|
|
1.1 root 1: /* Definitions of target machine for GNU compiler.
2: AT&T UNIX PC version (pc7300, 3b1)
1.1.1.3 ! root 3: Written by Alex Crain ([email protected]).
1.1 root 4:
1.1.1.3 ! root 5: Copyright (C) 1987, 1993 Free Software Foundation, Inc.
1.1 root 6:
7: This file is part of GNU CC.
8:
9: GNU CC 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: GNU CC 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 GNU CC; see the file COPYING. If not, write to
21: the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
22:
23: #define SGS_SWITCH_TABLES /* Different switch table handling */
24:
25: #include "m68k/hp320.h"
26:
27: /* See m68k.h. 0 means 680[01]0 with no 68881. */
28:
29: #undef TARGET_DEFAULT
30: #define TARGET_DEFAULT 0
31:
32: /* Don't try using XFmode. */
33: #undef LONG_DOUBLE_TYPE_SIZE
34: #define LONG_DOUBLE_TYPE_SIZE 64
35:
36: /* -m68020 requires special flags to the assembler. */
37:
38: #undef ASM_SPEC
39: #define ASM_SPEC "%{m68020:-68020}%{!m68020:-68010} %{m68881:-68881}"
40:
41: /* we use /lib/libp/lib* when profiling */
42:
43: #undef LIB_SPEC
44: #define LIB_SPEC "%{!shlib:%{p:-L/lib/libp} %{pg:-L/lib/libp} -lc}"
45:
46: /* shared libraries need to use crt0s.o */
47:
48: #undef STARTFILE_SPEC
49: #define STARTFILE_SPEC \
50: "%{!shlib:%{pg:mcrt0.o%s}%{!pg:%{p:mcrt0.o%s}%{!p:crt0.o%s}}}\
51: %{shlib:crt0s.o%s shlib.ifile%s} "
52:
53: /* cpp has to support a #sccs directive for the /usr/include files */
54:
55: #define SCCS_DIRECTIVE
56:
57: /* Make output for SDB. */
58:
59: #define SDB_DEBUGGING_INFO
60:
61: /* The .file command should always begin the output. */
62:
63: #undef ASM_FILE_START
64: #define ASM_FILE_START(FILE) \
65: output_file_directive ((FILE), main_input_filename)
66:
67: /* Don't try to define `gcc_compiled.' since the assembler might not
68: accept symbols with periods and GDB doesn't run on this machine anyway. */
69: #define ASM_IDENTIFY_GCC(FILE)
70:
71: /* Define __HAVE_68881__ in preprocessor if -m68881 is specified.
72: This will control the use of inline 68881 insns in certain macros. */
73:
74: #undef CPP_SPEC
75: #define CPP_SPEC "%{m68881:-D__HAVE_68881__}"
76:
77: /* Names to predefine in the preprocessor for this target machine. */
78: /* [email protected] says mc68000 and m68k should not be here. */
79:
80: #undef CPP_PREDEFINES
1.1.1.2 root 81: #define CPP_PREDEFINES "-Dmc68k -Dunix -Dunixpc -D__motorola__ -Asystem(unix) -Asystem(svr3) -Acpu(m68k) -Amachine(m68k)"
1.1 root 82:
83: #undef REGISTER_NAMES
84: #define REGISTER_NAMES \
85: {"%d0", "%d1", "%d2", "%d3", "%d4", "%d5", "%d6", "%d7", \
86: "%a0", "%a1", "%a2", "%a3", "%a4", "%a5", "%fp", "%sp", \
87: "%f0", "%f1", "%f2", "%f3", "%f4", "%f5", "%f6", "%f7"}
88:
89: /* Specify how to pad function arguments.
90: Value should be `upward', `downward' or `none'.
91: Same as the default, except no padding for large or variable-size args. */
92:
93: #define FUNCTION_ARG_PADDING(MODE, TYPE) \
94: (((MODE) == BLKmode \
95: ? ((TYPE) && TREE_CODE (TYPE_SIZE (TYPE)) == INTEGER_CST \
96: && int_size_in_bytes (TYPE) < PARM_BOUNDARY / BITS_PER_UNIT) \
97: : GET_MODE_BITSIZE (MODE) < PARM_BOUNDARY) \
98: ? downward : none)
99:
100: /* Override part of the obstack macros. */
101:
102: #define __PTR_TO_INT(P) ((int)(P))
103: #define __INT_TO_PTR(P) ((char *)(P))
104:
105: /* The 3b1 does not have `atexit'. */
106:
107: #undef HAVE_ATEXIT
108:
109: /* Override parts of m68k.h to fit the SGS-3b1 assembler. */
110:
111: #undef TARGET_VERSION
112: #undef ASM_FORMAT_PRIVATE_NAME
113: #undef ASM_OUTPUT_DOUBLE
114: #undef ASM_OUTPUT_FLOAT
115: #undef ASM_OUTPUT_ALIGN
116: #undef ASM_OUTPUT_SOURCE_FILENAME
117: #undef ASM_OUTPUT_SOURCE_LINE
118: #undef PRINT_OPERAND_ADDRESS
119: #undef ASM_GENERATE_INTERNAL_LABEL
120: #undef FUNCTION_PROFILER
121: #undef ASM_OUTPUT_ADDR_VEC_ELT
122: #undef ASM_OUTPUT_ADDR_DIFF_ELT
123: #undef ASM_OUTPUT_INTERNAL_LABEL
124: #undef ASM_OUTPUT_OPCODE
125: #undef ASM_OUTPUT_LOCAL
126: #undef ASM_OUTPUT_LABELREF
127: #undef ASM_OUTPUT_ASCII
128:
129: #define TARGET_VERSION fprintf (stderr, " (68k, SGS/AT&T unixpc syntax)");
130:
131: /* Store in OUTPUT a string (made with alloca) containing
132: an assembler-name for a local static variable named NAME.
133: LABELNO is an integer which is different for each call. */
134:
135: #define ASM_FORMAT_PRIVATE_NAME(OUTPUT, NAME, LABELNO) \
136: ( (OUTPUT) = (char *) alloca (strlen ((NAME)) + 12), \
137: sprintf ((OUTPUT), "%s_%%%d", (NAME), (LABELNO)))
138:
139: /* The unixpc doesn't know about double's and float's */
140:
141: #define ASM_OUTPUT_DOUBLE(FILE,VALUE) \
142: do { long l[2]; \
143: REAL_VALUE_TO_TARGET_DOUBLE (VALUE, l); \
144: fprintf (FILE, "\tlong 0x%x,0x%x\n", l[0], l[1]); \
145: } while (0)
146:
147: #undef ASM_OUTPUT_LONG_DOUBLE
148: #define ASM_OUTPUT_LONG_DOUBLE(FILE,VALUE) \
149: do { long l[3]; \
150: REAL_VALUE_TO_TARGET_LONG_DOUBLE (VALUE, l); \
151: fprintf (FILE, "\tlong 0x%x,0x%x,0x%x\n", l[0], l[1], l[2]); \
152: } while (0)
153:
154: /* This is how to output an assembler line defining a `float' constant. */
155:
156: #define ASM_OUTPUT_FLOAT(FILE,VALUE) \
157: do { long l; \
158: REAL_VALUE_TO_TARGET_SINGLE (VALUE, l); \
159: fprintf ((FILE), "\tlong 0x%x\n", l); \
160: } while (0)
161:
162: #define ASM_OUTPUT_ALIGN(FILE,LOG) \
163: if ((LOG) == 1) \
164: fprintf (FILE, "\teven\n"); \
165: else if ((LOG) != 0) \
166: abort ();
167:
168: /* This is how to output an assembler line
169: that says to advance the location counter by SIZE bytes. */
170:
171: #undef ASM_OUTPUT_SKIP
172: #define ASM_OUTPUT_SKIP(FILE,SIZE) \
173: fprintf (FILE, "\tspace %d\n", (SIZE))
174:
175: /* Can't use ASM_OUTPUT_SKIP in text section; it doesn't leave 0s. */
176:
177: #define ASM_NO_SKIP_IN_TEXT 1
178:
179: /* The beginnings of sdb support... */
180:
181: #define ASM_OUTPUT_SOURCE_FILENAME(FILE, FILENAME) \
1.1.1.2 root 182: do { fprintf (FILE, "\tfile\t"); \
183: output_quoted_string (FILE, FILENAME); \
184: fprintf (FILE, "\n"); \
185: } while (0)
1.1 root 186:
187: #define ASM_OUTPUT_SOURCE_LINE(FILE, LINENO) \
188: fprintf (FILE, "\tln\t%d\n", \
189: (sdb_begin_function_line \
190: ? last_linenum - sdb_begin_function_line : 1))
191:
192: /* Yet another null terminated string format. */
193:
194: #define ASM_OUTPUT_ASCII(FILE,PTR,LEN) \
1.1.1.3 ! root 195: do { register int sp = 0, lp = 0; \
1.1 root 196: fprintf ((FILE), "\tbyte\t"); \
197: loop: \
198: if ((PTR)[sp] > ' ' && ! ((PTR)[sp] & 0x80) && (PTR)[sp] != '\\') \
199: { lp += 3; \
200: fprintf ((FILE), "'%c", (PTR)[sp]); } \
201: else \
202: { lp += 5; \
203: fprintf ((FILE), "0x%x", (PTR)[sp]); } \
204: if (++sp < (LEN)) \
205: { if (lp > 60) \
206: { lp = 0; \
207: fprintf ((FILE), "\n\t%s ", ASCII_DATA_ASM_OP); } \
208: else \
209: putc (',', (FILE)); \
210: goto loop; } \
1.1.1.3 ! root 211: putc ('\n', (FILE)); } while (0)
1.1 root 212:
213: /* Note that in the case of the movhi which fetches an element of
214: an ADDR_DIFF_VEC the offset output is too large by 2.
215: This is because the 3b1 assembler refuses to subtract 2.
216: ASM_OUTPUT_CASE_LABEL, below, compensates for this. */
217:
218: #define PRINT_OPERAND_ADDRESS(FILE, ADDR) \
219: { register rtx reg1, reg2, breg, ireg; \
220: register rtx addr = ADDR; \
221: rtx offset; \
222: switch (GET_CODE (addr)) \
223: { \
224: case REG: \
225: fprintf (FILE, "(%s)", reg_names[REGNO (addr)]); \
226: break; \
227: case PRE_DEC: \
228: fprintf (FILE, "-(%s)", reg_names[REGNO (XEXP (addr, 0))]); \
229: break; \
230: case POST_INC: \
231: fprintf (FILE, "(%s)+", reg_names[REGNO (XEXP (addr, 0))]); \
232: break; \
233: case PLUS: \
234: reg1 = 0; reg2 = 0; \
235: ireg = 0; breg = 0; \
236: offset = 0; \
237: if (CONSTANT_ADDRESS_P (XEXP (addr, 0))) \
238: { \
239: offset = XEXP (addr, 0); \
240: addr = XEXP (addr, 1); \
241: } \
242: else if (CONSTANT_ADDRESS_P (XEXP (addr, 1))) \
243: { \
244: offset = XEXP (addr, 1); \
245: addr = XEXP (addr, 0); \
246: } \
247: if (GET_CODE (addr) != PLUS) ; \
248: else if (GET_CODE (XEXP (addr, 0)) == SIGN_EXTEND) \
249: { \
250: reg1 = XEXP (addr, 0); \
251: addr = XEXP (addr, 1); \
252: } \
253: else if (GET_CODE (XEXP (addr, 1)) == SIGN_EXTEND) \
254: { \
255: reg1 = XEXP (addr, 1); \
256: addr = XEXP (addr, 0); \
257: } \
258: else if (GET_CODE (XEXP (addr, 0)) == MULT) \
259: { \
260: reg1 = XEXP (addr, 0); \
261: addr = XEXP (addr, 1); \
262: } \
263: else if (GET_CODE (XEXP (addr, 1)) == MULT) \
264: { \
265: reg1 = XEXP (addr, 1); \
266: addr = XEXP (addr, 0); \
267: } \
268: else if (GET_CODE (XEXP (addr, 0)) == REG) \
269: { \
270: reg1 = XEXP (addr, 0); \
271: addr = XEXP (addr, 1); \
272: } \
273: else if (GET_CODE (XEXP (addr, 1)) == REG) \
274: { \
275: reg1 = XEXP (addr, 1); \
276: addr = XEXP (addr, 0); \
277: } \
278: if (GET_CODE (addr) == REG || GET_CODE (addr) == MULT \
279: || GET_CODE (addr) == SIGN_EXTEND) \
280: { if (reg1 == 0) reg1 = addr; else reg2 = addr; addr = 0; } \
281: /* for OLD_INDEXING \
282: else if (GET_CODE (addr) == PLUS) \
283: { \
284: if (GET_CODE (XEXP (addr, 0)) == REG) \
285: { \
286: reg2 = XEXP (addr, 0); \
287: addr = XEXP (addr, 1); \
288: } \
289: else if (GET_CODE (XEXP (addr, 1)) == REG) \
290: { \
291: reg2 = XEXP (addr, 1); \
292: addr = XEXP (addr, 0); \
293: } \
294: } \
295: */ \
296: if (offset != 0) { if (addr != 0) abort (); addr = offset; } \
297: if ((reg1 && (GET_CODE (reg1) == SIGN_EXTEND \
298: || GET_CODE (reg1) == MULT)) \
299: || (reg2 != 0 && REGNO_OK_FOR_BASE_P (REGNO (reg2)))) \
300: { breg = reg2; ireg = reg1; } \
301: else if (reg1 != 0 && REGNO_OK_FOR_BASE_P (REGNO (reg1))) \
302: { breg = reg1; ireg = reg2; } \
303: if (ireg != 0 && breg == 0 && GET_CODE (addr) == LABEL_REF) \
304: { int scale = 1; \
305: if (GET_CODE (ireg) == MULT) \
306: { scale = INTVAL (XEXP (ireg, 1)); \
307: ireg = XEXP (ireg, 0); } \
308: if (GET_CODE (ireg) == SIGN_EXTEND) \
309: fprintf (FILE, "LD%%%d(%%pc,%s.w", \
310: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
311: reg_names[REGNO (XEXP (ireg, 0))]); \
312: else \
313: fprintf (FILE, "LD%%%d(%%pc,%s.l", \
314: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
315: reg_names[REGNO (ireg)]); \
316: if (scale != 1) fprintf (FILE, "*%d", scale); \
317: fprintf (FILE, ")"); \
318: break; } \
319: if (breg != 0 && ireg == 0 && GET_CODE (addr) == LABEL_REF) \
320: { fprintf (FILE, "LD%%%d(%%pc,%s.l", \
321: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
322: reg_names[REGNO (breg)]); \
323: putc (')', FILE); \
324: break; } \
325: if (ireg != 0 || breg != 0) \
326: { int scale = 1; \
327: if (breg == 0) \
328: abort (); \
329: if (addr != 0) \
330: output_addr_const (FILE, addr); \
331: fprintf (FILE, "(%s", reg_names[REGNO (breg)]); \
332: if (ireg != 0) \
333: putc (',', FILE); \
334: if (ireg != 0 && GET_CODE (ireg) == MULT) \
335: { scale = INTVAL (XEXP (ireg, 1)); \
336: ireg = XEXP (ireg, 0); } \
337: if (ireg != 0 && GET_CODE (ireg) == SIGN_EXTEND) \
338: fprintf (FILE, "%s.w", reg_names[REGNO (XEXP (ireg, 0))]); \
339: else if (ireg != 0) \
340: fprintf (FILE, "%s.l", reg_names[REGNO (ireg)]); \
341: if (scale != 1) fprintf (FILE, "*%d", scale); \
342: putc (')', FILE); \
343: break; \
344: } \
345: else if (reg1 != 0 && GET_CODE (addr) == LABEL_REF) \
346: { fprintf (FILE, "LD%%%d(%%pc,%s.w)", \
347: CODE_LABEL_NUMBER (XEXP (addr, 0)), \
348: reg_names[REGNO (reg1)]); \
349: break; } \
350: default: \
351: if (GET_CODE (addr) == CONST_INT \
352: && INTVAL (addr) < 0x8000 \
353: && INTVAL (addr) >= -0x8000) \
354: fprintf (FILE, "%d", INTVAL (addr)); \
355: else \
356: output_addr_const (FILE, addr); \
357: }}
358:
359: #define ASM_GENERATE_INTERNAL_LABEL(LABEL, PREFIX, NUM) \
360: sprintf ((LABEL), "%s%%%d", (PREFIX), (NUM))
361:
362: #define ASM_OUTPUT_INTERNAL_LABEL(FILE,PREFIX,NUM) \
363: fprintf (FILE, "%s%%%d:\n", PREFIX, NUM)
364:
365: /* Must put address in %a0 , not %d0 . -- LGM, 7/15/88 */
366: #define FUNCTION_PROFILER(FILE, LABEL_NO) \
367: fprintf (FILE, "\tmov.l &LP%%%d,%%a0\n\tjsr mcount\n", (LABEL_NO))
368:
369: #define ASM_OUTPUT_ADDR_VEC_ELT(FILE, VALUE) \
370: fprintf (FILE, "\tlong L%%%d\n", (VALUE))
371:
372: #define ASM_OUTPUT_ADDR_DIFF_ELT(FILE, VALUE, REL) \
373: fprintf (FILE, "\tshort L%%%d-L%%%d\n", (VALUE), (REL))
374:
375: /* ihnp4!lmayk!lgm says that `short 0' triggers assembler bug;
376: `short L%nn-L%nn' supposedly works. */
377: #define ASM_OUTPUT_CASE_LABEL(FILE,PREFIX,NUM,TABLE) \
378: if (! RTX_INTEGRATED_P (TABLE)) \
379: fprintf (FILE, "\tswbeg &%d\n%s%%%d:\n", \
380: XVECLEN (PATTERN (TABLE), 1), (PREFIX), (NUM)); \
381: else \
382: fprintf (FILE, "\tswbeg &%d\n%s%%%d:\n\tshort %s%%%d-%s%%%d\n", \
383: XVECLEN (PATTERN (TABLE), 1) + 1, (PREFIX), (NUM), \
384: (PREFIX), (NUM), (PREFIX), (NUM))
385:
386: /* At end of a switch table, define LDnnn iff the symbol LInnn was defined.
387: Some SGS assemblers have a bug such that "Lnnn-LInnn-2.b(pc,d0.l*2)"
388: fails to assemble. Luckily "LDnnn(pc,d0.l*2)" produces the results
389: we want. This difference can be accommodated by making the assembler
390: define such "LDnnn" to be either "Lnnn-LInnn-2.b", "Lnnn", or any other
391: string, as necessary. This is accomplished via the ASM_OUTPUT_CASE_END
392: macro. */
393:
394: #define ASM_OUTPUT_CASE_END(FILE,NUM,TABLE) \
395: { if (switch_table_difference_label_flag) \
396: fprintf (FILE, "\tset LD%%%d,L%%%d-LI%%%d\n", (NUM), (NUM), (NUM)); \
397: switch_table_difference_label_flag = 0; }
398:
399: int switch_table_difference_label_flag;
400:
401: #define ASM_OUTPUT_OPCODE(FILE, PTR) \
402: { if ((PTR)[0] == 'j' && (PTR)[1] == 'b') \
403: { ++(PTR); \
404: while (*(PTR) != ' ') \
405: { putc (*(PTR), (FILE)); ++(PTR); } \
406: fprintf ((FILE), ".w"); } \
407: else if ((PTR)[0] == 's') \
408: { \
409: if (!strncmp ((PTR), "swap", 4)) \
410: { fprintf ((FILE), "swap.w"); (PTR) += 4; } \
411: } \
412: else if ((PTR)[0] == 'f') \
413: { \
414: if (!strncmp ((PTR), "fmove", 5)) \
415: { fprintf ((FILE), "fmov"); (PTR) += 5; } \
416: else if (!strncmp ((PTR), "fbne", 4)) \
417: { fprintf ((FILE), "fbneq"); (PTR) += 4; } \
418: } \
419: /* MOVE, MOVEA, MOVEQ, MOVEC ==> MOV */ \
420: else if ((PTR)[0] == 'm' && (PTR)[1] == 'o' \
421: && (PTR)[2] == 'v' && (PTR)[3] == 'e') \
422: { fprintf ((FILE), "mov"); (PTR) += 4; \
423: if ((PTR)[0] == 'q' || (PTR)[0] == 'a' \
424: || (PTR)[0] == 'c') (PTR)++; } \
425: /* SUB, SUBQ, SUBA, SUBI ==> SUB */ \
426: else if ((PTR)[0] == 's' && (PTR)[1] == 'u' \
427: && (PTR)[2] == 'b') \
428: { fprintf ((FILE), "sub"); (PTR) += 3; \
429: if ((PTR)[0] == 'q' || (PTR)[0] == 'i' \
430: || (PTR)[0] == 'a') (PTR)++; } \
431: /* CMP, CMPA, CMPI, CMPM ==> CMP */ \
432: else if ((PTR)[0] == 'c' && (PTR)[1] == 'm' \
433: && (PTR)[2] == 'p') \
434: { fprintf ((FILE), "cmp"); (PTR) += 3; \
435: if ((PTR)[0] == 'a' || (PTR)[0] == 'i' \
436: || (PTR)[0] == 'm') (PTR)++; } \
437: }
438:
439: #define ASM_OUTPUT_LOCAL(FILE, NAME, SIZE, ROUNDED) \
440: ( fputs ("\tlcomm ", (FILE)), \
441: assemble_name ((FILE), (NAME)), \
442: fprintf ((FILE), ",%u\n", (ROUNDED)))
443:
444: #define ASM_OUTPUT_LABELREF(FILE,NAME) \
445: fprintf (FILE, "%s", NAME)
446:
447: /* Override usual definitions of SDB output macros.
448: These definitions differ only in the absence of the period
449: at the beginning of the name of the directive
450: and in the use of `~' as the symbol for the current location. */
451:
452: #define PUT_SDB_SCL(a) fprintf(asm_out_file, "\tscl\t%d;", (a))
453: #define PUT_SDB_INT_VAL(a) fprintf (asm_out_file, "\tval\t%d;", (a))
454: #define PUT_SDB_VAL(a) \
455: ( fputs ("\tval\t", asm_out_file), \
456: output_addr_const (asm_out_file, (a)), \
457: fputc (';', asm_out_file))
458:
459: #define PUT_SDB_DEF(a) \
460: do { fprintf (asm_out_file, "\tdef\t"); \
461: ASM_OUTPUT_LABELREF (asm_out_file, a); \
462: fprintf (asm_out_file, ";"); } while (0)
463:
464: #define PUT_SDB_PLAIN_DEF(a) fprintf(asm_out_file,"\tdef\t~%s;",a)
465: #define PUT_SDB_ENDEF fputs("\tendef\n", asm_out_file)
466: #define PUT_SDB_TYPE(a) fprintf(asm_out_file, "\ttype\t0%o;", a)
467: #define PUT_SDB_SIZE(a) fprintf(asm_out_file, "\tsize\t%d;", a)
468: #define PUT_SDB_START_DIM fprintf(asm_out_file, "\tdim\t")
469:
470: #define PUT_SDB_TAG(a) \
471: do { fprintf (asm_out_file, "\ttag\t"); \
472: ASM_OUTPUT_LABELREF (asm_out_file, a); \
473: fprintf (asm_out_file, ";"); } while (0)
474:
475: #define PUT_SDB_BLOCK_START(LINE) \
476: fprintf (asm_out_file, \
477: "\tdef\t~bb;\tval\t~;\tscl\t100;\tline\t%d;\tendef\n", \
478: (LINE))
479:
480: #define PUT_SDB_BLOCK_END(LINE) \
481: fprintf (asm_out_file, \
482: "\tdef\t~eb;\tval\t~;\tscl\t100;\tline\t%d;\tendef\n", \
483: (LINE))
484:
485: #define PUT_SDB_FUNCTION_START(LINE) \
486: fprintf (asm_out_file, \
487: "\tdef\t~bf;\tval\t~;\tscl\t101;\tline\t%d;\tendef\n", \
488: (LINE))
489:
490: #define PUT_SDB_FUNCTION_END(LINE) \
491: fprintf (asm_out_file, \
492: "\tdef\t~ef;\tval\t~;\tscl\t101;\tline\t%d;\tendef\n", \
493: (LINE))
494:
495: #define PUT_SDB_EPILOGUE_END(NAME) \
496: fprintf (asm_out_file, \
497: "\tdef\t%s;\tval\t~;\tscl\t-1;\tendef\n", \
498: (NAME))
499:
500: #define SDB_GENERATE_FAKE(BUFFER, NUMBER) \
501: sprintf ((BUFFER), "~%dfake", (NUMBER));
502:
503: /* Define subroutines to call to handle multiply, divide, and remainder.
504: Use the subroutines that the 3b1's library provides.
505: The `*' prevents an underscore from being prepended by the compiler. */
506:
507: #define DIVSI3_LIBCALL "*ldiv"
508: #define UDIVSI3_LIBCALL "*uldiv"
509: #define MODSI3_LIBCALL "*lrem"
510: #define UMODSI3_LIBCALL "*ulrem"
511: #define MULSI3_LIBCALL "*lmul"
512: #define UMULSI3_LIBCALL "*ulmul"
1.1.1.2 root 513:
514: /* Definitions for collect2. */
515:
516: #define OBJECT_FORMAT_COFF
517: #define NO_SYS_SIGLIST
518: #define MY_ISCOFF(magic) \
519: ((magic) == MC68KWRMAGIC || (magic) == MC68KROMAGIC || (magic) == MC68KPGMAGIC)
This archive runs on limited infrastructure. Preserving old code on modern bandwidth. Automated agents are requested to crawl responsibly.