binutils-gdb/gdb/ia64-tdep.h

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/* Target-dependent code for the ia64.
Copyright (C) 2004-2020 Free Software Foundation, Inc.
This file is part of GDB.
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>. */
#ifndef IA64_TDEP_H
#define IA64_TDEP_H
#ifdef HAVE_LIBUNWIND_IA64_H
#include "libunwind-ia64.h"
#include "ia64-libunwind-tdep.h"
#endif
/* Register numbers of various important registers. */
/* General registers; there are 128 of these 64 bit wide registers.
The first 32 are static and the last 96 are stacked. */
#define IA64_GR0_REGNUM 0
#define IA64_GR1_REGNUM (IA64_GR0_REGNUM + 1)
#define IA64_GR2_REGNUM (IA64_GR0_REGNUM + 2)
#define IA64_GR3_REGNUM (IA64_GR0_REGNUM + 3)
#define IA64_GR4_REGNUM (IA64_GR0_REGNUM + 4)
#define IA64_GR5_REGNUM (IA64_GR0_REGNUM + 5)
#define IA64_GR6_REGNUM (IA64_GR0_REGNUM + 6)
#define IA64_GR7_REGNUM (IA64_GR0_REGNUM + 7)
#define IA64_GR8_REGNUM (IA64_GR0_REGNUM + 8)
#define IA64_GR9_REGNUM (IA64_GR0_REGNUM + 9)
#define IA64_GR10_REGNUM (IA64_GR0_REGNUM + 10)
#define IA64_GR11_REGNUM (IA64_GR0_REGNUM + 11)
#define IA64_GR12_REGNUM (IA64_GR0_REGNUM + 12)
#define IA64_GR31_REGNUM (IA64_GR0_REGNUM + 31)
#define IA64_GR32_REGNUM (IA64_GR0_REGNUM + 32)
#define IA64_GR127_REGNUM (IA64_GR0_REGNUM + 127)
/* Floating point registers; 128 82-bit wide registers. */
#define IA64_FR0_REGNUM 128
#define IA64_FR1_REGNUM (IA64_FR0_REGNUM + 1)
#define IA64_FR2_REGNUM (IA64_FR0_REGNUM + 2)
#define IA64_FR8_REGNUM (IA64_FR0_REGNUM + 8)
#define IA64_FR9_REGNUM (IA64_FR0_REGNUM + 9)
#define IA64_FR10_REGNUM (IA64_FR0_REGNUM + 10)
#define IA64_FR11_REGNUM (IA64_FR0_REGNUM + 11)
#define IA64_FR12_REGNUM (IA64_FR0_REGNUM + 12)
#define IA64_FR13_REGNUM (IA64_FR0_REGNUM + 13)
#define IA64_FR14_REGNUM (IA64_FR0_REGNUM + 14)
#define IA64_FR15_REGNUM (IA64_FR0_REGNUM + 15)
#define IA64_FR16_REGNUM (IA64_FR0_REGNUM + 16)
#define IA64_FR31_REGNUM (IA64_FR0_REGNUM + 31)
#define IA64_FR32_REGNUM (IA64_FR0_REGNUM + 32)
#define IA64_FR127_REGNUM (IA64_FR0_REGNUM + 127)
/* Predicate registers; There are 64 of these one bit registers. It'd
be more convenient (implementation-wise) to use a single 64 bit
word with all of these register in them. Note that there's also a
IA64_PR_REGNUM below which contains all the bits and is used for
communicating the actual values to the target. */
#define IA64_PR0_REGNUM 256
#define IA64_PR1_REGNUM (IA64_PR0_REGNUM + 1)
#define IA64_PR2_REGNUM (IA64_PR0_REGNUM + 2)
#define IA64_PR3_REGNUM (IA64_PR0_REGNUM + 3)
#define IA64_PR4_REGNUM (IA64_PR0_REGNUM + 4)
#define IA64_PR5_REGNUM (IA64_PR0_REGNUM + 5)
#define IA64_PR6_REGNUM (IA64_PR0_REGNUM + 6)
#define IA64_PR7_REGNUM (IA64_PR0_REGNUM + 7)
#define IA64_PR8_REGNUM (IA64_PR0_REGNUM + 8)
#define IA64_PR9_REGNUM (IA64_PR0_REGNUM + 9)
#define IA64_PR10_REGNUM (IA64_PR0_REGNUM + 10)
#define IA64_PR11_REGNUM (IA64_PR0_REGNUM + 11)
#define IA64_PR12_REGNUM (IA64_PR0_REGNUM + 12)
#define IA64_PR13_REGNUM (IA64_PR0_REGNUM + 13)
#define IA64_PR14_REGNUM (IA64_PR0_REGNUM + 14)
#define IA64_PR15_REGNUM (IA64_PR0_REGNUM + 15)
#define IA64_PR16_REGNUM (IA64_PR0_REGNUM + 16)
#define IA64_PR17_REGNUM (IA64_PR0_REGNUM + 17)
#define IA64_PR18_REGNUM (IA64_PR0_REGNUM + 18)
#define IA64_PR19_REGNUM (IA64_PR0_REGNUM + 19)
#define IA64_PR20_REGNUM (IA64_PR0_REGNUM + 20)
#define IA64_PR21_REGNUM (IA64_PR0_REGNUM + 21)
#define IA64_PR22_REGNUM (IA64_PR0_REGNUM + 22)
#define IA64_PR23_REGNUM (IA64_PR0_REGNUM + 23)
#define IA64_PR24_REGNUM (IA64_PR0_REGNUM + 24)
#define IA64_PR25_REGNUM (IA64_PR0_REGNUM + 25)
#define IA64_PR26_REGNUM (IA64_PR0_REGNUM + 26)
#define IA64_PR27_REGNUM (IA64_PR0_REGNUM + 27)
#define IA64_PR28_REGNUM (IA64_PR0_REGNUM + 28)
#define IA64_PR29_REGNUM (IA64_PR0_REGNUM + 29)
#define IA64_PR30_REGNUM (IA64_PR0_REGNUM + 30)
#define IA64_PR31_REGNUM (IA64_PR0_REGNUM + 31)
#define IA64_PR32_REGNUM (IA64_PR0_REGNUM + 32)
#define IA64_PR33_REGNUM (IA64_PR0_REGNUM + 33)
#define IA64_PR34_REGNUM (IA64_PR0_REGNUM + 34)
#define IA64_PR35_REGNUM (IA64_PR0_REGNUM + 35)
#define IA64_PR36_REGNUM (IA64_PR0_REGNUM + 36)
#define IA64_PR37_REGNUM (IA64_PR0_REGNUM + 37)
#define IA64_PR38_REGNUM (IA64_PR0_REGNUM + 38)
#define IA64_PR39_REGNUM (IA64_PR0_REGNUM + 39)
#define IA64_PR40_REGNUM (IA64_PR0_REGNUM + 40)
#define IA64_PR41_REGNUM (IA64_PR0_REGNUM + 41)
#define IA64_PR42_REGNUM (IA64_PR0_REGNUM + 42)
#define IA64_PR43_REGNUM (IA64_PR0_REGNUM + 43)
#define IA64_PR44_REGNUM (IA64_PR0_REGNUM + 44)
#define IA64_PR45_REGNUM (IA64_PR0_REGNUM + 45)
#define IA64_PR46_REGNUM (IA64_PR0_REGNUM + 46)
#define IA64_PR47_REGNUM (IA64_PR0_REGNUM + 47)
#define IA64_PR48_REGNUM (IA64_PR0_REGNUM + 48)
#define IA64_PR49_REGNUM (IA64_PR0_REGNUM + 49)
#define IA64_PR50_REGNUM (IA64_PR0_REGNUM + 50)
#define IA64_PR51_REGNUM (IA64_PR0_REGNUM + 51)
#define IA64_PR52_REGNUM (IA64_PR0_REGNUM + 52)
#define IA64_PR53_REGNUM (IA64_PR0_REGNUM + 53)
#define IA64_PR54_REGNUM (IA64_PR0_REGNUM + 54)
#define IA64_PR55_REGNUM (IA64_PR0_REGNUM + 55)
#define IA64_PR56_REGNUM (IA64_PR0_REGNUM + 56)
#define IA64_PR57_REGNUM (IA64_PR0_REGNUM + 57)
#define IA64_PR58_REGNUM (IA64_PR0_REGNUM + 58)
#define IA64_PR59_REGNUM (IA64_PR0_REGNUM + 59)
#define IA64_PR60_REGNUM (IA64_PR0_REGNUM + 60)
#define IA64_PR61_REGNUM (IA64_PR0_REGNUM + 61)
#define IA64_PR62_REGNUM (IA64_PR0_REGNUM + 62)
#define IA64_PR63_REGNUM (IA64_PR0_REGNUM + 63)
/* Branch registers: 8 64-bit registers for holding branch targets. */
#define IA64_BR0_REGNUM 320
#define IA64_BR1_REGNUM (IA64_BR0_REGNUM + 1)
#define IA64_BR2_REGNUM (IA64_BR0_REGNUM + 2)
#define IA64_BR3_REGNUM (IA64_BR0_REGNUM + 3)
#define IA64_BR4_REGNUM (IA64_BR0_REGNUM + 4)
#define IA64_BR5_REGNUM (IA64_BR0_REGNUM + 5)
#define IA64_BR6_REGNUM (IA64_BR0_REGNUM + 6)
#define IA64_BR7_REGNUM (IA64_BR0_REGNUM + 7)
/* Virtual frame pointer; this matches IA64_FRAME_POINTER_REGNUM in
gcc/config/ia64/ia64.h. */
#define IA64_VFP_REGNUM 328
/* Virtual return address pointer; this matches
IA64_RETURN_ADDRESS_POINTER_REGNUM in gcc/config/ia64/ia64.h. */
#define IA64_VRAP_REGNUM 329
/* Predicate registers: There are 64 of these 1-bit registers. We
define a single register which is used to communicate these values
to/from the target. We will somehow contrive to make it appear
that IA64_PR0_REGNUM thru IA64_PR63_REGNUM hold the actual values. */
#define IA64_PR_REGNUM 330
/* Instruction pointer: 64 bits wide. */
#define IA64_IP_REGNUM 331
/* Process Status Register. */
#define IA64_PSR_REGNUM 332
/* Current Frame Marker (raw form may be the cr.ifs). */
#define IA64_CFM_REGNUM 333
/* Application registers; 128 64-bit wide registers possible, but some
of them are reserved. */
#define IA64_AR0_REGNUM 334
#define IA64_KR0_REGNUM (IA64_AR0_REGNUM + 0)
#define IA64_KR7_REGNUM (IA64_KR0_REGNUM + 7)
#define IA64_RSC_REGNUM (IA64_AR0_REGNUM + 16)
#define IA64_BSP_REGNUM (IA64_AR0_REGNUM + 17)
#define IA64_BSPSTORE_REGNUM (IA64_AR0_REGNUM + 18)
#define IA64_RNAT_REGNUM (IA64_AR0_REGNUM + 19)
#define IA64_FCR_REGNUM (IA64_AR0_REGNUM + 21)
#define IA64_EFLAG_REGNUM (IA64_AR0_REGNUM + 24)
#define IA64_CSD_REGNUM (IA64_AR0_REGNUM + 25)
#define IA64_SSD_REGNUM (IA64_AR0_REGNUM + 26)
#define IA64_CFLG_REGNUM (IA64_AR0_REGNUM + 27)
#define IA64_FSR_REGNUM (IA64_AR0_REGNUM + 28)
#define IA64_FIR_REGNUM (IA64_AR0_REGNUM + 29)
#define IA64_FDR_REGNUM (IA64_AR0_REGNUM + 30)
#define IA64_CCV_REGNUM (IA64_AR0_REGNUM + 32)
#define IA64_UNAT_REGNUM (IA64_AR0_REGNUM + 36)
#define IA64_FPSR_REGNUM (IA64_AR0_REGNUM + 40)
#define IA64_ITC_REGNUM (IA64_AR0_REGNUM + 44)
#define IA64_PFS_REGNUM (IA64_AR0_REGNUM + 64)
#define IA64_LC_REGNUM (IA64_AR0_REGNUM + 65)
#define IA64_EC_REGNUM (IA64_AR0_REGNUM + 66)
/* NAT (Not A Thing) Bits for the general registers; there are 128 of
these. */
#define IA64_NAT0_REGNUM 462
#define IA64_NAT31_REGNUM (IA64_NAT0_REGNUM + 31)
#define IA64_NAT32_REGNUM (IA64_NAT0_REGNUM + 32)
#define IA64_NAT127_REGNUM (IA64_NAT0_REGNUM + 127)
[ia64-hpux] unwinding bsp value from system call This fixes unwinding from a thread that is stopped inside a system call. This can be seen when switching to a thread that is stopped doing a pthread_cond_wait, for instance... The comments inside the code should explain what is happening in our case (the HP-UX exception in the case of system calls): Under certain circumstances (program stopped inside syscall), the offset to apply to the current BSP in order to compute the previous BSP is not the usual CFM & 0x7f. We parts in this patch: 1. Figuring out that we are stopped inside a syscal: This requires a TT_LWP_RUREGS ttrace call, which is not directly possible from ia64-tdep.c. So use defined a new TARGET_OBJECT_HPUX_UREGS object to request it from the -nat side. 2. Add a gdbarch_tdep method that allows us to change the default behavior on ia64-hpux, permitting us to have a different "size of register frame" in that one particular case. gdb/ChangeLog: * target.h (enum target_object): Add TARGET_OBJECT_HPUX_UREGS. * ia64-tdep.h (struct frame_info): forward declaration. (struct gdbarch_tdep): Add field size_of_register_frame. * ia64-tdep.c (ia64_access_reg): Use tdep->size_of_register_frame to determine the size of the register frame. (ia64_size_of_register_frame): New function. (ia64_gdbarch_init): Set tdep->size_of_register_frame. * ia64-hpux-tdep.c: Include "target.h" and "frame.h". (IA64_HPUX_UREG_REASON): New macro. (ia64_hpux_stopped_in_syscall, ia64_hpux_size_of_register_frame): New functions. (ia64_hpux_init_abi): Set tdep->size_of_register_frame. * ia64-hpux-nat.c (ia64_hpux_xfer_uregs): New function. (ia64_hpux_xfer_partial): Add handling of TARGET_OBJECT_HPUX_UREGS objects.
2011-01-13 17:24:27 +01:00
struct frame_info;
[ia64-hpux] inferior function call support We have two stacks to deal with on ia64, when making a function call. The first is the usual stack frame, and the second is the register stack frame. On ia64-linux, the register frame is setup by adjusting the BSP register. Unfortunately for us, the HP-UX kernel does not allow the debugger to change the value of the BSP. To work around that limitation, the method I am using here is to push some assembly code on the stack. This assembly code contains, among other things, a call to the alloc insn, which sets up our frame for us. An extensive comment in ia64-hpux-tdep.c explains the entire procedure. Despite this approach, most of the code in ia64-tdep.c which sets up the function call is still applicable - and only a few things need to be done differently: For instance, instead of changing the BSP, we do nothing. We store the parameters at a different location, etc. So this patch also adjusts the inf-call code in ia64-tdep.c to make it a little more extensible: I create a new ia64_infcall_ops structure which allows an ABI to define how the few things that need to be differentiated. Another element that turned out to be necessary but is more of a detail is that the computation of the linkage pointer needs to be handled specially for symbols inside shared libraries. This is especially visible when calling malloc, which happens everytime memory needs to be allocated in inferior memory... The special treatment included again the necessity to use some routines only available on the host. So another target object TARGET_OBJECT_HPUX_SOLIB_GOT was created for that purpose. gdb/ChangeLog: * ia64-tdep.h (struct regcache): Forward declare. (struct ia64_infcall_ops): New struct type. (struct gdbarch_tdep): New fields "find_global_pointer_from_solib" and "infcall_ops". * ia64-tdep.c (ia64_find_global_pointer_from_dynamic_section): Renames ia64_find_global_pointer. (ia64_find_global_pointer, ia64_allocate_new_rse_frame) (ia64_store_argument_in_slot, ia64_set_function_addr: New function. (ia64_push_dummy_call): Adjust to use the new tdep ia64_infocall_ops methods. (ia64_infcall_ops): New static global constant. (ia64_gdbarch_init): Set tdep->infcall_ops. * ia64-hpux-nat.c (ia64_hpux_xfer_solib_got): New function. (ia64_hpux_xfer_partial): Add TARGET_OBJECT_HPUX_SOLIB_GOT handing. * ia64-hpux-tdep.c: Include "regcache.h", "gdbcore.h" and "inferior.h". (ia64_hpux_dummy_code): New static global constant. (ia64_hpux_push_dummy_code, ia64_hpux_allocate_new_rse_frame) (ia64_hpux_store_argument_in_slot, ia64_hpux_set_function_addr) (ia64_hpux_dummy_id, ia64_hpux_find_global_pointer_from_solib): New function. (ia64_hpux_infcall_ops): New static global constant. (ia64_hpux_init_abi): Install gdbarch and tdep methods needed for inferior function calls to work properly on ia64-hpux.
2011-01-13 17:24:42 +01:00
struct regcache;
/* A struction containing pointers to all the target-dependent operations
performed to setup an inferior function call. */
struct ia64_infcall_ops
{
/* Allocate a new register stack frame starting after the output
region of the current frame. The new frame will contain SOF
registers, all in the output region. This is one way of protecting
the stacked registers of the current frame.
Should do nothing if this operation is not permitted by the OS. */
void (*allocate_new_rse_frame) (struct regcache *regcache, ULONGEST bsp,
int sof);
/* Store the argument stored in BUF into the appropriate location
given the BSP and the SLOTNUM. */
void (*store_argument_in_slot) (struct regcache *regcache, CORE_ADDR bsp,
int slotnum, gdb_byte *buf);
/* For targets where we cannot call the function directly, store
the address of the function we want to call at the location
expected by the calling sequence. */
void (*set_function_addr) (struct regcache *regcache, CORE_ADDR func_addr);
};
[ia64-hpux] unwinding bsp value from system call This fixes unwinding from a thread that is stopped inside a system call. This can be seen when switching to a thread that is stopped doing a pthread_cond_wait, for instance... The comments inside the code should explain what is happening in our case (the HP-UX exception in the case of system calls): Under certain circumstances (program stopped inside syscall), the offset to apply to the current BSP in order to compute the previous BSP is not the usual CFM & 0x7f. We parts in this patch: 1. Figuring out that we are stopped inside a syscal: This requires a TT_LWP_RUREGS ttrace call, which is not directly possible from ia64-tdep.c. So use defined a new TARGET_OBJECT_HPUX_UREGS object to request it from the -nat side. 2. Add a gdbarch_tdep method that allows us to change the default behavior on ia64-hpux, permitting us to have a different "size of register frame" in that one particular case. gdb/ChangeLog: * target.h (enum target_object): Add TARGET_OBJECT_HPUX_UREGS. * ia64-tdep.h (struct frame_info): forward declaration. (struct gdbarch_tdep): Add field size_of_register_frame. * ia64-tdep.c (ia64_access_reg): Use tdep->size_of_register_frame to determine the size of the register frame. (ia64_size_of_register_frame): New function. (ia64_gdbarch_init): Set tdep->size_of_register_frame. * ia64-hpux-tdep.c: Include "target.h" and "frame.h". (IA64_HPUX_UREG_REASON): New macro. (ia64_hpux_stopped_in_syscall, ia64_hpux_size_of_register_frame): New functions. (ia64_hpux_init_abi): Set tdep->size_of_register_frame. * ia64-hpux-nat.c (ia64_hpux_xfer_uregs): New function. (ia64_hpux_xfer_partial): Add handling of TARGET_OBJECT_HPUX_UREGS objects.
2011-01-13 17:24:27 +01:00
struct gdbarch_tdep
{
* defs.h (extract_signed_integer, extract_unsigned_integer, extract_long_unsigned_integer, store_signed_integer, store_unsigned_integer): Add BYTE_ORDER parameter. * findvar.c (extract_signed_integer, extract_unsigned_integer, extract_long_unsigned_integer, store_signed_integer, store_unsigned_integer): Add BYTE_ORDER parameter. Use it instead of current_gdbarch. * gdbcore.h (read_memory_integer, safe_read_memory_integer, read_memory_unsigned_integer, write_memory_signed_integer, write_memory_unsigned_integer): Add BYTE_ORDER parameter. * corefile.c (struct captured_read_memory_integer_arguments): Add BYTE_ORDER member. (safe_read_memory_integer): Add BYTE_ORDER parameter. Store it into struct captured_read_memory_integer_arguments. (do_captured_read_memory_integer): Pass it to read_memory_integer. (read_memory_integer): Add BYTE_ORDER parameter. Pass it to extract_signed_integer. (read_memory_unsigned_integer): Add BYTE_ORDER parameter. Pass it to extract_unsigned_integer. (write_memory_signed_integer): Add BYTE_ORDER parameter. Pass it to store_signed_integer. (write_memory_unsigned_integer): Add BYTE_ORDER parameter. Pass it to store_unsigned_integer. * target.h (get_target_memory_unsigned): Add BYTE_ORDER parameter. * target.c (get_target_memory_unsigned): Add BYTE_ORDER parameter. Pass it to extract_unsigned_integer. Update calls to extract_signed_integer, extract_unsigned_integer, extract_long_unsigned_integer, store_signed_integer, store_unsigned_integer, read_memory_integer, read_memory_unsigned_integer, safe_read_memory_integer, write_memory_signed_integer, write_memory_unsigned_integer, and get_target_memory_unsigned to pass byte order: * ada-lang.c (ada_value_binop): Update. * ada-valprint.c (char_at): Update. * alpha-osf1-tdep.c (alpha_osf1_sigcontext_addr): Update. * alpha-tdep.c (alpha_lds, alpha_sts, alpha_push_dummy_call, alpha_extract_return_value, alpha_read_insn, alpha_get_longjmp_target): Update. * amd64-linux-tdep.c (amd64_linux_sigcontext_addr): Update. * amd64obsd-tdep.c (amd64obsd_supply_uthread, amd64obsd_collect_uthread, amd64obsd_trapframe_cache): Update. * amd64-tdep.c (amd64_push_dummy_call, amd64_analyze_prologue, amd64_frame_cache, amd64_sigtramp_frame_cache, fixup_riprel, amd64_displaced_step_fixup): Update. * arm-linux-tdep.c (arm_linux_sigreturn_init, arm_linux_rt_sigreturn_init, arm_linux_supply_gregset): Update. * arm-tdep.c (thumb_analyze_prologue, arm_skip_prologue, arm_scan_prologue, arm_push_dummy_call, thumb_get_next_pc, arm_get_next_pc, arm_extract_return_value, arm_store_return_value, arm_return_value): Update. * arm-wince-tdep.c (arm_pe_skip_trampoline_code): Update. * auxv.c (default_auxv_parse): Update. * avr-tdep.c (avr_address_to_pointer, avr_pointer_to_address, avr_scan_prologue, avr_extract_return_value, avr_frame_prev_register, avr_push_dummy_call): Update. * bsd-uthread.c (bsd_uthread_check_magic, bsd_uthread_lookup_offset, bsd_uthread_wait, bsd_uthread_thread_alive, bsd_uthread_extra_thread_info): Update. * c-lang.c (c_printstr, print_wchar): Update. * cp-valprint.c (cp_print_class_member): Update. * cris-tdep.c (cris_sigcontext_addr, cris_sigtramp_frame_unwind_cache, cris_push_dummy_call, cris_scan_prologue, cris_store_return_value, cris_extract_return_value, find_step_target, dip_prefix, sixteen_bit_offset_branch_op, none_reg_mode_jump_op, move_mem_to_reg_movem_op, get_data_from_address): Update. * dwarf2expr.c (dwarf2_read_address, execute_stack_op): Update. * dwarf2-frame.c (execute_cfa_program): Update. * dwarf2loc.c (find_location_expression): Update. * dwarf2read.c (dwarf2_const_value): Update. * expprint.c (print_subexp_standard): Update. * findvar.c (unsigned_pointer_to_address, signed_pointer_to_address, unsigned_address_to_pointer, address_to_signed_pointer, read_var_value): Update. * frame.c (frame_unwind_register_signed, frame_unwind_register_unsigned, get_frame_memory_signed, get_frame_memory_unsigned): Update. * frame-unwind.c (frame_unwind_got_constant): Update. * frv-linux-tdep.c (frv_linux_pc_in_sigtramp, frv_linux_sigcontext_reg_addr, frv_linux_sigtramp_frame_cache): Update. * frv-tdep.c (frv_analyze_prologue, frv_skip_main_prologue, frv_extract_return_value, find_func_descr, frv_convert_from_func_ptr_addr, frv_push_dummy_call): Update. * f-valprint.c (f_val_print): Update. * gnu-v3-abi.c (gnuv3_decode_method_ptr, gnuv3_make_method_ptr): Update. * h8300-tdep.c (h8300_is_argument_spill, h8300_analyze_prologue, h8300_push_dummy_call, h8300_extract_return_value, h8300h_extract_return_value, h8300_store_return_value, h8300h_store_return_value): Update. * hppabsd-tdep.c (hppabsd_find_global_pointer): Update. * hppa-hpux-nat.c (hppa_hpux_fetch_register, hppa_hpux_store_register): Update. * hppa-hpux-tdep.c (hppa32_hpux_in_solib_call_trampoline, hppa64_hpux_in_solib_call_trampoline, hppa_hpux_in_solib_return_trampoline, hppa_hpux_skip_trampoline_code, hppa_hpux_sigtramp_frame_unwind_cache, hppa_hpux_sigtramp_unwind_sniffer, hppa32_hpux_find_global_pointer, hppa64_hpux_find_global_pointer, hppa_hpux_search_pattern, hppa32_hpux_search_dummy_call_sequence, hppa64_hpux_search_dummy_call_sequence, hppa_hpux_supply_save_state, hppa_hpux_unwind_adjust_stub): Update. * hppa-linux-tdep.c (insns_match_pattern, hppa_linux_find_global_pointer): Update. * hppa-tdep.c (hppa_in_function_epilogue_p, hppa32_push_dummy_call, hppa64_convert_code_addr_to_fptr, hppa64_push_dummy_call, skip_prologue_hard_way, hppa_frame_cache, hppa_fallback_frame_cache, hppa_pseudo_register_read, hppa_frame_prev_register_helper, hppa_match_insns): Update. * hpux-thread.c (hpux_thread_fetch_registers): Update. * i386-tdep.c (i386bsd_sigcontext_addr): Update. * i386-cygwin-tdep.c (core_process_module_section): Update. * i386-darwin-nat.c (i386_darwin_sstep_at_sigreturn, amd64_darwin_sstep_at_sigreturn): Update. * i386-darwin-tdep.c (i386_darwin_sigcontext_addr, amd64_darwin_sigcontext_addr): Likewise. * i386-linux-nat.c (i386_linux_sigcontext_addr): Update. * i386nbsd-tdep.c (i386nbsd_sigtramp_cache_init): Update. * i386-nto-tdep.c (i386nto_sigcontext_addr): Update. * i386obsd-nat.c (i386obsd_supply_pcb): Update. * i386obsd-tdep.c (i386obsd_supply_uthread, i386obsd_collect_uthread, i386obsd_trapframe_cache): Update. * i386-tdep.c (i386_displaced_step_fixup, i386_follow_jump, i386_analyze_frame_setup, i386_analyze_prologue, i386_skip_main_prologue, i386_frame_cache, i386_sigtramp_frame_cache, i386_get_longjmp_target, i386_push_dummy_call, i386_pe_skip_trampoline_code, i386_svr4_sigcontext_addr, i386_fetch_pointer_argument): Update. * i387-tdep.c (i387_supply_fsave): Update. * ia64-linux-tdep.c (ia64_linux_sigcontext_register_address): Update. * ia64-tdep.c (ia64_pseudo_register_read, ia64_pseudo_register_write, examine_prologue, ia64_frame_cache, ia64_frame_prev_register, ia64_sigtramp_frame_cache, ia64_sigtramp_frame_prev_register, ia64_access_reg, ia64_access_rse_reg, ia64_libunwind_frame_this_id, ia64_libunwind_frame_prev_register, ia64_libunwind_sigtramp_frame_this_id, ia64_libunwind_sigtramp_frame_prev_register, ia64_find_global_pointer, find_extant_func_descr, find_func_descr, ia64_convert_from_func_ptr_addr, ia64_push_dummy_call, ia64_dummy_id, ia64_unwind_pc): Update. * iq2000-tdep.c (iq2000_pointer_to_address, iq2000_address_to_pointer, iq2000_scan_prologue, iq2000_extract_return_value, iq2000_push_dummy_call): Update. * irix5nat.c (fill_gregset): Update. * jv-lang.c (evaluate_subexp_java): Update. * jv-valprint.c (java_value_print): Update. * lm32-tdep.c (lm32_analyze_prologue, lm32_push_dummy_call, lm32_extract_return_value, lm32_store_return_value): Update. * m32c-tdep.c (m32c_push_dummy_call, m32c_return_value, m32c_skip_trampoline_code, m32c_m16c_address_to_pointer, m32c_m16c_pointer_to_address): Update. * m32r-tdep.c (m32r_store_return_value, decode_prologue, m32r_skip_prologue, m32r_push_dummy_call, m32r_extract_return_value): Update. * m68hc11-tdep.c (m68hc11_pseudo_register_read, m68hc11_pseudo_register_write, m68hc11_analyze_instruction, m68hc11_push_dummy_call): Update. * m68linux-tdep.c (m68k_linux_pc_in_sigtramp, m68k_linux_get_sigtramp_info, m68k_linux_sigtramp_frame_cache): Update. * m68k-tdep.c (m68k_push_dummy_call, m68k_analyze_frame_setup, m68k_analyze_register_saves, m68k_analyze_prologue, m68k_frame_cache, m68k_get_longjmp_target): Update. * m88k-tdep.c (m88k_fetch_instruction): Update. * mep-tdep.c (mep_pseudo_cr32_read, mep_pseudo_csr_write, mep_pseudo_cr32_write, mep_get_insn, mep_push_dummy_call): Update. * mi/mi-main.c (mi_cmd_data_write_memory): Update. * mips-linux-tdep.c (mips_linux_get_longjmp_target, supply_32bit_reg, mips64_linux_get_longjmp_target, mips64_fill_gregset, mips64_fill_fpregset, mips_linux_in_dynsym_stub): Update. * mipsnbdsd-tdep.c (mipsnbsd_get_longjmp_target): Update. * mips-tdep.c (mips_fetch_instruction, fetch_mips_16, mips_eabi_push_dummy_call, mips_n32n64_push_dummy_call, mips_o32_push_dummy_call, mips_o64_push_dummy_call, mips_single_step_through_delay, mips_skip_pic_trampoline_code, mips_integer_to_address): Update. * mn10300-tdep.c (mn10300_analyze_prologue, mn10300_push_dummy_call): Update. * monitor.c (monitor_supply_register, monitor_write_memory, monitor_read_memory_single): Update. * moxie-tdep.c (moxie_store_return_value, moxie_extract_return_value, moxie_analyze_prologue): Update. * mt-tdep.c (mt_return_value, mt_skip_prologue, mt_select_coprocessor, mt_pseudo_register_read, mt_pseudo_register_write, mt_registers_info, mt_push_dummy_call): Update. * objc-lang.c (read_objc_method, read_objc_methlist_nmethods, read_objc_methlist_method, read_objc_object, read_objc_super, read_objc_class, find_implementation_from_class): Update. * ppc64-linux-tdep.c (ppc64_desc_entry_point, ppc64_linux_convert_from_func_ptr_addr, ppc_linux_sigtramp_cache): Update. * ppcobsd-tdep.c (ppcobsd_sigtramp_frame_sniffer, ppcobsd_sigtramp_frame_cache): Update. * ppc-sysv-tdep.c (ppc_sysv_abi_push_dummy_call, do_ppc_sysv_return_value, ppc64_sysv_abi_push_dummy_call, ppc64_sysv_abi_return_value): Update. * ppc-linux-nat.c (ppc_linux_auxv_parse): Update. * procfs.c (procfs_auxv_parse): Update. * p-valprint.c (pascal_val_print): Update. * regcache.c (regcache_raw_read_signed, regcache_raw_read_unsigned, regcache_raw_write_signed, regcache_raw_write_unsigned, regcache_cooked_read_signed, regcache_cooked_read_unsigned, regcache_cooked_write_signed, regcache_cooked_write_unsigned): Update. * remote-m32r-sdi.c (m32r_fetch_register): Update. * remote-mips.c (mips_wait, mips_fetch_registers, mips_xfer_memory): Update. * rs6000-aix-tdep.c (rs6000_push_dummy_call, rs6000_return_value, rs6000_convert_from_func_ptr_addr, branch_dest, rs6000_software_single_step): Update. * rs6000-tdep.c (rs6000_in_function_epilogue_p, ppc_displaced_step_fixup, ppc_deal_with_atomic_sequence, bl_to_blrl_insn_p, rs6000_fetch_instruction, skip_prologue, rs6000_skip_main_prologue, rs6000_skip_trampoline_code, rs6000_frame_cache): Update. * s390-tdep.c (s390_pseudo_register_read, s390_pseudo_register_write, s390x_pseudo_register_read, s390x_pseudo_register_write, s390_load, s390_backchain_frame_unwind_cache, s390_sigtramp_frame_unwind_cache, extend_simple_arg, s390_push_dummy_call, s390_return_value): Update. * scm-exp.c (scm_lreadr): Update. * scm-lang.c (scm_get_field, scm_unpack): Update. * scm-valprint.c (scm_val_print): Update. * score-tdep.c (score_breakpoint_from_pc, score_push_dummy_call, score_fetch_inst): Update. * sh64-tdep.c (look_for_args_moves, sh64_skip_prologue_hard_way, sh64_analyze_prologue, sh64_push_dummy_call, sh64_extract_return_value, sh64_pseudo_register_read, sh64_pseudo_register_write, sh64_frame_prev_register): Update: * sh-tdep.c (sh_analyze_prologue, sh_push_dummy_call_fpu, sh_push_dummy_call_nofpu, sh_extract_return_value_nofpu, sh_store_return_value_nofpu, sh_in_function_epilogue_p): Update. * solib-darwin.c (darwin_load_image_infos): Update. * solib-frv.c (fetch_loadmap, lm_base, frv_current_sos, enable_break2, find_canonical_descriptor_in_load_object): Update. * solib-irix.c (extract_mips_address, fetch_lm_info, irix_current_sos, irix_open_symbol_file_object): Update. * solib-som.c (som_solib_create_inferior_hook, link_map_start, som_current_sos, som_open_symbol_file_object): Update. * solib-sunos.c (SOLIB_EXTRACT_ADDRESS, LM_ADDR, LM_NEXT, LM_NAME): Update. * solib-svr4.c (read_program_header, scan_dyntag_auxv, solib_svr4_r_ldsomap): Update. * sparc64-linux-tdep.c (sparc64_linux_step_trap): Update. * sparc64obsd-tdep.c (sparc64obsd_supply_uthread, sparc64obsd_collect_uthread): Update. * sparc64-tdep.c (sparc64_pseudo_register_read, sparc64_pseudo_register_write, sparc64_supply_gregset, sparc64_collect_gregset): Update. * sparc-linux-tdep.c (sparc32_linux_step_trap): Update. * sparcobsd-tdep.c (sparc32obsd_supply_uthread, sparc32obsd_collect_uthread): Update. * sparc-tdep.c (sparc_fetch_wcookie, sparc32_push_dummy_code, sparc32_store_arguments, sparc32_return_value, sparc_supply_rwindow, sparc_collect_rwindow): Update. * spu-linux-nat.c (parse_spufs_run): Update. * spu-tdep.c (spu_pseudo_register_read_spu, spu_pseudo_register_write_spu, spu_pointer_to_address, spu_analyze_prologue, spu_in_function_epilogue_p, spu_frame_unwind_cache, spu_push_dummy_call, spu_software_single_step, spu_get_longjmp_target, spu_get_overlay_table, spu_overlay_update_osect, info_spu_signal_command, info_spu_mailbox_list, info_spu_dma_cmdlist, info_spu_dma_command, info_spu_proxydma_command): Update. * stack.c (print_frame_nameless_args, frame_info): Update. * symfile.c (read_target_long_array, simple_read_overlay_table, simple_read_overlay_region_table): Update. * target.c (debug_print_register): Update. * tramp-frame.c (tramp_frame_start): Update. * v850-tdep.c (v850_analyze_prologue, v850_push_dummy_call, v850_extract_return_value, v850_store_return_value, * valarith.c (value_binop, value_bit_index): Update. * valops.c (value_cast): Update. * valprint.c (val_print_type_code_int, val_print_string, read_string): Update. * value.c (unpack_long, unpack_double, unpack_field_as_long, modify_field, pack_long): Update. * vax-tdep.c (vax_store_arguments, vax_push_dummy_call, vax_skip_prologue): Update. * xstormy16-tdep.c (xstormy16_push_dummy_call, xstormy16_analyze_prologue, xstormy16_in_function_epilogue_p, xstormy16_resolve_jmp_table_entry, xstormy16_find_jmp_table_entry, xstormy16_pointer_to_address, xstormy16_address_to_pointer): Update. * xtensa-tdep.c (extract_call_winsize, xtensa_pseudo_register_read, xtensa_pseudo_register_write, xtensa_frame_cache, xtensa_push_dummy_call, call0_track_op, call0_frame_cache): Update. * dfp.h (decimal_to_string, decimal_from_string, decimal_from_integral, decimal_from_floating, decimal_to_doublest, decimal_is_zero): Add BYTE_ORDER parameter. (decimal_binop): Add BYTE_ORDER_X, BYTE_ORDER_Y, and BYTE_ORDER_RESULT parameters. (decimal_compare): Add BYTE_ORDER_X and BYTE_ORDER_Y parameters. (decimal_convert): Add BYTE_ORDER_FROM and BYTE_ORDER_TO parameters. * dfp.c (match_endianness): Add BYTE_ORDER parameter. Use it instead of current_gdbarch. (decimal_to_string, decimal_from_integral, decimal_from_floating, decimal_to_doublest, decimal_is_zero): Add BYTE_ORDER parameter. Pass it to match_endianness. (decimal_binop): Add BYTE_ORDER_X, BYTE_ORDER_Y, and BYTE_ORDER_RESULT parameters. Pass them to match_endianness. (decimal_compare): Add BYTE_ORDER_X and BYTE_ORDER_Y parameters. Pass them to match_endianness. (decimal_convert): Add BYTE_ORDER_FROM and BYTE_ORDER_TO parameters. Pass them to match_endianness. * valarith.c (value_args_as_decimal): Add BYTE_ORDER_X and BYTE_ORDER_Y output parameters. (value_binop): Update call to value_args_as_decimal. Update calls to decimal_to_string, decimal_from_string, decimal_from_integral, decimal_from_floating, decimal_to_doublest, decimal_is_zero, decimal_binop, decimal_compare and decimal_convert to pass/receive byte order: * c-exp.y (parse_number): Update. * printcmd.c (printf_command): Update. * valarith.c (value_args_as_decimal, value_binop, value_logical_not, value_equal, value_less): Update. * valops.c (value_cast, value_one): Update. * valprint.c (print_decimal_floating): Update. * value.c (unpack_long, unpack_double): Update. * python/python-value.c (valpy_nonzero): Update. * ada-valprint.c (char_at): Add BYTE_ORDER parameter. (printstr): Update calls to char_at. (ada_val_print_array): Likewise. * valprint.c (read_string): Add BYTE_ORDER parameter. (val_print_string): Update call to read_string. * c-lang.c (c_get_string): Likewise. * charset.h (target_wide_charset): Add BYTE_ORDER parameter. * charset.c (target_wide_charset): Add BYTE_ORDER parameter. Use it instead of current_gdbarch. * printcmd.c (printf_command): Update calls to target_wide_charset. * c-lang.c (charset_for_string_type): Add BYTE_ORDER parameter. Pass to target_wide_charset. Use it instead of current_gdbarch. (classify_type): Add BYTE_ORDER parameter. Pass to charset_for_string_type. Allow NULL encoding pointer. (print_wchar): Add BYTE_ORDER parameter. (c_emit_char): Update calls to classify_type and print_wchar. (c_printchar, c_printstr): Likewise. * gdbarch.sh (in_solib_return_trampoline): Convert to type "m". * gdbarch.c, gdbarch.h: Regenerate. * arch-utils.h (generic_in_solib_return_trampoline): Add GDBARCH parameter. * arch-utils.c (generic_in_solib_return_trampoline): Likewise. * hppa-hpux-tdep.c (hppa_hpux_in_solib_return_trampoline): Likewise. * rs6000-tdep.c (rs6000_in_solib_return_trampoline): Likewise. (rs6000_skip_trampoline_code): Update call. * alpha-tdep.h (struct gdbarch_tdep): Add GDBARCH parameter to dynamic_sigtramp_offset and pc_in_sigtramp callbacks. (alpha_read_insn): Add GDBARCH parameter. * alpha-tdep.c (alpha_lds, alpha_sts): Add GDBARCH parameter. (alpha_register_to_value): Pass architecture to alpha_sts. (alpha_extract_return_value): Likewise. (alpha_value_to_register): Pass architecture to alpha_lds. (alpha_store_return_value): Likewise. (alpha_read_insn): Add GDBARCH parameter. (alpha_skip_prologue): Pass architecture to alpha_read_insn. (alpha_heuristic_proc_start): Likewise. (alpha_heuristic_frame_unwind_cache): Likewise. (alpha_next_pc): Likewise. (alpha_sigtramp_frame_this_id): Pass architecture to tdep->dynamic_sigtramp_offset callback. (alpha_sigtramp_frame_sniffer): Pass architecture to tdep->pc_in_sigtramp callback. * alphafbsd-tdep.c (alphafbsd_pc_in_sigtramp): Add GDBARCH parameter. (alphafbsd_sigtramp_offset): Likewise. * alpha-linux-tdep.c (alpha_linux_sigtramp_offset_1): Add GDBARCH parameter. Pass to alpha_read_insn. (alpha_linux_sigtramp_offset): Add GDBARCH parameter. Pass to alpha_linux_sigtramp_offset_1. (alpha_linux_pc_in_sigtramp): Add GDBARCH parameter. Pass to alpha_linux_sigtramp_offset. (alpha_linux_sigcontext_addr): Pass architecture to alpha_read_insn and alpha_linux_sigtramp_offset. * alphanbsd-tdep.c (alphanbsd_sigtramp_offset): Add GDBARCH parameter. (alphanbsd_pc_in_sigtramp): Add GDBARCH parameter. Pass to alphanbsd_sigtramp_offset. * alphaobsd-tdep.c (alphaobsd_sigtramp_offset): Add GDBARCH parameter. (alphaobsd_pc_in_sigtramp): Add GDBARCH parameter. Pass to alpha_read_insn. (alphaobsd_sigcontext_addr): Pass architecture to alphaobsd_sigtramp_offset. * alpha-osf1-tdep.c (alpha_osf1_pc_in_sigtramp): Add GDBARCH parameter. * amd64-tdep.c (amd64_analyze_prologue): Add GDBARCH parameter. (amd64_skip_prologue): Pass architecture to amd64_analyze_prologue. (amd64_frame_cache): Likewise. * arm-tdep.c (SWAP_SHORT, SWAP_INT): Remove. (thumb_analyze_prologue, arm_skip_prologue, arm_scan_prologue, thumb_get_next_pc, arm_get_next_pc): Do not use SWAP_ macros. * arm-wince-tdep.c: Include "frame.h". * avr-tdep.c (EXTRACT_INSN): Remove. (avr_scan_prologue): Add GDBARCH argument, inline EXTRACT_INSN. (avr_skip_prologue): Pass architecture to avr_scan_prologue. (avr_frame_unwind_cache): Likewise. * cris-tdep.c (struct instruction_environment): Add BYTE_ORDER member. (find_step_target): Initialize it. (get_data_from_address): Add BYTE_ORDER parameter. (bdap_prefix): Pass byte order to get_data_from_address. (handle_prefix_assign_mode_for_aritm_op): Likewise. (three_operand_add_sub_cmp_and_or_op): Likewise. (handle_inc_and_index_mode_for_aritm_op): Likewise. * frv-linux-tdep.c (frv_linux_pc_in_sigtramp): Add GDBARCH parameter. (frv_linux_sigcontext_reg_addr): Pass architecture to frv_linux_pc_in_sigtramp. (frv_linux_sigtramp_frame_sniffer): Likewise. * h8300-tdep.c (h8300_is_argument_spill): Add GDBARCH parameter. (h8300_analyze_prologue): Add GDBARCH parameter. Pass to h8300_is_argument_spill. (h8300_frame_cache, h8300_skip_prologue): Pass architecture to h8300_analyze_prologue. * hppa-tdep.h (struct gdbarch_tdep): Add GDBARCH parameter to in_solib_call_trampoline callback. (hppa_in_solib_call_trampoline): Add GDBARCH parameter. * hppa-tdep.c (hppa64_convert_code_addr_to_fptr): Add GDBARCH parameter. (hppa64_push_dummy_call): Pass architecture to hppa64_convert_code_addr_to_fptr. (hppa_match_insns): Add GDBARCH parameter. (hppa_match_insns_relaxed): Add GDBARCH parameter. Pass to hppa_match_insns. (hppa_skip_trampoline_code): Pass architecture to hppa_match_insns. (hppa_in_solib_call_trampoline): Add GDBARCH parameter. Pass to hppa_match_insns_relaxed. (hppa_stub_unwind_sniffer): Pass architecture to tdep->in_solib_call_trampoline callback. * hppa-hpux-tdep.c (hppa_hpux_search_pattern): Add GDBARCH parameter. (hppa32_hpux_search_dummy_call_sequence): Pass architecture to hppa_hpux_search_pattern. * hppa-linux-tdep.c (insns_match_pattern): Add GDBARCH parameter. (hppa_linux_sigtramp_find_sigcontext): Add GDBARCH parameter. Pass to insns_match_pattern. (hppa_linux_sigtramp_frame_unwind_cache): Pass architecture to hppa_linux_sigtramp_find_sigcontext. (hppa_linux_sigtramp_frame_sniffer): Likewise. (hppa32_hpux_in_solib_call_trampoline): Add GDBARCH parameter. (hppa64_hpux_in_solib_call_trampoline): Likewise. * i386-tdep.c (i386_follow_jump): Add GDBARCH parameter. (i386_analyze_frame_setup): Add GDBARCH parameter. (i386_analyze_prologue): Add GDBARCH parameter. Pass to i386_follow_jump and i386_analyze_frame_setup. (i386_skip_prologue): Pass architecture to i386_analyze_prologue and i386_follow_jump. (i386_frame_cache): Pass architecture to i386_analyze_prologue. (i386_pe_skip_trampoline_code): Add FRAME parameter. * i386-tdep.h (i386_pe_skip_trampoline_code): Add FRAME parameter. * i386-cygwin-tdep.c (i386_cygwin_skip_trampoline_code): Pass frame to i386_pe_skip_trampoline_code. * ia64-tdep.h (struct gdbarch_tdep): Add GDBARCH parameter to sigcontext_register_address callback. * ia64-tdep.c (ia64_find_global_pointer): Add GDBARCH parameter. (ia64_find_unwind_table): Pass architecture to ia64_find_global_pointer. (find_extant_func_descr): Add GDBARCH parameter. (find_func_descr): Pass architecture to find_extant_func_descr and ia64_find_global_pointer. (ia64_sigtramp_frame_init_saved_regs): Pass architecture to tdep->sigcontext_register_address callback. * ia64-linux-tdep.c (ia64_linux_sigcontext_register_address): Add GDBARCH parameter. * iq2000-tdep.c (iq2000_scan_prologue): Add GDBARCH parameter. (iq2000_frame_cache): Pass architecture to iq2000_scan_prologue. * lm32-tdep.c (lm32_analyze_prologue): Add GDBARCH parameter. (lm32_skip_prologue, lm32_frame_cache): Pass architecture to lm32_analyze_prologue. * m32r-tdep.c (decode_prologue): Add GDBARCH parameter. (m32r_skip_prologue): Pass architecture to decode_prologue. * m68hc11-tdep.c (m68hc11_analyze_instruction): Add GDBARCH parameter. (m68hc11_scan_prologue): Pass architecture to m68hc11_analyze_instruction. * m68k-tdep.c (m68k_analyze_frame_setup): Add GDBARCH parameter. (m68k_analyze_prologue): Pass architecture to m68k_analyze_frame_setup. * m88k-tdep.c (m88k_fetch_instruction): Add BYTE_ORDER parameter. (m88k_analyze_prologue): Add GDBARCH parameter. Pass byte order to m88k_fetch_instruction. (m88k_skip_prologue): Pass architecture to m88k_analyze_prologue. (m88k_frame_cache): Likewise. * mep-tdep.c (mep_get_insn): Add GDBARCH parameter. (mep_analyze_prologue): Pass architecture to mep_get_insn. * mips-tdep.c (mips_fetch_instruction): Add GDBARCH parameter. (mips32_next_pc): Pass architecture to mips_fetch_instruction. (deal_with_atomic_sequence): Likewise. (unpack_mips16): Add GDBARCH parameter, pass to mips_fetch_instruction. (mips16_scan_prologue): Likewise. (mips32_scan_prologue): Likewise. (mips16_in_function_epilogue_p): Likewise. (mips32_in_function_epilogue_p): Likewise. (mips_about_to_return): Likewise. (mips_insn16_frame_cache): Pass architecture to mips16_scan_prologue. (mips_insn32_frame_cache): Pass architecture to mips32_scan_prologue. (mips_skip_prologue): Pass architecture to mips16_scan_prologue and mips32_scan_prologue. (mips_in_function_epilogue_p): Pass architecture to mips16_in_function_epilogue_p and mips32_in_function_epilogue_p. (heuristic_proc_start): Pass architecture to mips_fetch_instruction and mips_about_to_return. (mips_skip_mips16_trampoline_code): Pass architecture to mips_fetch_instruction. (fetch_mips_16): Add GDBARCH parameter. (mips16_next_pc): Pass architecture to fetch_mips_16. (extended_mips16_next_pc): Pass architecture to unpack_mips16 and fetch_mips_16. * objc-lang.c (read_objc_method, read_objc_methlist_nmethods, read_objc_methlist_method, read_objc_object, read_objc_super, read_objc_class): Add GDBARCH parameter. (find_implementation_from_class): Add GDBARCH parameter, pass to read_objc_class, read_objc_methlist_nmethods, and read_objc_methlist_method. (find_implementation): Add GDBARCH parameter, pass to read_objc_object and find_implementation_from_class. (resolve_msgsend, resolve_msgsend_stret): Pass architecture to find_implementation. (resolve_msgsend_super, resolve_msgsend_super_stret): Pass architecture to read_objc_super and find_implementation_from_class. * ppc64-linux-tdep.c (ppc64_desc_entry_point): Add GDBARCH parameter. (ppc64_standard_linkage1_target, ppc64_standard_linkage2_target, ppc64_standard_linkage3_target): Pass architecture to ppc64_desc_entry_point. * rs6000-tdep.c (bl_to_blrl_insn_p): Add BYTE_ORDER parameter. (skip_prologue): Pass byte order to bl_to_blrl_insn_p. (rs6000_fetch_instruction): Add GDBARCH parameter. (rs6000_skip_stack_check): Add GDBARCH parameter, pass to rs6000_fetch_instruction. (skip_prologue): Pass architecture to rs6000_fetch_instruction. * remote-mips.c (mips_store_word): Return old_contents as host integer value instead of target bytes. * s390-tdep.c (struct s390_prologue_data): Add BYTE_ORDER member. (s390_analyze_prologue): Initialize it. (extend_simple_arg): Add GDBARCH parameter. (s390_push_dummy_call): Pass architecture to extend_simple_arg. * scm-lang.c (scm_get_field): Add BYTE_ORDER parameter. * scm-lang.h (scm_get_field): Add BYTE_ORDER parameter. (SCM_CAR, SCM_CDR): Pass SCM_BYTE_ORDER to scm_get_field. * scm-valprint.c (scm_scmval_print): Likewise. (scm_scmlist_print, scm_ipruk, scm_scmval_print): Define SCM_BYTE_ORDER. * sh64-tdep.c (look_for_args_moves): Add GDBARCH parameter. (sh64_skip_prologue_hard_way): Add GDBARCH parameter, pass to look_for_args_moves. (sh64_skip_prologue): Pass architecture to sh64_skip_prologue_hard_way. * sh-tdep.c (sh_analyze_prologue): Add GDBARCH parameter. (sh_skip_prologue): Pass architecture to sh_analyze_prologue. (sh_frame_cache): Likewise. * solib-irix.c (extract_mips_address): Add GDBARCH parameter. (fetch_lm_info, irix_current_sos, irix_open_symbol_file_object): Pass architecture to extract_mips_address. * sparc-tdep.h (sparc_fetch_wcookie): Add GDBARCH parameter. * sparc-tdep.c (sparc_fetch_wcookie): Add GDBARCH parameter. (sparc_supply_rwindow, sparc_collect_rwindow): Pass architecture to sparc_fetch_wcookie. (sparc32_frame_prev_register): Likewise. * sparc64-tdep.c (sparc64_frame_prev_register): Likewise. * sparc32nbsd-tdep.c (sparc32nbsd_sigcontext_saved_regs): Likewise. * sparc64nbsd-tdep.c (sparc64nbsd_sigcontext_saved_regs): Likewise. * spu-tdep.c (spu_analyze_prologue): Add GDBARCH parameter. (spu_skip_prologue): Pass architecture to spu_analyze_prologue. (spu_virtual_frame_pointer): Likewise. (spu_frame_unwind_cache): Likewise. (info_spu_mailbox_list): Add BYTE_ORER parameter. (info_spu_mailbox_command): Pass byte order to info_spu_mailbox_list. (info_spu_dma_cmdlist): Add BYTE_ORER parameter. (info_spu_dma_command, info_spu_proxydma_command): Pass byte order to info_spu_dma_cmdlist. * symfile.c (read_target_long_array): Add GDBARCH parameter. (simple_read_overlay_table, simple_read_overlay_region_table, simple_overlay_update_1): Pass architecture to read_target_long_array. * v850-tdep.c (v850_analyze_prologue): Add GDBARCH parameter. (v850_frame_cache): Pass architecture to v850_analyze_prologue. * xstormy16-tdep.c (xstormy16_analyze_prologue): Add GDBARCH parameter. (xstormy16_skip_prologue, xstormy16_frame_cache): Pass architecture to xstormy16_analyze_prologue. (xstormy16_resolve_jmp_table_entry): Add GDBARCH parameter. (xstormy16_find_jmp_table_entry): Likewise. (xstormy16_skip_trampoline_code): Pass architecture to xstormy16_resolve_jmp_table_entry. (xstormy16_pointer_to_address): Likewise. (xstormy16_address_to_pointer): Pass architecture to xstormy16_find_jmp_table_entry. * xtensa-tdep.c (call0_track_op): Add GDBARCH parameter. (call0_analyze_prologue): Add GDBARCH parameter, pass to call0_track_op. (call0_frame_cache): Pass architecture to call0_analyze_prologue. (xtensa_skip_prologue): Likewise.
2009-07-02 19:25:59 +02:00
CORE_ADDR (*sigcontext_register_address) (struct gdbarch *, CORE_ADDR, int);
* arch-utils.c (legacy_pc_in_sigtramp): Remove. * arch-utils.h (legacy_pc_in_sigtramp): Remove. * config/ia64/linux.mt (DEPRECATED_TM_FILE): Remove. * config/ia64/tm-linux.h: Remove file. * ia64-tdep.h (struct gdbarch_tdep): Add pc_in_sigtramp callback. * ia64-tdep.c (ia64_sigtramp_frame_sniffer): Use it instead of legacy_pc_in_sigtramp. (ia64_gdbarch_init): Initialize tdep->pc_in_sigtramp. * ia64-linux-tdep.c (ia64_linux_pc_in_sigtramp): Make static. Remove func_name argument. (ia64_linux_init_abi): Install it as tdep->pc_in_sigtramp. * infrun.c (HAVE_STEPPABLE_WATCHPOINT): Do not redefine. * target.c (update_current_target): Add to_have_steppable_watchpoint. * target.h (struct target_ops): Add to_have_steppable_watchpoint. (HAVE_STEPPABLE_WATCHPOINT): Define. * config/ia64/linux.mh (NATDEPFILES): Remove core-aout.o. * config/ia64/nm-linux.h (KERNEL_U_ADDR, U_REGS_OFFSET, CANNOT_FETCH_REGISTER, CANNOT_STORE_REGISTER, TARGET_CAN_USE_HARDWARE_WATCHPOINT, HAVE_STEPPABLE_WATCHPOINT, STOPPED_BY_WATCHPOINT, target_stopped_data_address, target_insert_watchpoint, target_remove_watchpoint): Remove. (FETCH_INFERIOR_REGISTERS): Define. * ia64-linux-nat.c (ia64_register_addr): Make static. (ia64_cannot_fetch_register, ia64_cannot_store_register): Likewise. (ia64_linux_insert_watchpoint): Make static. Remove ptid_p argument. (ia64_linux_remove_watchpoint): Likewise. Add type argument. (ia64_linux_stopped_data_address): Make static. Add target_ops. (ia64_linux_stopped_by_watchpoint): Make static. (ia64_linux_can_use_hw_breakpoint): New function. (ia64_linux_fetch_register, ia64_linux_fetch_registers): Likewise. (ia64_linux_store_register, ia64_linux_store_registers): Likewise. (_initialize_ia64_linux_nat): Install register and watchpoint ops.
2007-03-28 20:56:07 +02:00
int (*pc_in_sigtramp) (CORE_ADDR);
* gdbtypes.h (builtin_type_ieee_single, builtin_type_ieee_double, builtin_type_i387_ext, builtin_type_m68881_ext, builtin_type_arm_ext, builtin_type_ia64_spill, builtin_type_ia64_quad): Remove. (init_float_type, init_complex_type): Add prototypes. * gdbtypes.c (builtin_type_ieee_single, builtin_type_ieee_double, builtin_type_i387_ext, builtin_type_m68881_ext, builtin_type_arm_ext, builtin_type_ia64_spill, builtin_type_ia64_quad): Remove. (_initialize_gdbtypes): Do not initialize them. (build_flt): Rename to ... (init_float_type): ... this. Make global. (build_complex): Rename to ... (init_complex_type): ... this. Make global. Remove BIT argument. (gdbtypes_post_init): Update calls. * ada-lang.c (ada_language_arch_info): Use init_float_type. * jv-lang.c (build_java_types): Likewise. * m2-lang.c (build_m2_types): Likewise. * f-lang.c (build_fortran_types): Use init_float_type and init_complex_type. * target-descriptions.c (tdesc_gdb_type): Call init_float_type instead of using builtin_type_ieee_single, builtin_type_ieee_double, or builtin_type_arm_ext. * ia64-tdep.h (struct gdbarch_tdep): Add ia64_ext_type member. * ia64-tdep.c (builtin_type_ia64_ext): Remove. (_initialize_ia64_tdep): Do not initialize it. (floatformat_valid, floatformat_ia64_ext, floatformats_ia64_ext): Move up. (ia64_ext_type): New function. (ia64_register_reggroup_p, ia64_convert_register_p, ia64_register_to_value, ia64_value_to_register, ia64_extract_return_value, ia64_store_return_value): Use ia64_ext_type instead of builtin_type_ia64_ext. * i386-tdep.h (struct gdbarch_tdep): Add i387_ext_type member. (i387_ext_type): Add prototype. * i386-tdep.c (i387_ext_type): New function. (i386_extract_return_value, i386_store_return_value, i386_register_type): Use it instead of builtin_type_i387_ext. * amd64-tdep.c (amd64_register_type): Likewise. * i387-tdep.c (print_i387_value, i387_register_to_value, i387_value_to_register): Likewise. (print_i387_value, print_i387_ext): Add GDBARCH argument. (print_i387_ext, i387_print_float_info): Pass to subroutines. * m68k-tdep.h (struct gdbarch_tdep): Add m68881_ext_type member. * m68k-tdep.c (m68881_ext_type): New function. (m68k_register_type, m68k_convert_register_p): Use it instead of builtin_type_m68881_ext. * arm-tdep.h (struct gdbarch_tdep): Add arm_ext_type member. * arm-tdep.c (arm_ext_type): New function. (arm_register_type): Use it instead of builtin_type_arm_ext. * alpha-tdep.c (alpha_register_type): Use builtin types instead of builtin_type_ieee_double. * mips-tdep.c (mips_float_register_type, mips_double_register_type): Remove. (mips_register_type): Use builtin types instead of builtin_type_ieee_single and builtin_type_ieee_double. (mips_print_fp_register): Use builtin types instead of mips_float_register_type and mips_double_register_type. * hppa-tdep.c (hppa32_register_type, hppa64_register_type): Use builtin types instead of builtin_type_ieee_single and builtin_type_ieee_double.
2009-07-02 14:48:54 +02:00
[ia64-hpux] unwinding bsp value from system call This fixes unwinding from a thread that is stopped inside a system call. This can be seen when switching to a thread that is stopped doing a pthread_cond_wait, for instance... The comments inside the code should explain what is happening in our case (the HP-UX exception in the case of system calls): Under certain circumstances (program stopped inside syscall), the offset to apply to the current BSP in order to compute the previous BSP is not the usual CFM & 0x7f. We parts in this patch: 1. Figuring out that we are stopped inside a syscal: This requires a TT_LWP_RUREGS ttrace call, which is not directly possible from ia64-tdep.c. So use defined a new TARGET_OBJECT_HPUX_UREGS object to request it from the -nat side. 2. Add a gdbarch_tdep method that allows us to change the default behavior on ia64-hpux, permitting us to have a different "size of register frame" in that one particular case. gdb/ChangeLog: * target.h (enum target_object): Add TARGET_OBJECT_HPUX_UREGS. * ia64-tdep.h (struct frame_info): forward declaration. (struct gdbarch_tdep): Add field size_of_register_frame. * ia64-tdep.c (ia64_access_reg): Use tdep->size_of_register_frame to determine the size of the register frame. (ia64_size_of_register_frame): New function. (ia64_gdbarch_init): Set tdep->size_of_register_frame. * ia64-hpux-tdep.c: Include "target.h" and "frame.h". (IA64_HPUX_UREG_REASON): New macro. (ia64_hpux_stopped_in_syscall, ia64_hpux_size_of_register_frame): New functions. (ia64_hpux_init_abi): Set tdep->size_of_register_frame. * ia64-hpux-nat.c (ia64_hpux_xfer_uregs): New function. (ia64_hpux_xfer_partial): Add handling of TARGET_OBJECT_HPUX_UREGS objects.
2011-01-13 17:24:27 +01:00
/* Return the total size of THIS_FRAME's register frame.
CFM is THIS_FRAME's cfm register value.
Normally, the size of the register frame is always obtained by
extracting the lowest 7 bits ("cfm & 0x7f"). */
int (*size_of_register_frame) (struct frame_info *this_frame, ULONGEST cfm);
[ia64-hpux] inferior function call support We have two stacks to deal with on ia64, when making a function call. The first is the usual stack frame, and the second is the register stack frame. On ia64-linux, the register frame is setup by adjusting the BSP register. Unfortunately for us, the HP-UX kernel does not allow the debugger to change the value of the BSP. To work around that limitation, the method I am using here is to push some assembly code on the stack. This assembly code contains, among other things, a call to the alloc insn, which sets up our frame for us. An extensive comment in ia64-hpux-tdep.c explains the entire procedure. Despite this approach, most of the code in ia64-tdep.c which sets up the function call is still applicable - and only a few things need to be done differently: For instance, instead of changing the BSP, we do nothing. We store the parameters at a different location, etc. So this patch also adjusts the inf-call code in ia64-tdep.c to make it a little more extensible: I create a new ia64_infcall_ops structure which allows an ABI to define how the few things that need to be differentiated. Another element that turned out to be necessary but is more of a detail is that the computation of the linkage pointer needs to be handled specially for symbols inside shared libraries. This is especially visible when calling malloc, which happens everytime memory needs to be allocated in inferior memory... The special treatment included again the necessity to use some routines only available on the host. So another target object TARGET_OBJECT_HPUX_SOLIB_GOT was created for that purpose. gdb/ChangeLog: * ia64-tdep.h (struct regcache): Forward declare. (struct ia64_infcall_ops): New struct type. (struct gdbarch_tdep): New fields "find_global_pointer_from_solib" and "infcall_ops". * ia64-tdep.c (ia64_find_global_pointer_from_dynamic_section): Renames ia64_find_global_pointer. (ia64_find_global_pointer, ia64_allocate_new_rse_frame) (ia64_store_argument_in_slot, ia64_set_function_addr: New function. (ia64_push_dummy_call): Adjust to use the new tdep ia64_infocall_ops methods. (ia64_infcall_ops): New static global constant. (ia64_gdbarch_init): Set tdep->infcall_ops. * ia64-hpux-nat.c (ia64_hpux_xfer_solib_got): New function. (ia64_hpux_xfer_partial): Add TARGET_OBJECT_HPUX_SOLIB_GOT handing. * ia64-hpux-tdep.c: Include "regcache.h", "gdbcore.h" and "inferior.h". (ia64_hpux_dummy_code): New static global constant. (ia64_hpux_push_dummy_code, ia64_hpux_allocate_new_rse_frame) (ia64_hpux_store_argument_in_slot, ia64_hpux_set_function_addr) (ia64_hpux_dummy_id, ia64_hpux_find_global_pointer_from_solib): New function. (ia64_hpux_infcall_ops): New static global constant. (ia64_hpux_init_abi): Install gdbarch and tdep methods needed for inferior function calls to work properly on ia64-hpux.
2011-01-13 17:24:42 +01:00
/* Determine the function address FADDR belongs to a shared library.
If it does, then return the associated global pointer. If no shared
library was found to contain that function, then return zero.
This pointer may be NULL. */
CORE_ADDR (*find_global_pointer_from_solib) (struct gdbarch *gdbarch,
CORE_ADDR faddr);
* gdbtypes.h (builtin_type_ieee_single, builtin_type_ieee_double, builtin_type_i387_ext, builtin_type_m68881_ext, builtin_type_arm_ext, builtin_type_ia64_spill, builtin_type_ia64_quad): Remove. (init_float_type, init_complex_type): Add prototypes. * gdbtypes.c (builtin_type_ieee_single, builtin_type_ieee_double, builtin_type_i387_ext, builtin_type_m68881_ext, builtin_type_arm_ext, builtin_type_ia64_spill, builtin_type_ia64_quad): Remove. (_initialize_gdbtypes): Do not initialize them. (build_flt): Rename to ... (init_float_type): ... this. Make global. (build_complex): Rename to ... (init_complex_type): ... this. Make global. Remove BIT argument. (gdbtypes_post_init): Update calls. * ada-lang.c (ada_language_arch_info): Use init_float_type. * jv-lang.c (build_java_types): Likewise. * m2-lang.c (build_m2_types): Likewise. * f-lang.c (build_fortran_types): Use init_float_type and init_complex_type. * target-descriptions.c (tdesc_gdb_type): Call init_float_type instead of using builtin_type_ieee_single, builtin_type_ieee_double, or builtin_type_arm_ext. * ia64-tdep.h (struct gdbarch_tdep): Add ia64_ext_type member. * ia64-tdep.c (builtin_type_ia64_ext): Remove. (_initialize_ia64_tdep): Do not initialize it. (floatformat_valid, floatformat_ia64_ext, floatformats_ia64_ext): Move up. (ia64_ext_type): New function. (ia64_register_reggroup_p, ia64_convert_register_p, ia64_register_to_value, ia64_value_to_register, ia64_extract_return_value, ia64_store_return_value): Use ia64_ext_type instead of builtin_type_ia64_ext. * i386-tdep.h (struct gdbarch_tdep): Add i387_ext_type member. (i387_ext_type): Add prototype. * i386-tdep.c (i387_ext_type): New function. (i386_extract_return_value, i386_store_return_value, i386_register_type): Use it instead of builtin_type_i387_ext. * amd64-tdep.c (amd64_register_type): Likewise. * i387-tdep.c (print_i387_value, i387_register_to_value, i387_value_to_register): Likewise. (print_i387_value, print_i387_ext): Add GDBARCH argument. (print_i387_ext, i387_print_float_info): Pass to subroutines. * m68k-tdep.h (struct gdbarch_tdep): Add m68881_ext_type member. * m68k-tdep.c (m68881_ext_type): New function. (m68k_register_type, m68k_convert_register_p): Use it instead of builtin_type_m68881_ext. * arm-tdep.h (struct gdbarch_tdep): Add arm_ext_type member. * arm-tdep.c (arm_ext_type): New function. (arm_register_type): Use it instead of builtin_type_arm_ext. * alpha-tdep.c (alpha_register_type): Use builtin types instead of builtin_type_ieee_double. * mips-tdep.c (mips_float_register_type, mips_double_register_type): Remove. (mips_register_type): Use builtin types instead of builtin_type_ieee_single and builtin_type_ieee_double. (mips_print_fp_register): Use builtin types instead of mips_float_register_type and mips_double_register_type. * hppa-tdep.c (hppa32_register_type, hppa64_register_type): Use builtin types instead of builtin_type_ieee_single and builtin_type_ieee_double.
2009-07-02 14:48:54 +02:00
/* ISA-specific data types. */
struct type *ia64_ext_type;
[ia64-hpux] inferior function call support We have two stacks to deal with on ia64, when making a function call. The first is the usual stack frame, and the second is the register stack frame. On ia64-linux, the register frame is setup by adjusting the BSP register. Unfortunately for us, the HP-UX kernel does not allow the debugger to change the value of the BSP. To work around that limitation, the method I am using here is to push some assembly code on the stack. This assembly code contains, among other things, a call to the alloc insn, which sets up our frame for us. An extensive comment in ia64-hpux-tdep.c explains the entire procedure. Despite this approach, most of the code in ia64-tdep.c which sets up the function call is still applicable - and only a few things need to be done differently: For instance, instead of changing the BSP, we do nothing. We store the parameters at a different location, etc. So this patch also adjusts the inf-call code in ia64-tdep.c to make it a little more extensible: I create a new ia64_infcall_ops structure which allows an ABI to define how the few things that need to be differentiated. Another element that turned out to be necessary but is more of a detail is that the computation of the linkage pointer needs to be handled specially for symbols inside shared libraries. This is especially visible when calling malloc, which happens everytime memory needs to be allocated in inferior memory... The special treatment included again the necessity to use some routines only available on the host. So another target object TARGET_OBJECT_HPUX_SOLIB_GOT was created for that purpose. gdb/ChangeLog: * ia64-tdep.h (struct regcache): Forward declare. (struct ia64_infcall_ops): New struct type. (struct gdbarch_tdep): New fields "find_global_pointer_from_solib" and "infcall_ops". * ia64-tdep.c (ia64_find_global_pointer_from_dynamic_section): Renames ia64_find_global_pointer. (ia64_find_global_pointer, ia64_allocate_new_rse_frame) (ia64_store_argument_in_slot, ia64_set_function_addr: New function. (ia64_push_dummy_call): Adjust to use the new tdep ia64_infocall_ops methods. (ia64_infcall_ops): New static global constant. (ia64_gdbarch_init): Set tdep->infcall_ops. * ia64-hpux-nat.c (ia64_hpux_xfer_solib_got): New function. (ia64_hpux_xfer_partial): Add TARGET_OBJECT_HPUX_SOLIB_GOT handing. * ia64-hpux-tdep.c: Include "regcache.h", "gdbcore.h" and "inferior.h". (ia64_hpux_dummy_code): New static global constant. (ia64_hpux_push_dummy_code, ia64_hpux_allocate_new_rse_frame) (ia64_hpux_store_argument_in_slot, ia64_hpux_set_function_addr) (ia64_hpux_dummy_id, ia64_hpux_find_global_pointer_from_solib): New function. (ia64_hpux_infcall_ops): New static global constant. (ia64_hpux_init_abi): Install gdbarch and tdep methods needed for inferior function calls to work properly on ia64-hpux.
2011-01-13 17:24:42 +01:00
struct ia64_infcall_ops infcall_ops;
};
* gdbarch.sh (read_pc): Add REGCACHE argument. Remove PTID argument. (write_pc): Likewise. Remove default implementation, add predicate. * gdbarch.c, gdbarch.h: Regenerate. * regcache.c (read_pc_pid): Use current regcache instead of calling read_register_pid. (write_pc_pid): Check gdbarch_write_pc predicate, implement default case inline. (generic_target_write_pc): Remove. * inferior.h (generic_target_write_pc): Remove. * frv-tdep.c (frv_gdbarch_init): Do not install it. * m68hc11-tdep.c (m68hc11_gdbarch_init): Likewise. * rs6000-tdep.c (rs6000_gdbarch_init): Likewise. * sh64-tdep.c (sh64_gdbarch_init): Likewise. * sh-tdep.c (sh_gdbarch_init): Likewise. * xstormy16-tdep.c (xstormy16_gdbarch_init): Likewise. * avr-tdep.c (avr_read_pc): Add REGCACHE argument. Remove PTID argument. Use REGCACHE instead of calling read_register_pid. * hppa-hpux-tdep.c (hppa_hpux_read_pc): Likewise. * hppa-tdep.c (hppa_read_pc): Likewise. * hppa-tdep.h (hppa_read_pc): Likewise. * ia64-tdep.c (ia64_read_pc): Likewise. * m32r-tdep.c (m32r_read_pc): Likewise. * mep-tdep.c (mep_read_pc): Likewise. * mn10300-tdep.c (mn10300_read_pc): Likewise. * spu-tdep.c (spu_read_pc): Likewise. * arm-tdep.c (arm_write_pc): Add REGCACHE argument. Remove PTID argument. Use REGCACHE instead of calling write_register_pid. * avr-tdep.c (avr_write_pc): Likewise. * hppa-hpux-tdep.c (hppa_hpux_write_pc): Likewise. * hppa-tdep.c (hppa_write_pc): Likewise. * hppa-tdep.h (hppa_write_pc): Likewise. * i386-linux-tdep.c (i386_linux_write_pc): Likewise. * amd64-linux-tdep.c (amd64_linux_write_pc): Likewise. * ia64-linux-tdep.c (ia64_linux_write_pc): Likewise. * ia64-tdep.c (ia64_write_pc): Likewise. * ia64-tdep.h (ia64_write_pc): Likewise. * m32r-tdep.c (m32r_write_pc): Likewise. * m88k-tdep.c (m88k_write_pc): Likewise. * mep-tdep.c (mep_write_pc): Likewise. * mips-tdep.c (mips_write_pc): Likewise. * mips-linux-tdep.c (mips_linux_write_pc): Likewise. * mn10300-tdep.c (mn10300_write_pc): Likewise. * sparc-tdep.c (sparc_write_pc): Likewise. * spu-tdep.c (spu_write_pc): Likewise. * mips-tdep.c (read_signed_register): Remove. (read_signed_register_pid): Likewise. (mips_read_pc): Add REGCACHE argument. Remove PTID argument. Use REGCACHE instead of calling read_signed_register_pid.
2007-06-16 00:44:56 +02:00
extern void ia64_write_pc (struct regcache *, CORE_ADDR);
#ifdef HAVE_LIBUNWIND_IA64_H
extern unw_accessors_t ia64_unw_accessors;
extern unw_accessors_t ia64_unw_rse_accessors;
extern struct libunwind_descr ia64_libunwind_descr;
#endif
#endif /* ia64-tdep.h */