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errno.h isn't used in auxtrace.h so remove it and fix build failures caused by transitive dependencies through auxtrace.h on errno.h. Signed-off-by: Ian Rogers <irogers@google.com> Reviewed-by: James Clark <james.clark@linaro.org> Signed-off-by: Namhyung Kim <namhyung@kernel.org>
734 lines
17 KiB
C
734 lines
17 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* VPA DTL PMU support
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*/
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#include <linux/string.h>
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#include <errno.h>
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#include <inttypes.h>
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#include "color.h"
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#include "evlist.h"
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#include "session.h"
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#include "auxtrace.h"
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#include "data.h"
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#include "machine.h"
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#include "debug.h"
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#include "powerpc-vpadtl.h"
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#include "sample.h"
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#include "tool.h"
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/*
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* Structure to save the auxtrace queue
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*/
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struct powerpc_vpadtl {
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struct auxtrace auxtrace;
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struct auxtrace_queues queues;
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struct auxtrace_heap heap;
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u32 auxtrace_type;
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struct perf_session *session;
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struct machine *machine;
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u32 pmu_type;
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u64 sample_id;
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};
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struct boottb_freq {
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u64 boot_tb;
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u64 tb_freq;
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u64 timebase;
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u64 padded[3];
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};
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struct powerpc_vpadtl_queue {
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struct powerpc_vpadtl *vpa;
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unsigned int queue_nr;
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struct auxtrace_buffer *buffer;
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struct thread *thread;
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bool on_heap;
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struct powerpc_vpadtl_entry *dtl;
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u64 timestamp;
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unsigned long pkt_len;
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unsigned long buf_len;
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u64 boot_tb;
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u64 tb_freq;
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unsigned int tb_buffer;
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unsigned int size;
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bool done;
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pid_t pid;
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pid_t tid;
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int cpu;
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};
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const char *dispatch_reasons[11] = {
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"external_interrupt",
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"firmware_internal_event",
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"H_PROD",
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"decrementer_interrupt",
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"system_reset",
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"firmware_internal_event",
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"conferred_cycles",
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"time_slice",
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"virtual_memory_page_fault",
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"expropriated_adjunct",
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"priv_doorbell"};
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const char *preempt_reasons[10] = {
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"unused",
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"firmware_internal_event",
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"H_CEDE",
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"H_CONFER",
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"time_slice",
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"migration_hibernation_page_fault",
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"virtual_memory_page_fault",
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"H_CONFER_ADJUNCT",
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"hcall_adjunct",
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"HDEC_adjunct"};
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#define dtl_entry_size sizeof(struct powerpc_vpadtl_entry)
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/*
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* Function to dump the dispatch trace data when perf report
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* is invoked with -D
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*/
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static void powerpc_vpadtl_dump(struct powerpc_vpadtl *vpa __maybe_unused,
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unsigned char *buf, size_t len)
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{
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struct powerpc_vpadtl_entry *dtl;
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int pkt_len, pos = 0;
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const char *color = PERF_COLOR_BLUE;
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color_fprintf(stdout, color,
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". ... VPA DTL PMU data: size %zu bytes, entries is %zu\n",
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len, len/dtl_entry_size);
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if (len % dtl_entry_size)
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len = len - (len % dtl_entry_size);
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while (len) {
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pkt_len = dtl_entry_size;
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printf(".");
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color_fprintf(stdout, color, " %08x: ", pos);
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dtl = (struct powerpc_vpadtl_entry *)buf;
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if (dtl->timebase != 0) {
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printf("dispatch_reason:%s, preempt_reason:%s, "
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"enqueue_to_dispatch_time:%d, ready_to_enqueue_time:%d, "
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"waiting_to_ready_time:%d\n",
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dispatch_reasons[dtl->dispatch_reason],
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preempt_reasons[dtl->preempt_reason],
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be32_to_cpu(dtl->enqueue_to_dispatch_time),
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be32_to_cpu(dtl->ready_to_enqueue_time),
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be32_to_cpu(dtl->waiting_to_ready_time));
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} else {
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struct boottb_freq *boot_tb = (struct boottb_freq *)buf;
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printf("boot_tb: %" PRIu64 ", tb_freq: %" PRIu64 "\n",
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boot_tb->boot_tb, boot_tb->tb_freq);
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}
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pos += pkt_len;
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buf += pkt_len;
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len -= pkt_len;
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}
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}
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static unsigned long long powerpc_vpadtl_timestamp(struct powerpc_vpadtl_queue *vpaq)
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{
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struct powerpc_vpadtl_entry *record = vpaq->dtl;
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unsigned long long timestamp = 0;
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unsigned long long boot_tb;
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unsigned long long diff;
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double result, div;
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double boot_freq;
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/*
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* Formula used to get timestamp that can be co-related with
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* other perf events:
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* ((timbase from DTL entry - boot time) / frequency) * 1000000000
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*/
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if (record->timebase) {
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boot_tb = vpaq->boot_tb;
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boot_freq = vpaq->tb_freq;
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diff = be64_to_cpu(record->timebase) - boot_tb;
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div = diff / boot_freq;
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result = div;
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result = result * 1000000000;
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timestamp = result;
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}
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return timestamp;
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}
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static struct powerpc_vpadtl *session_to_vpa(struct perf_session *session)
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{
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return container_of(session->auxtrace, struct powerpc_vpadtl, auxtrace);
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}
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static void powerpc_vpadtl_dump_event(struct powerpc_vpadtl *vpa, unsigned char *buf,
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size_t len)
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{
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printf(".\n");
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powerpc_vpadtl_dump(vpa, buf, len);
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}
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/*
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* Generate perf sample for each entry in the dispatch trace log.
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* - sample ip is picked from srr0 field of powerpc_vpadtl_entry
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* - sample cpu is logical cpu.
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* - cpumode is set to PERF_RECORD_MISC_KERNEL
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* - Additionally save the details in raw_data of sample. This
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* is to print the relevant fields in perf_sample__fprintf_synth()
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* when called from builtin-script
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*/
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static int powerpc_vpadtl_sample(struct powerpc_vpadtl_entry *record,
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struct powerpc_vpadtl *vpa, u64 save, int cpu)
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{
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struct perf_sample sample;
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union perf_event event;
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sample.ip = be64_to_cpu(record->srr0);
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sample.period = 1;
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sample.cpu = cpu;
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sample.id = vpa->sample_id;
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sample.callchain = NULL;
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sample.branch_stack = NULL;
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memset(&event, 0, sizeof(event));
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sample.cpumode = PERF_RECORD_MISC_KERNEL;
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sample.time = save;
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sample.raw_data = record;
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sample.raw_size = sizeof(record);
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event.sample.header.type = PERF_RECORD_SAMPLE;
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event.sample.header.misc = sample.cpumode;
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event.sample.header.size = sizeof(struct perf_event_header);
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if (perf_session__deliver_synth_event(vpa->session, &event, &sample)) {
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pr_debug("Failed to create sample for dtl entry\n");
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return -1;
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}
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return 0;
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}
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static int powerpc_vpadtl_get_buffer(struct powerpc_vpadtl_queue *vpaq)
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{
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struct auxtrace_buffer *buffer = vpaq->buffer;
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struct auxtrace_queues *queues = &vpaq->vpa->queues;
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struct auxtrace_queue *queue;
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queue = &queues->queue_array[vpaq->queue_nr];
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buffer = auxtrace_buffer__next(queue, buffer);
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if (!buffer)
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return 0;
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vpaq->buffer = buffer;
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vpaq->size = buffer->size;
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/* If the aux_buffer doesn't have data associated, try to load it */
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if (!buffer->data) {
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/* get the file desc associated with the perf data file */
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int fd = perf_data__fd(vpaq->vpa->session->data);
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buffer->data = auxtrace_buffer__get_data(buffer, fd);
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if (!buffer->data)
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return -ENOMEM;
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}
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vpaq->buf_len = buffer->size;
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if (buffer->size % dtl_entry_size)
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vpaq->buf_len = buffer->size - (buffer->size % dtl_entry_size);
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if (vpaq->tb_buffer != buffer->buffer_nr) {
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vpaq->pkt_len = 0;
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vpaq->tb_buffer = 0;
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}
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return 1;
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}
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/*
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* The first entry in the queue for VPA DTL PMU has the boot timebase,
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* frequency details which are needed to get timestamp which is required to
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* correlate with other events. Save the boot_tb and tb_freq as part of
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* powerpc_vpadtl_queue. The very next entry is the actual trace data to
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* be returned.
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*/
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static int powerpc_vpadtl_decode(struct powerpc_vpadtl_queue *vpaq)
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{
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int ret;
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char *buf;
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struct boottb_freq *boottb;
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ret = powerpc_vpadtl_get_buffer(vpaq);
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if (ret <= 0)
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return ret;
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boottb = (struct boottb_freq *)vpaq->buffer->data;
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if (boottb->timebase == 0) {
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vpaq->boot_tb = boottb->boot_tb;
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vpaq->tb_freq = boottb->tb_freq;
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vpaq->pkt_len += dtl_entry_size;
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}
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buf = vpaq->buffer->data;
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buf += vpaq->pkt_len;
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vpaq->dtl = (struct powerpc_vpadtl_entry *)buf;
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vpaq->tb_buffer = vpaq->buffer->buffer_nr;
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vpaq->buffer = NULL;
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vpaq->buf_len = 0;
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return 1;
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}
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static int powerpc_vpadtl_decode_all(struct powerpc_vpadtl_queue *vpaq)
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{
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int ret;
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unsigned char *buf;
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if (!vpaq->buf_len || vpaq->pkt_len == vpaq->size) {
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ret = powerpc_vpadtl_get_buffer(vpaq);
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if (ret <= 0)
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return ret;
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}
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if (vpaq->buffer) {
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buf = vpaq->buffer->data;
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buf += vpaq->pkt_len;
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vpaq->dtl = (struct powerpc_vpadtl_entry *)buf;
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if ((long long)be64_to_cpu(vpaq->dtl->timebase) <= 0) {
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if (vpaq->pkt_len != dtl_entry_size && vpaq->buf_len) {
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vpaq->pkt_len += dtl_entry_size;
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vpaq->buf_len -= dtl_entry_size;
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}
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return -1;
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}
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vpaq->pkt_len += dtl_entry_size;
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vpaq->buf_len -= dtl_entry_size;
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} else {
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return 0;
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}
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return 1;
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}
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static int powerpc_vpadtl_run_decoder(struct powerpc_vpadtl_queue *vpaq, u64 *timestamp)
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{
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struct powerpc_vpadtl *vpa = vpaq->vpa;
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struct powerpc_vpadtl_entry *record;
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int ret;
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unsigned long long vpaq_timestamp;
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while (1) {
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ret = powerpc_vpadtl_decode_all(vpaq);
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if (!ret) {
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pr_debug("All data in the queue has been processed.\n");
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return 1;
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}
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/*
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* Error is detected when decoding VPA PMU trace. Continue to
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* the next trace data and find out more dtl entries.
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*/
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if (ret < 0)
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continue;
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record = vpaq->dtl;
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vpaq_timestamp = powerpc_vpadtl_timestamp(vpaq);
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/* Update timestamp for the last record */
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if (vpaq_timestamp > vpaq->timestamp)
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vpaq->timestamp = vpaq_timestamp;
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/*
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* If the timestamp of the queue is later than timestamp of the
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* coming perf event, bail out so can allow the perf event to
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* be processed ahead.
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*/
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if (vpaq->timestamp >= *timestamp) {
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*timestamp = vpaq->timestamp;
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vpaq->pkt_len -= dtl_entry_size;
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vpaq->buf_len += dtl_entry_size;
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return 0;
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}
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ret = powerpc_vpadtl_sample(record, vpa, vpaq_timestamp, vpaq->cpu);
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if (ret)
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continue;
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}
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return 0;
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}
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/*
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* For each of the PERF_RECORD_XX record, compare the timestamp
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* of perf record with timestamp of top element in the auxtrace heap.
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* Process the auxtrace queue if the timestamp of element from heap is
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* lower than timestamp from entry in perf record.
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*
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* Update the timestamp of the auxtrace heap with the timestamp
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* of last processed entry from the auxtrace buffer.
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*/
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static int powerpc_vpadtl_process_queues(struct powerpc_vpadtl *vpa, u64 timestamp)
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{
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unsigned int queue_nr;
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u64 ts;
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int ret;
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while (1) {
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struct auxtrace_queue *queue;
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struct powerpc_vpadtl_queue *vpaq;
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if (!vpa->heap.heap_cnt)
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return 0;
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if (vpa->heap.heap_array[0].ordinal >= timestamp)
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return 0;
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queue_nr = vpa->heap.heap_array[0].queue_nr;
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queue = &vpa->queues.queue_array[queue_nr];
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vpaq = queue->priv;
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auxtrace_heap__pop(&vpa->heap);
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if (vpa->heap.heap_cnt) {
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ts = vpa->heap.heap_array[0].ordinal + 1;
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if (ts > timestamp)
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ts = timestamp;
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} else {
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ts = timestamp;
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}
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ret = powerpc_vpadtl_run_decoder(vpaq, &ts);
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if (ret < 0) {
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auxtrace_heap__add(&vpa->heap, queue_nr, ts);
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return ret;
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}
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if (!ret) {
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ret = auxtrace_heap__add(&vpa->heap, queue_nr, ts);
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if (ret < 0)
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return ret;
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} else {
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vpaq->on_heap = false;
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}
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}
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return 0;
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}
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static struct powerpc_vpadtl_queue *powerpc_vpadtl__alloc_queue(struct powerpc_vpadtl *vpa,
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unsigned int queue_nr)
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{
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struct powerpc_vpadtl_queue *vpaq;
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vpaq = zalloc(sizeof(*vpaq));
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if (!vpaq)
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return NULL;
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vpaq->vpa = vpa;
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vpaq->queue_nr = queue_nr;
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return vpaq;
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}
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/*
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* When the Dispatch Trace Log data is collected along with other events
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* like sched tracepoint events, it needs to be correlated and present
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* interleaved along with these events. Perf events can be collected
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* parallely across the CPUs.
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*
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* An auxtrace_queue is created for each CPU. Data within each queue is in
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* increasing order of timestamp. Allocate and setup auxtrace queues here.
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* All auxtrace queues is maintained in auxtrace heap in the increasing order
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* of timestamp. So always the lowest timestamp (entries to be processed first)
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* is on top of the heap.
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*
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* To add to auxtrace heap, fetch the timestamp from first DTL entry
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* for each of the queue.
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*/
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static int powerpc_vpadtl__setup_queue(struct powerpc_vpadtl *vpa,
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struct auxtrace_queue *queue,
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unsigned int queue_nr)
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{
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struct powerpc_vpadtl_queue *vpaq = queue->priv;
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if (list_empty(&queue->head) || vpaq)
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return 0;
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vpaq = powerpc_vpadtl__alloc_queue(vpa, queue_nr);
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if (!vpaq)
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return -ENOMEM;
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queue->priv = vpaq;
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if (queue->cpu != -1)
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vpaq->cpu = queue->cpu;
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if (!vpaq->on_heap) {
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int ret;
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retry:
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ret = powerpc_vpadtl_decode(vpaq);
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if (!ret)
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return 0;
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if (ret < 0)
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goto retry;
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vpaq->timestamp = powerpc_vpadtl_timestamp(vpaq);
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ret = auxtrace_heap__add(&vpa->heap, queue_nr, vpaq->timestamp);
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if (ret)
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return ret;
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vpaq->on_heap = true;
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}
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return 0;
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}
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static int powerpc_vpadtl__setup_queues(struct powerpc_vpadtl *vpa)
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{
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unsigned int i;
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int ret;
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for (i = 0; i < vpa->queues.nr_queues; i++) {
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ret = powerpc_vpadtl__setup_queue(vpa, &vpa->queues.queue_array[i], i);
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if (ret)
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return ret;
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}
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return 0;
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}
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|
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static int powerpc_vpadtl__update_queues(struct powerpc_vpadtl *vpa)
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{
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if (vpa->queues.new_data) {
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vpa->queues.new_data = false;
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return powerpc_vpadtl__setup_queues(vpa);
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}
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|
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return 0;
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}
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|
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static int powerpc_vpadtl_process_event(struct perf_session *session,
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union perf_event *event __maybe_unused,
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struct perf_sample *sample,
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const struct perf_tool *tool)
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{
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struct powerpc_vpadtl *vpa = session_to_vpa(session);
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int err = 0;
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|
|
if (dump_trace)
|
|
return 0;
|
|
|
|
if (!tool->ordered_events) {
|
|
pr_err("VPA requires ordered events\n");
|
|
return -EINVAL;
|
|
}
|
|
|
|
if (sample->time) {
|
|
err = powerpc_vpadtl__update_queues(vpa);
|
|
if (err)
|
|
return err;
|
|
|
|
err = powerpc_vpadtl_process_queues(vpa, sample->time);
|
|
}
|
|
|
|
return err;
|
|
}
|
|
|
|
/*
|
|
* Process PERF_RECORD_AUXTRACE records
|
|
*/
|
|
static int powerpc_vpadtl_process_auxtrace_event(struct perf_session *session,
|
|
union perf_event *event,
|
|
const struct perf_tool *tool __maybe_unused)
|
|
{
|
|
struct powerpc_vpadtl *vpa = session_to_vpa(session);
|
|
struct auxtrace_buffer *buffer;
|
|
int fd = perf_data__fd(session->data);
|
|
off_t data_offset;
|
|
int err;
|
|
|
|
if (!dump_trace)
|
|
return 0;
|
|
|
|
if (perf_data__is_pipe(session->data)) {
|
|
data_offset = 0;
|
|
} else {
|
|
data_offset = lseek(fd, 0, SEEK_CUR);
|
|
if (data_offset == -1)
|
|
return -errno;
|
|
}
|
|
|
|
err = auxtrace_queues__add_event(&vpa->queues, session, event,
|
|
data_offset, &buffer);
|
|
|
|
if (err)
|
|
return err;
|
|
|
|
/* Dump here now we have copied a piped trace out of the pipe */
|
|
if (auxtrace_buffer__get_data(buffer, fd)) {
|
|
powerpc_vpadtl_dump_event(vpa, buffer->data, buffer->size);
|
|
auxtrace_buffer__put_data(buffer);
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int powerpc_vpadtl_flush(struct perf_session *session __maybe_unused,
|
|
const struct perf_tool *tool __maybe_unused)
|
|
{
|
|
return 0;
|
|
}
|
|
|
|
static void powerpc_vpadtl_free_events(struct perf_session *session)
|
|
{
|
|
struct powerpc_vpadtl *vpa = session_to_vpa(session);
|
|
struct auxtrace_queues *queues = &vpa->queues;
|
|
|
|
for (unsigned int i = 0; i < queues->nr_queues; i++)
|
|
zfree(&queues->queue_array[i].priv);
|
|
|
|
auxtrace_queues__free(queues);
|
|
}
|
|
|
|
static void powerpc_vpadtl_free(struct perf_session *session)
|
|
{
|
|
struct powerpc_vpadtl *vpa = session_to_vpa(session);
|
|
|
|
auxtrace_heap__free(&vpa->heap);
|
|
powerpc_vpadtl_free_events(session);
|
|
session->auxtrace = NULL;
|
|
free(vpa);
|
|
}
|
|
|
|
static const char * const powerpc_vpadtl_info_fmts[] = {
|
|
[POWERPC_VPADTL_TYPE] = " PMU Type %"PRId64"\n",
|
|
};
|
|
|
|
static void powerpc_vpadtl_print_info(__u64 *arr)
|
|
{
|
|
if (!dump_trace)
|
|
return;
|
|
|
|
fprintf(stdout, powerpc_vpadtl_info_fmts[POWERPC_VPADTL_TYPE], arr[POWERPC_VPADTL_TYPE]);
|
|
}
|
|
|
|
static void set_event_name(struct evlist *evlist, u64 id,
|
|
const char *name)
|
|
{
|
|
struct evsel *evsel;
|
|
|
|
evlist__for_each_entry(evlist, evsel) {
|
|
if (evsel->core.id && evsel->core.id[0] == id) {
|
|
if (evsel->name)
|
|
zfree(&evsel->name);
|
|
evsel->name = strdup(name);
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
static int
|
|
powerpc_vpadtl_synth_events(struct powerpc_vpadtl *vpa, struct perf_session *session)
|
|
{
|
|
struct evlist *evlist = session->evlist;
|
|
struct evsel *evsel;
|
|
struct perf_event_attr attr;
|
|
bool found = false;
|
|
u64 id;
|
|
int err;
|
|
|
|
evlist__for_each_entry(evlist, evsel) {
|
|
if (strstarts(evsel->name, "vpa_dtl")) {
|
|
found = true;
|
|
break;
|
|
}
|
|
}
|
|
|
|
if (!found) {
|
|
pr_debug("No selected events with VPA trace data\n");
|
|
return 0;
|
|
}
|
|
|
|
memset(&attr, 0, sizeof(struct perf_event_attr));
|
|
attr.size = sizeof(struct perf_event_attr);
|
|
attr.sample_type = evsel->core.attr.sample_type;
|
|
attr.sample_id_all = evsel->core.attr.sample_id_all;
|
|
attr.type = PERF_TYPE_SYNTH;
|
|
attr.config = PERF_SYNTH_POWERPC_VPA_DTL;
|
|
|
|
/* create new id val to be a fixed offset from evsel id */
|
|
id = auxtrace_synth_id_range_start(evsel);
|
|
|
|
err = perf_session__deliver_synth_attr_event(session, &attr, id);
|
|
if (err)
|
|
return err;
|
|
|
|
vpa->sample_id = id;
|
|
set_event_name(evlist, id, "vpa-dtl");
|
|
|
|
return 0;
|
|
}
|
|
|
|
/*
|
|
* Process the PERF_RECORD_AUXTRACE_INFO records and setup
|
|
* the infrastructure to process auxtrace events. PERF_RECORD_AUXTRACE_INFO
|
|
* is processed first since it is of type perf_user_event_type.
|
|
* Initialise the aux buffer queues using auxtrace_queues__init().
|
|
* auxtrace_queue is created for each CPU.
|
|
*/
|
|
int powerpc_vpadtl_process_auxtrace_info(union perf_event *event,
|
|
struct perf_session *session)
|
|
{
|
|
struct perf_record_auxtrace_info *auxtrace_info = &event->auxtrace_info;
|
|
size_t min_sz = sizeof(u64) * POWERPC_VPADTL_TYPE;
|
|
struct powerpc_vpadtl *vpa;
|
|
int err;
|
|
|
|
if (auxtrace_info->header.size < sizeof(struct perf_record_auxtrace_info) +
|
|
min_sz)
|
|
return -EINVAL;
|
|
|
|
vpa = zalloc(sizeof(struct powerpc_vpadtl));
|
|
if (!vpa)
|
|
return -ENOMEM;
|
|
|
|
err = auxtrace_queues__init(&vpa->queues);
|
|
if (err)
|
|
goto err_free;
|
|
|
|
vpa->session = session;
|
|
vpa->machine = &session->machines.host; /* No kvm support */
|
|
vpa->auxtrace_type = auxtrace_info->type;
|
|
vpa->pmu_type = auxtrace_info->priv[POWERPC_VPADTL_TYPE];
|
|
|
|
vpa->auxtrace.process_event = powerpc_vpadtl_process_event;
|
|
vpa->auxtrace.process_auxtrace_event = powerpc_vpadtl_process_auxtrace_event;
|
|
vpa->auxtrace.flush_events = powerpc_vpadtl_flush;
|
|
vpa->auxtrace.free_events = powerpc_vpadtl_free_events;
|
|
vpa->auxtrace.free = powerpc_vpadtl_free;
|
|
session->auxtrace = &vpa->auxtrace;
|
|
|
|
powerpc_vpadtl_print_info(&auxtrace_info->priv[0]);
|
|
|
|
if (dump_trace)
|
|
return 0;
|
|
|
|
err = powerpc_vpadtl_synth_events(vpa, session);
|
|
if (err)
|
|
goto err_free_queues;
|
|
|
|
err = auxtrace_queues__process_index(&vpa->queues, session);
|
|
if (err)
|
|
goto err_free_queues;
|
|
|
|
return 0;
|
|
|
|
err_free_queues:
|
|
auxtrace_queues__free(&vpa->queues);
|
|
session->auxtrace = NULL;
|
|
|
|
err_free:
|
|
free(vpa);
|
|
return err;
|
|
}
|