OpenCores
URL https://opencores.org/ocsvn/or1k/or1k/trunk

Subversion Repositories or1k

[/] [or1k/] [tags/] [VER_5_3/] [gdb-5.3/] [gdb/] [config/] [h8500/] [tm-h8500.h] - Blame information for rev 1765

Details | Compare with Previous | View Log

Line No. Rev Author Line
1 1181 sfurman
/* Parameters for execution on a H8/500 series machine.
2
   Copyright 1993, 1994, 1995, 1998, 1999, 2000, 2001
3
   Free Software Foundation, Inc.
4
 
5
   This file is part of GDB.
6
 
7
   This program is free software; you can redistribute it and/or modify
8
   it under the terms of the GNU General Public License as published by
9
   the Free Software Foundation; either version 2 of the License, or
10
   (at your option) any later version.
11
 
12
   This program is distributed in the hope that it will be useful,
13
   but WITHOUT ANY WARRANTY; without even the implied warranty of
14
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15
   GNU General Public License for more details.
16
 
17
   You should have received a copy of the GNU General Public License
18
   along with this program; if not, write to the Free Software
19
   Foundation, Inc., 59 Temple Place - Suite 330,
20
   Boston, MA 02111-1307, USA.  */
21
 
22
#include "regcache.h"
23
 
24
/* Contributed by Steve Chamberlain sac@cygnus.com */
25
 
26
#define GDB_TARGET_IS_H8500
27
 
28
/* Define the sizes of integers and pointers.  */
29
 
30
#define TARGET_INT_BIT 16
31
 
32
#define TARGET_LONG_BIT 32
33
 
34
#define TARGET_PTR_BIT (minimum_mode ? 16 : 32)
35
 
36
/* Offset from address of function to start of its code.
37
   Zero on most machines.  */
38
 
39
#define FUNCTION_START_OFFSET 0
40
 
41
/* Advance PC across any function entry prologue instructions
42
   to reach some "real" code.  */
43
 
44
#define SKIP_PROLOGUE(ip)   (h8500_skip_prologue (ip))
45
extern CORE_ADDR h8500_skip_prologue (CORE_ADDR);
46
 
47
/* Immediately after a function call, return the saved pc.
48
   Can't always go through the frames for this because on some machines
49
   the new frame is not set up until the new function executes
50
   some instructions.  */
51
 
52
#define SAVED_PC_AFTER_CALL(frame) saved_pc_after_call()
53
extern CORE_ADDR saved_pc_after_call (void);
54
 
55
/* Stack grows downward.  */
56
 
57
#define INNER_THAN(lhs,rhs) ((lhs) < (rhs))
58
 
59
/* Illegal instruction - used by the simulator for breakpoint
60
   detection */
61
 
62
#define BREAKPOINT {0x0b}
63
 
64
/* If your kernel resets the pc after the trap happens you may need to
65
   define this before including this file.  */
66
 
67
#define DECR_PC_AFTER_BREAK 0
68
 
69
/* Say how long registers are.  */
70
 
71
#define REGISTER_TYPE  unsigned long
72
 
73
/* Say how much memory is needed to store a copy of the register set */
74
 
75
#define REGISTER_BYTES    (NUM_REGS * 4)
76
 
77
/* Index within `registers' of the first byte of the space for
78
   register N.  */
79
 
80
#define REGISTER_BYTE(N)  ((N)*4)
81
 
82
/* Number of bytes of storage in the actual machine representation
83
   for register N.  */
84
 
85
#define REGISTER_RAW_SIZE(N) h8500_register_size(N)
86
extern int h8500_register_size (int regno);
87
 
88
#define REGISTER_SIZE 4
89
 
90
#define REGISTER_VIRTUAL_SIZE(N) h8500_register_size(N)
91
 
92
/* Largest value REGISTER_RAW_SIZE can have.  */
93
 
94
#define MAX_REGISTER_RAW_SIZE 4
95
 
96
/* Largest value REGISTER_VIRTUAL_SIZE can have.  */
97
 
98
#define MAX_REGISTER_VIRTUAL_SIZE 4
99
 
100
/* Return the GDB type object for the "standard" data type
101
   of data in register N.  */
102
 
103
#define REGISTER_VIRTUAL_TYPE(N) h8500_register_virtual_type(N)
104
extern struct type *h8500_register_virtual_type (int regno);
105
 
106
/* Initializer for an array of names of registers.
107
   Entries beyond the first NUM_REGS are ignored.  */
108
 
109
#define REGISTER_NAMES \
110
  { "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7", \
111
   "pr0","pr1","pr2","pr3","pr4","pr5","pr6","pr7", \
112
    "cp", "dp", "ep", "tp", "sr", "pc"}
113
 
114
/* Register numbers of various important registers.  Note that some of
115
   these values are "real" register numbers, and correspond to the
116
   general registers of the machine, and some are "phony" register
117
   numbers which are too large to be actual register numbers as far as
118
   the user is concerned but do serve to get the desired values when
119
   passed to read_register.  */
120
 
121
#define R0_REGNUM       0
122
#define R1_REGNUM       1
123
#define R2_REGNUM       2
124
#define R3_REGNUM       3
125
#define R4_REGNUM       4
126
#define R5_REGNUM       5
127
#define R6_REGNUM       6
128
#define R7_REGNUM       7
129
 
130
#define PR0_REGNUM      8
131
#define PR1_REGNUM      9
132
#define PR2_REGNUM      10
133
#define PR3_REGNUM      11
134
#define PR4_REGNUM      12
135
#define PR5_REGNUM      13
136
#define PR6_REGNUM      14
137
#define PR7_REGNUM      15
138
 
139
#define SEG_C_REGNUM    16      /* Segment registers */
140
#define SEG_D_REGNUM    17
141
#define SEG_E_REGNUM    18
142
#define SEG_T_REGNUM    19
143
 
144
#define CCR_REGNUM      20      /* Contains processor status */
145
#define PC_REGNUM       21      /* Contains program counter */
146
 
147
#define NUM_REGS        22
148
 
149
#define SP_REGNUM       PR7_REGNUM      /* Contains address of top of stack */
150
#define FP_REGNUM       PR6_REGNUM      /* Contains address of executing stack frame */
151
 
152
#define PTR_SIZE (minimum_mode ? 2 : 4)
153
#define PTR_MASK (minimum_mode ? 0x0000ffff : 0x00ffffff)
154
 
155
/* Store the address of the place in which to copy the structure the
156
   subroutine will return.  This is called from call_function. */
157
 
158
/*#define STORE_STRUCT_RETURN(ADDR, SP) \
159
   { write_register (0, (ADDR)); internal_error (__FILE__, __LINE__, "failed internal consistency check"); } */
160
 
161
/* Extract from an array REGBUF containing the (raw) register state
162
   a function return value of type TYPE, and copy that, in virtual format,
163
   into VALBUF.  */
164
 
165
#define DEPRECATED_EXTRACT_RETURN_VALUE(TYPE,REGBUF,VALBUF) \
166
  memcpy (VALBUF, (char *)(REGBUF), TYPE_LENGTH(TYPE))
167
 
168
/* Write into appropriate registers a function return value
169
   of type TYPE, given in virtual format.  */
170
 
171
#define DEPRECATED_STORE_RETURN_VALUE(TYPE,VALBUF) \
172
  write_register_bytes (0, VALBUF, TYPE_LENGTH (TYPE))
173
 
174
/* Extract from an array REGBUF containing the (raw) register state
175
   the address in which a function should return its structure value,
176
   as a CORE_ADDR (or an expression that can be used as one).  */
177
 
178
#define DEPRECATED_EXTRACT_STRUCT_VALUE_ADDRESS(REGBUF) (*(CORE_ADDR *)(REGBUF))
179
 
180
 
181
/* Define other aspects of the stack frame.  */
182
 
183
/* A macro that tells us whether the function invocation represented
184
   by FI does not have a frame on the stack associated with it.  If it
185
   does not, FRAMELESS is set to 1, else 0.  */
186
 
187
#define FRAMELESS_FUNCTION_INVOCATION(FI) \
188
  (frameless_look_for_prologue (FI))
189
 
190
/* Any function with a frame looks like this
191
   SECOND ARG
192
   FIRST ARG
193
   RET PC
194
   SAVED R2
195
   SAVED R3
196
   SAVED FP   <-FP POINTS HERE
197
   LOCALS0
198
   LOCALS1    <-SP POINTS HERE
199
 
200
 */
201
 
202
#define INIT_EXTRA_FRAME_INFO(fromleaf, fci)  ;
203
/*       (fci)->frame |= read_register(SEG_T_REGNUM) << 16; */
204
 
205
#define FRAME_CHAIN(FRAME) h8500_frame_chain(FRAME)
206
struct frame_info;
207
extern CORE_ADDR h8500_frame_chain (struct frame_info *);
208
 
209
#define FRAME_SAVED_PC(FRAME) frame_saved_pc(FRAME)
210
extern CORE_ADDR frame_saved_pc (struct frame_info *frame);
211
 
212
#define FRAME_ARGS_ADDRESS(fi) ((fi)->frame)
213
 
214
#define FRAME_LOCALS_ADDRESS(fi) ((fi)->frame)
215
 
216
/* Set VAL to the number of args passed to frame described by FI.
217
   Can set VAL to -1, meaning no way to tell.  */
218
 
219
/* We can't tell how many args there are
220
   now that the C compiler delays popping them.  */
221
 
222
#define FRAME_NUM_ARGS(fi) (-1)
223
 
224
/* Return number of bytes at start of arglist that are not really args.  */
225
 
226
#define FRAME_ARGS_SKIP 0
227
 
228
/* Put here the code to store, into a struct frame_saved_regs,
229
   the addresses of the saved registers of frame described by FRAME_INFO.
230
   This includes special registers such as pc and fp saved in special
231
   ways in the stack frame.  sp is even more special:
232
   the address we return for it IS the sp for the next frame.  */
233
 
234
#define FRAME_FIND_SAVED_REGS(frame_info, frame_saved_regs)         \
235
   frame_find_saved_regs(frame_info, &(frame_saved_regs))
236
struct frame_saved_regs;
237
extern void frame_find_saved_regs (struct frame_info *frame_info,
238
                                   struct frame_saved_regs *frame_saved_regs);
239
 
240
 
241
/* Discard from the stack the innermost frame, restoring all registers.  */
242
 
243
#define POP_FRAME { h8500_pop_frame (); }
244
extern void h8500_pop_frame (void);
245
 
246
#define SHORT_INT_MAX 32767
247
#define SHORT_INT_MIN -32768
248
 
249
typedef unsigned short INSN_WORD;
250
 
251
extern CORE_ADDR h8500_addr_bits_remove (CORE_ADDR);
252
#define ADDR_BITS_REMOVE(addr) h8500_addr_bits_remove (addr)
253
 
254
#define read_memory_short(x)  (read_memory_integer(x,2) & 0xffff)
255
 
256
#define PRINT_REGISTER_HOOK(regno) print_register_hook(regno)
257
extern void print_register_hook (int);
258
 
259
extern int minimum_mode;
260
 
261
#define CALL_DUMMY_LENGTH 10
262
 
263
/* Fake variables to make it easy to use 24 bit register pointers */
264
 
265
#define IS_TRAPPED_INTERNALVAR h8500_is_trapped_internalvar
266
extern int h8500_is_trapped_internalvar (char *name);
267
 
268
#define VALUE_OF_TRAPPED_INTERNALVAR h8500_value_of_trapped_internalvar
269
extern struct value *h8500_value_of_trapped_internalvar ( /* struct internalvar *var */ );
270
 
271
#define SET_TRAPPED_INTERNALVAR h8500_set_trapped_internalvar
272
extern void h8500_set_trapped_internalvar ( /* struct internalvar *var, value newval, int bitpos, int bitsize, int offset */ );
273
 
274
extern CORE_ADDR h8500_read_sp (void);
275
extern void h8500_write_sp (CORE_ADDR);
276
 
277
extern CORE_ADDR h8500_read_fp (void);
278
 
279
extern CORE_ADDR h8500_read_pc (ptid_t);
280
extern void h8500_write_pc (CORE_ADDR, ptid_t);
281
 
282
#define TARGET_READ_SP() h8500_read_sp()
283
#define TARGET_WRITE_SP(x) h8500_write_sp(x)
284
 
285
#define TARGET_READ_PC(pid) h8500_read_pc(pid)
286
#define TARGET_WRITE_PC(x,pid) h8500_write_pc(x,pid)
287
 
288
#define TARGET_READ_FP() h8500_read_fp()

powered by: WebSVN 2.1.0

© copyright 1999-2024 OpenCores.org, equivalent to Oliscience, all rights reserved. OpenCores®, registered trademark.