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1.1 root 1: /* Definitions for Unix assembler syntax for the Intel 80386. 1.1.1.2 ! root 2: Copyright (C) 1988, 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 18: the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */ 19: 20: /* This file defines the aspects of assembler syntax 21: that are the same for all the i386 Unix systems 22: (though they may differ in non-Unix systems). */ 23: 24: /* Define some concatenation macros to concatenate an opcode 25: and one, two or three operands. In other assembler syntaxes 26: they may alter the order of ther operands. */ 27: 28: /* Note that the other files fail to use these 29: in some of the places where they should. */ 30: 1.1.1.2 ! root 31: #if defined(__STDC__) || defined(ALMOST_STDC) 1.1 root 32: #define AS2(a,b,c) #a " " #b "," #c 1.1.1.2 ! root 33: #define AS2C(b,c) " " #b "," #c 1.1 root 34: #define AS3(a,b,c,d) #a " " #b "," #c "," #d 35: #define AS1(a,b) #a " " #b 36: #else 37: #define AS1(a,b) "a b" 38: #define AS2(a,b,c) "a b,c" 1.1.1.2 ! root 39: #define AS2C(b,c) " b,c" 1.1 root 40: #define AS3(a,b,c,d) "a b,c,d" 41: #endif 42: 43: /* Define macro used to output shift-double opcodes when the shift 44: count is in %cl. Some assemblers require %cl as an argument; 45: some don't. This macro controls what to do: by default, don't 46: print %cl. */ 47: #define AS3_SHIFT_DOUBLE(a,b,c,d) AS2 (a,c,d) 48: 49: /* Output the size-letter for an opcode. 50: CODE is the letter used in an operand spec (L, B, W, S or Q). 51: CH is the corresponding lower case letter 52: (except if CODE is `Q' then CH is `l', unless GAS_MNEMONICS). */ 53: #define PUT_OP_SIZE(CODE,CH,FILE) putc (CH,(FILE)) 54: 55: /* Opcode suffix for fullword insn. */ 56: #define L_SIZE "l" 57: 58: /* Prefix for register names in this syntax. */ 59: #define RP "%" 60: 61: /* Prefix for immediate operands in this syntax. */ 62: #define IP "$" 63: 64: /* Indirect call instructions should use `*'. */ 65: #define USE_STAR 1 66: 67: /* Prefix for a memory-operand X. */ 68: #define PRINT_PTR(X, FILE) 69: 70: /* Delimiters that surround base reg and index reg. */ 71: #define ADDR_BEG(FILE) putc('(', (FILE)) 72: #define ADDR_END(FILE) putc(')', (FILE)) 73: 74: /* Print an index register (whose rtx is IREG). */ 75: #define PRINT_IREG(FILE,IREG) \ 76: do \ 77: { fputs (",", (FILE)); PRINT_REG ((IREG), 0, (FILE)); } \ 78: while (0) 79: 80: /* Print an index scale factor SCALE. */ 81: #define PRINT_SCALE(FILE,SCALE) \ 82: if ((SCALE) != 1) fprintf ((FILE), ",%d", (SCALE)) 83: 84: /* Print a base/index combination. 85: BREG is the base reg rtx, IREG is the index reg rtx, 86: and SCALE is the index scale factor (an integer). */ 87: 88: #define PRINT_B_I_S(BREG,IREG,SCALE,FILE) \ 89: { ADDR_BEG (FILE); \ 90: if (BREG) PRINT_REG ((BREG), 0, (FILE)); \ 91: if ((IREG) != 0) \ 92: { PRINT_IREG ((FILE), (IREG)); \ 93: PRINT_SCALE ((FILE), (SCALE)); } \ 94: ADDR_END (FILE); } 95: 96: /* Define the syntax of pseudo-ops, labels and comments. */ 97: 98: /* String containing the assembler's comment-starter. */ 99: 100: #define ASM_COMMENT_START "/" 101: #define COMMENT_BEGIN "/" 102: 103: /* Output to assembler file text saying following lines 104: may contain character constants, extra white space, comments, etc. */ 105: 106: #define ASM_APP_ON "/APP\n" 107: 108: /* Output to assembler file text saying following lines 109: no longer contain unusual constructs. */ 110: 111: #define ASM_APP_OFF "/NO_APP\n" 112: 113: /* Output before read-only data. */ 114: 115: #define TEXT_SECTION_ASM_OP ".text" 116: 117: /* Output before writable (initialized) data. */ 118: 119: #define DATA_SECTION_ASM_OP ".data" 120: 121: /* Output before writable (uninitialized) data. */ 122: 123: #define BSS_SECTION_ASM_OP ".bss" 124: 125: /* This is how to output a command to make the user-level label named NAME 126: defined for reference from other files. */ 127: 128: #define ASM_GLOBALIZE_LABEL(FILE,NAME) \ 129: (fputs (".globl ", FILE), assemble_name (FILE, NAME), fputs ("\n", FILE)) 130: 131: /* By default, target has a 80387, uses IEEE compatible arithmetic, 132: and returns float values in the 387, ie, 133: (TARGET_80387 | TARGET_IEEE_FP | TARGET_FLOAT_RETURNS_IN_80387) */ 134: 135: #define TARGET_DEFAULT 0301 136: 137: /* Floating-point return values come in the FP register. */ 138: 139: #define VALUE_REGNO(MODE) \ 140: (GET_MODE_CLASS (MODE) == MODE_FLOAT \ 141: && TARGET_FLOAT_RETURNS_IN_80387 ? FIRST_FLOAT_REG : 0) 142: 143: /* 1 if N is a possible register number for a function value. */ 144: 145: #define FUNCTION_VALUE_REGNO_P(N) \ 146: ((N) == 0 || ((N)== FIRST_FLOAT_REG && TARGET_FLOAT_RETURNS_IN_80387)) 147:
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