session.c 67.1 KB
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// SPDX-License-Identifier: GPL-2.0
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#include <errno.h>
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#include <inttypes.h>
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#include <linux/err.h>
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#include <linux/kernel.h>
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#include <linux/zalloc.h>
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#include <api/fs/fs.h>
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#include <byteswap.h>
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#include <unistd.h>
#include <sys/types.h>
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#include <sys/mman.h>
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#include <perf/cpumap.h>
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#include "map_symbol.h"
#include "branch.h"
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#include "debug.h"
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#include "evlist.h"
#include "evsel.h"
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#include "memswap.h"
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#include "map.h"
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#include "symbol.h"
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#include "session.h"
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#include "tool.h"
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#include "perf_regs.h"
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#include "asm/bug.h"
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#include "auxtrace.h"
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#include "thread.h"
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#include "thread-stack.h"
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#include "sample-raw.h"
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#include "stat.h"
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#include "ui/progress.h"
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#include "../perf.h"
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#include "arch/common.h"
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#include <internal/lib.h>
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#ifdef HAVE_ZSTD_SUPPORT
static int perf_session__process_compressed_event(struct perf_session *session,
						  union perf_event *event, u64 file_offset)
{
	void *src;
	size_t decomp_size, src_size;
	u64 decomp_last_rem = 0;
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	size_t mmap_len, decomp_len = session->header.env.comp_mmap_len;
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	struct decomp *decomp, *decomp_last = session->decomp_last;

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	if (decomp_last) {
		decomp_last_rem = decomp_last->size - decomp_last->head;
		decomp_len += decomp_last_rem;
	}

	mmap_len = sizeof(struct decomp) + decomp_len;
	decomp = mmap(NULL, mmap_len, PROT_READ|PROT_WRITE,
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		      MAP_ANONYMOUS|MAP_PRIVATE, -1, 0);
	if (decomp == MAP_FAILED) {
		pr_err("Couldn't allocate memory for decompression\n");
		return -1;
	}

	decomp->file_pos = file_offset;
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	decomp->mmap_len = mmap_len;
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	decomp->head = 0;

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	if (decomp_last_rem) {
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		memcpy(decomp->data, &(decomp_last->data[decomp_last->head]), decomp_last_rem);
		decomp->size = decomp_last_rem;
	}

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	src = (void *)event + sizeof(struct perf_record_compressed);
	src_size = event->pack.header.size - sizeof(struct perf_record_compressed);
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	decomp_size = zstd_decompress_stream(&(session->zstd_data), src, src_size,
				&(decomp->data[decomp_last_rem]), decomp_len - decomp_last_rem);
	if (!decomp_size) {
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		munmap(decomp, mmap_len);
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		pr_err("Couldn't decompress data\n");
		return -1;
	}

	decomp->size += decomp_size;

	if (session->decomp == NULL) {
		session->decomp = decomp;
		session->decomp_last = decomp;
	} else {
		session->decomp_last->next = decomp;
		session->decomp_last = decomp;
	}

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	pr_debug("decomp (B): %zd to %zd\n", src_size, decomp_size);
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	return 0;
}
#else /* !HAVE_ZSTD_SUPPORT */
#define perf_session__process_compressed_event perf_session__process_compressed_event_stub
#endif

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static int perf_session__deliver_event(struct perf_session *session,
				       union perf_event *event,
				       struct perf_tool *tool,
				       u64 file_offset);
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static int perf_session__open(struct perf_session *session)
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{
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	struct perf_data *data = session->data;
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	if (perf_session__read_header(session) < 0) {
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		pr_err("incompatible file format (rerun with -v to learn more)\n");
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		return -1;
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	}

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	if (perf_data__is_pipe(data))
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		return 0;

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	if (perf_header__has_feat(&session->header, HEADER_STAT))
		return 0;

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	if (!evlist__valid_sample_type(session->evlist)) {
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		pr_err("non matching sample_type\n");
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		return -1;
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	}

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	if (!evlist__valid_sample_id_all(session->evlist)) {
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		pr_err("non matching sample_id_all\n");
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		return -1;
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	}

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	if (!perf_evlist__valid_read_format(session->evlist)) {
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		pr_err("non matching read_format\n");
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		return -1;
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	}

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	return 0;
}

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void perf_session__set_id_hdr_size(struct perf_session *session)
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{
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	u16 id_hdr_size = perf_evlist__id_hdr_size(session->evlist);

	machines__set_id_hdr_size(&session->machines, id_hdr_size);
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}

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int perf_session__create_kernel_maps(struct perf_session *session)
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{
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	int ret = machine__create_kernel_maps(&session->machines.host);
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	if (ret >= 0)
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		ret = machines__create_guest_kernel_maps(&session->machines);
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	return ret;
}

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static void perf_session__destroy_kernel_maps(struct perf_session *session)
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{
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	machines__destroy_kernel_maps(&session->machines);
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}

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static bool perf_session__has_comm_exec(struct perf_session *session)
{
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	struct evsel *evsel;
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	evlist__for_each_entry(session->evlist, evsel) {
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		if (evsel->core.attr.comm_exec)
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			return true;
	}

	return false;
}

static void perf_session__set_comm_exec(struct perf_session *session)
{
	bool comm_exec = perf_session__has_comm_exec(session);

	machines__set_comm_exec(&session->machines, comm_exec);
}

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static int ordered_events__deliver_event(struct ordered_events *oe,
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					 struct ordered_event *event)
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{
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	struct perf_session *session = container_of(oe, struct perf_session,
						    ordered_events);

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	return perf_session__deliver_event(session, event->event,
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					   session->tool, event->file_offset);
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}

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struct perf_session *perf_session__new(struct perf_data *data,
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				       bool repipe, struct perf_tool *tool)
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{
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	int ret = -ENOMEM;
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	struct perf_session *session = zalloc(sizeof(*session));
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	if (!session)
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		goto out;

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	session->repipe = repipe;
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	session->tool   = tool;
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	INIT_LIST_HEAD(&session->auxtrace_index);
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	machines__init(&session->machines);
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	ordered_events__init(&session->ordered_events,
			     ordered_events__deliver_event, NULL);
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	perf_env__init(&session->header.env);
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	if (data) {
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		ret = perf_data__open(data);
		if (ret < 0)
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			goto out_delete;
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		session->data = data;
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		if (perf_data__is_read(data)) {
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			ret = perf_session__open(session);
			if (ret < 0)
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				goto out_delete;
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			/*
			 * set session attributes that are present in perf.data
			 * but not in pipe-mode.
			 */
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			if (!data->is_pipe) {
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				perf_session__set_id_hdr_size(session);
				perf_session__set_comm_exec(session);
			}
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			perf_evlist__init_trace_event_sample_raw(session->evlist);
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			/* Open the directory data. */
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			if (data->is_dir) {
				ret = perf_data__open_dir(data);
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				if (ret)
					goto out_delete;
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			}
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			if (!symbol_conf.kallsyms_name &&
			    !symbol_conf.vmlinux_name)
				symbol_conf.kallsyms_name = perf_data__kallsyms_name(data);
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		}
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	} else  {
		session->machines.host.env = &perf_env;
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	}

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	session->machines.host.single_address_space =
		perf_env__single_address_space(session->machines.host.env);

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	if (!data || perf_data__is_write(data)) {
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		/*
		 * In O_RDONLY mode this will be performed when reading the
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		 * kernel MMAP event, in perf_event__process_mmap().
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		 */
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		if (perf_session__create_kernel_maps(session) < 0)
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			pr_warning("Cannot read kernel map\n");
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	}
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	/*
	 * In pipe-mode, evlist is empty until PERF_RECORD_HEADER_ATTR is
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	 * processed, so evlist__sample_id_all is not meaningful here.
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	 */
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	if ((!data || !data->is_pipe) && tool && tool->ordering_requires_timestamps &&
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	    tool->ordered_events && !evlist__sample_id_all(session->evlist)) {
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		dump_printf("WARNING: No sample_id_all support, falling back to unordered processing\n");
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		tool->ordered_events = false;
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	}
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	return session;
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 out_delete:
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	perf_session__delete(session);
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 out:
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	return ERR_PTR(ret);
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}

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static void perf_session__delete_threads(struct perf_session *session)
{
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	machine__delete_threads(&session->machines.host);
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}

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static void perf_session__release_decomp_events(struct perf_session *session)
{
	struct decomp *next, *decomp;
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	size_t mmap_len;
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	next = session->decomp;
	do {
		decomp = next;
		if (decomp == NULL)
			break;
		next = decomp->next;
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		mmap_len = decomp->mmap_len;
		munmap(decomp, mmap_len);
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	} while (1);
}

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void perf_session__delete(struct perf_session *session)
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{
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	if (session == NULL)
		return;
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	auxtrace__free(session);
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	auxtrace_index__free(&session->auxtrace_index);
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	perf_session__destroy_kernel_maps(session);
	perf_session__delete_threads(session);
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	perf_session__release_decomp_events(session);
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	perf_env__exit(&session->header.env);
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	machines__exit(&session->machines);
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	if (session->data)
		perf_data__close(session->data);
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	free(session);
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}
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static int process_event_synth_tracing_data_stub(struct perf_session *session
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						 __maybe_unused,
						 union perf_event *event
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						 __maybe_unused)
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{
	dump_printf(": unhandled!\n");
	return 0;
}

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static int process_event_synth_attr_stub(struct perf_tool *tool __maybe_unused,
					 union perf_event *event __maybe_unused,
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					 struct evlist **pevlist
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					 __maybe_unused)
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{
	dump_printf(": unhandled!\n");
	return 0;
}

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static int process_event_synth_event_update_stub(struct perf_tool *tool __maybe_unused,
						 union perf_event *event __maybe_unused,
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						 struct evlist **pevlist
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						 __maybe_unused)
{
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	if (dump_trace)
		perf_event__fprintf_event_update(event, stdout);

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	dump_printf(": unhandled!\n");
	return 0;
}

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static int process_event_sample_stub(struct perf_tool *tool __maybe_unused,
				     union perf_event *event __maybe_unused,
				     struct perf_sample *sample __maybe_unused,
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				     struct evsel *evsel __maybe_unused,
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				     struct machine *machine __maybe_unused)
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{
	dump_printf(": unhandled!\n");
	return 0;
}

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static int process_event_stub(struct perf_tool *tool __maybe_unused,
			      union perf_event *event __maybe_unused,
			      struct perf_sample *sample __maybe_unused,
			      struct machine *machine __maybe_unused)
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{
	dump_printf(": unhandled!\n");
	return 0;
}

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static int process_finished_round_stub(struct perf_tool *tool __maybe_unused,
				       union perf_event *event __maybe_unused,
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				       struct ordered_events *oe __maybe_unused)
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{
	dump_printf(": unhandled!\n");
	return 0;
}

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static int process_finished_round(struct perf_tool *tool,
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				  union perf_event *event,
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				  struct ordered_events *oe);
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static int skipn(int fd, off_t n)
{
	char buf[4096];
	ssize_t ret;

	while (n > 0) {
		ret = read(fd, buf, min(n, (off_t)sizeof(buf)));
		if (ret <= 0)
			return ret;
		n -= ret;
	}

	return 0;
}

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static s64 process_event_auxtrace_stub(struct perf_session *session __maybe_unused,
				       union perf_event *event)
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{
	dump_printf(": unhandled!\n");
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	if (perf_data__is_pipe(session->data))
		skipn(perf_data__fd(session->data), event->auxtrace.size);
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	return event->auxtrace.size;
}

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static int process_event_op2_stub(struct perf_session *session __maybe_unused,
				  union perf_event *event __maybe_unused)
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{
	dump_printf(": unhandled!\n");
	return 0;
}

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static
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int process_event_thread_map_stub(struct perf_session *session __maybe_unused,
				  union perf_event *event __maybe_unused)
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{
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	if (dump_trace)
		perf_event__fprintf_thread_map(event, stdout);

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	dump_printf(": unhandled!\n");
	return 0;
}

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static
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int process_event_cpu_map_stub(struct perf_session *session __maybe_unused,
			       union perf_event *event __maybe_unused)
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{
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	if (dump_trace)
		perf_event__fprintf_cpu_map(event, stdout);

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	dump_printf(": unhandled!\n");
	return 0;
}

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static
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int process_event_stat_config_stub(struct perf_session *session __maybe_unused,
				   union perf_event *event __maybe_unused)
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{
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	if (dump_trace)
		perf_event__fprintf_stat_config(event, stdout);

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	dump_printf(": unhandled!\n");
	return 0;
}

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static int process_stat_stub(struct perf_session *perf_session __maybe_unused,
			     union perf_event *event)
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{
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	if (dump_trace)
		perf_event__fprintf_stat(event, stdout);

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	dump_printf(": unhandled!\n");
	return 0;
}

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static int process_stat_round_stub(struct perf_session *perf_session __maybe_unused,
				   union perf_event *event)
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{
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	if (dump_trace)
		perf_event__fprintf_stat_round(event, stdout);

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	dump_printf(": unhandled!\n");
	return 0;
}

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static int perf_session__process_compressed_event_stub(struct perf_session *session __maybe_unused,
						       union perf_event *event __maybe_unused,
						       u64 file_offset __maybe_unused)
{
       dump_printf(": unhandled!\n");
       return 0;
}

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void perf_tool__fill_defaults(struct perf_tool *tool)
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{
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	if (tool->sample == NULL)
		tool->sample = process_event_sample_stub;
	if (tool->mmap == NULL)
		tool->mmap = process_event_stub;
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	if (tool->mmap2 == NULL)
		tool->mmap2 = process_event_stub;
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	if (tool->comm == NULL)
		tool->comm = process_event_stub;
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	if (tool->namespaces == NULL)
		tool->namespaces = process_event_stub;
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	if (tool->cgroup == NULL)
		tool->cgroup = process_event_stub;
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	if (tool->fork == NULL)
		tool->fork = process_event_stub;
	if (tool->exit == NULL)
		tool->exit = process_event_stub;
	if (tool->lost == NULL)
		tool->lost = perf_event__process_lost;
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	if (tool->lost_samples == NULL)
		tool->lost_samples = perf_event__process_lost_samples;
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	if (tool->aux == NULL)
		tool->aux = perf_event__process_aux;
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	if (tool->itrace_start == NULL)
		tool->itrace_start = perf_event__process_itrace_start;
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	if (tool->context_switch == NULL)
		tool->context_switch = perf_event__process_switch;
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	if (tool->ksymbol == NULL)
		tool->ksymbol = perf_event__process_ksymbol;
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	if (tool->bpf == NULL)
		tool->bpf = perf_event__process_bpf;
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	if (tool->text_poke == NULL)
		tool->text_poke = perf_event__process_text_poke;
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	if (tool->read == NULL)
		tool->read = process_event_sample_stub;
	if (tool->throttle == NULL)
		tool->throttle = process_event_stub;
	if (tool->unthrottle == NULL)
		tool->unthrottle = process_event_stub;
	if (tool->attr == NULL)
		tool->attr = process_event_synth_attr_stub;
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	if (tool->event_update == NULL)
		tool->event_update = process_event_synth_event_update_stub;
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	if (tool->tracing_data == NULL)
		tool->tracing_data = process_event_synth_tracing_data_stub;
	if (tool->build_id == NULL)
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		tool->build_id = process_event_op2_stub;
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	if (tool->finished_round == NULL) {
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		if (tool->ordered_events)
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			tool->finished_round = process_finished_round;
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		else
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			tool->finished_round = process_finished_round_stub;
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	}
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	if (tool->id_index == NULL)
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		tool->id_index = process_event_op2_stub;
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	if (tool->auxtrace_info == NULL)
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		tool->auxtrace_info = process_event_op2_stub;
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	if (tool->auxtrace == NULL)
		tool->auxtrace = process_event_auxtrace_stub;
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	if (tool->auxtrace_error == NULL)
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		tool->auxtrace_error = process_event_op2_stub;
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	if (tool->thread_map == NULL)
		tool->thread_map = process_event_thread_map_stub;
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	if (tool->cpu_map == NULL)
		tool->cpu_map = process_event_cpu_map_stub;
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	if (tool->stat_config == NULL)
		tool->stat_config = process_event_stat_config_stub;
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	if (tool->stat == NULL)
		tool->stat = process_stat_stub;
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	if (tool->stat_round == NULL)
		tool->stat_round = process_stat_round_stub;
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	if (tool->time_conv == NULL)
		tool->time_conv = process_event_op2_stub;
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	if (tool->feature == NULL)
		tool->feature = process_event_op2_stub;
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	if (tool->compressed == NULL)
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		tool->compressed = perf_session__process_compressed_event;
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}
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static void swap_sample_id_all(union perf_event *event, void *data)
{
	void *end = (void *) event + event->header.size;
	int size = end - data;

	BUG_ON(size % sizeof(u64));
	mem_bswap_64(data, size);
}

static void perf_event__all64_swap(union perf_event *event,
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				   bool sample_id_all __maybe_unused)
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{
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	struct perf_event_header *hdr = &event->header;
	mem_bswap_64(hdr + 1, event->header.size - sizeof(*hdr));
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}

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static void perf_event__comm_swap(union perf_event *event, bool sample_id_all)
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{
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	event->comm.pid = bswap_32(event->comm.pid);
	event->comm.tid = bswap_32(event->comm.tid);
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	if (sample_id_all) {
		void *data = &event->comm.comm;

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		data += PERF_ALIGN(strlen(data) + 1, sizeof(u64));
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		swap_sample_id_all(event, data);
	}
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}

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static void perf_event__mmap_swap(union perf_event *event,
				  bool sample_id_all)
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{
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	event->mmap.pid	  = bswap_32(event->mmap.pid);
	event->mmap.tid	  = bswap_32(event->mmap.tid);
	event->mmap.start = bswap_64(event->mmap.start);
	event->mmap.len	  = bswap_64(event->mmap.len);
	event->mmap.pgoff = bswap_64(event->mmap.pgoff);
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	if (sample_id_all) {
		void *data = &event->mmap.filename;

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		data += PERF_ALIGN(strlen(data) + 1, sizeof(u64));
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		swap_sample_id_all(event, data);
	}
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}

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static void perf_event__mmap2_swap(union perf_event *event,
				  bool sample_id_all)
{
	event->mmap2.pid   = bswap_32(event->mmap2.pid);
	event->mmap2.tid   = bswap_32(event->mmap2.tid);
	event->mmap2.start = bswap_64(event->mmap2.start);
	event->mmap2.len   = bswap_64(event->mmap2.len);
	event->mmap2.pgoff = bswap_64(event->mmap2.pgoff);
	event->mmap2.maj   = bswap_32(event->mmap2.maj);
	event->mmap2.min   = bswap_32(event->mmap2.min);
	event->mmap2.ino   = bswap_64(event->mmap2.ino);
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	event->mmap2.ino_generation = bswap_64(event->mmap2.ino_generation);
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	if (sample_id_all) {
		void *data = &event->mmap2.filename;

		data += PERF_ALIGN(strlen(data) + 1, sizeof(u64));
		swap_sample_id_all(event, data);
	}
}
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static void perf_event__task_swap(union perf_event *event, bool sample_id_all)
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{
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	event->fork.pid	 = bswap_32(event->fork.pid);
	event->fork.tid	 = bswap_32(event->fork.tid);
	event->fork.ppid = bswap_32(event->fork.ppid);
	event->fork.ptid = bswap_32(event->fork.ptid);
	event->fork.time = bswap_64(event->fork.time);
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	if (sample_id_all)
		swap_sample_id_all(event, &event->fork + 1);
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}

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static void perf_event__read_swap(union perf_event *event, bool sample_id_all)
620
{
621 622 623 624 625 626
	event->read.pid		 = bswap_32(event->read.pid);
	event->read.tid		 = bswap_32(event->read.tid);
	event->read.value	 = bswap_64(event->read.value);
	event->read.time_enabled = bswap_64(event->read.time_enabled);
	event->read.time_running = bswap_64(event->read.time_running);
	event->read.id		 = bswap_64(event->read.id);
627 628 629

	if (sample_id_all)
		swap_sample_id_all(event, &event->read + 1);
630 631
}

632 633 634 635 636 637 638 639 640 641
static void perf_event__aux_swap(union perf_event *event, bool sample_id_all)
{
	event->aux.aux_offset = bswap_64(event->aux.aux_offset);
	event->aux.aux_size   = bswap_64(event->aux.aux_size);
	event->aux.flags      = bswap_64(event->aux.flags);

	if (sample_id_all)
		swap_sample_id_all(event, &event->aux + 1);
}

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static void perf_event__itrace_start_swap(union perf_event *event,
					  bool sample_id_all)
{
	event->itrace_start.pid	 = bswap_32(event->itrace_start.pid);
	event->itrace_start.tid	 = bswap_32(event->itrace_start.tid);

	if (sample_id_all)
		swap_sample_id_all(event, &event->itrace_start + 1);
}

652 653 654 655 656 657 658 659 660 661 662 663 664
static void perf_event__switch_swap(union perf_event *event, bool sample_id_all)
{
	if (event->header.type == PERF_RECORD_SWITCH_CPU_WIDE) {
		event->context_switch.next_prev_pid =
				bswap_32(event->context_switch.next_prev_pid);
		event->context_switch.next_prev_tid =
				bswap_32(event->context_switch.next_prev_tid);
	}

	if (sample_id_all)
		swap_sample_id_all(event, &event->context_switch + 1);
}

665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682
static void perf_event__text_poke_swap(union perf_event *event, bool sample_id_all)
{
	event->text_poke.addr    = bswap_64(event->text_poke.addr);
	event->text_poke.old_len = bswap_16(event->text_poke.old_len);
	event->text_poke.new_len = bswap_16(event->text_poke.new_len);

	if (sample_id_all) {
		size_t len = sizeof(event->text_poke.old_len) +
			     sizeof(event->text_poke.new_len) +
			     event->text_poke.old_len +
			     event->text_poke.new_len;
		void *data = &event->text_poke.old_len;

		data += PERF_ALIGN(len, sizeof(u64));
		swap_sample_id_all(event, data);
	}
}

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static void perf_event__throttle_swap(union perf_event *event,
				      bool sample_id_all)
{
	event->throttle.time	  = bswap_64(event->throttle.time);
	event->throttle.id	  = bswap_64(event->throttle.id);
	event->throttle.stream_id = bswap_64(event->throttle.stream_id);

	if (sample_id_all)
		swap_sample_id_all(event, &event->throttle + 1);
}

694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713
static void perf_event__namespaces_swap(union perf_event *event,
					bool sample_id_all)
{
	u64 i;

	event->namespaces.pid		= bswap_32(event->namespaces.pid);
	event->namespaces.tid		= bswap_32(event->namespaces.tid);
	event->namespaces.nr_namespaces	= bswap_64(event->namespaces.nr_namespaces);

	for (i = 0; i < event->namespaces.nr_namespaces; i++) {
		struct perf_ns_link_info *ns = &event->namespaces.link_info[i];

		ns->dev = bswap_64(ns->dev);
		ns->ino = bswap_64(ns->ino);
	}

	if (sample_id_all)
		swap_sample_id_all(event, &event->namespaces.link_info[i]);
}

714 715 716 717 718 719 720 721 722 723
static u8 revbyte(u8 b)
{
	int rev = (b >> 4) | ((b & 0xf) << 4);
	rev = ((rev & 0xcc) >> 2) | ((rev & 0x33) << 2);
	rev = ((rev & 0xaa) >> 1) | ((rev & 0x55) << 1);
	return (u8) rev;
}

/*
 * XXX this is hack in attempt to carry flags bitfield
724
 * through endian village. ABI says:
725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745
 *
 * Bit-fields are allocated from right to left (least to most significant)
 * on little-endian implementations and from left to right (most to least
 * significant) on big-endian implementations.
 *
 * The above seems to be byte specific, so we need to reverse each
 * byte of the bitfield. 'Internet' also says this might be implementation
 * specific and we probably need proper fix and carry perf_event_attr
 * bitfield flags in separate data file FEAT_ section. Thought this seems
 * to work for now.
 */
static void swap_bitfield(u8 *p, unsigned len)
{
	unsigned i;

	for (i = 0; i < len; i++) {
		*p = revbyte(*p);
		p++;
	}
}

746 747 748 749 750
/* exported for swapping attributes in file header */
void perf_event__attr_swap(struct perf_event_attr *attr)
{
	attr->type		= bswap_32(attr->type);
	attr->size		= bswap_32(attr->size);
751 752 753 754 755 756 757 758 759

#define bswap_safe(f, n) 					\
	(attr->size > (offsetof(struct perf_event_attr, f) + 	\
		       sizeof(attr->f) * (n)))
#define bswap_field(f, sz) 			\
do { 						\
	if (bswap_safe(f, 0))			\
		attr->f = bswap_##sz(attr->f);	\
} while(0)
760
#define bswap_field_16(f) bswap_field(f, 16)
761 762 763 764 765 766 767 768 769 770 771 772 773 774 775
#define bswap_field_32(f) bswap_field(f, 32)
#define bswap_field_64(f) bswap_field(f, 64)

	bswap_field_64(config);
	bswap_field_64(sample_period);
	bswap_field_64(sample_type);
	bswap_field_64(read_format);
	bswap_field_32(wakeup_events);
	bswap_field_32(bp_type);
	bswap_field_64(bp_addr);
	bswap_field_64(bp_len);
	bswap_field_64(branch_sample_type);
	bswap_field_64(sample_regs_user);
	bswap_field_32(sample_stack_user);
	bswap_field_32(aux_watermark);
776
	bswap_field_16(sample_max_stack);
777
	bswap_field_32(aux_sample_size);
778 779 780 781 782 783 784 785 786 787 788 789

	/*
	 * After read_format are bitfields. Check read_format because
	 * we are unable to use offsetof on bitfield.
	 */
	if (bswap_safe(read_format, 1))
		swap_bitfield((u8 *) (&attr->read_format + 1),
			      sizeof(u64));
#undef bswap_field_64
#undef bswap_field_32
#undef bswap_field
#undef bswap_safe
790 791
}

792
static void perf_event__hdr_attr_swap(union perf_event *event,
793
				      bool sample_id_all __maybe_unused)
794 795 796
{
	size_t size;

797
	perf_event__attr_swap(&event->attr.attr);
798

799 800 801
	size = event->header.size;
	size -= (void *)&event->attr.id - (void *)event;
	mem_bswap_64(event->attr.id, size);
802 803
}

804 805 806 807 808 809 810
static void perf_event__event_update_swap(union perf_event *event,
					  bool sample_id_all __maybe_unused)
{
	event->event_update.type = bswap_64(event->event_update.type);
	event->event_update.id   = bswap_64(event->event_update.id);
}

811
static void perf_event__event_type_swap(union perf_event *event,
812
					bool sample_id_all __maybe_unused)
813
{
814 815
	event->event_type.event_type.event_id =
		bswap_64(event->event_type.event_type.event_id);
816 817
}

818
static void perf_event__tracing_data_swap(union perf_event *event,
819
					  bool sample_id_all __maybe_unused)
820
{
821
	event->tracing_data.size = bswap_32(event->tracing_data.size);
822 823
}

824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846
static void perf_event__auxtrace_info_swap(union perf_event *event,
					   bool sample_id_all __maybe_unused)
{
	size_t size;

	event->auxtrace_info.type = bswap_32(event->auxtrace_info.type);

	size = event->header.size;
	size -= (void *)&event->auxtrace_info.priv - (void *)event;
	mem_bswap_64(event->auxtrace_info.priv, size);
}

static void perf_event__auxtrace_swap(union perf_event *event,
				      bool sample_id_all __maybe_unused)
{
	event->auxtrace.size      = bswap_64(event->auxtrace.size);
	event->auxtrace.offset    = bswap_64(event->auxtrace.offset);
	event->auxtrace.reference = bswap_64(event->auxtrace.reference);
	event->auxtrace.idx       = bswap_32(event->auxtrace.idx);
	event->auxtrace.tid       = bswap_32(event->auxtrace.tid);
	event->auxtrace.cpu       = bswap_32(event->auxtrace.cpu);
}

847 848 849 850 851 852 853 854
static void perf_event__auxtrace_error_swap(union perf_event *event,
					    bool sample_id_all __maybe_unused)
{
	event->auxtrace_error.type = bswap_32(event->auxtrace_error.type);
	event->auxtrace_error.code = bswap_32(event->auxtrace_error.code);
	event->auxtrace_error.cpu  = bswap_32(event->auxtrace_error.cpu);
	event->auxtrace_error.pid  = bswap_32(event->auxtrace_error.pid);
	event->auxtrace_error.tid  = bswap_32(event->auxtrace_error.tid);
855
	event->auxtrace_error.fmt  = bswap_32(event->auxtrace_error.fmt);
856
	event->auxtrace_error.ip   = bswap_64(event->auxtrace_error.ip);
857 858
	if (event->auxtrace_error.fmt)
		event->auxtrace_error.time = bswap_64(event->auxtrace_error.time);
859 860
}

861 862 863 864 865 866 867 868 869 870 871
static void perf_event__thread_map_swap(union perf_event *event,
					bool sample_id_all __maybe_unused)
{
	unsigned i;

	event->thread_map.nr = bswap_64(event->thread_map.nr);

	for (i = 0; i < event->thread_map.nr; i++)
		event->thread_map.entries[i].pid = bswap_64(event->thread_map.entries[i].pid);
}

872 873 874
static void perf_event__cpu_map_swap(union perf_event *event,
				     bool sample_id_all __maybe_unused)
{
875
	struct perf_record_cpu_map_data *data = &event->cpu_map.data;
876
	struct cpu_map_entries *cpus;
877
	struct perf_record_record_cpu_map *mask;
878 879 880 881 882 883 884 885 886 887 888 889 890 891
	unsigned i;

	data->type = bswap_64(data->type);

	switch (data->type) {
	case PERF_CPU_MAP__CPUS:
		cpus = (struct cpu_map_entries *)data->data;

		cpus->nr = bswap_16(cpus->nr);

		for (i = 0; i < cpus->nr; i++)
			cpus->cpu[i] = bswap_16(cpus->cpu[i]);
		break;
	case PERF_CPU_MAP__MASK:
892
		mask = (struct perf_record_record_cpu_map *)data->data;
893 894 895 896 897 898 899 900 901 902 903 904 905 906 907

		mask->nr = bswap_16(mask->nr);
		mask->long_size = bswap_16(mask->long_size);

		switch (mask->long_size) {
		case 4: mem_bswap_32(&mask->mask, mask->nr); break;
		case 8: mem_bswap_64(&mask->mask, mask->nr); break;
		default:
			pr_err("cpu_map swap: unsupported long size\n");
		}
	default:
		break;
	}
}

908 909 910 911 912 913 914 915 916 917
static void perf_event__stat_config_swap(union perf_event *event,
					 bool sample_id_all __maybe_unused)
{
	u64 size;

	size  = event->stat_config.nr * sizeof(event->stat_config.data[0]);
	size += 1; /* nr item itself */
	mem_bswap_64(&event->stat_config.nr, size);
}

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static void perf_event__stat_swap(union perf_event *event,
				  bool sample_id_all __maybe_unused)
{
	event->stat.id     = bswap_64(event->stat.id);
	event->stat.thread = bswap_32(event->stat.thread);
	event->stat.cpu    = bswap_32(event->stat.cpu);
	event->stat.val    = bswap_64(event->stat.val);
	event->stat.ena    = bswap_64(event->stat.ena);
	event->stat.run    = bswap_64(event->stat.run);
}

929 930 931 932 933 934 935
static void perf_event__stat_round_swap(union perf_event *event,
					bool sample_id_all __maybe_unused)
{
	event->stat_round.type = bswap_64(event->stat_round.type);
	event->stat_round.time = bswap_64(event->stat_round.time);
}

936 937
typedef void (*perf_event__swap_op)(union perf_event *event,
				    bool sample_id_all);
938

939 940
static perf_event__swap_op perf_event__swap_ops[] = {
	[PERF_RECORD_MMAP]		  = perf_event__mmap_swap,
941
	[PERF_RECORD_MMAP2]		  = perf_event__mmap2_swap,
942 943 944 945 946
	[PERF_RECORD_COMM]		  = perf_event__comm_swap,
	[PERF_RECORD_FORK]		  = perf_event__task_swap,
	[PERF_RECORD_EXIT]		  = perf_event__task_swap,
	[PERF_RECORD_LOST]		  = perf_event__all64_swap,
	[PERF_RECORD_READ]		  = perf_event__read_swap,
947 948
	[PERF_RECORD_THROTTLE]		  = perf_event__throttle_swap,
	[PERF_RECORD_UNTHROTTLE]	  = perf_event__throttle_swap,
949
	[PERF_RECORD_SAMPLE]		  = perf_event__all64_swap,
950
	[PERF_RECORD_AUX]		  = perf_event__aux_swap,
951
	[PERF_RECORD_ITRACE_START]	  = perf_event__itrace_start_swap,
952
	[PERF_RECORD_LOST_SAMPLES]	  = perf_event__all64_swap,
953 954
	[PERF_RECORD_SWITCH]		  = perf_event__switch_swap,
	[PERF_RECORD_SWITCH_CPU_WIDE]	  = perf_event__switch_swap,
955
	[PERF_RECORD_NAMESPACES]	  = perf_event__namespaces_swap,
956
	[PERF_RECORD_TEXT_POKE]		  = perf_event__text_poke_swap,
957
	[PERF_RECORD_HEADER_ATTR]	  = perf_event__hdr_attr_swap,
958 959 960
	[PERF_RECORD_HEADER_EVENT_TYPE]	  = perf_event__event_type_swap,
	[PERF_RECORD_HEADER_TRACING_DATA] = perf_event__tracing_data_swap,
	[PERF_RECORD_HEADER_BUILD_ID]	  = NULL,
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	[PERF_RECORD_ID_INDEX]		  = perf_event__all64_swap,
962 963
	[PERF_RECORD_AUXTRACE_INFO]	  = perf_event__auxtrace_info_swap,
	[PERF_RECORD_AUXTRACE]		  = perf_event__auxtrace_swap,
964
	[PERF_RECORD_AUXTRACE_ERROR]	  = perf_event__auxtrace_error_swap,
965
	[PERF_RECORD_THREAD_MAP]	  = perf_event__thread_map_swap,
966
	[PERF_RECORD_CPU_MAP]		  = perf_event__cpu_map_swap,
967
	[PERF_RECORD_STAT_CONFIG]	  = perf_event__stat_config_swap,
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	[PERF_RECORD_STAT]		  = perf_event__stat_swap,
969
	[PERF_RECORD_STAT_ROUND]	  = perf_event__stat_round_swap,
970
	[PERF_RECORD_EVENT_UPDATE]	  = perf_event__event_update_swap,
971
	[PERF_RECORD_TIME_CONV]		  = perf_event__all64_swap,
972
	[PERF_RECORD_HEADER_MAX]	  = NULL,
973 974
};

975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013
/*
 * When perf record finishes a pass on every buffers, it records this pseudo
 * event.
 * We record the max timestamp t found in the pass n.
 * Assuming these timestamps are monotonic across cpus, we know that if
 * a buffer still has events with timestamps below t, they will be all
 * available and then read in the pass n + 1.
 * Hence when we start to read the pass n + 2, we can safely flush every
 * events with timestamps below t.
 *
 *    ============ PASS n =================
 *       CPU 0         |   CPU 1
 *                     |
 *    cnt1 timestamps  |   cnt2 timestamps
 *          1          |         2
 *          2          |         3
 *          -          |         4  <--- max recorded
 *
 *    ============ PASS n + 1 ==============
 *       CPU 0         |   CPU 1
 *                     |
 *    cnt1 timestamps  |   cnt2 timestamps
 *          3          |         5
 *          4          |         6
 *          5          |         7 <---- max recorded
 *
 *      Flush every events below timestamp 4
 *
 *    ============ PASS n + 2 ==============
 *       CPU 0         |   CPU 1
 *                     |
 *    cnt1 timestamps  |   cnt2 timestamps
 *          6          |         8
 *          7          |         9
 *          -          |         10
 *
 *      Flush every events below timestamp 7
 *      etc...
 */
1014
static int process_finished_round(struct perf_tool *tool __maybe_unused,
1015
				  union perf_event *event __maybe_unused,
1016
				  struct ordered_events *oe)
1017
{
1018 1019
	if (dump_trace)
		fprintf(stdout, "\n");
1020
	return ordered_events__flush(oe, OE_FLUSH__ROUND);
1021 1022
}

1023
int perf_session__queue_event(struct perf_session *s, union perf_event *event,
1024
			      u64 timestamp, u64 file_offset)
1025
{
1026
	return ordered_events__queue(&s->ordered_events, event, timestamp, file_offset);
1027
}
1028

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static void callchain__lbr_callstack_printf(struct perf_sample *sample)
1030
{
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1031 1032
	struct ip_callchain *callchain = sample->callchain;
	struct branch_stack *lbr_stack = sample->branch_stack;
1033
	struct branch_entry *entries = perf_sample__branch_entries(sample);
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1034
	u64 kernel_callchain_nr = callchain->nr;
1035
	unsigned int i;
1036

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1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069
	for (i = 0; i < kernel_callchain_nr; i++) {
		if (callchain->ips[i] == PERF_CONTEXT_USER)
			break;
	}

	if ((i != kernel_callchain_nr) && lbr_stack->nr) {
		u64 total_nr;
		/*
		 * LBR callstack can only get user call chain,
		 * i is kernel call chain number,
		 * 1 is PERF_CONTEXT_USER.
		 *
		 * The user call chain is stored in LBR registers.
		 * LBR are pair registers. The caller is stored
		 * in "from" register, while the callee is stored
		 * in "to" register.
		 * For example, there is a call stack
		 * "A"->"B"->"C"->"D".
		 * The LBR registers will recorde like
		 * "C"->"D", "B"->"C", "A"->"B".
		 * So only the first "to" register and all "from"
		 * registers are needed to construct the whole stack.
		 */
		total_nr = i + 1 + lbr_stack->nr + 1;
		kernel_callchain_nr = i + 1;

		printf("... LBR call chain: nr:%" PRIu64 "\n", total_nr);

		for (i = 0; i < kernel_callchain_nr; i++)
			printf("..... %2d: %016" PRIx64 "\n",
			       i, callchain->ips[i]);

		printf("..... %2d: %016" PRIx64 "\n",
1070
		       (int)(kernel_callchain_nr), entries[0].to);
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		for (i = 0; i < lbr_stack->nr; i++)
			printf("..... %2d: %016" PRIx64 "\n",
1073
			       (int)(i + kernel_callchain_nr + 1), entries[i].from);
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1074 1075 1076
	}
}

1077
static void callchain__printf(struct evsel *evsel,
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1078 1079 1080 1081 1082
			      struct perf_sample *sample)
{
	unsigned int i;
	struct ip_callchain *callchain = sample->callchain;

1083
	if (evsel__has_branch_callstack(evsel))
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		callchain__lbr_callstack_printf(sample);

	printf("... FP chain: nr:%" PRIu64 "\n", callchain->nr);
1087

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1088
	for (i = 0; i < callchain->nr; i++)
1089
		printf("..... %2d: %016" PRIx64 "\n",
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1090
		       i, callchain->ips[i]);
1091 1092
}

1093
static void branch_stack__printf(struct perf_sample *sample, bool callstack)
1094
{
1095
	struct branch_entry *entries = perf_sample__branch_entries(sample);
1096 1097
	uint64_t i;

1098 1099 1100
	printf("%s: nr:%" PRIu64 "\n",
		!callstack ? "... branch stack" : "... branch callstack",
		sample->branch_stack->nr);
1101

1102
	for (i = 0; i < sample->branch_stack->nr; i++) {
1103
		struct branch_entry *e = &entries[i];
1104

1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117
		if (!callstack) {
			printf("..... %2"PRIu64": %016" PRIx64 " -> %016" PRIx64 " %hu cycles %s%s%s%s %x\n",
				i, e->from, e->to,
				(unsigned short)e->flags.cycles,
				e->flags.mispred ? "M" : " ",
				e->flags.predicted ? "P" : " ",
				e->flags.abort ? "A" : " ",
				e->flags.in_tx ? "T" : " ",
				(unsigned)e->flags.reserved);
		} else {
			printf("..... %2"PRIu64": %016" PRIx64 "\n",
				i, i > 0 ? e->from : e->to);
		}
1118
	}
1119 1120
}

1121 1122 1123 1124 1125 1126 1127
static void regs_dump__printf(u64 mask, u64 *regs)
{
	unsigned rid, i = 0;

	for_each_set_bit(rid, (unsigned long *) &mask, sizeof(mask) * 8) {
		u64 val = regs[i++];

1128
		printf(".... %-5s 0x%016" PRIx64 "\n",
1129 1130 1131 1132
		       perf_reg_name(rid), val);
	}
}

1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158
static const char *regs_abi[] = {
	[PERF_SAMPLE_REGS_ABI_NONE] = "none",
	[PERF_SAMPLE_REGS_ABI_32] = "32-bit",
	[PERF_SAMPLE_REGS_ABI_64] = "64-bit",
};

static inline const char *regs_dump_abi(struct regs_dump *d)
{
	if (d->abi > PERF_SAMPLE_REGS_ABI_64)
		return "unknown";

	return regs_abi[d->abi];
}

static void regs__printf(const char *type, struct regs_dump *regs)
{
	u64 mask = regs->mask;

	printf("... %s regs: mask 0x%" PRIx64 " ABI %s\n",
	       type,
	       mask,
	       regs_dump_abi(regs));

	regs_dump__printf(mask, regs->regs);
}

1159
static void regs_user__printf(struct perf_sample *sample)
1160 1161 1162
{
	struct regs_dump *user_regs = &sample->user_regs;

1163 1164 1165 1166 1167 1168 1169 1170 1171 1172
	if (user_regs->regs)
		regs__printf("user", user_regs);
}

static void regs_intr__printf(struct perf_sample *sample)
{
	struct regs_dump *intr_regs = &sample->intr_regs;

	if (intr_regs->regs)
		regs__printf("intr", intr_regs);
1173 1174 1175 1176 1177 1178 1179 1180
}

static void stack_user__printf(struct stack_dump *dump)
{
	printf("... ustack: size %" PRIu64 ", offset 0x%x\n",
	       dump->size, dump->offset);
}

1181
static void perf_evlist__print_tstamp(struct evlist *evlist,
1182
				       union perf_event *event,
1183
				       struct perf_sample *sample)
1184
{
1185
	u64 sample_type = __evlist__combined_sample_type(evlist);
1186

1187
	if (event->header.type != PERF_RECORD_SAMPLE &&
1188
	    !evlist__sample_id_all(evlist)) {
1189 1190 1191 1192
		fputs("-1 -1 ", stdout);
		return;
	}

1193
	if ((sample_type & PERF_SAMPLE_CPU))
1194 1195
		printf("%u ", sample->cpu);

1196
	if (sample_type & PERF_SAMPLE_TIME)
1197
		printf("%" PRIu64 " ", sample->time);
1198 1199
}

1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229
static void sample_read__printf(struct perf_sample *sample, u64 read_format)
{
	printf("... sample_read:\n");

	if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
		printf("...... time enabled %016" PRIx64 "\n",
		       sample->read.time_enabled);

	if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
		printf("...... time running %016" PRIx64 "\n",
		       sample->read.time_running);

	if (read_format & PERF_FORMAT_GROUP) {
		u64 i;

		printf(".... group nr %" PRIu64 "\n", sample->read.group.nr);

		for (i = 0; i < sample->read.group.nr; i++) {
			struct sample_read_value *value;

			value = &sample->read.group.values[i];
			printf("..... id %016" PRIx64
			       ", value %016" PRIx64 "\n",
			       value->id, value->value);
		}
	} else
		printf("..... id %016" PRIx64 ", value %016" PRIx64 "\n",
			sample->read.one.id, sample->read.one.value);
}

1230
static void dump_event(struct evlist *evlist, union perf_event *event,
1231
		       u64 file_offset, struct perf_sample *sample)
1232 1233 1234 1235
{
	if (!dump_trace)
		return;

1236 1237
	printf("\n%#" PRIx64 " [%#x]: event: %d\n",
	       file_offset, event->header.size, event->header.type);
1238 1239

	trace_event(event);
1240 1241
	if (event->header.type == PERF_RECORD_SAMPLE && evlist->trace_event_sample_raw)
		evlist->trace_event_sample_raw(evlist, event, sample);
1242 1243

	if (sample)
1244
		perf_evlist__print_tstamp(evlist, event, sample);
1245

1246
	printf("%#" PRIx64 " [%#x]: PERF_RECORD_%s", file_offset,
1247
	       event->header.size, perf_event__name(event->header.type));
1248 1249
}

1250
static void dump_sample(struct evsel *evsel, union perf_event *event,
1251
			struct perf_sample *sample)
1252
{
1253 1254
	u64 sample_type;

1255 1256 1257
	if (!dump_trace)
		return;

1258
	printf("(IP, 0x%x): %d/%d: %#" PRIx64 " period: %" PRIu64 " addr: %#" PRIx64 "\n",
1259
	       event->header.misc, sample->pid, sample->tid, sample->ip,
1260
	       sample->period, sample->addr);
1261

1262
	sample_type = evsel->core.attr.sample_type;
1263

1264
	if (evsel__has_callchain(evsel))
K
Kan Liang 已提交
1265
		callchain__printf(evsel, sample);
1266

1267
	if (evsel__has_br_stack(evsel))
1268
		branch_stack__printf(sample, evsel__has_branch_callstack(evsel));
1269 1270

	if (sample_type & PERF_SAMPLE_REGS_USER)
1271
		regs_user__printf(sample);
1272

1273 1274 1275
	if (sample_type & PERF_SAMPLE_REGS_INTR)
		regs_intr__printf(sample);

1276 1277
	if (sample_type & PERF_SAMPLE_STACK_USER)
		stack_user__printf(&sample->user_stack);
1278 1279 1280

	if (sample_type & PERF_SAMPLE_WEIGHT)
		printf("... weight: %" PRIu64 "\n", sample->weight);
1281 1282 1283

	if (sample_type & PERF_SAMPLE_DATA_SRC)
		printf(" . data_src: 0x%"PRIx64"\n", sample->data_src);
1284

1285 1286 1287
	if (sample_type & PERF_SAMPLE_PHYS_ADDR)
		printf(" .. phys_addr: 0x%"PRIx64"\n", sample->phys_addr);

1288 1289 1290
	if (sample_type & PERF_SAMPLE_TRANSACTION)
		printf("... transaction: %" PRIx64 "\n", sample->transaction);

1291
	if (sample_type & PERF_SAMPLE_READ)
1292
		sample_read__printf(sample, evsel->core.attr.read_format);
1293 1294
}

1295
static void dump_read(struct evsel *evsel, union perf_event *event)
J
Jiri Olsa 已提交
1296
{
1297
	struct perf_record_read *read_event = &event->read;
J
Jiri Olsa 已提交
1298 1299 1300 1301 1302
	u64 read_format;

	if (!dump_trace)
		return;

1303
	printf(": %d %d %s %" PRI_lu64 "\n", event->read.pid, event->read.tid,
1304
	       evsel__name(evsel), event->read.value);
J
Jiri Olsa 已提交
1305

1306 1307 1308
	if (!evsel)
		return;

1309
	read_format = evsel->core.attr.read_format;
J
Jiri Olsa 已提交
1310 1311

	if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
1312
		printf("... time enabled : %" PRI_lu64 "\n", read_event->time_enabled);
J
Jiri Olsa 已提交
1313 1314

	if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
1315
		printf("... time running : %" PRI_lu64 "\n", read_event->time_running);
J
Jiri Olsa 已提交
1316 1317

	if (read_format & PERF_FORMAT_ID)
1318
		printf("... id           : %" PRI_lu64 "\n", read_event->id);
J
Jiri Olsa 已提交
1319 1320
}

1321
static struct machine *machines__find_for_cpumode(struct machines *machines,
1322 1323
					       union perf_event *event,
					       struct perf_sample *sample)
1324
{
1325
	struct machine *machine;
1326

1327
	if (perf_guest &&
1328 1329
	    ((sample->cpumode == PERF_RECORD_MISC_GUEST_KERNEL) ||
	     (sample->cpumode == PERF_RECORD_MISC_GUEST_USER))) {
1330 1331
		u32 pid;

1332 1333
		if (event->header.type == PERF_RECORD_MMAP
		    || event->header.type == PERF_RECORD_MMAP2)
1334 1335
			pid = event->mmap.pid;
		else
1336
			pid = sample->pid;
1337

1338
		machine = machines__find(machines, pid);
1339
		if (!machine)
1340
			machine = machines__findnew(machines, DEFAULT_GUEST_KERNEL_ID);
1341
		return machine;
1342
	}
1343

1344
	return &machines->host;
1345 1346
}

1347
static int deliver_sample_value(struct evlist *evlist,
1348 1349 1350 1351 1352 1353
				struct perf_tool *tool,
				union perf_event *event,
				struct perf_sample *sample,
				struct sample_read_value *v,
				struct machine *machine)
{
1354
	struct perf_sample_id *sid = perf_evlist__id2sid(evlist, v->id);
1355
	struct evsel *evsel;
1356 1357 1358 1359 1360 1361 1362 1363

	if (sid) {
		sample->id     = v->id;
		sample->period = v->value - sid->period;
		sid->period    = v->value;
	}

	if (!sid || sid->evsel == NULL) {
1364
		++evlist->stats.nr_unknown_id;
1365 1366 1367
		return 0;
	}

1368 1369 1370 1371 1372 1373 1374
	/*
	 * There's no reason to deliver sample
	 * for zero period, bail out.
	 */
	if (!sample->period)
		return 0;

1375 1376
	evsel = container_of(sid->evsel, struct evsel, core);
	return tool->sample(tool, event, sample, evsel, machine);
1377 1378
}

1379
static int deliver_sample_group(struct evlist *evlist,
1380 1381 1382 1383 1384 1385 1386 1387 1388
				struct perf_tool *tool,
				union  perf_event *event,
				struct perf_sample *sample,
				struct machine *machine)
{
	int ret = -EINVAL;
	u64 i;

	for (i = 0; i < sample->read.group.nr; i++) {
1389
		ret = deliver_sample_value(evlist, tool, event, sample,
1390 1391 1392 1393 1394 1395 1396 1397 1398 1399
					   &sample->read.group.values[i],
					   machine);
		if (ret)
			break;
	}

	return ret;
}

static int
1400
 perf_evlist__deliver_sample(struct evlist *evlist,
1401 1402 1403
			     struct perf_tool *tool,
			     union  perf_event *event,
			     struct perf_sample *sample,
1404
			     struct evsel *evsel,
1405 1406 1407
			     struct machine *machine)
{
	/* We know evsel != NULL. */
1408 1409
	u64 sample_type = evsel->core.attr.sample_type;
	u64 read_format = evsel->core.attr.read_format;
1410

1411
	/* Standard sample delivery. */
1412 1413 1414 1415 1416
	if (!(sample_type & PERF_SAMPLE_READ))
		return tool->sample(tool, event, sample, evsel, machine);

	/* For PERF_SAMPLE_READ we have either single or group mode. */
	if (read_format & PERF_FORMAT_GROUP)
1417
		return deliver_sample_group(evlist, tool, event, sample,
1418 1419
					    machine);
	else
1420
		return deliver_sample_value(evlist, tool, event, sample,
1421 1422 1423
					    &sample->read.one, machine);
}

1424
static int machines__deliver_event(struct machines *machines,
1425
				   struct evlist *evlist,
1426 1427 1428
				   union perf_event *event,
				   struct perf_sample *sample,
				   struct perf_tool *tool, u64 file_offset)
1429
{
1430
	struct evsel *evsel;
1431
	struct machine *machine;
1432

1433
	dump_event(evlist, event, file_offset, sample);
1434

1435
	evsel = perf_evlist__id2evsel(evlist, sample->id);
1436

1437
	machine = machines__find_for_cpumode(machines, event, sample);
1438

1439 1440
	switch (event->header.type) {
	case PERF_RECORD_SAMPLE:
1441
		if (evsel == NULL) {
1442
			++evlist->stats.nr_unknown_id;
1443
			return 0;
1444
		}
1445
		dump_sample(evsel, event, sample);
1446
		if (machine == NULL) {
1447
			++evlist->stats.nr_unprocessable_samples;
1448
			return 0;
1449
		}
1450
		return perf_evlist__deliver_sample(evlist, tool, event, sample, evsel, machine);
1451
	case PERF_RECORD_MMAP:
1452
		return tool->mmap(tool, event, sample, machine);
1453
	case PERF_RECORD_MMAP2:
1454 1455
		if (event->header.misc & PERF_RECORD_MISC_PROC_MAP_PARSE_TIMEOUT)
			++evlist->stats.nr_proc_map_timeout;
1456
		return tool->mmap2(tool, event, sample, machine);
1457
	case PERF_RECORD_COMM:
1458
		return tool->comm(tool, event, sample, machine);
1459 1460
	case PERF_RECORD_NAMESPACES:
		return tool->namespaces(tool, event, sample, machine);
1461 1462
	case PERF_RECORD_CGROUP:
		return tool->cgroup(tool, event, sample, machine);
1463
	case PERF_RECORD_FORK:
1464
		return tool->fork(tool, event, sample, machine);
1465
	case PERF_RECORD_EXIT:
1466
		return tool->exit(tool, event, sample, machine);
1467
	case PERF_RECORD_LOST:
1468
		if (tool->lost == perf_event__process_lost)
1469
			evlist->stats.total_lost += event->lost.lost;
1470
		return tool->lost(tool, event, sample, machine);
1471 1472 1473 1474
	case PERF_RECORD_LOST_SAMPLES:
		if (tool->lost_samples == perf_event__process_lost_samples)
			evlist->stats.total_lost_samples += event->lost_samples.lost;
		return tool->lost_samples(tool, event, sample, machine);
1475
	case PERF_RECORD_READ:
J
Jiri Olsa 已提交
1476
		dump_read(evsel, event);
1477
		return tool->read(tool, event, sample, evsel, machine);
1478
	case PERF_RECORD_THROTTLE:
1479
		return tool->throttle(tool, event, sample, machine);
1480
	case PERF_RECORD_UNTHROTTLE:
1481
		return tool->unthrottle(tool, event, sample, machine);
1482
	case PERF_RECORD_AUX:
1483 1484 1485 1486 1487 1488
		if (tool->aux == perf_event__process_aux) {
			if (event->aux.flags & PERF_AUX_FLAG_TRUNCATED)
				evlist->stats.total_aux_lost += 1;
			if (event->aux.flags & PERF_AUX_FLAG_PARTIAL)
				evlist->stats.total_aux_partial += 1;
		}
1489
		return tool->aux(tool, event, sample, machine);
1490 1491
	case PERF_RECORD_ITRACE_START:
		return tool->itrace_start(tool, event, sample, machine);
1492 1493 1494
	case PERF_RECORD_SWITCH:
	case PERF_RECORD_SWITCH_CPU_WIDE:
		return tool->context_switch(tool, event, sample, machine);
1495 1496
	case PERF_RECORD_KSYMBOL:
		return tool->ksymbol(tool, event, sample, machine);
1497
	case PERF_RECORD_BPF_EVENT:
1498
		return tool->bpf(tool, event, sample, machine);
1499 1500
	case PERF_RECORD_TEXT_POKE:
		return tool->text_poke(tool, event, sample, machine);
1501
	default:
1502
		++evlist->stats.nr_unknown_events;
1503 1504 1505 1506
		return -1;
	}
}

1507 1508 1509 1510 1511
static int perf_session__deliver_event(struct perf_session *session,
				       union perf_event *event,
				       struct perf_tool *tool,
				       u64 file_offset)
{
1512
	struct perf_sample sample;
1513 1514
	int ret;

1515 1516 1517 1518 1519 1520 1521
	ret = perf_evlist__parse_sample(session->evlist, event, &sample);
	if (ret) {
		pr_err("Can't parse sample, err = %d\n", ret);
		return ret;
	}

	ret = auxtrace__process_event(session, event, &sample, tool);
1522 1523 1524 1525 1526
	if (ret < 0)
		return ret;
	if (ret > 0)
		return 0;

1527 1528 1529 1530 1531 1532 1533
	ret = machines__deliver_event(&session->machines, session->evlist,
				      event, &sample, tool, file_offset);

	if (dump_trace && sample.aux_sample.size)
		auxtrace__dump_auxtrace_sample(session, &sample);

	return ret;
1534 1535
}

1536 1537 1538
static s64 perf_session__process_user_event(struct perf_session *session,
					    union perf_event *event,
					    u64 file_offset)
1539
{
1540
	struct ordered_events *oe = &session->ordered_events;
1541
	struct perf_tool *tool = session->tool;
1542
	struct perf_sample sample = { .time = 0, };
1543
	int fd = perf_data__fd(session->data);
1544 1545
	int err;

1546 1547 1548
	if (event->header.type != PERF_RECORD_COMPRESSED ||
	    tool->compressed == perf_session__process_compressed_event_stub)
		dump_event(session->evlist, event, file_offset, &sample);
1549

1550
	/* These events are processed right away */
1551
	switch (event->header.type) {
1552
	case PERF_RECORD_HEADER_ATTR:
1553
		err = tool->attr(tool, event, &session->evlist);
1554
		if (err == 0) {
1555
			perf_session__set_id_hdr_size(session);
1556 1557
			perf_session__set_comm_exec(session);
		}
1558
		return err;
1559 1560
	case PERF_RECORD_EVENT_UPDATE:
		return tool->event_update(tool, event, &session->evlist);
1561 1562 1563 1564 1565 1566
	case PERF_RECORD_HEADER_EVENT_TYPE:
		/*
		 * Depreceated, but we need to handle it for sake
		 * of old data files create in pipe mode.
		 */
		return 0;
1567
	case PERF_RECORD_HEADER_TRACING_DATA:
1568 1569 1570 1571 1572 1573 1574
		/*
		 * Setup for reading amidst mmap, but only when we
		 * are in 'file' mode. The 'pipe' fd is in proper
		 * place already.
		 */
		if (!perf_data__is_pipe(session->data))
			lseek(fd, file_offset, SEEK_SET);
1575
		return tool->tracing_data(session, event);
1576
	case PERF_RECORD_HEADER_BUILD_ID:
1577
		return tool->build_id(session, event);
1578
	case PERF_RECORD_FINISHED_ROUND:
1579
		return tool->finished_round(tool, event, oe);
A
Adrian Hunter 已提交
1580
	case PERF_RECORD_ID_INDEX:
1581
		return tool->id_index(session, event);
1582
	case PERF_RECORD_AUXTRACE_INFO:
1583
		return tool->auxtrace_info(session, event);
1584 1585 1586
	case PERF_RECORD_AUXTRACE:
		/* setup for reading amidst mmap */
		lseek(fd, file_offset + event->header.size, SEEK_SET);
1587
		return tool->auxtrace(session, event);
1588
	case PERF_RECORD_AUXTRACE_ERROR:
1589
		perf_session__auxtrace_error_inc(session, event);
1590
		return tool->auxtrace_error(session, event);
1591
	case PERF_RECORD_THREAD_MAP:
1592
		return tool->thread_map(session, event);
1593
	case PERF_RECORD_CPU_MAP:
1594
		return tool->cpu_map(session, event);
1595
	case PERF_RECORD_STAT_CONFIG:
1596
		return tool->stat_config(session, event);
J
Jiri Olsa 已提交
1597
	case PERF_RECORD_STAT:
1598
		return tool->stat(session, event);
1599
	case PERF_RECORD_STAT_ROUND:
1600
		return tool->stat_round(session, event);
1601 1602
	case PERF_RECORD_TIME_CONV:
		session->time_conv = event->time_conv;
1603
		return tool->time_conv(session, event);
1604
	case PERF_RECORD_HEADER_FEATURE:
1605
		return tool->feature(session, event);
1606 1607 1608 1609 1610
	case PERF_RECORD_COMPRESSED:
		err = tool->compressed(session, event, file_offset);
		if (err)
			dump_event(session->evlist, event, file_offset, &sample);
		return err;
1611
	default:
1612
		return -EINVAL;
1613
	}
1614 1615
}

1616 1617
int perf_session__deliver_synth_event(struct perf_session *session,
				      union perf_event *event,
1618
				      struct perf_sample *sample)
1619
{
1620
	struct evlist *evlist = session->evlist;
1621
	struct perf_tool *tool = session->tool;
1622 1623

	events_stats__inc(&evlist->stats, event->header.type);
1624 1625

	if (event->header.type >= PERF_RECORD_USER_TYPE_START)
1626
		return perf_session__process_user_event(session, event, 0);
1627

1628
	return machines__deliver_event(&session->machines, evlist, event, sample, tool, 0);
1629 1630
}

1631 1632 1633 1634 1635 1636 1637 1638 1639
static void event_swap(union perf_event *event, bool sample_id_all)
{
	perf_event__swap_op swap;

	swap = perf_event__swap_ops[event->header.type];
	if (swap)
		swap(event, sample_id_all);
}

1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654
int perf_session__peek_event(struct perf_session *session, off_t file_offset,
			     void *buf, size_t buf_sz,
			     union perf_event **event_ptr,
			     struct perf_sample *sample)
{
	union perf_event *event;
	size_t hdr_sz, rest;
	int fd;

	if (session->one_mmap && !session->header.needs_swap) {
		event = file_offset - session->one_mmap_offset +
			session->one_mmap_addr;
		goto out_parse_sample;
	}

1655
	if (perf_data__is_pipe(session->data))
1656 1657
		return -1;

1658
	fd = perf_data__fd(session->data);
1659 1660 1661 1662 1663 1664
	hdr_sz = sizeof(struct perf_event_header);

	if (buf_sz < hdr_sz)
		return -1;

	if (lseek(fd, file_offset, SEEK_SET) == (off_t)-1 ||
1665
	    readn(fd, buf, hdr_sz) != (ssize_t)hdr_sz)
1666 1667 1668 1669 1670 1671 1672
		return -1;

	event = (union perf_event *)buf;

	if (session->header.needs_swap)
		perf_event_header__bswap(&event->header);

1673
	if (event->header.size < hdr_sz || event->header.size > buf_sz)
1674 1675 1676 1677
		return -1;

	rest = event->header.size - hdr_sz;

1678
	if (readn(fd, buf, rest) != (ssize_t)rest)
1679 1680 1681
		return -1;

	if (session->header.needs_swap)
1682
		event_swap(event, evlist__sample_id_all(session->evlist));
1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694

out_parse_sample:

	if (sample && event->header.type < PERF_RECORD_USER_TYPE_START &&
	    perf_evlist__parse_sample(session->evlist, event, sample))
		return -1;

	*event_ptr = event;

	return 0;
}

1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722
int perf_session__peek_events(struct perf_session *session, u64 offset,
			      u64 size, peek_events_cb_t cb, void *data)
{
	u64 max_offset = offset + size;
	char buf[PERF_SAMPLE_MAX_SIZE];
	union perf_event *event;
	int err;

	do {
		err = perf_session__peek_event(session, offset, buf,
					       PERF_SAMPLE_MAX_SIZE, &event,
					       NULL);
		if (err)
			return err;

		err = cb(session, event, offset, data);
		if (err)
			return err;

		offset += event->header.size;
		if (event->header.type == PERF_RECORD_AUXTRACE)
			offset += event->auxtrace.size;

	} while (offset < max_offset);

	return err;
}

1723
static s64 perf_session__process_event(struct perf_session *session,
1724
				       union perf_event *event, u64 file_offset)
1725
{
1726
	struct evlist *evlist = session->evlist;
1727
	struct perf_tool *tool = session->tool;
1728 1729
	int ret;

1730
	if (session->header.needs_swap)
1731
		event_swap(event, evlist__sample_id_all(evlist));
1732 1733 1734 1735

	if (event->header.type >= PERF_RECORD_HEADER_MAX)
		return -EINVAL;

1736
	events_stats__inc(&evlist->stats, event->header.type);
1737 1738

	if (event->header.type >= PERF_RECORD_USER_TYPE_START)
1739
		return perf_session__process_user_event(session, event, file_offset);
1740

1741
	if (tool->ordered_events) {
1742
		u64 timestamp = -1ULL;
1743 1744

		ret = perf_evlist__parse_sample_timestamp(evlist, event, &timestamp);
1745
		if (ret && ret != -1)
1746 1747 1748
			return ret;

		ret = perf_session__queue_event(session, event, timestamp, file_offset);
1749 1750 1751 1752
		if (ret != -ETIME)
			return ret;
	}

1753
	return perf_session__deliver_event(session, event, tool, file_offset);
1754 1755
}

1756
void perf_event_header__bswap(struct perf_event_header *hdr)
1757
{
1758 1759 1760
	hdr->type = bswap_32(hdr->type);
	hdr->misc = bswap_16(hdr->misc);
	hdr->size = bswap_16(hdr->size);
1761 1762
}

1763 1764
struct thread *perf_session__findnew(struct perf_session *session, pid_t pid)
{
1765
	return machine__findnew_thread(&session->machines.host, -1, pid);
1766 1767
}

1768 1769 1770 1771 1772 1773 1774
/*
 * Threads are identified by pid and tid, and the idle task has pid == tid == 0.
 * So here a single thread is created for that, but actually there is a separate
 * idle task per cpu, so there should be one 'struct thread' per cpu, but there
 * is only 1. That causes problems for some tools, requiring workarounds. For
 * example get_idle_thread() in builtin-sched.c, or thread_stack__per_cpu().
 */
1775
int perf_session__register_idle_thread(struct perf_session *session)
1776
{
1777
	struct thread *thread;
1778
	int err = 0;
1779

1780
	thread = machine__findnew_thread(&session->machines.host, 0, 0);
1781
	if (thread == NULL || thread__set_comm(thread, "swapper", 0)) {
1782
		pr_err("problem inserting idle task.\n");
1783
		err = -1;
1784 1785
	}

1786 1787 1788 1789 1790
	if (thread == NULL || thread__set_namespaces(thread, 0, NULL)) {
		pr_err("problem inserting idle task.\n");
		err = -1;
	}

1791 1792 1793
	/* machine__findnew_thread() got the thread, so put it */
	thread__put(thread);
	return err;
1794 1795
}

1796 1797 1798 1799
static void
perf_session__warn_order(const struct perf_session *session)
{
	const struct ordered_events *oe = &session->ordered_events;
1800
	struct evsel *evsel;
1801 1802 1803
	bool should_warn = true;

	evlist__for_each_entry(session->evlist, evsel) {
1804
		if (evsel->core.attr.write_backward)
1805 1806 1807 1808 1809 1810 1811 1812 1813
			should_warn = false;
	}

	if (!should_warn)
		return;
	if (oe->nr_unordered_events != 0)
		ui__warning("%u out of order events recorded.\n", oe->nr_unordered_events);
}

1814
static void perf_session__warn_about_errors(const struct perf_session *session)
1815
{
1816 1817 1818
	const struct events_stats *stats = &session->evlist->stats;

	if (session->tool->lost == perf_event__process_lost &&
1819
	    stats->nr_events[PERF_RECORD_LOST] != 0) {
1820 1821
		ui__warning("Processed %d events and lost %d chunks!\n\n"
			    "Check IO/CPU overload!\n\n",
1822 1823
			    stats->nr_events[0],
			    stats->nr_events[PERF_RECORD_LOST]);
1824 1825
	}

1826 1827 1828 1829 1830 1831
	if (session->tool->lost_samples == perf_event__process_lost_samples) {
		double drop_rate;

		drop_rate = (double)stats->total_lost_samples /
			    (double) (stats->nr_events[PERF_RECORD_SAMPLE] + stats->total_lost_samples);
		if (drop_rate > 0.05) {
1832
			ui__warning("Processed %" PRIu64 " samples and lost %3.2f%%!\n\n",
1833 1834 1835 1836 1837
				    stats->nr_events[PERF_RECORD_SAMPLE] + stats->total_lost_samples,
				    drop_rate * 100.0);
		}
	}

1838 1839 1840 1841 1842 1843 1844
	if (session->tool->aux == perf_event__process_aux &&
	    stats->total_aux_lost != 0) {
		ui__warning("AUX data lost %" PRIu64 " times out of %u!\n\n",
			    stats->total_aux_lost,
			    stats->nr_events[PERF_RECORD_AUX]);
	}

1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861
	if (session->tool->aux == perf_event__process_aux &&
	    stats->total_aux_partial != 0) {
		bool vmm_exclusive = false;

		(void)sysfs__read_bool("module/kvm_intel/parameters/vmm_exclusive",
		                       &vmm_exclusive);

		ui__warning("AUX data had gaps in it %" PRIu64 " times out of %u!\n\n"
		            "Are you running a KVM guest in the background?%s\n\n",
			    stats->total_aux_partial,
			    stats->nr_events[PERF_RECORD_AUX],
			    vmm_exclusive ?
			    "\nReloading kvm_intel module with vmm_exclusive=0\n"
			    "will reduce the gaps to only guest's timeslices." :
			    "");
	}

1862
	if (stats->nr_unknown_events != 0) {
1863 1864 1865 1866 1867
		ui__warning("Found %u unknown events!\n\n"
			    "Is this an older tool processing a perf.data "
			    "file generated by a more recent tool?\n\n"
			    "If that is not the case, consider "
			    "reporting to linux-kernel@vger.kernel.org.\n\n",
1868
			    stats->nr_unknown_events);
1869 1870
	}

1871
	if (stats->nr_unknown_id != 0) {
1872
		ui__warning("%u samples with id not present in the header\n",
1873
			    stats->nr_unknown_id);
1874 1875
	}

1876
	if (stats->nr_invalid_chains != 0) {
1877 1878 1879
		ui__warning("Found invalid callchains!\n\n"
			    "%u out of %u events were discarded for this reason.\n\n"
			    "Consider reporting to linux-kernel@vger.kernel.org.\n\n",
1880 1881
			    stats->nr_invalid_chains,
			    stats->nr_events[PERF_RECORD_SAMPLE]);
1882
	}
1883

1884
	if (stats->nr_unprocessable_samples != 0) {
1885 1886
		ui__warning("%u unprocessable samples recorded.\n"
			    "Do you have a KVM guest running and not using 'perf kvm'?\n",
1887
			    stats->nr_unprocessable_samples);
1888
	}
1889

1890
	perf_session__warn_order(session);
1891 1892

	events_stats__auxtrace_error_warn(stats);
1893 1894 1895 1896 1897 1898

	if (stats->nr_proc_map_timeout != 0) {
		ui__warning("%d map information files for pre-existing threads were\n"
			    "not processed, if there are samples for addresses they\n"
			    "will not be resolved, you may find out which are these\n"
			    "threads by running with -v and redirecting the output\n"
1899 1900 1901
			    "to a file.\n"
			    "The time limit to process proc map is too short?\n"
			    "Increase it by --proc-map-timeout\n",
1902 1903
			    stats->nr_proc_map_timeout);
	}
1904 1905
}

1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918
static int perf_session__flush_thread_stack(struct thread *thread,
					    void *p __maybe_unused)
{
	return thread_stack__flush(thread);
}

static int perf_session__flush_thread_stacks(struct perf_session *session)
{
	return machines__for_each_thread(&session->machines,
					 perf_session__flush_thread_stack,
					 NULL);
}

1919 1920
volatile int session_done;

1921 1922
static int __perf_session__process_decomp_events(struct perf_session *session);

1923
static int __perf_session__process_pipe_events(struct perf_session *session)
1924
{
1925
	struct ordered_events *oe = &session->ordered_events;
1926
	struct perf_tool *tool = session->tool;
1927
	int fd = perf_data__fd(session->data);
1928 1929 1930
	union perf_event *event;
	uint32_t size, cur_size = 0;
	void *buf = NULL;
1931
	s64 skip = 0;
1932
	u64 head;
1933
	ssize_t err;
1934 1935
	void *p;

1936
	perf_tool__fill_defaults(tool);
1937 1938

	head = 0;
1939 1940 1941 1942 1943
	cur_size = sizeof(union perf_event);

	buf = malloc(cur_size);
	if (!buf)
		return -errno;
1944
	ordered_events__set_copy_on_queue(oe, true);
1945
more:
1946
	event = buf;
1947
	err = readn(fd, event, sizeof(struct perf_event_header));
1948 1949 1950 1951 1952 1953 1954 1955
	if (err <= 0) {
		if (err == 0)
			goto done;

		pr_err("failed to read event header\n");
		goto out_err;
	}

1956
	if (session->header.needs_swap)
1957
		perf_event_header__bswap(&event->header);
1958

1959
	size = event->header.size;
1960 1961 1962 1963
	if (size < sizeof(struct perf_event_header)) {
		pr_err("bad event header size\n");
		goto out_err;
	}
1964

1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975
	if (size > cur_size) {
		void *new = realloc(buf, size);
		if (!new) {
			pr_err("failed to allocate memory to read event\n");
			goto out_err;
		}
		buf = new;
		cur_size = size;
		event = buf;
	}
	p = event;
1976 1977
	p += sizeof(struct perf_event_header);

1978
	if (size - sizeof(struct perf_event_header)) {
1979
		err = readn(fd, p, size - sizeof(struct perf_event_header));
1980 1981 1982 1983 1984
		if (err <= 0) {
			if (err == 0) {
				pr_err("unexpected end of event stream\n");
				goto done;
			}
1985

1986 1987 1988
			pr_err("failed to read event data\n");
			goto out_err;
		}
1989 1990
	}

1991
	if ((skip = perf_session__process_event(session, event, head)) < 0) {
1992
		pr_err("%#" PRIx64 " [%#x]: failed to process type: %d\n",
1993
		       head, event->header.size, event->header.type);
1994 1995
		err = -EINVAL;
		goto out_err;
1996 1997 1998 1999 2000 2001 2002
	}

	head += size;

	if (skip > 0)
		head += skip;

2003 2004 2005 2006
	err = __perf_session__process_decomp_events(session);
	if (err)
		goto out_err;

2007 2008 2009
	if (!session_done())
		goto more;
done:
2010
	/* do the final flush for ordered samples */
2011
	err = ordered_events__flush(oe, OE_FLUSH__FINAL);
2012 2013 2014
	if (err)
		goto out_err;
	err = auxtrace__flush_events(session, tool);
2015 2016 2017
	if (err)
		goto out_err;
	err = perf_session__flush_thread_stacks(session);
2018
out_err:
2019
	free(buf);
2020 2021
	if (!tool->no_warn)
		perf_session__warn_about_errors(session);
2022
	ordered_events__free(&session->ordered_events);
2023
	auxtrace__free_events(session);
2024 2025 2026
	return err;
}

2027
static union perf_event *
2028 2029
prefetch_event(char *buf, u64 head, size_t mmap_size,
	       bool needs_swap, union perf_event *error)
2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040
{
	union perf_event *event;

	/*
	 * Ensure we have enough space remaining to read
	 * the size of the event in the headers.
	 */
	if (head + sizeof(event->header) > mmap_size)
		return NULL;

	event = (union perf_event *)(buf + head);
2041 2042
	if (needs_swap)
		perf_event_header__bswap(&event->header);
2043

2044 2045 2046 2047 2048
	if (head + event->header.size <= mmap_size)
		return event;

	/* We're not fetching the event so swap back again */
	if (needs_swap)
2049 2050
		perf_event_header__bswap(&event->header);

2051 2052
	pr_debug("%s: head=%#" PRIx64 " event->header_size=%#x, mmap_size=%#zx:"
		 " fuzzed or compressed perf.data?\n",__func__, head, event->header.size, mmap_size);
2053

2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066
	return error;
}

static union perf_event *
fetch_mmaped_event(u64 head, size_t mmap_size, char *buf, bool needs_swap)
{
	return prefetch_event(buf, head, mmap_size, needs_swap, ERR_PTR(-EINVAL));
}

static union perf_event *
fetch_decomp_event(u64 head, size_t mmap_size, char *buf, bool needs_swap)
{
	return prefetch_event(buf, head, mmap_size, needs_swap, NULL);
2067 2068
}

2069 2070 2071 2072 2073 2074 2075 2076 2077 2078
static int __perf_session__process_decomp_events(struct perf_session *session)
{
	s64 skip;
	u64 size, file_pos = 0;
	struct decomp *decomp = session->decomp_last;

	if (!decomp)
		return 0;

	while (decomp->head < decomp->size && !session_done()) {
2079 2080
		union perf_event *event = fetch_decomp_event(decomp->head, decomp->size, decomp->data,
							     session->header.needs_swap);
2081

2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102
		if (!event)
			break;

		size = event->header.size;

		if (size < sizeof(struct perf_event_header) ||
		    (skip = perf_session__process_event(session, event, file_pos)) < 0) {
			pr_err("%#" PRIx64 " [%#x]: failed to process type: %d\n",
				decomp->file_pos + decomp->head, event->header.size, event->header.type);
			return -EINVAL;
		}

		if (skip)
			size += skip;

		decomp->head += size;
	}

	return 0;
}

2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114
/*
 * On 64bit we can mmap the data file in one go. No need for tiny mmap
 * slices. On 32bit we use 32MB.
 */
#if BITS_PER_LONG == 64
#define MMAP_SIZE ULLONG_MAX
#define NUM_MMAPS 1
#else
#define MMAP_SIZE (32 * 1024 * 1024ULL)
#define NUM_MMAPS 128
#endif

2115 2116 2117 2118 2119 2120
struct reader;

typedef s64 (*reader_cb_t)(struct perf_session *session,
			   union perf_event *event,
			   u64 file_offset);

J
Jiri Olsa 已提交
2121
struct reader {
2122 2123 2124 2125
	int		 fd;
	u64		 data_size;
	u64		 data_offset;
	reader_cb_t	 process;
J
Jiri Olsa 已提交
2126 2127
};

2128 2129 2130
static int
reader__process_events(struct reader *rd, struct perf_session *session,
		       struct ui_progress *prog)
2131
{
2132
	u64 data_size = rd->data_size;
2133
	u64 head, page_offset, file_offset, file_pos, size;
2134
	int err = 0, mmap_prot, mmap_flags, map_idx = 0;
2135
	size_t	mmap_size;
2136
	char *buf, *mmaps[NUM_MMAPS];
2137
	union perf_event *event;
2138
	s64 skip;
2139

2140
	page_offset = page_size * (rd->data_offset / page_size);
2141
	file_offset = page_offset;
2142
	head = rd->data_offset - page_offset;
2143

2144
	ui_progress__init_size(prog, data_size, "Processing events...");
2145

2146
	data_size += rd->data_offset;
2147

2148
	mmap_size = MMAP_SIZE;
2149 2150
	if (mmap_size > data_size) {
		mmap_size = data_size;
2151 2152
		session->one_mmap = true;
	}
2153

2154 2155
	memset(mmaps, 0, sizeof(mmaps));

2156 2157 2158
	mmap_prot  = PROT_READ;
	mmap_flags = MAP_SHARED;

2159
	if (session->header.needs_swap) {
2160 2161 2162
		mmap_prot  |= PROT_WRITE;
		mmap_flags = MAP_PRIVATE;
	}
2163
remap:
2164
	buf = mmap(NULL, mmap_size, mmap_prot, mmap_flags, rd->fd,
2165
		   file_offset);
2166 2167 2168
	if (buf == MAP_FAILED) {
		pr_err("failed to mmap file\n");
		err = -errno;
2169
		goto out;
2170
	}
2171 2172
	mmaps[map_idx] = buf;
	map_idx = (map_idx + 1) & (ARRAY_SIZE(mmaps) - 1);
2173
	file_pos = file_offset + head;
2174 2175 2176 2177
	if (session->one_mmap) {
		session->one_mmap_addr = buf;
		session->one_mmap_offset = file_offset;
	}
2178 2179

more:
2180
	event = fetch_mmaped_event(head, mmap_size, buf, session->header.needs_swap);
2181 2182 2183
	if (IS_ERR(event))
		return PTR_ERR(event);

2184
	if (!event) {
2185 2186 2187 2188
		if (mmaps[map_idx]) {
			munmap(mmaps[map_idx], mmap_size);
			mmaps[map_idx] = NULL;
		}
2189

2190 2191 2192
		page_offset = page_size * (head / page_size);
		file_offset += page_offset;
		head -= page_offset;
2193 2194 2195 2196 2197
		goto remap;
	}

	size = event->header.size;

2198 2199
	skip = -EINVAL;

2200
	if (size < sizeof(struct perf_event_header) ||
2201
	    (skip = rd->process(session, event, file_pos)) < 0) {
2202
		pr_err("%#" PRIx64 " [%#x]: failed to process type: %d [%s]\n",
2203
		       file_offset + head, event->header.size,
2204 2205
		       event->header.type, strerror(-skip));
		err = skip;
2206
		goto out;
2207 2208
	}

2209 2210 2211
	if (skip)
		size += skip;

2212
	head += size;
2213
	file_pos += size;
2214

2215 2216 2217 2218
	err = __perf_session__process_decomp_events(session);
	if (err)
		goto out;

2219
	ui_progress__update(prog, size);
2220

2221
	if (session_done())
2222
		goto out;
2223

2224
	if (file_pos < data_size)
2225
		goto more;
2226

2227
out:
2228 2229 2230
	return err;
}

2231 2232 2233 2234 2235 2236 2237
static s64 process_simple(struct perf_session *session,
			  union perf_event *event,
			  u64 file_offset)
{
	return perf_session__process_event(session, event, file_offset);
}

2238 2239 2240 2241 2242 2243
static int __perf_session__process_events(struct perf_session *session)
{
	struct reader rd = {
		.fd		= perf_data__fd(session->data),
		.data_size	= session->header.data_size,
		.data_offset	= session->header.data_offset,
2244
		.process	= process_simple,
2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260
	};
	struct ordered_events *oe = &session->ordered_events;
	struct perf_tool *tool = session->tool;
	struct ui_progress prog;
	int err;

	perf_tool__fill_defaults(tool);

	if (rd.data_size == 0)
		return -1;

	ui_progress__init_size(&prog, rd.data_size, "Processing events...");

	err = reader__process_events(&rd, session, &prog);
	if (err)
		goto out_err;
2261
	/* do the final flush for ordered samples */
2262
	err = ordered_events__flush(oe, OE_FLUSH__FINAL);
2263 2264 2265
	if (err)
		goto out_err;
	err = auxtrace__flush_events(session, tool);
2266 2267 2268
	if (err)
		goto out_err;
	err = perf_session__flush_thread_stacks(session);
2269
out_err:
N
Namhyung Kim 已提交
2270
	ui_progress__finish();
2271 2272
	if (!tool->no_warn)
		perf_session__warn_about_errors(session);
2273 2274 2275 2276 2277
	/*
	 * We may switching perf.data output, make ordered_events
	 * reusable.
	 */
	ordered_events__reinit(&session->ordered_events);
2278
	auxtrace__free_events(session);
2279
	session->one_mmap = false;
2280 2281
	return err;
}
2282

2283
int perf_session__process_events(struct perf_session *session)
2284
{
2285
	if (perf_session__register_idle_thread(session) < 0)
2286 2287
		return -ENOMEM;

2288 2289
	if (perf_data__is_pipe(session->data))
		return __perf_session__process_pipe_events(session);
2290

2291
	return __perf_session__process_events(session);
2292 2293
}

2294
bool perf_session__has_traces(struct perf_session *session, const char *msg)
2295
{
2296
	struct evsel *evsel;
2297

2298
	evlist__for_each_entry(session->evlist, evsel) {
2299
		if (evsel->core.attr.type == PERF_TYPE_TRACEPOINT)
2300
			return true;
2301 2302
	}

2303 2304
	pr_err("No trace sample to read. Did you call 'perf %s'?\n", msg);
	return false;
2305
}
2306

2307
int map__set_kallsyms_ref_reloc_sym(struct map *map, const char *symbol_name, u64 addr)
2308 2309
{
	char *bracket;
2310
	struct ref_reloc_sym *ref;
2311
	struct kmap *kmap;
2312 2313 2314 2315

	ref = zalloc(sizeof(struct ref_reloc_sym));
	if (ref == NULL)
		return -ENOMEM;
2316

2317 2318 2319
	ref->name = strdup(symbol_name);
	if (ref->name == NULL) {
		free(ref);
2320
		return -ENOMEM;
2321
	}
2322

2323
	bracket = strchr(ref->name, ']');
2324 2325 2326
	if (bracket)
		*bracket = '\0';

2327
	ref->addr = addr;
2328

2329 2330
	kmap = map__kmap(map);
	if (kmap)
2331
		kmap->ref_reloc_sym = ref;
2332

2333 2334
	return 0;
}
2335

2336
size_t perf_session__fprintf_dsos(struct perf_session *session, FILE *fp)
2337
{
2338
	return machines__fprintf_dsos(&session->machines, fp);
2339
}
2340

2341
size_t perf_session__fprintf_dsos_buildid(struct perf_session *session, FILE *fp,
2342
					  bool (skip)(struct dso *dso, int parm), int parm)
2343
{
2344
	return machines__fprintf_dsos_buildid(&session->machines, fp, skip, parm);
2345
}
2346 2347 2348

size_t perf_session__fprintf_nr_events(struct perf_session *session, FILE *fp)
{
2349 2350 2351 2352 2353 2354
	size_t ret;
	const char *msg = "";

	if (perf_header__has_feat(&session->header, HEADER_AUXTRACE))
		msg = " (excludes AUX area (e.g. instruction trace) decoded / synthesized events)";

2355
	ret = fprintf(fp, "\nAggregated stats:%s\n", msg);
2356

2357
	ret += events_stats__fprintf(&session->evlist->stats, fp);
2358 2359
	return ret;
}
2360

2361 2362 2363 2364 2365 2366
size_t perf_session__fprintf(struct perf_session *session, FILE *fp)
{
	/*
	 * FIXME: Here we have to actually print all the machines in this
	 * session, not just the host...
	 */
2367
	return machine__fprintf(&session->machines.host, fp);
2368 2369
}

2370
struct evsel *perf_session__find_first_evtype(struct perf_session *session,
2371 2372
					      unsigned int type)
{
2373
	struct evsel *pos;
2374

2375
	evlist__for_each_entry(session->evlist, pos) {
2376
		if (pos->core.attr.type == type)
2377 2378 2379 2380 2381
			return pos;
	}
	return NULL;
}

2382 2383 2384
int perf_session__cpu_bitmap(struct perf_session *session,
			     const char *cpu_list, unsigned long *cpu_bitmap)
{
2385
	int i, err = -1;
2386
	struct perf_cpu_map *map;
2387
	int nr_cpus = min(session->header.env.nr_cpus_online, MAX_NR_CPUS);
2388 2389

	for (i = 0; i < PERF_TYPE_MAX; ++i) {
2390
		struct evsel *evsel;
2391 2392 2393 2394 2395

		evsel = perf_session__find_first_evtype(session, i);
		if (!evsel)
			continue;

2396
		if (!(evsel->core.attr.sample_type & PERF_SAMPLE_CPU)) {
2397
			pr_err("File does not contain CPU events. "
2398
			       "Remove -C option to proceed.\n");
2399 2400 2401 2402
			return -1;
		}
	}

2403
	map = perf_cpu_map__new(cpu_list);
2404 2405 2406 2407
	if (map == NULL) {
		pr_err("Invalid cpu_list\n");
		return -1;
	}
2408 2409 2410 2411

	for (i = 0; i < map->nr; i++) {
		int cpu = map->map[i];

2412
		if (cpu >= nr_cpus) {
2413 2414
			pr_err("Requested CPU %d too large. "
			       "Consider raising MAX_NR_CPUS\n", cpu);
2415
			goto out_delete_map;
2416 2417 2418 2419 2420
		}

		set_bit(cpu, cpu_bitmap);
	}

2421 2422 2423
	err = 0;

out_delete_map:
2424
	perf_cpu_map__put(map);
2425
	return err;
2426
}
2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437

void perf_session__fprintf_info(struct perf_session *session, FILE *fp,
				bool full)
{
	if (session == NULL || fp == NULL)
		return;

	fprintf(fp, "# ========\n");
	perf_header__fprintf_info(session, fp, full);
	fprintf(fp, "# ========\n#\n");
}
2438

2439 2440
int perf_event__process_id_index(struct perf_session *session,
				 union perf_event *event)
A
Adrian Hunter 已提交
2441
{
2442
	struct evlist *evlist = session->evlist;
2443
	struct perf_record_id_index *ie = &event->id_index;
A
Adrian Hunter 已提交
2444 2445
	size_t i, nr, max_nr;

2446
	max_nr = (ie->header.size - sizeof(struct perf_record_id_index)) /
A
Adrian Hunter 已提交
2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459
		 sizeof(struct id_index_entry);
	nr = ie->nr;
	if (nr > max_nr)
		return -EINVAL;

	if (dump_trace)
		fprintf(stdout, " nr: %zu\n", nr);

	for (i = 0; i < nr; i++) {
		struct id_index_entry *e = &ie->entries[i];
		struct perf_sample_id *sid;

		if (dump_trace) {
2460 2461 2462 2463
			fprintf(stdout,	" ... id: %"PRI_lu64, e->id);
			fprintf(stdout,	"  idx: %"PRI_lu64, e->idx);
			fprintf(stdout,	"  cpu: %"PRI_ld64, e->cpu);
			fprintf(stdout,	"  tid: %"PRI_ld64"\n", e->tid);
A
Adrian Hunter 已提交
2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474
		}

		sid = perf_evlist__id2sid(evlist, e->id);
		if (!sid)
			return -ENOENT;
		sid->idx = e->idx;
		sid->cpu = e->cpu;
		sid->tid = e->tid;
	}
	return 0;
}