mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
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1e5f6771c2
Instead of having a series of function pointers that gets assigned to the Elf64 or Elf32 versions, put them all into a single structure and use that. Add the helper function that chooses the structure into the macros that build the different versions of the elf functions. Link: https://lore.kernel.org/all/CAHk-=wiafEyX7UgOeZgvd6fvuByE5WXUPh9599kwOc_d-pdeug@mail.gmail.com/ Cc: bpf <bpf@vger.kernel.org> Cc: Masami Hiramatsu <mhiramat@kernel.org> Cc: Mark Rutland <mark.rutland@arm.com> Cc: Mathieu Desnoyers <mathieu.desnoyers@efficios.com> Cc: Andrew Morton <akpm@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Masahiro Yamada <masahiroy@kernel.org> Cc: Nathan Chancellor <nathan@kernel.org> Cc: Nicolas Schier <nicolas@fjasle.eu> Cc: Zheng Yejian <zhengyejian1@huawei.com> Cc: Martin Kelly <martin.kelly@crowdstrike.com> Cc: Christophe Leroy <christophe.leroy@csgroup.eu> Cc: Josh Poimboeuf <jpoimboe@redhat.com> Cc: Stephen Rothwell <sfr@canb.auug.org.au> Link: https://lore.kernel.org/20250110075459.13d4b94c@gandalf.local.home Suggested-by: Linus Torvalds <torvalds@linux-foundation.org> Signed-off-by: Steven Rostedt (Google) <rostedt@goodmis.org>
1019 lines
23 KiB
C
1019 lines
23 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* sorttable.c: Sort the kernel's table
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*
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* Added ORC unwind tables sort support and other updates:
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* Copyright (C) 1999-2019 Alibaba Group Holding Limited. by:
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* Shile Zhang <shile.zhang@linux.alibaba.com>
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*
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* Copyright 2011 - 2012 Cavium, Inc.
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*
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* Based on code taken from recortmcount.c which is:
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*
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* Copyright 2009 John F. Reiser <jreiser@BitWagon.com>. All rights reserved.
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*
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* Restructured to fit Linux format, as well as other updates:
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* Copyright 2010 Steven Rostedt <srostedt@redhat.com>, Red Hat Inc.
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*/
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/*
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* Strategy: alter the vmlinux file in-place.
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*/
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#include <sys/types.h>
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#include <sys/mman.h>
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#include <sys/stat.h>
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#include <getopt.h>
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#include <elf.h>
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#include <fcntl.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <errno.h>
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#include <pthread.h>
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#include <tools/be_byteshift.h>
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#include <tools/le_byteshift.h>
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#ifndef EM_ARCOMPACT
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#define EM_ARCOMPACT 93
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#endif
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#ifndef EM_XTENSA
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#define EM_XTENSA 94
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#endif
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#ifndef EM_AARCH64
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#define EM_AARCH64 183
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#endif
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#ifndef EM_MICROBLAZE
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#define EM_MICROBLAZE 189
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#endif
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#ifndef EM_ARCV2
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#define EM_ARCV2 195
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#endif
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#ifndef EM_RISCV
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#define EM_RISCV 243
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#endif
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#ifndef EM_LOONGARCH
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#define EM_LOONGARCH 258
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#endif
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typedef union {
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Elf32_Ehdr e32;
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Elf64_Ehdr e64;
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} Elf_Ehdr;
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typedef union {
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Elf32_Shdr e32;
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Elf64_Shdr e64;
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} Elf_Shdr;
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typedef union {
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Elf32_Sym e32;
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Elf64_Sym e64;
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} Elf_Sym;
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static uint32_t (*r)(const uint32_t *);
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static uint16_t (*r2)(const uint16_t *);
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static uint64_t (*r8)(const uint64_t *);
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static void (*w)(uint32_t, uint32_t *);
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typedef void (*table_sort_t)(char *, int);
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static struct elf_funcs {
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int (*compare_extable)(const void *a, const void *b);
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uint64_t (*ehdr_shoff)(Elf_Ehdr *ehdr);
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uint16_t (*ehdr_shstrndx)(Elf_Ehdr *ehdr);
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uint16_t (*ehdr_shentsize)(Elf_Ehdr *ehdr);
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uint16_t (*ehdr_shnum)(Elf_Ehdr *ehdr);
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uint64_t (*shdr_addr)(Elf_Shdr *shdr);
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uint64_t (*shdr_offset)(Elf_Shdr *shdr);
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uint64_t (*shdr_size)(Elf_Shdr *shdr);
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uint64_t (*shdr_entsize)(Elf_Shdr *shdr);
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uint32_t (*shdr_link)(Elf_Shdr *shdr);
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uint32_t (*shdr_name)(Elf_Shdr *shdr);
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uint32_t (*shdr_type)(Elf_Shdr *shdr);
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uint8_t (*sym_type)(Elf_Sym *sym);
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uint32_t (*sym_name)(Elf_Sym *sym);
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uint64_t (*sym_value)(Elf_Sym *sym);
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uint16_t (*sym_shndx)(Elf_Sym *sym);
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} e;
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static uint64_t ehdr64_shoff(Elf_Ehdr *ehdr)
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{
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return r8(&ehdr->e64.e_shoff);
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}
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static uint64_t ehdr32_shoff(Elf_Ehdr *ehdr)
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{
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return r(&ehdr->e32.e_shoff);
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}
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static uint64_t ehdr_shoff(Elf_Ehdr *ehdr)
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{
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return e.ehdr_shoff(ehdr);
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}
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#define EHDR_HALF(fn_name) \
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static uint16_t ehdr64_##fn_name(Elf_Ehdr *ehdr) \
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{ \
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return r2(&ehdr->e64.e_##fn_name); \
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} \
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\
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static uint16_t ehdr32_##fn_name(Elf_Ehdr *ehdr) \
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{ \
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return r2(&ehdr->e32.e_##fn_name); \
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} \
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\
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static uint16_t ehdr_##fn_name(Elf_Ehdr *ehdr) \
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{ \
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return e.ehdr_##fn_name(ehdr); \
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}
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EHDR_HALF(shentsize)
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EHDR_HALF(shstrndx)
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EHDR_HALF(shnum)
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#define SHDR_WORD(fn_name) \
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static uint32_t shdr64_##fn_name(Elf_Shdr *shdr) \
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{ \
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return r(&shdr->e64.sh_##fn_name); \
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} \
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\
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static uint32_t shdr32_##fn_name(Elf_Shdr *shdr) \
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{ \
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return r(&shdr->e32.sh_##fn_name); \
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} \
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\
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static uint32_t shdr_##fn_name(Elf_Shdr *shdr) \
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{ \
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return e.shdr_##fn_name(shdr); \
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}
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#define SHDR_ADDR(fn_name) \
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static uint64_t shdr64_##fn_name(Elf_Shdr *shdr) \
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{ \
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return r8(&shdr->e64.sh_##fn_name); \
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} \
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\
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static uint64_t shdr32_##fn_name(Elf_Shdr *shdr) \
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{ \
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return r(&shdr->e32.sh_##fn_name); \
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} \
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\
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static uint64_t shdr_##fn_name(Elf_Shdr *shdr) \
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{ \
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return e.shdr_##fn_name(shdr); \
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}
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#define SHDR_WORD(fn_name) \
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static uint32_t shdr64_##fn_name(Elf_Shdr *shdr) \
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{ \
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return r(&shdr->e64.sh_##fn_name); \
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} \
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\
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static uint32_t shdr32_##fn_name(Elf_Shdr *shdr) \
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{ \
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return r(&shdr->e32.sh_##fn_name); \
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} \
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static uint32_t shdr_##fn_name(Elf_Shdr *shdr) \
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{ \
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return e.shdr_##fn_name(shdr); \
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}
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SHDR_ADDR(addr)
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SHDR_ADDR(offset)
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SHDR_ADDR(size)
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SHDR_ADDR(entsize)
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SHDR_WORD(link)
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SHDR_WORD(name)
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SHDR_WORD(type)
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#define SYM_ADDR(fn_name) \
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static uint64_t sym64_##fn_name(Elf_Sym *sym) \
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{ \
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return r8(&sym->e64.st_##fn_name); \
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} \
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\
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static uint64_t sym32_##fn_name(Elf_Sym *sym) \
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{ \
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return r(&sym->e32.st_##fn_name); \
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} \
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\
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static uint64_t sym_##fn_name(Elf_Sym *sym) \
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{ \
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return e.sym_##fn_name(sym); \
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}
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#define SYM_WORD(fn_name) \
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static uint32_t sym64_##fn_name(Elf_Sym *sym) \
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{ \
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return r(&sym->e64.st_##fn_name); \
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} \
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\
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static uint32_t sym32_##fn_name(Elf_Sym *sym) \
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{ \
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return r(&sym->e32.st_##fn_name); \
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} \
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\
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static uint32_t sym_##fn_name(Elf_Sym *sym) \
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{ \
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return e.sym_##fn_name(sym); \
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}
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#define SYM_HALF(fn_name) \
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static uint16_t sym64_##fn_name(Elf_Sym *sym) \
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{ \
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return r2(&sym->e64.st_##fn_name); \
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} \
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\
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static uint16_t sym32_##fn_name(Elf_Sym *sym) \
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{ \
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return r2(&sym->e32.st_##fn_name); \
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} \
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\
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static uint16_t sym_##fn_name(Elf_Sym *sym) \
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{ \
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return e.sym_##fn_name(sym); \
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}
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static uint8_t sym64_type(Elf_Sym *sym)
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{
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return ELF64_ST_TYPE(sym->e64.st_info);
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}
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static uint8_t sym32_type(Elf_Sym *sym)
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{
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return ELF32_ST_TYPE(sym->e32.st_info);
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}
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static uint8_t sym_type(Elf_Sym *sym)
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{
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return e.sym_type(sym);
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}
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SYM_ADDR(value)
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SYM_WORD(name)
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SYM_HALF(shndx)
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/*
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* Get the whole file as a programming convenience in order to avoid
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* malloc+lseek+read+free of many pieces. If successful, then mmap
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* avoids copying unused pieces; else just read the whole file.
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* Open for both read and write.
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*/
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static void *mmap_file(char const *fname, size_t *size)
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{
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int fd;
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struct stat sb;
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void *addr = NULL;
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fd = open(fname, O_RDWR);
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if (fd < 0) {
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perror(fname);
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return NULL;
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}
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if (fstat(fd, &sb) < 0) {
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perror(fname);
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goto out;
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}
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if (!S_ISREG(sb.st_mode)) {
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fprintf(stderr, "not a regular file: %s\n", fname);
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goto out;
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}
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addr = mmap(0, sb.st_size, PROT_READ|PROT_WRITE, MAP_SHARED, fd, 0);
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if (addr == MAP_FAILED) {
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fprintf(stderr, "Could not mmap file: %s\n", fname);
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goto out;
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}
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*size = sb.st_size;
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out:
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close(fd);
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return addr;
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}
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static uint32_t rbe(const uint32_t *x)
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{
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return get_unaligned_be32(x);
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}
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static uint16_t r2be(const uint16_t *x)
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{
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return get_unaligned_be16(x);
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}
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static uint64_t r8be(const uint64_t *x)
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{
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return get_unaligned_be64(x);
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}
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static uint32_t rle(const uint32_t *x)
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{
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return get_unaligned_le32(x);
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}
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static uint16_t r2le(const uint16_t *x)
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{
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return get_unaligned_le16(x);
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}
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static uint64_t r8le(const uint64_t *x)
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{
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return get_unaligned_le64(x);
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}
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static void wbe(uint32_t val, uint32_t *x)
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{
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put_unaligned_be32(val, x);
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}
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static void wle(uint32_t val, uint32_t *x)
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{
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put_unaligned_le32(val, x);
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}
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/*
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* Move reserved section indices SHN_LORESERVE..SHN_HIRESERVE out of
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* the way to -256..-1, to avoid conflicting with real section
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* indices.
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*/
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#define SPECIAL(i) ((i) - (SHN_HIRESERVE + 1))
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static inline int is_shndx_special(unsigned int i)
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{
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return i != SHN_XINDEX && i >= SHN_LORESERVE && i <= SHN_HIRESERVE;
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}
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/* Accessor for sym->st_shndx, hides ugliness of "64k sections" */
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static inline unsigned int get_secindex(unsigned int shndx,
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unsigned int sym_offs,
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const Elf32_Word *symtab_shndx_start)
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{
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if (is_shndx_special(shndx))
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return SPECIAL(shndx);
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if (shndx != SHN_XINDEX)
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return shndx;
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return r(&symtab_shndx_start[sym_offs]);
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}
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static int compare_extable_32(const void *a, const void *b)
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{
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Elf32_Addr av = r(a);
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Elf32_Addr bv = r(b);
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if (av < bv)
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return -1;
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return av > bv;
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}
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static int compare_extable_64(const void *a, const void *b)
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{
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Elf64_Addr av = r8(a);
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Elf64_Addr bv = r8(b);
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if (av < bv)
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return -1;
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return av > bv;
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}
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static int compare_extable(const void *a, const void *b)
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{
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return e.compare_extable(a, b);
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}
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static inline void *get_index(void *start, int entsize, int index)
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{
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return start + (entsize * index);
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}
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static int extable_ent_size;
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static int long_size;
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#ifdef UNWINDER_ORC_ENABLED
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/* ORC unwinder only support X86_64 */
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#include <asm/orc_types.h>
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#define ERRSTR_MAXSZ 256
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static char g_err[ERRSTR_MAXSZ];
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static int *g_orc_ip_table;
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static struct orc_entry *g_orc_table;
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static pthread_t orc_sort_thread;
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static inline unsigned long orc_ip(const int *ip)
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{
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return (unsigned long)ip + *ip;
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}
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static int orc_sort_cmp(const void *_a, const void *_b)
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{
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struct orc_entry *orc_a, *orc_b;
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const int *a = g_orc_ip_table + *(int *)_a;
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const int *b = g_orc_ip_table + *(int *)_b;
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unsigned long a_val = orc_ip(a);
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unsigned long b_val = orc_ip(b);
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if (a_val > b_val)
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return 1;
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if (a_val < b_val)
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return -1;
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/*
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* The "weak" section terminator entries need to always be on the left
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* to ensure the lookup code skips them in favor of real entries.
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* These terminator entries exist to handle any gaps created by
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* whitelisted .o files which didn't get objtool generation.
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*/
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orc_a = g_orc_table + (a - g_orc_ip_table);
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orc_b = g_orc_table + (b - g_orc_ip_table);
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if (orc_a->type == ORC_TYPE_UNDEFINED && orc_b->type == ORC_TYPE_UNDEFINED)
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return 0;
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return orc_a->type == ORC_TYPE_UNDEFINED ? -1 : 1;
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}
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static void *sort_orctable(void *arg)
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{
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int i;
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int *idxs = NULL;
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int *tmp_orc_ip_table = NULL;
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struct orc_entry *tmp_orc_table = NULL;
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unsigned int *orc_ip_size = (unsigned int *)arg;
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unsigned int num_entries = *orc_ip_size / sizeof(int);
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unsigned int orc_size = num_entries * sizeof(struct orc_entry);
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idxs = (int *)malloc(*orc_ip_size);
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if (!idxs) {
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snprintf(g_err, ERRSTR_MAXSZ, "malloc idxs: %s",
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strerror(errno));
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pthread_exit(g_err);
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}
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tmp_orc_ip_table = (int *)malloc(*orc_ip_size);
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if (!tmp_orc_ip_table) {
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snprintf(g_err, ERRSTR_MAXSZ, "malloc tmp_orc_ip_table: %s",
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strerror(errno));
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pthread_exit(g_err);
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}
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tmp_orc_table = (struct orc_entry *)malloc(orc_size);
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if (!tmp_orc_table) {
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snprintf(g_err, ERRSTR_MAXSZ, "malloc tmp_orc_table: %s",
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strerror(errno));
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|
pthread_exit(g_err);
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|
}
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|
|
/* initialize indices array, convert ip_table to absolute address */
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for (i = 0; i < num_entries; i++) {
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idxs[i] = i;
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tmp_orc_ip_table[i] = g_orc_ip_table[i] + i * sizeof(int);
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}
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memcpy(tmp_orc_table, g_orc_table, orc_size);
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|
qsort(idxs, num_entries, sizeof(int), orc_sort_cmp);
|
|
|
|
for (i = 0; i < num_entries; i++) {
|
|
if (idxs[i] == i)
|
|
continue;
|
|
|
|
/* convert back to relative address */
|
|
g_orc_ip_table[i] = tmp_orc_ip_table[idxs[i]] - i * sizeof(int);
|
|
g_orc_table[i] = tmp_orc_table[idxs[i]];
|
|
}
|
|
|
|
free(idxs);
|
|
free(tmp_orc_ip_table);
|
|
free(tmp_orc_table);
|
|
pthread_exit(NULL);
|
|
}
|
|
#endif
|
|
|
|
#ifdef MCOUNT_SORT_ENABLED
|
|
static pthread_t mcount_sort_thread;
|
|
|
|
struct elf_mcount_loc {
|
|
Elf_Ehdr *ehdr;
|
|
Elf_Shdr *init_data_sec;
|
|
uint64_t start_mcount_loc;
|
|
uint64_t stop_mcount_loc;
|
|
};
|
|
|
|
/* Sort the addresses stored between __start_mcount_loc to __stop_mcount_loc in vmlinux */
|
|
static void *sort_mcount_loc(void *arg)
|
|
{
|
|
struct elf_mcount_loc *emloc = (struct elf_mcount_loc *)arg;
|
|
uint64_t offset = emloc->start_mcount_loc - shdr_addr(emloc->init_data_sec)
|
|
+ shdr_offset(emloc->init_data_sec);
|
|
uint64_t count = emloc->stop_mcount_loc - emloc->start_mcount_loc;
|
|
unsigned char *start_loc = (void *)emloc->ehdr + offset;
|
|
|
|
qsort(start_loc, count/long_size, long_size, compare_extable);
|
|
return NULL;
|
|
}
|
|
|
|
/* Get the address of __start_mcount_loc and __stop_mcount_loc in System.map */
|
|
static void get_mcount_loc(struct elf_mcount_loc *emloc, Elf_Shdr *symtab_sec,
|
|
const char *strtab)
|
|
{
|
|
Elf_Sym *sym, *end_sym;
|
|
int symentsize = shdr_entsize(symtab_sec);
|
|
int found = 0;
|
|
|
|
sym = (void *)emloc->ehdr + shdr_offset(symtab_sec);
|
|
end_sym = (void *)sym + shdr_size(symtab_sec);
|
|
|
|
while (sym < end_sym) {
|
|
if (!strcmp(strtab + sym_name(sym), "__start_mcount_loc")) {
|
|
emloc->start_mcount_loc = sym_value(sym);
|
|
if (++found == 2)
|
|
break;
|
|
} else if (!strcmp(strtab + sym_name(sym), "__stop_mcount_loc")) {
|
|
emloc->stop_mcount_loc = sym_value(sym);
|
|
if (++found == 2)
|
|
break;
|
|
}
|
|
sym = (void *)sym + symentsize;
|
|
}
|
|
|
|
if (!emloc->start_mcount_loc) {
|
|
fprintf(stderr, "get start_mcount_loc error!");
|
|
return;
|
|
}
|
|
|
|
if (!emloc->stop_mcount_loc) {
|
|
fprintf(stderr, "get stop_mcount_loc error!");
|
|
return;
|
|
}
|
|
}
|
|
#endif
|
|
|
|
static int do_sort(Elf_Ehdr *ehdr,
|
|
char const *const fname,
|
|
table_sort_t custom_sort)
|
|
{
|
|
int rc = -1;
|
|
Elf_Shdr *shdr_start;
|
|
Elf_Shdr *strtab_sec = NULL;
|
|
Elf_Shdr *symtab_sec = NULL;
|
|
Elf_Shdr *extab_sec = NULL;
|
|
Elf_Shdr *string_sec;
|
|
Elf_Sym *sym;
|
|
const Elf_Sym *symtab;
|
|
Elf32_Word *symtab_shndx = NULL;
|
|
Elf_Sym *sort_needed_sym = NULL;
|
|
Elf_Shdr *sort_needed_sec;
|
|
uint32_t *sort_needed_loc;
|
|
void *sym_start;
|
|
void *sym_end;
|
|
const char *secstrings;
|
|
const char *strtab;
|
|
char *extab_image;
|
|
int sort_need_index;
|
|
int symentsize;
|
|
int shentsize;
|
|
int idx;
|
|
int i;
|
|
unsigned int shnum;
|
|
unsigned int shstrndx;
|
|
#ifdef MCOUNT_SORT_ENABLED
|
|
struct elf_mcount_loc mstruct = {0};
|
|
#endif
|
|
#ifdef UNWINDER_ORC_ENABLED
|
|
unsigned int orc_ip_size = 0;
|
|
unsigned int orc_size = 0;
|
|
unsigned int orc_num_entries = 0;
|
|
#endif
|
|
|
|
shdr_start = (Elf_Shdr *)((char *)ehdr + ehdr_shoff(ehdr));
|
|
shentsize = ehdr_shentsize(ehdr);
|
|
|
|
shstrndx = ehdr_shstrndx(ehdr);
|
|
if (shstrndx == SHN_XINDEX)
|
|
shstrndx = shdr_link(shdr_start);
|
|
string_sec = get_index(shdr_start, shentsize, shstrndx);
|
|
secstrings = (const char *)ehdr + shdr_offset(string_sec);
|
|
|
|
shnum = ehdr_shnum(ehdr);
|
|
if (shnum == SHN_UNDEF)
|
|
shnum = shdr_size(shdr_start);
|
|
|
|
for (i = 0; i < shnum; i++) {
|
|
Elf_Shdr *shdr = get_index(shdr_start, shentsize, i);
|
|
|
|
idx = shdr_name(shdr);
|
|
if (!strcmp(secstrings + idx, "__ex_table"))
|
|
extab_sec = shdr;
|
|
if (!strcmp(secstrings + idx, ".symtab"))
|
|
symtab_sec = shdr;
|
|
if (!strcmp(secstrings + idx, ".strtab"))
|
|
strtab_sec = shdr;
|
|
|
|
if (shdr_type(shdr) == SHT_SYMTAB_SHNDX)
|
|
symtab_shndx = (Elf32_Word *)((const char *)ehdr +
|
|
shdr_offset(shdr));
|
|
|
|
#ifdef MCOUNT_SORT_ENABLED
|
|
/* locate the .init.data section in vmlinux */
|
|
if (!strcmp(secstrings + idx, ".init.data"))
|
|
mstruct.init_data_sec = shdr;
|
|
#endif
|
|
|
|
#ifdef UNWINDER_ORC_ENABLED
|
|
/* locate the ORC unwind tables */
|
|
if (!strcmp(secstrings + idx, ".orc_unwind_ip")) {
|
|
orc_ip_size = shdr_size(shdr);
|
|
g_orc_ip_table = (int *)((void *)ehdr +
|
|
shdr_offset(shdr));
|
|
}
|
|
if (!strcmp(secstrings + idx, ".orc_unwind")) {
|
|
orc_size = shdr_size(shdr);
|
|
g_orc_table = (struct orc_entry *)((void *)ehdr +
|
|
shdr_offset(shdr));
|
|
}
|
|
#endif
|
|
} /* for loop */
|
|
|
|
#ifdef UNWINDER_ORC_ENABLED
|
|
if (!g_orc_ip_table || !g_orc_table) {
|
|
fprintf(stderr,
|
|
"incomplete ORC unwind tables in file: %s\n", fname);
|
|
goto out;
|
|
}
|
|
|
|
orc_num_entries = orc_ip_size / sizeof(int);
|
|
if (orc_ip_size % sizeof(int) != 0 ||
|
|
orc_size % sizeof(struct orc_entry) != 0 ||
|
|
orc_num_entries != orc_size / sizeof(struct orc_entry)) {
|
|
fprintf(stderr,
|
|
"inconsistent ORC unwind table entries in file: %s\n",
|
|
fname);
|
|
goto out;
|
|
}
|
|
|
|
/* create thread to sort ORC unwind tables concurrently */
|
|
if (pthread_create(&orc_sort_thread, NULL,
|
|
sort_orctable, &orc_ip_size)) {
|
|
fprintf(stderr,
|
|
"pthread_create orc_sort_thread failed '%s': %s\n",
|
|
strerror(errno), fname);
|
|
goto out;
|
|
}
|
|
#endif
|
|
if (!extab_sec) {
|
|
fprintf(stderr, "no __ex_table in file: %s\n", fname);
|
|
goto out;
|
|
}
|
|
|
|
if (!symtab_sec) {
|
|
fprintf(stderr, "no .symtab in file: %s\n", fname);
|
|
goto out;
|
|
}
|
|
|
|
if (!strtab_sec) {
|
|
fprintf(stderr, "no .strtab in file: %s\n", fname);
|
|
goto out;
|
|
}
|
|
|
|
extab_image = (void *)ehdr + shdr_offset(extab_sec);
|
|
strtab = (const char *)ehdr + shdr_offset(strtab_sec);
|
|
symtab = (const Elf_Sym *)((const char *)ehdr + shdr_offset(symtab_sec));
|
|
|
|
#ifdef MCOUNT_SORT_ENABLED
|
|
mstruct.ehdr = ehdr;
|
|
get_mcount_loc(&mstruct, symtab_sec, strtab);
|
|
|
|
if (!mstruct.init_data_sec || !mstruct.start_mcount_loc || !mstruct.stop_mcount_loc) {
|
|
fprintf(stderr,
|
|
"incomplete mcount's sort in file: %s\n",
|
|
fname);
|
|
goto out;
|
|
}
|
|
|
|
/* create thread to sort mcount_loc concurrently */
|
|
if (pthread_create(&mcount_sort_thread, NULL, &sort_mcount_loc, &mstruct)) {
|
|
fprintf(stderr,
|
|
"pthread_create mcount_sort_thread failed '%s': %s\n",
|
|
strerror(errno), fname);
|
|
goto out;
|
|
}
|
|
#endif
|
|
|
|
if (custom_sort) {
|
|
custom_sort(extab_image, shdr_size(extab_sec));
|
|
} else {
|
|
int num_entries = shdr_size(extab_sec) / extable_ent_size;
|
|
qsort(extab_image, num_entries,
|
|
extable_ent_size, compare_extable);
|
|
}
|
|
|
|
/* find the flag main_extable_sort_needed */
|
|
sym_start = (void *)ehdr + shdr_offset(symtab_sec);
|
|
sym_end = sym_start + shdr_size(symtab_sec);
|
|
symentsize = shdr_entsize(symtab_sec);
|
|
|
|
for (sym = sym_start; (void *)sym + symentsize < sym_end;
|
|
sym = (void *)sym + symentsize) {
|
|
if (sym_type(sym) != STT_OBJECT)
|
|
continue;
|
|
if (!strcmp(strtab + sym_name(sym),
|
|
"main_extable_sort_needed")) {
|
|
sort_needed_sym = sym;
|
|
break;
|
|
}
|
|
}
|
|
|
|
if (!sort_needed_sym) {
|
|
fprintf(stderr,
|
|
"no main_extable_sort_needed symbol in file: %s\n",
|
|
fname);
|
|
goto out;
|
|
}
|
|
|
|
sort_need_index = get_secindex(sym_shndx(sym),
|
|
((void *)sort_needed_sym - (void *)symtab) / symentsize,
|
|
symtab_shndx);
|
|
sort_needed_sec = get_index(shdr_start, shentsize, sort_need_index);
|
|
sort_needed_loc = (void *)ehdr +
|
|
shdr_offset(sort_needed_sec) +
|
|
sym_value(sort_needed_sym) - shdr_addr(sort_needed_sec);
|
|
|
|
/* extable has been sorted, clear the flag */
|
|
w(0, sort_needed_loc);
|
|
rc = 0;
|
|
|
|
out:
|
|
#ifdef UNWINDER_ORC_ENABLED
|
|
if (orc_sort_thread) {
|
|
void *retval = NULL;
|
|
/* wait for ORC tables sort done */
|
|
rc = pthread_join(orc_sort_thread, &retval);
|
|
if (rc) {
|
|
fprintf(stderr,
|
|
"pthread_join failed '%s': %s\n",
|
|
strerror(errno), fname);
|
|
} else if (retval) {
|
|
rc = -1;
|
|
fprintf(stderr,
|
|
"failed to sort ORC tables '%s': %s\n",
|
|
(char *)retval, fname);
|
|
}
|
|
}
|
|
#endif
|
|
|
|
#ifdef MCOUNT_SORT_ENABLED
|
|
if (mcount_sort_thread) {
|
|
void *retval = NULL;
|
|
/* wait for mcount sort done */
|
|
rc = pthread_join(mcount_sort_thread, &retval);
|
|
if (rc) {
|
|
fprintf(stderr,
|
|
"pthread_join failed '%s': %s\n",
|
|
strerror(errno), fname);
|
|
} else if (retval) {
|
|
rc = -1;
|
|
fprintf(stderr,
|
|
"failed to sort mcount '%s': %s\n",
|
|
(char *)retval, fname);
|
|
}
|
|
}
|
|
#endif
|
|
return rc;
|
|
}
|
|
|
|
static int compare_relative_table(const void *a, const void *b)
|
|
{
|
|
int32_t av = (int32_t)r(a);
|
|
int32_t bv = (int32_t)r(b);
|
|
|
|
if (av < bv)
|
|
return -1;
|
|
if (av > bv)
|
|
return 1;
|
|
return 0;
|
|
}
|
|
|
|
static void sort_relative_table(char *extab_image, int image_size)
|
|
{
|
|
int i = 0;
|
|
|
|
/*
|
|
* Do the same thing the runtime sort does, first normalize to
|
|
* being relative to the start of the section.
|
|
*/
|
|
while (i < image_size) {
|
|
uint32_t *loc = (uint32_t *)(extab_image + i);
|
|
w(r(loc) + i, loc);
|
|
i += 4;
|
|
}
|
|
|
|
qsort(extab_image, image_size / 8, 8, compare_relative_table);
|
|
|
|
/* Now denormalize. */
|
|
i = 0;
|
|
while (i < image_size) {
|
|
uint32_t *loc = (uint32_t *)(extab_image + i);
|
|
w(r(loc) - i, loc);
|
|
i += 4;
|
|
}
|
|
}
|
|
|
|
static void sort_relative_table_with_data(char *extab_image, int image_size)
|
|
{
|
|
int i = 0;
|
|
|
|
while (i < image_size) {
|
|
uint32_t *loc = (uint32_t *)(extab_image + i);
|
|
|
|
w(r(loc) + i, loc);
|
|
w(r(loc + 1) + i + 4, loc + 1);
|
|
/* Don't touch the fixup type or data */
|
|
|
|
i += sizeof(uint32_t) * 3;
|
|
}
|
|
|
|
qsort(extab_image, image_size / 12, 12, compare_relative_table);
|
|
|
|
i = 0;
|
|
while (i < image_size) {
|
|
uint32_t *loc = (uint32_t *)(extab_image + i);
|
|
|
|
w(r(loc) - i, loc);
|
|
w(r(loc + 1) - (i + 4), loc + 1);
|
|
/* Don't touch the fixup type or data */
|
|
|
|
i += sizeof(uint32_t) * 3;
|
|
}
|
|
}
|
|
|
|
static int do_file(char const *const fname, void *addr)
|
|
{
|
|
Elf_Ehdr *ehdr = addr;
|
|
table_sort_t custom_sort = NULL;
|
|
|
|
switch (ehdr->e32.e_ident[EI_DATA]) {
|
|
case ELFDATA2LSB:
|
|
r = rle;
|
|
r2 = r2le;
|
|
r8 = r8le;
|
|
w = wle;
|
|
break;
|
|
case ELFDATA2MSB:
|
|
r = rbe;
|
|
r2 = r2be;
|
|
r8 = r8be;
|
|
w = wbe;
|
|
break;
|
|
default:
|
|
fprintf(stderr, "unrecognized ELF data encoding %d: %s\n",
|
|
ehdr->e32.e_ident[EI_DATA], fname);
|
|
return -1;
|
|
}
|
|
|
|
if (memcmp(ELFMAG, ehdr->e32.e_ident, SELFMAG) != 0 ||
|
|
(r2(&ehdr->e32.e_type) != ET_EXEC && r2(&ehdr->e32.e_type) != ET_DYN) ||
|
|
ehdr->e32.e_ident[EI_VERSION] != EV_CURRENT) {
|
|
fprintf(stderr, "unrecognized ET_EXEC/ET_DYN file %s\n", fname);
|
|
return -1;
|
|
}
|
|
|
|
switch (r2(&ehdr->e32.e_machine)) {
|
|
case EM_386:
|
|
case EM_AARCH64:
|
|
case EM_LOONGARCH:
|
|
case EM_RISCV:
|
|
case EM_S390:
|
|
case EM_X86_64:
|
|
custom_sort = sort_relative_table_with_data;
|
|
break;
|
|
case EM_PARISC:
|
|
case EM_PPC:
|
|
case EM_PPC64:
|
|
custom_sort = sort_relative_table;
|
|
break;
|
|
case EM_ARCOMPACT:
|
|
case EM_ARCV2:
|
|
case EM_ARM:
|
|
case EM_MICROBLAZE:
|
|
case EM_MIPS:
|
|
case EM_XTENSA:
|
|
break;
|
|
default:
|
|
fprintf(stderr, "unrecognized e_machine %d %s\n",
|
|
r2(&ehdr->e32.e_machine), fname);
|
|
return -1;
|
|
}
|
|
|
|
switch (ehdr->e32.e_ident[EI_CLASS]) {
|
|
case ELFCLASS32: {
|
|
struct elf_funcs efuncs = {
|
|
.compare_extable = compare_extable_32,
|
|
.ehdr_shoff = ehdr32_shoff,
|
|
.ehdr_shentsize = ehdr32_shentsize,
|
|
.ehdr_shstrndx = ehdr32_shstrndx,
|
|
.ehdr_shnum = ehdr32_shnum,
|
|
.shdr_addr = shdr32_addr,
|
|
.shdr_offset = shdr32_offset,
|
|
.shdr_link = shdr32_link,
|
|
.shdr_size = shdr32_size,
|
|
.shdr_name = shdr32_name,
|
|
.shdr_type = shdr32_type,
|
|
.shdr_entsize = shdr32_entsize,
|
|
.sym_type = sym32_type,
|
|
.sym_name = sym32_name,
|
|
.sym_value = sym32_value,
|
|
.sym_shndx = sym32_shndx,
|
|
};
|
|
|
|
e = efuncs;
|
|
long_size = 4;
|
|
extable_ent_size = 8;
|
|
|
|
if (r2(&ehdr->e32.e_ehsize) != sizeof(Elf32_Ehdr) ||
|
|
r2(&ehdr->e32.e_shentsize) != sizeof(Elf32_Shdr)) {
|
|
fprintf(stderr,
|
|
"unrecognized ET_EXEC/ET_DYN file: %s\n", fname);
|
|
return -1;
|
|
}
|
|
|
|
}
|
|
break;
|
|
case ELFCLASS64: {
|
|
struct elf_funcs efuncs = {
|
|
.compare_extable = compare_extable_64,
|
|
.ehdr_shoff = ehdr64_shoff,
|
|
.ehdr_shentsize = ehdr64_shentsize,
|
|
.ehdr_shstrndx = ehdr64_shstrndx,
|
|
.ehdr_shnum = ehdr64_shnum,
|
|
.shdr_addr = shdr64_addr,
|
|
.shdr_offset = shdr64_offset,
|
|
.shdr_link = shdr64_link,
|
|
.shdr_size = shdr64_size,
|
|
.shdr_name = shdr64_name,
|
|
.shdr_type = shdr64_type,
|
|
.shdr_entsize = shdr64_entsize,
|
|
.sym_type = sym64_type,
|
|
.sym_name = sym64_name,
|
|
.sym_value = sym64_value,
|
|
.sym_shndx = sym64_shndx,
|
|
};
|
|
|
|
e = efuncs;
|
|
long_size = 8;
|
|
extable_ent_size = 16;
|
|
|
|
if (r2(&ehdr->e64.e_ehsize) != sizeof(Elf64_Ehdr) ||
|
|
r2(&ehdr->e64.e_shentsize) != sizeof(Elf64_Shdr)) {
|
|
fprintf(stderr,
|
|
"unrecognized ET_EXEC/ET_DYN file: %s\n",
|
|
fname);
|
|
return -1;
|
|
}
|
|
|
|
}
|
|
break;
|
|
default:
|
|
fprintf(stderr, "unrecognized ELF class %d %s\n",
|
|
ehdr->e32.e_ident[EI_CLASS], fname);
|
|
return -1;
|
|
}
|
|
|
|
return do_sort(ehdr, fname, custom_sort);
|
|
}
|
|
|
|
int main(int argc, char *argv[])
|
|
{
|
|
int i, n_error = 0; /* gcc-4.3.0 false positive complaint */
|
|
size_t size = 0;
|
|
void *addr = NULL;
|
|
|
|
if (argc < 2) {
|
|
fprintf(stderr, "usage: sorttable vmlinux...\n");
|
|
return 0;
|
|
}
|
|
|
|
/* Process each file in turn, allowing deep failure. */
|
|
for (i = 1; i < argc; i++) {
|
|
addr = mmap_file(argv[i], &size);
|
|
if (!addr) {
|
|
++n_error;
|
|
continue;
|
|
}
|
|
|
|
if (do_file(argv[i], addr))
|
|
++n_error;
|
|
|
|
munmap(addr, size);
|
|
}
|
|
|
|
return !!n_error;
|
|
}
|