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1f46923f SC |
1 | /* Target-machine dependent code for Hitachi H8/300, for GDB. |
2 | Copyright (C) 1988, 1990, 1991 Free Software Foundation, Inc. | |
3 | ||
4 | This file is part of GDB. | |
5 | ||
6 | This program is free software; you can redistribute it and/or modify | |
7 | it under the terms of the GNU General Public License as published by | |
8 | the Free Software Foundation; either version 2 of the License, or | |
9 | (at your option) any later version. | |
10 | ||
11 | This program is distributed in the hope that it will be useful, | |
12 | but WITHOUT ANY WARRANTY; without even the implied warranty of | |
13 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
14 | GNU General Public License for more details. | |
15 | ||
16 | You should have received a copy of the GNU General Public License | |
17 | along with this program; if not, write to the Free Software | |
6c9638b4 | 18 | Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */ |
1f46923f | 19 | |
ec25d19b | 20 | /* |
1f46923f | 21 | Contributed by Steve Chamberlain |
ec25d19b | 22 | [email protected] |
1f46923f SC |
23 | */ |
24 | ||
400943fb | 25 | #include "defs.h" |
1f46923f SC |
26 | #include "frame.h" |
27 | #include "obstack.h" | |
28 | #include "symtab.h" | |
7f4c8595 | 29 | #include "dis-asm.h" |
a3059251 SC |
30 | #include "gdbcmd.h" |
31 | #include "gdbtypes.h" | |
f9fedc48 MA |
32 | #include "gdbcore.h" |
33 | #include "gdb_string.h" | |
34 | #include "value.h" | |
35 | ||
a3059251 | 36 | |
256b4f37 SC |
37 | #undef NUM_REGS |
38 | #define NUM_REGS 11 | |
39 | ||
1f46923f | 40 | #define UNSIGNED_SHORT(X) ((X) & 0xffff) |
400943fb SC |
41 | |
42 | /* an easy to debug H8 stack frame looks like: | |
ec25d19b SC |
43 | 0x6df6 push r6 |
44 | 0x0d76 mov.w r7,r6 | |
45 | 0x6dfn push reg | |
46 | 0x7905 nnnn mov.w #n,r5 or 0x1b87 subs #2,sp | |
47 | 0x1957 sub.w r5,sp | |
400943fb SC |
48 | |
49 | */ | |
1f46923f | 50 | |
400943fb | 51 | #define IS_PUSH(x) ((x & 0xff00)==0x6d00) |
ec25d19b | 52 | #define IS_PUSH_FP(x) (x == 0x6df6) |
1f46923f SC |
53 | #define IS_MOVE_FP(x) (x == 0x0d76) |
54 | #define IS_MOV_SP_FP(x) (x == 0x0d76) | |
55 | #define IS_SUB2_SP(x) (x==0x1b87) | |
56 | #define IS_MOVK_R5(x) (x==0x7905) | |
ec25d19b | 57 | #define IS_SUB_R5SP(x) (x==0x1957) |
1ca9e7c9 | 58 | |
f9fedc48 MA |
59 | /* Local function declarations. */ |
60 | ||
1ca9e7c9 | 61 | static CORE_ADDR examine_prologue (); |
f9fedc48 | 62 | static void set_machine_hook PARAMS ((char *filename)); |
1f46923f | 63 | |
ec25d19b SC |
64 | void frame_find_saved_regs (); |
65 | CORE_ADDR | |
66 | h8300_skip_prologue (start_pc) | |
67 | CORE_ADDR start_pc; | |
0a8f9d31 | 68 | { |
ec25d19b | 69 | short int w; |
1f46923f | 70 | |
df14b38b | 71 | w = read_memory_unsigned_integer (start_pc, 2); |
400943fb | 72 | /* Skip past all push insns */ |
ec25d19b SC |
73 | while (IS_PUSH_FP (w)) |
74 | { | |
75 | start_pc += 2; | |
df14b38b | 76 | w = read_memory_unsigned_integer (start_pc, 2); |
ec25d19b | 77 | } |
0a8f9d31 | 78 | |
1f46923f | 79 | /* Skip past a move to FP */ |
ec25d19b SC |
80 | if (IS_MOVE_FP (w)) |
81 | { | |
82 | start_pc += 2; | |
df14b38b | 83 | w = read_memory_unsigned_integer (start_pc, 2); |
1f46923f SC |
84 | } |
85 | ||
ec25d19b | 86 | /* Skip the stack adjust */ |
0a8f9d31 | 87 | |
ec25d19b SC |
88 | if (IS_MOVK_R5 (w)) |
89 | { | |
90 | start_pc += 2; | |
df14b38b | 91 | w = read_memory_unsigned_integer (start_pc, 2); |
ec25d19b SC |
92 | } |
93 | if (IS_SUB_R5SP (w)) | |
94 | { | |
95 | start_pc += 2; | |
df14b38b | 96 | w = read_memory_unsigned_integer (start_pc, 2); |
ec25d19b SC |
97 | } |
98 | while (IS_SUB2_SP (w)) | |
99 | { | |
100 | start_pc += 2; | |
df14b38b | 101 | w = read_memory_unsigned_integer (start_pc, 2); |
ec25d19b SC |
102 | } |
103 | ||
104 | return start_pc; | |
ec25d19b | 105 | } |
1f46923f | 106 | |
400943fb | 107 | int |
18b46e7c SS |
108 | gdb_print_insn_h8300 (memaddr, info) |
109 | bfd_vma memaddr; | |
110 | disassemble_info *info; | |
0a8f9d31 | 111 | { |
a3059251 | 112 | if (h8300hmode) |
5076ecd0 | 113 | return print_insn_h8300h (memaddr, info); |
d0414a11 | 114 | else |
5076ecd0 | 115 | return print_insn_h8300 (memaddr, info); |
0a8f9d31 | 116 | } |
ec25d19b | 117 | |
1f46923f SC |
118 | /* Given a GDB frame, determine the address of the calling function's frame. |
119 | This will be used to create a new GDB frame struct, and then | |
120 | INIT_EXTRA_FRAME_INFO and INIT_FRAME_PC will be called for the new frame. | |
121 | ||
122 | For us, the frame address is its stack pointer value, so we look up | |
123 | the function prologue to determine the caller's sp value, and return it. */ | |
124 | ||
669caa9c SS |
125 | CORE_ADDR |
126 | h8300_frame_chain (thisframe) | |
127 | struct frame_info *thisframe; | |
1f46923f | 128 | { |
1f46923f | 129 | frame_find_saved_regs (thisframe, (struct frame_saved_regs *) 0); |
ec25d19b | 130 | return thisframe->fsr->regs[SP_REGNUM]; |
1f46923f SC |
131 | } |
132 | ||
1f46923f SC |
133 | /* Put here the code to store, into a struct frame_saved_regs, |
134 | the addresses of the saved registers of frame described by FRAME_INFO. | |
135 | This includes special registers such as pc and fp saved in special | |
136 | ways in the stack frame. sp is even more special: | |
137 | the address we return for it IS the sp for the next frame. | |
138 | ||
139 | We cache the result of doing this in the frame_cache_obstack, since | |
140 | it is fairly expensive. */ | |
141 | ||
142 | void | |
143 | frame_find_saved_regs (fi, fsr) | |
144 | struct frame_info *fi; | |
145 | struct frame_saved_regs *fsr; | |
146 | { | |
1f46923f SC |
147 | register struct frame_saved_regs *cache_fsr; |
148 | extern struct obstack frame_cache_obstack; | |
149 | CORE_ADDR ip; | |
150 | struct symtab_and_line sal; | |
151 | CORE_ADDR limit; | |
152 | ||
153 | if (!fi->fsr) | |
154 | { | |
155 | cache_fsr = (struct frame_saved_regs *) | |
ec25d19b SC |
156 | obstack_alloc (&frame_cache_obstack, |
157 | sizeof (struct frame_saved_regs)); | |
4ed97c9a | 158 | memset (cache_fsr, '\0', sizeof (struct frame_saved_regs)); |
ec25d19b | 159 | |
1f46923f SC |
160 | fi->fsr = cache_fsr; |
161 | ||
162 | /* Find the start and end of the function prologue. If the PC | |
163 | is in the function prologue, we only consider the part that | |
164 | has executed already. */ | |
ec25d19b | 165 | |
1f46923f SC |
166 | ip = get_pc_function_start (fi->pc); |
167 | sal = find_pc_line (ip, 0); | |
ec25d19b | 168 | limit = (sal.end && sal.end < fi->pc) ? sal.end : fi->pc; |
1f46923f SC |
169 | |
170 | /* This will fill in fields in *fi as well as in cache_fsr. */ | |
171 | examine_prologue (ip, limit, fi->frame, cache_fsr, fi); | |
172 | } | |
173 | ||
174 | if (fsr) | |
175 | *fsr = *fi->fsr; | |
176 | } | |
1f46923f SC |
177 | |
178 | /* Fetch the instruction at ADDR, returning 0 if ADDR is beyond LIM or | |
179 | is not the address of a valid instruction, the address of the next | |
180 | instruction beyond ADDR otherwise. *PWORD1 receives the first word | |
181 | of the instruction.*/ | |
182 | ||
1f46923f | 183 | CORE_ADDR |
ec25d19b SC |
184 | NEXT_PROLOGUE_INSN (addr, lim, pword1) |
185 | CORE_ADDR addr; | |
186 | CORE_ADDR lim; | |
58e49e21 | 187 | INSN_WORD *pword1; |
1f46923f | 188 | { |
34df79fc | 189 | char buf[2]; |
ec25d19b SC |
190 | if (addr < lim + 8) |
191 | { | |
34df79fc JK |
192 | read_memory (addr, buf, 2); |
193 | *pword1 = extract_signed_integer (buf, 2); | |
1f46923f | 194 | |
ec25d19b SC |
195 | return addr + 2; |
196 | } | |
1f46923f | 197 | return 0; |
1f46923f SC |
198 | } |
199 | ||
200 | /* Examine the prologue of a function. `ip' points to the first instruction. | |
ec25d19b | 201 | `limit' is the limit of the prologue (e.g. the addr of the first |
1f46923f | 202 | linenumber, or perhaps the program counter if we're stepping through). |
ec25d19b | 203 | `frame_sp' is the stack pointer value in use in this frame. |
1f46923f | 204 | `fsr' is a pointer to a frame_saved_regs structure into which we put |
ec25d19b | 205 | info about the registers saved by this frame. |
1f46923f SC |
206 | `fi' is a struct frame_info pointer; we fill in various fields in it |
207 | to reflect the offsets of the arg pointer and the locals pointer. */ | |
208 | ||
1f46923f SC |
209 | static CORE_ADDR |
210 | examine_prologue (ip, limit, after_prolog_fp, fsr, fi) | |
211 | register CORE_ADDR ip; | |
212 | register CORE_ADDR limit; | |
669caa9c | 213 | CORE_ADDR after_prolog_fp; |
1f46923f SC |
214 | struct frame_saved_regs *fsr; |
215 | struct frame_info *fi; | |
216 | { | |
217 | register CORE_ADDR next_ip; | |
218 | int r; | |
1f46923f | 219 | int have_fp = 0; |
1f46923f | 220 | INSN_WORD insn_word; |
d0414a11 DE |
221 | /* Number of things pushed onto stack, starts at 2/4, 'cause the |
222 | PC is already there */ | |
a3059251 | 223 | unsigned int reg_save_depth = h8300hmode ? 4 : 2; |
1f46923f SC |
224 | |
225 | unsigned int auto_depth = 0; /* Number of bytes of autos */ | |
1f46923f | 226 | |
ddf30c37 | 227 | char in_frame[11]; /* One for each reg */ |
1f46923f | 228 | |
ddf30c37 | 229 | memset (in_frame, 1, 11); |
256b4f37 | 230 | for (r = 0; r < 8; r++) |
ec25d19b SC |
231 | { |
232 | fsr->regs[r] = 0; | |
233 | } | |
234 | if (after_prolog_fp == 0) | |
235 | { | |
236 | after_prolog_fp = read_register (SP_REGNUM); | |
237 | } | |
a3059251 | 238 | if (ip == 0 || ip & (h8300hmode ? ~0xffff : ~0xffff)) |
ec25d19b | 239 | return 0; |
1f46923f | 240 | |
ec25d19b | 241 | next_ip = NEXT_PROLOGUE_INSN (ip, limit, &insn_word); |
1f46923f | 242 | |
ec25d19b SC |
243 | /* Skip over any fp push instructions */ |
244 | fsr->regs[6] = after_prolog_fp; | |
245 | while (next_ip && IS_PUSH_FP (insn_word)) | |
246 | { | |
247 | ip = next_ip; | |
1f46923f | 248 | |
ec25d19b SC |
249 | in_frame[insn_word & 0x7] = reg_save_depth; |
250 | next_ip = NEXT_PROLOGUE_INSN (ip, limit, &insn_word); | |
251 | reg_save_depth += 2; | |
252 | } | |
1f46923f SC |
253 | |
254 | /* Is this a move into the fp */ | |
ec25d19b SC |
255 | if (next_ip && IS_MOV_SP_FP (insn_word)) |
256 | { | |
257 | ip = next_ip; | |
258 | next_ip = NEXT_PROLOGUE_INSN (ip, limit, &insn_word); | |
259 | have_fp = 1; | |
260 | } | |
1f46923f SC |
261 | |
262 | /* Skip over any stack adjustment, happens either with a number of | |
263 | sub#2,sp or a mov #x,r5 sub r5,sp */ | |
264 | ||
ec25d19b | 265 | if (next_ip && IS_SUB2_SP (insn_word)) |
1f46923f | 266 | { |
ec25d19b SC |
267 | while (next_ip && IS_SUB2_SP (insn_word)) |
268 | { | |
269 | auto_depth += 2; | |
270 | ip = next_ip; | |
271 | next_ip = NEXT_PROLOGUE_INSN (ip, limit, &insn_word); | |
272 | } | |
1f46923f | 273 | } |
ec25d19b SC |
274 | else |
275 | { | |
276 | if (next_ip && IS_MOVK_R5 (insn_word)) | |
277 | { | |
278 | ip = next_ip; | |
279 | next_ip = NEXT_PROLOGUE_INSN (ip, limit, &insn_word); | |
280 | auto_depth += insn_word; | |
281 | ||
282 | next_ip = NEXT_PROLOGUE_INSN (next_ip, limit, &insn_word); | |
283 | auto_depth += insn_word; | |
ec25d19b SC |
284 | } |
285 | } | |
286 | /* Work out which regs are stored where */ | |
287 | while (next_ip && IS_PUSH (insn_word)) | |
1f46923f SC |
288 | { |
289 | ip = next_ip; | |
ec25d19b SC |
290 | next_ip = NEXT_PROLOGUE_INSN (ip, limit, &insn_word); |
291 | fsr->regs[r] = after_prolog_fp + auto_depth; | |
292 | auto_depth += 2; | |
1f46923f | 293 | } |
1f46923f | 294 | |
1f46923f | 295 | /* The args are always reffed based from the stack pointer */ |
ec25d19b | 296 | fi->args_pointer = after_prolog_fp; |
1f46923f | 297 | /* Locals are always reffed based from the fp */ |
ec25d19b | 298 | fi->locals_pointer = after_prolog_fp; |
1f46923f | 299 | /* The PC is at a known place */ |
df14b38b | 300 | fi->from_pc = read_memory_unsigned_integer (after_prolog_fp + 2, BINWORD); |
1f46923f SC |
301 | |
302 | /* Rememeber any others too */ | |
1f46923f | 303 | in_frame[PC_REGNUM] = 0; |
ec25d19b SC |
304 | |
305 | if (have_fp) | |
306 | /* We keep the old FP in the SP spot */ | |
b1d0b161 | 307 | fsr->regs[SP_REGNUM] = read_memory_unsigned_integer (fsr->regs[6], BINWORD); |
ec25d19b SC |
308 | else |
309 | fsr->regs[SP_REGNUM] = after_prolog_fp + auto_depth; | |
310 | ||
1f46923f SC |
311 | return (ip); |
312 | } | |
313 | ||
314 | void | |
315 | init_extra_frame_info (fromleaf, fi) | |
316 | int fromleaf; | |
317 | struct frame_info *fi; | |
318 | { | |
319 | fi->fsr = 0; /* Not yet allocated */ | |
320 | fi->args_pointer = 0; /* Unknown */ | |
321 | fi->locals_pointer = 0; /* Unknown */ | |
322 | fi->from_pc = 0; | |
1f46923f | 323 | } |
ec25d19b | 324 | |
1f46923f SC |
325 | /* Return the saved PC from this frame. |
326 | ||
327 | If the frame has a memory copy of SRP_REGNUM, use that. If not, | |
328 | just use the register SRP_REGNUM itself. */ | |
329 | ||
330 | CORE_ADDR | |
331 | frame_saved_pc (frame) | |
669caa9c | 332 | struct frame_info *frame; |
1f46923f SC |
333 | { |
334 | return frame->from_pc; | |
335 | } | |
336 | ||
1f46923f SC |
337 | CORE_ADDR |
338 | frame_locals_address (fi) | |
339 | struct frame_info *fi; | |
340 | { | |
ec25d19b SC |
341 | if (!fi->locals_pointer) |
342 | { | |
343 | struct frame_saved_regs ignore; | |
344 | ||
345 | get_frame_saved_regs (fi, &ignore); | |
1f46923f | 346 | |
ec25d19b | 347 | } |
1f46923f SC |
348 | return fi->locals_pointer; |
349 | } | |
350 | ||
351 | /* Return the address of the argument block for the frame | |
352 | described by FI. Returns 0 if the address is unknown. */ | |
353 | ||
354 | CORE_ADDR | |
355 | frame_args_address (fi) | |
356 | struct frame_info *fi; | |
357 | { | |
ec25d19b SC |
358 | if (!fi->args_pointer) |
359 | { | |
360 | struct frame_saved_regs ignore; | |
361 | ||
362 | get_frame_saved_regs (fi, &ignore); | |
363 | ||
364 | } | |
1f46923f | 365 | |
1f46923f SC |
366 | return fi->args_pointer; |
367 | } | |
368 | ||
ec25d19b SC |
369 | void |
370 | h8300_pop_frame () | |
1f46923f SC |
371 | { |
372 | unsigned regnum; | |
373 | struct frame_saved_regs fsr; | |
669caa9c | 374 | struct frame_info *frame = get_current_frame (); |
1f46923f | 375 | |
669caa9c | 376 | get_frame_saved_regs (frame, &fsr); |
ec25d19b | 377 | |
256b4f37 | 378 | for (regnum = 0; regnum < 8; regnum++) |
1f46923f | 379 | { |
6bafbdfb JL |
380 | /* Don't forget SP_REGNUM is a frame_saved_regs struct is the |
381 | actual value we want, not the address of the value we want. */ | |
382 | if (fsr.regs[regnum] && regnum != SP_REGNUM) | |
f9fedc48 | 383 | write_register (regnum, read_memory_integer(fsr.regs[regnum], BINWORD)); |
6bafbdfb JL |
384 | else if (fsr.regs[regnum] && regnum == SP_REGNUM) |
385 | write_register (regnum, fsr.regs[regnum]); | |
1f46923f | 386 | } |
6bafbdfb JL |
387 | |
388 | /* Don't forget the update the PC too! */ | |
389 | write_pc (frame->from_pc); | |
390 | flush_cached_frames (); | |
1f46923f | 391 | } |
ec25d19b | 392 | |
a3059251 SC |
393 | |
394 | struct cmd_list_element *setmemorylist; | |
395 | ||
396 | static void | |
397 | h8300_command(args, from_tty) | |
398 | { | |
399 | extern int h8300hmode; | |
400 | h8300hmode = 0; | |
401 | } | |
402 | ||
403 | static void | |
404 | h8300h_command(args, from_tty) | |
405 | { | |
406 | extern int h8300hmode; | |
407 | h8300hmode = 1; | |
408 | } | |
409 | ||
410 | static void | |
411 | set_machine (args, from_tty) | |
412 | char *args; | |
413 | int from_tty; | |
414 | { | |
199b2450 TL |
415 | printf_unfiltered ("\"set machine\" must be followed by h8300 or h8300h.\n"); |
416 | help_list (setmemorylist, "set memory ", -1, gdb_stdout); | |
a3059251 SC |
417 | } |
418 | ||
f9fedc48 MA |
419 | /* set_machine_hook is called as the exec file is being opened, but |
420 | before the symbol file is opened. This allows us to set the | |
421 | h8300hmode flag based on the machine type specified in the exec | |
422 | file. This in turn will cause subsequently defined pointer types | |
423 | to be 16 or 32 bits as appropriate for the machine. */ | |
424 | ||
425 | static void | |
426 | set_machine_hook (filename) | |
427 | char *filename; | |
428 | { | |
429 | h8300hmode = (bfd_get_mach (exec_bfd) == bfd_mach_h8300h); | |
430 | } | |
431 | ||
a3059251 SC |
432 | void |
433 | _initialize_h8300m () | |
434 | { | |
435 | add_prefix_cmd ("machine", no_class, set_machine, | |
436 | "set the machine type", &setmemorylist, "set machine ", 0, | |
437 | &setlist); | |
438 | ||
439 | add_cmd ("h8300", class_support, h8300_command, | |
440 | "Set machine to be H8/300.", &setmemorylist); | |
441 | ||
442 | add_cmd ("h8300h", class_support, h8300h_command, | |
443 | "Set machine to be H8/300H.", &setmemorylist); | |
f9fedc48 MA |
444 | |
445 | /* Add a hook to set the machine type when we're loading a file. */ | |
446 | ||
447 | specify_exec_file_hook(set_machine_hook); | |
a3059251 SC |
448 | } |
449 | ||
450 | ||
451 | ||
ec25d19b SC |
452 | void |
453 | print_register_hook (regno) | |
454 | { | |
455 | if (regno == 8) | |
456 | { | |
457 | /* CCR register */ | |
ec25d19b | 458 | int C, Z, N, V; |
08c0d7b8 | 459 | unsigned char b[4]; |
ec25d19b | 460 | unsigned char l; |
ec25d19b | 461 | read_relative_register_raw_bytes (regno, b); |
08c0d7b8 | 462 | l = b[REGISTER_VIRTUAL_SIZE(8) -1]; |
199b2450 TL |
463 | printf_unfiltered ("\t"); |
464 | printf_unfiltered ("I-%d - ", (l & 0x80) != 0); | |
465 | printf_unfiltered ("H-%d - ", (l & 0x20) != 0); | |
ec25d19b SC |
466 | N = (l & 0x8) != 0; |
467 | Z = (l & 0x4) != 0; | |
468 | V = (l & 0x2) != 0; | |
469 | C = (l & 0x1) != 0; | |
199b2450 TL |
470 | printf_unfiltered ("N-%d ", N); |
471 | printf_unfiltered ("Z-%d ", Z); | |
472 | printf_unfiltered ("V-%d ", V); | |
473 | printf_unfiltered ("C-%d ", C); | |
ec25d19b | 474 | if ((C | Z) == 0) |
199b2450 | 475 | printf_unfiltered ("u> "); |
ec25d19b | 476 | if ((C | Z) == 1) |
199b2450 | 477 | printf_unfiltered ("u<= "); |
ec25d19b | 478 | if ((C == 0)) |
199b2450 | 479 | printf_unfiltered ("u>= "); |
ec25d19b | 480 | if (C == 1) |
199b2450 | 481 | printf_unfiltered ("u< "); |
ec25d19b | 482 | if (Z == 0) |
199b2450 | 483 | printf_unfiltered ("!= "); |
ec25d19b | 484 | if (Z == 1) |
199b2450 | 485 | printf_unfiltered ("== "); |
ec25d19b | 486 | if ((N ^ V) == 0) |
199b2450 | 487 | printf_unfiltered (">= "); |
ec25d19b | 488 | if ((N ^ V) == 1) |
199b2450 | 489 | printf_unfiltered ("< "); |
ec25d19b | 490 | if ((Z | (N ^ V)) == 0) |
199b2450 | 491 | printf_unfiltered ("> "); |
ec25d19b | 492 | if ((Z | (N ^ V)) == 1) |
199b2450 | 493 | printf_unfiltered ("<= "); |
ec25d19b SC |
494 | } |
495 | } | |
a3059251 | 496 | |
18b46e7c SS |
497 | void |
498 | _initialize_h8300_tdep () | |
499 | { | |
500 | tm_print_insn = gdb_print_insn_h8300; | |
501 | } |