2000-09-23 07:15:07 +02:00
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/*
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* Copyright (c) 2000 Stephen Williams (steve@icarus.com)
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*
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* This source code is free software; you can redistribute it
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* and/or modify it in source code form under the terms of the GNU
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* General Public License as published by the Free Software
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* Foundation; either version 2 of the License, or (at your option)
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* any later version.
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*
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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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*
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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., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA
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*/
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#if !defined(WINNT) & !defined(macintosh)
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2001-05-09 01:59:33 +02:00
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#ident "$Id: t-dll-expr.cc,v 1.12 2001/05/08 23:59:33 steve Exp $"
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2000-09-23 07:15:07 +02:00
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#endif
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# include "t-dll.h"
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# include "netlist.h"
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# include <assert.h>
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2000-09-26 02:30:07 +02:00
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# include <malloc.h>
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2000-09-23 07:15:07 +02:00
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2000-09-30 04:18:15 +02:00
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/*
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* These methods implement the expression scan that generates the
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* ivl_expr_t representing the expression. Each method leaves the
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* expr_ member filled with the ivl_expr_t that represents it. Each
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* method expects that the expr_ member empty (0) when it starts.
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*/
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void dll_target::expr_binary(const NetEBinary*net)
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{
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assert(expr_ == 0);
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net->left()->expr_scan(this);
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ivl_expr_t left = expr_;
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expr_ = 0;
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net->right()->expr_scan(this);
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ivl_expr_t rght = expr_;
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expr_ = (ivl_expr_t)calloc(1, sizeof(struct ivl_expr_s));
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assert(expr_);
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expr_->type_ = IVL_EX_BINARY;
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expr_->width_= net->expr_width();
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2001-04-05 03:12:27 +02:00
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expr_->signed_ = net->has_sign()? 1 : 0;
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2000-09-30 04:18:15 +02:00
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expr_->u_.binary_.op_ = net->op();
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expr_->u_.binary_.lef_ = left;
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expr_->u_.binary_.rig_ = rght;
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}
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2000-10-28 19:55:03 +02:00
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void dll_target::expr_concat(const NetEConcat*net)
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{
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assert(expr_ == 0);
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2000-10-29 00:32:34 +02:00
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ivl_expr_t cur = new struct ivl_expr_s;
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assert(cur);
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2000-10-28 19:55:03 +02:00
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2000-10-29 00:32:34 +02:00
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cur->type_ = IVL_EX_CONCAT;
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cur->width_= net->expr_width();
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cur->u_.concat_.rept = net->repeat();
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cur->u_.concat_.parms = net->nparms();
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cur->u_.concat_.parm = new ivl_expr_t [net->nparms()];
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for (unsigned idx = 0 ; idx < net->nparms() ; idx += 1) {
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expr_ = 0;
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net->parm(idx)->expr_scan(this);
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assert(expr_);
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cur->u_.concat_.parm[idx] = expr_;
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}
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expr_ = cur;
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2000-10-28 19:55:03 +02:00
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}
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2001-05-09 01:59:33 +02:00
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void dll_target::expr_memory(const NetEMemory*net)
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{
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assert(expr_ == 0);
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if (net->index()) {
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net->index()->expr_scan(this);
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assert(expr_);
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}
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ivl_expr_t cur = (ivl_expr_t)calloc(1, sizeof(struct ivl_expr_s));
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assert(cur);
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cur->type_ = IVL_EX_MEMORY;
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cur->width_= net->expr_width();
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cur->signed_ = net->has_sign()? 1 : 0;
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cur->u_.memory_.mem_ = lookup_memory_(net->memory());
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cur->u_.memory_.idx_ = expr_;
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expr_ = cur;
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}
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2000-09-23 07:15:07 +02:00
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void dll_target::expr_const(const NetEConst*net)
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{
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assert(expr_ == 0);
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2001-05-09 01:59:33 +02:00
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ivl_expr_t idx = 0;
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2000-09-23 07:15:07 +02:00
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expr_ = (ivl_expr_t)calloc(1, sizeof(struct ivl_expr_s));
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assert(expr_);
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if (net->value().is_string()) {
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expr_->type_ = IVL_EX_STRING;
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2000-09-24 04:21:53 +02:00
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expr_->width_= net->expr_width();
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2000-09-23 07:15:07 +02:00
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expr_->u_.string_.value_ =strdup(net->value().as_string().c_str());
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} else {
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2000-09-26 02:30:07 +02:00
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verinum val = net->value();
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unsigned idx;
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char*bits;
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2000-09-23 07:15:07 +02:00
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expr_->type_ = IVL_EX_NUMBER;
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2000-09-24 04:21:53 +02:00
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expr_->width_= net->expr_width();
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2000-09-26 02:30:07 +02:00
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expr_->signed_ = val.has_sign()? 1 : 0;
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expr_->u_.number_.bits_ = bits = (char*)malloc(expr_->width_);
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for (idx = 0 ; idx < expr_->width_ ; idx += 1)
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switch (val.get(idx)) {
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case verinum::V0:
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bits[idx] = '0';
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break;
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case verinum::V1:
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bits[idx] = '1';
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break;
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case verinum::Vx:
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bits[idx] = 'x';
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break;
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case verinum::Vz:
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bits[idx] = 'z';
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break;
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default:
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assert(0);
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}
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2000-09-23 07:15:07 +02:00
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}
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}
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2001-04-02 02:28:35 +02:00
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void dll_target::expr_scope(const NetEScope*net)
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{
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assert(expr_ == 0);
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expr_ = (ivl_expr_t)calloc(1, sizeof(struct ivl_expr_s));
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assert(expr_);
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expr_->type_ = IVL_EX_SCOPE;
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expr_->u_.scope_.scope = lookup_scope_(net->scope());
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}
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2000-10-05 07:03:01 +02:00
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void dll_target::expr_sfunc(const NetESFunc*net)
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{
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assert(expr_ == 0);
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expr_ = (ivl_expr_t)calloc(1, sizeof(struct ivl_expr_s));
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assert(expr_);
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expr_->type_ = IVL_EX_SFUNC;
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expr_->width_= net->expr_width();
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expr_->u_.sfunc_.name_ = strdup(net->name());
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}
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2000-09-24 04:21:53 +02:00
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void dll_target::expr_signal(const NetESignal*net)
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{
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assert(expr_ == 0);
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expr_ = (ivl_expr_t)calloc(1, sizeof(struct ivl_expr_s));
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assert(expr_);
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expr_->type_ = IVL_EX_SIGNAL;
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expr_->width_= net->expr_width();
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2001-04-05 03:12:27 +02:00
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expr_->signed_ = net->has_sign()? 1 : 0;
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2000-09-24 04:21:53 +02:00
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expr_->u_.subsig_.name_ = strdup(net->name().c_str());
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}
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2001-04-06 04:28:02 +02:00
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void dll_target::expr_ufunc(const NetEUFunc*net)
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{
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assert(expr_ == 0);
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ivl_expr_t expr = (ivl_expr_t)calloc(1, sizeof(struct ivl_expr_s));
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assert(expr);
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expr->type_ = IVL_EX_UFUNC;
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expr->width_= net->expr_width();
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expr->signed_ = net->has_sign()? 1 : 0;
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expr->u_.ufunc_.def = lookup_scope_(net->func());
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assert(expr->u_.ufunc_.def->type_ == IVL_SCT_FUNCTION);
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unsigned cnt = net->parm_count();
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expr->u_.ufunc_.parms = cnt;
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expr->u_.ufunc_.parm = new ivl_expr_t[cnt];
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/* make up the parameter expressions. */
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for (unsigned idx = 0 ; idx < cnt ; idx += 1) {
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net->parm(idx)->expr_scan(this);
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assert(expr_);
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expr->u_.ufunc_.parm[idx] = expr_;
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expr_ = 0;
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}
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expr_ = expr;
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}
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2001-03-29 04:52:39 +02:00
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void dll_target::expr_unary(const NetEUnary*net)
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{
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assert(expr_ == 0);
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net->expr()->expr_scan(this);
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assert(expr_);
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ivl_expr_t sub = expr_;
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expr_ = (ivl_expr_t)calloc(1, sizeof(struct ivl_expr_s));
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expr_->type_ = IVL_EX_UNARY;
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expr_->width_= net->expr_width();
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expr_->u_.unary_.op_ = net->op();
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expr_->u_.unary_.sub_ = sub;
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}
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2000-09-23 07:15:07 +02:00
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/*
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* $Log: t-dll-expr.cc,v $
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2001-05-09 01:59:33 +02:00
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* Revision 1.12 2001/05/08 23:59:33 steve
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* Add ivl and vvp.tgt support for memories in
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* expressions and l-values. (Stephan Boettcher)
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*
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2001-04-06 04:28:02 +02:00
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* Revision 1.11 2001/04/06 02:28:02 steve
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* Generate vvp code for functions with ports.
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*
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2001-04-05 03:12:27 +02:00
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* Revision 1.10 2001/04/05 01:12:28 steve
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* Get signed compares working correctly in vvp.
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*
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2001-04-02 02:28:35 +02:00
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* Revision 1.9 2001/04/02 00:28:35 steve
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* Support the scope expression node.
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*
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2001-03-29 04:52:39 +02:00
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* Revision 1.8 2001/03/29 02:52:39 steve
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* Add unary ~ operator to tgt-vvp.
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*
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2000-10-29 00:32:34 +02:00
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* Revision 1.7 2000/10/28 22:32:34 steve
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* API for concatenation expressions.
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*
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2000-10-28 19:55:03 +02:00
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* Revision 1.6 2000/10/28 17:55:03 steve
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* stub for the concat operator.
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*
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2000-10-05 07:03:01 +02:00
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* Revision 1.5 2000/10/05 05:03:01 steve
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* xor and constant devices.
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*
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2000-09-30 04:18:15 +02:00
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* Revision 1.4 2000/09/30 02:18:15 steve
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* ivl_expr_t support for binary operators,
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* Create a proper ivl_scope_t object.
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*
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2000-09-26 02:30:07 +02:00
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* Revision 1.3 2000/09/26 00:30:07 steve
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* Add EX_NUMBER and ST_TRIGGER to dll-api.
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*
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2000-09-24 04:21:53 +02:00
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* Revision 1.2 2000/09/24 02:21:53 steve
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* Add support for signal expressions.
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*
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2000-09-23 07:15:07 +02:00
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* Revision 1.1 2000/09/23 05:15:07 steve
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* Add enough tgt-verilog code to support hello world.
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*
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*/
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