📄 news.h
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foffset + fsize, fmask); } \ if (frame_pointer_needed) \ fprintf (FILE, "\tunlk fp\n"); \ else if (fsize) \ { \ if (fsize + 4 < 0x8000) \ fprintf (FILE, "\tadd.w #%d,sp\n", fsize + 4); \ else \ fprintf (FILE, "\tadd.l #%d,sp\n", fsize + 4); \ } \ if (current_function_pops_args) \ fprintf (FILE, "\trtd #%d\n", current_function_pops_args); \ else fprintf (FILE, "\trts\n"); }/* Difference from m68k.h is in `fp' instead of `a6'. */#define REGISTER_NAMES \{"d0", "d1", "d2", "d3", "d4", "d5", "d6", "d7", \ "a0", "a1", "a2", "a3", "a4", "a5", "fp", "sp", \ "fp0", "fp1", "fp2", "fp3", "fp4", "fp5", "fp6", "fp7"}/* This is how to output an insn to push a register on the stack. It need not be very fast code. */#define ASM_OUTPUT_REG_PUSH(FILE,REGNO) \ fprintf (FILE, "\tmove.l %s,-(sp)\n", reg_names[REGNO])/* This is how to output an insn to pop a register from the stack. It need not be very fast code. */#define ASM_OUTPUT_REG_POP(FILE,REGNO) \ fprintf (FILE, "\tmove.l (sp)+,%s\n", reg_names[REGNO]) #define ASM_OUTPUT_DOUBLE(FILE,VALUE) \ fprintf (FILE, "\t.double 0d%.20e\n", (VALUE))#define ASM_OUTPUT_SKIP(FILE,SIZE) \ fprintf (FILE, "\t.space %u\n", (SIZE))#if 0/* The NEWS assembler in version 3.4 complains about fmove.d, but this macro proved not to work right. 3.4 is old, so forget about it. */#define ASM_OUTPUT_OPCODE(FILE, STRING) \{ \ if (!strncmp (STRING, "fmove.d", 7) \ && CONSTANT_P (operands[1])) \ { \ fprintf (FILE, "fmove.x"); \ STRING += 7; \ } \}#endif/* Store in OUTPUT a string (made with alloca) containing an assembler-name for a local static variable named NAME. LABELNO is an integer which is different for each call. */#define ASM_FORMAT_PRIVATE_NAME(OUTPUT, NAME, LABELNO) \( (OUTPUT) = (char *) alloca (strlen ((NAME)) + 13), \ sprintf ((OUTPUT), "%s$$$%d", (NAME), (LABELNO)))#define PRINT_OPERAND(FILE, X, CODE) \{ if (CODE == '.') fprintf (FILE, "."); \ else if (CODE == '#') fprintf (FILE, "#"); \ else if (CODE == '-') fprintf (FILE, "-(sp)"); \ else if (CODE == '+') fprintf (FILE, "(sp)+"); \ else if (CODE == '@') fprintf (FILE, "(sp)"); \ else if (CODE == '!') fprintf (FILE, "fpcr"); \ else if (CODE == '$') {if (TARGET_68040_ONLY) fprintf (FILE, "s");} \ else if (CODE == '&') {if (TARGET_68040_ONLY) fprintf (FILE, "d");} \ else if (GET_CODE (X) == REG) \ fprintf (FILE, "%s", reg_names[REGNO (X)]); \ else if (GET_CODE (X) == MEM) \ output_address (XEXP (X, 0)); \ else if (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) == SFmode) \ { union { double d; int i[2]; } u; \ union { float f; int i; } u1; \ u.i[0] = CONST_DOUBLE_LOW (X); u.i[1] = CONST_DOUBLE_HIGH (X); \ u1.f = u.d; \ if (CODE == 'f') \ fprintf (FILE, "#0f%.9e", u1.f); \ else \ fprintf (FILE, "#0x%x", u1.i); } \ else if (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) != DImode) \ { union { double d; int i[2]; } u; \ u.i[0] = CONST_DOUBLE_LOW (X); u.i[1] = CONST_DOUBLE_HIGH (X); \ fprintf (FILE, "#0d%.20e", u.d); } \ else if (CODE == 'b') output_addr_const (FILE, X); \ else { putc ('#', FILE); output_addr_const (FILE, X); }}#define PRINT_OPERAND_ADDRESS(FILE, ADDR) \{ register rtx reg1, reg2, breg, ireg; \ register rtx addr = ADDR; \ rtx offset; \ switch (GET_CODE (addr)) \ { \ case REG: \ fprintf (FILE, "(%s)", reg_names[REGNO (addr)]); \ break; \ case PRE_DEC: \ fprintf (FILE, "-(%s)", reg_names[REGNO (XEXP (addr, 0))]); \ break; \ case POST_INC: \ fprintf (FILE, "(%s)+", reg_names[REGNO (XEXP (addr, 0))]); \ break; \ case PLUS: \ reg1 = 0; reg2 = 0; \ ireg = 0; breg = 0; \ offset = 0; \ if (CONSTANT_ADDRESS_P (XEXP (addr, 0))) \ { \ offset = XEXP (addr, 0); \ addr = XEXP (addr, 1); \ } \ else if (CONSTANT_ADDRESS_P (XEXP (addr, 1))) \ { \ offset = XEXP (addr, 1); \ addr = XEXP (addr, 0); \ } \ if (GET_CODE (addr) != PLUS) ; \ else if (GET_CODE (XEXP (addr, 0)) == SIGN_EXTEND) \ { \ reg1 = XEXP (addr, 0); \ addr = XEXP (addr, 1); \ } \ else if (GET_CODE (XEXP (addr, 1)) == SIGN_EXTEND) \ { \ reg1 = XEXP (addr, 1); \ addr = XEXP (addr, 0); \ } \ else if (GET_CODE (XEXP (addr, 0)) == MULT) \ { \ reg1 = XEXP (addr, 0); \ addr = XEXP (addr, 1); \ } \ else if (GET_CODE (XEXP (addr, 1)) == MULT) \ { \ reg1 = XEXP (addr, 1); \ addr = XEXP (addr, 0); \ } \ else if (GET_CODE (XEXP (addr, 0)) == REG) \ { \ reg1 = XEXP (addr, 0); \ addr = XEXP (addr, 1); \ } \ else if (GET_CODE (XEXP (addr, 1)) == REG) \ { \ reg1 = XEXP (addr, 1); \ addr = XEXP (addr, 0); \ } \ if (GET_CODE (addr) == REG || GET_CODE (addr) == MULT \ || GET_CODE (addr) == SIGN_EXTEND) \ { if (reg1 == 0) reg1 = addr; else reg2 = addr; addr = 0; } \ if (offset != 0) { if (addr != 0) abort (); addr = offset; } \ if ((reg1 && (GET_CODE (reg1) == SIGN_EXTEND \ || GET_CODE (reg1) == MULT)) \ || (reg2 != 0 && REGNO_OK_FOR_BASE_P (REGNO (reg2)))) \ { breg = reg2; ireg = reg1; } \ else if (reg1 != 0 && REGNO_OK_FOR_BASE_P (REGNO (reg1))) \ { breg = reg1; ireg = reg2; } \ if (ireg != 0 && breg == 0 && GET_CODE (addr) == LABEL_REF) \ { int scale = 1; \ if (GET_CODE (ireg) == MULT) \ { scale = INTVAL (XEXP (ireg, 1)); \ ireg = XEXP (ireg, 0); } \ if (GET_CODE (ireg) == SIGN_EXTEND) \ fprintf (FILE, "(L%d.b,pc,%s.w", \ CODE_LABEL_NUMBER (XEXP (addr, 0)), \ reg_names[REGNO (XEXP (ireg, 0))]); \ else \ fprintf (FILE, "(L%d.b,pc,%s.l", \ CODE_LABEL_NUMBER (XEXP (addr, 0)), \ reg_names[REGNO (ireg)]); \ if (scale != 1) fprintf (FILE, "*%d", scale); \ putc (')', FILE); \ break; } \ if (breg != 0 && ireg == 0 && GET_CODE (addr) == LABEL_REF) \ { fprintf (FILE, "(L%d.b,pc,%s.l", \ CODE_LABEL_NUMBER (XEXP (addr, 0)), \ reg_names[REGNO (breg)]); \ putc (')', FILE); \ break; } \ if (ireg != 0 || breg != 0) \ { int scale = 1; \ if (breg == 0) \ abort (); \ if (addr && GET_CODE (addr) == LABEL_REF) abort (); \ fprintf (FILE, "("); \ if (addr != 0) { \ output_addr_const (FILE, addr); \ putc (',', FILE); } \ fprintf (FILE, "%s", reg_names[REGNO (breg)]); \ if (ireg != 0) \ putc (',', FILE); \ if (ireg != 0 && GET_CODE (ireg) == MULT) \ { scale = INTVAL (XEXP (ireg, 1)); \ ireg = XEXP (ireg, 0); } \ if (ireg != 0 && GET_CODE (ireg) == SIGN_EXTEND) \ fprintf (FILE, "%s.w", reg_names[REGNO (XEXP (ireg, 0))]); \ else if (ireg != 0) \ fprintf (FILE, "%s.l", reg_names[REGNO (ireg)]); \ if (scale != 1) fprintf (FILE, "*%d", scale); \ putc (')', FILE); \ break; \ } \ else if (reg1 != 0 && GET_CODE (addr) == LABEL_REF) \ { fprintf (FILE, "(L%d.b,pc,%s.l)", \ CODE_LABEL_NUMBER (XEXP (addr, 0)), \ reg_names[REGNO (reg1)]); \ break; } \ default: \ if (GET_CODE (addr) == CONST_INT \ && INTVAL (addr) < 0x8000 \ && INTVAL (addr) >= -0x8000) \ fprintf (FILE, "%d.w", INTVAL (addr)); \ else \ output_addr_const (FILE, addr); \ }}#else /* Using GAS, which uses the MIT assembler syntax, like a Sun. */#define FUNCTION_PROFILER(FILE, LABEL_NO) \ fprintf (FILE, "\tmovl #LP%d,d0\n\tjsr mcount\n", (LABEL_NO));#endif /* MOTOROLA */
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