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1.1 root 1: /* Definitions of target machine for GNU compiler. SONY NEWS-OS 4 version.
1.1.1.3 root 2: Copyright (C) 1987, 1989, 1993, 1994 Free Software Foundation, Inc.
1.1 root 3:
4: This file is part of GNU CC.
5:
6: GNU CC is free software; you can redistribute it and/or modify
7: it under the terms of the GNU General Public License as published by
8: the Free Software Foundation; either version 2, or (at your option)
9: any later version.
10:
11: GNU CC is distributed in the hope that it will be useful,
12: but WITHOUT ANY WARRANTY; without even the implied warranty of
13: MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14: GNU General Public License for more details.
15:
16: You should have received a copy of the GNU General Public License
17: along with GNU CC; see the file COPYING. If not, write to
1.1.1.4 ! root 18: the Free Software Foundation, 59 Temple Place - Suite 330,
! 19: Boston, MA 02111-1307, USA. */
1.1 root 20:
21: #ifndef USE_GAS
22: /* This controls conditionals in m68k.h. */
23: #define MOTOROLA /* Use Motorola syntax rather than "MIT" */
24: #define SGS_NO_LI /* Suppress jump table label usage */
25: #endif
26:
1.1.1.2 root 27: #define NO_DOLLAR_IN_LABEL
28: #define NO_DOT_IN_LABEL
29:
1.1 root 30: #include "m68k/m68k.h"
31:
32: /* See m68k.h. 7 means 68020 with 68881. */
33:
34: #define TARGET_DEFAULT 7
35:
36: /* Define __HAVE_68881__ in preprocessor, unless -msoft-float is specified.
37: This will control the use of inline 68881 insns in certain macros. */
38:
39: #define CPP_SPEC "%{!msoft-float:-D__HAVE_68881__}"
40:
41: /* Names to predefine in the preprocessor for this target machine. */
42: /* These are the ones defined by Sony, plus mc68000 for uniformity with
43: GCC on other 68000 systems. */
44:
1.1.1.2 root 45: #ifdef MOTOROLA
46: #define CPP_PREDEFINES "-Dunix -Dbsd43 -Dsony -Dsony_news -Dmc68000 -Dmc68020 -Dnews700 -D__motorola__ -Asystem(unix) -Asystem(bsd) -Acpu(m68k) -Amachine(m68k)"
47: #else
48: #define CPP_PREDEFINES "-Dunix -Dbsd43 -Dsony -Dsony_news -Dmc68000 -Dmc68020 -Dnews700 -Asystem(unix) -Asystem(bsd) -Acpu(m68k) -Amachine(m68k)"
49: #endif
1.1 root 50:
51: /* These conditionals tested for different submodels,
52: but they were incorrect since they tested the host rather than the target.
53: The choice of model shouldn't actually matter. */
54:
55: #if 0
56: #ifdef news800
1.1.1.2 root 57: #define CPP_PREDEFINES "-Dunix -Dbsd43 -Dsony -Dsony_news -Dmc68000 -Dmc68020 -Dnews800 -Asystem(unix) -Asystem(bsd) -Acpu(m68k) -Amachine(m68k)"
1.1 root 58: #endif
59: #ifdef news900
1.1.1.2 root 60: #define CPP_PREDEFINES "-Dunix -Dbsd43 -Dsony -Dsony_news -Dmc68000 -Dmc68020 -Dnews900 -Asystem(unix) -Asystem(bsd) -Acpu(m68k) -Amachine(m68k)"
1.1 root 61: #endif
62: #ifdef news1500
1.1.1.2 root 63: #define CPP_PREDEFINES "-Dunix -Dbsd43 -Dsony -Dsony_news -Dmc68000 -Dmc68020 -Dmc68030 -Dnews1500 -Asystem(unix) -Asystem(bsd) -Acpu(m68k) -Amachine(m68k)"
1.1 root 64: #endif
65: #ifdef news1700
1.1.1.2 root 66: #define CPP_PREDEFINES "-Dunix -Dbsd43 -Dsony -Dsony_news -Dmc68000 -Dmc68020 -Dmc68030 -Dnews1700 -Asystem(unix) -Asystem(bsd) -Acpu(m68k) -Amachine(m68k)"
1.1 root 67: #endif
68: #ifdef news1800
1.1.1.2 root 69: #define CPP_PREDEFINES "-Dunix -Dbsd43 -Dsony -Dsony_news -Dmc68000 -Dmc68020 -Dmc68030 -Dnews1800 -Asystem(unix) -Asystem(bsd) -Acpu(m68k) -Amachine(m68k)"
1.1 root 70: #endif
71: #ifdef news1900
1.1.1.2 root 72: #define CPP_PREDEFINES "-Dunix -Dbsd43 -Dsony -Dsony_news -Dmc68000 -Dmc68020 -Dmc68030 -Dnews1900 -Asystem(unix) -Asystem(bsd) -Acpu(m68k) -Amachine(m68k)"
1.1 root 73: #endif
74: #endif
75:
76: /* Link with libg.a when debugging, for dbx's sake. */
77:
78: #define LIB_SPEC "%{g:-lg} %{!p:%{!pg:-lc}}%{p:-lc_p}%{pg:-lc_p} "
79:
80: /* This is BSD, so it wants DBX format. */
81:
82: #define DBX_DEBUGGING_INFO
83:
84: #if 0
85: /* This is to be compatible with types.h.
86: It was found to be necessary with Newsos 3. */
87:
88: #define SIZE_TYPE "long int"
89: #endif
90:
91: /* Override parts of m68k.h to fit Sony's assembler syntax. */
92:
93: #undef BIGGEST_ALIGNMENT
94: #undef CALL_USED_REGISTERS
95: #undef FUNCTION_VALUE
96: #undef LIBCALL_VALUE
97: #undef FUNCTION_PROFILER
98:
99: #ifdef MOTOROLA
100: #undef FUNCTION_PROLOGUE
101: #undef FUNCTION_EPILOGUE
102: #undef REGISTER_NAMES
103: #undef ASM_OUTPUT_REG_PUSH
104: #undef ASM_OUTPUT_REG_POP
105: #undef ASM_OUTPUT_DOUBLE
106: #undef ASM_OUTPUT_SKIP
107: #undef ASM_FORMAT_PRIVATE_NAME
108: #undef PRINT_OPERAND
109: #undef PRINT_OPERAND_ADDRESS
110: #endif
111:
112: #undef ASM_OUTPUT_ALIGN
113:
114: /* There is no point aligning anything to a rounder boundary than this. */
115: #define BIGGEST_ALIGNMENT 32
116:
117: /* A bitfield declared as `int' forces `int' alignment for the struct. */
118: #define PCC_BITFIELD_TYPE_MATTERS 1
119:
120: /* NEWS makes d2, d3, fp2 and fp3 unsaved registers, unlike the Sun system. */
121:
122: #define CALL_USED_REGISTERS \
123: {1, 1, 1, 1, 0, 0, 0, 0, \
124: 1, 1, 0, 0, 0, 0, 0, 1, \
125: 1, 1, 1, 1, 0, 0, 0, 0}
126:
127: /* NEWS returns floats and doubles in fp0, not d0/d1. */
128:
129: #define FUNCTION_VALUE(VALTYPE,FUNC) LIBCALL_VALUE (TYPE_MODE (VALTYPE))
130:
131: #define LIBCALL_VALUE(MODE) \
132: gen_rtx (REG, (MODE), \
133: ((TARGET_68881 \
134: && ((MODE) == SFmode || (MODE) == DFmode || (MODE) == XFmode)) \
135: ? 16 : 0))
136:
137: #define ASM_OUTPUT_ALIGN(FILE,LOG) \
138: fprintf (FILE, "\t.align %d\n", (LOG))
139:
140: #ifdef MOTOROLA
141:
142: /* Don't try to define `gcc_compiled.' since the assembler does not
143: accept symbols with periods. This is no real loss since GDB only
144: really needs it for parms passed in registers. */
145: #define ASM_IDENTIFY_GCC(FILE)
146:
147: #define FUNCTION_PROLOGUE(FILE, SIZE) \
148: { register int regno; \
149: register int mask = 0; \
150: extern char call_used_regs[]; \
151: int fsize = ((SIZE) + 3) & -4; \
152: if (frame_pointer_needed) \
153: { if (fsize < 0x8000) \
154: fprintf (FILE, "\tlink fp,#%d\n", -fsize); \
155: else if (TARGET_68020) \
156: fprintf (FILE, "\tlink.l fp,#%d\n", -fsize); \
157: else \
158: fprintf (FILE, "\tlink fp,#0\n\tsub.l #%d,sp\n", fsize);\
159: } \
160: else if (fsize) \
161: { \
162: int amt = fsize + 4; \
163: /* Adding negative number is faster on the 68040. */ \
164: if (fsize + 4 < 0x8000) \
165: asm_fprintf (FILE, "\tadd.w %0I%d,%Rsp\n", - amt); \
166: else \
167: asm_fprintf (FILE, "\tadd.l %0I%d,%Rsp\n", - amt); \
168: } \
169: for (regno = 16; regno < FIRST_PSEUDO_REGISTER; regno++) \
170: if (regs_ever_live[regno] && ! call_used_regs[regno]) \
171: mask |= 1 << (regno - 16); \
172: if (mask != 0) \
173: fprintf (FILE, "\tfmovem.x #0x%x,-(sp)\n", mask & 0xff); \
174: mask = 0; \
175: for (regno = 0; regno < 16; regno++) \
176: if (regs_ever_live[regno] && ! call_used_regs[regno]) \
177: mask |= 1 << (15 - regno); \
178: if (frame_pointer_needed) \
179: mask &= ~ (1 << (15-FRAME_POINTER_REGNUM)); \
180: if (exact_log2 (mask) >= 0) \
181: fprintf (FILE, "\tmove.l %s,-(sp)\n", reg_names[15 - exact_log2 (mask)]); \
182: else if (mask) fprintf (FILE, "\tmovem.l #0x%x,-(sp)\n", mask); }
183:
184: #define FUNCTION_PROFILER(FILE, LABEL_NO) \
185: fprintf (FILE, "\tmove.l #LP%d,d0\n\tjsr mcount\n", (LABEL_NO));
186:
187: #define FUNCTION_EPILOGUE(FILE, SIZE) \
188: { register int regno; \
189: register int mask, fmask; \
190: register int nregs; \
191: int offset, foffset; \
192: extern char call_used_regs[]; \
193: int fsize = ((SIZE) + 3) & -4; \
194: int big = 0; \
195: nregs = 0; fmask = 0; \
196: for (regno = 16; regno < FIRST_PSEUDO_REGISTER; regno++) \
197: if (regs_ever_live[regno] && ! call_used_regs[regno]) \
198: { nregs++; fmask |= 1 << (23 - regno); } \
199: foffset = nregs * 12; \
200: nregs = 0; mask = 0; \
201: if (frame_pointer_needed) regs_ever_live[FRAME_POINTER_REGNUM] = 0; \
202: for (regno = 0; regno < 16; regno++) \
203: if (regs_ever_live[regno] && ! call_used_regs[regno]) \
204: { nregs++; mask |= 1 << regno; } \
205: offset = foffset + nregs * 4; \
206: if (offset + fsize >= 0x8000 \
207: && frame_pointer_needed \
208: && (mask || fmask)) \
209: { fprintf (FILE, "\tmove.l #%d,a0\n", -fsize); \
210: fsize = 0, big = 1; } \
211: if (exact_log2 (mask) >= 0) { \
212: if (big) \
213: fprintf (FILE, "\tmove.l (-%d,fp,a0.l),%s\n", \
214: offset + fsize, reg_names[exact_log2 (mask)]); \
215: else if (! frame_pointer_needed) \
216: fprintf (FILE, "\tmove.l (sp)+,%s\n", \
217: reg_names[exact_log2 (mask)]); \
218: else \
219: fprintf (FILE, "\tmove.l (-%d,fp),%s\n", \
220: offset + fsize, reg_names[exact_log2 (mask)]); } \
221: else if (mask) { \
222: if (big) \
223: fprintf (FILE, "\tmovem.l (-%d,fp,a0.l),#0x%x\n", \
224: offset + fsize, mask); \
225: else if (! frame_pointer_needed) \
226: fprintf (FILE, "\tmovem.l (sp)+,#0x%x\n", mask); \
227: else \
228: fprintf (FILE, "\tmovem.l (-%d,fp),#0x%x\n", \
229: offset + fsize, mask); } \
230: if (fmask) { \
231: if (big) \
232: fprintf (FILE, "\tfmovem.x (-%d,fp,a0.l),#0x%x\n", \
233: foffset + fsize, fmask); \
234: else if (! frame_pointer_needed) \
235: fprintf (FILE, "\tfmovem.x (sp)+,#0x%x\n", fmask); \
236: else \
237: fprintf (FILE, "\tfmovem.x (-%d,fp),#0x%x\n", \
238: foffset + fsize, fmask); } \
239: if (frame_pointer_needed) \
240: fprintf (FILE, "\tunlk fp\n"); \
241: else if (fsize) \
242: { \
243: if (fsize + 4 < 0x8000) \
244: fprintf (FILE, "\tadd.w #%d,sp\n", fsize + 4); \
245: else \
246: fprintf (FILE, "\tadd.l #%d,sp\n", fsize + 4); \
247: } \
248: if (current_function_pops_args) \
249: fprintf (FILE, "\trtd #%d\n", current_function_pops_args); \
250: else fprintf (FILE, "\trts\n"); }
251:
252: /* Difference from m68k.h is in `fp' instead of `a6'. */
253:
254: #define REGISTER_NAMES \
255: {"d0", "d1", "d2", "d3", "d4", "d5", "d6", "d7", \
256: "a0", "a1", "a2", "a3", "a4", "a5", "fp", "sp", \
257: "fp0", "fp1", "fp2", "fp3", "fp4", "fp5", "fp6", "fp7"}
258:
259: /* This is how to output an insn to push a register on the stack.
260: It need not be very fast code. */
261:
262: #define ASM_OUTPUT_REG_PUSH(FILE,REGNO) \
263: fprintf (FILE, "\tmove.l %s,-(sp)\n", reg_names[REGNO])
264:
265: /* This is how to output an insn to pop a register from the stack.
266: It need not be very fast code. */
267:
268: #define ASM_OUTPUT_REG_POP(FILE,REGNO) \
269: fprintf (FILE, "\tmove.l (sp)+,%s\n", reg_names[REGNO])
270:
271: #define ASM_OUTPUT_DOUBLE(FILE,VALUE) \
272: do { char dstr[30]; \
273: REAL_VALUE_TO_DECIMAL ((VALUE), "%.20e", dstr); \
274: fprintf (FILE, "\t.double 0d%s\n", dstr); \
275: } while (0)
276:
277: #define ASM_OUTPUT_SKIP(FILE,SIZE) \
278: fprintf (FILE, "\t.space %u\n", (SIZE))
279:
280: #if 0
281: /* The NEWS assembler in version 3.4 complains about fmove.d, but this
282: macro proved not to work right. 3.4 is old, so forget about it. */
283: #define ASM_OUTPUT_OPCODE(FILE, STRING) \
284: { \
285: if (!strncmp (STRING, "fmove.d", 7) \
286: && CONSTANT_P (operands[1])) \
287: { \
288: fprintf (FILE, "fmove.x"); \
289: STRING += 7; \
290: } \
291: }
292: #endif
293:
294: /* Store in OUTPUT a string (made with alloca) containing
295: an assembler-name for a local static variable named NAME.
296: LABELNO is an integer which is different for each call. */
297:
298: #define ASM_FORMAT_PRIVATE_NAME(OUTPUT, NAME, LABELNO) \
299: ( (OUTPUT) = (char *) alloca (strlen ((NAME)) + 13), \
300: sprintf ((OUTPUT), "%s$$$%d", (NAME), (LABELNO)))
301:
302: #define PRINT_OPERAND(FILE, X, CODE) \
303: { if (CODE == '.') fprintf (FILE, "."); \
304: else if (CODE == '#') fprintf (FILE, "#"); \
305: else if (CODE == '-') fprintf (FILE, "-(sp)"); \
306: else if (CODE == '+') fprintf (FILE, "(sp)+"); \
307: else if (CODE == '@') fprintf (FILE, "(sp)"); \
308: else if (CODE == '!') fprintf (FILE, "fpcr"); \
309: else if (CODE == '$') {if (TARGET_68040_ONLY) fprintf (FILE, "s");} \
310: else if (CODE == '&') {if (TARGET_68040_ONLY) fprintf (FILE, "d");} \
311: else if (CODE == '/') \
312: ; \
313: else if (GET_CODE (X) == REG) \
314: fprintf (FILE, "%s", reg_names[REGNO (X)]); \
315: else if (GET_CODE (X) == MEM) \
316: output_address (XEXP (X, 0)); \
317: else if (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) == SFmode) \
318: { REAL_VALUE_TYPE r; \
319: REAL_VALUE_FROM_CONST_DOUBLE (r, X); \
320: if (CODE == 'f') \
321: { char dstr[30]; \
322: REAL_VALUE_TO_DECIMAL (r, "%.9e", dstr); \
1.1.1.3 root 323: if (REAL_VALUE_ISINF (r) || REAL_VALUE_ISNAN (r)) { \
324: if (REAL_VALUE_NEGATIVE (r)) \
325: fprintf (FILE, "#0f-99e999"); \
326: else \
327: fprintf (FILE, "#0f99e999"); } \
328: else if (REAL_VALUE_MINUS_ZERO (r)) \
329: fprintf (FILE, "#0f-0.0"); \
330: else \
331: fprintf (FILE, "#0f%s", dstr); \
1.1 root 332: } \
333: else \
334: { long l; \
335: REAL_VALUE_TO_TARGET_SINGLE (r, l); \
336: fprintf (FILE, "#0x%x", l); \
337: }} \
338: else if (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) == XFmode) \
339: { REAL_VALUE_TYPE r; \
340: REAL_VALUE_FROM_CONST_DOUBLE (r, X); \
341: ASM_OUTPUT_LONG_DOUBLE_OPERAND (FILE, r); } \
1.1.1.3 root 342: else if (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) == DFmode) \
1.1 root 343: { REAL_VALUE_TYPE r; char dstr[30]; \
344: REAL_VALUE_FROM_CONST_DOUBLE (r, X); \
345: REAL_VALUE_TO_DECIMAL (r, "%.20e", dstr ); \
1.1.1.3 root 346: if (REAL_VALUE_ISINF (r) || REAL_VALUE_ISNAN (r)) { \
347: if (REAL_VALUE_NEGATIVE (r)) \
348: fprintf (FILE, "#0d-99e999"); \
349: else \
350: fprintf (FILE, "#0d99e999"); } \
351: else if (REAL_VALUE_MINUS_ZERO (r)) \
352: fprintf (FILE, "#0d-0.0"); \
353: else \
354: fprintf (FILE, "#0d%s", dstr); } \
1.1 root 355: else if (CODE == 'b') output_addr_const (FILE, X); \
356: else { putc ('#', FILE); output_addr_const (FILE, X); }}
357:
358: #define PRINT_OPERAND_ADDRESS(FILE, ADDR) \
359: { register rtx reg1, reg2, breg, ireg; \
360: register rtx addr = ADDR; \
361: rtx offset; \
362: switch (GET_CODE (addr)) \
363: { \
364: case REG: \
365: fprintf (FILE, "(%s)", reg_names[REGNO (addr)]); \
366: break; \
367: case PRE_DEC: \
368: fprintf (FILE, "-(%s)", reg_names[REGNO (XEXP (addr, 0))]); \
369: break; \
370: case POST_INC: \
371: fprintf (FILE, "(%s)+", reg_names[REGNO (XEXP (addr, 0))]); \
372: break; \
373: case PLUS: \
374: reg1 = 0; reg2 = 0; \
375: ireg = 0; breg = 0; \
376: offset = 0; \
377: if (CONSTANT_ADDRESS_P (XEXP (addr, 0))) \
378: { \
379: offset = XEXP (addr, 0); \
380: addr = XEXP (addr, 1); \
381: } \
382: else if (CONSTANT_ADDRESS_P (XEXP (addr, 1))) \
383: { \
384: offset = XEXP (addr, 1); \
385: addr = XEXP (addr, 0); \
386: } \
387: if (GET_CODE (addr) != PLUS) ; \
388: else if (GET_CODE (XEXP (addr, 0)) == SIGN_EXTEND) \
389: { \
390: reg1 = XEXP (addr, 0); \
391: addr = XEXP (addr, 1); \
392: } \
393: else if (GET_CODE (XEXP (addr, 1)) == SIGN_EXTEND) \
394: { \
395: reg1 = XEXP (addr, 1); \
396: addr = XEXP (addr, 0); \
397: } \
398: else if (GET_CODE (XEXP (addr, 0)) == MULT) \
399: { \
400: reg1 = XEXP (addr, 0); \
401: addr = XEXP (addr, 1); \
402: } \
403: else if (GET_CODE (XEXP (addr, 1)) == MULT) \
404: { \
405: reg1 = XEXP (addr, 1); \
406: addr = XEXP (addr, 0); \
407: } \
408: else if (GET_CODE (XEXP (addr, 0)) == REG) \
409: { \
410: reg1 = XEXP (addr, 0); \
411: addr = XEXP (addr, 1); \
412: } \
413: else if (GET_CODE (XEXP (addr, 1)) == REG) \
414: { \
415: reg1 = XEXP (addr, 1); \
416: addr = XEXP (addr, 0); \
417: } \
418: if (GET_CODE (addr) == REG || GET_CODE (addr) == MULT \
419: || GET_CODE (addr) == SIGN_EXTEND) \
420: { if (reg1 == 0) reg1 = addr; else reg2 = addr; addr = 0; } \
421: if (offset != 0) { if (addr != 0) abort (); addr = offset; } \
422: if ((reg1 && (GET_CODE (reg1) == SIGN_EXTEND \
423: || GET_CODE (reg1) == MULT)) \
424: || (reg2 != 0 && REGNO_OK_FOR_BASE_P (REGNO (reg2)))) \
425: { breg = reg2; ireg = reg1; } \
426: else if (reg1 != 0 && REGNO_OK_FOR_BASE_P (REGNO (reg1))) \
427: { breg = reg1; ireg = reg2; } \
428: if (ireg != 0 && breg == 0 && GET_CODE (addr) == LABEL_REF) \
429: { int scale = 1; \
430: if (GET_CODE (ireg) == MULT) \
431: { scale = INTVAL (XEXP (ireg, 1)); \
432: ireg = XEXP (ireg, 0); } \
433: if (GET_CODE (ireg) == SIGN_EXTEND) \
434: fprintf (FILE, "(L%d.b,pc,%s.w", \
435: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
436: reg_names[REGNO (XEXP (ireg, 0))]); \
437: else \
438: fprintf (FILE, "(L%d.b,pc,%s.l", \
439: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
440: reg_names[REGNO (ireg)]); \
441: if (scale != 1) fprintf (FILE, "*%d", scale); \
442: putc (')', FILE); \
443: break; } \
444: if (breg != 0 && ireg == 0 && GET_CODE (addr) == LABEL_REF) \
445: { fprintf (FILE, "(L%d.b,pc,%s.l", \
446: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
447: reg_names[REGNO (breg)]); \
448: putc (')', FILE); \
449: break; } \
450: if (ireg != 0 || breg != 0) \
451: { int scale = 1; \
452: if (breg == 0) \
453: abort (); \
454: if (addr && GET_CODE (addr) == LABEL_REF) abort (); \
455: fprintf (FILE, "("); \
456: if (addr != 0) { \
457: output_addr_const (FILE, addr); \
458: putc (',', FILE); } \
459: fprintf (FILE, "%s", reg_names[REGNO (breg)]); \
460: if (ireg != 0) \
461: putc (',', FILE); \
462: if (ireg != 0 && GET_CODE (ireg) == MULT) \
463: { scale = INTVAL (XEXP (ireg, 1)); \
464: ireg = XEXP (ireg, 0); } \
465: if (ireg != 0 && GET_CODE (ireg) == SIGN_EXTEND) \
466: fprintf (FILE, "%s.w", reg_names[REGNO (XEXP (ireg, 0))]); \
467: else if (ireg != 0) \
468: fprintf (FILE, "%s.l", reg_names[REGNO (ireg)]); \
469: if (scale != 1) fprintf (FILE, "*%d", scale); \
470: putc (')', FILE); \
471: break; \
472: } \
473: else if (reg1 != 0 && GET_CODE (addr) == LABEL_REF) \
474: { fprintf (FILE, "(L%d.b,pc,%s.l)", \
475: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
476: reg_names[REGNO (reg1)]); \
477: break; } \
478: default: \
479: if (GET_CODE (addr) == CONST_INT \
480: && INTVAL (addr) < 0x8000 \
481: && INTVAL (addr) >= -0x8000) \
482: fprintf (FILE, "%d.w", INTVAL (addr)); \
483: else \
484: output_addr_const (FILE, addr); \
485: }}
486:
487: #else /* Using GAS, which uses the MIT assembler syntax, like a Sun. */
488:
489: #define FUNCTION_PROFILER(FILE, LABEL_NO) \
490: fprintf (FILE, "\tmovl #LP%d,d0\n\tjsr mcount\n", (LABEL_NO));
491:
492: #endif /* MOTOROLA */
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