370 lines
7.2 KiB
C
370 lines
7.2 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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/* $Header$ */
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/* Lint main routines */
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#include "lint.h"
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#ifdef LINT
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#include <alloc.h> /* for st_free */
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#include "assert.h"
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#include "arith.h" /* definition arith */
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#include "label.h" /* definition label */
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#include "expr.h"
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#include "idf.h"
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#include "def.h"
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#include "code.h" /* RVAL etc */
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#include "LLlex.h"
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#include "Lpars.h"
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#include "stack.h"
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#include "type.h"
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#include "level.h"
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#include "nofloat.h"
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#include "l_lint.h"
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#include "l_state.h"
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#include "l_outdef.h"
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extern char options[128];
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extern char *symbol2str();
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static struct expr_state *lint_expr();
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static struct expr_state *lint_value();
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static struct expr_state *lint_oper();
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lint_init()
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{
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/* Allocate some memory for the global stack_bottom
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* and some other initializations
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*/
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extern struct lint_stack_entry stack_bottom;
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stack_bottom.ls_current = new_state();
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}
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pre_lint_expr(expr, val, used)
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struct expr *expr;
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int val; /* LVAL or RVAL */
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int used;
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{
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/* Introduced to dispose the returned expression states */
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register struct expr_state *esp;
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esp = lint_expr(expr, val, used);
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free_expr_states(esp);
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}
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free_expr_states(esp)
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register struct expr_state *esp;
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{
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register struct expr_state *esp2;
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while (esp) {
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esp2 = esp;
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esp = esp->next;
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free_expr_state(esp2);
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}
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}
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static struct expr_state *
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lint_expr(expr, val, used)
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register struct expr *expr;
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int val;
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int used;
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{
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/* Main function to process an expression tree.
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* It returns a structure containing information about which variables
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* are set and which are used in the expression.
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* In addition it sets 'used' and 'set' fields of the corresponding
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* variables in the current state.
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* If the value of an operation without side-effects is not used,
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* a warning is given.
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*/
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if (used == IGNORED) {
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expr_ignored(expr);
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}
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switch (expr->ex_class) {
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case Value:
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return lint_value(expr, val);
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case Oper:
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return lint_oper(expr, val, used);
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default: /* String Float Type */
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return 0;
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}
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}
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static struct expr_state *
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lint_value(expr, val)
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register struct expr *expr;
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{
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switch (expr->VL_CLASS) {
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case Const:
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case Label:
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return 0;
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case Name:
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{
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register struct idf *idf = expr->VL_IDF;
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struct expr_state *esp1 = 0;
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if (!idf || !idf->id_def)
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return 0;
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if ( val == LVAL
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|| ( val == RVAL
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&& expr->ex_type->tp_fund == POINTER
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&& !expr->ex_lvalue
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)
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) {
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change_state(idf, SET);
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idf->id_def->df_file =
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Salloc(dot.tk_file,
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strlen(dot.tk_file) + 1);
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idf->id_def->df_line = dot.tk_line;
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}
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if (val == RVAL) {
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change_state(idf, USED);
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add_expr_state(expr->EX_VALUE, USED, &esp1);
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}
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return esp1;
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}
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default:
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NOTREACHED();
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/* NOTREACHED */
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}
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}
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static struct expr_state *
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lint_oper(expr, val, used)
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struct expr *expr;
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int val;
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int used;
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{
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register int oper = expr->OP_OPER;
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register struct expr *left = expr->OP_LEFT;
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register struct expr *right = expr->OP_RIGHT;
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struct expr_state *esp1 = 0;
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struct expr_state *esp2 = 0;
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switch (oper) {
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case '=':
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case PLUSAB:
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case MINAB:
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case TIMESAB:
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case DIVAB:
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case MODAB:
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case LEFTAB:
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case RIGHTAB:
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case ANDAB:
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case XORAB:
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case ORAB:
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/* for cases like i += l; */
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esp1 = lint_expr(right, RVAL, USED);
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if (oper != '=') {
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/* i += 1; is interpreted as i = i + 1; */
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esp2 = lint_expr(left, RVAL, USED);
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check_and_merge(&esp1, esp2, oper);
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}
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esp2 = lint_expr(left, LVAL, USED);
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/* for cases like i = i + 1; and i not set, this
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** order is essential
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*/
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check_and_merge(&esp1, esp2, oper);
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if ( left->ex_class == Value
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&& left->VL_CLASS == Name
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) {
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add_expr_state(left->EX_VALUE, SET, &esp1);
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}
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return esp1;
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case POSTINCR:
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case POSTDECR:
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case PLUSPLUS:
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case MINMIN:
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/* i++; is parsed as i = i + 1;
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* This isn't quite correct :
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* The first statement doesn't USE i,
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* the second does.
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*/
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esp1 = lint_expr(left, RVAL, USED);
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esp2 = lint_expr(left, LVAL, USED);
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check_and_merge(&esp1, esp2, oper);
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if ( left->ex_class == Value
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&& left->VL_CLASS == Name
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) {
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add_expr_state(left->EX_VALUE, SET, &esp1);
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add_expr_state(left->EX_VALUE, USED, &esp1);
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}
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return esp1;
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case '-':
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case '*':
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if (left == 0) /* unary */
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return lint_expr(right, RVAL, USED);
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esp1 = lint_expr(left, RVAL, USED);
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esp2 = lint_expr(right, RVAL, USED);
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check_and_merge(&esp1, esp2, oper);
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return esp1;
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case '(':
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if (right != 0) {
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/* function call with parameters */
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register struct expr *ex = right;
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while ( ex->ex_class == Oper
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&& ex->OP_OPER == PARCOMMA
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) {
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esp2 = lint_expr(ex->OP_RIGHT, RVAL,
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USED);
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check_and_merge(&esp1, esp2, oper);
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ex = ex->OP_LEFT;
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}
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esp2 = lint_expr(ex, RVAL, USED);
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check_and_merge(&esp1, esp2, oper);
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}
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if ( left->ex_class == Value
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&& left->VL_CLASS == Name
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) {
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fill_outcall(expr,
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expr->ex_type->tp_fund == VOID ?
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VOIDED : used
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);
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outcall();
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left->VL_IDF->id_def->df_used = 1;
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}
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else {
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esp2 = lint_expr(left, val, USED);
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check_and_merge(&esp1, esp2, oper);
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}
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return esp1;
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case '.':
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return lint_expr(left, val, USED);
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case ARROW:
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return lint_expr(left, RVAL, USED);
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case '~':
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case '!':
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return lint_expr(right, RVAL, USED);
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case '?':
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esp1 = lint_expr(left, RVAL, USED);
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esp2 = lint_expr(right->OP_LEFT, RVAL, USED);
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check_and_merge(&esp1, esp2, 0);
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esp2 = lint_expr(right->OP_RIGHT, RVAL, USED);
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check_and_merge(&esp1, esp2, 0);
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return esp1;
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case INT2INT:
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case INT2FLOAT:
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case FLOAT2INT:
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case FLOAT2FLOAT:
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return lint_expr(right, RVAL, USED);
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case '<':
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case '>':
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case LESSEQ:
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case GREATEREQ:
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case EQUAL:
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case NOTEQUAL:
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lint_relop(left, right, oper);
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lint_relop(right, left,
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oper == '<' ? '>' :
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oper == '>' ? '<' :
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oper == LESSEQ ? GREATEREQ :
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oper == GREATEREQ ? LESSEQ :
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oper
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);
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/*FALLTHROUGH*/
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case '+':
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case '/':
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case '%':
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case ',':
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case LEFT:
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case RIGHT:
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case '&':
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case '|':
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case '^':
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case OR:
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case AND:
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esp1 = lint_expr(left, RVAL,
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oper == ',' ? IGNORED : USED);
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esp2 = lint_expr(right, RVAL,
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oper == ',' ? used : USED);
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if (oper == OR || oper == AND || oper == ',')
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check_and_merge(&esp1, esp2, 0);
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else
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check_and_merge(&esp1, esp2, oper);
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return esp1;
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default:
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return 0; /* for initcomma */
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}
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}
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expr_ignored(expr)
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struct expr *expr;
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{
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switch (expr->ex_class) {
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case Oper:
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switch (expr->OP_OPER) {
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case '=':
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case TIMESAB:
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case DIVAB:
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case MODAB:
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case LEFTAB:
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case RIGHTAB:
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case ANDAB:
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case XORAB:
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case ORAB:
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case AND: /* doubtful but useful */
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case OR: /* doubtful but useful */
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case '(':
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case '?':
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case ',':
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break;
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case PLUSAB:
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case MINAB:
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case POSTINCR:
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case POSTDECR:
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case PLUSPLUS:
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case MINMIN:
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/* may hide the operator * */
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if ( /* operation on a pointer */
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expr->OP_TYPE->tp_fund == POINTER
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&& /* the result is dereferenced, e.g. *p++; */
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expr->ex_type == expr->OP_TYPE->tp_up
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) {
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hwarning("result of * ignored");
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}
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break;
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default:
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hwarning("result of %s ignored",
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symbol2str(expr->OP_OPER));
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break;
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}
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break;
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case Value:
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hwarning("identifier as statement");
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break;
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default: /* String Float */
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hwarning("constant as statement");
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break;
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}
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}
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#endif LINT
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