Add long long type, but without literals; you can't say '123LL' yet. You can try constant operations, like `(long long)123 + 1`, but the compiler's `arith` type might not be wide enough. Conversions, shifts, and some other operations don't work in i386 ncg; I am using a union instead of conversions: union q { long long ll; unsigned long long ull; int i[2]; }; Hack plat/linux386/descr to enable long long (size 8, alignment 4) only for this platform. The default for other platforms is to disable long long (size -1). In lang/cem/cemcom.ansi, - BigPars, SmallPars: Add default size, alignment of long long. - align.h: Add lnglng_align. - arith.c: Convert arithmetic operands to long long or unsigned long long when necessary; avoid conversion from long long to long. Allow long long as an arithmetic, integral, or logical operand. - ch3.c: Handle long long like int and long when erroneously applying a selector, like `long long ll; ll.member` or `ll->member`. Add long long to integral and arithmetic types. - code.c: Add long long to type stabs for debugging. - conversion.c: Add long long to integral conversions. - cstoper.c: Write masks up to full_mask[8]. Add FIXME comment. - declar.g: Parse `long long` in code. - decspecs.c: Understand long long in type declarations. - eval.c: Add long long to operations, to generate code like `adi 8`. Don't use `ldc` with constant over 4 bytes. - ival.g: Allow long long in initializations. - main.c: Set lnglng_type and related values. - options.c: Add option like `-Vq8.4` to set long long to size 8, alignment 4. I chose 'q', because Perl's pack and Ruby's Array#pack use 'q' for 64-bit or long long values; it might be a reference to BSD's old quad_t alias for long long. - sizes.h: Add lnglng_size. - stab.c: Allow long long when writing the type stab for debugging. Switch from calculating the ranges to hardcoding them in strings; add 8-byte ranges as a special case. This also hardcodes the unsigned 4-byte range as "0;-1". Before it was either "0;-1" or "0;4294967295", depending on sizeof(long) in the compiler. - struct.c: Try long long bitfield, but it will probably give the error, "bit field type long long does not fit in a word". - switch.c: Update comment. - tokenname.c: Define LNGLNG (long long) like LNGDBL (long double). - type.c, type.str: Add lnglng_type and ulnglng_type. Add function no_long_long() to check if long long is disabled.
194 lines
4 KiB
C
194 lines
4 KiB
C
/*
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* (c) copyright 1987 by the Vrije Universiteit, Amsterdam, The Netherlands.
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* See the copyright notice in the ACK home directory, in the file "Copyright".
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*/
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/* $Id$ */
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/* C O N S T A N T E X P R E S S I O N H A N D L I N G */
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#include <assert.h>
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#include "cstoper.h"
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#include "parameters.h"
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#include <flt_arith.h>
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#include "arith.h"
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#include "type.h"
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#include "label.h"
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#include "expr.h"
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#include "sizes.h"
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#include "Lpars.h"
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#include "error.h"
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/* full_mask[1] == 0XFF, full_mask[2] == 0XFFFF, .. */
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arith full_mask[MAXSIZE + 1];
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#ifndef NOCROSS
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arith max_int; /* maximum integer on target machine */
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arith max_unsigned; /* maximum unsigned on target machine */
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#endif /* NOCROSS */
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extern int ResultKnown;
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void cstbin(register struct expr **expp, int oper, register struct expr *expr)
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{
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/* The operation oper is performed on the constant
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expressions *expp(ld) and expr(ct), and the result restored in
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*expp.
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*/
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register arith o1 = (*expp)->VL_VALUE;
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register arith o2 = expr->VL_VALUE;
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int uns = (*expp)->ex_type->tp_unsigned;
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assert(is_ld_cst(*expp) && is_cp_cst(expr));
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switch (oper) {
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case '*':
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o1 *= o2;
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break;
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case '/':
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if (o2 == 0) {
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if (!ResultKnown)
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expr_error(expr, "division by 0");
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else
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expr_warning(expr, "division by 0");
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break;
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}
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if (uns)
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o1 /= (unsigned arith) o2;
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else
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o1 /= o2;
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break;
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case '%':
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if (o2 == 0) {
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if (!ResultKnown)
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expr_error(expr, "modulo by 0");
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else
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expr_warning(expr, "modulo by 0");
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break;
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}
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if (uns)
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o1 %= (unsigned arith) o2;
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else
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o1 %= o2;
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break;
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case '+':
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o1 += o2;
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break;
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case '-':
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o1 -= o2;
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break;
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case LEFT:
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o1 <<= o2;
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break;
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case RIGHT:
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if (o2 == 0)
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break;
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if (uns) {
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o1 = (o1 >> 1) & ~arith_sign;
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o1 >>= (o2 - 1);
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}
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else o1 >>= o2;
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break;
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case '<':
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{
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arith tmp = o1;
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o1 = o2;
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o2 = tmp;
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}
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/* Fall through */
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case '>':
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if (uns)
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o1 = (unsigned arith) o1 > (unsigned arith) o2;
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else
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o1 = o1 > o2;
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break;
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case LESSEQ:
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{
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arith tmp = o1;
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o1 = o2;
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o2 = tmp;
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}
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/* Fall through */
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case GREATEREQ:
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if (uns)
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o1 = (unsigned arith) o1 >= (unsigned arith) o2;
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else
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o1 = o1 >= o2;
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break;
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case EQUAL:
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o1 = o1 == o2;
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break;
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case NOTEQUAL:
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o1 = o1 != o2;
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break;
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case '&':
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o1 &= o2;
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break;
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case '|':
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o1 |= o2;
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break;
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case '^':
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o1 ^= o2;
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break;
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}
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(*expp)->VL_VALUE = o1;
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cut_size(*expp);
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(*expp)->ex_flags |= expr->ex_flags;
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(*expp)->ex_flags &= ~EX_PARENS;
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free_expression(expr);
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}
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void cut_size(register struct expr *expr)
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{
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/* The constant value of the expression expr is made to
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conform to the size of the type of the expression.
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*/
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register arith o1 = expr->VL_VALUE;
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int uns = expr->ex_type->tp_unsigned;
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int size = (int) expr->ex_type->tp_size;
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assert(expr->ex_class == Value);
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if (expr->ex_type->tp_fund == POINTER) {
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/* why warn on "ptr-3" ?
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This quick hack fixes it
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*/
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uns = 0;
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}
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if (uns) {
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if (o1 & ~full_mask[size])
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if (!ResultKnown)
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expr_warning(expr,
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"overflow in unsigned constant expression");
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o1 &= full_mask[size];
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}
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else {
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int nbits = (int) (arith_size - size) * 8;
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arith remainder = o1 & ~full_mask[size];
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if (remainder != 0 && remainder != ~full_mask[size])
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if (!ResultKnown)
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expr_warning(expr,"overflow in constant expression");
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o1 = (o1 << nbits) >> nbits; /* ??? */
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}
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expr->VL_VALUE = o1;
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}
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void init_cst(void)
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{
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register int i = 0;
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register arith bt = (arith)0;
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/* FIXME arith is insufficient for long long. We ignore
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this problem and write masks up to full_mask[8], but
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masks are wrong after bt < 0.
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*/
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while (!(bt < 0) || i < 8) {
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bt = (bt << 8) + 0377, i++;
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if (i > MAXSIZE)
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fatal("array full_mask too small for this machine");
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full_mask[i] = bt;
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}
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if ((int)long_size > arith_size)
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fatal("sizeof (arith) insufficient on this machine");
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#ifndef NOCROSS
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max_int = full_mask[(int)int_size] & ~(1L << ((int)int_size * 8 - 1));
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max_unsigned = full_mask[(int)int_size];
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#endif /* NOCROSS */
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}
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