ack/lang/cem/cemcom.ansi/cstoper.c
George Koehler 15950f9c95 Add long long literals like 123LL to ACK C.
For now, a long long literal must have the 'LL' or 'll' suffix.  A
literal without 'LL' or 'll' acts as before: it may become unsigned
long but not long long.  (For targets where int and long have the same
size, some literals change from unsigned int to unsigned long.)

Type `arith` may be too narrow for long long values.  Add a second
type `writh` for wide arithmetic, and change some variables from arith
to writh.  This may cause bugs if I forget to use writh, or if a
conversion from writh to arith overflows.  I mark some conversions
with (arith) or (writh) casts.

 - BigPars, SmallPars: Remove SPECIAL_ARITHMETICS.  This feature
   would change arith to a different type, but can't work, because it
   would conflict with definitions of arith in both <em_arith.h> and
   <flt_arith.h>.
 - LLlex.c: Understand 'LL' or 'll' suffix.  Cut size of constant when
   it overflows writh, not only when it overflows the target machine's
   types.  (This cut might not be necessary, because we might cut it
   again later.)  When picking signed long or unsigned long, check the
   target's long type, not the compiler's arith type; the old check
   for `val >= 0` was broken where sizeof(arith) > 4.
 - LLlex.h: Change struct token's tok_ival to writh, so it can hold a
   long long literal.
 - arith.c: Adjust to VL_VALUE being writh.  Don't convert between
   float and integer at compile-time if the integer might be too wide
   for <flt_arith.h>.  Add writh2str(), because writh might be too
   wide for long2str().
 - arith.h: Remove SPECIAL_ARITHMETICS.  Declare full_mask[] here,
   not in several *.c files.  Declare writh2str().
 - ch3.c, ch3bin.c, ch3mon.c, declarator.c, statement.g: Remove
   obsolete casts.  Adjust to VL_VALUE being writh.
 - conversion.c, stab.c: Don't declare full_mask[].
 - cstoper.c: Use writh for constant operations on VL_VALUE, and for
   full_mask[].
 - declar., field.c, ival.g: Add casts.
 - dumpidf.c: Need to #include "parameters.h" before checking DEBUG.
   Use writh2str, because "%ld" might not work.
 - eval.c, eval.h: Add casts.  Use writh when writing a wide constant
   in EM.
 - expr.c: Add and remove casts.  In fill_int_expr(), make expression
   from long long literal.  In chk_cst_expr(), allow long long as
   constant expression, so the compiler may accept `case 123LL:` in a
   switch statement.
 - expr.str: Change struct value's vl_value and struct expr's VL_VALUE
   to writh, so an expression may have a long long value at compile
   time.
 - statement.g: Remove obsolete casts.
 - switch.c, switch.str: Use writh in case entries for switch
   statements, so `switch (ll) {...}` with long long ll works.
 - tokenname.c: Add ULNGLNG so LLlex.c can use it for literals.
2019-09-04 22:14:38 -04:00

192 lines
3.9 KiB
C

/*
* (c) copyright 1987 by the Vrije Universiteit, Amsterdam, The Netherlands.
* See the copyright notice in the ACK home directory, in the file "Copyright".
*/
/* $Id$ */
/* 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 */
#include <assert.h>
#include "cstoper.h"
#include "parameters.h"
#include <flt_arith.h>
#include "arith.h"
#include "type.h"
#include "label.h"
#include "expr.h"
#include "sizes.h"
#include "Lpars.h"
#include "error.h"
/* full_mask[1] == 0XFF, full_mask[2] == 0XFFFF, .. */
writh full_mask[MAXSIZE + 1];
#ifndef NOCROSS
arith max_int; /* maximum integer on target machine */
arith max_unsigned; /* maximum unsigned on target machine */
#endif /* NOCROSS */
extern int ResultKnown;
void cstbin(register struct expr **expp, int oper, register struct expr *expr)
{
/* The operation oper is performed on the constant
expressions *expp(ld) and expr(ct), and the result restored in
*expp.
*/
unsigned writh o1 = (unsigned writh)(*expp)->VL_VALUE;
unsigned writh o2 = (unsigned writh)expr->VL_VALUE;
int uns = (*expp)->ex_type->tp_unsigned;
assert(is_ld_cst(*expp) && is_cp_cst(expr));
switch (oper) {
case '*':
o1 *= o2;
break;
case '/':
if (o2 == 0) {
if (!ResultKnown)
expr_error(expr, "division by 0");
else
expr_warning(expr, "division by 0");
break;
}
if (uns)
o1 /= o2;
else
o1 = (unsigned writh)((writh)o1 / (writh)o2);
break;
case '%':
if (o2 == 0) {
if (!ResultKnown)
expr_error(expr, "modulo by 0");
else
expr_warning(expr, "modulo by 0");
break;
}
if (uns)
o1 %= o2;
else
o1 = (unsigned writh)((writh)o1 % (writh)o2);
break;
case '+':
o1 += o2;
break;
case '-':
o1 -= o2;
break;
case LEFT:
o1 <<= o2;
break;
case RIGHT:
if (o2 == 0)
break;
if (uns)
o1 >>= o2;
else
o1 = (unsigned writh)((writh)o1 >> (writh)o2);
break;
case '<':
{
writh tmp = o1;
o1 = o2;
o2 = tmp;
}
/* Fall through */
case '>':
if (uns)
o1 = o1 > o2;
else
o1 = (writh)o1 > (writh)o2;
break;
case LESSEQ:
{
writh tmp = o1;
o1 = o2;
o2 = tmp;
}
/* Fall through */
case GREATEREQ:
if (uns)
o1 = o1 >= o2;
else
o1 = (writh)o1 >= (writh)o2;
break;
case EQUAL:
o1 = o1 == o2;
break;
case NOTEQUAL:
o1 = o1 != o2;
break;
case '&':
o1 &= o2;
break;
case '|':
o1 |= o2;
break;
case '^':
o1 ^= o2;
break;
}
(*expp)->VL_VALUE = (writh)o1;
cut_size(*expp);
(*expp)->ex_flags |= expr->ex_flags;
(*expp)->ex_flags &= ~EX_PARENS;
free_expression(expr);
}
void cut_size(register struct expr *expr)
{
/* The constant value of the expression expr is made to
conform to the size of the type of the expression.
*/
writh o1 = expr->VL_VALUE;
int uns = expr->ex_type->tp_unsigned;
int size = (int) expr->ex_type->tp_size;
assert(expr->ex_class == Value);
if (expr->ex_type->tp_fund == POINTER) {
/* why warn on "ptr-3" ?
This quick hack fixes it
*/
uns = 0;
}
if (uns) {
if (o1 & ~full_mask[size])
if (!ResultKnown)
expr_warning(expr,
"overflow in unsigned constant expression");
o1 &= full_mask[size];
}
else {
int nbits = (int) (sizeof(o1) - size) * 8;
writh remainder = o1 & ~full_mask[size];
if (remainder != 0 && remainder != ~full_mask[size])
if (!ResultKnown)
expr_warning(expr,"overflow in constant expression");
o1 = (o1 << nbits) >> nbits; /* ??? */
}
expr->VL_VALUE = o1;
}
void init_cst(void)
{
register int i = 0;
unsigned writh bt = 0;
while (!((writh)bt < 0)) {
bt = (bt << 8) + 0377, i++;
if (i > MAXSIZE)
fatal("array full_mask too small for this machine");
full_mask[i] = bt;
}
/* signed comparison; lnglng_size might be -1 */
if (long_size > (arith)sizeof(writh) ||
lnglng_size > (arith)sizeof(writh))
fatal("sizeof(writh) insufficient on this machine");
#ifndef NOCROSS
max_int = (arith)((unsigned writh)full_mask[(int)int_size] >> 1);
max_unsigned = (arith)full_mask[(int)int_size];
#endif /* NOCROSS */
}