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0c884e17 1/* Target-dependent code for the Sanyo Xstormy16a (LC590000) processor.
f4f9705a 2
213516ef 3 Copyright (C) 2001-2023 Free Software Foundation, Inc.
0c884e17
CV
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
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
0c884e17
CV
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
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
0c884e17
CV
19
20#include "defs.h"
b6fcb393
CV
21#include "frame.h"
22#include "frame-base.h"
23#include "frame-unwind.h"
82ca8957 24#include "dwarf2/frame.h"
b6fcb393
CV
25#include "symtab.h"
26#include "gdbtypes.h"
27#include "gdbcmd.h"
28#include "gdbcore.h"
0c884e17 29#include "value.h"
b6fcb393 30#include "dis-asm.h"
0c884e17 31#include "inferior.h"
0c884e17
CV
32#include "arch-utils.h"
33#include "regcache.h"
b6fcb393 34#include "osabi.h"
0c884e17 35#include "objfiles.h"
268a13a5 36#include "gdbsupport/byte-vector.h"
0c884e17
CV
37
38enum gdb_regnum
39{
40 /* Xstormy16 has 16 general purpose registers (R0-R15) plus PC.
41 Functions will return their values in register R2-R7 as they fit.
42 Otherwise a hidden pointer to an big enough area is given as argument
581e13c1 43 to the function in r2. Further arguments are beginning in r3 then.
0c884e17
CV
44 R13 is used as frame pointer when GCC compiles w/o optimization
45 R14 is used as "PSW", displaying the CPU status.
85102364 46 R15 is used implicitly as stack pointer. */
0c884e17
CV
47 E_R0_REGNUM,
48 E_R1_REGNUM,
49 E_R2_REGNUM, E_1ST_ARG_REGNUM = E_R2_REGNUM, E_PTR_RET_REGNUM = E_R2_REGNUM,
50 E_R3_REGNUM,
51 E_R4_REGNUM,
52 E_R5_REGNUM,
53 E_R6_REGNUM,
54 E_R7_REGNUM, E_LST_ARG_REGNUM = E_R7_REGNUM,
55 E_R8_REGNUM,
56 E_R9_REGNUM,
57 E_R10_REGNUM,
58 E_R11_REGNUM,
59 E_R12_REGNUM,
60 E_R13_REGNUM, E_FP_REGNUM = E_R13_REGNUM,
61 E_R14_REGNUM, E_PSW_REGNUM = E_R14_REGNUM,
62 E_R15_REGNUM, E_SP_REGNUM = E_R15_REGNUM,
63 E_PC_REGNUM,
64 E_NUM_REGS
65};
66
b6fcb393
CV
67/* Use an invalid address value as 'not available' marker. */
68enum { REG_UNAVAIL = (CORE_ADDR) -1 };
69
70struct xstormy16_frame_cache
71{
72 /* Base address. */
73 CORE_ADDR base;
74 CORE_ADDR pc;
75 LONGEST framesize;
76 int uses_fp;
77 CORE_ADDR saved_regs[E_NUM_REGS];
78 CORE_ADDR saved_sp;
79};
80
581e13c1 81/* Size of instructions, registers, etc. */
0c884e17
CV
82enum
83{
84 xstormy16_inst_size = 2,
85 xstormy16_reg_size = 2,
86 xstormy16_pc_size = 4
87};
88
581e13c1 89/* Size of return datatype which fits into the remaining return registers. */
0c884e17
CV
90#define E_MAX_RETTYPE_SIZE(regnum) ((E_LST_ARG_REGNUM - (regnum) + 1) \
91 * xstormy16_reg_size)
92
581e13c1 93/* Size of return datatype which fits into all return registers. */
0c884e17
CV
94enum
95{
96 E_MAX_RETTYPE_SIZE_IN_REGS = E_MAX_RETTYPE_SIZE (E_R2_REGNUM)
97};
98
0c884e17 99/* Function: xstormy16_register_name
b6fcb393 100 Returns the name of the standard Xstormy16 register N. */
0c884e17 101
fa88f677 102static const char *
d93859e2 103xstormy16_register_name (struct gdbarch *gdbarch, int regnum)
0c884e17 104{
a121b7c1 105 static const char *register_names[] = {
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CV
106 "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
107 "r8", "r9", "r10", "r11", "r12", "r13",
108 "psw", "sp", "pc"
109 };
110
69f6730d 111 static_assert (ARRAY_SIZE (register_names) == E_NUM_REGS);
9b9e61c7 112 return register_names[regnum];
0c884e17
CV
113}
114
0c884e17 115static struct type *
b6fcb393 116xstormy16_register_type (struct gdbarch *gdbarch, int regnum)
0c884e17 117{
b6fcb393 118 if (regnum == E_PC_REGNUM)
df4df182 119 return builtin_type (gdbarch)->builtin_uint32;
0c884e17 120 else
df4df182 121 return builtin_type (gdbarch)->builtin_uint16;
0c884e17
CV
122}
123
0c884e17
CV
124/* Function: xstormy16_type_is_scalar
125 Makes the decision if a given type is a scalar types. Scalar
b6fcb393 126 types are returned in the registers r2-r7 as they fit. */
0c884e17
CV
127
128static int
129xstormy16_type_is_scalar (struct type *t)
130{
78134374
SM
131 return (t->code () != TYPE_CODE_STRUCT
132 && t->code () != TYPE_CODE_UNION
133 && t->code () != TYPE_CODE_ARRAY);
0c884e17
CV
134}
135
b6fcb393
CV
136/* Function: xstormy16_use_struct_convention
137 Returns non-zero if the given struct type will be returned using
138 a special convention, rather than the normal function return method.
139 7sed in the contexts of the "return" command, and of
140 target function calls from the debugger. */
141
142static int
143xstormy16_use_struct_convention (struct type *type)
144{
145 return !xstormy16_type_is_scalar (type)
df86565b 146 || type->length () > E_MAX_RETTYPE_SIZE_IN_REGS;
b6fcb393
CV
147}
148
0c884e17 149/* Function: xstormy16_extract_return_value
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CV
150 Find a function's return value in the appropriate registers (in
151 regbuf), and copy it into valbuf. */
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152
153static void
b6fcb393 154xstormy16_extract_return_value (struct type *type, struct regcache *regcache,
948f8e3d 155 gdb_byte *valbuf)
0c884e17 156{
df86565b 157 int len = type->length ();
b6fcb393 158 int i, regnum = E_1ST_ARG_REGNUM;
0c884e17 159
b6fcb393 160 for (i = 0; i < len; i += xstormy16_reg_size)
0b883586 161 regcache->raw_read (regnum++, valbuf + i);
b6fcb393
CV
162}
163
164/* Function: xstormy16_store_return_value
165 Copy the function return value from VALBUF into the
166 proper location for a function return.
167 Called only in the context of the "return" command. */
168
169static void
170xstormy16_store_return_value (struct type *type, struct regcache *regcache,
948f8e3d 171 const gdb_byte *valbuf)
b6fcb393 172{
df86565b 173 if (type->length () == 1)
b6fcb393 174 {
581e13c1 175 /* Add leading zeros to the value. */
e362b510 176 gdb_byte buf[xstormy16_reg_size];
b6fcb393
CV
177 memset (buf, 0, xstormy16_reg_size);
178 memcpy (buf, valbuf, 1);
10eaee5f 179 regcache->raw_write (E_1ST_ARG_REGNUM, buf);
0c884e17
CV
180 }
181 else
182 {
df86565b 183 int len = type->length ();
b6fcb393 184 int i, regnum = E_1ST_ARG_REGNUM;
0c884e17 185
b6fcb393 186 for (i = 0; i < len; i += xstormy16_reg_size)
dda83cd7 187 regcache->raw_write (regnum++, valbuf + i);
0c884e17
CV
188 }
189}
190
b6fcb393 191static enum return_value_convention
6a3a010b 192xstormy16_return_value (struct gdbarch *gdbarch, struct value *function,
c055b101 193 struct type *type, struct regcache *regcache,
05c6a9a1 194 gdb_byte *readbuf, const gdb_byte *writebuf)
b6fcb393
CV
195{
196 if (xstormy16_use_struct_convention (type))
197 return RETURN_VALUE_STRUCT_CONVENTION;
198 if (writebuf)
199 xstormy16_store_return_value (type, regcache, writebuf);
200 else if (readbuf)
201 xstormy16_extract_return_value (type, regcache, readbuf);
202 return RETURN_VALUE_REGISTER_CONVENTION;
203}
204
205static CORE_ADDR
206xstormy16_frame_align (struct gdbarch *gdbarch, CORE_ADDR addr)
207{
208 if (addr & 1)
209 ++addr;
210 return addr;
211}
212
213/* Function: xstormy16_push_dummy_call
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CV
214 Setup the function arguments for GDB to call a function in the inferior.
215 Called only in the context of a target function call from the debugger.
b6fcb393 216 Returns the value of the SP register after the args are pushed. */
0c884e17
CV
217
218static CORE_ADDR
b6fcb393
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219xstormy16_push_dummy_call (struct gdbarch *gdbarch,
220 struct value *function,
221 struct regcache *regcache,
222 CORE_ADDR bp_addr, int nargs,
223 struct value **args,
cf84fa6b
AH
224 CORE_ADDR sp,
225 function_call_return_method return_method,
b6fcb393 226 CORE_ADDR struct_addr)
0c884e17 227{
e17a4113 228 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
0c884e17
CV
229 CORE_ADDR stack_dest = sp;
230 int argreg = E_1ST_ARG_REGNUM;
231 int i, j;
232 int typelen, slacklen;
e362b510 233 gdb_byte buf[xstormy16_pc_size];
0c884e17 234
cf84fa6b
AH
235 /* If returning a struct using target ABI method, then the struct return
236 address will consume one argument-passing register. */
237 if (return_method == return_method_struct)
b6fcb393
CV
238 {
239 regcache_cooked_write_unsigned (regcache, E_PTR_RET_REGNUM, struct_addr);
240 argreg++;
241 }
0c884e17 242
581e13c1 243 /* Arguments are passed in R2-R7 as they fit. If an argument doesn't
0c884e17
CV
244 fit in the remaining registers we're switching over to the stack.
245 No argument is put on stack partially and as soon as we switched
246 over to stack no further argument is put in a register even if it
b6fcb393 247 would fit in the remaining unused registers. */
0c884e17
CV
248 for (i = 0; i < nargs && argreg <= E_LST_ARG_REGNUM; i++)
249 {
463b870d 250 typelen = args[i]->enclosing_type ()->length ();
0c884e17
CV
251 if (typelen > E_MAX_RETTYPE_SIZE (argreg))
252 break;
253
581e13c1 254 /* Put argument into registers wordwise. */
efaf1ae0 255 const gdb_byte *val = args[i]->contents ().data ();
0c884e17 256 for (j = 0; j < typelen; j += xstormy16_reg_size)
1c6e1b0d
PM
257 {
258 ULONGEST regval;
259 int size = (typelen - j == 1) ? 1 : xstormy16_reg_size;
260
261 regval = extract_unsigned_integer (val + j, size, byte_order);
262 regcache_cooked_write_unsigned (regcache, argreg++, regval);
263 }
0c884e17
CV
264 }
265
266 /* Align SP */
b6fcb393 267 stack_dest = xstormy16_frame_align (gdbarch, stack_dest);
0c884e17
CV
268
269 /* Loop backwards through remaining arguments and push them on the stack,
b6fcb393 270 wordaligned. */
0c884e17
CV
271 for (j = nargs - 1; j >= i; j--)
272 {
efaf1ae0 273 const gdb_byte *bytes = args[j]->contents ().data ();
05c6a9a1 274
463b870d 275 typelen = args[j]->enclosing_type ()->length ();
0c884e17 276 slacklen = typelen & 1;
726b2169
TT
277 gdb::byte_vector val (typelen + slacklen);
278 memcpy (val.data (), bytes, typelen);
279 memset (val.data () + typelen, 0, slacklen);
0c884e17 280
581e13c1 281 /* Now write this data to the stack. The stack grows upwards. */
726b2169 282 write_memory (stack_dest, val.data (), typelen + slacklen);
0c884e17
CV
283 stack_dest += typelen + slacklen;
284 }
285
e17a4113 286 store_unsigned_integer (buf, xstormy16_pc_size, byte_order, bp_addr);
b6fcb393
CV
287 write_memory (stack_dest, buf, xstormy16_pc_size);
288 stack_dest += xstormy16_pc_size;
0c884e17 289
b6fcb393
CV
290 /* Update stack pointer. */
291 regcache_cooked_write_unsigned (regcache, E_SP_REGNUM, stack_dest);
0c884e17 292
b6fcb393
CV
293 /* Return the new stack pointer minus the return address slot since
294 that's what DWARF2/GCC uses as the frame's CFA. */
295 return stack_dest - xstormy16_pc_size;
0c884e17
CV
296}
297
298/* Function: xstormy16_scan_prologue
299 Decode the instructions within the given address range.
300 Decide when we must have reached the end of the function prologue.
301 If a frame_info pointer is provided, fill in its saved_regs etc.
302
b6fcb393 303 Returns the address of the first instruction after the prologue. */
0c884e17
CV
304
305static CORE_ADDR
e17a4113
UW
306xstormy16_analyze_prologue (struct gdbarch *gdbarch,
307 CORE_ADDR start_addr, CORE_ADDR end_addr,
b6fcb393 308 struct xstormy16_frame_cache *cache,
bd2b40ac 309 frame_info_ptr this_frame)
0c884e17 310{
e17a4113 311 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
0c884e17
CV
312 CORE_ADDR next_addr;
313 ULONGEST inst, inst2;
314 LONGEST offset;
315 int regnum;
316
581e13c1 317 /* Initialize framesize with size of PC put on stack by CALLF inst. */
b6fcb393
CV
318 cache->saved_regs[E_PC_REGNUM] = 0;
319 cache->framesize = xstormy16_pc_size;
320
321 if (start_addr >= end_addr)
322 return end_addr;
323
0c884e17
CV
324 for (next_addr = start_addr;
325 next_addr < end_addr; next_addr += xstormy16_inst_size)
326 {
e17a4113
UW
327 inst = read_memory_unsigned_integer (next_addr,
328 xstormy16_inst_size, byte_order);
0c884e17 329 inst2 = read_memory_unsigned_integer (next_addr + xstormy16_inst_size,
e17a4113 330 xstormy16_inst_size, byte_order);
0c884e17
CV
331
332 if (inst >= 0x0082 && inst <= 0x008d) /* push r2 .. push r13 */
333 {
b6fcb393
CV
334 regnum = inst & 0x000f;
335 cache->saved_regs[regnum] = cache->framesize;
336 cache->framesize += xstormy16_reg_size;
0c884e17
CV
337 }
338
581e13c1
MS
339 /* Optional stack allocation for args and local vars <= 4 byte. */
340 else if (inst == 0x301f || inst == 0x303f) /* inc r15, #0x1/#0x3 */
0c884e17 341 {
b6fcb393 342 cache->framesize += ((inst & 0x0030) >> 4) + 1;
0c884e17
CV
343 }
344
345 /* optional stack allocation for args and local vars > 4 && < 16 byte */
346 else if ((inst & 0xff0f) == 0x510f) /* 51Hf add r15, #0xH */
347 {
b6fcb393 348 cache->framesize += (inst & 0x00f0) >> 4;
0c884e17
CV
349 }
350
581e13c1
MS
351 /* Optional stack allocation for args and local vars >= 16 byte. */
352 else if (inst == 0x314f && inst2 >= 0x0010) /* 314f HHHH add r15, #0xH */
0c884e17 353 {
b6fcb393 354 cache->framesize += inst2;
0c884e17
CV
355 next_addr += xstormy16_inst_size;
356 }
357
358 else if (inst == 0x46fd) /* mov r13, r15 */
359 {
b6fcb393 360 cache->uses_fp = 1;
0c884e17
CV
361 }
362
581e13c1
MS
363 /* optional copying of args in r2-r7 to r10-r13. */
364 /* Probably only in optimized case but legal action for prologue. */
0c884e17
CV
365 else if ((inst & 0xff00) == 0x4600 /* 46SD mov rD, rS */
366 && (inst & 0x00f0) >= 0x0020 && (inst & 0x00f0) <= 0x0070
3e3286a2 367 && (inst & 0x000f) >= 0x000a && (inst & 0x000f) <= 0x000d)
0c884e17
CV
368 ;
369
581e13c1
MS
370 /* Optional copying of args in r2-r7 to stack. */
371 /* 72DS HHHH mov.b (rD, 0xHHHH), r(S-8)
372 (bit3 always 1, bit2-0 = reg) */
0c884e17
CV
373 /* 73DS HHHH mov.w (rD, 0xHHHH), r(S-8) */
374 else if ((inst & 0xfed8) == 0x72d8 && (inst & 0x0007) >= 2)
375 {
b6fcb393
CV
376 regnum = inst & 0x0007;
377 /* Only 12 of 16 bits of the argument are used for the
581e13c1 378 signed offset. */
b6fcb393
CV
379 offset = (LONGEST) (inst2 & 0x0fff);
380 if (offset & 0x0800)
381 offset -= 0x1000;
382
383 cache->saved_regs[regnum] = cache->framesize + offset;
0c884e17
CV
384 next_addr += xstormy16_inst_size;
385 }
0c884e17 386
581e13c1 387 else /* Not a prologue instruction. */
0c884e17
CV
388 break;
389 }
390
0c884e17
CV
391 return next_addr;
392}
393
394/* Function: xstormy16_skip_prologue
395 If the input address is in a function prologue,
396 returns the address of the end of the prologue;
397 else returns the input address.
398
399 Note: the input address is likely to be the function start,
400 since this function is mainly used for advancing a breakpoint
401 to the first line, or stepping to the first line when we have
402 stepped into a function call. */
403
404static CORE_ADDR
6093d2eb 405xstormy16_skip_prologue (struct gdbarch *gdbarch, CORE_ADDR pc)
0c884e17
CV
406{
407 CORE_ADDR func_addr = 0, func_end = 0;
2c02bd72 408 const char *func_name;
0c884e17
CV
409
410 if (find_pc_partial_function (pc, &func_name, &func_addr, &func_end))
411 {
412 struct symtab_and_line sal;
413 struct symbol *sym;
b6fcb393 414 struct xstormy16_frame_cache cache;
57fdbbbe 415 CORE_ADDR plg_end;
0c884e17 416
28fe5f6a
KB
417 memset (&cache, 0, sizeof cache);
418
581e13c1 419 /* Don't trust line number debug info in frameless functions. */
e17a4113
UW
420 plg_end = xstormy16_analyze_prologue (gdbarch, func_addr, func_end,
421 &cache, NULL);
b6fcb393 422 if (!cache.uses_fp)
dda83cd7 423 return plg_end;
211a4f69 424
0c884e17 425 /* Found a function. */
835a09d9 426 sym = lookup_symbol (func_name, NULL, VAR_DOMAIN, NULL).symbol;
581e13c1 427 /* Don't use line number debug info for assembly source files. */
c1b5c1eb 428 if (sym && sym->language () != language_asm)
0c884e17 429 {
0c884e17
CV
430 sal = find_pc_line (func_addr, 0);
431 if (sal.end && sal.end < func_end)
432 {
433 /* Found a line number, use it as end of prologue. */
434 return sal.end;
435 }
436 }
581e13c1 437 /* No useable line symbol. Use result of prologue parsing method. */
211a4f69 438 return plg_end;
0c884e17
CV
439 }
440
581e13c1 441 /* No function symbol -- just return the PC. */
0c884e17
CV
442
443 return (CORE_ADDR) pc;
444}
445
c9cf6e20
MG
446/* Implement the stack_frame_destroyed_p gdbarch method.
447
448 The epilogue is defined here as the area at the end of a function,
0c884e17 449 either on the `ret' instruction itself or after an instruction which
581e13c1 450 destroys the function's stack frame. */
c9cf6e20 451
0c884e17 452static int
c9cf6e20 453xstormy16_stack_frame_destroyed_p (struct gdbarch *gdbarch, CORE_ADDR pc)
0c884e17 454{
e17a4113 455 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
b6fcb393 456 CORE_ADDR func_addr = 0, func_end = 0;
0c884e17
CV
457
458 if (find_pc_partial_function (pc, NULL, &func_addr, &func_end))
459 {
460 ULONGEST inst, inst2;
461 CORE_ADDR addr = func_end - xstormy16_inst_size;
462
581e13c1 463 /* The Xstormy16 epilogue is max. 14 bytes long. */
0c884e17
CV
464 if (pc < func_end - 7 * xstormy16_inst_size)
465 return 0;
466
467 /* Check if we're on a `ret' instruction. Otherwise it's
dda83cd7 468 too dangerous to proceed. */
e17a4113
UW
469 inst = read_memory_unsigned_integer (addr,
470 xstormy16_inst_size, byte_order);
0c884e17
CV
471 if (inst != 0x0003)
472 return 0;
473
474 while ((addr -= xstormy16_inst_size) >= func_addr)
475 {
e17a4113 476 inst = read_memory_unsigned_integer (addr,
581e13c1
MS
477 xstormy16_inst_size,
478 byte_order);
0c884e17
CV
479 if (inst >= 0x009a && inst <= 0x009d) /* pop r10...r13 */
480 continue;
481 if (inst == 0x305f || inst == 0x307f) /* dec r15, #0x1/#0x3 */
482 break;
483 inst2 = read_memory_unsigned_integer (addr - xstormy16_inst_size,
581e13c1
MS
484 xstormy16_inst_size,
485 byte_order);
486 if (inst2 == 0x314f && inst >= 0x8000) /* add r15, neg. value */
0c884e17
CV
487 {
488 addr -= xstormy16_inst_size;
489 break;
490 }
491 return 0;
492 }
493 if (pc > addr)
494 return 1;
495 }
496 return 0;
497}
498
04180708 499constexpr gdb_byte xstormy16_break_insn[] = { 0x06, 0x0 };
598cc9dc 500
04180708 501typedef BP_MANIPULATION (xstormy16_break_insn) xstormy16_breakpoint;
0c884e17
CV
502
503/* Given a pointer to a jump table entry, return the address
581e13c1 504 of the function it jumps to. Return 0 if not found. */
0c884e17 505static CORE_ADDR
e17a4113 506xstormy16_resolve_jmp_table_entry (struct gdbarch *gdbarch, CORE_ADDR faddr)
0c884e17 507{
e17a4113 508 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
0c884e17
CV
509 struct obj_section *faddr_sect = find_pc_section (faddr);
510
511 if (faddr_sect)
512 {
513 LONGEST inst, inst2, addr;
e362b510 514 gdb_byte buf[2 * xstormy16_inst_size];
0c884e17 515
581e13c1 516 /* Return faddr if it's not pointing into the jump table. */
0c884e17
CV
517 if (strcmp (faddr_sect->the_bfd_section->name, ".plt"))
518 return faddr;
519
520 if (!target_read_memory (faddr, buf, sizeof buf))
521 {
e17a4113
UW
522 inst = extract_unsigned_integer (buf,
523 xstormy16_inst_size, byte_order);
0c884e17 524 inst2 = extract_unsigned_integer (buf + xstormy16_inst_size,
e17a4113 525 xstormy16_inst_size, byte_order);
0c884e17
CV
526 addr = inst2 << 8 | (inst & 0xff);
527 return addr;
528 }
529 }
530 return 0;
531}
532
533/* Given a function's address, attempt to find (and return) the
534 address of the corresponding jump table entry. Return 0 if
581e13c1 535 not found. */
0c884e17 536static CORE_ADDR
e17a4113 537xstormy16_find_jmp_table_entry (struct gdbarch *gdbarch, CORE_ADDR faddr)
0c884e17 538{
e17a4113 539 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
0c884e17
CV
540 struct obj_section *faddr_sect = find_pc_section (faddr);
541
542 if (faddr_sect)
543 {
581e13c1 544 /* Return faddr if it's already a pointer to a jump table entry. */
0c884e17
CV
545 if (!strcmp (faddr_sect->the_bfd_section->name, ".plt"))
546 return faddr;
547
5250cbc8 548 for (obj_section *osect : faddr_sect->objfile->sections ())
0c884e17 549 {
5250cbc8 550 if (!strcmp (osect->the_bfd_section->name, ".plt"))
0c884e17 551 {
5250cbc8
TT
552 CORE_ADDR addr, endaddr;
553
554 addr = osect->addr ();
555 endaddr = osect->endaddr ();
556
557 for (; addr < endaddr; addr += 2 * xstormy16_inst_size)
558 {
559 LONGEST inst, inst2, faddr2;
560 gdb_byte buf[2 * xstormy16_inst_size];
561
562 if (target_read_memory (addr, buf, sizeof buf))
563 return 0;
564 inst = extract_unsigned_integer (buf,
565 xstormy16_inst_size,
566 byte_order);
567 inst2 = extract_unsigned_integer (buf + xstormy16_inst_size,
568 xstormy16_inst_size,
569 byte_order);
570 faddr2 = inst2 << 8 | (inst & 0xff);
571 if (faddr == faddr2)
572 return addr;
573 }
0c884e17 574
5250cbc8 575 break;
0c884e17
CV
576 }
577 }
578 }
579 return 0;
580}
581
582static CORE_ADDR
bd2b40ac 583xstormy16_skip_trampoline_code (frame_info_ptr frame, CORE_ADDR pc)
0c884e17 584{
e17a4113
UW
585 struct gdbarch *gdbarch = get_frame_arch (frame);
586 CORE_ADDR tmp = xstormy16_resolve_jmp_table_entry (gdbarch, pc);
0c884e17
CV
587
588 if (tmp && tmp != pc)
589 return tmp;
590 return 0;
591}
592
b6fcb393
CV
593/* Function pointers are 16 bit. The address space is 24 bit, using
594 32 bit addresses. Pointers to functions on the XStormy16 are implemented
595 by using 16 bit pointers, which are either direct pointers in case the
596 function begins below 0x10000, or indirect pointers into a jump table.
597 The next two functions convert 16 bit pointers into 24 (32) bit addresses
598 and vice versa. */
599
0c884e17 600static CORE_ADDR
9898f801
UW
601xstormy16_pointer_to_address (struct gdbarch *gdbarch,
602 struct type *type, const gdb_byte *buf)
0c884e17 603{
e17a4113 604 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
27710edb 605 enum type_code target = type->target_type ()->code ();
e17a4113 606 CORE_ADDR addr
df86565b 607 = extract_unsigned_integer (buf, type->length (), byte_order);
0c884e17
CV
608
609 if (target == TYPE_CODE_FUNC || target == TYPE_CODE_METHOD)
610 {
e17a4113 611 CORE_ADDR addr2 = xstormy16_resolve_jmp_table_entry (gdbarch, addr);
0c884e17
CV
612 if (addr2)
613 addr = addr2;
614 }
615
616 return addr;
617}
618
619static void
9898f801
UW
620xstormy16_address_to_pointer (struct gdbarch *gdbarch,
621 struct type *type, gdb_byte *buf, CORE_ADDR addr)
0c884e17 622{
e17a4113 623 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
27710edb 624 enum type_code target = type->target_type ()->code ();
0c884e17
CV
625
626 if (target == TYPE_CODE_FUNC || target == TYPE_CODE_METHOD)
627 {
e17a4113 628 CORE_ADDR addr2 = xstormy16_find_jmp_table_entry (gdbarch, addr);
0c884e17
CV
629 if (addr2)
630 addr = addr2;
631 }
df86565b 632 store_unsigned_integer (buf, type->length (), byte_order, addr);
0c884e17
CV
633}
634
b6fcb393
CV
635static struct xstormy16_frame_cache *
636xstormy16_alloc_frame_cache (void)
0c884e17 637{
b6fcb393
CV
638 struct xstormy16_frame_cache *cache;
639 int i;
640
641 cache = FRAME_OBSTACK_ZALLOC (struct xstormy16_frame_cache);
642
643 cache->base = 0;
644 cache->saved_sp = 0;
645 cache->pc = 0;
646 cache->uses_fp = 0;
647 cache->framesize = 0;
648 for (i = 0; i < E_NUM_REGS; ++i)
649 cache->saved_regs[i] = REG_UNAVAIL;
650
651 return cache;
652}
653
654static struct xstormy16_frame_cache *
bd2b40ac 655xstormy16_frame_cache (frame_info_ptr this_frame, void **this_cache)
b6fcb393 656{
e17a4113 657 struct gdbarch *gdbarch = get_frame_arch (this_frame);
b6fcb393
CV
658 struct xstormy16_frame_cache *cache;
659 CORE_ADDR current_pc;
660 int i;
661
662 if (*this_cache)
19ba03f4 663 return (struct xstormy16_frame_cache *) *this_cache;
b6fcb393
CV
664
665 cache = xstormy16_alloc_frame_cache ();
666 *this_cache = cache;
667
94afd7a6 668 cache->base = get_frame_register_unsigned (this_frame, E_FP_REGNUM);
b6fcb393
CV
669 if (cache->base == 0)
670 return cache;
671
94afd7a6
UW
672 cache->pc = get_frame_func (this_frame);
673 current_pc = get_frame_pc (this_frame);
b6fcb393 674 if (cache->pc)
e17a4113
UW
675 xstormy16_analyze_prologue (gdbarch, cache->pc, current_pc,
676 cache, this_frame);
b6fcb393
CV
677
678 if (!cache->uses_fp)
94afd7a6 679 cache->base = get_frame_register_unsigned (this_frame, E_SP_REGNUM);
b6fcb393
CV
680
681 cache->saved_sp = cache->base - cache->framesize;
682
683 for (i = 0; i < E_NUM_REGS; ++i)
684 if (cache->saved_regs[i] != REG_UNAVAIL)
685 cache->saved_regs[i] += cache->saved_sp;
686
687 return cache;
0c884e17
CV
688}
689
94afd7a6 690static struct value *
bd2b40ac 691xstormy16_frame_prev_register (frame_info_ptr this_frame,
94afd7a6 692 void **this_cache, int regnum)
b6fcb393 693{
94afd7a6 694 struct xstormy16_frame_cache *cache = xstormy16_frame_cache (this_frame,
dda83cd7 695 this_cache);
b6fcb393
CV
696 gdb_assert (regnum >= 0);
697
698 if (regnum == E_SP_REGNUM && cache->saved_sp)
94afd7a6 699 return frame_unwind_got_constant (this_frame, regnum, cache->saved_sp);
b6fcb393
CV
700
701 if (regnum < E_NUM_REGS && cache->saved_regs[regnum] != REG_UNAVAIL)
94afd7a6
UW
702 return frame_unwind_got_memory (this_frame, regnum,
703 cache->saved_regs[regnum]);
b6fcb393 704
94afd7a6 705 return frame_unwind_got_register (this_frame, regnum, regnum);
b6fcb393
CV
706}
707
708static void
bd2b40ac 709xstormy16_frame_this_id (frame_info_ptr this_frame, void **this_cache,
b6fcb393
CV
710 struct frame_id *this_id)
711{
94afd7a6 712 struct xstormy16_frame_cache *cache = xstormy16_frame_cache (this_frame,
b6fcb393
CV
713 this_cache);
714
715 /* This marks the outermost frame. */
716 if (cache->base == 0)
717 return;
718
719 *this_id = frame_id_build (cache->saved_sp, cache->pc);
720}
721
722static CORE_ADDR
bd2b40ac 723xstormy16_frame_base_address (frame_info_ptr this_frame, void **this_cache)
b6fcb393 724{
94afd7a6 725 struct xstormy16_frame_cache *cache = xstormy16_frame_cache (this_frame,
b6fcb393
CV
726 this_cache);
727 return cache->base;
728}
729
730static const struct frame_unwind xstormy16_frame_unwind = {
a154d838 731 "xstormy16 prologue",
b6fcb393 732 NORMAL_FRAME,
8fbca658 733 default_frame_unwind_stop_reason,
b6fcb393 734 xstormy16_frame_this_id,
94afd7a6
UW
735 xstormy16_frame_prev_register,
736 NULL,
737 default_frame_sniffer
b6fcb393
CV
738};
739
740static const struct frame_base xstormy16_frame_base = {
741 &xstormy16_frame_unwind,
742 xstormy16_frame_base_address,
743 xstormy16_frame_base_address,
744 xstormy16_frame_base_address
745};
746
0c884e17
CV
747/* Function: xstormy16_gdbarch_init
748 Initializer function for the xstormy16 gdbarch vector.
581e13c1 749 Called by gdbarch. Sets up the gdbarch vector(s) for this target. */
0c884e17
CV
750
751static struct gdbarch *
752xstormy16_gdbarch_init (struct gdbarch_info info, struct gdbarch_list *arches)
753{
0c884e17
CV
754 struct gdbarch *gdbarch;
755
581e13c1 756 /* find a candidate among the list of pre-declared architectures. */
0c884e17
CV
757 arches = gdbarch_list_lookup_by_info (arches, &info);
758 if (arches != NULL)
759 return (arches->gdbarch);
760
b6fcb393 761 gdbarch = gdbarch_alloc (&info, NULL);
a5afb99f 762
0c884e17 763 /*
b6fcb393 764 * Basic register fields and methods, datatype sizes and stuff.
0c884e17
CV
765 */
766
767 set_gdbarch_num_regs (gdbarch, E_NUM_REGS);
768 set_gdbarch_num_pseudo_regs (gdbarch, 0);
769 set_gdbarch_sp_regnum (gdbarch, E_SP_REGNUM);
0c884e17
CV
770 set_gdbarch_pc_regnum (gdbarch, E_PC_REGNUM);
771 set_gdbarch_register_name (gdbarch, xstormy16_register_name);
b6fcb393 772 set_gdbarch_register_type (gdbarch, xstormy16_register_type);
0c884e17 773
71c08af0 774 set_gdbarch_char_signed (gdbarch, 0);
b6fcb393 775 set_gdbarch_short_bit (gdbarch, 2 * TARGET_CHAR_BIT);
0c884e17 776 set_gdbarch_int_bit (gdbarch, 2 * TARGET_CHAR_BIT);
b6fcb393
CV
777 set_gdbarch_long_bit (gdbarch, 4 * TARGET_CHAR_BIT);
778 set_gdbarch_long_long_bit (gdbarch, 8 * TARGET_CHAR_BIT);
779
53375380
PA
780 set_gdbarch_wchar_bit (gdbarch, 2 * TARGET_CHAR_BIT);
781 set_gdbarch_wchar_signed (gdbarch, 1);
782
b6fcb393
CV
783 set_gdbarch_float_bit (gdbarch, 4 * TARGET_CHAR_BIT);
784 set_gdbarch_double_bit (gdbarch, 8 * TARGET_CHAR_BIT);
785 set_gdbarch_long_double_bit (gdbarch, 8 * TARGET_CHAR_BIT);
786
0c884e17
CV
787 set_gdbarch_ptr_bit (gdbarch, 2 * TARGET_CHAR_BIT);
788 set_gdbarch_addr_bit (gdbarch, 4 * TARGET_CHAR_BIT);
8da614df 789 set_gdbarch_dwarf2_addr_size (gdbarch, 4);
0c884e17
CV
790
791 set_gdbarch_address_to_pointer (gdbarch, xstormy16_address_to_pointer);
792 set_gdbarch_pointer_to_address (gdbarch, xstormy16_pointer_to_address);
793
581e13c1 794 /* Stack grows up. */
b6fcb393 795 set_gdbarch_inner_than (gdbarch, core_addr_greaterthan);
0c884e17 796
b6fcb393
CV
797 /*
798 * Frame Info
799 */
b6fcb393
CV
800 set_gdbarch_frame_align (gdbarch, xstormy16_frame_align);
801 frame_base_set_default (gdbarch, &xstormy16_frame_base);
0c884e17 802
b6fcb393 803 set_gdbarch_skip_prologue (gdbarch, xstormy16_skip_prologue);
c9cf6e20
MG
804 set_gdbarch_stack_frame_destroyed_p (gdbarch,
805 xstormy16_stack_frame_destroyed_p);
b6fcb393
CV
806
807 /* These values and methods are used when gdb calls a target function. */
808 set_gdbarch_push_dummy_call (gdbarch, xstormy16_push_dummy_call);
04180708
YQ
809 set_gdbarch_breakpoint_kind_from_pc (gdbarch,
810 xstormy16_breakpoint::kind_from_pc);
811 set_gdbarch_sw_breakpoint_from_kind (gdbarch,
812 xstormy16_breakpoint::bp_from_kind);
b6fcb393
CV
813 set_gdbarch_return_value (gdbarch, xstormy16_return_value);
814
815 set_gdbarch_skip_trampoline_code (gdbarch, xstormy16_skip_trampoline_code);
0c884e17 816
b6fcb393
CV
817 gdbarch_init_osabi (info, gdbarch);
818
94afd7a6
UW
819 dwarf2_append_unwinders (gdbarch);
820 frame_unwind_append_unwinder (gdbarch, &xstormy16_frame_unwind);
b6fcb393 821
0c884e17
CV
822 return gdbarch;
823}
824
825/* Function: _initialize_xstormy16_tdep
826 Initializer function for the Sanyo Xstormy16a module.
581e13c1 827 Called by gdb at start-up. */
0c884e17 828
6c265988 829void _initialize_xstormy16_tdep ();
0c884e17 830void
6c265988 831_initialize_xstormy16_tdep ()
0c884e17 832{
ec29a63c 833 gdbarch_register (bfd_arch_xstormy16, xstormy16_gdbarch_init);
0c884e17 834}