/* BFD back-end for HP PA-RISC ELF files.
- Copyright (C) 1990-1991 Free Software Foundation, Inc.
+ Copyright (C) 1990, 91, 92, 93, 94, 95, 96, 97, 98, 1999
+ Free Software Foundation, Inc.
Written by
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
-Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */
+Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
#include "bfd.h"
#include "sysdep.h"
#include "libbfd.h"
-#include "obstack.h"
-#include "libelf.h"
+#include "elf-bfd.h"
+#include "elf/hppa.h"
+#include "libhppa.h"
+#include "elf32-hppa.h"
+#define ARCH_SIZE 32
+#include "elf-hppa.h"
+
+
+/* We use three different hash tables to hold information for
+ linking PA ELF objects.
+
+ The first is the elf32_hppa_link_hash_table which is derived
+ from the standard ELF linker hash table. We use this as a place to
+ attach other hash tables and static information.
+
+ The second is the stub hash table which is derived from the
+ base BFD hash table. The stub hash table holds the information
+ necessary to build the linker stubs during a link. */
+
+/* Hash table for linker stubs. */
+
+struct elf32_hppa_stub_hash_entry
+{
+ /* Base hash table entry structure, we can get the name of the stub
+ (and thus know exactly what actions it performs) from the base
+ hash table entry. */
+ struct bfd_hash_entry root;
+
+ /* Offset of the beginning of this stub. */
+ bfd_vma offset;
+
+ /* Given the symbol's value and its section we can determine its final
+ value when building the stubs (so the stub knows where to jump. */
+ symvalue target_value;
+ asection *target_section;
+};
+
+struct elf32_hppa_stub_hash_table
+{
+ /* The hash table itself. */
+ struct bfd_hash_table root;
+
+ /* The stub BFD. */
+ bfd *stub_bfd;
+
+ /* Where to place the next stub. */
+ bfd_byte *location;
+
+ /* Current offset in the stub section. */
+ unsigned int offset;
+
+};
+
+struct elf32_hppa_link_hash_entry
+{
+ struct elf_link_hash_entry root;
+};
+
+struct elf32_hppa_link_hash_table
+{
+ /* The main hash table. */
+ struct elf_link_hash_table root;
+
+ /* The stub hash table. */
+ struct elf32_hppa_stub_hash_table *stub_hash_table;
+
+ /* A count of the number of output symbols. */
+ unsigned int output_symbol_count;
+
+ /* Stuff so we can handle DP relative relocations. */
+ long global_value;
+ int global_sym_defined;
+};
/* ELF32/HPPA relocation support
This file contains ELF32/HPPA relocation support as specified
in the Stratus FTX/Golf Object File Format (SED-1762) dated
- November 19, 1992.
-*/
+ February 1994. */
-/*
- Written by:
+#include "elf32-hppa.h"
+#include "hppa_stubs.h"
- Center for Software Science
- Department of Computer Science
- University of Utah
-*/
+static unsigned long hppa_elf_relocate_insn
+ PARAMS ((bfd *, asection *, unsigned long, unsigned long, long,
+ long, unsigned long, unsigned long, unsigned long));
-#include "elf32-hppa.h"
-/*#include "libhppa.h"*/
-#define BYTES_IN_WORD 4
-#include "aout/aout64.h"
+static boolean elf32_hppa_add_symbol_hook
+ PARAMS ((bfd *, struct bfd_link_info *, const Elf_Internal_Sym *,
+ const char **, flagword *, asection **, bfd_vma *));
-/* ELF/PA relocation howto entries */
+static bfd_reloc_status_type elf32_hppa_bfd_final_link_relocate
+ PARAMS ((reloc_howto_type *, bfd *, bfd *, asection *,
+ bfd_byte *, bfd_vma, bfd_vma, bfd_vma, struct bfd_link_info *,
+ asection *, const char *, int));
-static bfd_reloc_status_type hppa_elf_reloc ();
+static struct bfd_link_hash_table *elf32_hppa_link_hash_table_create
+ PARAMS ((bfd *));
-reloc_howto_type elf_hppa_howto_table[ELF_HOWTO_TABLE_SIZE] =
-{
-/* 'bitpos' and 'abs' are obsolete */
-/* type rs sz bsz pcrel bpos abs ovrf sf name */
-/* 9.3.4. Address relocation types */
- {R_HPPA_NONE, 0, 3, 19, false, 0, false, true, hppa_elf_reloc, "R_HPPA_NONE"},
- {R_HPPA_32, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_32"},
- {R_HPPA_11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_11"},
- {R_HPPA_14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_14"},
- {R_HPPA_17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_17"},
-{R_HPPA_L21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_L21"},
-{R_HPPA_R11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_R11"},
-{R_HPPA_R14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_R14"},
-{R_HPPA_R17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_R17"},
- {R_HPPA_LS21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_LS21"},
- {R_HPPA_RS11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_RS11"},
- {R_HPPA_RS14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_RS14"},
- {R_HPPA_RS17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_RS17"},
- {R_HPPA_LD21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_LD21"},
- {R_HPPA_RD11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_RD11"},
- {R_HPPA_RD14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_RD14"},
- {R_HPPA_RD17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_RD17"},
- {R_HPPA_LR21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_LR21"},
- {R_HPPA_RR14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_RR14"},
- {R_HPPA_RR17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_RR17"},
-/* 9.3.5. GOTOFF address relocation types */
- {R_HPPA_GOTOFF_11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_11"},
- {R_HPPA_GOTOFF_14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_14"},
- {R_HPPA_GOTOFF_L21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_L21"},
- {R_HPPA_GOTOFF_R11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_R11"},
- {R_HPPA_GOTOFF_R14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_R14"},
- {R_HPPA_GOTOFF_LS21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_LS21"},
- {R_HPPA_GOTOFF_RS11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_RS11"},
- {R_HPPA_GOTOFF_RS14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_RS14"},
- {R_HPPA_GOTOFF_LD21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_LD21"},
- {R_HPPA_GOTOFF_RD11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_RD11"},
- {R_HPPA_GOTOFF_RD14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_RD14"},
- {R_HPPA_GOTOFF_LR21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_LR21"},
- {R_HPPA_GOTOFF_RR14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_GOTOFF_RR14"},
-/* 9.3.6. Absolute call relocation types */
- {R_HPPA_ABS_CALL_11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_11"},
- {R_HPPA_ABS_CALL_14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_14"},
- {R_HPPA_ABS_CALL_17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_17"},
- {R_HPPA_ABS_CALL_L21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_L21"},
- {R_HPPA_ABS_CALL_R11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_R11"},
- {R_HPPA_ABS_CALL_R14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_R14"},
- {R_HPPA_ABS_CALL_R17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_R17"},
- {R_HPPA_ABS_CALL_LS21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_LS21"},
- {R_HPPA_ABS_CALL_RS11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_RS11"},
- {R_HPPA_ABS_CALL_RS14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_RS14"},
- {R_HPPA_ABS_CALL_RS17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_RS17"},
- {R_HPPA_ABS_CALL_LD21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_LD21"},
- {R_HPPA_ABS_CALL_RD11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_RD11"},
- {R_HPPA_ABS_CALL_RD14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_RD14"},
- {R_HPPA_ABS_CALL_RD17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_RD17"},
- {R_HPPA_ABS_CALL_LR21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_LR21"},
- {R_HPPA_ABS_CALL_RR14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_RR14"},
- {R_HPPA_ABS_CALL_RR17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ABS_CALL_RR17"},
-/* 9.3.7. PC-relative call relocation types */
- {R_HPPA_PCREL_CALL_11, 0, 3, 11, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_11"},
- {R_HPPA_PCREL_CALL_14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_14"},
- {R_HPPA_PCREL_CALL_17, 0, 3, 17, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_17"},
- {R_HPPA_PCREL_CALL_12, 0, 3, 12, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_12"},
- {R_HPPA_PCREL_CALL_L21, 0, 3, 21, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_L21"},
- {R_HPPA_PCREL_CALL_R11, 0, 3, 11, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_R11"},
- {R_HPPA_PCREL_CALL_R14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_R14"},
- {R_HPPA_PCREL_CALL_R17, 0, 3, 17, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_R17"},
- {R_HPPA_PCREL_CALL_LS21, 0, 3, 21, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_LS21"},
- {R_HPPA_PCREL_CALL_RS11, 0, 3, 11, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_RS11"},
- {R_HPPA_PCREL_CALL_RS14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_RS14"},
- {R_HPPA_PCREL_CALL_RS17, 0, 3, 17, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_RS17"},
- {R_HPPA_PCREL_CALL_LD21, 0, 3, 21, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_LD21"},
- {R_HPPA_PCREL_CALL_RD11, 0, 3, 11, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_RD11"},
- {R_HPPA_PCREL_CALL_RD14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_RD14"},
- {R_HPPA_PCREL_CALL_RD17, 0, 3, 17, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_RD17"},
- {R_HPPA_PCREL_CALL_LR21, 0, 3, 21, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_LR21"},
- {R_HPPA_PCREL_CALL_RR14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_RR14"},
- {R_HPPA_PCREL_CALL_RR17, 0, 3, 17, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PCREL_CALL_RR17"},
-
-/* 9.3.8. Plabel relocation types */
- {R_HPPA_PLABEL_32, 0, 3, 32, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PLABEL_32"},
- {R_HPPA_PLABEL_11, 0, 3, 11, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PLABEL_11"},
- {R_HPPA_PLABEL_14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PLABEL_14"},
- {R_HPPA_PLABEL_L21, 0, 3, 21, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PLABEL_L21"},
- {R_HPPA_PLABEL_R11, 0, 3, 11, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PLABEL_R11"},
- {R_HPPA_PLABEL_R14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_PLABEL_R14"},
-
-/* 9.3.9. Data linkage table (DLT) relocation types */
- {R_HPPA_DLT_32, 0, 3, 32, true, 0, false, true, hppa_elf_reloc, "R_HPPA_DLT_32"},
- {R_HPPA_DLT_11, 0, 3, 11, true, 0, false, true, hppa_elf_reloc, "R_HPPA_DLT_11"},
- {R_HPPA_DLT_14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_DLT_14"},
- {R_HPPA_DLT_L21, 0, 3, 21, true, 0, false, true, hppa_elf_reloc, "R_HPPA_DLT_L21"},
- {R_HPPA_DLT_R11, 0, 3, 11, true, 0, false, true, hppa_elf_reloc, "R_HPPA_DLT_R11"},
- {R_HPPA_DLT_R14, 0, 3, 14, true, 0, false, true, hppa_elf_reloc, "R_HPPA_DLT_R14"},
-
-/* 9.3.10. Relocations for unwinder tables */
- {R_HPPA_UNWIND_ENTRY, 0, 3, 32, true, 0, false, true, hppa_elf_reloc, "R_HPPA_UNWIND_ENTRY"},
- {R_HPPA_UNWIND_ENTRIES, 0, 3, 32, true, 0, false, true, hppa_elf_reloc, "R_HPPA_UNWIND_ENTRIES"},
-
-/* 9.3.11. Relocation types for complex expressions */
- {R_HPPA_PUSH_CONST, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_PUSH_CONST"},
- {R_HPPA_PUSH_PC, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_PUSH_PC"},
- {R_HPPA_PUSH_SYM, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_PUSH_SYM"},
- {R_HPPA_PUSH_GOTOFF, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_PUSH_GOTOFF"},
- {R_HPPA_PUSH_ABS_CALL, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_PUSH_ABS_CALL"},
- {R_HPPA_PUSH_PCREL_CALL, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_PUSH_PCREL_CALL"},
- {R_HPPA_PUSH_PLABEL, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_PUSH_PLABEL"},
-{R_HPPA_MAX, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_MAX"},
-{R_HPPA_MIN, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_MIN"},
-{R_HPPA_ADD, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ADD"},
-{R_HPPA_SUB, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_SUB"},
- {R_HPPA_MULT, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_MULT"},
-{R_HPPA_DIV, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_DIV"},
-{R_HPPA_MOD, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_MOD"},
-{R_HPPA_AND, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_AND"},
- {R_HPPA_OR, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_OR"},
-{R_HPPA_XOR, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_XOR"},
-{R_HPPA_NOT, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_NOT"},
- {R_HPPA_LSHIFT, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_LSHIFT"},
- {R_HPPA_ARITH_RSHIFT, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_ARITH_RSHIFT"},
- {R_HPPA_LOGIC_RSHIFT, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_LOGIC_RSHIFT"},
-{R_HPPA_EXPR_F, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_L"},
- {R_HPPA_EXPR_L, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_L"},
- {R_HPPA_EXPR_R, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_R"},
- {R_HPPA_EXPR_LS, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_LS"},
- {R_HPPA_EXPR_RS, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_RS"},
- {R_HPPA_EXPR_LD, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_LD"},
- {R_HPPA_EXPR_RD, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_RD"},
- {R_HPPA_EXPR_LR, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_LR"},
- {R_HPPA_EXPR_RR, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_RR"},
-
- {R_HPPA_EXPR_32, 0, 3, 32, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_32"},
- {R_HPPA_EXPR_21, 0, 3, 21, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_21"},
- {R_HPPA_EXPR_11, 0, 3, 11, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_11"},
- {R_HPPA_EXPR_14, 0, 3, 14, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_14"},
- {R_HPPA_EXPR_17, 0, 3, 17, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_17"},
- {R_HPPA_EXPR_12, 0, 3, 12, false, 0, false, true, hppa_elf_reloc, "R_HPPA_EXPR_12"},
- {R_HPPA_UNIMPLEMENTED, 0, 0, 0, false, 0, false, false, NULL, "R_HPPA_UNIMPLEMENTED"},
-};
+static struct bfd_hash_entry *
+elf32_hppa_stub_hash_newfunc
+ PARAMS ((struct bfd_hash_entry *, struct bfd_hash_table *, const char *));
-static symext_chainS *symext_rootP = NULL;
-static symext_chainS *symext_lastP = NULL;
+static boolean
+elf32_hppa_relocate_section
+ PARAMS ((bfd *, struct bfd_link_info *, bfd *, asection *,
+ bfd_byte *, Elf_Internal_Rela *, Elf_Internal_Sym *, asection **));
-static unsigned long
-DEFUN (hppa_elf_rebuild_insn, (abfd, insn, value, r_type, r_field, r_format),
- bfd * abfd AND
- unsigned long insn AND
- unsigned long value AND
- unsigned short r_type AND
- unsigned short r_field AND
- unsigned short r_format)
-{
- unsigned long const_part; /* part of the instruction that does not change */
- unsigned long rebuilt_part;
+static boolean
+elf32_hppa_stub_hash_table_init
+ PARAMS ((struct elf32_hppa_stub_hash_table *, bfd *,
+ struct bfd_hash_entry *(*) PARAMS ((struct bfd_hash_entry *,
+ struct bfd_hash_table *,
+ const char *))));
- switch (r_format)
- {
- case 11:
- {
- unsigned w1, w;
+static boolean
+elf32_hppa_build_one_stub PARAMS ((struct bfd_hash_entry *, PTR));
- const_part = insn & 0xffffe002;
- dis_assemble_12 (value, &w1, &w);
- rebuilt_part = (w1 << 2) | w;
- return const_part | rebuilt_part;
- }
+static unsigned int elf32_hppa_size_of_stub
+ PARAMS ((bfd_vma, bfd_vma, const char *));
- case 12:
- {
- unsigned w1, w;
+static void elf32_hppa_name_of_stub
+ PARAMS ((bfd_vma, bfd_vma, char *));
- const_part = insn & 0xffffe002;
- dis_assemble_12 (value, &w1, &w);
- rebuilt_part = (w1 << 2) | w;
- return const_part | rebuilt_part;
- }
+/* For linker stub hash tables. */
+#define elf32_hppa_stub_hash_lookup(table, string, create, copy) \
+ ((struct elf32_hppa_stub_hash_entry *) \
+ bfd_hash_lookup (&(table)->root, (string), (create), (copy)))
- case 14:
- const_part = insn & 0xffffc000;
- low_sign_unext (value, 14, &rebuilt_part);
- return const_part | rebuilt_part;
+#define elf32_hppa_stub_hash_traverse(table, func, info) \
+ (bfd_hash_traverse \
+ (&(table)->root, \
+ (boolean (*) PARAMS ((struct bfd_hash_entry *, PTR))) (func), \
+ (info)))
- case 17:
- {
- unsigned w1, w2, w;
+/* For HPPA linker hash table. */
- const_part = insn & 0xffe0e002;
- dis_assemble_17 (value, &w1, &w2, &w);
- rebuilt_part = (w2 << 2) | (w1 << 16) | w;
- return const_part | rebuilt_part;
- }
+#define elf32_hppa_link_hash_lookup(table, string, create, copy, follow)\
+ ((struct elf32_hppa_link_hash_entry *) \
+ elf_link_hash_lookup (&(table)->root, (string), (create), \
+ (copy), (follow)))
- case 21:
- const_part = insn & 0xffe00000;
- dis_assemble_21 (value, &rebuilt_part);
- return const_part | rebuilt_part;
+#define elf32_hppa_link_hash_traverse(table, func, info) \
+ (elf_link_hash_traverse \
+ (&(table)->root, \
+ (boolean (*) PARAMS ((struct elf_link_hash_entry *, PTR))) (func), \
+ (info)))
- case 32:
- const_part = 0;
- return value;
+/* Get the PA ELF linker hash table from a link_info structure. */
- default:
- fprintf (stderr, "Relocation problem : ");
- fprintf (stderr,
- "Unrecognized reloc type %d (fmt=%d,fld=%d), in module %s\n",
- r_type, r_format, r_field, abfd->filename);
+#define elf32_hppa_hash_table(p) \
+ ((struct elf32_hppa_link_hash_table *) ((p)->hash))
+
+
+/* Assorted hash table functions. */
+
+/* Initialize an entry in the stub hash table. */
+
+static struct bfd_hash_entry *
+elf32_hppa_stub_hash_newfunc (entry, table, string)
+ struct bfd_hash_entry *entry;
+ struct bfd_hash_table *table;
+ const char *string;
+{
+ struct elf32_hppa_stub_hash_entry *ret;
+
+ ret = (struct elf32_hppa_stub_hash_entry *) entry;
+
+ /* Allocate the structure if it has not already been allocated by a
+ subclass. */
+ if (ret == NULL)
+ ret = ((struct elf32_hppa_stub_hash_entry *)
+ bfd_hash_allocate (table,
+ sizeof (struct elf32_hppa_stub_hash_entry)));
+ if (ret == NULL)
+ return NULL;
+
+ /* Call the allocation method of the superclass. */
+ ret = ((struct elf32_hppa_stub_hash_entry *)
+ bfd_hash_newfunc ((struct bfd_hash_entry *) ret, table, string));
+
+ if (ret)
+ {
+ /* Initialize the local fields. */
+ ret->offset = 0;
+ ret->target_value = 0;
+ ret->target_section = NULL;
+ }
+
+ return (struct bfd_hash_entry *) ret;
+}
+
+/* Initialize a stub hash table. */
+
+static boolean
+elf32_hppa_stub_hash_table_init (table, stub_bfd, newfunc)
+ struct elf32_hppa_stub_hash_table *table;
+ bfd *stub_bfd;
+ struct bfd_hash_entry *(*newfunc) PARAMS ((struct bfd_hash_entry *,
+ struct bfd_hash_table *,
+ const char *));
+{
+ table->offset = 0;
+ table->location = 0;
+ table->stub_bfd = stub_bfd;
+ return (bfd_hash_table_init (&table->root, newfunc));
+}
+
+/* Create the derived linker hash table. The PA ELF port uses the derived
+ hash table to keep information specific to the PA ELF linker (without
+ using static variables). */
+
+static struct bfd_link_hash_table *
+elf32_hppa_link_hash_table_create (abfd)
+ bfd *abfd;
+{
+ struct elf32_hppa_link_hash_table *ret;
+
+ ret = ((struct elf32_hppa_link_hash_table *)
+ bfd_alloc (abfd, sizeof (struct elf32_hppa_link_hash_table)));
+ if (ret == NULL)
+ return NULL;
+ if (!_bfd_elf_link_hash_table_init (&ret->root, abfd,
+ _bfd_elf_link_hash_newfunc))
+ {
+ bfd_release (abfd, ret);
+ return NULL;
}
- return insn;
+ ret->stub_hash_table = NULL;
+ ret->output_symbol_count = 0;
+ ret->global_value = 0;
+ ret->global_sym_defined = 0;
+
+ return &ret->root.root;
}
+/* Relocate the given INSN given the various input parameters.
+
+ FIXME: endianness and sizeof (long) issues abound here. */
+
static unsigned long
-DEFUN (hppa_elf_relocate_insn,
- (abfd, input_sect,
- insn, address, symp, sym_value, r_addend,
- r_type, r_format, r_field, pcrel),
- bfd * abfd AND
- asection * input_sect AND
- unsigned long insn AND
- unsigned long address AND
- asymbol * symp AND
- long sym_value AND
- long r_addend AND
- unsigned short r_type AND
- unsigned short r_format AND
- unsigned short r_field AND
- unsigned char pcrel)
+hppa_elf_relocate_insn (abfd, input_sect, insn, address, sym_value,
+ r_addend, r_format, r_field, pcrel)
+ bfd *abfd;
+ asection *input_sect;
+ unsigned long insn;
+ unsigned long address;
+ long sym_value;
+ long r_addend;
+ unsigned long r_format;
+ unsigned long r_field;
+ unsigned long pcrel;
{
unsigned char opcode = get_opcode (insn);
long constant_value;
- unsigned arg_reloc;
switch (opcode)
{
case STH:
case STW:
case STWM:
- constant_value = ELF32_HPPA_R_CONSTANT (r_addend);
- BFD_ASSERT (r_format == 14);
-
- if (pcrel)
- sym_value -= address;
- sym_value = hppa_field_adjust (sym_value, constant_value, r_field);
- return hppa_elf_rebuild_insn (abfd, insn, sym_value, r_type, r_format, r_format);
-
case COMICLR:
- case SUBI: /* case SUBIO: */
- case ADDIT: /* case ADDITO: */
- case ADDI: /* case ADDIO: */
- BFD_ASSERT (r_format == 11);
-
- constant_value = ((insn & 0x1) << 10) | ((insn & 0xffe) >> 1);
- sym_value = hppa_field_adjust (sym_value, constant_value, r_field);
- return hppa_elf_rebuild_insn (abfd, insn, sym_value, r_type, r_field, r_format);
-
+ case SUBI:
+ case ADDIT:
+ case ADDI:
case LDIL:
case ADDIL:
- BFD_ASSERT (r_format == 21);
+ constant_value = HPPA_R_CONSTANT (r_addend);
+
+ if (pcrel)
+ sym_value -= address;
- constant_value = assemble_21 (insn);
- constant_value += ELF32_HPPA_R_CONSTANT (r_addend);
sym_value = hppa_field_adjust (sym_value, constant_value, r_field);
- return hppa_elf_rebuild_insn (abfd, insn, sym_value, r_type, r_field, r_format);
+ return hppa_rebuild_insn (abfd, insn, sym_value, r_format);
case BL:
case BE:
case BLE:
- arg_reloc = ELF32_HPPA_R_ARG_RELOC (r_addend);
-
- BFD_ASSERT (r_format == 17);
-
/* XXX computing constant_value is not needed??? */
constant_value = assemble_17 ((insn & 0x001f0000) >> 16,
(insn & 0x00001ffc) >> 2,
insn & 1);
- /* @@ Assumes only 32 bits. */
+
constant_value = (constant_value << 15) >> 15;
if (pcrel)
{
else
sym_value = hppa_field_adjust (sym_value, constant_value, r_field);
- return hppa_elf_rebuild_insn (abfd, insn, sym_value >> 2, r_type, r_field, r_format);
+ return hppa_rebuild_insn (abfd, insn, sym_value >> 2, r_format);
default:
if (opcode == 0)
{
- BFD_ASSERT (r_format == 32);
- constant_value = insn;
- constant_value += ELF32_HPPA_R_CONSTANT (r_addend);
+ constant_value = HPPA_R_CONSTANT (r_addend);
+
+ if (pcrel)
+ sym_value -= address;
return hppa_field_adjust (sym_value, constant_value, r_field);
}
else
- {
- fprintf (stderr,
- "Unrecognized opcode 0x%02x (fmt=%x,field=%x)\n",
- opcode, r_format, r_field);
- return insn;
- }
+ abort ();
}
}
-static void
-DEFUN (hppa_elf_relocate_unwind_table,
- (abfd, input_sect,
- data, address, symp, sym_value, r_addend,
- r_type, r_format, r_field, pcrel),
- bfd * abfd AND
- asection * input_sect AND
- PTR data AND
- unsigned long address AND
- asymbol * symp AND
- long sym_value AND
- long r_addend AND
- unsigned short r_type AND
- unsigned short r_format AND
- unsigned short r_field AND
- unsigned char pcrel)
+/* Relocate an HPPA ELF section. */
+
+static boolean
+elf32_hppa_relocate_section (output_bfd, info, input_bfd, input_section,
+ contents, relocs, local_syms, local_sections)
+ bfd *output_bfd;
+ struct bfd_link_info *info;
+ bfd *input_bfd;
+ asection *input_section;
+ bfd_byte *contents;
+ Elf_Internal_Rela *relocs;
+ Elf_Internal_Sym *local_syms;
+ asection **local_sections;
{
- bfd_byte *hit_data = address + (bfd_byte *) (data);
- long start_offset;
- long end_offset;
- long relocated_value;
- int i;
-
- BFD_ASSERT (r_format == 32);
- BFD_ASSERT (r_field == e_fsel);
- switch (r_type)
+ Elf_Internal_Shdr *symtab_hdr;
+ Elf_Internal_Rela *rel;
+ Elf_Internal_Rela *relend;
+
+ symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
+
+ rel = relocs;
+ relend = relocs + input_section->reloc_count;
+ for (; rel < relend; rel++)
{
- case R_HPPA_UNWIND_ENTRY:
- start_offset = bfd_get_32 (abfd, hit_data);
- relocated_value = hppa_field_adjust (sym_value, start_offset, r_field);
- bfd_put_32 (abfd, relocated_value, hit_data);
-
- hit_data += sizeof (unsigned long);
- end_offset = bfd_get_32 (abfd, hit_data);
- relocated_value = hppa_field_adjust (sym_value, end_offset, r_field);
- bfd_put_32 (abfd, relocated_value, hit_data);
- break;
+ int r_type;
+ reloc_howto_type *howto;
+ unsigned long r_symndx;
+ struct elf_link_hash_entry *h;
+ Elf_Internal_Sym *sym;
+ asection *sym_sec;
+ bfd_vma relocation;
+ bfd_reloc_status_type r;
+ const char *sym_name;
+
+ r_type = ELF32_R_TYPE (rel->r_info);
+ if (r_type < 0 || r_type >= (int) R_PARISC_UNIMPLEMENTED)
+ {
+ bfd_set_error (bfd_error_bad_value);
+ return false;
+ }
+ howto = elf_hppa_howto_table + r_type;
- case R_HPPA_UNWIND_ENTRIES:
- for (i = 0; i < r_addend; i++, hit_data += 3 * sizeof (unsigned long))
+ r_symndx = ELF32_R_SYM (rel->r_info);
+
+ if (info->relocateable)
{
- unsigned int fsize;
- start_offset = bfd_get_32 (abfd, hit_data);
- /* Stuff the symbol value into the first word */
- /* of the unwind descriptor */
- bfd_put_32 (abfd, sym_value, hit_data);
-
- hit_data += sizeof (unsigned long);
- end_offset = bfd_get_32 (abfd, hit_data);
- /* We could also compute the ending offset for */
- /* the 2nd word of the unwind entry by */
- /* retrieving the st_size field of the Elf_Sym */
- /* structure stored with this symbol. We can */
- /* get it with: */
- /* e = (elf_symbol_type *)symp */
- /* fsize = e->internal_elf_sym.st_size */
-
- fsize = end_offset - start_offset;
- relocated_value = hppa_field_adjust (sym_value, fsize, r_field);
- bfd_put_32 (abfd, relocated_value, hit_data);
-
- /* If this is not the last unwind entry, */
- /* adjust the symbol value. */
- if (i + 1 < r_addend)
+ /* This is a relocateable link. We don't have to change
+ anything, unless the reloc is against a section symbol,
+ in which case we have to adjust according to where the
+ section symbol winds up in the output section. */
+ if (r_symndx < symtab_hdr->sh_info)
{
- start_offset = bfd_get_32 (abfd, hit_data + 3 * sizeof (unsigned long));
- sym_value += fsize + start_offset - end_offset;
+ sym = local_syms + r_symndx;
+ if (ELF_ST_TYPE (sym->st_info) == STT_SECTION)
+ {
+ sym_sec = local_sections[r_symndx];
+ rel->r_addend += sym_sec->output_offset;
+ }
}
+
+ continue;
}
- break;
- default:
- fprintf (stderr,
- "Unrecognized relocation type 0x%02x (fmt=%x,field=%x)\n",
- r_type, r_format, r_field);
+ /* This is a final link. */
+ h = NULL;
+ sym = NULL;
+ sym_sec = NULL;
+ if (r_symndx < symtab_hdr->sh_info)
+ {
+ sym = local_syms + r_symndx;
+ sym_sec = local_sections[r_symndx];
+ relocation = ((ELF_ST_TYPE (sym->st_info) == STT_SECTION
+ ? 0 : sym->st_value)
+ + sym_sec->output_offset
+ + sym_sec->output_section->vma);
+ }
+ else
+ {
+ long indx;
+
+ indx = r_symndx - symtab_hdr->sh_info;
+ h = elf_sym_hashes (input_bfd)[indx];
+ while (h->root.type == bfd_link_hash_indirect
+ || h->root.type == bfd_link_hash_warning)
+ h = (struct elf_link_hash_entry *) h->root.u.i.link;
+ if (h->root.type == bfd_link_hash_defined
+ || h->root.type == bfd_link_hash_defweak)
+ {
+ sym_sec = h->root.u.def.section;
+ relocation = (h->root.u.def.value
+ + sym_sec->output_offset
+ + sym_sec->output_section->vma);
+ }
+ else if (h->root.type == bfd_link_hash_undefweak)
+ relocation = 0;
+ else
+ {
+ if (!((*info->callbacks->undefined_symbol)
+ (info, h->root.root.string, input_bfd,
+ input_section, rel->r_offset)))
+ return false;
+ break;
+ }
+ }
+
+ if (h != NULL)
+ sym_name = h->root.root.string;
+ else
+ {
+ sym_name = bfd_elf_string_from_elf_section (input_bfd,
+ symtab_hdr->sh_link,
+ sym->st_name);
+ if (sym_name == NULL)
+ return false;
+ if (*sym_name == '\0')
+ sym_name = bfd_section_name (input_bfd, sym_sec);
+ }
+
+ r = elf32_hppa_bfd_final_link_relocate (howto, input_bfd, output_bfd,
+ input_section, contents,
+ rel->r_offset, relocation,
+ rel->r_addend, info, sym_sec,
+ sym_name, h == NULL);
+
+ if (r != bfd_reloc_ok)
+ {
+ switch (r)
+ {
+ /* This can happen for DP relative relocs if $global$ is
+ undefined. This is a panic situation so we don't try
+ to continue. */
+ case bfd_reloc_undefined:
+ case bfd_reloc_notsupported:
+ if (!((*info->callbacks->undefined_symbol)
+ (info, "$global$", input_bfd,
+ input_section, rel->r_offset)))
+ return false;
+ return false;
+ case bfd_reloc_dangerous:
+ {
+ /* We use this return value to indicate that we performed
+ a "dangerous" relocation. This doesn't mean we did
+ the wrong thing, it just means there may be some cleanup
+ that needs to be done here.
+
+ In particular we had to swap the last call insn and its
+ delay slot. If the delay slot insn needed a relocation,
+ then we'll need to adjust the next relocation entry's
+ offset to account for the fact that the insn moved.
+
+ This hair wouldn't be necessary if we inserted stubs
+ between procedures and used a "bl" to get to the stub. */
+ if (rel != relend)
+ {
+ Elf_Internal_Rela *next_rel = rel + 1;
+
+ if (rel->r_offset + 4 == next_rel->r_offset)
+ next_rel->r_offset -= 4;
+ }
+ break;
+ }
+ default:
+ case bfd_reloc_outofrange:
+ case bfd_reloc_overflow:
+ {
+ if (!((*info->callbacks->reloc_overflow)
+ (info, sym_name, howto->name, (bfd_vma) 0,
+ input_bfd, input_section, rel->r_offset)))
+ return false;
+ }
+ break;
+ }
+ }
}
+
+ return true;
}
-/* Provided the symbol, returns the value reffed */
-static long
-get_symbol_value (symbol)
- asymbol *symbol;
-{
- long relocation = 0;
+/* Actually perform a relocation as part of a final link. This can get
+ rather hairy when linker stubs are needed. */
- if (symbol == (asymbol *) NULL)
- relocation = 0;
- else if (symbol->section == &bfd_com_section)
+static bfd_reloc_status_type
+elf32_hppa_bfd_final_link_relocate (howto, input_bfd, output_bfd,
+ input_section, contents, offset, value,
+ addend, info, sym_sec, sym_name, is_local)
+ reloc_howto_type *howto;
+ bfd *input_bfd;
+ bfd *output_bfd ATTRIBUTE_UNUSED;
+ asection *input_section;
+ bfd_byte *contents;
+ bfd_vma offset;
+ bfd_vma value;
+ bfd_vma addend;
+ struct bfd_link_info *info;
+ asection *sym_sec;
+ const char *sym_name;
+ int is_local;
+{
+ unsigned long insn;
+ unsigned long r_type = howto->type;
+ unsigned long r_format = howto->bitsize;
+ unsigned long r_field = e_fsel;
+ bfd_byte *hit_data = contents + offset;
+ boolean r_pcrel = howto->pc_relative;
+
+ insn = bfd_get_32 (input_bfd, hit_data);
+
+ /* Make sure we have a value for $global$. FIXME isn't this effectively
+ just like the gp pointer on MIPS? Can we use those routines for this
+ purpose? */
+ if (!elf32_hppa_hash_table (info)->global_sym_defined)
{
- relocation = 0;
+ struct elf_link_hash_entry *h;
+ asection *sec;
+
+ h = elf_link_hash_lookup (elf_hash_table (info), "$global$", false,
+ false, false);
+
+ /* If there isn't a $global$, then we're in deep trouble. */
+ if (h == NULL)
+ return bfd_reloc_notsupported;
+
+ /* If $global$ isn't a defined symbol, then we're still in deep
+ trouble. */
+ if (h->root.type != bfd_link_hash_defined)
+ return bfd_reloc_undefined;
+
+ sec = h->root.u.def.section;
+ elf32_hppa_hash_table (info)->global_value = (h->root.u.def.value
+ + sec->output_section->vma
+ + sec->output_offset);
+ elf32_hppa_hash_table (info)->global_sym_defined = 1;
}
- else
+
+ switch (r_type)
{
- relocation = symbol->value +
- symbol->section->output_section->vma +
- symbol->section->output_offset;
+ case R_PARISC_NONE:
+ break;
+
+ case R_PARISC_DIR32:
+ case R_PARISC_DIR17F:
+ case R_PARISC_PCREL17C:
+ r_field = e_fsel;
+ goto do_basic_type_1;
+ case R_PARISC_DIR21L:
+ case R_PARISC_PCREL21L:
+ r_field = e_lrsel;
+ goto do_basic_type_1;
+ case R_PARISC_DIR17R:
+ case R_PARISC_PCREL17R:
+ case R_PARISC_DIR14R:
+ case R_PARISC_PCREL14R:
+ r_field = e_rrsel;
+ goto do_basic_type_1;
+
+ /* For all the DP relative relocations, we need to examine the symbol's
+ section. If it's a code section, then "data pointer relative" makes
+ no sense. In that case we don't adjust the "value", and for 21 bit
+ addil instructions, we change the source addend register from %dp to
+ %r0. */
+ case R_PARISC_DPREL21L:
+ r_field = e_lrsel;
+ if (sym_sec->flags & SEC_CODE)
+ {
+ if ((insn & 0xfc000000) >> 26 == 0xa
+ && (insn & 0x03e00000) >> 21 == 0x1b)
+ insn &= ~0x03e00000;
+ }
+ else
+ value -= elf32_hppa_hash_table (info)->global_value;
+ goto do_basic_type_1;
+ case R_PARISC_DPREL14R:
+ r_field = e_rrsel;
+ if ((sym_sec->flags & SEC_CODE) == 0)
+ value -= elf32_hppa_hash_table (info)->global_value;
+ goto do_basic_type_1;
+ case R_PARISC_DPREL14F:
+ r_field = e_fsel;
+ if ((sym_sec->flags & SEC_CODE) == 0)
+ value -= elf32_hppa_hash_table (info)->global_value;
+ goto do_basic_type_1;
+
+ /* These cases are separate as they may involve a lot more work
+ to deal with linker stubs. */
+ case R_PARISC_PLABEL32:
+ case R_PARISC_PLABEL21L:
+ case R_PARISC_PLABEL14R:
+ case R_PARISC_PCREL17F:
+ {
+ bfd_vma location;
+ unsigned int len;
+ char *new_name, *stub_name;
+
+ /* Get the field selector right. We'll need it in a minute. */
+ if (r_type == R_PARISC_PCREL17F
+ || r_type == R_PARISC_PLABEL32)
+ r_field = e_fsel;
+ else if (r_type == R_PARISC_PLABEL21L)
+ r_field = e_lrsel;
+ else if (r_type == R_PARISC_PLABEL14R)
+ r_field = e_rrsel;
+
+ /* Find out where we are and where we're going. */
+ location = (offset +
+ input_section->output_offset +
+ input_section->output_section->vma);
+
+ len = strlen (sym_name) + 1;
+ if (is_local)
+ len += 9;
+ new_name = bfd_malloc (len);
+ if (!new_name)
+ return bfd_reloc_notsupported;
+ strcpy (new_name, sym_name);
+
+ /* Local symbols have unique IDs. */
+ if (is_local)
+ sprintf (new_name + len - 10, "_%08x", (int)sym_sec);
+
+ /* Any kind of linker stub needed? */
+ if (((int)(value - location) > 0x3ffff)
+ || ((int)(value - location) < (int)0xfffc0000))
+ {
+ struct elf32_hppa_stub_hash_table *stub_hash_table;
+ struct elf32_hppa_stub_hash_entry *stub_hash;
+ asection *stub_section;
+
+ /* Build a name for the stub. */
+
+ len = strlen (new_name);
+ len += 23;
+ stub_name = bfd_malloc (len);
+ if (!stub_name)
+ return bfd_reloc_notsupported;
+ elf32_hppa_name_of_stub (location, value, stub_name);
+ strcat (stub_name, new_name);
+ free (new_name);
+
+ stub_hash_table = elf32_hppa_hash_table (info)->stub_hash_table;
+
+ stub_hash
+ = elf32_hppa_stub_hash_lookup (stub_hash_table, stub_name,
+ false, false);
+
+ /* We're done with that name. */
+ free (stub_name);
+
+ /* The stub BFD only has one section. */
+ stub_section = stub_hash_table->stub_bfd->sections;
+
+ if (stub_hash != NULL)
+ {
+ if (r_type == R_PARISC_PCREL17F)
+ {
+ unsigned long delay_insn;
+ unsigned int opcode, rtn_reg, ldo_target_reg, ldo_src_reg;
+
+ /* We'll need to peek at the next insn. */
+ delay_insn = bfd_get_32 (input_bfd, hit_data + 4);
+ opcode = get_opcode (delay_insn);
+
+ /* We also need to know the return register for this
+ call. */
+ rtn_reg = (insn & 0x03e00000) >> 21;
+
+ ldo_src_reg = (delay_insn & 0x03e00000) >> 21;
+ ldo_target_reg = (delay_insn & 0x001f0000) >> 16;
+
+ /* Munge up the value and other parameters for
+ hppa_elf_relocate_insn. */
+
+ value = (stub_hash->offset
+ + stub_section->output_offset
+ + stub_section->output_section->vma);
+
+ r_format = 17;
+ r_field = e_fsel;
+ r_pcrel = 0;
+ addend = 0;
+
+ /* We need to peek at the delay insn and determine if
+ we'll need to swap the branch and its delay insn. */
+ if ((insn & 2)
+ || (opcode == LDO
+ && ldo_target_reg == rtn_reg)
+ || (delay_insn == 0x08000240))
+ {
+ /* No need to swap the branch and its delay slot, but
+ we do need to make sure to jump past the return
+ pointer update in the stub. */
+ value += 4;
+
+ /* If the delay insn does a return pointer adjustment,
+ then we have to make sure it stays valid. */
+ if (opcode == LDO
+ && ldo_target_reg == rtn_reg)
+ {
+ delay_insn &= 0xfc00ffff;
+ delay_insn |= ((31 << 21) | (31 << 16));
+ bfd_put_32 (input_bfd, delay_insn, hit_data + 4);
+ }
+ /* Use a BLE to reach the stub. */
+ insn = BLE_SR4_R0;
+ }
+ else
+ {
+ /* Wonderful, we have to swap the call insn and its
+ delay slot. */
+ bfd_put_32 (input_bfd, delay_insn, hit_data);
+ /* Use a BLE,n to reach the stub. */
+ insn = (BLE_SR4_R0 | 0x2);
+ bfd_put_32 (input_bfd, insn, hit_data + 4);
+ insn = hppa_elf_relocate_insn (input_bfd,
+ input_section,
+ insn, offset + 4,
+ value, addend,
+ r_format, r_field,
+ r_pcrel);
+ /* Update the instruction word. */
+ bfd_put_32 (input_bfd, insn, hit_data + 4);
+ return bfd_reloc_dangerous;
+ }
+ }
+ else
+ return bfd_reloc_notsupported;
+ }
+ }
+ goto do_basic_type_1;
+ }
+
+do_basic_type_1:
+ insn = hppa_elf_relocate_insn (input_bfd, input_section, insn,
+ offset, value, addend, r_format,
+ r_field, r_pcrel);
+ break;
+
+ /* Something we don't know how to handle. */
+ default:
+ return bfd_reloc_notsupported;
}
- return (relocation);
+ /* Update the instruction word. */
+ bfd_put_32 (input_bfd, insn, hit_data);
+ return (bfd_reloc_ok);
}
-/* This function provides a pretty straight-forward mapping between a */
-/* base relocation type, format and field into the relocation type */
-/* that will be emitted in an object file. The only wrinkle in the */
-/* mapping is that when the T, TR, TL, P, PR, or PL expression */
-/* prefixes are involved, the type gets promoted to a *_GOTOFF_* */
-/* relocation (in the case of T, TR, and TL) or a PLABEL relocation */
-/* (in the case of P, PR, and PL). */
+/* Undo the generic ELF code's subtraction of section->vma from the
+ value of each external symbol. */
+
+static boolean
+elf32_hppa_add_symbol_hook (abfd, info, sym, namep, flagsp, secp, valp)
+ bfd *abfd ATTRIBUTE_UNUSED;
+ struct bfd_link_info *info ATTRIBUTE_UNUSED;
+ const Elf_Internal_Sym *sym ATTRIBUTE_UNUSED;
+ const char **namep ATTRIBUTE_UNUSED;
+ flagword *flagsp ATTRIBUTE_UNUSED;
+ asection **secp;
+ bfd_vma *valp;
+{
+ *valp += (*secp)->vma;
+ return true;
+}
-/* NOTE: XXX the T, TR, TL, P, PR, and PL expression prefixes are not */
-/* handled yet. */
+/* Determine the name of the stub needed to perform a call assuming the
+ argument relocation bits for caller and callee are in CALLER and CALLEE
+ for a call from LOCATION to DESTINATION. Copy the name into STUB_NAME. */
static void
-hppa_elf_gen_reloc_error (base_type, fmt, field)
- elf32_hppa_reloc_type base_type;
- int fmt;
- int field;
+elf32_hppa_name_of_stub (location, destination, stub_name)
+ bfd_vma location ATTRIBUTE_UNUSED;
+ bfd_vma destination ATTRIBUTE_UNUSED;
+ char *stub_name;
{
- fprintf (stderr, "undefined relocation: base=0x%x,fmt=0x%x,field=0x%x\n",
- base_type, fmt, field);
+ strcpy (stub_name, "_____long_branch_stub_");
}
-elf32_hppa_reloc_type **
-hppa_elf_gen_reloc_type (abfd, base_type, format, field)
- bfd *abfd;
- elf32_hppa_reloc_type base_type;
- int format;
- int field;
+/* Compute the size of the stub needed to call from LOCATION to DESTINATION
+ (a function named SYM_NAME), with argument relocation bits CALLER and
+ CALLEE. Return zero if no stub is needed to perform such a call. */
+
+static unsigned int
+elf32_hppa_size_of_stub (location, destination, sym_name)
+ bfd_vma location, destination;
+ const char *sym_name;
+{
+ /* Determine if a long branch stub is needed. */
+ if (!(((int)(location - destination) > 0x3ffff)
+ || ((int)(location - destination) < (int)0xfffc0000)))
+ return 0;
+
+ if (!strncmp ("$$", sym_name, 2)
+ && strcmp ("$$dyncall", sym_name))
+ return 12;
+ else
+ return 16;
+}
+
+/* Build one linker stub as defined by the stub hash table entry GEN_ENTRY.
+ IN_ARGS contains the stub BFD and link info pointers. */
+
+static boolean
+elf32_hppa_build_one_stub (gen_entry, in_args)
+ struct bfd_hash_entry *gen_entry;
+ PTR in_args;
{
-#define UNDEFINED hppa_elf_gen_reloc_error(base_type,format,field);
+ void **args = (void **)in_args;
+ bfd *stub_bfd = (bfd *)args[0];
+ struct bfd_link_info *info = (struct bfd_link_info *)args[1];
+ struct elf32_hppa_stub_hash_entry *entry;
+ struct elf32_hppa_stub_hash_table *stub_hash_table;
+ bfd_byte *loc;
+ symvalue sym_value;
+ const char *sym_name;
+
+ /* Initialize pointers to the stub hash table, the particular entry we
+ are building a stub for, and where (in memory) we should place the stub
+ instructions. */
+ entry = (struct elf32_hppa_stub_hash_entry *)gen_entry;
+ stub_hash_table = elf32_hppa_hash_table(info)->stub_hash_table;
+ loc = stub_hash_table->location;
+
+ /* Make a note of the offset within the stubs for this entry. */
+ entry->offset = stub_hash_table->offset;
+
+ /* The symbol's name starts at offset 22. */
+ sym_name = entry->root.string + 22;
+
+ sym_value = (entry->target_value
+ + entry->target_section->output_offset
+ + entry->target_section->output_section->vma);
+
+ if (1)
+ {
+ /* Create one of two variant long branch stubs. One for $$dyncall and
+ normal calls, the other for calls to millicode. */
+ unsigned long insn;
+ int millicode_call = 0;
+
+ if (!strncmp ("$$", sym_name, 2) && strcmp ("$$dyncall", sym_name))
+ millicode_call = 1;
+
+ /* First the return pointer adjustment. Depending on exact calling
+ sequence this instruction may be skipped. */
+ bfd_put_32 (stub_bfd, LDO_M4_R31_R31, loc);
+
+ /* The next two instructions are the long branch itself. A long branch
+ is formed with "ldil" loading the upper bits of the target address
+ into a register, then branching with "be" which adds in the lower bits.
+ Long branches to millicode nullify the delay slot of the "be". */
+ insn = hppa_rebuild_insn (stub_bfd, LDIL_R1,
+ hppa_field_adjust (sym_value, 0, e_lrsel), 21);
+ bfd_put_32 (stub_bfd, insn, loc + 4);
+ insn = hppa_rebuild_insn (stub_bfd, BE_SR4_R1 | (millicode_call ? 2 : 0),
+ hppa_field_adjust (sym_value, 0, e_rrsel) >> 2,
+ 17);
+ bfd_put_32 (stub_bfd, insn, loc + 8);
+
+ if (!millicode_call)
+ {
+ /* The sequence to call this stub places the return pointer into %r31,
+ the final target expects the return pointer in %r2, so copy the
+ return pointer into the proper register. */
+ bfd_put_32 (stub_bfd, COPY_R31_R2, loc + 12);
+
+ /* Update the location and offsets. */
+ stub_hash_table->location += 16;
+ stub_hash_table->offset += 16;
+ }
+ else
+ {
+ /* Update the location and offsets. */
+ stub_hash_table->location += 12;
+ stub_hash_table->offset += 12;
+ }
- elf32_hppa_reloc_type *finaltype;
- elf32_hppa_reloc_type **final_types;
- int i;
+ }
+ return true;
+}
- final_types = (elf32_hppa_reloc_type **) bfd_alloc_by_size_t (abfd, sizeof (elf32_hppa_reloc_type *) * 2);
- BFD_ASSERT (final_types != 0);
+/* External entry points for sizing and building linker stubs. */
- finaltype = (elf32_hppa_reloc_type *) bfd_alloc_by_size_t (abfd, sizeof (elf32_hppa_reloc_type));
- BFD_ASSERT (finaltype != 0);
+/* Build all the stubs associated with the current output file. The
+ stubs are kept in a hash table attached to the main linker hash
+ table. This is called via hppaelf_finish in the linker. */
- final_types[0] = finaltype;
- final_types[1] = NULL;
+boolean
+elf32_hppa_build_stubs (stub_bfd, info)
+ bfd *stub_bfd;
+ struct bfd_link_info *info;
+{
+ /* The stub BFD only has one section. */
+ asection *stub_sec = stub_bfd->sections;
+ struct elf32_hppa_stub_hash_table *table;
+ unsigned int size;
+ void *args[2];
+
+ /* So we can pass both the BFD for the stubs and the link info
+ structure to the routine which actually builds stubs. */
+ args[0] = stub_bfd;
+ args[1] = info;
+
+ /* Allocate memory to hold the linker stubs. */
+ size = bfd_section_size (stub_bfd, stub_sec);
+ stub_sec->contents = (unsigned char *) bfd_zalloc (stub_bfd, size);
+ if (stub_sec->contents == NULL)
+ return false;
+ table = elf32_hppa_hash_table(info)->stub_hash_table;
+ table->location = stub_sec->contents;
+
+ /* Build the stubs as directed by the stub hash table. */
+ elf32_hppa_stub_hash_traverse (table, elf32_hppa_build_one_stub, args);
+
+ return true;
+}
-#define final_type finaltype[0]
+/* Determine and set the size of the stub section for a final link.
- final_type = base_type;
+ The basic idea here is to examine all the relocations looking for
+ PC-relative calls to a target that is unreachable with a "bl"
+ instruction or calls where the caller and callee disagree on the
+ location of their arguments or return value. */
- switch (base_type)
+boolean
+elf32_hppa_size_stubs (stub_bfd, output_bfd, link_info)
+ bfd *stub_bfd;
+ bfd *output_bfd ATTRIBUTE_UNUSED;
+ struct bfd_link_info *link_info;
+{
+ bfd *input_bfd;
+ asection *section, *stub_sec = 0;
+ Elf_Internal_Shdr *symtab_hdr;
+ Elf_Internal_Sym *local_syms, **all_local_syms;
+ unsigned int i, index, bfd_count = 0;
+ struct elf32_hppa_stub_hash_table *stub_hash_table = 0;
+
+ /* Create and initialize the stub hash table. */
+ stub_hash_table = ((struct elf32_hppa_stub_hash_table *)
+ bfd_malloc (sizeof (struct elf32_hppa_stub_hash_table)));
+ if (!stub_hash_table)
+ goto error_return;
+
+ if (!elf32_hppa_stub_hash_table_init (stub_hash_table, stub_bfd,
+ elf32_hppa_stub_hash_newfunc))
+ goto error_return;
+
+ /* Attach the hash tables to the main hash table. */
+ elf32_hppa_hash_table(link_info)->stub_hash_table = stub_hash_table;
+
+ /* Count the number of input BFDs. */
+ for (input_bfd = link_info->input_bfds;
+ input_bfd != NULL;
+ input_bfd = input_bfd->link_next)
+ bfd_count++;
+
+ /* Magic as we know the stub bfd only has one section. */
+ stub_sec = stub_bfd->sections;
+
+ /* If generating a relocateable output file, then we don't
+ have to examine the relocs. */
+ if (link_info->relocateable)
{
- case R_HPPA:
- switch (format)
- {
- case 11:
- switch (field)
- {
- case e_fsel:
- final_type = R_HPPA_11;
- break;
- case e_rsel:
- final_type = R_HPPA_R11;
- break;
- case e_rssel:
- final_type = R_HPPA_RS11;
- break;
- case e_rdsel:
- final_type = R_HPPA_RD11;
- break;
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ return true;
+ }
- case e_psel:
- final_type = R_HPPA_PLABEL_11;
- break;
- case e_rpsel:
- final_type = R_HPPA_PLABEL_R11;
- break;
- case e_lpsel:
- case e_tsel:
- case e_ltsel:
- case e_rtsel:
-
- case e_lsel:
- case e_lrsel:
- case e_lssel:
- case e_rrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 12:
- UNDEFINED;
- break;
- case 14:
- switch (field)
- {
- case e_rsel:
- final_type = R_HPPA_R14;
- break;
- case e_rssel:
- final_type = R_HPPA_RS14;
- break;
- case e_rdsel:
- final_type = R_HPPA_RD14;
- break;
- case e_rrsel:
- final_type = R_HPPA_RR14;
- break;
+ /* Now that we have argument location information for all the global
+ functions we can start looking for stubs. */
+ for (input_bfd = link_info->input_bfds, index = 0;
+ input_bfd != NULL;
+ input_bfd = input_bfd->link_next, index++)
+ {
+ /* We'll need the symbol table in a second. */
+ symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
+ if (symtab_hdr->sh_info == 0)
+ continue;
- case e_psel:
- final_type = R_HPPA_PLABEL_14;
- break;
- case e_rpsel:
- final_type = R_HPPA_PLABEL_R14;
- break;
- case e_lpsel:
- case e_tsel:
- case e_ltsel:
- case e_rtsel:
-
- case e_fsel:
- case e_lsel:
- case e_lssel:
- case e_ldsel:
- case e_lrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 17:
- switch (field)
- {
- case e_fsel:
- final_type = R_HPPA_17;
- break;
- case e_rsel:
- final_type = R_HPPA_R17;
- break;
- case e_rssel:
- final_type = R_HPPA_RS17;
- break;
- case e_rdsel:
- final_type = R_HPPA_RD17;
- break;
- case e_rrsel:
- final_type = R_HPPA_RR17;
- break;
- case e_lsel:
- case e_lssel:
- case e_ldsel:
- case e_lrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 21:
- switch (field)
- {
- case e_lsel:
- final_type = R_HPPA_L21;
- break;
- case e_lssel:
- final_type = R_HPPA_LS21;
- break;
- case e_ldsel:
- final_type = R_HPPA_LD21;
- break;
- case e_lrsel:
- final_type = R_HPPA_LR21;
- break;
- case e_lpsel:
- final_type = R_HPPA_PLABEL_L21;
- break;
- case e_rsel:
- case e_rssel:
- case e_rdsel:
- case e_rrsel:
- case e_fsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 32:
- switch (field)
- {
- case e_fsel:
- final_type = R_HPPA_32;
- break;
- case e_psel:
- final_type = R_HPPA_PLABEL_32;
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case R_HPPA_GOTOFF:
- switch (format)
+ local_syms = all_local_syms[index];
+
+ /* Walk over each section attached to the input bfd. */
+ for (section = input_bfd->sections;
+ section != NULL;
+ section = section->next)
{
- case 11:
- switch (field)
+ Elf_Internal_Shdr *input_rel_hdr;
+ Elf32_External_Rela *external_relocs, *erelaend, *erela;
+ Elf_Internal_Rela *internal_relocs, *irelaend, *irela;
+
+ /* If there aren't any relocs, then there's nothing to do. */
+ if ((section->flags & SEC_RELOC) == 0
+ || section->reloc_count == 0)
+ continue;
+
+ /* Allocate space for the external relocations. */
+ external_relocs
+ = ((Elf32_External_Rela *)
+ bfd_malloc (section->reloc_count
+ * sizeof (Elf32_External_Rela)));
+ if (external_relocs == NULL)
{
- case e_rsel:
- final_type = R_HPPA_GOTOFF_R11;
- break;
- case e_rssel:
- final_type = R_HPPA_GOTOFF_RS11;
- break;
- case e_rdsel:
- final_type = R_HPPA_GOTOFF_RD11;
- break;
- case e_fsel:
- final_type = R_HPPA_GOTOFF_11;
- break;
- case e_lsel:
- case e_lrsel:
- case e_lssel:
- case e_rrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ goto error_return;
}
- break;
- case 12:
- UNDEFINED;
- final_type = base_type;
- break;
- case 14:
- switch (field)
+
+ /* Likewise for the internal relocations. */
+ internal_relocs
+ = ((Elf_Internal_Rela *)
+ bfd_malloc (section->reloc_count * sizeof (Elf_Internal_Rela)));
+ if (internal_relocs == NULL)
{
- case e_rsel:
- final_type = R_HPPA_GOTOFF_R14;
- break;
- case e_rssel:
- final_type = R_HPPA_GOTOFF_RS14;
- break;
- case e_rdsel:
- final_type = R_HPPA_GOTOFF_RD14;
- break;
- case e_rrsel:
- final_type = R_HPPA_GOTOFF_RR14;
- break;
- case e_fsel:
- final_type = R_HPPA_GOTOFF_14;
- break;
- case e_lsel:
- case e_lssel:
- case e_ldsel:
- case e_lrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
+ free (external_relocs);
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ goto error_return;
}
- break;
- case 17:
- UNDEFINED;
- final_type = base_type;
- break;
- case 21:
- switch (field)
+
+ /* Read in the external relocs. */
+ input_rel_hdr = &elf_section_data (section)->rel_hdr;
+ if (bfd_seek (input_bfd, input_rel_hdr->sh_offset, SEEK_SET) != 0
+ || bfd_read (external_relocs, 1, input_rel_hdr->sh_size,
+ input_bfd) != input_rel_hdr->sh_size)
{
- case e_lsel:
- final_type = R_HPPA_GOTOFF_L21;
- break;
- case e_lssel:
- final_type = R_HPPA_GOTOFF_LS21;
- break;
- case e_ldsel:
- final_type = R_HPPA_GOTOFF_LD21;
- break;
- case e_lrsel:
- final_type = R_HPPA_GOTOFF_LR21;
- break;
- case e_rsel:
- case e_rssel:
- case e_rdsel:
- case e_rrsel:
- case e_fsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
+ free (external_relocs);
+ free (internal_relocs);
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ goto error_return;
}
- break;
- case 32:
- UNDEFINED;
- final_type = base_type;
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case R_HPPA_PCREL_CALL:
- switch (format)
- {
- case 11:
- switch (field)
- {
- case e_rsel:
- final_type = R_HPPA_PCREL_CALL_R11;
- break;
- case e_rssel:
- final_type = R_HPPA_PCREL_CALL_RS11;
- break;
- case e_rdsel:
- final_type = R_HPPA_PCREL_CALL_RD11;
- break;
- case e_fsel:
- final_type = R_HPPA_PCREL_CALL_11;
- break;
- case e_lsel:
- case e_lrsel:
- case e_lssel:
- case e_rrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 12:
- UNDEFINED;
- final_type = base_type;
- break;
- case 14:
- switch (field)
- {
- case e_rsel:
- final_type = R_HPPA_PCREL_CALL_R14;
- break;
- case e_rssel:
- final_type = R_HPPA_PCREL_CALL_RS14;
- break;
- case e_rdsel:
- final_type = R_HPPA_PCREL_CALL_RD14;
- break;
- case e_rrsel:
- final_type = R_HPPA_PCREL_CALL_RR14;
- break;
- case e_fsel:
- final_type = R_HPPA_PCREL_CALL_14;
- break;
- case e_lsel:
- case e_lssel:
- case e_ldsel:
- case e_lrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 17:
- switch (field)
- {
- case e_rsel:
- final_type = R_HPPA_PCREL_CALL_R17;
- break;
- case e_rssel:
- final_type = R_HPPA_PCREL_CALL_RS17;
- break;
- case e_rdsel:
- final_type = R_HPPA_PCREL_CALL_RD17;
- break;
- case e_rrsel:
- final_type = R_HPPA_PCREL_CALL_RR17;
- break;
- case e_fsel:
- final_type = R_HPPA_PCREL_CALL_17;
- break;
- case e_lsel:
- case e_lssel:
- case e_ldsel:
- case e_lrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 21:
- switch (field)
- {
- case e_lsel:
- final_type = R_HPPA_PCREL_CALL_L21;
- break;
- case e_lssel:
- final_type = R_HPPA_PCREL_CALL_LS21;
- break;
- case e_ldsel:
- final_type = R_HPPA_PCREL_CALL_LD21;
- break;
- case e_lrsel:
- final_type = R_HPPA_PCREL_CALL_LR21;
- break;
- case e_rsel:
- case e_rssel:
- case e_rdsel:
- case e_rrsel:
- case e_fsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 32:
- UNDEFINED;
- final_type = base_type;
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case R_HPPA_PLABEL:
- switch (format)
- {
- case 11:
- switch (field)
- {
- case e_fsel:
- final_type = R_HPPA_PLABEL_11;
- break;
- case e_rsel:
- final_type = R_HPPA_PLABEL_R11;
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 14:
- switch (field)
- {
- case e_fsel:
- final_type = R_HPPA_PLABEL_14;
- break;
- case e_rsel:
- final_type = R_HPPA_PLABEL_R14;
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 21:
- switch (field)
- {
- case e_lsel:
- final_type = R_HPPA_PLABEL_L21;
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 32:
- switch (field)
- {
- case e_fsel:
- final_type = R_HPPA_PLABEL_32;
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- case R_HPPA_ABS_CALL:
- switch (format)
- {
- case 11:
- switch (field)
- {
- case e_rsel:
- final_type = R_HPPA_ABS_CALL_R11;
- break;
- case e_rssel:
- final_type = R_HPPA_ABS_CALL_RS11;
- break;
- case e_rdsel:
- final_type = R_HPPA_ABS_CALL_RD11;
- break;
- case e_fsel:
- final_type = R_HPPA_ABS_CALL_11;
- break;
- case e_lsel:
- case e_lrsel:
- case e_lssel:
- case e_rrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 12:
- UNDEFINED;
- final_type = base_type;
- break;
- case 14:
- switch (field)
- {
- case e_rsel:
- final_type = R_HPPA_ABS_CALL_R14;
- break;
- case e_rssel:
- final_type = R_HPPA_ABS_CALL_RS14;
- break;
- case e_rdsel:
- final_type = R_HPPA_ABS_CALL_RD14;
- break;
- case e_rrsel:
- final_type = R_HPPA_ABS_CALL_RR14;
- break;
- case e_fsel:
- final_type = R_HPPA_ABS_CALL_14;
- break;
- case e_lsel:
- case e_lssel:
- case e_ldsel:
- case e_lrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 17:
- switch (field)
- {
- case e_rsel:
- final_type = R_HPPA_ABS_CALL_R17;
- break;
- case e_rssel:
- final_type = R_HPPA_ABS_CALL_RS17;
- break;
- case e_rdsel:
- final_type = R_HPPA_ABS_CALL_RD17;
- break;
- case e_rrsel:
- final_type = R_HPPA_ABS_CALL_RR17;
- break;
- case e_fsel:
- final_type = R_HPPA_ABS_CALL_17;
- break;
- case e_lsel:
- case e_lssel:
- case e_ldsel:
- case e_lrsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 21:
- switch (field)
- {
- case e_lsel:
- final_type = R_HPPA_ABS_CALL_L21;
- break;
- case e_lssel:
- final_type = R_HPPA_ABS_CALL_LS21;
- break;
- case e_ldsel:
- final_type = R_HPPA_ABS_CALL_LD21;
- break;
- case e_lrsel:
- final_type = R_HPPA_ABS_CALL_LR21;
- break;
- case e_rsel:
- case e_rssel:
- case e_rdsel:
- case e_rrsel:
- case e_fsel:
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case 32:
- UNDEFINED;
- final_type = base_type;
- break;
- default:
- UNDEFINED;
- final_type = base_type;
- break;
- }
- break;
- case R_HPPA_UNWIND:
- final_type = R_HPPA_UNWIND_ENTRY;
- break;
- case R_HPPA_COMPLEX:
- case R_HPPA_COMPLEX_PCREL_CALL:
- case R_HPPA_COMPLEX_ABS_CALL:
- final_types = (elf32_hppa_reloc_type **) bfd_alloc_by_size_t (abfd, sizeof (elf32_hppa_reloc_type *) * 6);
- BFD_ASSERT (final_types != 0);
-
- finaltype = (elf32_hppa_reloc_type *) bfd_alloc_by_size_t (abfd, sizeof (elf32_hppa_reloc_type) * 5);
- BFD_ASSERT (finaltype != 0);
-
- for (i = 0; i < 5; i++)
- final_types[i] = &finaltype[i];
-
- final_types[5] = NULL;
-
- finaltype[0] = R_HPPA_PUSH_SYM;
-
- if (base_type == R_HPPA_COMPLEX)
- finaltype[1] = R_HPPA_PUSH_SYM;
- else if (base_type == R_HPPA_COMPLEX_PCREL_CALL)
- finaltype[1] = R_HPPA_PUSH_PCREL_CALL;
- else /* base_type == R_HPPA_COMPLEX_ABS_CALL */
- finaltype[1] = R_HPPA_PUSH_ABS_CALL;
-
- finaltype[2] = R_HPPA_SUB;
-
- switch (field)
- {
- case e_fsel:
- finaltype[3] = R_HPPA_EXPR_F;
- break;
- case e_lsel:
- finaltype[3] = R_HPPA_EXPR_L;
- break;
- case e_rsel:
- finaltype[3] = R_HPPA_EXPR_R;
- break;
- case e_lssel:
- finaltype[3] = R_HPPA_EXPR_LS;
- break;
- case e_rssel:
- finaltype[3] = R_HPPA_EXPR_RS;
- break;
- case e_ldsel:
- finaltype[3] = R_HPPA_EXPR_LD;
- break;
- case e_rdsel:
- finaltype[3] = R_HPPA_EXPR_RD;
- break;
- case e_lrsel:
- finaltype[3] = R_HPPA_EXPR_LR;
- break;
- case e_rrsel:
- finaltype[3] = R_HPPA_EXPR_RR;
- break;
- }
-
- switch (format)
- {
- case 11:
- finaltype[4] = R_HPPA_EXPR_11;
- break;
- case 12:
- finaltype[4] = R_HPPA_EXPR_12;
- break;
- case 14:
- finaltype[4] = R_HPPA_EXPR_14;
- break;
- case 17:
- finaltype[4] = R_HPPA_EXPR_17;
- break;
- case 21:
- finaltype[4] = R_HPPA_EXPR_21;
- break;
- case 32:
- finaltype[4] = R_HPPA_EXPR_32;
- break;
- }
-
- break;
- default:
- final_type = base_type;
- break;
- }
-
- return final_types;
-}
-
-#undef final_type
-
-/* 12.4.4. Derive format from instruction */
-
-/* Given a machine instruction, this function determines its format. */
-/* The format can be determined solely from looking at the first six */
-/* bits (the major opcode) of the instruction. Several major opcodes */
-/* map to the same format. Opcodes which do not map to a known format */
-/* should probably be reported as an error. */
-
-unsigned char
-hppa_elf_insn2fmt (type, insn)
- elf32_hppa_reloc_type type;
- unsigned long insn;
-{
- unsigned char fmt = 0; /* XXX: is this a proper default? */
- unsigned char op = get_opcode (insn);
-
- if (type == R_HPPA_NONE)
- fmt = 0;
- else
- {
- switch (op)
- {
- case ADDI:
- case ADDIT:
- case SUBI:
- fmt = 11;
- break;
- case MOVB:
- case MOVIB:
- case COMBT:
- case COMBF:
- case COMIBT:
- case COMIBF:
- case ADDBT:
- case ADDBF:
- case ADDIBT:
- case ADDIBF:
- case BVB:
- case BB:
- fmt = 12;
- break;
- case LDO:
- case LDB:
- case LDH:
- case LDW:
- case LDWM:
- case STB:
- case STH:
- case STW:
- case STWM:
- fmt = 14;
- break;
- case BL:
- case BE:
- case BLE:
- fmt = 17;
- break;
- case LDIL:
- case ADDIL:
- fmt = 21;
- break;
- default:
- fmt = 32;
- break;
- }
+ /* Swap in the relocs. */
+ erela = external_relocs;
+ erelaend = erela + section->reloc_count;
+ irela = internal_relocs;
+ for (; erela < erelaend; erela++, irela++)
+ bfd_elf32_swap_reloca_in (input_bfd, erela, irela);
- }
- return fmt;
-}
-
-/* this function is in charge of performing all the HP PA relocations */
-static long global_value = 0;
-static long GOT_value = 0; /* XXX: need to calculate this! For HPUX, GOT == DP */
-static asymbol *global_symbol = (asymbol *) NULL;
-
-static bfd_reloc_status_type
-DEFUN (hppa_elf_reloc, (abfd, reloc_entry, symbol_in, data, input_section, output_bfd),
- bfd * abfd AND
- arelent * reloc_entry AND
- asymbol * symbol_in AND
- PTR data AND
- asection * input_section AND
- bfd * output_bfd)
-{
- unsigned long insn;
- long sym_value = 0;
-
- unsigned long addr = reloc_entry->address; /*+ input_section->vma*/
- bfd_byte *hit_data = addr + (bfd_byte *) (data);
- unsigned short r_type = reloc_entry->howto->type & 0xFF;
- unsigned short r_field = e_fsel;
- boolean r_pcrel = reloc_entry->howto->pc_relative;
-
- /* howto->bitsize contains the format (11, 14, 21, etc) information */
- unsigned r_format = reloc_entry->howto->bitsize;
- long r_addend = reloc_entry->addend;
-
-
- if (output_bfd)
- {
- /* Partial linking - do nothing */
- reloc_entry->address += input_section->output_offset;
- return bfd_reloc_ok;
- }
-
- if (symbol_in && symbol_in->section == &bfd_und_section)
- return bfd_reloc_undefined;
-
- /* Check for stubs that might be required. */
- /* symbol_in = hppa_elf_stub_check (abfd, input_section->output_section->owner, reloc_entry); */
-
- sym_value = get_symbol_value (symbol_in);
-
- /* compute value of $global$ if it is there. */
-
- if (global_symbol == (asymbol *) NULL)
- {
- struct elf_backend_data *bed
- = (struct elf_backend_data *) abfd->xvec->backend_data;
-
- if (bed && bed->global_sym)
- {
- asymbol *gsym = &bed->global_sym->symbol;
- global_value
- = gsym->value
- + gsym->section->output_section->vma
- + gsym->section->output_offset;
- GOT_value = global_value; /* XXX: For HP-UX, GOT==DP */
- global_symbol = gsym;
- }
- }
-
- /* get the instruction word */
- insn = bfd_get_32 (abfd, hit_data);
-
- /* relocate the value based on the relocation type */
-
- /* basic_type_1: relocation is relative to $global$ */
- /* basic_type_2: relocation is relative to the current GOT */
- /* basic_type_3: relocation is an absolute call */
- /* basic_type_4: relocation is an PC-relative call */
- /* basic_type_5: relocation is plabel reference */
- /* basic_type_6: relocation is an unwind table relocation */
- /* extended_type: unimplemented */
-
- switch (r_type)
- {
- case R_HPPA_NONE:
- break;
- case R_HPPA_32: /* Symbol + Addend 32 */
- r_field = e_fsel;
- goto do_basic_type_1;
- case R_HPPA_11: /* Symbol + Addend 11 */
- r_field = e_fsel;
- goto do_basic_type_1;
- case R_HPPA_14: /* Symbol + Addend 14 */
- r_field = e_fsel;
- goto do_basic_type_1;
- case R_HPPA_17: /* Symbol + Addend 17 */
- r_field = e_fsel;
- goto do_basic_type_1;
- case R_HPPA_L21: /* L (Symbol, Addend) 21 */
- r_field = e_lsel;
- goto do_basic_type_1;
- case R_HPPA_R11: /* R (Symbol, Addend) 11 */
- r_field = e_rsel;
- goto do_basic_type_1;
- case R_HPPA_R14: /* R (Symbol, Addend) 14 */
- r_field = e_rsel;
- goto do_basic_type_1;
- case R_HPPA_R17: /* R (Symbol, Addend) 17 */
- r_field = e_rsel;
- goto do_basic_type_1;
- case R_HPPA_LS21: /* LS(Symbol, Addend) 21 */
- r_field = e_lssel;
- goto do_basic_type_1;
- case R_HPPA_RS11: /* RS(Symbol, Addend) 11 */
- r_field = e_rssel;
- goto do_basic_type_1;
- case R_HPPA_RS14: /* RS(Symbol, Addend) 14 */
- r_field = e_rssel;
- goto do_basic_type_1;
- case R_HPPA_RS17: /* RS(Symbol, Addend) 17 */
- r_field = e_ldsel;
- goto do_basic_type_1;
- case R_HPPA_LD21: /* LD(Symbol, Addend) 21 */
- r_field = e_ldsel;
- goto do_basic_type_1;
- case R_HPPA_RD11: /* RD(Symbol, Addend) 11 */
- r_field = e_rdsel;
- goto do_basic_type_1;
- case R_HPPA_RD14: /* RD(Symbol, Addend) 14 */
- r_field = e_rdsel;
- goto do_basic_type_1;
- case R_HPPA_RD17: /* RD(Symbol, Addend) 17 */
- r_field = e_rdsel;
- goto do_basic_type_1;
- case R_HPPA_LR21: /* LR(Symbol, Addend) 21 */
- r_field = e_lrsel;
- goto do_basic_type_1;
- case R_HPPA_RR14: /* RR(Symbol, Addend) 14 */
- r_field = e_rrsel;
- goto do_basic_type_1;
- case R_HPPA_RR17: /* RR(Symbol, Addend) 17 */
- r_field = e_rrsel;
-
- do_basic_type_1:
- insn = hppa_elf_relocate_insn (abfd, input_section, insn, addr,
- symbol_in, sym_value, r_addend,
- r_type, r_format, r_field, r_pcrel);
- break;
-
- case R_HPPA_GOTOFF_11: /* Symbol - GOT + Addend 11 */
- r_field = e_fsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_14: /* Symbol - GOT + Addend 14 */
- r_field = e_fsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_L21: /* L (Sym - GOT, Addend) 21 */
- r_field = e_lsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_R11: /* R (Sym - GOT, Addend) 11 */
- r_field = e_rsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_R14: /* R (Sym - GOT, Addend) 14 */
- r_field = e_rsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_LS21: /* LS(Sym - GOT, Addend) 21 */
- r_field = e_lssel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_RS11: /* RS(Sym - GOT, Addend) 11 */
- r_field = e_rssel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_RS14: /* RS(Sym - GOT, Addend) 14 */
- r_field = e_rssel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_LD21: /* LD(Sym - GOT, Addend) 21 */
- r_field = e_ldsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_RD11: /* RD(Sym - GOT, Addend) 11 */
- r_field = e_rdsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_RD14: /* RD(Sym - GOT, Addend) 14 */
- r_field = e_rdsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_LR21: /* LR(Sym - GOT, Addend) 21 */
- r_field = e_lrsel;
- goto do_basic_type_2;
- case R_HPPA_GOTOFF_RR14: /* RR(Sym - GOT, Addend) 14 */
- r_field = e_rrsel;
- do_basic_type_2:
- sym_value -= GOT_value;
- insn = hppa_elf_relocate_insn (abfd, input_section, insn, addr,
- symbol_in, sym_value, r_addend,
- r_type, r_format, r_field, r_pcrel);
- break;
-
- case R_HPPA_ABS_CALL_11: /* Symbol + Addend 11 */
- r_field = e_fsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_14: /* Symbol + Addend 14 */
- r_field = e_fsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_17: /* Symbol + Addend 17 */
- r_field = e_fsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_L21: /* L (Symbol, Addend) 21 */
- r_field = e_lsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_R11: /* R (Symbol, Addend) 11 */
- r_field = e_rsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_R14: /* R (Symbol, Addend) 14 */
- r_field = e_rsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_R17: /* R (Symbol, Addend) 17 */
- r_field = e_rsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_LS21: /* LS(Symbol, Addend) 21 */
- r_field = e_lssel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_RS11: /* RS(Symbol, Addend) 11 */
- r_field = e_lssel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_RS14: /* RS(Symbol, Addend) 14 */
- r_field = e_rssel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_RS17: /* RS(Symbol, Addend) 17 */
- r_field = e_rssel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_LD21: /* LD(Symbol, Addend) 21 */
- r_field = e_ldsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_RD11: /* RD(Symbol, Addend) 11 */
- r_field = e_rdsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_RD14: /* RD(Symbol, Addend) 14 */
- r_field = e_rdsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_RD17: /* RD(Symbol, Addend) 17 */
- r_field = e_rdsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_LR21: /* LR(Symbol, Addend) 21 */
- r_field = e_lrsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_RR14: /* RR(Symbol, Addend) 14 */
- r_field = e_rrsel;
- goto do_basic_type_3;
- case R_HPPA_ABS_CALL_RR17: /* RR(Symbol, Addend) 17 */
- r_field = e_rrsel;
- do_basic_type_3:
- insn = hppa_elf_relocate_insn (abfd, input_section, insn, addr,
- symbol_in, sym_value, r_addend,
- r_type, r_format, r_field, r_pcrel);
- break;
-
- case R_HPPA_PCREL_CALL_11: /* Symbol - PC + Addend 11 */
- r_field = e_fsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_14: /* Symbol - PC + Addend 14 */
- r_field = e_fsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_17: /* Symbol - PC + Addend 17 */
- r_field = e_fsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_L21:/* L (Symbol - PC, Addend) 21 */
- r_field = e_lsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_R11:/* R (Symbol - PC, Addend) 11 */
- r_field = e_rsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_R14:/* R (Symbol - PC, Addend) 14 */
- r_field = e_rsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_R17:/* R (Symbol - PC, Addend) 17 */
- r_field = e_rsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_LS21: /* LS(Symbol - PC, Addend) 21 */
- r_field = e_lssel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_RS11: /* RS(Symbol - PC, Addend) 11 */
- r_field = e_rssel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_RS14: /* RS(Symbol - PC, Addend) 14 */
- r_field = e_rssel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_RS17: /* RS(Symbol - PC, Addend) 17 */
- r_field = e_rssel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_LD21: /* LD(Symbol - PC, Addend) 21 */
- r_field = e_ldsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_RD11: /* RD(Symbol - PC, Addend) 11 */
- r_field = e_rdsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_RD14: /* RD(Symbol - PC, Addend) 14 */
- r_field = e_rdsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_RD17: /* RD(Symbol - PC, Addend) 17 */
- r_field = e_rdsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_LR21: /* LR(Symbol - PC, Addend) 21 */
- r_field = e_lrsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_RR14: /* RR(Symbol - PC, Addend) 14 */
- r_field = e_rrsel;
- goto do_basic_type_4;
- case R_HPPA_PCREL_CALL_RR17: /* RR(Symbol - PC, Addend) 17 *//* #69 */
- r_field = e_rrsel;
- do_basic_type_4:
- insn = hppa_elf_relocate_insn (abfd, input_section, insn, addr,
- symbol_in, sym_value, r_addend,
- r_type, r_format, r_field, r_pcrel);
- break;
-
- case R_HPPA_PLABEL_32:
- case R_HPPA_PLABEL_11:
- case R_HPPA_PLABEL_14:
- r_field = e_fsel;
- goto do_basic_type_5;
- case R_HPPA_PLABEL_L21:
- r_field = e_lsel;
- goto do_basic_type_5;
- case R_HPPA_PLABEL_R11:
- case R_HPPA_PLABEL_R14:
- r_field = e_rsel;
- do_basic_type_5:
- insn = hppa_elf_relocate_insn (abfd, input_section, insn, addr,
- symbol_in, sym_value, r_addend,
- r_type, r_format, r_field, r_pcrel);
- break;
-
- case R_HPPA_UNWIND_ENTRY:
- case R_HPPA_UNWIND_ENTRIES:
- hppa_elf_relocate_unwind_table (abfd, input_section, data, addr,
- symbol_in, sym_value, r_addend,
- r_type, r_format, r_field, r_pcrel);
- return (bfd_reloc_ok);
-
- case R_HPPA_PUSH_CONST: /* push Addend - - */
- case R_HPPA_PUSH_PC: /* push PC + Addend - - */
- case R_HPPA_PUSH_SYM: /* push Symbol + Addend - - */
- case R_HPPA_PUSH_GOTOFF: /* push Symbol - GOT + Addend - - */
- case R_HPPA_PUSH_ABS_CALL: /* push Symbol + Addend - - */
- case R_HPPA_PUSH_PCREL_CALL: /* push Symbol - PC + Addend - - */
- case R_HPPA_PUSH_PLABEL: /* [TBD] - - */
- case R_HPPA_MAX: /* pop A and B, push max(B,A) - - */
- case R_HPPA_MIN: /* pop A and B, push min(B,A) - - */
- case R_HPPA_ADD: /* pop A and B, push B + A - - */
- case R_HPPA_SUB: /* pop A and B, push B - A - - */
- case R_HPPA_MULT: /* pop A and B, push B * A - - */
- case R_HPPA_DIV: /* pop A and B, push B / A - - */
- case R_HPPA_MOD: /* pop A and B, push B % A - - */
- case R_HPPA_AND: /* pop A and B, push B & A - - */
- case R_HPPA_OR: /* pop A and B, push B | A - - */
- case R_HPPA_XOR: /* pop A and B, push B ^ A - - */
- case R_HPPA_NOT: /* pop A, push ~A - - */
- case R_HPPA_LSHIFT: /* pop A, push A << Addend - - */
- case R_HPPA_ARITH_RSHIFT: /* pop A, push A >> Addend - - */
- case R_HPPA_LOGIC_RSHIFT: /* pop A, push A >> Addend - - */
- case R_HPPA_EXPR_F: /* pop A, push A + Addend L - */
- case R_HPPA_EXPR_L: /* pop A, push L(A,Addend) L - */
- case R_HPPA_EXPR_R: /* pop A, push R(A,Addend) R - */
- case R_HPPA_EXPR_LS: /* pop A, push LS(A,Addend) LS - */
- case R_HPPA_EXPR_RS: /* pop A, push RS(A,Addend) RS - */
- case R_HPPA_EXPR_LD: /* pop A, push LD(A,Addend) LD - */
- case R_HPPA_EXPR_RD: /* pop A, push RD(A,Addend) RD - */
- case R_HPPA_EXPR_LR: /* pop A, push LR(A,Addend) LR - */
- case R_HPPA_EXPR_RR: /* pop A, push RR(A,Addend) RR - */
-
- case R_HPPA_EXPR_32: /* pop - 32 */
- case R_HPPA_EXPR_21: /* pop - 21 */
- case R_HPPA_EXPR_11: /* pop - 11 */
- case R_HPPA_EXPR_14: /* pop - 14 */
- case R_HPPA_EXPR_17: /* pop - 17 */
- case R_HPPA_EXPR_12: /* pop - 12 */
- fprintf (stderr, "Relocation problem: ");
- fprintf (stderr, "Unimplemented reloc type %d, in module %s\n",
- r_type, abfd->filename);
- return (bfd_reloc_notsupported);
- default:
- fprintf (stderr, "Relocation problem : ");
- fprintf (stderr, "Unrecognized reloc type %d, in module %s\n",
- r_type, abfd->filename);
- return (bfd_reloc_dangerous);
- }
-
- /* update the instruction word */
- bfd_put_32 (abfd, insn, hit_data);
-
- return (bfd_reloc_ok);
-
-}
-
-struct elf_reloc_map
- {
- unsigned char bfd_reloc_val;
- unsigned char elf_reloc_val;
- };
-
-static CONST struct elf_reloc_map elf_hppa_reloc_map[] =
-{
- {BFD_RELOC_NONE, R_HPPA_NONE,},
- {BFD_RELOC_HPPA_32, R_HPPA_32,},
- {BFD_RELOC_HPPA_11, R_HPPA_11,},
- {BFD_RELOC_HPPA_14, R_HPPA_14,},
- {BFD_RELOC_HPPA_17, R_HPPA_17,},
- {BFD_RELOC_HPPA_L21, R_HPPA_L21,},
- {BFD_RELOC_HPPA_R11, R_HPPA_R11,},
- {BFD_RELOC_HPPA_R14, R_HPPA_R14,},
- {BFD_RELOC_HPPA_R17, R_HPPA_R17,},
- {BFD_RELOC_HPPA_LS21, R_HPPA_LS21,},
- {BFD_RELOC_HPPA_RS11, R_HPPA_RS11,},
- {BFD_RELOC_HPPA_RS14, R_HPPA_RS14,},
- {BFD_RELOC_HPPA_RS17, R_HPPA_RS17,},
- {BFD_RELOC_HPPA_LD21, R_HPPA_LD21,},
- {BFD_RELOC_HPPA_RD11, R_HPPA_RD11,},
- {BFD_RELOC_HPPA_RD14, R_HPPA_RD14,},
- {BFD_RELOC_HPPA_RD17, R_HPPA_RD17,},
- {BFD_RELOC_HPPA_LR21, R_HPPA_LR21,},
- {BFD_RELOC_HPPA_RR14, R_HPPA_RR14,},
- {BFD_RELOC_HPPA_RR17, R_HPPA_RR17,},
- {BFD_RELOC_HPPA_GOTOFF_11, R_HPPA_GOTOFF_11,},
- {BFD_RELOC_HPPA_GOTOFF_14, R_HPPA_GOTOFF_14,},
- {BFD_RELOC_HPPA_GOTOFF_L21, R_HPPA_GOTOFF_L21,},
- {BFD_RELOC_HPPA_GOTOFF_R11, R_HPPA_GOTOFF_R11,},
- {BFD_RELOC_HPPA_GOTOFF_R14, R_HPPA_GOTOFF_R14,},
- {BFD_RELOC_HPPA_GOTOFF_LS21, R_HPPA_GOTOFF_LS21,},
- {BFD_RELOC_HPPA_GOTOFF_RS11, R_HPPA_GOTOFF_RS11,},
- {BFD_RELOC_HPPA_GOTOFF_RS14, R_HPPA_GOTOFF_RS14,},
- {BFD_RELOC_HPPA_GOTOFF_LD21, R_HPPA_GOTOFF_LD21,},
- {BFD_RELOC_HPPA_GOTOFF_RD11, R_HPPA_GOTOFF_RD11,},
- {BFD_RELOC_HPPA_GOTOFF_RD14, R_HPPA_GOTOFF_RD14,},
- {BFD_RELOC_HPPA_GOTOFF_LR21, R_HPPA_GOTOFF_LR21,},
- {BFD_RELOC_HPPA_GOTOFF_RR14, R_HPPA_GOTOFF_RR14,},
- {BFD_RELOC_HPPA_ABS_CALL_11, R_HPPA_ABS_CALL_11,},
- {BFD_RELOC_HPPA_ABS_CALL_14, R_HPPA_ABS_CALL_14,},
- {BFD_RELOC_HPPA_ABS_CALL_17, R_HPPA_ABS_CALL_17,},
- {BFD_RELOC_HPPA_ABS_CALL_L21, R_HPPA_ABS_CALL_L21,},
- {BFD_RELOC_HPPA_ABS_CALL_R11, R_HPPA_ABS_CALL_R11,},
- {BFD_RELOC_HPPA_ABS_CALL_R14, R_HPPA_ABS_CALL_R14,},
- {BFD_RELOC_HPPA_ABS_CALL_R17, R_HPPA_ABS_CALL_R17,},
- {BFD_RELOC_HPPA_ABS_CALL_LS21, R_HPPA_ABS_CALL_LS21,},
- {BFD_RELOC_HPPA_ABS_CALL_RS11, R_HPPA_ABS_CALL_RS11,},
- {BFD_RELOC_HPPA_ABS_CALL_RS14, R_HPPA_ABS_CALL_RS14,},
- {BFD_RELOC_HPPA_ABS_CALL_RS17, R_HPPA_ABS_CALL_RS17,},
- {BFD_RELOC_HPPA_ABS_CALL_LD21, R_HPPA_ABS_CALL_LD21,},
- {BFD_RELOC_HPPA_ABS_CALL_RD11, R_HPPA_ABS_CALL_RD11,},
- {BFD_RELOC_HPPA_ABS_CALL_RD14, R_HPPA_ABS_CALL_RD14,},
- {BFD_RELOC_HPPA_ABS_CALL_RD17, R_HPPA_ABS_CALL_RD17,},
- {BFD_RELOC_HPPA_ABS_CALL_LR21, R_HPPA_ABS_CALL_LR21,},
- {BFD_RELOC_HPPA_ABS_CALL_RR14, R_HPPA_ABS_CALL_RR14,},
- {BFD_RELOC_HPPA_ABS_CALL_RR17, R_HPPA_ABS_CALL_RR17,},
- {BFD_RELOC_HPPA_PCREL_CALL_11, R_HPPA_PCREL_CALL_11,},
- {BFD_RELOC_HPPA_PCREL_CALL_14, R_HPPA_PCREL_CALL_14,},
- {BFD_RELOC_HPPA_PCREL_CALL_17, R_HPPA_PCREL_CALL_17,},
- {BFD_RELOC_HPPA_PCREL_CALL_12, R_HPPA_PCREL_CALL_12,},
- {BFD_RELOC_HPPA_PCREL_CALL_L21, R_HPPA_PCREL_CALL_L21,},
- {BFD_RELOC_HPPA_PCREL_CALL_R11, R_HPPA_PCREL_CALL_R11,},
- {BFD_RELOC_HPPA_PCREL_CALL_R14, R_HPPA_PCREL_CALL_R14,},
- {BFD_RELOC_HPPA_PCREL_CALL_R17, R_HPPA_PCREL_CALL_R17,},
- {BFD_RELOC_HPPA_PCREL_CALL_LS21, R_HPPA_PCREL_CALL_LS21,},
- {BFD_RELOC_HPPA_PCREL_CALL_RS11, R_HPPA_PCREL_CALL_RS11,},
- {BFD_RELOC_HPPA_PCREL_CALL_RS14, R_HPPA_PCREL_CALL_RS14,},
- {BFD_RELOC_HPPA_PCREL_CALL_RS17, R_HPPA_PCREL_CALL_RS17,},
- {BFD_RELOC_HPPA_PCREL_CALL_LD21, R_HPPA_PCREL_CALL_LD21,},
- {BFD_RELOC_HPPA_PCREL_CALL_RD11, R_HPPA_PCREL_CALL_RD11,},
- {BFD_RELOC_HPPA_PCREL_CALL_RD14, R_HPPA_PCREL_CALL_RD14,},
- {BFD_RELOC_HPPA_PCREL_CALL_RD17, R_HPPA_PCREL_CALL_RD17,},
- {BFD_RELOC_HPPA_PCREL_CALL_LR21, R_HPPA_PCREL_CALL_LR21,},
- {BFD_RELOC_HPPA_PCREL_CALL_RR14, R_HPPA_PCREL_CALL_RR14,},
- {BFD_RELOC_HPPA_PCREL_CALL_RR17, R_HPPA_PCREL_CALL_RR17,},
- {BFD_RELOC_HPPA_PLABEL_32, R_HPPA_PLABEL_32,},
- {BFD_RELOC_HPPA_PLABEL_11, R_HPPA_PLABEL_11,},
- {BFD_RELOC_HPPA_PLABEL_14, R_HPPA_PLABEL_14,},
- {BFD_RELOC_HPPA_PLABEL_L21, R_HPPA_PLABEL_L21,},
- {BFD_RELOC_HPPA_PLABEL_R11, R_HPPA_PLABEL_R11,},
- {BFD_RELOC_HPPA_PLABEL_R14, R_HPPA_PLABEL_R14,},
- {BFD_RELOC_HPPA_DLT_32, R_HPPA_DLT_32,},
- {BFD_RELOC_HPPA_DLT_11, R_HPPA_DLT_11,},
- {BFD_RELOC_HPPA_DLT_14, R_HPPA_DLT_14,},
- {BFD_RELOC_HPPA_DLT_L21, R_HPPA_DLT_L21,},
- {BFD_RELOC_HPPA_DLT_R11, R_HPPA_DLT_R11,},
- {BFD_RELOC_HPPA_DLT_R14, R_HPPA_DLT_R14,},
- {BFD_RELOC_HPPA_UNWIND_ENTRY, R_HPPA_UNWIND_ENTRY,},
- {BFD_RELOC_HPPA_UNWIND_ENTRIES, R_HPPA_UNWIND_ENTRIES,},
-};
-
-static reloc_howto_type *
-elf_hppa_reloc_type_lookup (arch, code)
- bfd_arch_info_type *arch;
- bfd_reloc_code_real_type code;
-{
- int i;
-
- if ((int) code < (int) R_HPPA_UNIMPLEMENTED)
- {
- BFD_ASSERT ((int) elf_hppa_howto_table[(int) code].type == (int) code);
- return &elf_hppa_howto_table[(int) code];
- }
-
- return (reloc_howto_type *) 0;
-}
-
-#define bfd_elf32_bfd_reloc_type_lookup elf_hppa_reloc_type_lookup
-
-
-void
-DEFUN (elf_hppa_tc_symbol, (abfd, symbolP, sym_idx),
- bfd * abfd AND
- elf32_symbol_type * symbolP AND
- int sym_idx)
-{
- symext_chainS *symextP;
- unsigned int arg_reloc;
-
- if (!(symbolP->symbol.flags & BSF_FUNCTION))
- return;
-
- if (!((symbolP->symbol.flags & BSF_EXPORT) ||
- (symbolP->symbol.flags & BSF_GLOBAL)))
- return;
-
- arg_reloc = symbolP->tc_data.hppa_arg_reloc;
-
- symextP = (symext_chainS *) bfd_alloc (abfd, sizeof (symext_chainS) * 2);
-
- symextP[0].entry = ELF32_HPPA_SX_WORD (HPPA_SXT_SYMNDX, sym_idx);
- symextP[0].next = &symextP[1];
-
- symextP[1].entry = ELF32_HPPA_SX_WORD (HPPA_SXT_ARG_RELOC, arg_reloc);
- symextP[1].next = NULL;
-
- if (symext_rootP == NULL)
- {
- symext_rootP = &symextP[0];
- symext_lastP = &symextP[1];
- }
- else
- {
- symext_lastP->next = &symextP[0];
- symext_lastP = &symextP[1];
- }
-}
-
-static symext_entryS *symextn_contents = NULL;
-static unsigned int symextn_contents_real_size = 0;
-
-void
-DEFUN (elf_hppa_tc_make_sections, (abfd, ignored),
- bfd * abfd AND
- PTR ignored)
-{
- symext_chainS *symextP;
- symext_entryS *outbound_symexts;
- int size;
- int n;
- int i;
- extern char *stub_section_contents; /* forward declaration */
- void hppa_elf_stub_finish (); /* forward declaration */
- asection *symextn_sec;
-
- hppa_elf_stub_finish (abfd);
-
- if (symext_rootP == NULL)
- return;
-
- for (n = 0, symextP = symext_rootP; symextP; symextP = symextP->next, ++n)
- ;
-
- size = sizeof (symext_entryS) * n;
- symextn_sec = bfd_get_section_by_name (abfd, SYMEXTN_SECTION_NAME);
- if (symextn_sec == (asection *) 0)
- {
- symextn_sec = bfd_make_section (abfd, SYMEXTN_SECTION_NAME);
- bfd_set_section_flags (abfd,
- symextn_sec,
- SEC_HAS_CONTENTS | SEC_LOAD | SEC_ALLOC | SEC_CODE | SEC_READONLY);
- symextn_sec->output_section = symextn_sec;
- symextn_sec->output_offset = 0;
- bfd_set_section_alignment (abfd, symextn_sec, 2);
- }
- symextn_contents = (symext_entryS *) bfd_alloc (abfd, size);
-
- for (i = 0, symextP = symext_rootP; symextP; symextP = symextP->next, ++i)
- symextn_contents[i] = symextP->entry;
- symextn_contents_real_size = size;
- bfd_set_section_size (abfd, symextn_sec, symextn_contents_real_size);
-
- return;
-}
+ /* We're done with the external relocs, free them. */
+ free (external_relocs);
-/* Support for HP PA-RISC stub generation.
-
- Written by
-
- Center for Software Science
- Department of Computer Science
- University of Utah
-
- */
-
-/*
- HP-PA calling conventions state:
-
- 1. an argument relocation stub is required whenever the callee and
- caller argument relocation bits do not match exactly. The exception
- to this rule is if either the caller or callee argument relocation
- bit are 00 (do not relocate).
-
- 2. The linker can optionally add a symbol record for the stub so that
- the stub can be reused. The symbol record will be the same as the
- original export symbol record, except that the relocation bits will
- reflect the input of the stub, the type would be STUB and the symbol
- value will be the location of the relocation stub.
-
- Other notes:
-
- Stubs can be inserted *before* the section of the caller. The stubs
- can be treated as calls to code that manipulates the arguments.
-
- */
-
-typedef enum
- {
- HPPA_STUB_ILLEGAL,
- HPPA_STUB_ARG_RELOC,
- HPPA_STUB_LONG_BRANCH
- } hppa_stub_type;
-
-symext_entryS
-elf32_hppa_get_sym_extn (abfd, sym, type)
- bfd *abfd;
- asymbol *sym;
- int type;
-{
- /* This function finds the symbol extension record of the */
- /* specified type for the specified symbol. It returns the */
- /* value of the symbol extension record. */
- symext_entryS retval;
-
- switch (type)
- {
- case HPPA_SXT_NULL:
- retval = (symext_entryS) 0;
- break;
- case HPPA_SXT_SYMNDX:
- retval = (symext_entryS) 0; /* XXX: need to fix this */
- break;
- case HPPA_SXT_ARG_RELOC:
- {
- elf32_symbol_type *esymP = (elf32_symbol_type *) sym;
-
- retval = (symext_entryS) esymP->tc_data.hppa_arg_reloc;
- break;
- }
- }
- return retval;
-}
-
-
-typedef struct Elf32_hppa_Stub_description_struct
- {
- bfd *this_bfd; /* bfd to which this stub */
- /* applies */
- asection *stub_sec; /* stub section for this bfd */
- unsigned relocs_allocated_cnt; /* count of relocations for this stub section */
- unsigned real_size;
- unsigned allocated_size;
- int *stub_secp; /* pointer to the next available location in the buffer */
- char *stub_contents; /* contents of the stubs for this bfd */
- }
-
-Elf32_hppa_Stub_description;
-
-typedef struct Elf32_hppa_Stub_list_struct
- {
- Elf32_hppa_Stub_description *stub;
- struct Elf32_hppa_Stub_list_struct *next;
- } Elf32_hppa_Stub_list;
-
-static Elf32_hppa_Stub_list *elf_hppa_stub_rootP = NULL;
-
-/* Locate the stub section information for the given bfd. */
-static Elf32_hppa_Stub_description *
-find_stubs (abfd, stub_sec)
- bfd *abfd;
- asection *stub_sec;
-{
- Elf32_hppa_Stub_list *stubP;
-
- for (stubP = elf_hppa_stub_rootP; stubP; stubP = stubP->next)
- {
- if (stubP->stub->this_bfd == abfd
- && stubP->stub->stub_sec == stub_sec)
- return stubP->stub;
- }
-
- return (Elf32_hppa_Stub_description *) NULL;
-}
-
-static Elf32_hppa_Stub_description *
-new_stub (abfd, stub_sec)
- bfd *abfd;
- asection *stub_sec;
-{
- Elf32_hppa_Stub_description *stub = find_stubs (abfd, stub_sec);
-
- if (stub)
- return stub;
-
- stub = (Elf32_hppa_Stub_description *) bfd_zalloc (abfd, sizeof (Elf32_hppa_Stub_description));
- stub->this_bfd = abfd;
- stub->stub_sec = stub_sec;
- stub->real_size = 0;
- stub->allocated_size = 0;
- stub->stub_contents = NULL;
- stub->stub_secp = NULL;
-
- return stub;
-}
-
-static void
-add_stub (stub)
- Elf32_hppa_Stub_description *stub;
-{
- Elf32_hppa_Stub_list *new_entry;
-
- new_entry = (Elf32_hppa_Stub_list *) bfd_zalloc (stub->this_bfd, sizeof (Elf32_hppa_Stub_list));
-
- if (new_entry)
- {
- new_entry->stub = stub;
-
- if (elf_hppa_stub_rootP)
- {
- new_entry->next = elf_hppa_stub_rootP;
- elf_hppa_stub_rootP = new_entry;
- }
- else
- {
- new_entry->next = (Elf32_hppa_Stub_list *) NULL;
- elf_hppa_stub_rootP = new_entry;
- }
- }
- else
- {
- bfd_error = no_memory;
- bfd_perror ("add_stub");
- }
-}
-
-#define ARGUMENTS 0
-#define RETURN_VALUE 1
-
-#define NO_ARG_RELOC 0
-#define R_TO_FR 1
-#define FR_TO_R 2
-#define ARG_RELOC_ERR 3
-
-#define ARG0 0
-#define ARG1 1
-#define ARG2 2
-#define ARG3 3
-#define RETVAL 4
-
-#define AR_NO 0
-#define AR_GR 1
-#define AR_FR 2
-#define AR_FU 3
-
-static CONST char *CONST reloc_type_strings[] =
-{
- "NONE", "GR->FR", "FR->GR", "ERROR"
-};
-
-static CONST char mismatches[4][4] =
-{ /* CALLEE NONE CALLEE GR CALLEE FR CALLEE FU */
- /* CALLER NONE */
- {NO_ARG_RELOC, NO_ARG_RELOC, NO_ARG_RELOC, NO_ARG_RELOC},
- /* CALLER GR */
- {NO_ARG_RELOC, NO_ARG_RELOC, R_TO_FR, R_TO_FR},
- /* CALLER FR */
- {NO_ARG_RELOC, FR_TO_R, NO_ARG_RELOC, NO_ARG_RELOC},
- /* CALLER FU */
- {NO_ARG_RELOC, FR_TO_R, NO_ARG_RELOC, NO_ARG_RELOC},
-};
-
-static CONST char retval_mismatches[4][4] =
-{ /* CALLEE NONE CALLEE GR CALLEE FR CALLEE FU */
- /* CALLER NONE */
- {NO_ARG_RELOC, NO_ARG_RELOC, NO_ARG_RELOC, NO_ARG_RELOC},
- /* CALLER GR */
- {NO_ARG_RELOC, NO_ARG_RELOC, R_TO_FR, R_TO_FR},
- /* CALLER FR */
- {NO_ARG_RELOC, FR_TO_R, NO_ARG_RELOC, NO_ARG_RELOC},
- /* CALLER FU */
- {NO_ARG_RELOC, FR_TO_R, NO_ARG_RELOC, NO_ARG_RELOC},
-};
-
-static int
-type_of_mismatch (caller_bits, callee_bits, type)
- int caller_bits;
- int callee_bits;
- int type;
-{
- switch (type)
- {
- case ARGUMENTS:
- return mismatches[caller_bits][callee_bits];
- case RETURN_VALUE:
- return retval_mismatches[caller_bits][callee_bits];
- }
-
- return 0;
-}
-
-#define EXTRACT_ARBITS(ar,which) ((ar) >> (8-(which*2))) & 3
-
-#include "hppa_stubs.h"
-
-#define NEW_INSTRUCTION(desc,insn) \
- *((desc)->stub_secp)++ = (insn); \
- (desc)->real_size += sizeof(int); \
- bfd_set_section_size((desc)->this_bfd,(desc)->stub_sec,(desc)->real_size);
-
-void
-hppa_elf_stub_finish (output_bfd)
- bfd *output_bfd;
-{
- extern bfd_error_vector_type bfd_error_vector;
- Elf32_hppa_Stub_list *stub_list = elf_hppa_stub_rootP;
- /* All the stubs have been built. Finish up building */
- /* stub section. Apply relocations to the section. */
-
- for (; stub_list; stub_list = stub_list->next)
- {
- if (stub_list->stub->real_size)
- {
- bfd *stub_bfd = stub_list->stub->this_bfd;
- asection *stub_sec = bfd_get_section_by_name (stub_bfd, ".hppa_linker_stubs");
- bfd_size_type reloc_size;
- arelent **reloc_vector;
-
- BFD_ASSERT (stub_sec == stub_list->stub->stub_sec);
- reloc_size = bfd_get_reloc_upper_bound (stub_bfd, stub_sec);
- reloc_vector = (arelent **) alloca (reloc_size);
-
- BFD_ASSERT (stub_sec);
-
- /* We are not relaxing the section, so just copy the size info */
- stub_sec->_cooked_size = stub_sec->_raw_size;
- stub_sec->reloc_done = true;
-
-
- if (bfd_canonicalize_reloc (stub_bfd,
- stub_sec,
- reloc_vector,
- output_bfd->outsymbols))
+ /* Now examine each relocation. */
+ irela = internal_relocs;
+ irelaend = irela + section->reloc_count;
+ for (; irela < irelaend; irela++)
{
- arelent **parent;
- for (parent = reloc_vector; *parent != (arelent *) NULL;
- parent++)
+ long r_type, size_of_stub;
+ unsigned long r_index;
+ struct elf_link_hash_entry *hash;
+ struct elf32_hppa_stub_hash_entry *stub_hash;
+ Elf_Internal_Sym *sym;
+ asection *sym_sec;
+ const char *sym_name;
+ symvalue sym_value;
+ bfd_vma location, destination;
+ char *new_name = NULL;
+
+ r_type = ELF32_R_TYPE (irela->r_info);
+ r_index = ELF32_R_SYM (irela->r_info);
+
+ if (r_type < 0 || r_type >= (int) R_PARISC_UNIMPLEMENTED)
{
- bfd_reloc_status_type r =
- bfd_perform_relocation (stub_bfd,
- *parent,
- stub_list->stub->stub_contents,
- stub_sec, 0);
-
-
- if (r != bfd_reloc_ok)
- {
- switch (r)
- {
- case bfd_reloc_undefined:
- bfd_error_vector.undefined_symbol (*parent, NULL);
- break;
- case bfd_reloc_dangerous:
- bfd_error_vector.reloc_dangerous (*parent, NULL);
- break;
- case bfd_reloc_outofrange:
- case bfd_reloc_overflow:
- bfd_error_vector.reloc_value_truncated (*parent, NULL);
- break;
- default:
- abort ();
- break;
- }
- }
+ bfd_set_error (bfd_error_bad_value);
+ free (internal_relocs);
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ goto error_return;
}
- }
-
- bfd_set_section_contents (output_bfd,
- stub_sec,
- stub_list->stub->stub_contents,
- 0,
- stub_list->stub->real_size);
-
- free (reloc_vector);
- }
- }
-}
-
-void
-hppa_elf_stub_branch_reloc (stub_desc, /* the bfd */
- output_bfd, /* the output bfd */
- stub_sym, /* the stub symbol */
- offset) /* the offset within the stub buffer (pre-calculated) */
- Elf32_hppa_Stub_description *stub_desc;
- bfd *output_bfd;
- asymbol *stub_sym;
- int offset;
-{
- /* Allocate a new relocation entry. */
- arelent relent;
- int size;
-
- if (stub_desc->relocs_allocated_cnt == stub_desc->stub_sec->reloc_count)
- {
- if (stub_desc->stub_sec->relocation == NULL)
- {
- stub_desc->relocs_allocated_cnt = STUB_RELOC_INCR;
- size = sizeof (arelent) * stub_desc->relocs_allocated_cnt;
- stub_desc->stub_sec->relocation = (arelent *) zalloc (size);
- }
- else
- {
- stub_desc->relocs_allocated_cnt += STUB_RELOC_INCR;
- size = sizeof (arelent) * stub_desc->relocs_allocated_cnt;
- stub_desc->stub_sec->relocation = (arelent *) realloc (stub_desc->stub_sec->relocation,
- size);
- }
- }
-
- /* Fill in the details. */
- relent.address = offset;
- relent.addend = 0;
- relent.sym_ptr_ptr = (asymbol **) bfd_zalloc (stub_desc->this_bfd, sizeof (asymbol *));
- BFD_ASSERT (relent.sym_ptr_ptr);
-
- relent.sym_ptr_ptr[0] = stub_sym;
- relent.howto = bfd_reloc_type_lookup (stub_desc->this_bfd, R_HPPA_ABS_CALL_17);
-
- /* Save it in the array of relocations for the stub section. */
-
- memcpy (&stub_desc->stub_sec->relocation[stub_desc->stub_sec->reloc_count++],
- &relent,
- sizeof (arelent));
-}
-
-asymbol *
-hppa_elf_build_arg_reloc_stub (abfd, output_bfd, reloc_entry, stub_types)
- bfd *abfd;
- bfd *output_bfd;
- arelent *reloc_entry;
- int stub_types[5];
-{
- asection *stub_sec = bfd_get_section_by_name (abfd, ".hppa_linker_stubs");
- Elf32_hppa_Stub_description *stub_desc = find_stubs (abfd, stub_sec);
- asymbol *stub_sym = NULL;
- asection *output_text_section = bfd_get_section_by_name (output_bfd, ".text");
- int i;
- char stub_sym_name[128];
-
- if (!stub_sec)
- {
- BFD_ASSERT (stub_desc == NULL);
- stub_sec = bfd_make_section (abfd, ".hppa_linker_stubs");
- bfd_set_section_flags (output_bfd,
- stub_sec,
- SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD | SEC_RELOC | SEC_CODE | SEC_READONLY);
- stub_sec->output_section = output_text_section->output_section;
- stub_sec->output_offset = 0;
- bfd_set_section_alignment (output_bfd, stub_sec, 2);
- stub_desc = new_stub (abfd, stub_sec);
- add_stub (stub_desc);
- }
-
- /* make sure we have a stub descriptor structure */
-
- if (!stub_desc)
- {
- stub_desc = new_stub (abfd, stub_sec);
- add_stub (stub_desc);
- }
-
- /* allocate some space to write the stub */
-
- if (!stub_desc->stub_contents)
- {
- stub_desc->allocated_size = STUB_BUFFER_INCR;
- stub_desc->stub_contents = (char *) xmalloc (STUB_BUFFER_INCR);
- }
- else if ((stub_desc->allocated_size - stub_desc->real_size) < STUB_MAX_SIZE)
- {
- stub_desc->allocated_size = stub_desc->allocated_size + STUB_BUFFER_INCR;
- stub_desc->stub_contents = (char *) xrealloc (stub_desc->stub_contents,
- stub_desc->allocated_size);
- }
-
- stub_desc->stub_secp = (int *) (stub_desc->stub_contents + stub_desc->real_size);
-
- /* create a symbol to point to this stub */
- stub_sym = bfd_make_empty_symbol (abfd);
- sprintf (stub_sym_name,
- "_stub_%s_%02d_%02d_%02d_%02d_%02d\000",
- reloc_entry->sym_ptr_ptr[0]->name,
- stub_types[0], stub_types[1], stub_types[2], stub_types[3], stub_types[4]);
- stub_sym->name = bfd_zalloc (output_bfd, strlen (stub_sym_name) + 1);
- strcpy ((char *) stub_sym->name, stub_sym_name);
- stub_sym->value = (int) stub_desc->stub_secp - (int) stub_desc->stub_contents;
- stub_sym->section = stub_sec;
- stub_sym->flags = BSF_LOCAL | BSF_FUNCTION;
-
- /* redirect the original relocation from the old symbol (a function) */
- /* to the stub (the stub calls the function). */
- /* XXX do we need to change the relocation type? */
- reloc_entry->sym_ptr_ptr = (asymbol **) bfd_zalloc (stub_desc->this_bfd, sizeof (asymbol *));
- reloc_entry->sym_ptr_ptr[0] = stub_sym;
- /* generate the beginning common section for all stubs */
-
- NEW_INSTRUCTION (stub_desc, ADDI_8_SP);
-
- /* generate the code to move the arguments around */
- for (i = ARG0; i < ARG3; i++)
- {
- if (stub_types[i] != NO_ARG_RELOC)
- {
- /* A stub is needed */
- switch (stub_types[i])
- {
- case R_TO_FR:
- switch (i)
+ /* Only look for stubs on call instructions or plabel
+ references. */
+ if (r_type != R_PARISC_PCREL17F
+ && r_type != R_PARISC_PLABEL32
+ && r_type != R_PARISC_PLABEL21L
+ && r_type != R_PARISC_PLABEL14R)
+ continue;
+
+ /* Now determine the call target, its name, value, section
+ and argument relocation bits. */
+ hash = NULL;
+ sym = NULL;
+ sym_sec = NULL;
+ if (r_index < symtab_hdr->sh_info)
{
- case ARG0:
- NEW_INSTRUCTION (stub_desc, LDWS_M8SP_ARG0);
- NEW_INSTRUCTION (stub_desc, FSTWS_FARG0_M8SP);
- break;
- case ARG1:
- NEW_INSTRUCTION (stub_desc, LDWS_M8SP_ARG1);
- NEW_INSTRUCTION (stub_desc, FSTWS_FARG1_M8SP);
- break;
- case ARG2:
- NEW_INSTRUCTION (stub_desc, LDWS_M8SP_ARG1);
- NEW_INSTRUCTION (stub_desc, FSTWS_FARG1_M8SP);
- break;
- case ARG3:
- NEW_INSTRUCTION (stub_desc, LDWS_M8SP_ARG1);
- NEW_INSTRUCTION (stub_desc, FSTWS_FARG1_M8SP);
- break;
+ /* It's a local symbol. */
+ Elf_Internal_Shdr *hdr;
+
+ sym = local_syms + r_index;
+ hdr = elf_elfsections (input_bfd)[sym->st_shndx];
+ sym_sec = hdr->bfd_section;
+ sym_name = bfd_elf_string_from_elf_section (input_bfd,
+ symtab_hdr->sh_link,
+ sym->st_name);
+ sym_value = (ELF_ST_TYPE (sym->st_info) == STT_SECTION
+ ? 0 : sym->st_value);
+ destination = (sym_value
+ + sym_sec->output_offset
+ + sym_sec->output_section->vma);
+
+ /* Tack on an ID so we can uniquely identify this local
+ symbol in the stub or arg info hash tables. */
+ new_name = bfd_malloc (strlen (sym_name) + 10);
+ if (new_name == 0)
+ {
+ free (internal_relocs);
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ goto error_return;
+ }
+ sprintf (new_name, "%s_%08x", sym_name, (int)sym_sec);
+ sym_name = new_name;
}
- break;
-
- case FR_TO_R:
- switch (i)
+ else
{
- case ARG0:
- NEW_INSTRUCTION (stub_desc, FLDWS_M8SP_FARG0);
- NEW_INSTRUCTION (stub_desc, STWS_ARG0_M8SP);
- break;
- case ARG1:
- NEW_INSTRUCTION (stub_desc, FLDWS_M8SP_FARG1);
- NEW_INSTRUCTION (stub_desc, STWS_ARG1_M8SP);
- break;
- case ARG2:
- NEW_INSTRUCTION (stub_desc, FLDWS_M8SP_FARG1);
- NEW_INSTRUCTION (stub_desc, STWS_ARG1_M8SP);
- break;
- case ARG3:
- NEW_INSTRUCTION (stub_desc, FLDWS_M8SP_FARG1);
- NEW_INSTRUCTION (stub_desc, STWS_ARG1_M8SP);
- break;
- }
- break;
-
- }
- }
- }
-
- /* generate the branch to the target routine */
- NEW_INSTRUCTION (stub_desc, STW_RP_M8SP); /* First, save the return address */
- NEW_INSTRUCTION (stub_desc, BL_XXX_RP); /* set up a branch to the function */
+ /* It's an external symbol. */
+ long index;
- /* Fix the branch to the function. We can do this with a relocation. */
-
- hppa_elf_stub_branch_reloc (stub_desc,
- output_bfd, /* the output bfd */
- stub_sym, /* the stub symbol */
- (int) stub_desc->stub_secp - (int) stub_desc->stub_contents - 4); /* the offset within the stub buffer */
-
- NEW_INSTRUCTION (stub_desc, NOP);
-
- /* generate the code to move the return value around */
- i = RETVAL;
- if (stub_types[i] != NO_ARG_RELOC)
- {
- /* A stub is needed */
- switch (stub_types[i])
- {
- case R_TO_FR:
- NEW_INSTRUCTION (stub_desc, LDWS_M8SP_RET0);
- NEW_INSTRUCTION (stub_desc, FSTWS_FRET0_M8SP);
- break;
-
- case FR_TO_R:
- NEW_INSTRUCTION (stub_desc, FLDWS_M8SP_FRET0);
- NEW_INSTRUCTION (stub_desc, STWS_RET0_M8SP);
- break;
- }
- }
-
- /* generate the ending common section for all stubs */
-
- NEW_INSTRUCTION (stub_desc, LDW_M8SP_RP); /* restore return address */
- NEW_INSTRUCTION (stub_desc, SUBI_8_SP);
-
- /* XXX: can we assume this is a save return? */
- NEW_INSTRUCTION (stub_desc, BV_N_0RP);
-
- return stub_sym;
-}
-
-int
-hppa_elf_arg_reloc_needed_p (abfd, reloc_entry, stub_types)
- bfd *abfd;
- arelent *reloc_entry;
- int stub_types[5];
-{
- int i;
- /* If the symbol is still undefined, there is */
- /* no way to know if a stub is required. */
-
- if (reloc_entry->sym_ptr_ptr[0] && reloc_entry->sym_ptr_ptr[0]->section != &bfd_und_section)
- {
- symext_entryS caller_ar = (symext_entryS) ELF32_HPPA_R_ARG_RELOC (reloc_entry->addend);
- symext_entryS callee_ar = elf32_hppa_get_sym_extn (abfd,
- reloc_entry->sym_ptr_ptr[0],
- HPPA_SXT_ARG_RELOC);
-
- /* Now, determine if a stub is */
- /* required. A stub is required if they the callee and caller */
- /* argument relocation bits are both nonzero and not equal. */
-
- if (caller_ar && callee_ar)
- {
- /* Both are non-zero, we need to do further checking. */
- /* First, check if there is a return value relocation to be done */
- int caller_loc[5];
- int callee_loc[5];
-
- callee_loc[RETVAL] = EXTRACT_ARBITS (callee_ar, RETVAL);
- caller_loc[RETVAL] = EXTRACT_ARBITS (caller_ar, RETVAL);
- callee_loc[ARG0] = EXTRACT_ARBITS (callee_ar, ARG0);
- caller_loc[ARG0] = EXTRACT_ARBITS (caller_ar, ARG0);
- callee_loc[ARG1] = EXTRACT_ARBITS (callee_ar, ARG1);
- caller_loc[ARG1] = EXTRACT_ARBITS (caller_ar, ARG1);
- callee_loc[ARG2] = EXTRACT_ARBITS (callee_ar, ARG2);
- caller_loc[ARG2] = EXTRACT_ARBITS (caller_ar, ARG2);
- callee_loc[ARG3] = EXTRACT_ARBITS (callee_ar, ARG3);
- caller_loc[ARG3] = EXTRACT_ARBITS (caller_ar, ARG3);
-
- /* Check some special combinations. For */
- /* example, if FU appears in ARG1 or ARG3, we */
- /* can move it to ARG0 or ARG2, respectively. */
-
- if (caller_loc[ARG0] == AR_FU || caller_loc[ARG1] == AR_FU)
- {
- caller_loc[ARG0] = AR_FU;
- caller_loc[ARG1] = AR_NO;
- }
- if (caller_loc[ARG2] == AR_FU || caller_loc[ARG3] == AR_FU)
- {
- caller_loc[ARG2] = AR_FU;
- caller_loc[ARG3] = AR_NO;
- }
- if (callee_loc[ARG0] == AR_FU || callee_loc[ARG1] == AR_FU)
- {
- callee_loc[ARG0] = AR_FU;
- callee_loc[ARG1] = AR_NO;
- }
- if (callee_loc[ARG2] == AR_FU || callee_loc[ARG3] == AR_FU)
- {
- callee_loc[ARG2] = AR_FU;
- callee_loc[ARG3] = AR_NO;
- }
-
- stub_types[ARG0] = type_of_mismatch (caller_loc[ARG0], callee_loc[ARG0], ARGUMENTS);
- stub_types[ARG1] = type_of_mismatch (caller_loc[ARG1], callee_loc[ARG1], ARGUMENTS);
- stub_types[ARG2] = type_of_mismatch (caller_loc[ARG2], callee_loc[ARG2], ARGUMENTS);
- stub_types[ARG3] = type_of_mismatch (caller_loc[ARG3], callee_loc[ARG3], ARGUMENTS);
- stub_types[RETVAL] = type_of_mismatch (caller_loc[RETVAL], callee_loc[RETVAL], RETURN_VALUE);
-
- /* XXX for now, just report a */
- /* warning */
-
- /* But, when we start building stubs, here are the steps involved: */
- /* 1. Determine what argument registers need to relocated. This */
- /* step is already done here. */
- /* 2. Build the appropriate stub in the .hppa_linker_stubs section. */
- /* This section should never appear in an object file. It is */
- /* only used internally. The output_section of the */
- /* .hppa_linker_stubs section is the .text section of the */
- /* executable. */
- /* 3. Build a symbol that is used (internally only) as the entry */
- /* point of the stub. */
- /* 4. Change the instruction of the original branch into a branch to */
- /* the stub routine. */
- /* 5. Build a relocation entry for the instruction of the original */
- /* branch to be R_HPPA_ABS_CALL to the stub routine. */
-
-
- if (stub_types[0]
- || stub_types[1]
- || stub_types[2]
- || stub_types[3]
- || stub_types[4])
- {
-#ifdef DETECT_STUBS
- fprintf (stderr, "Stub needed for %s @ %s+0x%x: callee/caller ar=0x%x/0x%x ",
- reloc_entry->sym_ptr_ptr[0]->name,
- abfd->filename, reloc_entry->address,
- callee_ar, caller_ar);
- for (i = ARG0; i < RETVAL; i++)
- {
- if (stub_types[i] != NO_ARG_RELOC)
+ index = r_index - symtab_hdr->sh_info;
+ hash = elf_sym_hashes (input_bfd)[index];
+ if (hash->root.type == bfd_link_hash_defined
+ || hash->root.type == bfd_link_hash_defweak)
{
- fprintf (stderr, "%s%d: %s ",
- i == RETVAL ? "ret" : "arg",
- i == RETVAL ? 0 : i,
- reloc_type_strings[stub_types[i]]);
+ sym_sec = hash->root.u.def.section;
+ sym_name = hash->root.root.string;
+ sym_value = hash->root.u.def.value;
+ destination = (sym_value
+ + sym_sec->output_offset
+ + sym_sec->output_section->vma);
+ }
+ else
+ {
+ bfd_set_error (bfd_error_bad_value);
+ free (internal_relocs);
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ goto error_return;
}
}
- fprintf (stderr, "\n");
-#endif
- return 1;
- }
-
- }
- }
- return 0;
-}
-
-asymbol *
-hppa_elf_stub_check (abfd, output_bfd, reloc_entry)
- bfd *abfd;
- bfd *output_bfd;
- arelent *reloc_entry;
-{
- int stub_types[5];
-
- switch (reloc_entry->howto->type)
- {
- case R_HPPA_ABS_CALL_11: /* Symbol + Addend 11 */
- case R_HPPA_ABS_CALL_14: /* Symbol + Addend 14 */
- case R_HPPA_ABS_CALL_17: /* Symbol + Addend 17 */
- case R_HPPA_ABS_CALL_L21: /* L (Symbol, Addend) 21 */
- case R_HPPA_ABS_CALL_R11: /* R (Symbol, Addend) 11 */
- case R_HPPA_ABS_CALL_R14: /* R (Symbol, Addend) 14 */
- case R_HPPA_ABS_CALL_R17: /* R (Symbol, Addend) 17 */
- case R_HPPA_ABS_CALL_LS21: /* LS(Symbol, Addend) 21 */
- case R_HPPA_ABS_CALL_RS11: /* RS(Symbol, Addend) 11 */
- case R_HPPA_ABS_CALL_RS14: /* RS(Symbol, Addend) 14 */
- case R_HPPA_ABS_CALL_RS17: /* RS(Symbol, Addend) 17 */
- case R_HPPA_ABS_CALL_LD21: /* LD(Symbol, Addend) 21 */
- case R_HPPA_ABS_CALL_RD11: /* RD(Symbol, Addend) 11 */
- case R_HPPA_ABS_CALL_RD14: /* RD(Symbol, Addend) 14 */
- case R_HPPA_ABS_CALL_RD17: /* RD(Symbol, Addend) 17 */
- case R_HPPA_ABS_CALL_LR21: /* LR(Symbol, Addend) 21 */
- case R_HPPA_ABS_CALL_RR14: /* RR(Symbol, Addend) 14 */
- case R_HPPA_ABS_CALL_RR17: /* RR(Symbol, Addend) 17 */
-
- case R_HPPA_PCREL_CALL_11: /* Symbol - PC + Addend 11 */
- case R_HPPA_PCREL_CALL_14: /* Symbol - PC + Addend 14 */
- case R_HPPA_PCREL_CALL_17: /* Symbol - PC + Addend 17 */
- case R_HPPA_PCREL_CALL_12: /* Symbol - PC + Addend 12 */
- case R_HPPA_PCREL_CALL_L21:/* L (Symbol - PC, Addend) 21 */
- case R_HPPA_PCREL_CALL_R11:/* R (Symbol - PC, Addend) 11 */
- case R_HPPA_PCREL_CALL_R14:/* R (Symbol - PC, Addend) 14 */
- case R_HPPA_PCREL_CALL_R17:/* R (Symbol - PC, Addend) 17 */
- case R_HPPA_PCREL_CALL_LS21: /* LS(Symbol - PC, Addend) 21 */
- case R_HPPA_PCREL_CALL_RS11: /* RS(Symbol - PC, Addend) 11 */
- case R_HPPA_PCREL_CALL_RS14: /* RS(Symbol - PC, Addend) 14 */
- case R_HPPA_PCREL_CALL_RS17: /* RS(Symbol - PC, Addend) 17 */
- case R_HPPA_PCREL_CALL_LD21: /* LD(Symbol - PC, Addend) 21 */
- case R_HPPA_PCREL_CALL_RD11: /* RD(Symbol - PC, Addend) 11 */
- case R_HPPA_PCREL_CALL_RD14: /* RD(Symbol - PC, Addend) 14 */
- case R_HPPA_PCREL_CALL_RD17: /* RD(Symbol - PC, Addend) 17 */
- case R_HPPA_PCREL_CALL_LR21: /* LR(Symbol - PC, Addend) 21 */
- case R_HPPA_PCREL_CALL_RR14: /* RR(Symbol - PC, Addend) 14 */
- case R_HPPA_PCREL_CALL_RR17: /* RR(Symbol - PC, Addend) 17 */
- if (hppa_elf_arg_reloc_needed_p (abfd, reloc_entry, stub_types))
- {
- /* generate a stub */
- return hppa_elf_build_arg_reloc_stub (abfd, output_bfd, reloc_entry, stub_types);
- }
- break;
- default:
- break;
-
- }
- return reloc_entry->sym_ptr_ptr[0];
-}
-
-#define STUB_SYM_BUFFER_INC 5
-
-asymbol *
-hppa_look_for_stubs_in_section (abfd, output_bfd, asec, syms, new_sym_cnt)
- bfd *abfd;
- bfd *output_bfd;
- asection *asec;
- asymbol **syms;
- int *new_sym_cnt;
-{
- int i;
- int stub_types[5];
- asymbol *new_syms = (asymbol *) NULL;
- int new_cnt = 0;
- int new_max = 0;
-
- /* Relocations are in different places depending on whether this is */
- /* an output section or an input section. Also, the relocations are */
- /* in different forms. Sigh. */
- /* Luckily, we have bfd_canonicalize_reloc() to straighten this out for us. */
-
- /* if ( asec->orelocation || asec->relocation ) { */
- if (asec->reloc_count > 0)
- {
- arelent **reloc_vector = (arelent **) alloca (asec->reloc_count * (sizeof (arelent *) + 1));
+ /* Now determine where the call point is. */
+ location = (section->output_offset
+ + section->output_section->vma
+ + irela->r_offset);
+
+ /* We only care about the destination for PCREL function
+ calls (eg. we don't care for PLABELS). */
+ if (r_type != R_PARISC_PCREL17F)
+ location = destination;
+
+ /* Determine what (if any) linker stub is needed and its
+ size (in bytes). */
+ size_of_stub = elf32_hppa_size_of_stub (location,
+ destination,
+ sym_name);
+ if (size_of_stub != 0)
+ {
+ char *stub_name;
+ unsigned int len;
- bfd_canonicalize_reloc (abfd, asec, reloc_vector, syms);
- for (i = 0; i < asec->reloc_count; i++)
- {
-#if 0
- arelent *rle;
+ /* Get the name of this stub. */
+ len = strlen (sym_name);
+ len += 23;
- if ( asec->orelocation )
- rle = asec->orelocation[i];
- else
- rle = asec->relocation+i;
-#endif
+ stub_name = bfd_malloc (len);
+ if (!stub_name)
+ {
+ /* Because sym_name was mallocd above for local
+ symbols. */
+ if (r_index < symtab_hdr->sh_info)
+ free (new_name);
+
+ free (internal_relocs);
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ goto error_return;
+ }
+ elf32_hppa_name_of_stub (location, destination, stub_name);
+ strcat (stub_name + 22, sym_name);
- arelent *rle = reloc_vector[i];
+ /* Because sym_name was malloced above for local symbols. */
+ if (r_index < symtab_hdr->sh_info)
+ free (new_name);
- switch (rle->howto->type)
- {
- case R_HPPA_ABS_CALL_11: /* Symbol + Addend 11 */
- case R_HPPA_ABS_CALL_14: /* Symbol + Addend 14 */
- case R_HPPA_ABS_CALL_17: /* Symbol + Addend 17 */
- case R_HPPA_ABS_CALL_L21: /* L (Symbol, Addend) 21 */
- case R_HPPA_ABS_CALL_R11: /* R (Symbol, Addend) 11 */
- case R_HPPA_ABS_CALL_R14: /* R (Symbol, Addend) 14 */
- case R_HPPA_ABS_CALL_R17: /* R (Symbol, Addend) 17 */
- case R_HPPA_ABS_CALL_LS21: /* LS(Symbol, Addend) 21 */
- case R_HPPA_ABS_CALL_RS11: /* RS(Symbol, Addend) 11 */
- case R_HPPA_ABS_CALL_RS14: /* RS(Symbol, Addend) 14 */
- case R_HPPA_ABS_CALL_RS17: /* RS(Symbol, Addend) 17 */
- case R_HPPA_ABS_CALL_LD21: /* LD(Symbol, Addend) 21 */
- case R_HPPA_ABS_CALL_RD11: /* RD(Symbol, Addend) 11 */
- case R_HPPA_ABS_CALL_RD14: /* RD(Symbol, Addend) 14 */
- case R_HPPA_ABS_CALL_RD17: /* RD(Symbol, Addend) 17 */
- case R_HPPA_ABS_CALL_LR21: /* LR(Symbol, Addend) 21 */
- case R_HPPA_ABS_CALL_RR14: /* RR(Symbol, Addend) 14 */
- case R_HPPA_ABS_CALL_RR17: /* RR(Symbol, Addend) 17 */
-
- case R_HPPA_PCREL_CALL_11: /* Symbol - PC + Addend 11 */
- case R_HPPA_PCREL_CALL_14: /* Symbol - PC + Addend 14 */
- case R_HPPA_PCREL_CALL_17: /* Symbol - PC + Addend 17 */
- case R_HPPA_PCREL_CALL_12: /* Symbol - PC + Addend 12 */
- case R_HPPA_PCREL_CALL_L21: /* L (Symbol - PC, Addend) 21 */
- case R_HPPA_PCREL_CALL_R11: /* R (Symbol - PC, Addend) 11 */
- case R_HPPA_PCREL_CALL_R14: /* R (Symbol - PC, Addend) 14 */
- case R_HPPA_PCREL_CALL_R17: /* R (Symbol - PC, Addend) 17 */
- case R_HPPA_PCREL_CALL_LS21: /* LS(Symbol - PC, Addend) 21 */
- case R_HPPA_PCREL_CALL_RS11: /* RS(Symbol - PC, Addend) 11 */
- case R_HPPA_PCREL_CALL_RS14: /* RS(Symbol - PC, Addend) 14 */
- case R_HPPA_PCREL_CALL_RS17: /* RS(Symbol - PC, Addend) 17 */
- case R_HPPA_PCREL_CALL_LD21: /* LD(Symbol - PC, Addend) 21 */
- case R_HPPA_PCREL_CALL_RD11: /* RD(Symbol - PC, Addend) 11 */
- case R_HPPA_PCREL_CALL_RD14: /* RD(Symbol - PC, Addend) 14 */
- case R_HPPA_PCREL_CALL_RD17: /* RD(Symbol - PC, Addend) 17 */
- case R_HPPA_PCREL_CALL_LR21: /* LR(Symbol - PC, Addend) 21 */
- case R_HPPA_PCREL_CALL_RR14: /* RR(Symbol - PC, Addend) 14 */
- case R_HPPA_PCREL_CALL_RR17: /* RR(Symbol - PC, Addend) 17 */
- if (hppa_elf_arg_reloc_needed_p (abfd, rle, stub_types))
- {
- /* generate a stub */
- /* keep track of the new symbol */
- if (new_cnt == new_max)
+ stub_hash
+ = elf32_hppa_stub_hash_lookup (stub_hash_table, stub_name,
+ false, false);
+ if (stub_hash != NULL)
{
- new_max += STUB_SYM_BUFFER_INC;
- new_syms = (asymbol *) realloc (new_syms, new_max * sizeof (asymbol));
+ /* The proper stub has already been created, nothing
+ else to do. */
+ free (stub_name);
}
- new_syms[new_cnt++] = *(hppa_elf_build_arg_reloc_stub (abfd, output_bfd, rle, stub_types));
- }
- break;
-
- default:
- break;
+ else
+ {
+ bfd_set_section_size (stub_bfd, stub_sec,
+ (bfd_section_size (stub_bfd,
+ stub_sec)
+ + size_of_stub));
+
+ /* Enter this entry into the linker stub hash table. */
+ stub_hash
+ = elf32_hppa_stub_hash_lookup (stub_hash_table,
+ stub_name, true, true);
+ if (stub_hash == NULL)
+ {
+ free (stub_name);
+ free (internal_relocs);
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ goto error_return;
+ }
+ /* We'll need these to determine the address that the
+ stub will branch to. */
+ stub_hash->target_value = sym_value;
+ stub_hash->target_section = sym_sec;
+ }
+ free (stub_name);
+ }
}
+ /* We're done with the internal relocs, free them. */
+ free (internal_relocs);
}
}
- *new_sym_cnt = new_cnt;
- return new_syms;
-}
-
-int
-hppa_look_for_stubs (abfd, output_bfd)
- bfd *abfd;
- bfd *output_bfd;
-{
- /* bfd_map_over_sections(abfd,hppa_look_for_stubs_in_section,(PTR)output_bfd,NULL); */
-}
-
-boolean
-DEFUN (hppa_elf_get_section_contents, (abfd, section, location, offset, count),
- bfd * abfd AND
- sec_ptr section AND
- PTR location AND
- file_ptr offset AND
- bfd_size_type count)
-{
- /* if this is the linker stub section, then we have the */
- /* section contents in memory rather than on disk. */
- if (strcmp (section->name, ".hppa_linker_stubs") == 0)
+ /* We're done with the local symbols, free them. */
+ for (i = 0; i < bfd_count; i++)
+ if (all_local_syms[i])
+ free (all_local_syms[i]);
+ free (all_local_syms);
+ return true;
+
+error_return:
+ /* Return gracefully, avoiding dangling references to the hash tables. */
+ if (stub_hash_table)
{
- Elf32_hppa_Stub_description *stub_desc = find_stubs (abfd, section);
-
- if (count == 0)
- return true;
- if ((bfd_size_type) (offset + count) > section->_raw_size)
- return (false); /* on error */
- if ((bfd_size_type) (offset + count) > stub_desc->real_size)
- return (false); /* on error */
-
- memcpy (location, stub_desc->stub_contents + offset, count);
- return (true);
+ elf32_hppa_hash_table(link_info)->stub_hash_table = NULL;
+ free (stub_hash_table);
}
- /* if this is the symbol extension section, then we have the */
- /* section contents in memory rather than on disk. */
- else if (strcmp (section->name, ".hppa_symextn") == 0)
- {
- if (count == 0)
- return true;
- if ((bfd_size_type) (offset + count) > section->_raw_size)
- return (false); /* on error */
- if ((bfd_size_type) (offset + count) > symextn_contents_real_size)
- return (false); /* on error */
-
- memcpy (location, symextn_contents + offset, count);
- return (true);
- }
- else
- return bfd_generic_get_section_contents (abfd, section, location, offset, count);
+ /* Set the size of the stub section to zero since we're never going
+ to create them. Avoids losing when we try to get its contents
+ too. */
+ bfd_set_section_size (stub_bfd, stub_sec, 0);
+ return false;
}
-static void
-DEFUN (elf_info_to_howto, (abfd, cache_ptr, dst),
- bfd * abfd AND
- arelent * cache_ptr AND
- Elf32_Internal_Rela * dst)
-{
- abort ();
-}
+/* Misc BFD support code. */
+#define bfd_elf32_bfd_reloc_type_lookup elf_hppa_reloc_type_lookup
+#define bfd_elf32_bfd_is_local_label_name elf_hppa_is_local_label_name
+#define elf_info_to_howto elf_hppa_info_to_howto
+#define elf_info_to_howto_rel elf_hppa_info_to_howto_rel
+
+/* Stuff for the BFD linker. */
+#define elf_backend_relocate_section elf32_hppa_relocate_section
+#define elf_backend_add_symbol_hook elf32_hppa_add_symbol_hook
+#define bfd_elf32_bfd_link_hash_table_create \
+ elf32_hppa_link_hash_table_create
+#define elf_backend_fake_sections elf_hppa_fake_sections
+
#define TARGET_BIG_SYM bfd_elf32_hppa_vec
#define TARGET_BIG_NAME "elf32-hppa"
#define ELF_ARCH bfd_arch_hppa
+#define ELF_MACHINE_CODE EM_PARISC
+#define ELF_MAXPAGESIZE 0x1000
#include "elf32-target.h"