dso.c 32.9 KB
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// SPDX-License-Identifier: GPL-2.0
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#include <asm/bug.h>
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#include <linux/kernel.h>
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#include <linux/string.h>
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#include <linux/zalloc.h>
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#include <sys/time.h>
#include <sys/resource.h>
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#include <sys/types.h>
#include <sys/stat.h>
#include <unistd.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <stdlib.h>
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#include <bpf/libbpf.h>
#include "bpf-event.h"
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#include "compress.h"
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#include "env.h"
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#include "namespaces.h"
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#include "path.h"
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#include "map.h"
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#include "symbol.h"
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#include "srcline.h"
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#include "dso.h"
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#include "dsos.h"
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#include "machine.h"
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#include "auxtrace.h"
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#include "util.h" /* O_CLOEXEC for older systems */
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#include "debug.h"
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#include "string2.h"
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#include "vdso.h"
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static const char * const debuglink_paths[] = {
	"%.0s%s",
	"%s/%s",
	"%s/.debug/%s",
	"/usr/lib/debug%s/%s"
};

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char dso__symtab_origin(const struct dso *dso)
{
	static const char origin[] = {
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		[DSO_BINARY_TYPE__KALLSYMS]			= 'k',
		[DSO_BINARY_TYPE__VMLINUX]			= 'v',
		[DSO_BINARY_TYPE__JAVA_JIT]			= 'j',
		[DSO_BINARY_TYPE__DEBUGLINK]			= 'l',
		[DSO_BINARY_TYPE__BUILD_ID_CACHE]		= 'B',
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		[DSO_BINARY_TYPE__BUILD_ID_CACHE_DEBUGINFO]	= 'D',
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		[DSO_BINARY_TYPE__FEDORA_DEBUGINFO]		= 'f',
		[DSO_BINARY_TYPE__UBUNTU_DEBUGINFO]		= 'u',
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		[DSO_BINARY_TYPE__MIXEDUP_UBUNTU_DEBUGINFO]	= 'x',
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		[DSO_BINARY_TYPE__OPENEMBEDDED_DEBUGINFO]	= 'o',
		[DSO_BINARY_TYPE__BUILDID_DEBUGINFO]		= 'b',
		[DSO_BINARY_TYPE__SYSTEM_PATH_DSO]		= 'd',
		[DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE]		= 'K',
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		[DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE_COMP]	= 'm',
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		[DSO_BINARY_TYPE__GUEST_KALLSYMS]		= 'g',
		[DSO_BINARY_TYPE__GUEST_KMODULE]		= 'G',
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		[DSO_BINARY_TYPE__GUEST_KMODULE_COMP]		= 'M',
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		[DSO_BINARY_TYPE__GUEST_VMLINUX]		= 'V',
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	};

	if (dso == NULL || dso->symtab_type == DSO_BINARY_TYPE__NOT_FOUND)
		return '!';
	return origin[dso->symtab_type];
}

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int dso__read_binary_type_filename(const struct dso *dso,
				   enum dso_binary_type type,
				   char *root_dir, char *filename, size_t size)
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{
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	char build_id_hex[SBUILD_ID_SIZE];
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	int ret = 0;
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	size_t len;
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	switch (type) {
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	case DSO_BINARY_TYPE__DEBUGLINK:
	{
		const char *last_slash;
		char dso_dir[PATH_MAX];
		char symfile[PATH_MAX];
		unsigned int i;
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		len = __symbol__join_symfs(filename, size, dso->long_name);
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		last_slash = filename + len;
		while (last_slash != filename && *last_slash != '/')
			last_slash--;
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		strncpy(dso_dir, filename, last_slash - filename);
		dso_dir[last_slash-filename] = '\0';

		if (!is_regular_file(filename)) {
			ret = -1;
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			break;
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		}
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		ret = filename__read_debuglink(filename, symfile, PATH_MAX);
		if (ret)
			break;

		/* Check predefined locations where debug file might reside */
		ret = -1;
		for (i = 0; i < ARRAY_SIZE(debuglink_paths); i++) {
			snprintf(filename, size,
					debuglink_paths[i], dso_dir, symfile);
			if (is_regular_file(filename)) {
				ret = 0;
				break;
			}
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		}
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		break;
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	}
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	case DSO_BINARY_TYPE__BUILD_ID_CACHE:
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		if (dso__build_id_filename(dso, filename, size, false) == NULL)
			ret = -1;
		break;

	case DSO_BINARY_TYPE__BUILD_ID_CACHE_DEBUGINFO:
		if (dso__build_id_filename(dso, filename, size, true) == NULL)
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			ret = -1;
		break;

	case DSO_BINARY_TYPE__FEDORA_DEBUGINFO:
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		len = __symbol__join_symfs(filename, size, "/usr/lib/debug");
		snprintf(filename + len, size - len, "%s.debug", dso->long_name);
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		break;

	case DSO_BINARY_TYPE__UBUNTU_DEBUGINFO:
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		len = __symbol__join_symfs(filename, size, "/usr/lib/debug");
		snprintf(filename + len, size - len, "%s", dso->long_name);
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		break;

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	case DSO_BINARY_TYPE__MIXEDUP_UBUNTU_DEBUGINFO:
		/*
		 * Ubuntu can mixup /usr/lib with /lib, putting debuginfo in
		 * /usr/lib/debug/lib when it is expected to be in
		 * /usr/lib/debug/usr/lib
		 */
		if (strlen(dso->long_name) < 9 ||
		    strncmp(dso->long_name, "/usr/lib/", 9)) {
			ret = -1;
			break;
		}
		len = __symbol__join_symfs(filename, size, "/usr/lib/debug");
		snprintf(filename + len, size - len, "%s", dso->long_name + 4);
		break;

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	case DSO_BINARY_TYPE__OPENEMBEDDED_DEBUGINFO:
	{
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		const char *last_slash;
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		size_t dir_size;

		last_slash = dso->long_name + dso->long_name_len;
		while (last_slash != dso->long_name && *last_slash != '/')
			last_slash--;

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		len = __symbol__join_symfs(filename, size, "");
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		dir_size = last_slash - dso->long_name + 2;
		if (dir_size > (size - len)) {
			ret = -1;
			break;
		}
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		len += scnprintf(filename + len, dir_size, "%s",  dso->long_name);
		len += scnprintf(filename + len , size - len, ".debug%s",
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								last_slash);
		break;
	}

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	case DSO_BINARY_TYPE__BUILDID_DEBUGINFO:
		if (!dso->has_build_id) {
			ret = -1;
			break;
		}

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		build_id__sprintf(&dso->bid, build_id_hex);
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		len = __symbol__join_symfs(filename, size, "/usr/lib/debug/.build-id/");
		snprintf(filename + len, size - len, "%.2s/%s.debug",
			 build_id_hex, build_id_hex + 2);
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		break;

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	case DSO_BINARY_TYPE__VMLINUX:
	case DSO_BINARY_TYPE__GUEST_VMLINUX:
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	case DSO_BINARY_TYPE__SYSTEM_PATH_DSO:
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		__symbol__join_symfs(filename, size, dso->long_name);
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		break;

	case DSO_BINARY_TYPE__GUEST_KMODULE:
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	case DSO_BINARY_TYPE__GUEST_KMODULE_COMP:
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		path__join3(filename, size, symbol_conf.symfs,
			    root_dir, dso->long_name);
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		break;

	case DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE:
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	case DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE_COMP:
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		__symbol__join_symfs(filename, size, dso->long_name);
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		break;

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	case DSO_BINARY_TYPE__KCORE:
	case DSO_BINARY_TYPE__GUEST_KCORE:
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		snprintf(filename, size, "%s", dso->long_name);
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		break;

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	default:
	case DSO_BINARY_TYPE__KALLSYMS:
	case DSO_BINARY_TYPE__GUEST_KALLSYMS:
	case DSO_BINARY_TYPE__JAVA_JIT:
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	case DSO_BINARY_TYPE__BPF_PROG_INFO:
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	case DSO_BINARY_TYPE__BPF_IMAGE:
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	case DSO_BINARY_TYPE__OOL:
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	case DSO_BINARY_TYPE__NOT_FOUND:
		ret = -1;
		break;
	}

	return ret;
}

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enum {
	COMP_ID__NONE = 0,
};

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static const struct {
	const char *fmt;
	int (*decompress)(const char *input, int output);
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	bool (*is_compressed)(const char *input);
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} compressions[] = {
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	[COMP_ID__NONE] = { .fmt = NULL, },
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#ifdef HAVE_ZLIB_SUPPORT
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	{ "gz", gzip_decompress_to_file, gzip_is_compressed },
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#endif
#ifdef HAVE_LZMA_SUPPORT
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	{ "xz", lzma_decompress_to_file, lzma_is_compressed },
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#endif
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	{ NULL, NULL, NULL },
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};

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static int is_supported_compression(const char *ext)
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{
	unsigned i;

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	for (i = 1; compressions[i].fmt; i++) {
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		if (!strcmp(ext, compressions[i].fmt))
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			return i;
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	}
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	return COMP_ID__NONE;
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}

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bool is_kernel_module(const char *pathname, int cpumode)
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{
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	struct kmod_path m;
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	int mode = cpumode & PERF_RECORD_MISC_CPUMODE_MASK;

	WARN_ONCE(mode != cpumode,
		  "Internal error: passing unmasked cpumode (%x) to is_kernel_module",
		  cpumode);

	switch (mode) {
	case PERF_RECORD_MISC_USER:
	case PERF_RECORD_MISC_HYPERVISOR:
	case PERF_RECORD_MISC_GUEST_USER:
		return false;
	/* Treat PERF_RECORD_MISC_CPUMODE_UNKNOWN as kernel */
	default:
		if (kmod_path__parse(&m, pathname)) {
			pr_err("Failed to check whether %s is a kernel module or not. Assume it is.",
					pathname);
			return true;
		}
	}
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	return m.kmod;
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}

bool dso__needs_decompress(struct dso *dso)
{
	return dso->symtab_type == DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE_COMP ||
		dso->symtab_type == DSO_BINARY_TYPE__GUEST_KMODULE_COMP;
}

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static int decompress_kmodule(struct dso *dso, const char *name,
			      char *pathname, size_t len)
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{
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	char tmpbuf[] = KMOD_DECOMP_NAME;
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	int fd = -1;

	if (!dso__needs_decompress(dso))
		return -1;

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	if (dso->comp == COMP_ID__NONE)
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		return -1;

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	/*
	 * We have proper compression id for DSO and yet the file
	 * behind the 'name' can still be plain uncompressed object.
	 *
	 * The reason is behind the logic we open the DSO object files,
	 * when we try all possible 'debug' objects until we find the
	 * data. So even if the DSO is represented by 'krava.xz' module,
	 * we can end up here opening ~/.debug/....23432432/debug' file
	 * which is not compressed.
	 *
	 * To keep this transparent, we detect this and return the file
	 * descriptor to the uncompressed file.
	 */
	if (!compressions[dso->comp].is_compressed(name))
		return open(name, O_RDONLY);

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	fd = mkstemp(tmpbuf);
	if (fd < 0) {
		dso->load_errno = errno;
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		return -1;
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	}

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	if (compressions[dso->comp].decompress(name, fd)) {
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		dso->load_errno = DSO_LOAD_ERRNO__DECOMPRESSION_FAILURE;
		close(fd);
		fd = -1;
	}

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	if (!pathname || (fd < 0))
		unlink(tmpbuf);

	if (pathname && (fd >= 0))
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		strlcpy(pathname, tmpbuf, len);
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	return fd;
}

int dso__decompress_kmodule_fd(struct dso *dso, const char *name)
{
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	return decompress_kmodule(dso, name, NULL, 0);
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}

int dso__decompress_kmodule_path(struct dso *dso, const char *name,
				 char *pathname, size_t len)
{
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	int fd = decompress_kmodule(dso, name, pathname, len);
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	close(fd);
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	return fd >= 0 ? 0 : -1;
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}

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/*
 * Parses kernel module specified in @path and updates
 * @m argument like:
 *
 *    @comp - true if @path contains supported compression suffix,
 *            false otherwise
 *    @kmod - true if @path contains '.ko' suffix in right position,
 *            false otherwise
 *    @name - if (@alloc_name && @kmod) is true, it contains strdup-ed base name
 *            of the kernel module without suffixes, otherwise strudup-ed
 *            base name of @path
 *    @ext  - if (@alloc_ext && @comp) is true, it contains strdup-ed string
 *            the compression suffix
 *
 * Returns 0 if there's no strdup error, -ENOMEM otherwise.
 */
int __kmod_path__parse(struct kmod_path *m, const char *path,
360
		       bool alloc_name)
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{
	const char *name = strrchr(path, '/');
	const char *ext  = strrchr(path, '.');
364
	bool is_simple_name = false;
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	memset(m, 0x0, sizeof(*m));
	name = name ? name + 1 : path;

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	/*
	 * '.' is also a valid character for module name. For example:
	 * [aaa.bbb] is a valid module name. '[' should have higher
	 * priority than '.ko' suffix.
	 *
	 * The kernel names are from machine__mmap_name. Such
	 * name should belong to kernel itself, not kernel module.
	 */
	if (name[0] == '[') {
		is_simple_name = true;
		if ((strncmp(name, "[kernel.kallsyms]", 17) == 0) ||
		    (strncmp(name, "[guest.kernel.kallsyms", 22) == 0) ||
		    (strncmp(name, "[vdso]", 6) == 0) ||
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		    (strncmp(name, "[vdso32]", 8) == 0) ||
		    (strncmp(name, "[vdsox32]", 9) == 0) ||
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		    (strncmp(name, "[vsyscall]", 10) == 0)) {
			m->kmod = false;

		} else
			m->kmod = true;
	}

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	/* No extension, just return name. */
392
	if ((ext == NULL) || is_simple_name) {
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		if (alloc_name) {
			m->name = strdup(name);
			return m->name ? 0 : -ENOMEM;
		}
		return 0;
	}

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	m->comp = is_supported_compression(ext + 1);
	if (m->comp > COMP_ID__NONE)
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		ext -= 3;

	/* Check .ko extension only if there's enough name left. */
	if (ext > name)
		m->kmod = !strncmp(ext, ".ko", 3);

	if (alloc_name) {
		if (m->kmod) {
			if (asprintf(&m->name, "[%.*s]", (int) (ext - name), name) == -1)
				return -ENOMEM;
		} else {
			if (asprintf(&m->name, "%s", name) == -1)
				return -ENOMEM;
		}

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		strreplace(m->name, '-', '_');
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	}

	return 0;
}

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void dso__set_module_info(struct dso *dso, struct kmod_path *m,
			  struct machine *machine)
{
	if (machine__is_host(machine))
		dso->symtab_type = DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE;
	else
		dso->symtab_type = DSO_BINARY_TYPE__GUEST_KMODULE;

	/* _KMODULE_COMP should be next to _KMODULE */
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	if (m->kmod && m->comp) {
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		dso->symtab_type++;
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		dso->comp = m->comp;
	}
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	dso__set_short_name(dso, strdup(m->name), true);
}

440
/*
441
 * Global list of open DSOs and the counter.
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 */
static LIST_HEAD(dso__data_open);
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static long dso__data_open_cnt;
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static pthread_mutex_t dso__data_open_lock = PTHREAD_MUTEX_INITIALIZER;
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static void dso__list_add(struct dso *dso)
{
	list_add_tail(&dso->data.open_entry, &dso__data_open);
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	dso__data_open_cnt++;
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}

static void dso__list_del(struct dso *dso)
{
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	list_del_init(&dso->data.open_entry);
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	WARN_ONCE(dso__data_open_cnt <= 0,
		  "DSO data fd counter out of bounds.");
	dso__data_open_cnt--;
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}

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static void close_first_dso(void);

static int do_open(char *name)
{
	int fd;
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	char sbuf[STRERR_BUFSIZE];
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	do {
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		fd = open(name, O_RDONLY|O_CLOEXEC);
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		if (fd >= 0)
			return fd;

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		pr_debug("dso open failed: %s\n",
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			 str_error_r(errno, sbuf, sizeof(sbuf)));
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		if (!dso__data_open_cnt || errno != EMFILE)
			break;

		close_first_dso();
	} while (1);

	return -1;
}

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static int __open_dso(struct dso *dso, struct machine *machine)
485
{
486
	int fd = -EINVAL;
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	char *root_dir = (char *)"";
	char *name = malloc(PATH_MAX);
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	bool decomp = false;
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	if (!name)
		return -ENOMEM;

	if (machine)
		root_dir = machine->root_dir;

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	if (dso__read_binary_type_filename(dso, dso->binary_type,
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					    root_dir, name, PATH_MAX))
		goto out;
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	if (!is_regular_file(name))
		goto out;
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	if (dso__needs_decompress(dso)) {
		char newpath[KMOD_DECOMP_LEN];
		size_t len = sizeof(newpath);

		if (dso__decompress_kmodule_path(dso, name, newpath, len) < 0) {
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			fd = -dso->load_errno;
			goto out;
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		}

513
		decomp = true;
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		strcpy(name, newpath);
	}

517
	fd = do_open(name);
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519
	if (decomp)
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		unlink(name);

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out:
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	free(name);
	return fd;
}

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static void check_data_close(void);

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/**
 * dso_close - Open DSO data file
 * @dso: dso object
 *
 * Open @dso's data file descriptor and updates
 * list/count of open DSO objects.
 */
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static int open_dso(struct dso *dso, struct machine *machine)
{
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	int fd;
	struct nscookie nsc;

	if (dso->binary_type != DSO_BINARY_TYPE__BUILD_ID_CACHE)
		nsinfo__mountns_enter(dso->nsinfo, &nsc);
	fd = __open_dso(dso, machine);
	if (dso->binary_type != DSO_BINARY_TYPE__BUILD_ID_CACHE)
		nsinfo__mountns_exit(&nsc);
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547
	if (fd >= 0) {
548
		dso__list_add(dso);
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		/*
		 * Check if we crossed the allowed number
		 * of opened DSOs and close one if needed.
		 */
		check_data_close();
	}
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	return fd;
}

static void close_data_fd(struct dso *dso)
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{
	if (dso->data.fd >= 0) {
		close(dso->data.fd);
		dso->data.fd = -1;
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		dso->data.file_size = 0;
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		dso__list_del(dso);
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	}
}

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/**
 * dso_close - Close DSO data file
 * @dso: dso object
 *
 * Close @dso's data file descriptor and updates
 * list/count of open DSO objects.
 */
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static void close_dso(struct dso *dso)
{
	close_data_fd(dso);
}

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static void close_first_dso(void)
{
	struct dso *dso;

	dso = list_first_entry(&dso__data_open, struct dso, data.open_entry);
	close_dso(dso);
}

static rlim_t get_fd_limit(void)
{
	struct rlimit l;
	rlim_t limit = 0;

	/* Allow half of the current open fd limit. */
	if (getrlimit(RLIMIT_NOFILE, &l) == 0) {
		if (l.rlim_cur == RLIM_INFINITY)
			limit = l.rlim_cur;
		else
			limit = l.rlim_cur / 2;
	} else {
		pr_err("failed to get fd limit\n");
		limit = 1;
	}

	return limit;
}

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static rlim_t fd_limit;

/*
 * Used only by tests/dso-data.c to reset the environment
 * for tests. I dont expect we should change this during
 * standard runtime.
 */
void reset_fd_limit(void)
616
{
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	fd_limit = 0;
}
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static bool may_cache_fd(void)
{
	if (!fd_limit)
		fd_limit = get_fd_limit();
624

625
	if (fd_limit == RLIM_INFINITY)
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		return true;

628
	return fd_limit > (rlim_t) dso__data_open_cnt;
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}

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/*
 * Check and close LRU dso if we crossed allowed limit
 * for opened dso file descriptors. The limit is half
 * of the RLIMIT_NOFILE files opened.
*/
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static void check_data_close(void)
{
	bool cache_fd = may_cache_fd();

	if (!cache_fd)
		close_first_dso();
}

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/**
 * dso__data_close - Close DSO data file
 * @dso: dso object
 *
 * External interface to close @dso's data file descriptor.
 */
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void dso__data_close(struct dso *dso)
{
652
	pthread_mutex_lock(&dso__data_open_lock);
653
	close_dso(dso);
654
	pthread_mutex_unlock(&dso__data_open_lock);
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}

657
static void try_to_open_dso(struct dso *dso, struct machine *machine)
658
{
659
	enum dso_binary_type binary_type_data[] = {
660 661 662 663 664 665
		DSO_BINARY_TYPE__BUILD_ID_CACHE,
		DSO_BINARY_TYPE__SYSTEM_PATH_DSO,
		DSO_BINARY_TYPE__NOT_FOUND,
	};
	int i = 0;

666
	if (dso->data.fd >= 0)
667
		return;
668 669 670

	if (dso->binary_type != DSO_BINARY_TYPE__NOT_FOUND) {
		dso->data.fd = open_dso(dso, machine);
671
		goto out;
672
	}
673 674

	do {
675
		dso->binary_type = binary_type_data[i++];
676

677 678 679
		dso->data.fd = open_dso(dso, machine);
		if (dso->data.fd >= 0)
			goto out;
680

681
	} while (dso->binary_type != DSO_BINARY_TYPE__NOT_FOUND);
682 683 684 685 686
out:
	if (dso->data.fd >= 0)
		dso->data.status = DSO_DATA_STATUS_OK;
	else
		dso->data.status = DSO_DATA_STATUS_ERROR;
687 688 689
}

/**
690
 * dso__data_get_fd - Get dso's data file descriptor
691 692 693 694
 * @dso: dso object
 * @machine: machine object
 *
 * External interface to find dso's file, open it and
695 696
 * returns file descriptor.  It should be paired with
 * dso__data_put_fd() if it returns non-negative value.
697
 */
698
int dso__data_get_fd(struct dso *dso, struct machine *machine)
699 700 701
{
	if (dso->data.status == DSO_DATA_STATUS_ERROR)
		return -1;
702

703 704 705
	if (pthread_mutex_lock(&dso__data_open_lock) < 0)
		return -1;

706
	try_to_open_dso(dso, machine);
707 708 709

	if (dso->data.fd < 0)
		pthread_mutex_unlock(&dso__data_open_lock);
710

711
	return dso->data.fd;
712 713
}

714 715 716 717 718
void dso__data_put_fd(struct dso *dso __maybe_unused)
{
	pthread_mutex_unlock(&dso__data_open_lock);
}

719 720 721 722 723 724 725 726 727 728 729 730
bool dso__data_status_seen(struct dso *dso, enum dso_data_status_seen by)
{
	u32 flag = 1 << by;

	if (dso->data.status_seen & flag)
		return true;

	dso->data.status_seen |= flag;

	return false;
}

731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768
static ssize_t bpf_read(struct dso *dso, u64 offset, char *data)
{
	struct bpf_prog_info_node *node;
	ssize_t size = DSO__DATA_CACHE_SIZE;
	u64 len;
	u8 *buf;

	node = perf_env__find_bpf_prog_info(dso->bpf_prog.env, dso->bpf_prog.id);
	if (!node || !node->info_linear) {
		dso->data.status = DSO_DATA_STATUS_ERROR;
		return -1;
	}

	len = node->info_linear->info.jited_prog_len;
	buf = (u8 *)(uintptr_t)node->info_linear->info.jited_prog_insns;

	if (offset >= len)
		return -1;

	size = (ssize_t)min(len - offset, (u64)size);
	memcpy(data, buf + offset, size);
	return size;
}

static int bpf_size(struct dso *dso)
{
	struct bpf_prog_info_node *node;

	node = perf_env__find_bpf_prog_info(dso->bpf_prog.env, dso->bpf_prog.id);
	if (!node || !node->info_linear) {
		dso->data.status = DSO_DATA_STATUS_ERROR;
		return -1;
	}

	dso->data.file_size = node->info_linear->info.jited_prog_len;
	return 0;
}

769
static void
770
dso_cache__free(struct dso *dso)
771
{
772
	struct rb_root *root = &dso->data.cache;
773 774
	struct rb_node *next = rb_first(root);

775
	pthread_mutex_lock(&dso->lock);
776 777 778 779 780 781 782 783
	while (next) {
		struct dso_cache *cache;

		cache = rb_entry(next, struct dso_cache, rb_node);
		next = rb_next(&cache->rb_node);
		rb_erase(&cache->rb_node, root);
		free(cache);
	}
784
	pthread_mutex_unlock(&dso->lock);
785 786
}

787
static struct dso_cache *__dso_cache__find(struct dso *dso, u64 offset)
788
{
789
	const struct rb_root *root = &dso->data.cache;
790 791
	struct rb_node * const *p = &root->rb_node;
	const struct rb_node *parent = NULL;
792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807
	struct dso_cache *cache;

	while (*p != NULL) {
		u64 end;

		parent = *p;
		cache = rb_entry(parent, struct dso_cache, rb_node);
		end = cache->offset + DSO__DATA_CACHE_SIZE;

		if (offset < cache->offset)
			p = &(*p)->rb_left;
		else if (offset >= end)
			p = &(*p)->rb_right;
		else
			return cache;
	}
808

809 810 811
	return NULL;
}

812 813
static struct dso_cache *
dso_cache__insert(struct dso *dso, struct dso_cache *new)
814
{
815
	struct rb_root *root = &dso->data.cache;
816 817 818 819 820
	struct rb_node **p = &root->rb_node;
	struct rb_node *parent = NULL;
	struct dso_cache *cache;
	u64 offset = new->offset;

821
	pthread_mutex_lock(&dso->lock);
822 823 824 825 826 827 828 829 830 831 832
	while (*p != NULL) {
		u64 end;

		parent = *p;
		cache = rb_entry(parent, struct dso_cache, rb_node);
		end = cache->offset + DSO__DATA_CACHE_SIZE;

		if (offset < cache->offset)
			p = &(*p)->rb_left;
		else if (offset >= end)
			p = &(*p)->rb_right;
833 834
		else
			goto out;
835 836 837 838
	}

	rb_link_node(&new->rb_node, parent, p);
	rb_insert_color(&new->rb_node, root);
839 840 841 842 843

	cache = NULL;
out:
	pthread_mutex_unlock(&dso->lock);
	return cache;
844 845
}

846 847
static ssize_t dso_cache__memcpy(struct dso_cache *cache, u64 offset, u8 *data,
				 u64 size, bool out)
848 849 850 851
{
	u64 cache_offset = offset - cache->offset;
	u64 cache_size   = min(cache->size - cache_offset, size);

852 853 854 855
	if (out)
		memcpy(data, cache->data + cache_offset, cache_size);
	else
		memcpy(cache->data + cache_offset, data, cache_size);
856 857 858
	return cache_size;
}

859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883
static ssize_t file_read(struct dso *dso, struct machine *machine,
			 u64 offset, char *data)
{
	ssize_t ret;

	pthread_mutex_lock(&dso__data_open_lock);

	/*
	 * dso->data.fd might be closed if other thread opened another
	 * file (dso) due to open file limit (RLIMIT_NOFILE).
	 */
	try_to_open_dso(dso, machine);

	if (dso->data.fd < 0) {
		dso->data.status = DSO_DATA_STATUS_ERROR;
		ret = -errno;
		goto out;
	}

	ret = pread(dso->data.fd, data, DSO__DATA_CACHE_SIZE, offset);
out:
	pthread_mutex_unlock(&dso__data_open_lock);
	return ret;
}

884 885 886
static struct dso_cache *dso_cache__populate(struct dso *dso,
					     struct machine *machine,
					     u64 offset, ssize_t *ret)
887
{
888
	u64 cache_offset = offset & DSO__DATA_CACHE_MASK;
889
	struct dso_cache *cache;
890
	struct dso_cache *old;
891

892
	cache = zalloc(sizeof(*cache) + DSO__DATA_CACHE_SIZE);
893 894 895 896
	if (!cache) {
		*ret = -ENOMEM;
		return NULL;
	}
897

898
	if (dso->binary_type == DSO_BINARY_TYPE__BPF_PROG_INFO)
899
		*ret = bpf_read(dso, cache_offset, cache->data);
900 901
	else if (dso->binary_type == DSO_BINARY_TYPE__OOL)
		*ret = DSO__DATA_CACHE_SIZE;
902
	else
903
		*ret = file_read(dso, machine, cache_offset, cache->data);
904

905 906 907 908
	if (*ret <= 0) {
		free(cache);
		return NULL;
	}
909

910 911
	cache->offset = cache_offset;
	cache->size   = *ret;
912

913 914 915 916 917
	old = dso_cache__insert(dso, cache);
	if (old) {
		/* we lose the race */
		free(cache);
		cache = old;
918
	}
919

920 921
	return cache;
}
922

923 924 925 926 927 928 929 930
static struct dso_cache *dso_cache__find(struct dso *dso,
					 struct machine *machine,
					 u64 offset,
					 ssize_t *ret)
{
	struct dso_cache *cache = __dso_cache__find(dso, offset);

	return cache ? cache : dso_cache__populate(dso, machine, offset, ret);
931 932
}

933 934
static ssize_t dso_cache_io(struct dso *dso, struct machine *machine,
			    u64 offset, u8 *data, ssize_t size, bool out)
935 936
{
	struct dso_cache *cache;
937
	ssize_t ret = 0;
938

939 940 941 942
	cache = dso_cache__find(dso, machine, offset, &ret);
	if (!cache)
		return ret;

943
	return dso_cache__memcpy(cache, offset, data, size, out);
944 945
}

946 947 948
/*
 * Reads and caches dso data DSO__DATA_CACHE_SIZE size chunks
 * in the rb_tree. Any read to already cached data is served
949
 * by cached data. Writes update the cache only, not the backing file.
950
 */
951 952
static ssize_t cached_io(struct dso *dso, struct machine *machine,
			 u64 offset, u8 *data, ssize_t size, bool out)
953 954 955 956 957 958 959
{
	ssize_t r = 0;
	u8 *p = data;

	do {
		ssize_t ret;

960
		ret = dso_cache_io(dso, machine, offset, p, size, out);
961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979
		if (ret < 0)
			return ret;

		/* Reached EOF, return what we have. */
		if (!ret)
			break;

		BUG_ON(ret > size);

		r      += ret;
		p      += ret;
		offset += ret;
		size   -= ret;

	} while (size);

	return r;
}

980
static int file_size(struct dso *dso, struct machine *machine)
981
{
982
	int ret = 0;
983
	struct stat st;
984
	char sbuf[STRERR_BUFSIZE];
985

986 987 988 989 990 991
	pthread_mutex_lock(&dso__data_open_lock);

	/*
	 * dso->data.fd might be closed if other thread opened another
	 * file (dso) due to open file limit (RLIMIT_NOFILE).
	 */
992 993
	try_to_open_dso(dso, machine);

994
	if (dso->data.fd < 0) {
995 996 997
		ret = -errno;
		dso->data.status = DSO_DATA_STATUS_ERROR;
		goto out;
998 999
	}

1000 1001 1002
	if (fstat(dso->data.fd, &st) < 0) {
		ret = -errno;
		pr_err("dso cache fstat failed: %s\n",
1003
		       str_error_r(errno, sbuf, sizeof(sbuf)));
1004 1005 1006 1007 1008 1009 1010 1011
		dso->data.status = DSO_DATA_STATUS_ERROR;
		goto out;
	}
	dso->data.file_size = st.st_size;

out:
	pthread_mutex_unlock(&dso__data_open_lock);
	return ret;
1012 1013
}

1014 1015 1016 1017 1018 1019 1020 1021
int dso__data_file_size(struct dso *dso, struct machine *machine)
{
	if (dso->data.file_size)
		return 0;

	if (dso->data.status == DSO_DATA_STATUS_ERROR)
		return -1;

1022 1023 1024
	if (dso->binary_type == DSO_BINARY_TYPE__BPF_PROG_INFO)
		return bpf_size(dso);

1025 1026 1027
	return file_size(dso, machine);
}

A
Adrian Hunter 已提交
1028 1029 1030 1031 1032 1033 1034 1035 1036
/**
 * dso__data_size - Return dso data size
 * @dso: dso object
 * @machine: machine object
 *
 * Return: dso data size
 */
off_t dso__data_size(struct dso *dso, struct machine *machine)
{
1037
	if (dso__data_file_size(dso, machine))
A
Adrian Hunter 已提交
1038 1039 1040 1041 1042 1043
		return -1;

	/* For now just estimate dso data size is close to file size */
	return dso->data.file_size;
}

1044 1045 1046
static ssize_t data_read_write_offset(struct dso *dso, struct machine *machine,
				      u64 offset, u8 *data, ssize_t size,
				      bool out)
1047
{
1048
	if (dso__data_file_size(dso, machine))
1049 1050 1051 1052 1053 1054 1055 1056 1057
		return -1;

	/* Check the offset sanity. */
	if (offset > dso->data.file_size)
		return -1;

	if (offset + size < offset)
		return -1;

1058
	return cached_io(dso, machine, offset, data, size, out);
1059 1060
}

1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071
/**
 * dso__data_read_offset - Read data from dso file offset
 * @dso: dso object
 * @machine: machine object
 * @offset: file offset
 * @data: buffer to store data
 * @size: size of the @data buffer
 *
 * External interface to read data from dso file offset. Open
 * dso data file and use cached_read to get the data.
 */
1072 1073 1074
ssize_t dso__data_read_offset(struct dso *dso, struct machine *machine,
			      u64 offset, u8 *data, ssize_t size)
{
1075
	if (dso->data.status == DSO_DATA_STATUS_ERROR)
1076 1077
		return -1;

1078
	return data_read_write_offset(dso, machine, offset, data, size, true);
1079 1080
}

1081 1082 1083 1084 1085 1086 1087 1088 1089 1090
/**
 * dso__data_read_addr - Read data from dso address
 * @dso: dso object
 * @machine: machine object
 * @add: virtual memory address
 * @data: buffer to store data
 * @size: size of the @data buffer
 *
 * External interface to read data from dso address.
 */
1091 1092 1093 1094 1095 1096 1097 1098
ssize_t dso__data_read_addr(struct dso *dso, struct map *map,
			    struct machine *machine, u64 addr,
			    u8 *data, ssize_t size)
{
	u64 offset = map->map_ip(map, addr);
	return dso__data_read_offset(dso, machine, offset, data, size);
}

1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138
/**
 * dso__data_write_cache_offs - Write data to dso data cache at file offset
 * @dso: dso object
 * @machine: machine object
 * @offset: file offset
 * @data: buffer to write
 * @size: size of the @data buffer
 *
 * Write into the dso file data cache, but do not change the file itself.
 */
ssize_t dso__data_write_cache_offs(struct dso *dso, struct machine *machine,
				   u64 offset, const u8 *data_in, ssize_t size)
{
	u8 *data = (u8 *)data_in; /* cast away const to use same fns for r/w */

	if (dso->data.status == DSO_DATA_STATUS_ERROR)
		return -1;

	return data_read_write_offset(dso, machine, offset, data, size, false);
}

/**
 * dso__data_write_cache_addr - Write data to dso data cache at dso address
 * @dso: dso object
 * @machine: machine object
 * @add: virtual memory address
 * @data: buffer to write
 * @size: size of the @data buffer
 *
 * External interface to write into the dso file data cache, but do not change
 * the file itself.
 */
ssize_t dso__data_write_cache_addr(struct dso *dso, struct map *map,
				   struct machine *machine, u64 addr,
				   const u8 *data, ssize_t size)
{
	u64 offset = map->map_ip(map, addr);
	return dso__data_write_cache_offs(dso, machine, offset, data, size);
}

1139 1140 1141 1142 1143 1144
struct map *dso__new_map(const char *name)
{
	struct map *map = NULL;
	struct dso *dso = dso__new(name);

	if (dso)
1145
		map = map__new2(0, dso);
1146 1147 1148 1149

	return map;
}

1150 1151
struct dso *machine__findnew_kernel(struct machine *machine, const char *name,
				    const char *short_name, int dso_type)
1152 1153 1154 1155
{
	/*
	 * The kernel dso could be created by build_id processing.
	 */
1156
	struct dso *dso = machine__findnew_dso(machine, name);
1157 1158 1159 1160 1161 1162

	/*
	 * We need to run this in all cases, since during the build_id
	 * processing we had no idea this was the kernel dso.
	 */
	if (dso != NULL) {
1163
		dso__set_short_name(dso, short_name, false);
1164 1165 1166 1167 1168 1169
		dso->kernel = dso_type;
	}

	return dso;
}

1170
static void dso__set_long_name_id(struct dso *dso, const char *name, struct dso_id *id, bool name_allocated)
1171
{
1172 1173
	struct rb_root *root = dso->root;

1174 1175
	if (name == NULL)
		return;
1176 1177

	if (dso->long_name_allocated)
1178
		free((char *)dso->long_name);
1179

1180 1181 1182
	if (root) {
		rb_erase(&dso->rb_node, root);
		/*
1183 1184
		 * __dsos__findnew_link_by_longname_id() isn't guaranteed to
		 * add it back, so a clean removal is required here.
1185 1186 1187 1188 1189
		 */
		RB_CLEAR_NODE(&dso->rb_node);
		dso->root = NULL;
	}

1190 1191 1192
	dso->long_name		 = name;
	dso->long_name_len	 = strlen(name);
	dso->long_name_allocated = name_allocated;
1193 1194

	if (root)
1195 1196 1197 1198 1199 1200
		__dsos__findnew_link_by_longname_id(root, dso, NULL, id);
}

void dso__set_long_name(struct dso *dso, const char *name, bool name_allocated)
{
	dso__set_long_name_id(dso, name, NULL, name_allocated);
1201 1202
}

1203
void dso__set_short_name(struct dso *dso, const char *name, bool name_allocated)
1204 1205 1206
{
	if (name == NULL)
		return;
1207 1208 1209 1210 1211 1212 1213

	if (dso->short_name_allocated)
		free((char *)dso->short_name);

	dso->short_name		  = name;
	dso->short_name_len	  = strlen(name);
	dso->short_name_allocated = name_allocated;
1214 1215 1216 1217 1218 1219
}

int dso__name_len(const struct dso *dso)
{
	if (!dso)
		return strlen("[unknown]");
1220
	if (verbose > 0)
1221 1222 1223 1224 1225
		return dso->long_name_len;

	return dso->short_name_len;
}

1226
bool dso__loaded(const struct dso *dso)
1227
{
1228
	return dso->loaded;
1229 1230
}

1231
bool dso__sorted_by_name(const struct dso *dso)
1232
{
1233
	return dso->sorted_by_name;
1234 1235
}

1236
void dso__set_sorted_by_name(struct dso *dso)
1237
{
1238
	dso->sorted_by_name = true;
1239 1240
}

1241
struct dso *dso__new_id(const char *name, struct dso_id *id)
1242 1243 1244 1245 1246
{
	struct dso *dso = calloc(1, sizeof(*dso) + strlen(name) + 1);

	if (dso != NULL) {
		strcpy(dso->name, name);
1247 1248 1249
		if (id)
			dso->id = *id;
		dso__set_long_name_id(dso, dso->name, id, false);
1250
		dso__set_short_name(dso, dso->name, false);
1251
		dso->symbols = dso->symbol_names = RB_ROOT_CACHED;
1252
		dso->data.cache = RB_ROOT;
1253 1254
		dso->inlined_nodes = RB_ROOT_CACHED;
		dso->srclines = RB_ROOT_CACHED;
1255
		dso->data.fd = -1;
1256
		dso->data.status = DSO_DATA_STATUS_UNKNOWN;
1257
		dso->symtab_type = DSO_BINARY_TYPE__NOT_FOUND;
1258
		dso->binary_type = DSO_BINARY_TYPE__NOT_FOUND;
1259
		dso->is_64_bit = (sizeof(void *) == 8);
1260
		dso->loaded = 0;
1261
		dso->rel = 0;
1262 1263
		dso->sorted_by_name = 0;
		dso->has_build_id = 0;
1264
		dso->has_srcline = 1;
1265
		dso->a2l_fails = 1;
1266
		dso->kernel = DSO_SPACE__USER;
1267
		dso->needs_swap = DSO_SWAP__UNSET;
1268
		dso->comp = COMP_ID__NONE;
1269
		RB_CLEAR_NODE(&dso->rb_node);
1270
		dso->root = NULL;
1271
		INIT_LIST_HEAD(&dso->node);
1272
		INIT_LIST_HEAD(&dso->data.open_entry);
1273
		pthread_mutex_init(&dso->lock, NULL);
1274
		refcount_set(&dso->refcnt, 1);
1275 1276 1277 1278 1279
	}

	return dso;
}

1280 1281 1282 1283 1284
struct dso *dso__new(const char *name)
{
	return dso__new_id(name, NULL);
}

1285 1286
void dso__delete(struct dso *dso)
{
1287 1288 1289
	if (!RB_EMPTY_NODE(&dso->rb_node))
		pr_err("DSO %s is still in rbtree when being deleted!\n",
		       dso->long_name);
1290 1291 1292

	/* free inlines first, as they reference symbols */
	inlines__tree_delete(&dso->inlined_nodes);
1293
	srcline__tree_delete(&dso->srclines);
1294
	symbols__delete(&dso->symbols);
1295 1296

	if (dso->short_name_allocated) {
1297
		zfree((char **)&dso->short_name);
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		dso->short_name_allocated = false;
	}

	if (dso->long_name_allocated) {
1302
		zfree((char **)&dso->long_name);
1303 1304 1305
		dso->long_name_allocated = false;
	}

1306
	dso__data_close(dso);
1307
	auxtrace_cache__free(dso->auxtrace_cache);
1308
	dso_cache__free(dso);
1309
	dso__free_a2l(dso);
1310
	zfree(&dso->symsrc_filename);
1311
	nsinfo__zput(dso->nsinfo);
1312
	pthread_mutex_destroy(&dso->lock);
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	free(dso);
}

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struct dso *dso__get(struct dso *dso)
{
	if (dso)
1319
		refcount_inc(&dso->refcnt);
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	return dso;
}

void dso__put(struct dso *dso)
{
1325
	if (dso && refcount_dec_and_test(&dso->refcnt))
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		dso__delete(dso);
}

1329
void dso__set_build_id(struct dso *dso, struct build_id *bid)
1330
{
1331
	dso->bid = *bid;
1332 1333 1334
	dso->has_build_id = 1;
}

1335
bool dso__build_id_equal(const struct dso *dso, struct build_id *bid)
1336
{
1337 1338
	return dso->bid.size == bid->size &&
	       memcmp(dso->bid.data, bid->data, dso->bid.size) == 0;
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}

void dso__read_running_kernel_build_id(struct dso *dso, struct machine *machine)
{
	char path[PATH_MAX];

	if (machine__is_default_guest(machine))
		return;
	sprintf(path, "%s/sys/kernel/notes", machine->root_dir);
1348
	if (sysfs__read_build_id(path, &dso->bid) == 0)
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		dso->has_build_id = true;
}

int dso__kernel_module_get_build_id(struct dso *dso,
				    const char *root_dir)
{
	char filename[PATH_MAX];
	/*
	 * kernel module short names are of the form "[module]" and
	 * we need just "module" here.
	 */
	const char *name = dso->short_name + 1;

	snprintf(filename, sizeof(filename),
		 "%s/sys/module/%.*s/notes/.note.gnu.build-id",
		 root_dir, (int)strlen(name) - 1, name);

1366
	if (sysfs__read_build_id(filename, &dso->bid) == 0)
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		dso->has_build_id = true;

	return 0;
}

1372
static size_t dso__fprintf_buildid(struct dso *dso, FILE *fp)
1373
{
1374
	char sbuild_id[SBUILD_ID_SIZE];
1375

1376
	build_id__sprintf(&dso->bid, sbuild_id);
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	return fprintf(fp, "%s", sbuild_id);
}

1380
size_t dso__fprintf(struct dso *dso, FILE *fp)
1381 1382 1383 1384 1385 1386
{
	struct rb_node *nd;
	size_t ret = fprintf(fp, "dso: %s (", dso->short_name);

	if (dso->short_name != dso->long_name)
		ret += fprintf(fp, "%s, ", dso->long_name);
1387
	ret += fprintf(fp, "%sloaded, ", dso__loaded(dso) ? "" : "NOT ");
1388 1389
	ret += dso__fprintf_buildid(dso, fp);
	ret += fprintf(fp, ")\n");
1390
	for (nd = rb_first_cached(&dso->symbols); nd; nd = rb_next(nd)) {
1391 1392 1393 1394 1395 1396
		struct symbol *pos = rb_entry(nd, struct symbol, rb_node);
		ret += symbol__fprintf(pos, fp);
	}

	return ret;
}
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enum dso_type dso__type(struct dso *dso, struct machine *machine)
{
	int fd;
1401
	enum dso_type type = DSO__TYPE_UNKNOWN;
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1403 1404 1405 1406 1407
	fd = dso__data_get_fd(dso, machine);
	if (fd >= 0) {
		type = dso__type_fd(fd);
		dso__data_put_fd(dso);
	}
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1409
	return type;
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}
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int dso__strerror_load(struct dso *dso, char *buf, size_t buflen)
{
	int idx, errnum = dso->load_errno;
	/*
	 * This must have a same ordering as the enum dso_load_errno.
	 */
	static const char *dso_load__error_str[] = {
	"Internal tools/perf/ library error",
	"Invalid ELF file",
	"Can not read build id",
	"Mismatching build id",
	"Decompression failure",
	};

	BUG_ON(buflen == 0);

	if (errnum >= 0) {
1429
		const char *err = str_error_r(errnum, buf, buflen);
1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443

		if (err != buf)
			scnprintf(buf, buflen, "%s", err);

		return 0;
	}

	if (errnum <  __DSO_LOAD_ERRNO__START || errnum >= __DSO_LOAD_ERRNO__END)
		return -1;

	idx = errnum - __DSO_LOAD_ERRNO__START;
	scnprintf(buf, buflen, "%s", dso_load__error_str[idx]);
	return 0;
}