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1.1 root 1: /* Definitions of target machine for GNU compiler. HP-UX 68000/68020 version.
2: Copyright (C) 1987, 1988 Free Software Foundation, Inc.
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 1, 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
18: the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
19:
20: /* Define USE_GAS if GCC is supposed to work with the GNU assembler,
21: GNU linker and GNU debugger using DBX debugging information.
22: (In other words, much of HPUX has been cast aside.)
23: Undefine USE_GAS if you want GCC to feed the HP assembler. */
24:
25: /* #define USE_GAS */ /* Use tm-hp9k320g.h if you want this. */
26:
27: /* Control assembler-syntax conditionals in m68k.md. */
28:
29: #ifndef USE_GAS
30: #define MOTOROLA
31: #define SGS
32: #define HPUX_ASM
33: #endif
34:
35: #include "tm-m68k.h"
36:
37: /* See tm-m68k.h. 7 means 68020 with 68881. */
38:
39: #ifndef TARGET_DEFAULT
40: #define TARGET_DEFAULT 7
41: #endif
42:
43: /* Define __HAVE_68881__ in preprocessor, unless -msoft-float is specified.
44: This will control the use of inline 68881 insns in certain macros. */
45:
46: /* For version 6.2 of HP-UX (or earlier), remove the "-V 3" from
47: ASM_SPEC below. */
48:
49: #ifdef HPUX_ASM
50:
51: #define ASM_SPEC "%{m68000:+X} -V 3"
52:
53: #if TARGET_DEFAULT & 02 /* -m68881 is the default */
54:
55: /* These definitions differ from those used for GAS by defining __HPUX_ASM__.
56: This is needed because some programs, particularly GDB, need to
57: know which assembler is being used so that the correct `asm'
58: instructions can be used. */
59:
60: #define CPP_SPEC \
61: "%{!msoft-float:-D__HAVE_68881__ }\
62: %{!ansi:%{!mc68000:%{!m68000:-Dmc68020}}} -D__HPUX_ASM__"
63:
64: #else /* default is -msoft-float */
65:
66: #define CPP_SPEC \
67: "%{m68881:-D__HAVE_68881__ }\
68: %{!ansi:%{!mc68000:%{!m68000:-Dmc68020}}} -D__HPUX_ASM__"
69:
70: #endif /* default is -msoft-float */
71:
72: #else /* not HPUX_ASM */
73:
74: #if TARGET_DEFAULT & 02 /* -m68881 is the default */
75:
76: #define CPP_SPEC \
77: "%{!msoft-float:-D__HAVE_68881__ }\
78: %{!ansi:%{!mc68000:%{!m68000:-Dmc68020}}}"
79:
80: #else /* default is -msoft-float */
81:
82: #define CPP_SPEC \
83: "%{m68881:-D__HAVE_68881__ }\
84: %{!ansi:%{!mc68000:%{!m68000:-Dmc68020}}}"
85:
86: #endif /* default is -msoft-float */
87:
88:
89: /* -m68000 requires special flags to the assembler. */
90: #define ASM_SPEC \
91: "%{m68000:-mc68000}%{mc68000:-mc68000}%{!mc68000:%{!m68000:-mc68020}}"
92:
93: /* special directory for gnu libs on hp-ux system */
94: #undef STANDARD_STARTFILE_PREFIX
95: #define STANDARD_STARTFILE_PREFIX "/usr/local/lib/gnu/"
96:
97: #endif /* Not HPUX_ASM */
98:
99: /* Names to predefine in the preprocessor for this target machine
100: (for non-strict-ANSI programs only). */
101: /* These are the ones defined by HPUX cc, plus mc68000 for uniformity with
102: GCC on other 68000 systems. */
103:
104: #define CPP_PREDEFINES "-Dhp9000s200 -Dhp9000s300 -DPWB -Dhpux -Dunix"
105:
106: /* Every structure or union's size must be a multiple of 2 bytes. */
107:
108: #define STRUCTURE_SIZE_BOUNDARY 16
109:
110: /* hpux doesn't use static area for struct returns. */
111: #undef PCC_STATIC_STRUCT_RETURN
112:
113: /* Generate calls to memcpy, memcmp and memset. */
114: #define TARGET_MEM_FUNCTIONS
115:
116: /* Function calls don't save any fp registers on hpux. */
117:
118: #undef CALL_USED_REGISTERS
119: #define CALL_USED_REGISTERS \
120: {1, 1, 0, 0, 0, 0, 0, 0, \
121: 1, 1, 0, 0, 0, 0, 0, 1, \
122: 1, 1, 1, 1, 1, 1, 1, 1}
123:
124: #ifdef HPUX_ASM
125:
126: /* Override parts of tm-m68k.h to fit the HPUX assembler. */
127:
128: #undef TARGET_VERSION
129: #undef REGISTER_NAMES
130: #undef FUNCTION_PROLOGUE
131: #undef FUNCTION_EPILOGUE
132: #undef ASM_OUTPUT_REG_PUSH
133: #undef ASM_OUTPUT_REG_POP
134: #undef ASM_FILE_START
135: #undef ASM_APP_ON
136: #undef ASM_APP_OFF
137: #undef TEXT_SECTION_ASM_OP
138: #undef DATA_SECTION_ASM_OP
139: #undef ASM_OUTPUT_DOUBLE
140: #undef ASM_OUTPUT_FLOAT
141: #undef ASM_OUTPUT_INT
142: #undef ASM_OUTPUT_SHORT
143: #undef ASM_OUTPUT_CHAR
144: #undef ASM_OUTPUT_BYTE
145: #undef ASM_OUTPUT_ADDR_VEC_ELT
146: #undef ASM_OUTPUT_ADDR_DIFF_ELT
147: #undef ASM_OUTPUT_ALIGN
148: #undef ASM_OUTPUT_SKIP
149: #undef ASM_OUTPUT_COMMON
150: #undef ASM_OUTPUT_LOCAL
151: #undef ASM_FORMAT_PRIVATE_NAME
152: #undef PRINT_OPERAND
153: #undef PRINT_OPERAND_ADDRESS
154: #undef FUNCTION_PROFILER
155: #undef ASM_GLOBALIZE_LABEL
156: #undef ASM_OUTPUT_INTERNAL_LABEL
157:
158: #define TARGET_VERSION fprintf (stderr, " (68k, SGS/hpux syntax)");
159:
160: #define REGISTER_NAMES \
161: {"%d0", "%d1", "%d2", "%d3", "%d4", "%d5", "%d6", "%d7", \
162: "%a0", "%a1", "%a2", "%a3", "%a4", "%a5", "%fp", "%sp", \
163: "%fp0", "%fp1", "%fp2", "%fp3", "%fp4", "%fp5", "%fp6", "%fp7"}
164:
165: #define FUNCTION_PROLOGUE(FILE, SIZE) \
166: { register int regno; \
167: register int mask = 0; \
168: extern char call_used_regs[]; \
169: int fsize = (SIZE); \
170: if (frame_pointer_needed) \
171: { if (fsize < 0x8000) \
172: fprintf (FILE, "\tlink.w %%a6,&%d\n", -fsize); \
173: else if (TARGET_68020) \
174: fprintf (FILE, "\tlink.l %%a6,&%d\n", -fsize); \
175: else \
176: fprintf (FILE, "\tlink.w %%a6,&0\n\tsub.l &%d,%%sp\n", fsize); } \
177: for (regno = 16; regno < FIRST_PSEUDO_REGISTER; regno++) \
178: if (regs_ever_live[regno] && ! call_used_regs[regno]) \
179: mask |= 1 << (regno - 16); \
180: if (mask != 0) \
181: fprintf (FILE, "\tfmovem &0x%x,-(%%sp)\n", mask & 0xff); \
182: mask = 0; \
183: for (regno = 0; regno < 16; regno++) \
184: if (regs_ever_live[regno] && ! call_used_regs[regno]) \
185: mask |= 1 << (15 - regno); \
186: if (frame_pointer_needed) \
187: mask &= ~ (1 << (15-FRAME_POINTER_REGNUM)); \
188: if (exact_log2 (mask) >= 0) \
189: fprintf (FILE, "\tmov.l %s,-(%%sp)\n", reg_names[15 - exact_log2 (mask)]); \
190: else if (mask) fprintf (FILE, "\tmovm.l &0x%x,-(%%sp)\n", mask); }
191:
192: #define FUNCTION_PROFILER(FILE, LABEL_NO) \
193: fprintf (FILE, "\tmov.l &LP%d,%%a0\n\tjsr mcount\n", (LABEL_NO));
194:
195: #define FUNCTION_EPILOGUE(FILE, SIZE) \
196: { register int regno; \
197: register int mask, fmask; \
198: register int nregs; \
199: int offset, foffset; \
200: extern char call_used_regs[]; \
201: extern int current_function_pops_args; \
202: extern int current_function_args_size; \
203: int fsize = (SIZE); \
204: int big = 0; \
205: nregs = 0; fmask = 0; \
206: for (regno = 16; regno < FIRST_PSEUDO_REGISTER; regno++) \
207: if (regs_ever_live[regno] && ! call_used_regs[regno]) \
208: { nregs++; fmask |= 1 << (23 - regno); } \
209: foffset = nregs * 12; \
210: nregs = 0; mask = 0; \
211: if (frame_pointer_needed) regs_ever_live[FRAME_POINTER_REGNUM] = 0; \
212: for (regno = 0; regno < 16; regno++) \
213: if (regs_ever_live[regno] && ! call_used_regs[regno]) \
214: { nregs++; mask |= 1 << regno; } \
215: offset = foffset + nregs * 4; \
216: if (offset + fsize >= 0x8000 && frame_pointer_needed) \
217: { fprintf (FILE, "\tmov.l &%d,%%a0\n", -fsize); \
218: fsize = 0, big = 1; } \
219: if (exact_log2 (mask) >= 0) { \
220: if (big) \
221: fprintf (FILE, "\tmov.l -%d(%%a6,%%a0.l),%s\n", \
222: offset + fsize, reg_names[exact_log2 (mask)]); \
223: else if (! frame_pointer_needed) \
224: fprintf (FILE, "\tmov.l (%%sp)+,%s\n", \
225: reg_names[exact_log2 (mask)]); \
226: else \
227: fprintf (FILE, "\tmov.l -%d(%%a6),%s\n", \
228: offset + fsize, reg_names[exact_log2 (mask)]); } \
229: else if (mask) { \
230: if (big) \
231: fprintf (FILE, "\tmovm.l -%d(%%a6,%%a0.l),&0x%x\n", \
232: offset + fsize, mask); \
233: else if (! frame_pointer_needed) \
234: fprintf (FILE, "\tmovm.l (%%sp)+,&0x%x\n", mask); \
235: else \
236: fprintf (FILE, "\tmovm.l -%d(%%a6),&0x%x\n", \
237: offset + fsize, mask); } \
238: if (fmask) { \
239: if (big) \
240: fprintf (FILE, "\tfmovem -%d(%%a6,%%a0.l),&0x%x\n", \
241: foffset + fsize, fmask); \
242: else if (! frame_pointer_needed) \
243: fprintf (FILE, "\tfmovem (%%sp)+,&0x%x\n", fmask); \
244: else \
245: fprintf (FILE, "\tfmovem -%d(%%a6),&0x%x\n", \
246: foffset + fsize, fmask); } \
247: if (frame_pointer_needed) \
248: fprintf (FILE, "\tunlk %%a6\n"); \
249: if (current_function_pops_args && current_function_args_size) \
250: fprintf (FILE, "\trtd &%d\n", current_function_args_size); \
251: else fprintf (FILE, "\trts\n"); }
252:
253: /* This is how to output an insn to push a register on the stack.
254: It need not be very fast code. */
255:
256: #define ASM_OUTPUT_REG_PUSH(FILE,REGNO) \
257: fprintf (FILE, "\tmov.l %s,-(%%sp)\n", reg_names[REGNO])
258:
259: /* This is how to output an insn to pop a register from the stack.
260: It need not be very fast code. */
261:
262: #define ASM_OUTPUT_REG_POP(FILE,REGNO) \
263: fprintf (FILE, "\tmov.l (%%sp)+,%s\n", reg_names[REGNO])
264:
265: #define ASM_FILE_START(FILE)
266:
267: #define ASM_APP_ON ""
268:
269: #define ASM_APP_OFF ""
270:
271: #define TEXT_SECTION_ASM_OP "text"
272:
273: #define DATA_SECTION_ASM_OP "data"
274:
275: #define ASCII_DATA_ASM_OP "\tbyte"
276:
277: /* This says how to output an assembler line
278: to define a global common symbol. */
279:
280: #define ASM_OUTPUT_COMMON(FILE, NAME, SIZE, ROUNDED) \
281: ( fputs ("\tcomm ", (FILE)), \
282: assemble_name ((FILE), (NAME)), \
283: fprintf ((FILE), ",%d\n", (ROUNDED)))
284:
285: /* This says how to output an assembler line
286: to define a local common symbol. */
287:
288: #define ASM_OUTPUT_LOCAL(FILE, NAME, SIZE, ROUNDED) \
289: ( fputs ("\tlcomm ", (FILE)), \
290: assemble_name ((FILE), (NAME)), \
291: fprintf ((FILE), ",%d,2\n", (ROUNDED)))
292:
293: /* Store in OUTPUT a string (made with alloca) containing
294: an assembler-name for a local static variable named NAME.
295: LABELNO is an integer which is different for each call. */
296:
297: #define ASM_FORMAT_PRIVATE_NAME(OUTPUT, NAME, LABELNO) \
298: ( (OUTPUT) = (char *) alloca (strlen ((NAME)) + 12), \
299: sprintf ((OUTPUT), "%s___%d", (NAME), (LABELNO)))
300:
301: /* This is how to output a command to make the user-level label named NAME
302: defined for reference from other files. */
303:
304: #define ASM_GLOBALIZE_LABEL(FILE,NAME) \
305: do { fputs ("\tglobal ", FILE); assemble_name (FILE, NAME); fputs ("\n", FILE);} while (0)
306:
307: #define ASM_OUTPUT_INTERNAL_LABEL(FILE,PREFIX,NUM) \
308: do{ if (PREFIX[0] == 'L' && PREFIX[1] == 'I') \
309: fprintf(FILE, "\tset %s%d,.+2\n", PREFIX, NUM); \
310: else \
311: fprintf (FILE, "%s%d:\n", PREFIX, NUM); \
312: } while(0)
313:
314: #define ASM_OUTPUT_DOUBLE(FILE, VALUE) \
315: fprintf (FILE, "\tdouble 0f%.20g\n", (VALUE))
316:
317: #define ASM_OUTPUT_FLOAT(FILE, VALUE) \
318: fprintf (FILE, "\tfloat 0f%.9g\n", (VALUE))
319:
320: /* This is how to output an assembler line defining an `int' constant. */
321:
322: #define ASM_OUTPUT_INT(FILE,VALUE) \
323: ( fprintf (FILE, "\tlong "), \
324: output_addr_const (FILE, (VALUE)), \
325: fprintf (FILE, "\n"))
326:
327: /* Likewise for `char' and `short' constants. */
328:
329: #define ASM_OUTPUT_SHORT(FILE,VALUE) \
330: ( fprintf (FILE, "\tshort "), \
331: output_addr_const (FILE, (VALUE)), \
332: fprintf (FILE, "\n"))
333:
334: #define ASM_OUTPUT_CHAR(FILE,VALUE) \
335: ( fprintf (FILE, "\tbyte "), \
336: output_addr_const (FILE, (VALUE)), \
337: fprintf (FILE, "\n"))
338:
339: /* This is how to output an assembler line for a numeric constant byte. */
340:
341: #define ASM_OUTPUT_BYTE(FILE,VALUE) \
342: fprintf (FILE, "\tbyte 0x%x\n", (VALUE))
343:
344: #define ASM_OUTPUT_ADDR_VEC_ELT(FILE, VALUE) \
345: fprintf (FILE, "\tlong L%d\n", VALUE)
346:
347: #define ASM_OUTPUT_ADDR_DIFF_ELT(FILE, VALUE, REL) \
348: fprintf (FILE, "\tshort L%d-L%d\n", VALUE, REL)
349:
350: #define ASM_OUTPUT_ALIGN(FILE,LOG) \
351: if ((LOG) == 1) \
352: fprintf (FILE, "\tlalign 2\n"); \
353: else if ((LOG) != 0) \
354: abort ();
355:
356: #define ASM_OUTPUT_SKIP(FILE,SIZE) \
357: fprintf (FILE, "\tspace %d\n", (SIZE))
358:
359: #define ASM_OUTPUT_SOURCE_FILENAME(FILE, FILENAME)
360: #define ASM_OUTPUT_SOURCE_LINE(FILE, LINENO)
361:
362: #define PRINT_OPERAND(FILE, X, CODE) \
363: { if (CODE == '.') fprintf (FILE, "."); \
364: else if (CODE == '#') fprintf (FILE, "&"); \
365: else if (CODE == '-') fprintf (FILE, "-(%%sp)"); \
366: else if (CODE == '+') fprintf (FILE, "(%%sp)+"); \
367: else if (CODE == '@') fprintf (FILE, "(%%sp)"); \
368: else if (CODE == '!') fprintf (FILE, "%%cc"); \
369: else if (GET_CODE (X) == REG) \
370: fprintf (FILE, "%s", reg_names[REGNO (X)]); \
371: else if (GET_CODE (X) == MEM) \
372: output_address (XEXP (X, 0)); \
373: else if (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) == SFmode) \
374: { union { double d; int i[2]; } u; \
375: union { float f; int i; } u1; \
376: u.i[0] = CONST_DOUBLE_LOW (X); u.i[1] = CONST_DOUBLE_HIGH (X); \
377: u1.f = u.d; \
378: if (CODE == 'f') \
379: fprintf (FILE, "&0f%.9g", u1.f); \
380: else \
381: fprintf (FILE, "&0x%x", u1.i); } \
382: else if (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) == DFmode) \
383: { union { double d; int i[2]; } u; \
384: u.i[0] = CONST_DOUBLE_LOW (X); u.i[1] = CONST_DOUBLE_HIGH (X); \
385: fprintf (FILE, "&0f%.20g", u.d); } \
386: else { putc ('&', FILE); output_addr_const (FILE, X); }}
387:
388: #define PRINT_OPERAND_ADDRESS(FILE, ADDR) \
389: { register rtx reg1, reg2, breg, ireg; \
390: register rtx addr = ADDR; \
391: rtx offset; \
392: switch (GET_CODE (addr)) \
393: { \
394: case REG: \
395: fprintf (FILE, "(%s)", reg_names[REGNO (addr)]); \
396: break; \
397: case PRE_DEC: \
398: fprintf (FILE, "-(%s)", reg_names[REGNO (XEXP (addr, 0))]); \
399: break; \
400: case POST_INC: \
401: fprintf (FILE, "(%s)+", reg_names[REGNO (XEXP (addr, 0))]); \
402: break; \
403: case PLUS: \
404: reg1 = 0; reg2 = 0; \
405: ireg = 0; breg = 0; \
406: offset = 0; \
407: if (CONSTANT_ADDRESS_P (XEXP (addr, 0))) \
408: { \
409: offset = XEXP (addr, 0); \
410: addr = XEXP (addr, 1); \
411: } \
412: else if (CONSTANT_ADDRESS_P (XEXP (addr, 1))) \
413: { \
414: offset = XEXP (addr, 1); \
415: addr = XEXP (addr, 0); \
416: } \
417: if (GET_CODE (addr) != PLUS) ; \
418: else if (GET_CODE (XEXP (addr, 0)) == SIGN_EXTEND) \
419: { \
420: reg1 = XEXP (addr, 0); \
421: addr = XEXP (addr, 1); \
422: } \
423: else if (GET_CODE (XEXP (addr, 1)) == SIGN_EXTEND) \
424: { \
425: reg1 = XEXP (addr, 1); \
426: addr = XEXP (addr, 0); \
427: } \
428: else if (GET_CODE (XEXP (addr, 0)) == MULT) \
429: { \
430: reg1 = XEXP (addr, 0); \
431: addr = XEXP (addr, 1); \
432: } \
433: else if (GET_CODE (XEXP (addr, 1)) == MULT) \
434: { \
435: reg1 = XEXP (addr, 1); \
436: addr = XEXP (addr, 0); \
437: } \
438: else if (GET_CODE (XEXP (addr, 0)) == REG) \
439: { \
440: reg1 = XEXP (addr, 0); \
441: addr = XEXP (addr, 1); \
442: } \
443: else if (GET_CODE (XEXP (addr, 1)) == REG) \
444: { \
445: reg1 = XEXP (addr, 1); \
446: addr = XEXP (addr, 0); \
447: } \
448: if (GET_CODE (addr) == REG || GET_CODE (addr) == MULT \
449: || GET_CODE (addr) == SIGN_EXTEND) \
450: { if (reg1 == 0) reg1 = addr; else reg2 = addr; addr = 0; } \
451: /* for OLD_INDEXING \
452: else if (GET_CODE (addr) == PLUS) \
453: { \
454: if (GET_CODE (XEXP (addr, 0)) == REG) \
455: { \
456: reg2 = XEXP (addr, 0); \
457: addr = XEXP (addr, 1); \
458: } \
459: else if (GET_CODE (XEXP (addr, 1)) == REG) \
460: { \
461: reg2 = XEXP (addr, 1); \
462: addr = XEXP (addr, 0); \
463: } \
464: } \
465: */ \
466: if (offset != 0) { if (addr != 0) abort (); addr = offset; } \
467: if ((reg1 && (GET_CODE (reg1) == SIGN_EXTEND \
468: || GET_CODE (reg1) == MULT)) \
469: || (reg2 != 0 && REGNO_OK_FOR_BASE_P (REGNO (reg2)))) \
470: { breg = reg2; ireg = reg1; } \
471: else if (reg1 != 0 && REGNO_OK_FOR_BASE_P (REGNO (reg1))) \
472: { breg = reg1; ireg = reg2; } \
473: if (ireg != 0 && breg == 0 && GET_CODE (addr) == LABEL_REF) \
474: { int scale = 1; \
475: if (GET_CODE (ireg) == MULT) \
476: { scale = INTVAL (XEXP (ireg, 1)); \
477: ireg = XEXP (ireg, 0); } \
478: if (GET_CODE (ireg) == SIGN_EXTEND) \
479: fprintf (FILE, "L%d-LI%d(%%pc,%s.w", \
480: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
481: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
482: reg_names[REGNO (XEXP (ireg, 0))]); \
483: else \
484: fprintf (FILE, "L%d-LI%d(%%pc,%s.l", \
485: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
486: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
487: reg_names[REGNO (ireg)]); \
488: if (scale != 1) fprintf (FILE, "*%d", scale); \
489: putc (')', FILE); \
490: break; } \
491: if (ireg != 0 || breg != 0) \
492: { int scale = 1; \
493: if (breg == 0) \
494: abort (); \
495: if (addr != 0) \
496: output_addr_const (FILE, addr); \
497: fprintf (FILE, "(%s", reg_names[REGNO (breg)]); \
498: if (ireg != 0) \
499: putc (',', FILE); \
500: if (ireg != 0 && GET_CODE (ireg) == MULT) \
501: { scale = INTVAL (XEXP (ireg, 1)); \
502: ireg = XEXP (ireg, 0); } \
503: if (ireg != 0 && GET_CODE (ireg) == SIGN_EXTEND) \
504: fprintf (FILE, "%s.w", reg_names[REGNO (XEXP (ireg, 0))]); \
505: else if (ireg != 0) \
506: fprintf (FILE, "%s.l", reg_names[REGNO (ireg)]); \
507: if (scale != 1) fprintf (FILE, "*%d", scale); \
508: putc (')', FILE); \
509: break; \
510: } \
511: else if (reg1 != 0 && GET_CODE (addr) == LABEL_REF) \
512: { fprintf (FILE, "L%d-LI%d(%%pc,%s.w)", \
513: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
514: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
515: reg_names[REGNO (reg1)]); \
516: break; } \
517: default: \
518: if (GET_CODE (addr) == CONST_INT \
519: && INTVAL (addr) < 0x8000 \
520: && INTVAL (addr) >= -0x8000) \
521: fprintf (FILE, "%d.w", INTVAL (addr)); \
522: else \
523: output_addr_const (FILE, addr); \
524: }}
525:
526: #define ASM_OUTPUT_ASCII(f, p, size) \
527: { register int i; \
528: int inside; \
529: inside = FALSE; \
530: for (i = 0; i < size; i++) { \
531: if (i % 8 == 0) { \
532: if (i != 0) { \
533: if (inside) \
534: putc('"', f); \
535: putc('\n', f); \
536: inside = FALSE; \
537: } \
538: fprintf(f, "%s ", ASCII_DATA_ASM_OP); \
539: } \
540: if (p[i] < 32 || p[i] == '\\' || p[i] == '"' || p[i] == 127) { \
541: if (inside) { \
542: putc('"', f); \
543: inside = FALSE; \
544: } \
545: if (i % 8 != 0) \
546: putc(',', f); \
547: fprintf(f, "%d", p[i]); \
548: } else { \
549: if (!inside) { \
550: if (i % 8 != 0) \
551: putc(',', f); \
552: putc('"', f); \
553: inside = TRUE; \
554: } \
555: putc(p[i], f); \
556: } \
557: } \
558: if (inside) \
559: putc('"', f); \
560: putc('\n', f); \
561: }
562:
563: /* Translate Motorola opcodes such as `jbeq'
564: into SGS opcodes such as `beq.w'.
565: Delete the `e' in `move...' and `fmove'.
566: Change `ftst' to `ftest'. */
567:
568: #define ASM_OUTPUT_OPCODE(FILE, PTR) \
569: { if ((PTR)[0] == 'j' && (PTR)[1] == 'b') \
570: { ++(PTR); \
571: while (*(PTR) != ' ') \
572: { putc (*(PTR), (FILE)); ++(PTR); } \
573: fprintf ((FILE), ".w"); } \
574: else if ((PTR)[0] == 'f') \
575: { \
576: if (!strncmp ((PTR), "fmove", 5)) \
577: { fprintf ((FILE), "fmov"); (PTR) += 5; } \
578: else if (!strncmp ((PTR), "ftst", 4)) \
579: { fprintf ((FILE), "ftest"); (PTR) += 4; } \
580: } \
581: else if ((PTR)[0] == 'm' && (PTR)[1] == 'o' \
582: && (PTR)[2] == 'v' && (PTR)[3] == 'e') \
583: { fprintf ((FILE), "mov"); (PTR) += 4; } \
584: }
585:
586: /* Prevent output of `gcc_compiled.:'. */
587:
588: #define ASM_IDENTIFY_GCC(FILE)
589:
590: #else /* not HPUX_ASM */
591:
592: #undef FUNCTION_PROFILER
593: #define FUNCTION_PROFILER(FILE, LABELNO) \
594: fprintf (FILE, "\tmovl #LP%d,d0\n\tjsr mcount\n", (LABELNO));
595:
596: #endif /* not HPUX_ASM */
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