1 /* Target-dependent code for Hitachi H8/500, for GDB.
2 Copyright 1993, 1994, 1995, 1998, 2000, 2001
3 Free Software Foundation, Inc.
5 This file is part of GDB.
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.
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.
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. */
23 Contributed by Steve Chamberlain
38 #define UNSIGNED_SHORT(X) ((X) & 0xffff)
40 static int code_size = 2;
42 static int data_size = 2;
44 /* Shape of an H8/500 frame :
50 return address <2 or 4 bytes>
59 /* an easy to debug H8 stack frame looks like:
63 0x7905 nnnn mov.w #n,r5 or 0x1b87 subs #2,sp
68 #define IS_PUSH(x) (((x) & 0xff00)==0x6d00)
69 #define IS_LINK_8(x) ((x) == 0x17)
70 #define IS_LINK_16(x) ((x) == 0x1f)
71 #define IS_MOVE_FP(x) ((x) == 0x0d76)
72 #define IS_MOV_SP_FP(x) ((x) == 0x0d76)
73 #define IS_SUB2_SP(x) ((x) == 0x1b87)
74 #define IS_MOVK_R5(x) ((x) == 0x7905)
75 #define IS_SUB_R5SP(x) ((x) == 0x1957)
83 h8500_skip_prologue (CORE_ADDR start_pc)
87 w = read_memory_integer (start_pc, 1);
91 w = read_memory_integer (start_pc, 1);
97 w = read_memory_integer (start_pc, 2);
104 h8500_addr_bits_remove (CORE_ADDR addr)
106 return ((addr) & 0xffffff);
109 /* Given a GDB frame, determine the address of the calling function's frame.
110 This will be used to create a new GDB frame struct, and then
111 INIT_EXTRA_FRAME_INFO and INIT_FRAME_PC will be called for the new frame.
113 For us, the frame address is its stack pointer value, so we look up
114 the function prologue to determine the caller's sp value, and return it. */
117 h8500_frame_chain (struct frame_info *thisframe)
119 if (!inside_entry_file (thisframe->pc))
120 return (read_memory_integer (FRAME_FP (thisframe), PTR_SIZE));
125 /* Fetch the instruction at ADDR, returning 0 if ADDR is beyond LIM or
126 is not the address of a valid instruction, the address of the next
127 instruction beyond ADDR otherwise. *PWORD1 receives the first word
128 of the instruction. */
131 NEXT_PROLOGUE_INSN (CORE_ADDR addr, CORE_ADDR lim, char *pword1)
135 read_memory (addr, pword1, 1);
136 read_memory (addr, pword1 + 1, 1);
142 /* Examine the prologue of a function. `ip' points to the first
143 instruction. `limit' is the limit of the prologue (e.g. the addr
144 of the first linenumber, or perhaps the program counter if we're
145 stepping through). `frame_sp' is the stack pointer value in use in
146 this frame. `fsr' is a pointer to a frame_saved_regs structure
147 into which we put info about the registers saved by this frame.
148 `fi' is a struct frame_info pointer; we fill in various fields in
149 it to reflect the offsets of the arg pointer and the locals
152 /* Return the saved PC from this frame. */
155 frame_saved_pc (struct frame_info *frame)
157 return read_memory_integer (FRAME_FP (frame) + 2, PTR_SIZE);
161 h8500_pop_frame (void)
164 struct frame_saved_regs fsr;
165 struct frame_info *frame = get_current_frame ();
167 get_frame_saved_regs (frame, &fsr);
169 for (regnum = 0; regnum < 8; regnum++)
171 if (fsr.regs[regnum])
172 write_register (regnum, read_memory_short (fsr.regs[regnum]));
174 flush_cached_frames ();
179 print_register_hook (int regno)
181 if (regno == CCR_REGNUM)
189 read_relative_register_raw_bytes (regno, b);
191 printf_unfiltered ("\t");
192 printf_unfiltered ("I-%d - ", (l & 0x80) != 0);
197 printf_unfiltered ("N-%d ", N);
198 printf_unfiltered ("Z-%d ", Z);
199 printf_unfiltered ("V-%d ", V);
200 printf_unfiltered ("C-%d ", C);
202 printf_unfiltered ("u> ");
204 printf_unfiltered ("u<= ");
206 printf_unfiltered ("u>= ");
208 printf_unfiltered ("u< ");
210 printf_unfiltered ("!= ");
212 printf_unfiltered ("== ");
214 printf_unfiltered (">= ");
216 printf_unfiltered ("< ");
217 if ((Z | (N ^ V)) == 0)
218 printf_unfiltered ("> ");
219 if ((Z | (N ^ V)) == 1)
220 printf_unfiltered ("<= ");
225 h8500_register_size (int regno)
256 internal_error (__FILE__, __LINE__, "failed internal consistency check");
261 h8500_register_virtual_type (int regno)
269 return builtin_type_unsigned_char;
279 return builtin_type_unsigned_short;
289 return builtin_type_unsigned_long;
291 internal_error (__FILE__, __LINE__, "failed internal consistency check");
295 /* Put here the code to store, into a struct frame_saved_regs,
296 the addresses of the saved registers of frame described by FRAME_INFO.
297 This includes special registers such as pc and fp saved in special
298 ways in the stack frame. sp is even more special:
299 the address we return for it IS the sp for the next frame. */
302 frame_find_saved_regs (struct frame_info *frame_info,
303 struct frame_saved_regs *frame_saved_regs)
306 register int regmask;
307 register CORE_ADDR next_addr;
308 register CORE_ADDR pc;
309 unsigned char thebyte;
311 memset (frame_saved_regs, '\0', sizeof *frame_saved_regs);
313 if ((frame_info)->pc >= (frame_info)->frame - CALL_DUMMY_LENGTH - FP_REGNUM * 4 - 4
314 && (frame_info)->pc <= (frame_info)->frame)
316 next_addr = (frame_info)->frame;
317 pc = (frame_info)->frame - CALL_DUMMY_LENGTH - FP_REGNUM * 4 - 4;
321 pc = get_pc_function_start ((frame_info)->pc);
322 /* Verify we have a link a6 instruction next;
323 if not we lose. If we win, find the address above the saved
324 regs using the amount of storage from the link instruction.
327 thebyte = read_memory_integer (pc, 1);
329 next_addr = (frame_info)->frame + read_memory_integer (pc += 1, 2), pc += 2;
330 else if (0x17 == thebyte)
331 next_addr = (frame_info)->frame + read_memory_integer (pc += 1, 1), pc += 1;
336 /* If have an add:g.waddal #-n, sp next, adjust next_addr. */
337 if ((0x0c0177777 & read_memory_integer (pc, 2)) == 0157774)
338 next_addr += read_memory_integer (pc += 2, 4), pc += 4;
342 thebyte = read_memory_integer (pc, 1);
347 regmask = read_memory_integer (pc, 1);
349 for (regnum = 0; regnum < 8; regnum++, regmask >>= 1)
353 (frame_saved_regs)->regs[regnum] = (next_addr += 2) - 2;
356 thebyte = read_memory_integer (pc, 1);
358 /* Maybe got a load of pushes */
359 while (thebyte == 0xbf)
362 regnum = read_memory_integer (pc, 1) & 0x7;
364 (frame_saved_regs)->regs[regnum] = (next_addr += 2) - 2;
365 thebyte = read_memory_integer (pc, 1);
370 /* Remember the address of the frame pointer */
371 (frame_saved_regs)->regs[FP_REGNUM] = (frame_info)->frame;
373 /* This is where the old sp is hidden */
374 (frame_saved_regs)->regs[SP_REGNUM] = (frame_info)->frame;
376 /* And the PC - remember the pushed FP is always two bytes long */
377 (frame_saved_regs)->regs[PC_REGNUM] = (frame_info)->frame + 2;
381 saved_pc_after_call (void)
384 int a = read_register (SP_REGNUM);
386 x = read_memory_integer (a, code_size);
389 /* Stick current code segement onto top */
391 x |= read_register (SEG_C_REGNUM) << 16;
398 h8500_set_pointer_size (int newsize)
400 static int oldsize = 0;
402 if (oldsize != newsize)
404 printf_unfiltered ("pointer size set to %d bits\n", newsize);
414 _initialize_gdbtypes ();
419 big_command (char *arg, int from_tty)
421 h8500_set_pointer_size (32);
427 medium_command (char *arg, int from_tty)
429 h8500_set_pointer_size (32);
435 compact_command (char *arg, int from_tty)
437 h8500_set_pointer_size (32);
443 small_command (char *arg, int from_tty)
445 h8500_set_pointer_size (16);
450 static struct cmd_list_element *setmemorylist;
453 set_memory (char *args, int from_tty)
455 printf_unfiltered ("\"set memory\" must be followed by the name of a memory subcommand.\n");
456 help_list (setmemorylist, "set memory ", -1, gdb_stdout);
459 /* See if variable name is ppc or pr[0-7] */
462 h8500_is_trapped_internalvar (char *name)
467 if (strcmp (name + 1, "pc") == 0)
473 && name[3] == '\000')
480 h8500_value_of_trapped_internalvar (struct internalvar *var)
483 unsigned char regbuf[4];
484 int page_regnum, regnum;
486 regnum = var->name[2] == 'c' ? PC_REGNUM : var->name[2] - '0';
488 switch (var->name[2])
491 page_regnum = SEG_C_REGNUM;
497 page_regnum = SEG_D_REGNUM;
501 page_regnum = SEG_E_REGNUM;
505 page_regnum = SEG_T_REGNUM;
509 get_saved_register (regbuf, NULL, NULL, selected_frame, page_regnum, NULL);
510 regval = regbuf[0] << 16;
512 get_saved_register (regbuf, NULL, NULL, selected_frame, regnum, NULL);
513 regval |= regbuf[0] << 8 | regbuf[1]; /* XXX host/target byte order */
515 xfree (var->value); /* Free up old value */
517 var->value = value_from_longest (builtin_type_unsigned_long, regval);
518 release_value (var->value); /* Unchain new value */
520 VALUE_LVAL (var->value) = lval_internalvar;
521 VALUE_INTERNALVAR (var->value) = var;
526 h8500_set_trapped_internalvar (struct internalvar *var, value_ptr newval,
527 int bitpos, int bitsize, int offset)
529 char *page_regnum, *regnum;
530 char expression[100];
533 enum type_code newval_type_code;
535 type = check_typedef (VALUE_TYPE (newval));
536 newval_type_code = TYPE_CODE (type);
538 if ((newval_type_code != TYPE_CODE_INT
539 && newval_type_code != TYPE_CODE_PTR)
540 || TYPE_LENGTH (type) != sizeof (new_regval))
541 error ("Illegal type (%s) for assignment to $%s\n",
542 TYPE_NAME (VALUE_TYPE (newval)), var->name);
544 new_regval = *(long *) VALUE_CONTENTS_RAW (newval);
546 regnum = var->name + 1;
548 switch (var->name[2])
569 sprintf (expression, "$%s=%d", page_regnum, new_regval >> 16);
570 parse_and_eval (expression);
572 sprintf (expression, "$%s=%d", regnum, new_regval & 0xffff);
573 parse_and_eval (expression);
579 return read_register (PR7_REGNUM);
583 h8500_write_sp (CORE_ADDR v)
585 write_register (PR7_REGNUM, v);
589 h8500_read_pc (int pid)
591 return read_register (PC_REGNUM);
595 h8500_write_pc (CORE_ADDR v, int pid)
597 write_register (PC_REGNUM, v);
603 return read_register (PR6_REGNUM);
607 h8500_write_fp (CORE_ADDR v)
609 write_register (PR6_REGNUM, v);
613 _initialize_h8500_tdep (void)
615 tm_print_insn = print_insn_h8500;
617 add_prefix_cmd ("memory", no_class, set_memory,
618 "set the memory model", &setmemorylist, "set memory ", 0,
621 add_cmd ("small", class_support, small_command,
622 "Set small memory model. (16 bit code, 16 bit data)", &setmemorylist);
624 add_cmd ("big", class_support, big_command,
625 "Set big memory model. (32 bit code, 32 bit data)", &setmemorylist);
627 add_cmd ("medium", class_support, medium_command,
628 "Set medium memory model. (32 bit code, 16 bit data)", &setmemorylist);
630 add_cmd ("compact", class_support, compact_command,
631 "Set compact memory model. (16 bit code, 32 bit data)", &setmemorylist);