#ifdef HAVE_CONFIG_H
# include <config.h>
#endif
#include "libdwflP.h"
#include <fcntl.h>
#define REL_MIN_ALIGN ((GElf_Xword) 0x100)
bool
internal_function
__libdwfl_elf_address_range (Elf *elf, GElf_Addr base, bool add_p_vaddr,
bool sanity, GElf_Addr *vaddrp,
GElf_Addr *address_syncp, GElf_Addr *startp,
GElf_Addr *endp, GElf_Addr *biasp,
GElf_Half *e_typep)
{
GElf_Ehdr ehdr_mem, *ehdr = gelf_getehdr (elf, &ehdr_mem);
if (ehdr == NULL)
{
elf_error:
__libdwfl_seterrno (DWFL_E_LIBELF);
return false;
}
GElf_Addr vaddr = 0;
GElf_Addr address_sync = 0;
GElf_Addr start = 0, end = 0, bias = 0;
switch (ehdr->e_type)
{
case ET_REL:
start = end = base = (base + REL_MIN_ALIGN - 1) & -REL_MIN_ALIGN;
bool first = true;
Elf_Scn *scn = NULL;
while ((scn = elf_nextscn (elf, scn)) != NULL)
{
GElf_Shdr shdr_mem;
GElf_Shdr *shdr = gelf_getshdr (scn, &shdr_mem);
if (unlikely (shdr == NULL))
goto elf_error;
if (shdr->sh_flags & SHF_ALLOC)
{
const GElf_Xword align = shdr->sh_addralign ?: 1;
const GElf_Addr next = (end + align - 1) & -align;
if (shdr->sh_addr == 0
|| (bias == 0 && end > start && end != next))
{
shdr->sh_addr = next;
if (end == base)
start = base = shdr->sh_addr;
else if (unlikely (base & (align - 1)))
{
start = end = base = (base + align - 1) & -align;
Elf_Scn *prev_scn = NULL;
do
{
prev_scn = elf_nextscn (elf, prev_scn);
GElf_Shdr prev_shdr_mem;
GElf_Shdr *prev_shdr = gelf_getshdr (prev_scn,
&prev_shdr_mem);
if (unlikely (prev_shdr == NULL))
goto elf_error;
if (prev_shdr->sh_flags & SHF_ALLOC)
{
const GElf_Xword prev_align
= prev_shdr->sh_addralign ?: 1;
prev_shdr->sh_addr
= (end + prev_align - 1) & -prev_align;
end = prev_shdr->sh_addr + prev_shdr->sh_size;
if (unlikely (! gelf_update_shdr (prev_scn,
prev_shdr)))
goto elf_error;
}
}
while (prev_scn != scn);
continue;
}
end = shdr->sh_addr + shdr->sh_size;
if (likely (shdr->sh_addr != 0)
&& unlikely (! gelf_update_shdr (scn, shdr)))
goto elf_error;
}
else
{
if (first || end < shdr->sh_addr + shdr->sh_size)
end = shdr->sh_addr + shdr->sh_size;
if (first || bias > shdr->sh_addr)
bias = shdr->sh_addr;
if ((shdr->sh_addr - bias + base) & (align - 1))
base = (((base + align - 1) & -align)
+ (bias & (align - 1)));
}
first = false;
}
}
if (bias != 0)
{
start = base;
end = end - bias + start;
bias = start - bias;
}
break;
case ET_EXEC:
case ET_CORE:
base = 0;
add_p_vaddr = true;
FALLTHROUGH;
case ET_DYN:
default:;
size_t phnum;
if (unlikely (elf_getphdrnum (elf, &phnum) != 0))
goto elf_error;
for (size_t i = 0; i < phnum; ++i)
{
GElf_Phdr phdr_mem, *ph = gelf_getphdr (elf, i, &phdr_mem);
if (unlikely (ph == NULL))
goto elf_error;
if (ph->p_type == PT_LOAD)
{
vaddr = ph->p_vaddr & -ph->p_align;
address_sync = ph->p_vaddr + ph->p_memsz;
break;
}
}
if (add_p_vaddr)
{
start = base + vaddr;
bias = base;
}
else
{
start = base;
bias = base - vaddr;
}
for (size_t i = phnum; i-- > 0;)
{
GElf_Phdr phdr_mem, *ph = gelf_getphdr (elf, i, &phdr_mem);
if (unlikely (ph == NULL))
goto elf_error;
if (ph->p_type == PT_LOAD
&& ph->p_vaddr + ph->p_memsz > 0)
{
end = bias + (ph->p_vaddr + ph->p_memsz);
break;
}
}
if (end == 0 && sanity)
{
__libdwfl_seterrno (DWFL_E_NO_PHDR);
return false;
}
break;
}
if (vaddrp)
*vaddrp = vaddr;
if (address_syncp)
*address_syncp = address_sync;
if (startp)
*startp = start;
if (endp)
*endp = end;
if (biasp)
*biasp = bias;
if (e_typep)
*e_typep = ehdr->e_type;
return true;
}
Dwfl_Module *
internal_function
__libdwfl_report_elf (Dwfl *dwfl, const char *name, const char *file_name,
int fd, Elf *elf, GElf_Addr base, bool add_p_vaddr,
bool sanity)
{
GElf_Addr vaddr, address_sync, start, end, bias;
GElf_Half e_type;
if (! __libdwfl_elf_address_range (elf, base, add_p_vaddr, sanity, &vaddr,
&address_sync, &start, &end, &bias,
&e_type))
return NULL;
Dwfl_Module *m = INTUSE(dwfl_report_module) (dwfl, name, start, end);
if (m != NULL)
{
if (m->main.name == NULL)
{
m->main.name = strdup (file_name);
m->main.fd = fd;
}
else if ((fd >= 0 && m->main.fd != fd)
|| strcmp (m->main.name, file_name))
{
overlap:
m->gc = true;
__libdwfl_seterrno (DWFL_E_OVERLAP);
return NULL;
}
if (m->main.elf == NULL)
{
m->main.elf = elf;
m->main.vaddr = vaddr;
m->main.address_sync = address_sync;
m->main_bias = bias;
m->e_type = e_type;
}
else
{
if (m->main_bias != bias
|| m->main.vaddr != vaddr || m->main.address_sync != address_sync)
goto overlap;
elf_end (m->main.elf);
m->main.elf = elf;
}
}
return m;
}
NEW_VERSION (dwfl_report_elf, ELFUTILS_0.156)
Dwfl_Module *
dwfl_report_elf (Dwfl *dwfl, const char *name, const char *file_name, int fd,
GElf_Addr base, bool add_p_vaddr)
{
bool closefd = false;
if (fd < 0)
{
closefd = true;
fd = open (file_name, O_RDONLY);
if (fd < 0)
{
__libdwfl_seterrno (DWFL_E_ERRNO);
return NULL;
}
}
Elf *elf;
Dwfl_Error error = __libdw_open_file (&fd, &elf, closefd, false);
if (error != DWFL_E_NOERROR)
{
__libdwfl_seterrno (error);
return NULL;
}
Dwfl_Module *mod = __libdwfl_report_elf (dwfl, name, file_name,
fd, elf, base, add_p_vaddr, true);
if (mod == NULL)
{
elf_end (elf);
if (closefd)
close (fd);
}
return mod;
}
NEW_INTDEF (dwfl_report_elf)
#ifdef SYMBOL_VERSIONING
Dwfl_Module *
_compat_without_add_p_vaddr_dwfl_report_elf (Dwfl *dwfl, const char *name,
const char *file_name, int fd,
GElf_Addr base);
COMPAT_VERSION_NEWPROTO (dwfl_report_elf, ELFUTILS_0.122, without_add_p_vaddr)
Dwfl_Module *
_compat_without_add_p_vaddr_dwfl_report_elf (Dwfl *dwfl, const char *name,
const char *file_name, int fd,
GElf_Addr base)
{
return dwfl_report_elf (dwfl, name, file_name, fd, base, true);
}
#endif