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else
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decoder->pkt_state = INTEL_PT_STATE_IN_SYNC;
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decoder->overflow = false;
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decoder->state.from_ip = 0;
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@ -2545,7 +2694,14 @@ static int intel_pt_sync(struct intel_pt_decoder *decoder)
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if (decoder->ip) {
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decoder->state.type = 0; /* Do not have a sample */
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decoder->pkt_state = INTEL_PT_STATE_IN_SYNC;
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/*
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* In hop mode, resample to get the PSB FUP ip as an
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* "instruction" sample.
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*/
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if (decoder->hop)
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decoder->pkt_state = INTEL_PT_STATE_RESAMPLE;
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else
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decoder->pkt_state = INTEL_PT_STATE_IN_SYNC;
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} else {
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return intel_pt_sync_ip(decoder);
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}
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@ -2609,6 +2765,9 @@ const struct intel_pt_state *intel_pt_decode(struct intel_pt_decoder *decoder)
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if (err == -EAGAIN)
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err = intel_pt_walk_trace(decoder);
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break;
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case INTEL_PT_STATE_RESAMPLE:
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err = intel_pt_resample(decoder);
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break;
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default:
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err = intel_pt_bug(decoder);
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break;
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@ -250,6 +250,7 @@ struct intel_pt_params {
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uint32_t tsc_ctc_ratio_n;
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uint32_t tsc_ctc_ratio_d;
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enum intel_pt_param_flags flags;
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unsigned int quick;
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};
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struct intel_pt_decoder;
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@ -1030,6 +1030,7 @@ static struct intel_pt_queue *intel_pt_alloc_queue(struct intel_pt *pt,
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params.mtc_period = intel_pt_mtc_period(pt);
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params.tsc_ctc_ratio_n = pt->tsc_ctc_ratio_n;
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params.tsc_ctc_ratio_d = pt->tsc_ctc_ratio_d;
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params.quick = pt->synth_opts.quick;
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if (pt->filts.cnt > 0)
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params.pgd_ip = intel_pt_pgd_ip;
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@ -1423,7 +1424,10 @@ static int intel_pt_synth_instruction_sample(struct intel_pt_queue *ptq)
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sample.id = ptq->pt->instructions_id;
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sample.stream_id = ptq->pt->instructions_id;
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sample.period = ptq->state->tot_insn_cnt - ptq->last_insn_cnt;
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if (pt->synth_opts.quick)
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sample.period = 1;
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else
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sample.period = ptq->state->tot_insn_cnt - ptq->last_insn_cnt;
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sample.cyc_cnt = ptq->ipc_cyc_cnt - ptq->last_in_cyc_cnt;
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if (sample.cyc_cnt) {
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