2024-10-01 05:13:16 +00:00
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/*
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expr_process.c
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expression processing
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Copyright (C) 2024 Bill Currie <bill@taniwha.org>
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) 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.
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See the 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:
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Free Software Foundation, Inc.
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59 Temple Place - Suite 330
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Boston, MA 02111-1307, USA
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*/
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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#include <string.h>
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#include "QF/fbsearch.h"
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#include "QF/heapsort.h"
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#include "QF/math/bitop.h"
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#include "tools/qfcc/include/algebra.h"
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#include "tools/qfcc/include/diagnostic.h"
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#include "tools/qfcc/include/expr.h"
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#include "tools/qfcc/include/rua-lang.h"
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#include "tools/qfcc/include/symtab.h"
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#include "tools/qfcc/include/type.h"
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#include "tools/qfcc/include/value.h"
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typedef const expr_t *(*process_f) (const expr_t *expr);
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static const expr_t *
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proc_expr (const expr_t *expr)
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{
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auto e1 = expr_process (expr->expr.e1);
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auto e2 = expr_process (expr->expr.e2);
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if (is_error (e1)) {
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return e1;
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}
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if (is_error (e2)) {
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return e2;
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}
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return binary_expr (expr->expr.op, e1, e2);
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}
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static const expr_t *
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proc_uexpr (const expr_t *expr)
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{
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auto e1 = expr_process (expr->expr.e1);
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if (is_error (e1)) {
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return e1;
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}
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return unary_expr (expr->expr.op, e1);
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}
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static const expr_t *
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proc_symbol (const expr_t *expr)
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{
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return expr;
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}
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2024-10-01 17:01:33 +00:00
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static void
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proc_do_list (ex_list_t *out, const ex_list_t *in)
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{
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int count = list_count (in);
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const expr_t *exprs[count + 1];
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list_scatter (in, exprs);
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for (int i = 0; i < count; i++) {
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exprs[i] = expr_process (exprs[i]);
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}
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list_gather (out, exprs, count);
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}
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static const expr_t *
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proc_vector (const expr_t *expr)
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{
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auto vec = new_expr ();
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vec->type = ex_vector;
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vec->vector.type = expr->vector.type;
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proc_do_list (&vec->vector.list, &expr->vector.list);
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return vec;
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}
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2024-10-01 05:13:16 +00:00
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static const expr_t *
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proc_value (const expr_t *expr)
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{
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return expr;
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}
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static const expr_t *
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proc_compound (const expr_t *expr)
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{
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auto comp = new_compound_init ();
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for (auto ele = expr->compound.head; ele; ele = ele->next) {
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append_element (comp, new_element (expr_process (ele->expr),
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ele->designator));
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}
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return comp;
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}
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2024-10-01 17:01:33 +00:00
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static const expr_t *
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proc_assign (const expr_t *expr)
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{
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auto dst = expr_process (expr->assign.dst);
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auto src = expr_process (expr->assign.src);
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if (is_error (src)) {
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return src;
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}
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if (is_error (src)) {
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return src;
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}
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return assign_expr (dst, src);
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}
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static const expr_t *
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proc_branch (const expr_t *expr)
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{
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if (expr->branch.type == pr_branch_call) {
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auto args = new_list_expr (nullptr);
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proc_do_list (&args->list, &expr->branch.args->list);
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return function_expr (expr->branch.target, args);
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} else {
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auto branch = new_expr ();
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branch->type = ex_branch;
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branch->branch = expr->branch;
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branch->branch.target = expr_process (expr->branch.target);
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branch->branch.index = expr_process (expr->branch.index);
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branch->branch.test = expr_process (expr->branch.test);
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if (is_error (branch->branch.target)) {
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return branch->branch.target;
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}
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if (is_error (branch->branch.index)) {
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return branch->branch.index;
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}
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if (is_error (branch->branch.test)) {
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return branch->branch.test;
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}
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return branch;
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}
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}
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2024-10-01 05:13:16 +00:00
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const expr_t *
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expr_process (const expr_t *expr)
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{
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static process_f funcs[ex_count] = {
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[ex_expr] = proc_expr,
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[ex_uexpr] = proc_uexpr,
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2024-10-01 17:01:33 +00:00
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[ex_symbol] = proc_symbol,
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[ex_vector] = proc_vector,
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2024-10-01 05:13:16 +00:00
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[ex_value] = proc_value,
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[ex_compound] = proc_compound,
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2024-10-01 17:01:33 +00:00
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[ex_assign] = proc_assign,
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[ex_branch] = proc_branch,
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2024-10-01 05:13:16 +00:00
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};
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if (expr->type >= ex_count) {
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internal_error (expr, "bad sub-expression type: %d", expr->type);
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}
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if (!funcs[expr->type]) {
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internal_error (expr, "unexpected sub-expression type: %s",
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expr_names[expr->type]);
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}
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return funcs[expr->type] (expr);
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}
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