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[pf3gnuchains/gcc-fork.git] / gcc / config / avr / avr.h
1 /* Definitions of target machine for GNU compiler,
2    for ATMEL AVR at90s8515, ATmega103/103L, ATmega603/603L microcontrollers.
3    Copyright (C) 1998, 1999, 2000, 2001, 2002, 2003, 2004
4    Free Software Foundation, Inc.
5    Contributed by Denis Chertykov (denisc@overta.ru)
6
7 This file is part of GCC.
8
9 GCC is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2, or (at your option)
12 any later version.
13
14 GCC is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with GCC; see the file COPYING.  If not, write to
21 the Free Software Foundation, 59 Temple Place - Suite 330,
22 Boston, MA 02111-1307, USA.  */
23
24 /* Names to predefine in the preprocessor for this target machine.  */
25
26 #define TARGET_CPU_CPP_BUILTINS()               \
27   do                                            \
28     {                                           \
29       builtin_define_std ("AVR");               \
30       if (avr_base_arch_macro)                  \
31         builtin_define (avr_base_arch_macro);   \
32       if (avr_extra_arch_macro)                 \
33         builtin_define (avr_extra_arch_macro);  \
34       if (avr_asm_only_p)                       \
35         builtin_define ("__AVR_ASM_ONLY__");    \
36       if (avr_enhanced_p)                       \
37         builtin_define ("__AVR_ENHANCED__");    \
38       if (avr_mega_p)                           \
39         builtin_define ("__AVR_MEGA__");        \
40       if (TARGET_NO_INTERRUPTS)                 \
41         builtin_define ("__NO_INTERRUPTS__");   \
42     }                                           \
43   while (0)
44
45 /* This declaration should be present.  */
46 extern int target_flags;
47
48 #define MASK_ALL_DEBUG          0x00000FE0
49 #define MASK_ORDER_1            0x00001000
50 #define MASK_INSN_SIZE_DUMP     0x00002000
51 #define MASK_ORDER_2            0x00004000
52 #define MASK_NO_TABLEJUMP       0x00008000
53 #define MASK_INT8               0x00010000
54 #define MASK_NO_INTERRUPTS      0x00020000
55 #define MASK_CALL_PROLOGUES     0x00040000
56 #define MASK_TINY_STACK         0x00080000
57 #define MASK_SHORT_CALLS        0x00100000
58
59 #define TARGET_ORDER_1          (target_flags & MASK_ORDER_1)
60 #define TARGET_ORDER_2          (target_flags & MASK_ORDER_2)
61 #define TARGET_INT8             (target_flags & MASK_INT8)
62 #define TARGET_NO_INTERRUPTS    (target_flags & MASK_NO_INTERRUPTS)
63 #define TARGET_INSN_SIZE_DUMP   (target_flags & MASK_INSN_SIZE_DUMP)
64 #define TARGET_CALL_PROLOGUES   (target_flags & MASK_CALL_PROLOGUES)
65 #define TARGET_TINY_STACK       (target_flags & MASK_TINY_STACK)
66 #define TARGET_NO_TABLEJUMP     (target_flags & MASK_NO_TABLEJUMP)
67 #define TARGET_SHORT_CALLS      (target_flags & MASK_SHORT_CALLS)
68 #define TARGET_ALL_DEBUG        (target_flags & MASK_ALL_DEBUG)
69
70 #define TARGET_SWITCHES {                                               \
71   { "order1", MASK_ORDER_1, NULL },                                     \
72   { "order2", MASK_ORDER_2, NULL },                                     \
73   { "int8", MASK_INT8, N_("Assume int to be 8 bit integer") },          \
74   { "no-interrupts", MASK_NO_INTERRUPTS,                                \
75     N_("Change the stack pointer without disabling interrupts") },      \
76   { "call-prologues", MASK_CALL_PROLOGUES,                              \
77     N_("Use subroutines for function prologue/epilogue") },             \
78   { "tiny-stack", MASK_TINY_STACK,                                      \
79     N_("Change only the low 8 bits of the stack pointer") },            \
80   { "no-tablejump", MASK_NO_TABLEJUMP,                                  \
81     N_("Do not generate tablejump insns") },                            \
82   { "short-calls", MASK_SHORT_CALLS,                                    \
83     N_("Use rjmp/rcall (limited range) on >8K devices") },              \
84   { "size", MASK_INSN_SIZE_DUMP,                                        \
85     N_("Output instruction sizes to the asm file") },                   \
86   { "deb", MASK_ALL_DEBUG, NULL },                                      \
87   { "", 0, NULL } }
88
89 extern const char *avr_init_stack;
90 extern const char *avr_mcu_name;
91
92 extern const char *avr_base_arch_macro;
93 extern const char *avr_extra_arch_macro;
94 extern int avr_mega_p;
95 extern int avr_enhanced_p;
96 extern int avr_asm_only_p;
97
98 #define AVR_MEGA (avr_mega_p && !TARGET_SHORT_CALLS)
99 #define AVR_ENHANCED (avr_enhanced_p)
100
101 #define TARGET_OPTIONS {                                                      \
102  { "init-stack=", &avr_init_stack, N_("Specify the initial stack address"), 0}, \
103  { "mcu=", &avr_mcu_name, N_("Specify the MCU name"), 0} }
104
105 #define TARGET_VERSION fprintf (stderr, " (GNU assembler syntax)");
106
107 #define OVERRIDE_OPTIONS avr_override_options ()
108
109 #define CAN_DEBUG_WITHOUT_FP
110
111 #define BITS_BIG_ENDIAN 0
112 #define BYTES_BIG_ENDIAN 0
113 #define WORDS_BIG_ENDIAN 0
114
115 #ifdef IN_LIBGCC2
116 /* This is to get correct SI and DI modes in libgcc2.c (32 and 64 bits).  */
117 #define UNITS_PER_WORD 4
118 #else
119 /* Width of a word, in units (bytes).  */
120 #define UNITS_PER_WORD 1
121 #endif
122
123 #define POINTER_SIZE 16
124
125
126 /* Maximum sized of reasonable data type
127    DImode or Dfmode ...  */
128 #define MAX_FIXED_MODE_SIZE 32
129
130 #define PARM_BOUNDARY 8
131
132 #define FUNCTION_BOUNDARY 8
133
134 #define EMPTY_FIELD_BOUNDARY 8
135
136 /* No data type wants to be aligned rounder than this.  */
137 #define BIGGEST_ALIGNMENT 8
138
139
140 #define STRICT_ALIGNMENT 0
141
142 #define INT_TYPE_SIZE (TARGET_INT8 ? 8 : 16)
143 #define SHORT_TYPE_SIZE (INT_TYPE_SIZE == 8 ? INT_TYPE_SIZE : 16)
144 #define LONG_TYPE_SIZE (INT_TYPE_SIZE == 8 ? 16 : 32)
145 #define LONG_LONG_TYPE_SIZE 64
146 #define FLOAT_TYPE_SIZE 32
147 #define DOUBLE_TYPE_SIZE 32
148 #define LONG_DOUBLE_TYPE_SIZE 32
149
150 #define DEFAULT_SIGNED_CHAR 1
151
152 #define SIZE_TYPE (INT_TYPE_SIZE == 8 ? "long unsigned int" : "unsigned int")
153 #define PTRDIFF_TYPE (INT_TYPE_SIZE == 8 ? "long int" :"int")
154
155 #define WCHAR_TYPE_SIZE 16
156
157 #define FIRST_PSEUDO_REGISTER 36
158
159 #define FIXED_REGISTERS {\
160   1,1,/* r0 r1 */\
161   0,0,/* r2 r3 */\
162   0,0,/* r4 r5 */\
163   0,0,/* r6 r7 */\
164   0,0,/* r8 r9 */\
165   0,0,/* r10 r11 */\
166   0,0,/* r12 r13 */\
167   0,0,/* r14 r15 */\
168   0,0,/* r16 r17 */\
169   0,0,/* r18 r19 */\
170   0,0,/* r20 r21 */\
171   0,0,/* r22 r23 */\
172   0,0,/* r24 r25 */\
173   0,0,/* r26 r27 */\
174   0,0,/* r28 r29 */\
175   0,0,/* r30 r31 */\
176   1,1,/*  STACK */\
177   1,1 /* arg pointer */  }
178
179 #define CALL_USED_REGISTERS {                   \
180   1,1,/* r0 r1 */                               \
181     0,0,/* r2 r3 */                             \
182     0,0,/* r4 r5 */                             \
183     0,0,/* r6 r7 */                             \
184     0,0,/* r8 r9 */                             \
185     0,0,/* r10 r11 */                           \
186     0,0,/* r12 r13 */                           \
187     0,0,/* r14 r15 */                           \
188     0,0,/* r16 r17 */                           \
189     1,1,/* r18 r19 */                           \
190     1,1,/* r20 r21 */                           \
191     1,1,/* r22 r23 */                           \
192     1,1,/* r24 r25 */                           \
193     1,1,/* r26 r27 */                           \
194     0,0,/* r28 r29 */                           \
195     1,1,/* r30 r31 */                           \
196     1,1,/*  STACK */                            \
197     1,1 /* arg pointer */  }
198
199 #define NON_SAVING_SETJMP 0
200
201 #define REG_ALLOC_ORDER {                       \
202     24,25,                                      \
203     18,19,                                      \
204     20,21,                                      \
205     22,23,                                      \
206     30,31,                                      \
207     26,27,                                      \
208     28,29,                                      \
209     17,16,15,14,13,12,11,10,9,8,7,6,5,4,3,2,    \
210     0,1,                                        \
211     32,33,34,35                                 \
212     }
213
214 #define ORDER_REGS_FOR_LOCAL_ALLOC order_regs_for_local_alloc ()
215
216
217 #define HARD_REGNO_NREGS(REGNO, MODE) ((GET_MODE_SIZE (MODE) + UNITS_PER_WORD - 1) / UNITS_PER_WORD)
218
219 #define HARD_REGNO_MODE_OK(REGNO, MODE) avr_hard_regno_mode_ok(REGNO, MODE)
220
221 #define MODES_TIEABLE_P(MODE1, MODE2) 0
222
223 enum reg_class {
224   NO_REGS,
225   R0_REG,                       /* r0 */
226   POINTER_X_REGS,               /* r26 - r27 */
227   POINTER_Y_REGS,               /* r28 - r29 */
228   POINTER_Z_REGS,               /* r30 - r31 */
229   STACK_REG,                    /* STACK */
230   BASE_POINTER_REGS,            /* r28 - r31 */
231   POINTER_REGS,                 /* r26 - r31 */
232   ADDW_REGS,                    /* r24 - r31 */
233   SIMPLE_LD_REGS,               /* r16 - r23 */
234   LD_REGS,                      /* r16 - r31 */
235   NO_LD_REGS,                   /* r0 - r15 */
236   GENERAL_REGS,                 /* r0 - r31 */
237   ALL_REGS, LIM_REG_CLASSES
238 };
239
240
241 #define N_REG_CLASSES (int)LIM_REG_CLASSES
242
243 #define REG_CLASS_NAMES {                                       \
244                  "NO_REGS",                                     \
245                    "R0_REG",    /* r0 */                        \
246                    "POINTER_X_REGS", /* r26 - r27 */            \
247                    "POINTER_Y_REGS", /* r28 - r29 */            \
248                    "POINTER_Z_REGS", /* r30 - r31 */            \
249                    "STACK_REG", /* STACK */                     \
250                    "BASE_POINTER_REGS", /* r28 - r31 */         \
251                    "POINTER_REGS", /* r26 - r31 */              \
252                    "ADDW_REGS", /* r24 - r31 */                 \
253                    "SIMPLE_LD_REGS", /* r16 - r23 */            \
254                    "LD_REGS",   /* r16 - r31 */                 \
255                    "NO_LD_REGS", /* r0 - r15 */                 \
256                    "GENERAL_REGS", /* r0 - r31 */               \
257                    "ALL_REGS" }
258
259 #define REG_X 26
260 #define REG_Y 28
261 #define REG_Z 30
262 #define REG_W 24
263
264 #define REG_CLASS_CONTENTS {                                            \
265   {0x00000000,0x00000000},      /* NO_REGS */                           \
266   {0x00000001,0x00000000},      /* R0_REG */                            \
267   {3 << REG_X,0x00000000},      /* POINTER_X_REGS, r26 - r27 */         \
268   {3 << REG_Y,0x00000000},      /* POINTER_Y_REGS, r28 - r29 */         \
269   {3 << REG_Z,0x00000000},      /* POINTER_Z_REGS, r30 - r31 */         \
270   {0x00000000,0x00000003},      /* STACK_REG, STACK */                  \
271   {(3 << REG_Y) | (3 << REG_Z),                                         \
272      0x00000000},               /* BASE_POINTER_REGS, r28 - r31 */      \
273   {(3 << REG_X) | (3 << REG_Y) | (3 << REG_Z),                          \
274      0x00000000},               /* POINTER_REGS, r26 - r31 */           \
275   {(3 << REG_X) | (3 << REG_Y) | (3 << REG_Z) | (3 << REG_W),           \
276      0x00000000},               /* ADDW_REGS, r24 - r31 */              \
277   {0x00ff0000,0x00000000},      /* SIMPLE_LD_REGS r16 - r23 */          \
278   {(3 << REG_X)|(3 << REG_Y)|(3 << REG_Z)|(3 << REG_W)|(0xff << 16),    \
279      0x00000000},       /* LD_REGS, r16 - r31 */                        \
280   {0x0000ffff,0x00000000},      /* NO_LD_REGS  r0 - r15 */              \
281   {0xffffffff,0x00000000},      /* GENERAL_REGS, r0 - r31 */            \
282   {0xffffffff,0x00000003}       /* ALL_REGS */                          \
283 }
284
285 #define REGNO_REG_CLASS(R) avr_regno_reg_class(R)
286
287 #define BASE_REG_CLASS (reload_completed ? BASE_POINTER_REGS : POINTER_REGS)
288
289 #define INDEX_REG_CLASS NO_REGS
290
291 #define REG_CLASS_FROM_LETTER(C) avr_reg_class_from_letter(C)
292
293 #define REGNO_OK_FOR_BASE_P(r) (((r) < FIRST_PSEUDO_REGISTER            \
294                                  && ((r) == REG_X                       \
295                                      || (r) == REG_Y                    \
296                                      || (r) == REG_Z                    \
297                                      || (r) == ARG_POINTER_REGNUM))     \
298                                 || (reg_renumber                        \
299                                     && (reg_renumber[r] == REG_X        \
300                                         || reg_renumber[r] == REG_Y     \
301                                         || reg_renumber[r] == REG_Z     \
302                                         || (reg_renumber[r]             \
303                                             == ARG_POINTER_REGNUM))))
304
305 #define REGNO_OK_FOR_INDEX_P(NUM) 0
306
307 #define PREFERRED_RELOAD_CLASS(X, CLASS) preferred_reload_class(X,CLASS)
308
309 #define SMALL_REGISTER_CLASSES 1
310
311 #define CLASS_LIKELY_SPILLED_P(c) class_likely_spilled_p(c)
312
313 #define CLASS_MAX_NREGS(CLASS, MODE)   class_max_nregs (CLASS, MODE)
314
315 #define CONST_OK_FOR_LETTER_P(VALUE, C)                         \
316   ((C) == 'I' ? (VALUE) >= 0 && (VALUE) <= 63 :                 \
317    (C) == 'J' ? (VALUE) <= 0 && (VALUE) >= -63:                 \
318    (C) == 'K' ? (VALUE) == 2 :                                  \
319    (C) == 'L' ? (VALUE) == 0 :                                  \
320    (C) == 'M' ? (VALUE) >= 0 && (VALUE) <= 0xff :               \
321    (C) == 'N' ? (VALUE) == -1:                                  \
322    (C) == 'O' ? (VALUE) == 8 || (VALUE) == 16 || (VALUE) == 24: \
323    (C) == 'P' ? (VALUE) == 1 :                                  \
324    0)
325
326 #define CONST_DOUBLE_OK_FOR_LETTER_P(VALUE, C) \
327   ((C) == 'G' ? (VALUE) == CONST0_RTX (SFmode)  \
328    : 0)
329
330 #define EXTRA_CONSTRAINT(x, c) extra_constraint(x, c)
331
332 #define STACK_PUSH_CODE POST_DEC
333
334 #define STACK_GROWS_DOWNWARD
335
336 #define STARTING_FRAME_OFFSET 1
337
338 #define STACK_POINTER_OFFSET 1
339
340 #define FIRST_PARM_OFFSET(FUNDECL) 0
341
342 #define STACK_BOUNDARY 8
343
344 #define STACK_POINTER_REGNUM 32
345
346 #define FRAME_POINTER_REGNUM REG_Y
347
348 #define ARG_POINTER_REGNUM 34
349
350 #define STATIC_CHAIN_REGNUM 2
351
352 #define FRAME_POINTER_REQUIRED frame_pointer_required_p()
353
354 #define ELIMINABLE_REGS {                                       \
355       {ARG_POINTER_REGNUM, FRAME_POINTER_REGNUM},               \
356         {FRAME_POINTER_REGNUM, STACK_POINTER_REGNUM}            \
357        ,{FRAME_POINTER_REGNUM+1,STACK_POINTER_REGNUM+1}}
358
359 #define CAN_ELIMINATE(FROM, TO) (((FROM) == ARG_POINTER_REGNUM             \
360                                   && (TO) == FRAME_POINTER_REGNUM)         \
361                                  || (((FROM) == FRAME_POINTER_REGNUM       \
362                                       || (FROM) == FRAME_POINTER_REGNUM+1) \
363                                      && ! FRAME_POINTER_REQUIRED           \
364                                      ))
365
366 #define INITIAL_ELIMINATION_OFFSET(FROM, TO, OFFSET)                    \
367      OFFSET = initial_elimination_offset (FROM, TO)
368
369 #define RETURN_ADDR_RTX(count, x) \
370   gen_rtx_MEM (Pmode, memory_address (Pmode, plus_constant (tem, 1)))
371
372 #define PUSH_ROUNDING(NPUSHED) (NPUSHED)
373
374 #define RETURN_POPS_ARGS(FUNDECL, FUNTYPE, STACK_SIZE) 0
375
376 #define FUNCTION_ARG(CUM, MODE, TYPE, NAMED) (function_arg (&(CUM), MODE, TYPE, NAMED))
377
378 typedef struct avr_args {
379   int nregs;                    /* # registers available for passing */
380   int regno;                    /* next available register number */
381 } CUMULATIVE_ARGS;
382
383 #define INIT_CUMULATIVE_ARGS(CUM, FNTYPE, LIBNAME, FNDECL, N_NAMED_ARGS) \
384   init_cumulative_args (&(CUM), FNTYPE, LIBNAME, FNDECL)
385
386 #define FUNCTION_ARG_ADVANCE(CUM, MODE, TYPE, NAMED)    \
387   (function_arg_advance (&CUM, MODE, TYPE, NAMED))
388
389 #define FUNCTION_ARG_REGNO_P(r) function_arg_regno_p(r)
390
391 extern int avr_reg_order[];
392
393 #define RET_REGISTER avr_ret_register ()
394
395 #define FUNCTION_VALUE(VALTYPE, FUNC) avr_function_value (VALTYPE, FUNC)
396
397 #define LIBCALL_VALUE(MODE)  avr_libcall_value (MODE)
398
399 #define FUNCTION_VALUE_REGNO_P(N) ((int) (N) == RET_REGISTER)
400
401 #define DEFAULT_PCC_STRUCT_RETURN 0
402
403 #define EPILOGUE_USES(REGNO) 0
404
405 #define HAVE_POST_INCREMENT 1
406 #define HAVE_PRE_DECREMENT 1
407
408 #define CONSTANT_ADDRESS_P(X) CONSTANT_P (X)
409
410 #define MAX_REGS_PER_ADDRESS 1
411
412 #ifdef REG_OK_STRICT
413 #  define GO_IF_LEGITIMATE_ADDRESS(mode, operand, ADDR) \
414 {                                                       \
415   if (legitimate_address_p (mode, operand, 1))          \
416     goto ADDR;                                          \
417 }
418 #  else
419 #  define GO_IF_LEGITIMATE_ADDRESS(mode, operand, ADDR) \
420 {                                                       \
421   if (legitimate_address_p (mode, operand, 0))          \
422     goto ADDR;                                          \
423 }
424 #endif
425
426 #define REG_OK_FOR_BASE_NOSTRICT_P(X) \
427   (REGNO (X) >= FIRST_PSEUDO_REGISTER || REG_OK_FOR_BASE_STRICT_P(X))
428
429 #define REG_OK_FOR_BASE_STRICT_P(X) REGNO_OK_FOR_BASE_P (REGNO (X))
430
431 #ifdef REG_OK_STRICT
432 #  define REG_OK_FOR_BASE_P(X) REG_OK_FOR_BASE_STRICT_P (X)
433 #else
434 #  define REG_OK_FOR_BASE_P(X) REG_OK_FOR_BASE_NOSTRICT_P (X)
435 #endif
436
437 #define REG_OK_FOR_INDEX_P(X) 0
438
439 #define LEGITIMIZE_ADDRESS(X, OLDX, MODE, WIN)                          \
440 {                                                                       \
441   (X) = legitimize_address (X, OLDX, MODE);                             \
442   if (memory_address_p (MODE, X))                                       \
443     goto WIN;                                                           \
444 }
445
446 #define XEXP_(X,Y) (X)
447 #define LEGITIMIZE_RELOAD_ADDRESS(X, MODE, OPNUM, TYPE, IND_LEVELS, WIN)    \
448 do {                                                                        \
449   if (1&&(GET_CODE (X) == POST_INC || GET_CODE (X) == PRE_DEC))     \
450     {                                                                       \
451       push_reload (XEXP (X,0), XEXP (X,0), &XEXP (X,0), &XEXP (X,0),        \
452                    POINTER_REGS, GET_MODE (X),GET_MODE (X) , 0, 0,          \
453                    OPNUM, RELOAD_OTHER);                                    \
454       goto WIN;                                                             \
455     }                                                                       \
456   if (GET_CODE (X) == PLUS                                                  \
457       && REG_P (XEXP (X, 0))                                                \
458       && GET_CODE (XEXP (X, 1)) == CONST_INT                                \
459       && INTVAL (XEXP (X, 1)) >= 1)                                         \
460     {                                                                       \
461       int fit = INTVAL (XEXP (X, 1)) <= (64 - GET_MODE_SIZE (MODE));        \
462       if (fit)                                                              \
463         {                                                                   \
464           if (reg_equiv_address[REGNO (XEXP (X, 0))] != 0)                  \
465             {                                                               \
466               int regno = REGNO (XEXP (X, 0));                              \
467               rtx mem = make_memloc (X, regno);                             \
468               push_reload (XEXP (mem,0), NULL, &XEXP (mem,0), NULL,         \
469                            POINTER_REGS, Pmode, VOIDmode, 0, 0,             \
470                            1, ADDR_TYPE (TYPE));                            \
471               push_reload (mem, NULL_RTX, &XEXP (X, 0), NULL,               \
472                            BASE_POINTER_REGS, GET_MODE (X), VOIDmode, 0, 0, \
473                            OPNUM, TYPE);                                    \
474               goto WIN;                                                     \
475             }                                                               \
476           push_reload (XEXP (X, 0), NULL_RTX, &XEXP (X, 0), NULL,           \
477                        BASE_POINTER_REGS, GET_MODE (X), VOIDmode, 0, 0,     \
478                        OPNUM, TYPE);                                        \
479           goto WIN;                                                         \
480         }                                                                   \
481       else if (! (frame_pointer_needed && XEXP (X,0) == frame_pointer_rtx)) \
482         {                                                                   \
483           push_reload (X, NULL_RTX, &X, NULL,                               \
484                        POINTER_REGS, GET_MODE (X), VOIDmode, 0, 0,          \
485                        OPNUM, TYPE);                                        \
486           goto WIN;                                                         \
487         }                                                                   \
488     }                                                                       \
489 } while(0)
490
491 #define GO_IF_MODE_DEPENDENT_ADDRESS(ADDR,LABEL)                        \
492       if (GET_CODE (ADDR) == POST_INC || GET_CODE (ADDR) == PRE_DEC)    \
493         goto LABEL
494
495 #define LEGITIMATE_CONSTANT_P(X) 1
496
497 #define REGISTER_MOVE_COST(MODE, FROM, TO) ((FROM) == STACK_REG ? 6 \
498                                             : (TO) == STACK_REG ? 12 \
499                                             : 2)
500
501 #define MEMORY_MOVE_COST(MODE,CLASS,IN) ((MODE)==QImode ? 2 :   \
502                                          (MODE)==HImode ? 4 :   \
503                                          (MODE)==SImode ? 8 :   \
504                                          (MODE)==SFmode ? 8 : 16)
505
506 #define BRANCH_COST 0
507
508 #define SLOW_BYTE_ACCESS 0
509
510 #define NO_FUNCTION_CSE
511
512 #define TEXT_SECTION_ASM_OP "\t.text"
513
514 #define DATA_SECTION_ASM_OP "\t.data"
515
516 #define BSS_SECTION_ASM_OP "\t.section .bss"
517
518 /* Define the pseudo-ops used to switch to the .ctors and .dtors sections.
519    There are no shared libraries on this target, and these sections are
520    placed in the read-only program memory, so they are not writable.  */
521
522 #undef CTORS_SECTION_ASM_OP
523 #define CTORS_SECTION_ASM_OP "\t.section .ctors,\"a\",@progbits"
524
525 #undef DTORS_SECTION_ASM_OP
526 #define DTORS_SECTION_ASM_OP "\t.section .dtors,\"a\",@progbits"
527
528 #define TARGET_ASM_CONSTRUCTOR avr_asm_out_ctor
529
530 #define TARGET_ASM_DESTRUCTOR avr_asm_out_dtor
531
532 #define EXTRA_SECTIONS in_progmem
533
534 #define EXTRA_SECTION_FUNCTIONS                                               \
535                                                                               \
536 void                                                                          \
537 progmem_section (void)                                                        \
538 {                                                                             \
539   if (in_section != in_progmem)                                               \
540     {                                                                         \
541       fprintf (asm_out_file,                                                  \
542                "\t.section .progmem.gcc_sw_table, \"%s\", @progbits\n",       \
543                AVR_MEGA ? "a" : "ax");                                        \
544       /* Should already be aligned, this is just to be safe if it isn't.  */  \
545       fprintf (asm_out_file, "\t.p2align 1\n");                               \
546       in_section = in_progmem;                                                \
547     }                                                                         \
548 }
549
550 #define READONLY_DATA_SECTION data_section
551
552 #define JUMP_TABLES_IN_TEXT_SECTION 0
553
554 #define ASM_COMMENT_START " ; "
555
556 #define ASM_APP_ON "/* #APP */\n"
557
558 #define ASM_APP_OFF "/* #NOAPP */\n"
559
560 #define ASM_OUTPUT_SOURCE_LINE(STREAM, LINE, COUNTER) \
561   fprintf (STREAM,"/* line: %d */\n",LINE)
562
563 /* Switch into a generic section.  */
564 #define TARGET_ASM_NAMED_SECTION default_elf_asm_named_section
565
566 #define ASM_OUTPUT_ASCII(FILE, P, SIZE)  gas_output_ascii (FILE,P,SIZE)
567
568 #define IS_ASM_LOGICAL_LINE_SEPARATOR(C) ((C) == '\n'                    \
569                                           || ((C) == '$'))
570
571 #define ASM_OUTPUT_COMMON(STREAM, NAME, SIZE, ROUNDED)                     \
572 do {                                                                       \
573      fputs ("\t.comm ", (STREAM));                                         \
574      assemble_name ((STREAM), (NAME));                                     \
575      fprintf ((STREAM), ",%lu,1\n", (unsigned long)(SIZE));                \
576 } while (0)
577
578 #define ASM_OUTPUT_BSS(FILE, DECL, NAME, SIZE, ROUNDED)                 \
579   asm_output_bss ((FILE), (DECL), (NAME), (SIZE), (ROUNDED))
580
581 #define ASM_OUTPUT_LOCAL(STREAM, NAME, SIZE, ROUNDED)                   \
582 do {                                                                    \
583      fputs ("\t.lcomm ", (STREAM));                                     \
584      assemble_name ((STREAM), (NAME));                                  \
585      fprintf ((STREAM), ",%d\n", (int)(SIZE));                          \
586 } while (0)
587
588 #undef TYPE_ASM_OP
589 #undef SIZE_ASM_OP
590 #undef WEAK_ASM_OP
591 #define TYPE_ASM_OP     "\t.type\t"
592 #define SIZE_ASM_OP     "\t.size\t"
593 #define WEAK_ASM_OP     "\t.weak\t"
594 /* Define the strings used for the special svr4 .type and .size directives.
595    These strings generally do not vary from one system running svr4 to
596    another, but if a given system (e.g. m88k running svr) needs to use
597    different pseudo-op names for these, they may be overridden in the
598    file which includes this one.  */
599
600
601 #undef TYPE_OPERAND_FMT
602 #define TYPE_OPERAND_FMT        "@%s"
603 /* The following macro defines the format used to output the second
604    operand of the .type assembler directive.  Different svr4 assemblers
605    expect various different forms for this operand.  The one given here
606    is just a default.  You may need to override it in your machine-
607    specific tm.h file (depending upon the particulars of your assembler).  */
608
609 #define ASM_DECLARE_FUNCTION_NAME(FILE, NAME, DECL)             \
610 do {                                                            \
611      ASM_OUTPUT_TYPE_DIRECTIVE (FILE, NAME, "function");        \
612      ASM_OUTPUT_LABEL (FILE, NAME);                             \
613 } while (0)
614
615 #define ASM_DECLARE_FUNCTION_SIZE(FILE, FNAME, DECL)                    \
616   do {                                                                  \
617     if (!flag_inhibit_size_directive)                                   \
618       ASM_OUTPUT_MEASURED_SIZE (FILE, FNAME);                           \
619   } while (0)
620
621 #define ASM_DECLARE_OBJECT_NAME(FILE, NAME, DECL)                       \
622 do {                                                                    \
623   ASM_OUTPUT_TYPE_DIRECTIVE (FILE, NAME, "object");                     \
624   size_directive_output = 0;                                            \
625   if (!flag_inhibit_size_directive && DECL_SIZE (DECL))                 \
626     {                                                                   \
627       size_directive_output = 1;                                        \
628       ASM_OUTPUT_SIZE_DIRECTIVE (FILE, NAME,                            \
629                                  int_size_in_bytes (TREE_TYPE (DECL))); \
630     }                                                                   \
631   ASM_OUTPUT_LABEL(FILE, NAME);                                         \
632 } while (0)
633
634 #undef ASM_FINISH_DECLARE_OBJECT
635 #define ASM_FINISH_DECLARE_OBJECT(FILE, DECL, TOP_LEVEL, AT_END)         \
636 do {                                                                     \
637      const char *name = XSTR (XEXP (DECL_RTL (DECL), 0), 0);             \
638      HOST_WIDE_INT size;                                                 \
639      if (!flag_inhibit_size_directive && DECL_SIZE (DECL)                \
640          && ! AT_END && TOP_LEVEL                                        \
641          && DECL_INITIAL (DECL) == error_mark_node                       \
642          && !size_directive_output)                                      \
643        {                                                                 \
644          size_directive_output = 1;                                      \
645          size = int_size_in_bytes (TREE_TYPE (DECL));                    \
646          ASM_OUTPUT_SIZE_DIRECTIVE (FILE, name, size);                   \
647        }                                                                 \
648    } while (0)
649
650
651 #define ESCAPES \
652 "\1\1\1\1\1\1\1\1btn\1fr\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\
653 \0\0\"\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\
654 \0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\\\0\0\0\
655 \0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\1\
656 \1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\
657 \1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\
658 \1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\
659 \1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1\1"
660 /* A table of bytes codes used by the ASM_OUTPUT_ASCII and
661    ASM_OUTPUT_LIMITED_STRING macros.  Each byte in the table
662    corresponds to a particular byte value [0..255].  For any
663    given byte value, if the value in the corresponding table
664    position is zero, the given character can be output directly.
665    If the table value is 1, the byte must be output as a \ooo
666    octal escape.  If the tables value is anything else, then the
667    byte value should be output as a \ followed by the value
668    in the table.  Note that we can use standard UN*X escape
669    sequences for many control characters, but we don't use
670    \a to represent BEL because some svr4 assemblers (e.g. on
671    the i386) don't know about that.  Also, we don't use \v
672    since some versions of gas, such as 2.2 did not accept it.  */
673
674 #define STRING_LIMIT    ((unsigned) 64)
675 #define STRING_ASM_OP   "\t.string\t"
676 /* Some svr4 assemblers have a limit on the number of characters which
677    can appear in the operand of a .string directive.  If your assembler
678    has such a limitation, you should define STRING_LIMIT to reflect that
679    limit.  Note that at least some svr4 assemblers have a limit on the
680    actual number of bytes in the double-quoted string, and that they
681    count each character in an escape sequence as one byte.  Thus, an
682    escape sequence like \377 would count as four bytes.
683
684    If your target assembler doesn't support the .string directive, you
685    should define this to zero.  */
686
687 /* Globalizing directive for a label.  */
688 #define GLOBAL_ASM_OP ".global\t"
689
690 #define ASM_WEAKEN_LABEL(FILE, NAME)    \
691   do                                    \
692     {                                   \
693       fputs ("\t.weak\t", (FILE));      \
694       assemble_name ((FILE), (NAME));   \
695       fputc ('\n', (FILE));             \
696     }                                   \
697   while (0)
698
699 #define SUPPORTS_WEAK 1
700
701 #define ASM_GENERATE_INTERNAL_LABEL(STRING, PREFIX, NUM)        \
702 sprintf (STRING, "*.%s%lu", PREFIX, (unsigned long)(NUM))
703
704 #define HAS_INIT_SECTION 1
705
706 #define REGISTER_NAMES {                                \
707   "r0","r1","r2","r3","r4","r5","r6","r7",              \
708     "r8","r9","r10","r11","r12","r13","r14","r15",      \
709     "r16","r17","r18","r19","r20","r21","r22","r23",    \
710     "r24","r25","r26","r27","r28","r29","r30","r31",    \
711     "__SPL__","__SPH__","argL","argH"}
712
713 #define FINAL_PRESCAN_INSN(insn, operand, nop) final_prescan_insn (insn, operand,nop)
714
715 #define PRINT_OPERAND(STREAM, X, CODE) print_operand (STREAM, X, CODE)
716
717 #define PRINT_OPERAND_PUNCT_VALID_P(CODE) ((CODE) == '~')
718
719 #define PRINT_OPERAND_ADDRESS(STREAM, X) print_operand_address(STREAM, X)
720
721 #define USER_LABEL_PREFIX ""
722
723 #define ASSEMBLER_DIALECT AVR_ENHANCED
724
725 #define ASM_OUTPUT_REG_PUSH(STREAM, REGNO)      \
726 {                                               \
727   if (REGNO > 31)                               \
728     abort ();                                   \
729   fprintf (STREAM, "\tpush\tr%d", REGNO);       \
730 }
731
732 #define ASM_OUTPUT_REG_POP(STREAM, REGNO)       \
733 {                                               \
734   if (REGNO > 31)                               \
735     abort ();                                   \
736   fprintf (STREAM, "\tpop\tr%d", REGNO);        \
737 }
738
739 #define ASM_OUTPUT_ADDR_VEC_ELT(STREAM, VALUE)          \
740   avr_output_addr_vec_elt(STREAM, VALUE)
741
742 #define ASM_OUTPUT_CASE_LABEL(STREAM, PREFIX, NUM, TABLE) \
743   progmem_section (), (*targetm.asm_out.internal_label) (STREAM, PREFIX, NUM)
744
745 #define ASM_OUTPUT_SKIP(STREAM, N)              \
746 fprintf (STREAM, "\t.skip %lu,0\n", (unsigned long)(N))
747
748 #define ASM_OUTPUT_ALIGN(STREAM, POWER)
749
750 #define CASE_VECTOR_MODE HImode
751
752 extern int avr_case_values_threshold;
753
754 #define CASE_VALUES_THRESHOLD avr_case_values_threshold
755
756 #undef WORD_REGISTER_OPERATIONS
757
758 #define MOVE_MAX 4
759
760 #define TRULY_NOOP_TRUNCATION(OUTPREC, INPREC) 1
761
762 #define Pmode HImode
763
764 #define FUNCTION_MODE HImode
765
766 #define DOLLARS_IN_IDENTIFIERS 0
767
768 #define NO_DOLLAR_IN_LABEL 1
769
770 #define TRAMPOLINE_TEMPLATE(FILE) \
771   internal_error ("trampolines not supported")
772
773 #define TRAMPOLINE_SIZE 4
774
775 #define INITIALIZE_TRAMPOLINE(TRAMP, FNADDR, CXT)                             \
776 {                                                                             \
777   emit_move_insn (gen_rtx_MEM (HImode, plus_constant ((TRAMP), 2)), CXT);    \
778   emit_move_insn (gen_rtx_MEM (HImode, plus_constant ((TRAMP), 6)), FNADDR); \
779 }
780 /* Store in cc_status the expressions
781    that the condition codes will describe
782    after execution of an instruction whose pattern is EXP.
783    Do not alter them if the instruction would not alter the cc's.  */
784
785 #define NOTICE_UPDATE_CC(EXP, INSN) notice_update_cc(EXP, INSN)
786
787 /* The add insns don't set overflow in a usable way.  */
788 #define CC_OVERFLOW_UNUSABLE 01000
789 /* The mov,and,or,xor insns don't set carry.  That's ok though as the
790    Z bit is all we need when doing unsigned comparisons on the result of
791    these insns (since they're always with 0).  However, conditions.h has
792    CC_NO_OVERFLOW defined for this purpose.  Rename it to something more
793    understandable.  */
794 #define CC_NO_CARRY CC_NO_OVERFLOW
795
796
797 /* Output assembler code to FILE to increment profiler label # LABELNO
798    for profiling a function entry.  */
799
800 #define FUNCTION_PROFILER(FILE, LABELNO)  \
801   fprintf (FILE, "/* profiler %d */", (LABELNO))
802
803 #define ADJUST_INSN_LENGTH(INSN, LENGTH) (LENGTH =\
804                                           adjust_insn_length (INSN, LENGTH))
805
806 #define TARGET_MEM_FUNCTIONS
807
808 #define CPP_SPEC "%{posix:-D_POSIX_SOURCE}"
809
810 #define CC1_SPEC "%{profile:-p}"
811
812 #define CC1PLUS_SPEC "%{!frtti:-fno-rtti} \
813     %{!fenforce-eh-specs:-fno-enforce-eh-specs} \
814     %{!fexceptions:-fno-exceptions}"
815 /* A C string constant that tells the GCC drvier program options to
816    pass to `cc1plus'.  */
817
818 #define ASM_SPEC "%{mmcu=*:-mmcu=%*}"
819
820 #define LINK_SPEC " %{!mmcu*:-m avr2}\
821 %{mmcu=at90s1200|mmcu=attiny1*|mmcu=attiny28:-m avr1} \
822 %{mmcu=attiny22|mmcu=attiny26|mmcu=at90s2*|mmcu=at90s4*|mmcu=at90s8*|mmcu=at90c8*|mmcu=at86rf401:-m avr2}\
823 %{mmcu=atmega103|mmcu=atmega603|mmcu=at43*|mmcu=at76*:-m avr3}\
824 %{mmcu=atmega8*:-m avr4}\
825 %{mmcu=atmega16*|mmcu=atmega32*|mmcu=atmega64|mmcu=atmega128|mmcu=at94k:-m avr5}\
826 %{mmcu=atmega64|mmcu=atmega128|mmcu=atmega162|mmcu=atmega169: -Tdata 0x800100} "
827
828 #define LIB_SPEC \
829   "%{!mmcu=at90s1*:%{!mmcu=attiny1*:%{!mmcu=attiny28: -lc }}}"
830
831 #define LIBSTDCXX "-lgcc"
832 /* No libstdc++ for now.  Empty string doesn't work.  */
833
834 #define LIBGCC_SPEC \
835   "%{!mmcu=at90s1*:%{!mmcu=attiny1*:%{!mmcu=attiny28: -lgcc }}}"
836
837 #define STARTFILE_SPEC "%(crt_binutils)"
838
839 #define ENDFILE_SPEC ""
840
841 #define CRT_BINUTILS_SPECS "\
842 %{mmcu=at90s1200|mmcu=avr1:crts1200.o%s} \
843 %{mmcu=attiny11:crttn11.o%s} \
844 %{mmcu=attiny12:crttn12.o%s} \
845 %{mmcu=attiny15:crttn15.o%s} \
846 %{mmcu=attiny28:crttn28.o%s} \
847 %{!mmcu*|mmcu=at90s8515|mmcu=avr2:crts8515.o%s} \
848 %{mmcu=at90s2313:crts2313.o%s} \
849 %{mmcu=at90s2323:crts2323.o%s} \
850 %{mmcu=at90s2333:crts2333.o%s} \
851 %{mmcu=at90s2343:crts2343.o%s} \
852 %{mmcu=attiny22:crttn22.o%s} \
853 %{mmcu=attiny26:crttn26.o%s} \
854 %{mmcu=at90s4433:crts4433.o%s} \
855 %{mmcu=at90s4414:crts4414.o%s} \
856 %{mmcu=at90s4434:crts4434.o%s} \
857 %{mmcu=at90c8534:crtc8534.o%s} \
858 %{mmcu=at90s8535:crts8535.o%s} \
859 %{mmcu=at86rf401:crt86401.o%s} \
860 %{mmcu=atmega103|mmcu=avr3:crtm103.o%s} \
861 %{mmcu=atmega603:crtm603.o%s} \
862 %{mmcu=at43usb320:crt43320.o%s} \
863 %{mmcu=at43usb355:crt43355.o%s} \
864 %{mmcu=at76c711:crt76711.o%s} \
865 %{mmcu=atmega8|mmcu=avr4:crtm8.o%s} \
866 %{mmcu=atmega8515:crtm8515.o%s} \
867 %{mmcu=atmega8535:crtm8535.o%s} \
868 %{mmcu=atmega16:crtm16.o%s} \
869 %{mmcu=atmega161|mmcu=avr5:crtm161.o%s} \
870 %{mmcu=atmega162:crtm162.o%s} \
871 %{mmcu=atmega163:crtm163.o%s} \
872 %{mmcu=atmega169:crtm169.o%s} \
873 %{mmcu=atmega32:crtm32.o%s} \
874 %{mmcu=atmega323:crtm323.o%s} \
875 %{mmcu=atmega64:crtm64.o%s} \
876 %{mmcu=atmega128:crtm128.o%s} \
877 %{mmcu=at94k:crtat94k.o%s}"
878
879 #define EXTRA_SPECS {"crt_binutils", CRT_BINUTILS_SPECS},
880
881 /* This is the default without any -mmcu=* option (AT90S*).  */
882 #define MULTILIB_DEFAULTS { "mmcu=avr2" }
883
884 /* This is undefined macro for collect2 disabling */
885 #define LINKER_NAME "ld"
886
887 #define TEST_HARD_REG_CLASS(CLASS, REGNO) \
888   TEST_HARD_REG_BIT (reg_class_contents[ (int) (CLASS)], REGNO)
889
890 /* Note that the other files fail to use these
891    in some of the places where they should.  */
892
893 #if defined(__STDC__) || defined(ALMOST_STDC)
894 #define AS2(a,b,c) #a " " #b "," #c
895 #define AS2C(b,c) " " #b "," #c
896 #define AS3(a,b,c,d) #a " " #b "," #c "," #d
897 #define AS1(a,b) #a " " #b
898 #else
899 #define AS1(a,b) "a     b"
900 #define AS2(a,b,c) "a   b,c"
901 #define AS2C(b,c) " b,c"
902 #define AS3(a,b,c,d) "a b,c,d"
903 #endif
904 #define OUT_AS1(a,b) output_asm_insn (AS1(a,b), operands)
905 #define OUT_AS2(a,b,c) output_asm_insn (AS2(a,b,c), operands)
906 #define CR_TAB "\n\t"
907
908 /* Temporary register r0 */
909 #define TMP_REGNO 0
910
911 /* zero register r1 */
912 #define ZERO_REGNO 1
913
914 #define PREFERRED_DEBUGGING_TYPE DBX_DEBUG