2402db91f0
* NEW: Support for imaginary number syntax. For example, using "3i" will automatically load the gb.gsl component, create the corresponding complex number and return it. [COMPILER] * NEW: Support for imaginary number syntax. [GB.EVAL] * NEW: Support for imaginary number syntax. [GB.GSL] * NEW: Support for imaginary number syntax. * NEW: Vector class is now generic, and has two child classes: FloatVector and ComplexVector, depending on the type of its elements. * BUG: Support for arithmetic operators on Vector class has been removed. It had too many problems. git-svn-id: svn://localhost/gambas/trunk@4918 867c0c6c-44f3-4631-809d-bfa615b0a4ec
458 lines
8.3 KiB
C
458 lines
8.3 KiB
C
/***************************************************************************
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eval_trans.c
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(c) 2000-2012 Benoît Minisini <gambas@users.sourceforge.net>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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MA 02110-1301, USA.
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***************************************************************************/
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#define _TRANS_C
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#include <ctype.h>
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#include <errno.h>
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#include "gb_common.h"
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#include "gb_error.h"
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#include "gb_reserved.h"
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#include "eval_read.h"
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#include "eval_trans.h"
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#include "eval.h"
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/*
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PUBLIC void TRANS_reset(void)
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{
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JOB->line = 1;
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JOB->current = JOB->pattern;
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JOB->end = &(JOB->pattern[ARRAY_count(JOB->pattern)]);
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}
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PUBLIC boolean TRANS_newline(void)
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{
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if (PATTERN_IS_NEWLINE(*JOB->current))
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{
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JOB->line = PATTERN_INDEX(*JOB->current) + 1;
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JOB->current++;
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return TRUE;
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}
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return FALSE;
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}
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*/
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#if 0
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PUBLIC boolean TRANS_get_number(int index, TRANS_NUMBER *result)
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{
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char car;
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int val;
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double dval;
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char *end;
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int pos;
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int base = 0;
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char *number = TABLE_get_symbol_name(EVAL->table, index);
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boolean minus = FALSE;
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boolean is_unsigned = FALSE;
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car = *number;
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if (car == '+' || car == '-')
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{
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minus = (car == '-');
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car = *(++number);
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}
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if (car == '&')
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{
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car = *(++number);
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car = toupper(car);
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if (car == 'H')
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{
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base = 16;
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car = *(++number);
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}
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else if (car == 'X')
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{
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base = 2;
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car = *(++number);
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}
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else
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base = 16;
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}
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else if (car == '%')
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{
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base = 2;
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car = *(++number);
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}
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if (!car)
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return TRUE;
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if (car == '-' || car == '+')
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return TRUE;
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if (car == '0' && toupper(number[1]) == 'X')
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return TRUE;
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pos = strlen(number) - 1;
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if (number[pos] == '&')
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{
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number[pos] = 0;
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is_unsigned = TRUE;
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}
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errno = 0;
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if (base)
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{
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val = strtol(number, &end, base);
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if (!is_unsigned && val >= 0x8000L && val <= 0xFFFFL)
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val |= 0xFFFF0000;
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}
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else
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{
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base = 10;
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val = strtol(number, &end, base);
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if (errno || *end)
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{
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if (is_unsigned)
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return TRUE;
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errno = 0;
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base = 0;
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dval = strtod(number, &end);
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}
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}
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if (*end || errno)
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return TRUE;
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if (!base)
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{
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result->type = T_FLOAT;
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result->dval = minus ? (-dval) : dval;
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}
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else
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{
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result->type = T_INTEGER;
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result->ival = minus ? (-val) : val;
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}
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return FALSE;
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}
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#endif
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bool TRANS_get_number(int index, TRANS_NUMBER *result)
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{
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GB_VALUE value;
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SYMBOL *sym = TABLE_get_symbol(EVAL->table, index);
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int len = sym->len;
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if (len > 0 && tolower(sym->name[len - 1]) == 'i')
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{
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len--;
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result->complex = TRUE;
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}
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else
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result->complex = FALSE;
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if (GB.NumberFromString(GB_NB_READ_ALL | GB_NB_READ_HEX_BIN, sym->name, len, &value))
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return TRUE;
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if (value.type == T_INTEGER)
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{
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result->type = T_INTEGER;
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result->ival = ((GB_INTEGER *)(void *)&value)->value;
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}
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else if (value.type == T_LONG)
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{
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result->type = T_LONG;
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result->lval = ((GB_LONG *)(void *)&value)->value;
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}
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else
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{
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result->type = T_FLOAT;
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result->dval = ((GB_FLOAT *)(void *)&value)->value;
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}
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return FALSE;
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}
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#if 0
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static PATTERN *trans_square(PATTERN *look, int mode, TRANS_DECL *result)
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{
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TRANS_NUMBER tnum;
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int i;
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if (!(mode & TT_CAN_SQUARE))
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{
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if (PATTERN_is(*look, RS_LSQR))
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THROW("Arrays are forbidden here");
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return look;
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}
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if (!PATTERN_IS(*look, RS_LSQR))
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return look;
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/*
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if (result->is_array)
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THROW("Syntax error. Duplicated array declaration");
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*/
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look++;
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/*
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if (PATTERN_IS(*look, RS_RSQR))
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{
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look++;
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return look;
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}
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*/
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if (mode && TT_CAN_ARRAY)
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{
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for (i = 0;; i++)
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{
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if (i > MAX_ARRAY_DIM)
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THROW("Too many dimensions");
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if (TRANS_get_number(PATTERN_INDEX(*look), &tnum))
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THROW(E_SYNTAX);
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if (tnum.type != T_INTEGER)
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THROW(E_SYNTAX);
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if (tnum.ival < 1 || tnum.ival > (2 << 22)) /* 4 Mo, ca devrait suffire... ;-) */
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THROW("Bad subscript range");
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result->array.dim[i] = tnum.ival;
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result->array.ndim++;
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look++;
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if (PATTERN_is(*look, RS_RSQR))
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break;
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if (!PATTERN_is(*look, RS_COMMA))
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THROW("Missing comma");
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look++;
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}
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}
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if (!PATTERN_IS(*look, RS_RSQR))
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THROW("Missing ']'");
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look++;
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return look;
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}
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#endif
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#if 0
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PUBLIC boolean TRANS_type(int mode, TRANS_DECL *result)
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{
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PATTERN *look = JOB->current;
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short id = 0;
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int value = -1L;
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int flag = 0;
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/* Ne pas remplir la structure de z<>os */
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/* Attention ! Probl<62>e du tableau d'objet ! */
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TYPE_clear(&result->type);
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result->is_new = FALSE;
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result->array.ndim = 0;
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look = trans_square(look, mode, result);
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if (!PATTERN_IS(*look, RS_AS))
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{
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if (mode & TT_DO_NOT_CHECK_AS)
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return FALSE;
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else
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THROW("Missing AS");
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}
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look++;
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if (mode & TT_CAN_NEW)
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{
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if (PATTERN_IS(*look, RS_NEW))
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{
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if (TYPE_get_id(result->type) == T_ARRAY)
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THROW("Cannot mix NEW and array declaration");
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result->is_new = TRUE;
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look++;
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}
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}
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if (PATTERN_IS_TYPE(*look))
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{
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id = RES_get_type(PATTERN_index(*look));
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if (id == T_OBJECT)
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value = (-1);
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look++;
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}
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else if (PATTERN_IS_IDENTIFIER(*look))
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{
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id = T_OBJECT;
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value = CLASS_add_class(JOB->class, PATTERN_INDEX(*look));
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look++;
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}
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else
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THROW(E_SYNTAX);
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/*look = trans_square(look, mode, result);*/
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if (id == T_VOID)
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return FALSE;
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/*
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if (result->is_array && result->array.ndim == 0)
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result->is_array = FALSE;
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*/
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if (result->array.ndim > 0)
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{
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result->array.type = TYPE_make(id, value, flag);
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result->type = TYPE_make(T_ARRAY, CLASS_add_array(JOB->class, &result->array), 0);
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}
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else
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result->type = TYPE_make(id, value, flag);
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JOB->current = look;
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return TRUE;
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}
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#endif
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#if 0
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PUBLIC boolean TRANS_check_declaration(void)
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{
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PATTERN *look = JOB->current;
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if (!PATTERN_is_identifier(*look))
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return FALSE;
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look++;
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if (PATTERN_is(*look, RS_LSQR))
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{
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for(;;)
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{
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look++;
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if (PATTERN_is(*look, RS_RSQR))
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break;
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if (PATTERN_is_newline(*look))
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return FALSE;
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}
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look++;
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}
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if (!PATTERN_is(*look, RS_AS))
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return FALSE;
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return TRUE;
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}
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#endif
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#if 0
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PUBLIC void TRANS_get_constant_value(TRANS_DECL *decl, PATTERN value)
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{
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int index;
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TRANS_NUMBER number;
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int type;
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index = PATTERN_index(value);
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/* V<>ification de la constante */
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type = TYPE_get_id(decl->type);
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switch(type)
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{
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case T_BOOLEAN:
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decl->is_integer = TRUE;
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if (PATTERN_is(value, RS_TRUE))
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decl->value = -1L;
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else if (PATTERN_is(value, RS_FALSE))
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decl->value = 0L;
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else
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THROW("Type mismatch");
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break;
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case T_BYTE: case T_SHORT: case T_INTEGER:
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decl->is_integer = TRUE;
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if (TRANS_get_number(index, &number))
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THROW("Type mismatch");
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if (number.type != T_INTEGER)
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THROW("Type mismatch");
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if (((type == T_BYTE) && (number.ival < 0 || number.ival > 255))
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|| ((type == T_SHORT) && (number.ival < -32768L || number.ival > 32767L)))
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THROW("Out of range");
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decl->value = number.ival;
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break;
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case T_STRING: case T_FLOAT:
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decl->is_integer = FALSE;
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decl->value = index;
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break;
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default:
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THROW("Bad constant type");
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}
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}
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#endif
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#if 0
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PUBLIC void TRANS_want(int reserved)
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{
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if (!PATTERN_is(*JOB->current, reserved))
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THROW("Syntax error. %s expected", COMP_res_info[reserved].name);
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JOB->current++;
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}
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PUBLIC boolean TRANS_is(int reserved)
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{
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if (PATTERN_is(*JOB->current, reserved))
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{
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JOB->current++;
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return TRUE;
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}
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else
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return FALSE;
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}
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PUBLIC void TRANS_ignore(int reserved)
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{
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if (PATTERN_is(*JOB->current, reserved))
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JOB->current++;
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}
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#endif
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