version 1.1, 1999/12/03 07:39:09 |
version 1.6, 2002/07/24 08:00:08 |
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* None of this is safe with dlclose and incremental collection. |
* None of this is safe with dlclose and incremental collection. |
* But then not much of anything is safe in the presence of dlclose. |
* But then not much of anything is safe in the presence of dlclose. |
*/ |
*/ |
#ifndef MACOS |
#if defined(__linux__) && !defined(_GNU_SOURCE) |
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/* Can't test LINUX, since this must be define before other includes */ |
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# define _GNU_SOURCE |
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#endif |
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#if !defined(MACOS) && !defined(_WIN32_WCE) |
# include <sys/types.h> |
# include <sys/types.h> |
#endif |
#endif |
#include "gc_priv.h" |
#include "private/gc_priv.h" |
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/* BTL: avoid circular redefinition of dlopen if SOLARIS_THREADS defined */ |
/* BTL: avoid circular redefinition of dlopen if GC_SOLARIS_THREADS defined */ |
# if defined(SOLARIS_THREADS) && defined(dlopen) |
# if (defined(GC_PTHREADS) || defined(GC_SOLARIS_THREADS)) \ |
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&& defined(dlopen) && !defined(GC_USE_LD_WRAP) |
/* To support threads in Solaris, gc.h interposes on dlopen by */ |
/* To support threads in Solaris, gc.h interposes on dlopen by */ |
/* defining "dlopen" to be "GC_dlopen", which is implemented below. */ |
/* defining "dlopen" to be "GC_dlopen", which is implemented below. */ |
/* However, both GC_FirstDLOpenedLinkMap() and GC_dlopen() use the */ |
/* However, both GC_FirstDLOpenedLinkMap() and GC_dlopen() use the */ |
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# undef GC_must_restore_redefined_dlopen |
# undef GC_must_restore_redefined_dlopen |
# endif |
# endif |
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#if (defined(DYNAMIC_LOADING) || defined(MSWIN32)) && !defined(PCR) |
#if (defined(DYNAMIC_LOADING) || defined(MSWIN32) || defined(MSWINCE)) \ |
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&& !defined(PCR) |
#if !defined(SUNOS4) && !defined(SUNOS5DL) && !defined(IRIX5) && \ |
#if !defined(SUNOS4) && !defined(SUNOS5DL) && !defined(IRIX5) && \ |
!defined(MSWIN32) && !(defined(ALPHA) && defined(OSF1)) && \ |
!defined(MSWIN32) && !defined(MSWINCE) && \ |
!defined(HP_PA) && !(defined(LINUX) && defined(__ELF__)) && \ |
!(defined(ALPHA) && defined(OSF1)) && \ |
!defined(RS6000) && !defined(SCO_ELF) |
!defined(HPUX) && !(defined(LINUX) && defined(__ELF__)) && \ |
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!defined(RS6000) && !defined(SCO_ELF) && !defined(DGUX) && \ |
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!(defined(FREEBSD) && defined(__ELF__)) && \ |
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!(defined(NETBSD) && defined(__ELF__)) && !defined(HURD) |
--> We only know how to find data segments of dynamic libraries for the |
--> We only know how to find data segments of dynamic libraries for the |
--> above. Additional SVR4 variants might not be too |
--> above. Additional SVR4 variants might not be too |
--> hard to add. |
--> hard to add. |
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# define l_name lm_name |
# define l_name lm_name |
#endif |
#endif |
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#if defined(LINUX) && defined(__ELF__) || defined(SCO_ELF) || \ |
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(defined(FREEBSD) && defined(__ELF__)) || defined(DGUX) || \ |
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(defined(NETBSD) && defined(__ELF__)) || defined(HURD) |
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# include <stddef.h> |
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# include <elf.h> |
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# include <link.h> |
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#endif |
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/* Newer versions of GNU/Linux define this macro. We |
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* define it similarly for any ELF systems that don't. */ |
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# ifndef ElfW |
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# if !defined(ELF_CLASS) || ELF_CLASS == ELFCLASS32 |
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# define ElfW(type) Elf32_##type |
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# else |
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# define ElfW(type) Elf64_##type |
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# endif |
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# endif |
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#if defined(SUNOS5DL) && !defined(USE_PROC_FOR_LIBRARIES) |
#if defined(SUNOS5DL) && !defined(USE_PROC_FOR_LIBRARIES) |
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#ifdef LINT |
#ifdef LINT |
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static struct link_map * |
static struct link_map * |
GC_FirstDLOpenedLinkMap() |
GC_FirstDLOpenedLinkMap() |
{ |
{ |
extern Elf32_Dyn _DYNAMIC; |
extern ElfW(Dyn) _DYNAMIC; |
Elf32_Dyn *dp; |
ElfW(Dyn) *dp; |
struct r_debug *r; |
struct r_debug *r; |
static struct link_map * cachedResult = 0; |
static struct link_map * cachedResult = 0; |
static Elf32_Dyn *dynStructureAddr = 0; |
static ElfW(Dyn) *dynStructureAddr = 0; |
/* BTL: added to avoid Solaris 5.3 ld.so _DYNAMIC bug */ |
/* BTL: added to avoid Solaris 5.3 ld.so _DYNAMIC bug */ |
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# ifdef SUNOS53_SHARED_LIB |
# ifdef SUNOS53_SHARED_LIB |
Line 94 GC_FirstDLOpenedLinkMap() |
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Line 120 GC_FirstDLOpenedLinkMap() |
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/* at program startup. */ |
/* at program startup. */ |
if( dynStructureAddr == 0 ) { |
if( dynStructureAddr == 0 ) { |
void* startupSyms = dlopen(0, RTLD_LAZY); |
void* startupSyms = dlopen(0, RTLD_LAZY); |
dynStructureAddr = (Elf32_Dyn*)dlsym(startupSyms, "_DYNAMIC"); |
dynStructureAddr = (ElfW(Dyn)*)dlsym(startupSyms, "_DYNAMIC"); |
} |
} |
# else |
# else |
dynStructureAddr = &_DYNAMIC; |
dynStructureAddr = &_DYNAMIC; |
Line 105 GC_FirstDLOpenedLinkMap() |
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Line 131 GC_FirstDLOpenedLinkMap() |
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} |
} |
if( cachedResult == 0 ) { |
if( cachedResult == 0 ) { |
int tag; |
int tag; |
for( dp = ((Elf32_Dyn *)(&_DYNAMIC)); (tag = dp->d_tag) != 0; dp++ ) { |
for( dp = ((ElfW(Dyn) *)(&_DYNAMIC)); (tag = dp->d_tag) != 0; dp++ ) { |
if( tag == DT_DEBUG ) { |
if( tag == DT_DEBUG ) { |
struct link_map *lm |
struct link_map *lm |
= ((struct r_debug *)(dp->d_un.d_ptr))->r_map; |
= ((struct r_debug *)(dp->d_un.d_ptr))->r_map; |
Line 119 GC_FirstDLOpenedLinkMap() |
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Line 145 GC_FirstDLOpenedLinkMap() |
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#endif /* SUNOS5DL ... */ |
#endif /* SUNOS5DL ... */ |
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/* BTL: added to fix circular dlopen definition if GC_SOLARIS_THREADS defined */ |
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# if defined(GC_must_restore_redefined_dlopen) |
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# define dlopen GC_dlopen |
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# endif |
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#if defined(SUNOS4) && !defined(USE_PROC_FOR_LIBRARIES) |
#if defined(SUNOS4) && !defined(USE_PROC_FOR_LIBRARIES) |
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#ifdef LINT |
#ifdef LINT |
Line 161 static ptr_t GC_first_common() |
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Line 192 static ptr_t GC_first_common() |
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# if defined(SUNOS4) || defined(SUNOS5DL) |
# if defined(SUNOS4) || defined(SUNOS5DL) |
/* Add dynamic library data sections to the root set. */ |
/* Add dynamic library data sections to the root set. */ |
# if !defined(PCR) && !defined(SOLARIS_THREADS) && defined(THREADS) |
# if !defined(PCR) && !defined(GC_SOLARIS_THREADS) && defined(THREADS) |
# ifndef SRC_M3 |
# ifndef SRC_M3 |
--> fix mutual exclusion with dlopen |
--> fix mutual exclusion with dlopen |
# endif /* We assume M3 programs don't call dlopen for now */ |
# endif /* We assume M3 programs don't call dlopen for now */ |
# endif |
# endif |
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# ifdef SOLARIS_THREADS |
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/* Redefine dlopen to guarantee mutual exclusion with */ |
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/* GC_register_dynamic_libraries. */ |
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/* assumes that dlopen doesn't need to call GC_malloc */ |
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/* and friends. */ |
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# include <thread.h> |
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# include <synch.h> |
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void * GC_dlopen(const char *path, int mode) |
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{ |
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void * result; |
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# ifndef USE_PROC_FOR_LIBRARIES |
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mutex_lock(&GC_allocate_ml); |
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# endif |
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result = dlopen(path, mode); |
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# ifndef USE_PROC_FOR_LIBRARIES |
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mutex_unlock(&GC_allocate_ml); |
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# endif |
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return(result); |
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} |
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# endif /* SOLARIS_THREADS */ |
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/* BTL: added to fix circular dlopen definition if SOLARIS_THREADS defined */ |
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# if defined(GC_must_restore_redefined_dlopen) |
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# define dlopen GC_dlopen |
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# endif |
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# ifndef USE_PROC_FOR_LIBRARIES |
# ifndef USE_PROC_FOR_LIBRARIES |
void GC_register_dynamic_libraries() |
void GC_register_dynamic_libraries() |
{ |
{ |
Line 214 void GC_register_dynamic_libraries() |
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Line 217 void GC_register_dynamic_libraries() |
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TRUE); |
TRUE); |
# endif |
# endif |
# ifdef SUNOS5DL |
# ifdef SUNOS5DL |
Elf32_Ehdr * e; |
ElfW(Ehdr) * e; |
Elf32_Phdr * p; |
ElfW(Phdr) * p; |
unsigned long offset; |
unsigned long offset; |
char * start; |
char * start; |
register int i; |
register int i; |
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e = (Elf32_Ehdr *) lm->l_addr; |
e = (ElfW(Ehdr) *) lm->l_addr; |
p = ((Elf32_Phdr *)(((char *)(e)) + e->e_phoff)); |
p = ((ElfW(Phdr) *)(((char *)(e)) + e->e_phoff)); |
offset = ((unsigned long)(lm->l_addr)); |
offset = ((unsigned long)(lm->l_addr)); |
for( i = 0; i < (int)(e->e_phnum); ((i++),(p++)) ) { |
for( i = 0; i < (int)(e->e_phnum); ((i++),(p++)) ) { |
switch( p->p_type ) { |
switch( p->p_type ) { |
Line 260 void GC_register_dynamic_libraries() |
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Line 263 void GC_register_dynamic_libraries() |
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# endif /* !USE_PROC ... */ |
# endif /* !USE_PROC ... */ |
# endif /* SUNOS */ |
# endif /* SUNOS */ |
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#if defined(LINUX) && defined(__ELF__) || defined(SCO_ELF) |
#if defined(LINUX) && defined(__ELF__) || defined(SCO_ELF) || \ |
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(defined(FREEBSD) && defined(__ELF__)) || defined(DGUX) || \ |
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(defined(NETBSD) && defined(__ELF__)) || defined(HURD) |
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#ifdef USE_PROC_FOR_LIBRARIES |
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#include <string.h> |
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#include <sys/stat.h> |
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#include <fcntl.h> |
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#include <unistd.h> |
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#define MAPS_BUF_SIZE (32*1024) |
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extern ssize_t GC_repeat_read(int fd, char *buf, size_t count); |
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/* Repeatedly read until buffer is filled, or EOF is encountered */ |
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/* Defined in os_dep.c. */ |
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static char *parse_map_entry(char *buf_ptr, word *start, word *end, |
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char *prot_buf, unsigned int *maj_dev); |
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void GC_register_dynamic_libraries() |
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{ |
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int f; |
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int result; |
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char prot_buf[5]; |
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int maps_size; |
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char maps_temp[32768]; |
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char *maps_buf; |
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char *buf_ptr; |
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int count; |
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word start, end; |
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unsigned int maj_dev, min_dev; |
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word least_ha, greatest_ha; |
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unsigned i; |
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word datastart = (word)(DATASTART); |
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/* Read /proc/self/maps */ |
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/* Note that we may not allocate, and thus can't use stdio. */ |
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f = open("/proc/self/maps", O_RDONLY); |
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if (-1 == f) ABORT("Couldn't open /proc/self/maps"); |
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/* stat() doesn't work for /proc/self/maps, so we have to |
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read it to find out how large it is... */ |
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maps_size = 0; |
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do { |
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result = GC_repeat_read(f, maps_temp, sizeof(maps_temp)); |
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if (result <= 0) ABORT("Couldn't read /proc/self/maps"); |
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maps_size += result; |
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} while (result == sizeof(maps_temp)); |
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if (maps_size > sizeof(maps_temp)) { |
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/* If larger than our buffer, close and re-read it. */ |
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close(f); |
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f = open("/proc/self/maps", O_RDONLY); |
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if (-1 == f) ABORT("Couldn't open /proc/self/maps"); |
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maps_buf = alloca(maps_size); |
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if (NULL == maps_buf) ABORT("/proc/self/maps alloca failed"); |
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result = GC_repeat_read(f, maps_buf, maps_size); |
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if (result <= 0) ABORT("Couldn't read /proc/self/maps"); |
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} else { |
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/* Otherwise use the fixed size buffer */ |
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maps_buf = maps_temp; |
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} |
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close(f); |
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maps_buf[result] = '\0'; |
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buf_ptr = maps_buf; |
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/* Compute heap bounds. Should be done by add_to_heap? */ |
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least_ha = (word)(-1); |
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greatest_ha = 0; |
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for (i = 0; i < GC_n_heap_sects; ++i) { |
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word sect_start = (word)GC_heap_sects[i].hs_start; |
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word sect_end = sect_start + GC_heap_sects[i].hs_bytes; |
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if (sect_start < least_ha) least_ha = sect_start; |
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if (sect_end > greatest_ha) greatest_ha = sect_end; |
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} |
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if (greatest_ha < (word)GC_scratch_last_end_ptr) |
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greatest_ha = (word)GC_scratch_last_end_ptr; |
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for (;;) { |
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buf_ptr = parse_map_entry(buf_ptr, &start, &end, prot_buf, &maj_dev); |
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if (buf_ptr == NULL) return; |
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if (prot_buf[1] == 'w') { |
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/* This is a writable mapping. Add it to */ |
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/* the root set unless it is already otherwise */ |
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/* accounted for. */ |
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if (start <= (word)GC_stackbottom && end >= (word)GC_stackbottom) { |
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/* Stack mapping; discard */ |
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continue; |
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} |
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if (start <= datastart && end > datastart && maj_dev != 0) { |
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/* Main data segment; discard */ |
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continue; |
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} |
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# ifdef THREADS |
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if (GC_segment_is_thread_stack(start, end)) continue; |
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# endif |
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/* The rest of this assumes that there is no mapping */ |
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/* spanning the beginning of the data segment, or extending */ |
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/* beyond the entire heap at both ends. */ |
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/* Empirically these assumptions hold. */ |
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if (start < (word)DATAEND && end > (word)DATAEND) { |
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/* Rld may use space at the end of the main data */ |
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/* segment. Thus we add that in. */ |
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start = (word)DATAEND; |
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} |
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if (start < least_ha && end > least_ha) { |
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end = least_ha; |
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} |
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if (start < greatest_ha && end > greatest_ha) { |
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start = greatest_ha; |
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} |
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if (start >= least_ha && end <= greatest_ha) continue; |
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GC_add_roots_inner((char *)start, (char *)end, TRUE); |
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} |
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} |
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} |
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// |
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// parse_map_entry parses an entry from /proc/self/maps so we can |
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// locate all writable data segments that belong to shared libraries. |
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// The format of one of these entries and the fields we care about |
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// is as follows: |
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// XXXXXXXX-XXXXXXXX r-xp 00000000 30:05 260537 name of mapping...\n |
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// ^^^^^^^^ ^^^^^^^^ ^^^^ ^^ |
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// start end prot maj_dev |
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// 0 9 18 32 |
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// |
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// The parser is called with a pointer to the entry and the return value |
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// is either NULL or is advanced to the next entry(the byte after the |
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// trailing '\n'.) |
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// |
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#define OFFSET_MAP_START 0 |
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#define OFFSET_MAP_END 9 |
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#define OFFSET_MAP_PROT 18 |
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#define OFFSET_MAP_MAJDEV 32 |
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static char *parse_map_entry(char *buf_ptr, word *start, word *end, |
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char *prot_buf, unsigned int *maj_dev) |
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{ |
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int i; |
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unsigned int val; |
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char *tok; |
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if (buf_ptr == NULL || *buf_ptr == '\0') { |
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return NULL; |
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} |
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memcpy(prot_buf, buf_ptr+OFFSET_MAP_PROT, 4); // do the protections first |
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prot_buf[4] = '\0'; |
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if (prot_buf[1] == 'w') { // we can skip all of this if it's not writable |
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tok = buf_ptr; |
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buf_ptr[OFFSET_MAP_START+8] = '\0'; |
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*start = strtoul(tok, NULL, 16); |
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tok = buf_ptr+OFFSET_MAP_END; |
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buf_ptr[OFFSET_MAP_END+8] = '\0'; |
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*end = strtoul(tok, NULL, 16); |
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buf_ptr += OFFSET_MAP_MAJDEV; |
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tok = buf_ptr; |
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while (*buf_ptr != ':') buf_ptr++; |
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*buf_ptr++ = '\0'; |
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*maj_dev = strtoul(tok, NULL, 16); |
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} |
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while (*buf_ptr && *buf_ptr++ != '\n'); |
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return buf_ptr; |
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} |
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#endif /* USE_PROC_FOR_LIBRARIES */ |
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#if !defined(USE_PROC_FOR_LIBRARIES) |
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/* The following is the preferred way to walk dynamic libraries */ |
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/* For glibc 2.2.4+. Unfortunately, it doesn't work for older */ |
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/* versions. Thanks to Jakub Jelinek for most of the code. */ |
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# if defined(LINUX) /* Are others OK here, too? */ \ |
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&& (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ > 2) \ |
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|| (__GLIBC__ == 2 && __GLIBC_MINOR__ == 2 && defined(DT_CONFIG))) |
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/* We have the header files for a glibc that includes dl_iterate_phdr. */ |
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/* It may still not be available in the library on the target system. */ |
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/* Thus we also treat it as a weak symbol. */ |
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#define HAVE_DL_ITERATE_PHDR |
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static int GC_register_dynlib_callback(info, size, ptr) |
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struct dl_phdr_info * info; |
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size_t size; |
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void * ptr; |
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{ |
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const ElfW(Phdr) * p; |
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char * start; |
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register int i; |
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/* Make sure struct dl_phdr_info is at least as big as we need. */ |
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if (size < offsetof (struct dl_phdr_info, dlpi_phnum) |
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+ sizeof (info->dlpi_phnum)) |
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return -1; |
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/* Skip the first object - it is the main program. */ |
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if (*(int *)ptr == 0) |
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{ |
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*(int *)ptr = 1; |
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return 0; |
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} |
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p = info->dlpi_phdr; |
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for( i = 0; i < (int)(info->dlpi_phnum); ((i++),(p++)) ) { |
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switch( p->p_type ) { |
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case PT_LOAD: |
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{ |
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if( !(p->p_flags & PF_W) ) break; |
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start = ((char *)(p->p_vaddr)) + info->dlpi_addr; |
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GC_add_roots_inner(start, start + p->p_memsz, TRUE); |
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} |
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break; |
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default: |
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break; |
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} |
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} |
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return 0; |
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} |
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/* Return TRUE if we succeed, FALSE if dl_iterate_phdr wasn't there. */ |
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#pragma weak dl_iterate_phdr |
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GC_bool GC_register_dynamic_libraries_dl_iterate_phdr() |
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{ |
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int tmp = 0; |
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if (dl_iterate_phdr) { |
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dl_iterate_phdr(GC_register_dynlib_callback, &tmp); |
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return TRUE; |
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} else { |
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return FALSE; |
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} |
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} |
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# else /* !LINUX || version(glibc) < 2.2.4 */ |
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/* Dynamic loading code for Linux running ELF. Somewhat tested on |
/* Dynamic loading code for Linux running ELF. Somewhat tested on |
* Linux/x86, untested but hopefully should work on Linux/Alpha. |
* Linux/x86, untested but hopefully should work on Linux/Alpha. |
* This code was derived from the Solaris/ELF support. Thanks to |
* This code was derived from the Solaris/ELF support. Thanks to |
* whatever kind soul wrote that. - Patrick Bridges */ |
* whatever kind soul wrote that. - Patrick Bridges */ |
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#include <elf.h> |
/* This doesn't necessarily work in all cases, e.g. with preloaded |
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* dynamic libraries. */ |
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#if defined(NETBSD) |
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# include <sys/exec_elf.h> |
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#else |
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# include <elf.h> |
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#endif |
#include <link.h> |
#include <link.h> |
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/* Newer versions of Linux/Alpha and Linux/x86 define this macro. We |
# endif |
* define it for those older versions that don't. */ |
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# ifndef ElfW |
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# if !defined(ELF_CLASS) || ELF_CLASS == ELFCLASS32 |
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# define ElfW(type) Elf32_##type |
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# else |
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# define ElfW(type) Elf64_##type |
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# endif |
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# endif |
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#ifdef __GNUC__ |
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# pragma weak _DYNAMIC |
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#endif |
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extern ElfW(Dyn) _DYNAMIC[]; |
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static struct link_map * |
static struct link_map * |
GC_FirstDLOpenedLinkMap() |
GC_FirstDLOpenedLinkMap() |
{ |
{ |
# ifdef __GNUC__ |
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# pragma weak _DYNAMIC |
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# endif |
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extern ElfW(Dyn) _DYNAMIC[]; |
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ElfW(Dyn) *dp; |
ElfW(Dyn) *dp; |
struct r_debug *r; |
struct r_debug *r; |
static struct link_map *cachedResult = 0; |
static struct link_map *cachedResult = 0; |
Line 311 GC_FirstDLOpenedLinkMap() |
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Line 561 GC_FirstDLOpenedLinkMap() |
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void GC_register_dynamic_libraries() |
void GC_register_dynamic_libraries() |
{ |
{ |
struct link_map *lm = GC_FirstDLOpenedLinkMap(); |
struct link_map *lm; |
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# ifdef HAVE_DL_ITERATE_PHDR |
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if (GC_register_dynamic_libraries_dl_iterate_phdr()) { |
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return; |
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} |
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# endif |
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lm = GC_FirstDLOpenedLinkMap(); |
for (lm = GC_FirstDLOpenedLinkMap(); |
for (lm = GC_FirstDLOpenedLinkMap(); |
lm != (struct link_map *) 0; lm = lm->l_next) |
lm != (struct link_map *) 0; lm = lm->l_next) |
{ |
{ |
Line 342 void GC_register_dynamic_libraries() |
|
Line 598 void GC_register_dynamic_libraries() |
|
} |
} |
} |
} |
|
|
#endif |
#endif /* !USE_PROC_FOR_LIBRARIES */ |
|
|
#if defined(IRIX5) || defined(USE_PROC_FOR_LIBRARIES) |
#endif /* LINUX */ |
|
|
|
#if defined(IRIX5) || (defined(USE_PROC_FOR_LIBRARIES) && !defined(LINUX)) |
|
|
#include <sys/procfs.h> |
#include <sys/procfs.h> |
#include <sys/stat.h> |
#include <sys/stat.h> |
#include <fcntl.h> |
#include <fcntl.h> |
#include <elf.h> |
#include <elf.h> |
#include <errno.h> |
#include <errno.h> |
|
#include <signal.h> /* Only for the following test. */ |
|
#ifndef _sigargs |
|
# define IRIX6 |
|
#endif |
|
|
extern void * GC_roots_present(); |
extern void * GC_roots_present(); |
/* The type is a lie, since the real type doesn't make sense here, */ |
/* The type is a lie, since the real type doesn't make sense here, */ |
/* and we only test for NULL. */ |
/* and we only test for NULL. */ |
|
|
extern ptr_t GC_scratch_last_end_ptr; /* End of GC_scratch_alloc arena */ |
|
|
|
/* We use /proc to track down all parts of the address space that are */ |
/* We use /proc to track down all parts of the address space that are */ |
/* mapped by the process, and throw out regions we know we shouldn't */ |
/* mapped by the process, and throw out regions we know we shouldn't */ |
Line 413 void GC_register_dynamic_libraries() |
|
Line 674 void GC_register_dynamic_libraries() |
|
if ((flags & (MA_BREAK | MA_STACK | MA_PHYS)) != 0) goto irrelevant; |
if ((flags & (MA_BREAK | MA_STACK | MA_PHYS)) != 0) goto irrelevant; |
if ((flags & (MA_READ | MA_WRITE)) != (MA_READ | MA_WRITE)) |
if ((flags & (MA_READ | MA_WRITE)) != (MA_READ | MA_WRITE)) |
goto irrelevant; |
goto irrelevant; |
/* The latter test is empirically useless. Other than the */ |
/* The latter test is empirically useless in very old Irix */ |
|
/* versions. Other than the */ |
/* main data and stack segments, everything appears to be */ |
/* main data and stack segments, everything appears to be */ |
/* mapped readable, writable, executable, and shared(!!). */ |
/* mapped readable, writable, executable, and shared(!!). */ |
/* This makes no sense to me. - HB */ |
/* This makes no sense to me. - HB */ |
Line 426 void GC_register_dynamic_libraries() |
|
Line 688 void GC_register_dynamic_libraries() |
|
# endif /* MMAP_STACKS */ |
# endif /* MMAP_STACKS */ |
|
|
limit = start + addr_map[i].pr_size; |
limit = start + addr_map[i].pr_size; |
if (addr_map[i].pr_off == 0 && strncmp(start, ELFMAG, 4) == 0) { |
/* The following seemed to be necessary for very old versions */ |
|
/* of Irix, but it has been reported to discard relevant */ |
|
/* segments under Irix 6.5. */ |
|
# ifndef IRIX6 |
|
if (addr_map[i].pr_off == 0 && strncmp(start, ELFMAG, 4) == 0) { |
/* Discard text segments, i.e. 0-offset mappings against */ |
/* Discard text segments, i.e. 0-offset mappings against */ |
/* executable files which appear to have ELF headers. */ |
/* executable files which appear to have ELF headers. */ |
caddr_t arg; |
caddr_t arg; |
Line 453 void GC_register_dynamic_libraries() |
|
Line 719 void GC_register_dynamic_libraries() |
|
goto irrelevant; |
goto irrelevant; |
} |
} |
} |
} |
} |
} |
|
# endif /* !IRIX6 */ |
GC_add_roots_inner(start, limit, TRUE); |
GC_add_roots_inner(start, limit, TRUE); |
irrelevant: ; |
irrelevant: ; |
} |
} |
Line 465 void GC_register_dynamic_libraries() |
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Line 732 void GC_register_dynamic_libraries() |
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|
|
# endif /* USE_PROC || IRIX5 */ |
# endif /* USE_PROC || IRIX5 */ |
|
|
# ifdef MSWIN32 |
# if defined(MSWIN32) || defined(MSWINCE) |
|
|
# define WIN32_LEAN_AND_MEAN |
# define WIN32_LEAN_AND_MEAN |
# define NOSERVICE |
# define NOSERVICE |
Line 474 void GC_register_dynamic_libraries() |
|
Line 741 void GC_register_dynamic_libraries() |
|
|
|
/* We traverse the entire address space and register all segments */ |
/* We traverse the entire address space and register all segments */ |
/* that could possibly have been written to. */ |
/* that could possibly have been written to. */ |
DWORD GC_allocation_granularity; |
|
|
|
extern GC_bool GC_is_heap_base (ptr_t p); |
extern GC_bool GC_is_heap_base (ptr_t p); |
|
|
# ifdef WIN32_THREADS |
# ifdef GC_WIN32_THREADS |
extern void GC_get_next_stack(char *start, char **lo, char **hi); |
extern void GC_get_next_stack(char *start, char **lo, char **hi); |
# endif |
void GC_cond_add_roots(char *base, char * limit) |
|
|
void GC_cond_add_roots(char *base, char * limit) |
|
{ |
|
char dummy; |
|
char * stack_top |
|
= (char *) ((word)(&dummy) & ~(GC_allocation_granularity-1)); |
|
if (base == limit) return; |
|
# ifdef WIN32_THREADS |
|
{ |
{ |
char * curr_base = base; |
char * curr_base = base; |
char * next_stack_lo; |
char * next_stack_lo; |
char * next_stack_hi; |
char * next_stack_hi; |
|
|
for(;;) { |
if (base == limit) return; |
GC_get_next_stack(curr_base, &next_stack_lo, &next_stack_hi); |
for(;;) { |
if (next_stack_lo >= limit) break; |
GC_get_next_stack(curr_base, &next_stack_lo, &next_stack_hi); |
GC_add_roots_inner(curr_base, next_stack_lo, TRUE); |
if (next_stack_lo >= limit) break; |
curr_base = next_stack_hi; |
GC_add_roots_inner(curr_base, next_stack_lo, TRUE); |
} |
curr_base = next_stack_hi; |
if (curr_base < limit) GC_add_roots_inner(curr_base, limit, TRUE); |
} |
|
if (curr_base < limit) GC_add_roots_inner(curr_base, limit, TRUE); |
} |
} |
# else |
# else |
if (limit > stack_top && base < GC_stackbottom) { |
void GC_cond_add_roots(char *base, char * limit) |
/* Part of the stack; ignore it. */ |
{ |
return; |
char dummy; |
} |
char * stack_top |
GC_add_roots_inner(base, limit, TRUE); |
= (char *) ((word)(&dummy) & ~(GC_sysinfo.dwAllocationGranularity-1)); |
# endif |
if (base == limit) return; |
} |
if (limit > stack_top && base < GC_stackbottom) { |
|
/* Part of the stack; ignore it. */ |
|
return; |
|
} |
|
GC_add_roots_inner(base, limit, TRUE); |
|
} |
|
# endif |
|
|
|
# ifndef MSWINCE |
|
extern GC_bool GC_no_win32_dlls; |
|
# endif |
|
|
extern GC_bool GC_win32s; |
|
|
|
void GC_register_dynamic_libraries() |
void GC_register_dynamic_libraries() |
{ |
{ |
MEMORY_BASIC_INFORMATION buf; |
MEMORY_BASIC_INFORMATION buf; |
SYSTEM_INFO sysinfo; |
|
DWORD result; |
DWORD result; |
DWORD protect; |
DWORD protect; |
LPVOID p; |
LPVOID p; |
char * base; |
char * base; |
char * limit, * new_limit; |
char * limit, * new_limit; |
|
|
if (GC_win32s) return; |
# ifdef MSWIN32 |
GetSystemInfo(&sysinfo); |
if (GC_no_win32_dlls) return; |
base = limit = p = sysinfo.lpMinimumApplicationAddress; |
# endif |
GC_allocation_granularity = sysinfo.dwAllocationGranularity; |
base = limit = p = GC_sysinfo.lpMinimumApplicationAddress; |
while (p < sysinfo.lpMaximumApplicationAddress) { |
# if defined(MSWINCE) && !defined(_WIN32_WCE_EMULATION) |
|
/* Only the first 32 MB of address space belongs to the current process */ |
|
while (p < (LPVOID)0x02000000) { |
result = VirtualQuery(p, &buf, sizeof(buf)); |
result = VirtualQuery(p, &buf, sizeof(buf)); |
if (result != sizeof(buf)) { |
if (result == 0) { |
ABORT("Weird VirtualQuery result"); |
/* Page is free; advance to the next possible allocation base */ |
} |
new_limit = (char *) |
new_limit = (char *)p + buf.RegionSize; |
(((DWORD) p + GC_sysinfo.dwAllocationGranularity) |
protect = buf.Protect; |
& ~(GC_sysinfo.dwAllocationGranularity-1)); |
if (buf.State == MEM_COMMIT |
} else |
&& (protect == PAGE_EXECUTE_READWRITE |
# else |
|| protect == PAGE_READWRITE) |
while (p < GC_sysinfo.lpMaximumApplicationAddress) { |
&& !GC_is_heap_base(buf.AllocationBase)) { |
result = VirtualQuery(p, &buf, sizeof(buf)); |
if ((char *)p == limit) { |
# endif |
limit = new_limit; |
{ |
} else { |
if (result != sizeof(buf)) { |
GC_cond_add_roots(base, limit); |
ABORT("Weird VirtualQuery result"); |
base = p; |
} |
limit = new_limit; |
new_limit = (char *)p + buf.RegionSize; |
} |
protect = buf.Protect; |
} |
if (buf.State == MEM_COMMIT |
|
&& (protect == PAGE_EXECUTE_READWRITE |
|
|| protect == PAGE_READWRITE) |
|
&& !GC_is_heap_base(buf.AllocationBase)) { |
|
if ((char *)p != limit) { |
|
GC_cond_add_roots(base, limit); |
|
base = p; |
|
} |
|
limit = new_limit; |
|
} |
|
} |
if (p > (LPVOID)new_limit /* overflow */) break; |
if (p > (LPVOID)new_limit /* overflow */) break; |
p = (LPVOID)new_limit; |
p = (LPVOID)new_limit; |
} |
} |
GC_cond_add_roots(base, limit); |
GC_cond_add_roots(base, limit); |
} |
} |
|
|
#endif /* MSWIN32 */ |
#endif /* MSWIN32 || MSWINCE */ |
|
|
#if defined(ALPHA) && defined(OSF1) |
#if defined(ALPHA) && defined(OSF1) |
|
|
#include <loader.h> |
#include <loader.h> |
Line 658 void GC_register_dynamic_libraries() |
|
Line 936 void GC_register_dynamic_libraries() |
|
} |
} |
#endif |
#endif |
|
|
#if defined(HP_PA) |
#if defined(HPUX) |
|
|
#include <errno.h> |
#include <errno.h> |
#include <dl.h> |
#include <dl.h> |
Line 681 void GC_register_dynamic_libraries() |
|
Line 959 void GC_register_dynamic_libraries() |
|
|
|
/* Check if this is the end of the list or if some error occured */ |
/* Check if this is the end of the list or if some error occured */ |
if (status != 0) { |
if (status != 0) { |
|
# ifdef GC_HPUX_THREADS |
|
/* I've seen errno values of 0. The man page is not clear */ |
|
/* as to whether errno should get set on a -1 return. */ |
|
break; |
|
# else |
if (errno == EINVAL) { |
if (errno == EINVAL) { |
break; /* Moved past end of shared library list --> finished */ |
break; /* Moved past end of shared library list --> finished */ |
} else { |
} else { |
Line 691 void GC_register_dynamic_libraries() |
|
Line 974 void GC_register_dynamic_libraries() |
|
} |
} |
ABORT("shl_get failed"); |
ABORT("shl_get failed"); |
} |
} |
|
# endif |
} |
} |
|
|
# ifdef VERBOSE |
# ifdef VERBOSE |
Line 713 void GC_register_dynamic_libraries() |
|
Line 997 void GC_register_dynamic_libraries() |
|
index++; |
index++; |
} |
} |
} |
} |
#endif /* HP_PA */ |
#endif /* HPUX */ |
|
|
#ifdef RS6000 |
#ifdef RS6000 |
#pragma alloca |
#pragma alloca |