static const int order_021[3] = {0, 2, 1};
int i;
bfd_boolean result = TRUE;
+ const char *sec_name = get_elf_backend_data (ibfd)->obj_attrs_section;
/* Skip the linker stubs file. This preserves previous behavior
of accepting unknown attributes in the first input file - but
if (ibfd->flags & BFD_LINKER_CREATED)
return TRUE;
+ /* Skip any input that hasn't attribute section.
+ This enables to link object files without attribute section with
+ any others. */
+ if (bfd_get_section_by_name (ibfd, sec_name) == NULL)
+ return TRUE;
+
if (!elf_known_obj_attributes_proc (obfd)[0].i)
{
/* This is the first object. Copy the attributes. */
/* This needs to happen before Tag_ABI_FP_number_model is merged. */
if (in_attr[Tag_ABI_VFP_args].i != out_attr[Tag_ABI_VFP_args].i)
{
- /* Ignore mismatches if the object doesn't use floating point. */
- if (out_attr[Tag_ABI_FP_number_model].i == 0)
+ /* Ignore mismatches if the object doesn't use floating point or is
+ floating point ABI independent. */
+ if (out_attr[Tag_ABI_FP_number_model].i == AEABI_FP_number_model_none
+ || (in_attr[Tag_ABI_FP_number_model].i != AEABI_FP_number_model_none
+ && out_attr[Tag_ABI_VFP_args].i == AEABI_VFP_args_compatible))
out_attr[Tag_ABI_VFP_args].i = in_attr[Tag_ABI_VFP_args].i;
- else if (in_attr[Tag_ABI_FP_number_model].i != 0)
+ else if (in_attr[Tag_ABI_FP_number_model].i != AEABI_FP_number_model_none
+ && in_attr[Tag_ABI_VFP_args].i != AEABI_VFP_args_compatible)
{
_bfd_error_handler
(_("error: %B uses VFP register arguments, %B does not"),
when it's 0. It might mean absence of FP hardware if
Tag_FP_arch is zero, otherwise it is effectively SP + DP. */
-#define VFP_VERSION_COUNT 8
+#define VFP_VERSION_COUNT 9
static const struct
{
int ver;
{3, 16},
{4, 32},
{4, 16},
- {8, 32}
+ {8, 32},
+ {8, 16}
};
int ver;
int regs;
h->needs_copy = 1;
}
- return _bfd_elf_adjust_dynamic_copy (h, s);
+ return _bfd_elf_adjust_dynamic_copy (info, h, s);
}
/* Allocate space in .plt, .got and associated reloc sections for
&& ((i_ehdrp->e_type == ET_DYN) || (i_ehdrp->e_type == ET_EXEC)))
{
int abi = bfd_elf_get_obj_attr_int (abfd, OBJ_ATTR_PROC, Tag_ABI_VFP_args);
- if (abi)
+ if (abi == AEABI_VFP_args_vfp)
i_ehdrp->e_flags |= EF_ARM_ABI_FLOAT_HARD;
else
i_ehdrp->e_flags |= EF_ARM_ABI_FLOAT_SOFT;
bfd_elf32_swap_reloca_out
};
+static bfd_vma
+read_code32 (const bfd *abfd, const bfd_byte *addr)
+{
+ /* V7 BE8 code is always little endian. */
+ if ((elf_elfheader (abfd)->e_flags & EF_ARM_BE8) != 0)
+ return bfd_getl32 (addr);
+
+ return bfd_get_32 (abfd, addr);
+}
+
+static bfd_vma
+read_code16 (const bfd *abfd, const bfd_byte *addr)
+{
+ /* V7 BE8 code is always little endian. */
+ if ((elf_elfheader (abfd)->e_flags & EF_ARM_BE8) != 0)
+ return bfd_getl16 (addr);
+
+ return bfd_get_16 (abfd, addr);
+}
+
/* Return size of plt0 entry starting at ADDR
or (bfd_vma) -1 if size can not be determined. */
bfd_vma first_word;
bfd_vma plt0_size;
- first_word = H_GET_32 (abfd, addr);
+ first_word = read_code32 (abfd, addr);
if (first_word == elf32_arm_plt0_entry[0])
plt0_size = 4 * ARRAY_SIZE (elf32_arm_plt0_entry);
const bfd_byte *addr = start + offset;
/* PLT entry size if fixed on Thumb-only platforms. */
- if (H_GET_32(abfd, start) == elf32_thumb2_plt0_entry[0])
+ if (read_code32 (abfd, start) == elf32_thumb2_plt0_entry[0])
return 4 * ARRAY_SIZE (elf32_thumb2_plt_entry);
/* Respect Thumb stub if necessary. */
- if (H_GET_16(abfd, addr) == elf32_arm_plt_thumb_stub[0])
+ if (read_code16 (abfd, addr) == elf32_arm_plt_thumb_stub[0])
{
plt_size += 2 * ARRAY_SIZE(elf32_arm_plt_thumb_stub);
}
/* Strip immediate from first add. */
- first_insn = H_GET_32(abfd, addr + plt_size) & 0xffffff00;
+ first_insn = read_code32 (abfd, addr + plt_size) & 0xffffff00;
#ifdef FOUR_WORD_PLT
if (first_insn == elf32_arm_plt_entry[0])