ack/lang/m2/comp/expression.g

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/*
* (c) copyright 1987 by the Vrije Universiteit, Amsterdam, The Netherlands.
* See the copyright notice in the ACK home directory, in the file "Copyright".
*
* Author: Ceriel J.H. Jacobs
*/
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/* E X P R E S S I O N S */
/* $Header$ */
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{
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#include "debug.h"
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#include <alloc.h>
#include <em_arith.h>
#include <em_label.h>
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#include <assert.h>
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#include "LLlex.h"
#include "idf.h"
#include "def.h"
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#include "node.h"
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#include "const.h"
#include "type.h"
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#include "chk_expr.h"
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#include "warning.h"
extern char options[];
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}
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number(struct node **p;) :
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[
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%default
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INTEGER
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|
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REAL
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] { *p = MkLeaf(Value, &dot);
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(*p)->nd_type = toktype;
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}
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;
qualident(struct node **p;)
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{
} :
IDENT { *p = MkLeaf(Name, &dot); }
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[
selector(p)
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]*
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;
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selector(struct node **pnd;):
'.' { *pnd = MkNode(Link,*pnd,NULLNODE,&dot); }
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IDENT { (*pnd)->nd_IDF = dot.TOK_IDF; }
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;
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ExpList(struct node **pnd;)
{
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register struct node *nd;
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} :
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expression(pnd) { *pnd = nd = MkNode(Link,*pnd,NULLNODE,&dot);
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nd->nd_symb = ',';
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}
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[
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',' { nd->nd_right = MkLeaf(Link, &dot);
nd = nd->nd_right;
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}
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expression(&(nd->nd_left))
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]*
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;
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ConstExpression(struct node **pnd;)
{
register struct node *nd;
}:
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expression(pnd)
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/*
* Changed rule in new Modula-2.
* Check that the expression is a constant expression and evaluate!
*/
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{ nd = *pnd;
DO_DEBUG(options['X'], print("CONSTANT EXPRESSION\n"));
DO_DEBUG(options['X'], PrNode(nd, 0));
if (ChkExpression(nd) &&
((nd)->nd_class != Set && (nd)->nd_class != Value)) {
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error("constant expression expected");
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}
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DO_DEBUG(options['X'], print("RESULTS IN\n"));
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DO_DEBUG(options['X'], PrNode(nd, 0));
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}
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;
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expression(struct node **pnd;)
{
} :
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SimpleExpression(pnd)
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[
/* relation */
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[ '=' | '#' | '<' | LESSEQUAL | '>' | GREATEREQUAL | IN ]
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{ *pnd = MkNode(Oper, *pnd, NULLNODE, &dot); }
SimpleExpression(&((*pnd)->nd_right))
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]?
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;
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/* Inline in expression
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relation:
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'=' | '#' | '<' | LESSEQUAL | '>' | GREATEREQUAL | IN
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;
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*/
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SimpleExpression(struct node **pnd;)
{
} :
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[
[ '+' | '-' ]
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{ *pnd = MkLeaf(Uoper, &dot);
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pnd = &((*pnd)->nd_right);
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/* priority of unary operator ??? */
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}
]?
term(pnd)
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[
/* AddOperator */
[ '+' | '-' | OR ]
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{ *pnd = MkNode(Oper, *pnd, NULLNODE, &dot); }
term(&((*pnd)->nd_right))
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]*
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;
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/* Inline in "SimpleExpression"
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AddOperator:
'+' | '-' | OR
;
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*/
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term(struct node **pnd;)
{
}:
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factor(pnd)
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[
/* MulOperator */
[ '*' | '/' | DIV | MOD | AND | '&' ]
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{ *pnd = MkNode(Oper, *pnd, NULLNODE, &dot); }
factor(&((*pnd)->nd_right))
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]*
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;
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/* inline in "term"
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MulOperator:
'*' | '/' | DIV | MOD | AND | '&'
;
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*/
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factor(register struct node **p;)
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{
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struct node *nd;
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} :
qualident(p)
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[
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designator_tail(p)?
[
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{ *p = MkNode(Call, *p, NULLNODE, &dot); }
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ActualParameters(&((*p)->nd_right))
]?
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|
bare_set(&nd)
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{ nd->nd_left = *p; *p = nd; }
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]
|
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bare_set(p)
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| %default
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number(p)
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|
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STRING { *p = MkLeaf(Value, &dot);
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(*p)->nd_type = toktype;
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}
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|
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'(' expression(p) ')'
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|
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NOT { *p = MkLeaf(Uoper, &dot); }
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factor(&((*p)->nd_right))
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;
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bare_set(struct node **pnd;)
{
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register struct node *nd;
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} :
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'{' { dot.tk_symb = SET;
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*pnd = nd = MkLeaf(Xset, &dot);
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nd->nd_type = bitset_type;
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}
[
element(nd)
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[ { nd = nd->nd_right; }
',' element(nd)
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]*
]?
'}'
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;
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ActualParameters(struct node **pnd;):
'(' ExpList(pnd)? ')'
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;
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element(struct node *nd;)
{
struct node *nd1;
} :
expression(&nd1)
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[
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UPTO
{ nd1 = MkNode(Link, nd1, NULLNODE, &dot);}
expression(&(nd1->nd_right))
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]?
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{ nd->nd_right = MkNode(Link, nd1, NULLNODE, &dot);
nd->nd_right->nd_symb = ',';
}
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;
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designator(struct node **pnd;)
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:
qualident(pnd)
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designator_tail(pnd)?
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;
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designator_tail(struct node **pnd;):
visible_designator_tail(pnd)
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[ %persistent
%default
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selector(pnd)
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|
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visible_designator_tail(pnd)
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]*
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;
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visible_designator_tail(register struct node **pnd;):
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'[' { *pnd = MkNode(Arrsel, *pnd, NULLNODE, &dot); }
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expression(&((*pnd)->nd_right))
[
','
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{ *pnd = MkNode(Arrsel, *pnd, NULLNODE, &dot);
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(*pnd)->nd_symb = '[';
}
expression(&((*pnd)->nd_right))
]*
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']'
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|
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'^' { *pnd = MkNode(Arrow, NULLNODE, *pnd, &dot); }
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;