1 /* Target-dependent code for Moxie.
3 Copyright (C) 2009-2018 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 3 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, see <http://www.gnu.org/licenses/>. */
22 #include "frame-unwind.h"
23 #include "frame-base.h"
34 #include "arch-utils.h"
36 #include "trad-frame.h"
39 #include "record-full.h"
41 #include "moxie-tdep.h"
44 /* Use an invalid address value as 'not available' marker. */
45 enum { REG_UNAVAIL
= (CORE_ADDR
) -1 };
47 struct moxie_frame_cache
53 CORE_ADDR saved_regs
[MOXIE_NUM_REGS
];
57 /* Implement the "frame_align" gdbarch method. */
60 moxie_frame_align (struct gdbarch
*gdbarch
, CORE_ADDR sp
)
62 /* Align to the size of an instruction (so that they can safely be
63 pushed onto the stack. */
67 constexpr gdb_byte moxie_break_insn
[] = { 0x35, 0x00 };
69 typedef BP_MANIPULATION (moxie_break_insn
) moxie_breakpoint
;
71 /* Moxie register names. */
73 static const char *moxie_register_names
[] = {
74 "$fp", "$sp", "$r0", "$r1", "$r2",
75 "$r3", "$r4", "$r5", "$r6", "$r7",
76 "$r8", "$r9", "$r10", "$r11", "$r12",
77 "$r13", "$pc", "$cc" };
79 /* Implement the "register_name" gdbarch method. */
82 moxie_register_name (struct gdbarch
*gdbarch
, int reg_nr
)
86 if (reg_nr
>= MOXIE_NUM_REGS
)
88 return moxie_register_names
[reg_nr
];
91 /* Implement the "register_type" gdbarch method. */
94 moxie_register_type (struct gdbarch
*gdbarch
, int reg_nr
)
96 if (reg_nr
== MOXIE_PC_REGNUM
)
97 return builtin_type (gdbarch
)->builtin_func_ptr
;
98 else if (reg_nr
== MOXIE_SP_REGNUM
|| reg_nr
== MOXIE_FP_REGNUM
)
99 return builtin_type (gdbarch
)->builtin_data_ptr
;
101 return builtin_type (gdbarch
)->builtin_int32
;
104 /* Write into appropriate registers a function return value
105 of type TYPE, given in virtual format. */
108 moxie_store_return_value (struct type
*type
, struct regcache
*regcache
,
109 const gdb_byte
*valbuf
)
111 struct gdbarch
*gdbarch
= regcache
->arch ();
112 enum bfd_endian byte_order
= gdbarch_byte_order (gdbarch
);
114 int len
= TYPE_LENGTH (type
);
116 /* Things always get returned in RET1_REGNUM, RET2_REGNUM. */
117 regval
= extract_unsigned_integer (valbuf
, len
> 4 ? 4 : len
, byte_order
);
118 regcache_cooked_write_unsigned (regcache
, RET1_REGNUM
, regval
);
121 regval
= extract_unsigned_integer (valbuf
+ 4, len
- 4, byte_order
);
122 regcache_cooked_write_unsigned (regcache
, RET1_REGNUM
+ 1, regval
);
126 /* Decode the instructions within the given address range. Decide
127 when we must have reached the end of the function prologue. If a
128 frame_info pointer is provided, fill in its saved_regs etc.
130 Returns the address of the first instruction after the prologue. */
133 moxie_analyze_prologue (CORE_ADDR start_addr
, CORE_ADDR end_addr
,
134 struct moxie_frame_cache
*cache
,
135 struct gdbarch
*gdbarch
)
137 enum bfd_endian byte_order
= gdbarch_byte_order (gdbarch
);
139 ULONGEST inst
, inst2
;
143 /* Record where the jsra instruction saves the PC and FP. */
144 cache
->saved_regs
[MOXIE_PC_REGNUM
] = -4;
145 cache
->saved_regs
[MOXIE_FP_REGNUM
] = 0;
146 cache
->framesize
= 0;
148 if (start_addr
>= end_addr
)
151 for (next_addr
= start_addr
; next_addr
< end_addr
; )
153 inst
= read_memory_unsigned_integer (next_addr
, 2, byte_order
);
155 /* Match "push $sp $rN" where N is between 0 and 13 inclusive. */
156 if (inst
>= 0x0612 && inst
<= 0x061f)
158 regnum
= inst
& 0x000f;
159 cache
->framesize
+= 4;
160 cache
->saved_regs
[regnum
] = cache
->framesize
;
167 inst
= read_memory_unsigned_integer (next_addr
, 2, byte_order
);
169 /* Optional stack allocation for args and local vars <= 4
171 if (inst
== 0x01e0) /* ldi.l $r12, X */
173 offset
= read_memory_integer (next_addr
+ 2, 4, byte_order
);
174 inst2
= read_memory_unsigned_integer (next_addr
+ 6, 2, byte_order
);
176 if (inst2
== 0x291e) /* sub.l $sp, $r12 */
178 cache
->framesize
+= offset
;
181 return (next_addr
+ 8);
183 else if ((inst
& 0xff00) == 0x9100) /* dec $sp, X */
185 cache
->framesize
+= (inst
& 0x00ff);
188 while (next_addr
< end_addr
)
190 inst
= read_memory_unsigned_integer (next_addr
, 2, byte_order
);
191 if ((inst
& 0xff00) != 0x9100) /* no more dec $sp, X */
193 cache
->framesize
+= (inst
& 0x00ff);
201 /* Find the end of function prologue. */
204 moxie_skip_prologue (struct gdbarch
*gdbarch
, CORE_ADDR pc
)
206 CORE_ADDR func_addr
= 0, func_end
= 0;
207 const char *func_name
;
209 /* See if we can determine the end of the prologue via the symbol table.
210 If so, then return either PC, or the PC after the prologue, whichever
212 if (find_pc_partial_function (pc
, &func_name
, &func_addr
, &func_end
))
214 CORE_ADDR post_prologue_pc
215 = skip_prologue_using_sal (gdbarch
, func_addr
);
216 if (post_prologue_pc
!= 0)
217 return std::max (pc
, post_prologue_pc
);
220 /* Can't determine prologue from the symbol table, need to examine
222 struct symtab_and_line sal
;
224 struct moxie_frame_cache cache
;
227 memset (&cache
, 0, sizeof cache
);
229 plg_end
= moxie_analyze_prologue (func_addr
,
230 func_end
, &cache
, gdbarch
);
231 /* Found a function. */
232 sym
= lookup_symbol (func_name
, NULL
, VAR_DOMAIN
, NULL
).symbol
;
233 /* Don't use line number debug info for assembly source
235 if (sym
&& SYMBOL_LANGUAGE (sym
) != language_asm
)
237 sal
= find_pc_line (func_addr
, 0);
238 if (sal
.end
&& sal
.end
< func_end
)
240 /* Found a line number, use it as end of
245 /* No useable line symbol. Use result of prologue parsing
251 /* No function symbol -- just return the PC. */
252 return (CORE_ADDR
) pc
;
255 struct moxie_unwind_cache
257 /* The previous frame's inner most stack address. Used as this
258 frame ID's stack_addr. */
260 /* The frame's base, optionally used by the high-level debug info. */
263 /* How far the SP and r13 (FP) have been offset from the start of
264 the stack frame (as defined by the previous frame's stack
269 /* Table indicating the location of each and every register. */
270 struct trad_frame_saved_reg
*saved_regs
;
273 /* Read an unsigned integer from the inferior, and adjust
276 moxie_process_readu (CORE_ADDR addr
, gdb_byte
*buf
,
277 int length
, enum bfd_endian byte_order
)
279 if (target_read_memory (addr
, buf
, length
))
282 printf_unfiltered (_("Process record: error reading memory at "
283 "addr 0x%s len = %d.\n"),
284 paddress (target_gdbarch (), addr
), length
);
288 return extract_unsigned_integer (buf
, length
, byte_order
);
292 /* Helper macro to extract the signed 10-bit offset from a 16-bit
293 branch instruction. */
294 #define INST2OFFSET(o) ((((signed short)((o & ((1<<10)-1))<<6))>>6)<<1)
296 /* Insert a single step breakpoint. */
298 static std::vector
<CORE_ADDR
>
299 moxie_software_single_step (struct regcache
*regcache
)
301 struct gdbarch
*gdbarch
= regcache
->arch ();
307 enum bfd_endian byte_order
= gdbarch_byte_order (gdbarch
);
308 std::vector
<CORE_ADDR
> next_pcs
;
310 addr
= regcache_read_pc (regcache
);
312 inst
= (uint16_t) moxie_process_readu (addr
, buf
, 2, byte_order
);
314 /* Decode instruction. */
315 if (inst
& (1 << 15))
317 if (inst
& (1 << 14))
319 /* This is a Form 3 instruction. */
320 int opcode
= (inst
>> 10 & 0xf);
328 case 0x04: /* bltu */
329 case 0x05: /* bgtu */
332 case 0x08: /* bgeu */
333 case 0x09: /* bleu */
334 /* Insert breaks on both branches, because we can't currently tell
335 which way things will go. */
336 next_pcs
.push_back (addr
+ 2);
337 next_pcs
.push_back (addr
+ 2 + INST2OFFSET(inst
));
348 /* This is a Form 2 instruction. They are all 16 bits. */
349 next_pcs
.push_back (addr
+ 2);
354 /* This is a Form 1 instruction. */
355 int opcode
= inst
>> 8;
359 /* 16-bit instructions. */
361 case 0x02: /* mov (register-to-register) */
362 case 0x05: /* add.l */
363 case 0x06: /* push */
365 case 0x0a: /* ld.l (register indirect) */
366 case 0x0b: /* st.l */
369 case 0x10: /* sex.b */
370 case 0x11: /* sex.s */
371 case 0x12: /* zex.b */
372 case 0x13: /* zex.s */
373 case 0x14: /* umul.x */
374 case 0x15: /* mul.x */
378 case 0x1c: /* ld.b (register indirect) */
379 case 0x1e: /* st.b */
380 case 0x21: /* ld.s (register indirect) */
381 case 0x23: /* st.s */
383 case 0x27: /* lshr */
384 case 0x28: /* ashl */
385 case 0x29: /* sub.l */
389 case 0x2d: /* ashr */
391 case 0x2f: /* mul.l */
392 case 0x31: /* div.l */
393 case 0x32: /* udiv.l */
394 case 0x33: /* mod.l */
395 case 0x34: /* umod.l */
396 next_pcs
.push_back (addr
+ 2);
399 /* 32-bit instructions. */
400 case 0x0c: /* ldo.l */
401 case 0x0d: /* sto.l */
402 case 0x36: /* ldo.b */
403 case 0x37: /* sto.b */
404 case 0x38: /* ldo.s */
405 case 0x39: /* sto.s */
406 next_pcs
.push_back (addr
+ 4);
409 /* 48-bit instructions. */
410 case 0x01: /* ldi.l (immediate) */
411 case 0x08: /* lda.l */
412 case 0x09: /* sta.l */
413 case 0x1b: /* ldi.b (immediate) */
414 case 0x1d: /* lda.b */
415 case 0x1f: /* sta.b */
416 case 0x20: /* ldi.s (immediate) */
417 case 0x22: /* lda.s */
418 case 0x24: /* sta.s */
419 next_pcs
.push_back (addr
+ 6);
422 /* Control flow instructions. */
423 case 0x03: /* jsra */
424 case 0x1a: /* jmpa */
425 next_pcs
.push_back (moxie_process_readu (addr
+ 2, buf
, 4,
430 regcache_cooked_read_unsigned (regcache
, MOXIE_FP_REGNUM
, &fp
);
431 next_pcs
.push_back (moxie_process_readu (fp
+ 4, buf
, 4, byte_order
));
436 regcache_raw_read (regcache
,
437 (inst
>> 4) & 0xf, (gdb_byte
*) & tmpu32
);
438 next_pcs
.push_back (tmpu32
);
443 /* Unsupported, for now. */
451 /* Implement the "unwind_sp" gdbarch method. */
454 moxie_unwind_sp (struct gdbarch
*gdbarch
, struct frame_info
*next_frame
)
456 return frame_unwind_register_unsigned (next_frame
, MOXIE_SP_REGNUM
);
459 /* Given a return value in `regbuf' with a type `valtype',
460 extract and copy its value into `valbuf'. */
463 moxie_extract_return_value (struct type
*type
, struct regcache
*regcache
,
466 struct gdbarch
*gdbarch
= regcache
->arch ();
467 enum bfd_endian byte_order
= gdbarch_byte_order (gdbarch
);
468 int len
= TYPE_LENGTH (type
);
471 /* By using store_unsigned_integer we avoid having to do
472 anything special for small big-endian values. */
473 regcache_cooked_read_unsigned (regcache
, RET1_REGNUM
, &tmp
);
474 store_unsigned_integer (dst
, (len
> 4 ? len
- 4 : len
), byte_order
, tmp
);
476 /* Ignore return values more than 8 bytes in size because the moxie
477 returns anything more than 8 bytes in the stack. */
480 regcache_cooked_read_unsigned (regcache
, RET1_REGNUM
+ 1, &tmp
);
481 store_unsigned_integer (dst
+ len
- 4, 4, byte_order
, tmp
);
485 /* Implement the "return_value" gdbarch method. */
487 static enum return_value_convention
488 moxie_return_value (struct gdbarch
*gdbarch
, struct value
*function
,
489 struct type
*valtype
, struct regcache
*regcache
,
490 gdb_byte
*readbuf
, const gdb_byte
*writebuf
)
492 if (TYPE_LENGTH (valtype
) > 8)
493 return RETURN_VALUE_STRUCT_CONVENTION
;
497 moxie_extract_return_value (valtype
, regcache
, readbuf
);
498 if (writebuf
!= NULL
)
499 moxie_store_return_value (valtype
, regcache
, writebuf
);
500 return RETURN_VALUE_REGISTER_CONVENTION
;
504 /* Allocate and initialize a moxie_frame_cache object. */
506 static struct moxie_frame_cache
*
507 moxie_alloc_frame_cache (void)
509 struct moxie_frame_cache
*cache
;
512 cache
= FRAME_OBSTACK_ZALLOC (struct moxie_frame_cache
);
517 cache
->framesize
= 0;
518 for (i
= 0; i
< MOXIE_NUM_REGS
; ++i
)
519 cache
->saved_regs
[i
] = REG_UNAVAIL
;
524 /* Populate a moxie_frame_cache object for this_frame. */
526 static struct moxie_frame_cache
*
527 moxie_frame_cache (struct frame_info
*this_frame
, void **this_cache
)
529 struct moxie_frame_cache
*cache
;
530 CORE_ADDR current_pc
;
534 return (struct moxie_frame_cache
*) *this_cache
;
536 cache
= moxie_alloc_frame_cache ();
539 cache
->base
= get_frame_register_unsigned (this_frame
, MOXIE_FP_REGNUM
);
540 if (cache
->base
== 0)
543 cache
->pc
= get_frame_func (this_frame
);
544 current_pc
= get_frame_pc (this_frame
);
547 struct gdbarch
*gdbarch
= get_frame_arch (this_frame
);
548 moxie_analyze_prologue (cache
->pc
, current_pc
, cache
, gdbarch
);
551 cache
->saved_sp
= cache
->base
- cache
->framesize
;
553 for (i
= 0; i
< MOXIE_NUM_REGS
; ++i
)
554 if (cache
->saved_regs
[i
] != REG_UNAVAIL
)
555 cache
->saved_regs
[i
] = cache
->base
- cache
->saved_regs
[i
];
560 /* Implement the "unwind_pc" gdbarch method. */
563 moxie_unwind_pc (struct gdbarch
*gdbarch
, struct frame_info
*next_frame
)
565 return frame_unwind_register_unsigned (next_frame
, MOXIE_PC_REGNUM
);
568 /* Given a GDB frame, determine the address of the calling function's
569 frame. This will be used to create a new GDB frame struct. */
572 moxie_frame_this_id (struct frame_info
*this_frame
,
573 void **this_prologue_cache
, struct frame_id
*this_id
)
575 struct moxie_frame_cache
*cache
= moxie_frame_cache (this_frame
,
576 this_prologue_cache
);
578 /* This marks the outermost frame. */
579 if (cache
->base
== 0)
582 *this_id
= frame_id_build (cache
->saved_sp
, cache
->pc
);
585 /* Get the value of register regnum in the previous stack frame. */
587 static struct value
*
588 moxie_frame_prev_register (struct frame_info
*this_frame
,
589 void **this_prologue_cache
, int regnum
)
591 struct moxie_frame_cache
*cache
= moxie_frame_cache (this_frame
,
592 this_prologue_cache
);
594 gdb_assert (regnum
>= 0);
596 if (regnum
== MOXIE_SP_REGNUM
&& cache
->saved_sp
)
597 return frame_unwind_got_constant (this_frame
, regnum
, cache
->saved_sp
);
599 if (regnum
< MOXIE_NUM_REGS
&& cache
->saved_regs
[regnum
] != REG_UNAVAIL
)
600 return frame_unwind_got_memory (this_frame
, regnum
,
601 cache
->saved_regs
[regnum
]);
603 return frame_unwind_got_register (this_frame
, regnum
, regnum
);
606 static const struct frame_unwind moxie_frame_unwind
= {
608 default_frame_unwind_stop_reason
,
610 moxie_frame_prev_register
,
612 default_frame_sniffer
615 /* Return the base address of this_frame. */
618 moxie_frame_base_address (struct frame_info
*this_frame
, void **this_cache
)
620 struct moxie_frame_cache
*cache
= moxie_frame_cache (this_frame
,
626 static const struct frame_base moxie_frame_base
= {
628 moxie_frame_base_address
,
629 moxie_frame_base_address
,
630 moxie_frame_base_address
633 static struct frame_id
634 moxie_dummy_id (struct gdbarch
*gdbarch
, struct frame_info
*this_frame
)
636 CORE_ADDR sp
= get_frame_register_unsigned (this_frame
, MOXIE_SP_REGNUM
);
638 return frame_id_build (sp
, get_frame_pc (this_frame
));
641 /* Parse the current instruction and record the values of the registers and
642 memory that will be changed in current instruction to "record_arch_list".
643 Return -1 if something wrong. */
646 moxie_process_record (struct gdbarch
*gdbarch
, struct regcache
*regcache
,
652 enum bfd_endian byte_order
= gdbarch_byte_order (gdbarch
);
654 if (record_debug
> 1)
655 fprintf_unfiltered (gdb_stdlog
, "Process record: moxie_process_record "
657 paddress (target_gdbarch (), addr
));
659 inst
= (uint16_t) moxie_process_readu (addr
, buf
, 2, byte_order
);
661 /* Decode instruction. */
662 if (inst
& (1 << 15))
664 if (inst
& (1 << 14))
666 /* This is a Form 3 instruction. */
667 int opcode
= (inst
>> 10 & 0xf);
675 case 0x04: /* bltu */
676 case 0x05: /* bgtu */
679 case 0x08: /* bgeu */
680 case 0x09: /* bleu */
692 /* This is a Form 2 instruction. */
693 int opcode
= (inst
>> 12 & 0x3);
700 int reg
= (inst
>> 8) & 0xf;
701 if (record_full_arch_list_add_reg (regcache
, reg
))
707 /* Do nothing until GDB learns about moxie's special
719 /* This is a Form 1 instruction. */
720 int opcode
= inst
>> 8;
727 case 0x01: /* ldi.l (immediate) */
728 case 0x02: /* mov (register-to-register) */
730 int reg
= (inst
>> 4) & 0xf;
731 if (record_full_arch_list_add_reg (regcache
, reg
))
735 case 0x03: /* jsra */
737 regcache_raw_read (regcache
,
738 MOXIE_SP_REGNUM
, (gdb_byte
*) & tmpu32
);
739 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
741 if (record_full_arch_list_add_reg (regcache
, MOXIE_FP_REGNUM
)
742 || (record_full_arch_list_add_reg (regcache
,
744 || record_full_arch_list_add_mem (tmpu32
- 12, 12))
750 if (record_full_arch_list_add_reg (regcache
, MOXIE_FP_REGNUM
)
751 || (record_full_arch_list_add_reg (regcache
,
756 case 0x05: /* add.l */
758 int reg
= (inst
>> 4) & 0xf;
759 if (record_full_arch_list_add_reg (regcache
, reg
))
763 case 0x06: /* push */
765 int reg
= (inst
>> 4) & 0xf;
766 regcache_raw_read (regcache
, reg
, (gdb_byte
*) & tmpu32
);
767 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
769 if (record_full_arch_list_add_reg (regcache
, reg
)
770 || record_full_arch_list_add_mem (tmpu32
- 4, 4))
776 int a
= (inst
>> 4) & 0xf;
778 if (record_full_arch_list_add_reg (regcache
, a
)
779 || record_full_arch_list_add_reg (regcache
, b
))
783 case 0x08: /* lda.l */
785 int reg
= (inst
>> 4) & 0xf;
786 if (record_full_arch_list_add_reg (regcache
, reg
))
790 case 0x09: /* sta.l */
792 tmpu32
= (uint32_t) moxie_process_readu (addr
+2, buf
,
794 if (record_full_arch_list_add_mem (tmpu32
, 4))
798 case 0x0a: /* ld.l (register indirect) */
800 int reg
= (inst
>> 4) & 0xf;
801 if (record_full_arch_list_add_reg (regcache
, reg
))
805 case 0x0b: /* st.l */
807 int reg
= (inst
>> 4) & 0xf;
808 regcache_raw_read (regcache
, reg
, (gdb_byte
*) & tmpu32
);
809 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
811 if (record_full_arch_list_add_mem (tmpu32
, 4))
815 case 0x0c: /* ldo.l */
817 int reg
= (inst
>> 4) & 0xf;
818 if (record_full_arch_list_add_reg (regcache
, reg
))
822 case 0x0d: /* sto.l */
824 int reg
= (inst
>> 4) & 0xf;
825 uint32_t offset
= (((int16_t) moxie_process_readu (addr
+2, buf
, 2,
826 byte_order
)) << 16 ) >> 16;
827 regcache_raw_read (regcache
, reg
, (gdb_byte
*) & tmpu32
);
828 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
831 if (record_full_arch_list_add_mem (tmpu32
, 4))
837 if (record_full_arch_list_add_reg (regcache
, MOXIE_CC_REGNUM
))
846 case 0x10: /* sex.b */
847 case 0x11: /* sex.s */
848 case 0x12: /* zex.b */
849 case 0x13: /* zex.s */
850 case 0x14: /* umul.x */
851 case 0x15: /* mul.x */
853 int reg
= (inst
>> 4) & 0xf;
854 if (record_full_arch_list_add_reg (regcache
, reg
))
867 regcache_raw_read (regcache
,
868 MOXIE_SP_REGNUM
, (gdb_byte
*) & tmpu32
);
869 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
871 if (record_full_arch_list_add_reg (regcache
, MOXIE_FP_REGNUM
)
872 || (record_full_arch_list_add_reg (regcache
,
874 || record_full_arch_list_add_mem (tmpu32
- 12, 12))
878 case 0x1a: /* jmpa */
883 case 0x1b: /* ldi.b (immediate) */
884 case 0x1c: /* ld.b (register indirect) */
885 case 0x1d: /* lda.b */
887 int reg
= (inst
>> 4) & 0xf;
888 if (record_full_arch_list_add_reg (regcache
, reg
))
892 case 0x1e: /* st.b */
894 int reg
= (inst
>> 4) & 0xf;
895 regcache_raw_read (regcache
, reg
, (gdb_byte
*) & tmpu32
);
896 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
898 if (record_full_arch_list_add_mem (tmpu32
, 1))
902 case 0x1f: /* sta.b */
904 tmpu32
= moxie_process_readu (addr
+2, buf
, 4, byte_order
);
905 if (record_full_arch_list_add_mem (tmpu32
, 1))
909 case 0x20: /* ldi.s (immediate) */
910 case 0x21: /* ld.s (register indirect) */
911 case 0x22: /* lda.s */
913 int reg
= (inst
>> 4) & 0xf;
914 if (record_full_arch_list_add_reg (regcache
, reg
))
918 case 0x23: /* st.s */
920 int reg
= (inst
>> 4) & 0xf;
921 regcache_raw_read (regcache
, reg
, (gdb_byte
*) & tmpu32
);
922 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
924 if (record_full_arch_list_add_mem (tmpu32
, 2))
928 case 0x24: /* sta.s */
930 tmpu32
= moxie_process_readu (addr
+2, buf
, 4, byte_order
);
931 if (record_full_arch_list_add_mem (tmpu32
, 2))
941 case 0x27: /* lshr */
942 case 0x28: /* ashl */
947 case 0x2d: /* ashr */
951 int reg
= (inst
>> 4) & 0xf;
952 if (record_full_arch_list_add_reg (regcache
, reg
))
958 /* We currently implement support for libgloss'
961 int inum
= moxie_process_readu (addr
+2, buf
, 4, byte_order
);
965 case 0x1: /* SYS_exit */
970 case 0x2: /* SYS_open */
972 if (record_full_arch_list_add_reg (regcache
, RET1_REGNUM
))
976 case 0x4: /* SYS_read */
978 uint32_t length
, ptr
;
980 /* Read buffer pointer is in $r1. */
981 regcache_raw_read (regcache
, 3, (gdb_byte
*) & ptr
);
982 ptr
= extract_unsigned_integer ((gdb_byte
*) & ptr
,
985 /* String length is at 0x12($fp). */
986 regcache_raw_read (regcache
,
987 MOXIE_FP_REGNUM
, (gdb_byte
*) & tmpu32
);
988 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
990 length
= moxie_process_readu (tmpu32
+20, buf
, 4, byte_order
);
992 if (record_full_arch_list_add_mem (ptr
, length
))
996 case 0x5: /* SYS_write */
998 if (record_full_arch_list_add_reg (regcache
, RET1_REGNUM
))
1007 case 0x31: /* div.l */
1008 case 0x32: /* udiv.l */
1009 case 0x33: /* mod.l */
1010 case 0x34: /* umod.l */
1012 int reg
= (inst
>> 4) & 0xf;
1013 if (record_full_arch_list_add_reg (regcache
, reg
))
1017 case 0x35: /* brk */
1020 case 0x36: /* ldo.b */
1022 int reg
= (inst
>> 4) & 0xf;
1023 if (record_full_arch_list_add_reg (regcache
, reg
))
1027 case 0x37: /* sto.b */
1029 int reg
= (inst
>> 4) & 0xf;
1030 uint32_t offset
= (((int16_t) moxie_process_readu (addr
+2, buf
, 2,
1031 byte_order
)) << 16 ) >> 16;
1032 regcache_raw_read (regcache
, reg
, (gdb_byte
*) & tmpu32
);
1033 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
1036 if (record_full_arch_list_add_mem (tmpu32
, 1))
1040 case 0x38: /* ldo.s */
1042 int reg
= (inst
>> 4) & 0xf;
1043 if (record_full_arch_list_add_reg (regcache
, reg
))
1047 case 0x39: /* sto.s */
1049 int reg
= (inst
>> 4) & 0xf;
1050 uint32_t offset
= (((int16_t) moxie_process_readu (addr
+2, buf
, 2,
1051 byte_order
)) << 16 ) >> 16;
1052 regcache_raw_read (regcache
, reg
, (gdb_byte
*) & tmpu32
);
1053 tmpu32
= extract_unsigned_integer ((gdb_byte
*) & tmpu32
,
1056 if (record_full_arch_list_add_mem (tmpu32
, 2))
1066 if (record_full_arch_list_add_reg (regcache
, MOXIE_PC_REGNUM
))
1068 if (record_full_arch_list_add_end ())
1073 /* Allocate and initialize the moxie gdbarch object. */
1075 static struct gdbarch
*
1076 moxie_gdbarch_init (struct gdbarch_info info
, struct gdbarch_list
*arches
)
1078 struct gdbarch
*gdbarch
;
1079 struct gdbarch_tdep
*tdep
;
1081 /* If there is already a candidate, use it. */
1082 arches
= gdbarch_list_lookup_by_info (arches
, &info
);
1084 return arches
->gdbarch
;
1086 /* Allocate space for the new architecture. */
1087 tdep
= XCNEW (struct gdbarch_tdep
);
1088 gdbarch
= gdbarch_alloc (&info
, tdep
);
1090 set_gdbarch_wchar_bit (gdbarch
, 32);
1091 set_gdbarch_wchar_signed (gdbarch
, 0);
1093 set_gdbarch_unwind_sp (gdbarch
, moxie_unwind_sp
);
1095 set_gdbarch_num_regs (gdbarch
, MOXIE_NUM_REGS
);
1096 set_gdbarch_sp_regnum (gdbarch
, MOXIE_SP_REGNUM
);
1097 set_gdbarch_pc_regnum (gdbarch
, MOXIE_PC_REGNUM
);
1098 set_gdbarch_register_name (gdbarch
, moxie_register_name
);
1099 set_gdbarch_register_type (gdbarch
, moxie_register_type
);
1101 set_gdbarch_return_value (gdbarch
, moxie_return_value
);
1103 set_gdbarch_skip_prologue (gdbarch
, moxie_skip_prologue
);
1104 set_gdbarch_inner_than (gdbarch
, core_addr_lessthan
);
1105 set_gdbarch_breakpoint_kind_from_pc (gdbarch
,
1106 moxie_breakpoint::kind_from_pc
);
1107 set_gdbarch_sw_breakpoint_from_kind (gdbarch
,
1108 moxie_breakpoint::bp_from_kind
);
1109 set_gdbarch_frame_align (gdbarch
, moxie_frame_align
);
1111 frame_base_set_default (gdbarch
, &moxie_frame_base
);
1113 /* Methods for saving / extracting a dummy frame's ID. The ID's
1114 stack address must match the SP value returned by
1115 PUSH_DUMMY_CALL, and saved by generic_save_dummy_frame_tos. */
1116 set_gdbarch_dummy_id (gdbarch
, moxie_dummy_id
);
1118 set_gdbarch_unwind_pc (gdbarch
, moxie_unwind_pc
);
1120 /* Hook in ABI-specific overrides, if they have been registered. */
1121 gdbarch_init_osabi (info
, gdbarch
);
1123 /* Hook in the default unwinders. */
1124 frame_unwind_append_unwinder (gdbarch
, &moxie_frame_unwind
);
1126 /* Single stepping. */
1127 set_gdbarch_software_single_step (gdbarch
, moxie_software_single_step
);
1129 /* Support simple overlay manager. */
1130 set_gdbarch_overlay_update (gdbarch
, simple_overlay_update
);
1132 /* Support reverse debugging. */
1133 set_gdbarch_process_record (gdbarch
, moxie_process_record
);
1138 /* Register this machine's init routine. */
1141 _initialize_moxie_tdep (void)
1143 register_gdbarch_init (bfd_arch_moxie
, moxie_gdbarch_init
);