improve the function of spice-extract
parent
12089f49d8
commit
fa2a96f87e
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@ -55,6 +55,12 @@
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## 更新日志
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* 2021年2月8号,前端更新
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* 优化了schematic电路图提取spice网表功能
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* 新增加了多种电源器件
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* 初步实验了将提取出来的spice网表送进spice仿真器中执行仿真的结果
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* ![avatar](./Schematic/schematic4.png)
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* 2021年2月2日,前端更新
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* 增加电路spice网表提取功能
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@ -128,22 +128,32 @@
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{
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var Value_raw = cell.getValue();
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var Value_att = ParseAttribute(Value_raw);
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var Value_show = Value_att['name'] == 'unknown' ? '' : Value_att['name'];
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var Value_show = '';
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if(Value_att['Name'] == 'unknown'){
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if(Value_att['name'] != 'unknown'){
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Value_show = Value_att['name'];
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}
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}
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else{
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Value_show = Value_att['Name'];
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}
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// var Value_show = Value_att['name'] == 'unknown' ? '' : Value_att['name'];
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return Value_show;
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};
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// 暂时不允许在此进行修改
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var cellLabelChanged = graph.cellLabelChanged;
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graph.cellLabelChanged = function(cell, newValue, autoSize)
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graph.cellLabelChanged = function(cell, new_value, autoSize)
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{
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// if (mxUtils.isNode(cell.value))
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// {
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// // Clones the value for correct undo/redo
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// var elt = cell.value.cloneNode(true);
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// elt.setAttribute('label', newValue);
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// newValue = elt;
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// }
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// autoSize = false;
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// cellLabelChanged.apply(this, arguments);
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};
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@ -180,12 +190,15 @@
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addVertex_2('icon_ee/res.ico', 80, 30, 'shape=resistor;verticalLabelPosition=top;verticalAlign=bottom','Name=R;Value=10 Ohm;');
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addVertex_2('icon_ee/cap.ico', 40, 30, 'shape=capacitor;verticalLabelPosition=top;verticalAlign=bottom','Name=C;Value=10 pF;');
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addVertex_2('icon_ee/nmos.ico', 60, 60, 'shape=n_mosfet;verticalLabelPosition=top;verticalAlign=bottom','Name=NMOS;Length=100nm;Width=20nm;');
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addVertex_2('icon_ee/pmos.ico', 60, 60, 'shape=p_mosfet;verticalLabelPosition=top;verticalAlign=bottom','Name=PMOS;Length=100nm;Width=20nm;');
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addVertex_2('icon_ee/vdd.ico', 40, 30, 'shape=vdd;verticalLabelPosition=top;verticalAlign=bottom','Name=Vdd;Value=10 V;');
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addVertex_2('icon_ee/gnd.ico', 40, 40, 'shape=gnd;verticalLabelPosition=top;verticalAlign=bottom','Name=Gnd;');
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addVertex_2('icon_ee/nmos.ico', 60, 60, 'shape=n_mosfet;verticalLabelPosition=top;verticalAlign=bottom','Name=M_NMOS;Length=100nm;Width=20nm;');
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addVertex_2('icon_ee/pmos.ico', 60, 60, 'shape=p_mosfet;verticalLabelPosition=top;verticalAlign=bottom','Name=M_PMOS;Length=100nm;Width=20nm;');
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addVertex_2('icon_ee/vdd.ico', 40, 30, 'shape=vdd;verticalLabelPosition=top;verticalAlign=bottom','Name=Vdd;');
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addVertex_2('icon_ee/gnd.ico', 40, 40, 'shape=gnd;verticalLabelPosition=bottom;verticalAlign=top','Name=Gnd;');
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addVertex_2('icon_ee/pin.ico', 40, 40, 'shape=pin;verticalLabelPosition=top;verticalAlign=bottom','Name=Pin;');
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addVertex_2('icon_ee/pout.ico', 40, 40, 'shape=pout;verticalLabelPosition=top;verticalAlign=bottom','Name=Pout;');
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addVertex_2('icon_ee/vdc.ico', 40, 40, 'shape=vdc;labelPosition=left;align=right','Name=Vdc;DC=1 V;');
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addVertex_2('icon_ee/vac.ico', 40, 40, 'shape=vac;labelPosition=left;align=right','Name=Vac;DC=0 V;ACMAG=1 V;ACPHASE=0 deg;');
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addVertex_2('icon_ee/vsin.ico', 40, 40, 'shape=vsin;labelPosition=left;align=right','Name=Vsin;V0=0 V;VA=1 V;FREQ=1k Hz;TD=0 ;THEAT=0 ;PHASE=0 ;');
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toolbar.addLine();
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@ -220,8 +233,8 @@
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// 获取属性
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function ParseAttribute(value)
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{
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value = value||"name=unknown;" ;
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value = value.toLowerCase();
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value = value||"Name=unknown;" ;
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// value = value.toLowerCase();
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var attribute = {} ;
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v = value.replace(" ","");
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var v_split = v.split(";");
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@ -379,7 +392,7 @@ function NormalizeXML(info){
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if(temp['type'] == 'vdd'){
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temp['port'] = {'vdd': 'vdd'};
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temp['port_keys'] = ['vdd'];
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temp['value'] = {'voltage': info['elements'][i]['value']['Value']};
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// temp['value'] = {'voltage': info['elements'][i]['value']['Value']};
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}
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else if(temp['type'] == 'gnd'){
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temp['port'] = {'gnd': 'gnd'};
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@ -408,6 +421,29 @@ function NormalizeXML(info){
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temp['port'] = {'pout': 'pout'};
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temp['port_keys'] = ['pout'];
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}
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else if(temp['type'] == 'vdc'){
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temp['port'] = {'pos': 'pos', 'neg':'neg'};
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temp['port_keys'] = ['pos','neg'];
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temp['value'] = {'DC': info['elements'][i]['value']['DC'] }
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}
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else if(temp['type'] == 'vac'){
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temp['port'] = {'pos': 'pos', 'neg':'neg'};
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temp['port_keys'] = ['pos','neg'];
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temp['value'] = {'ACMAG': info['elements'][i]['value']['ACMAG'],
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'ACPHASE': info['elements'][i]['value']['ACPHASE'],
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'DC':info['elements'][i]['value']['DC']}
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}
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else if(temp['type'] == 'vsin'){
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temp['port'] = {'pos': 'pos', 'neg':'neg'};
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temp['port_keys'] = ['pos','neg'];
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temp['value'] = {'V0': info['elements'][i]['value']['V0'],
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'VA': info['elements'][i]['value']['VA'],
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'FREQ': info['elements'][i]['value']['FREQ'],
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'TD': info['elements'][i]['value']['TD'],
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'THEAT': info['elements'][i]['value']['THEAT'],
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'PHASE': info['elements'][i]['value']['PHASE']
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}
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}
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circuit.push(temp);
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}
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@ -473,24 +509,51 @@ function NormalizeXML(info){
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}
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}
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let count = 1 ;
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let node_str = '';
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let flag_gnd = false;
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for(var i=0; i<nodes.length; i++){
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let node_str = "n" + String(i);
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node_str = String(count);
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for(var j=0; j<nodes[i].length; j++){
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let node_info = nodes[i][j].split(" ");
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let node_id = node_info[0];
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let node_port = node_info[1];
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let node_index = SearchID(circuit,node_id);
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if(node_port == 'gnd'){
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flag_gnd = true;
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}
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else{
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if(node_index != -1){
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// if( node_port == 'gnd' ){
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// node_str = "gnd" ;
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// }
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circuit[node_index]['port'][node_port] = node_str;
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if(node_port == 'source'){
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circuit[node_index]['port']['bulk'] = circuit[node_index]['port']['source'];
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}
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}
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}
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}
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if(flag_gnd){
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flag_gnd = false;
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for(var j=0; j<nodes[i].length; j++){
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let node_info = nodes[i][j].split(" ");
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let node_id = node_info[0];
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let node_port = node_info[1];
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let node_index = SearchID(circuit,node_id);
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node_str = "0";
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if(node_index != -1){
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circuit[node_index]['port'][node_port] = node_str;
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if(node_port == 'source'){
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circuit[node_index]['port']['bulk'] = circuit[node_index]['port']['source'];
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}
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}
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}
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}
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else{
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count += 1;
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}
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}
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return circuit;
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};
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@ -520,7 +583,6 @@ function ExtractSpice(circuit){
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spice += circuit[i]['name'] + " ";
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for(var j=0; j<circuit[i]['port_keys'].length; j++){
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spice += circuit[i]['port'][circuit[i]['port_keys'][j]] + " ";
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// spice += circuit[i]['port_keys'][j] + " ";
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}
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spice += circuit[i]['type'] + " ";
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for(key in circuit[i]['value']){
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@ -530,10 +592,86 @@ function ExtractSpice(circuit){
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}
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return spice;
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};
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// 根据从xml提取出来的info生成spice网表
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function ExtractSpice_2(circuit){
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let spice = "";
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let key ;
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for(var i=0; i<circuit.length;i++){
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if((circuit[i]['type']=='gnd') || (circuit[i]['type']=='vdd')){
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continue;
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}
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else if((circuit[i]['type']=='pin') || (circuit[i]['type']=='pout')){
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continue;
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}
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else if((circuit[i]['type']=='p_mosfet') || (circuit[i]['type']=='n_mosfet')){
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spice += circuit[i]['name'] + " ";
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for(var j=0; j<circuit[i]['port_keys'].length; j++){
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spice += circuit[i]['port'][circuit[i]['port_keys'][j]] + " ";
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}
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spice += circuit[i]['type'] + " ";
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spice += 'l=' + circuit[i]['value']['length'] + " ";
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spice += 'w=' + circuit[i]['value']['width'] + " ";
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spice += "\n";
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}
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else if(circuit[i]['type']=='vdc'){
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spice += circuit[i]['name'] + " ";
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for(var j=0; j<circuit[i]['port_keys'].length; j++){
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spice += circuit[i]['port'][circuit[i]['port_keys'][j]] + " ";
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}
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spice += 'DC' + " ";
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spice += (circuit[i]['value']['DC'].replace(" ","")).replace("V","") + " ";
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spice += "\n";
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}
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else if(circuit[i]['type']=='vac'){
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spice += circuit[i]['name'] + " ";
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for(var j=0; j<circuit[i]['port_keys'].length; j++){
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spice += circuit[i]['port'][circuit[i]['port_keys'][j]] + " ";
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}
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spice += 'DC' + " ";
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spice += (circuit[i]['value']['DC'].replace(" ","")).replace("V","") + " ";
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spice += 'AC' + " ";
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spice += (circuit[i]['value']['ACMAG'].replace(" ","")).replace("V","") + " ";
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if(circuit[i]['value']['ACPHASE'].replace(" ","").replace("deg","") != "0"){
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spice += circuit[i]['value']['ACPHASE'].replace(" ","").replace("deg","") + " ";
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}
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spice += "\n";
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}
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else if(circuit[i]['type']=='vsin'){
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spice += circuit[i]['name'] + " ";
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for(var j=0; j<circuit[i]['port_keys'].length; j++){
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spice += circuit[i]['port'][circuit[i]['port_keys'][j]] + " ";
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}
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spice += "SIN(" + " ";
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spice += circuit[i]['value']['V0'].replace(" ","").replace("V","") + " ";
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spice += circuit[i]['value']['VA'].replace(" ","").replace("V","") + " ";
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spice += circuit[i]['value']['FREQ'].replace(" ","").replace("Hz","") + " ";
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spice += ")";
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spice += "\n";
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}
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else{
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spice += circuit[i]['name'] + " ";
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for(var j=0; j<circuit[i]['port_keys'].length; j++){
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spice += circuit[i]['port'][circuit[i]['port_keys'][j]] + " ";
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}
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spice += circuit[i]['type'] + " ";
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for(key in circuit[i]['value']){
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spice += circuit[i]['value'][key] + " ";
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}
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spice += "\n";
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}
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}
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return spice;
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};
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</script>
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<script type="text/javascript">
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function showProperties(graph,cell)
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{
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@ -581,7 +719,11 @@ function showProperties(graph,cell)
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var okFunction = mxUtils.bind(this, function(){
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cell.setValue(AssembleAttribute());
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// graph.cellLabelChanged(cell,AssembleAttribute(),false);
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wnd.destroy();
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// cell.value = value ;
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});
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@ -885,7 +1027,14 @@ function showOutline(graph)
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let spice = ExtractSpice(circuit);
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mxUtils.popup(spice, true);
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}));
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document.body.appendChild(mxUtils.button('Show Spice 2', function()
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{
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var node = ParseSpice(graph.getModel());
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var circuit = NormalizeXML(node);
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let spice = ExtractSpice_2(circuit);
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mxUtils.popup(spice, true);
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}));
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// Extract SPICE model
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document.body.appendChild(mxUtils.button('Show Info', function()
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{
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@ -2150,6 +2299,173 @@ Adds oval markers for edge-to-edge connections.
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}
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};
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function Vdc_Shape() { };
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Vdc_Shape.prototype = new mxCylinder();
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Vdc_Shape.prototype.constructor = Vdc_Shape;
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Vdc_Shape.prototype.redrawPath = function(path, x, y, w, h, isForeground)
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{
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if (isForeground)
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{
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path.moveTo(w * 1/2, h * 0);
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path.lineTo(w * 1/2, h * 1/8);
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path.moveTo(w * 1/2, h * 1);
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path.lineTo(w * 1/2, h * 7/8);
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// path.moveTo(w * 1/2, h * 1/8);
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// path.arcTo(3/8*w,3/8*w,180,true,true,w*1/2,h*1/2);
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path.moveTo(w * 1/2, h * 1/8);
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path.curveTo(w * 1/2, h * 1/8,
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w * 7/8, h * 1/8,
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w * 7/8, h * 1/2);
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path.moveTo(w * 1/2, h * 1/8);
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path.curveTo(w * 1/2, h * 1/8,
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w * 1/8, h * 1/8,
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w * 1/8, h * 1/2);
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path.moveTo(w * 1/2, h * 7/8);
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path.curveTo(w * 1/2, h * 7/8,
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w * 7/8, h * 7/8,
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w * 7/8, h * 1/2);
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path.moveTo(w * 1/2, h * 7/8);
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path.curveTo(w * 1/2, h * 7/8,
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w * 1/8, h * 7/8,
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w * 1/8, h * 1/2);
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path.moveTo(w * 1/2, h * 3/16);
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path.lineTo(w * 1/2, h * 7/16);
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path.moveTo(w * 3/8, h * 5/16);
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path.lineTo(w * 5/8, h * 5/16);
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path.moveTo(w * 3/8, h * 11/16);
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path.lineTo(w * 5/8, h * 11/16);
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path.end();
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}
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};
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function Vac_Shape() { };
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Vac_Shape.prototype = new mxCylinder();
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Vac_Shape.prototype.constructor = Vac_Shape;
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Vac_Shape.prototype.redrawPath = function(path, x, y, w, h, isForeground)
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{
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if (isForeground)
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{
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path.moveTo(w * 1/2, h * 0);
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path.lineTo(w * 1/2, h * 1/8);
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path.moveTo(w * 1/2, h * 1);
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path.lineTo(w * 1/2, h * 7/8);
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path.moveTo(w * 1/2, h * 1/8);
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path.curveTo(w * 1/2, h * 1/8,
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w * 7/8, h * 1/8,
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w * 7/8, h * 1/2);
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path.moveTo(w * 1/2, h * 1/8);
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path.curveTo(w * 1/2, h * 1/8,
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w * 1/8, h * 1/8,
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w * 1/8, h * 1/2);
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path.moveTo(w * 1/2, h * 7/8);
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path.curveTo(w * 1/2, h * 7/8,
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w * 7/8, h * 7/8,
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w * 7/8, h * 1/2);
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path.moveTo( w * 1/2, h * 7/8);
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path.curveTo(w * 1/2, h * 7/8,
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w * 1/8, h * 7/8,
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w * 1/8, h * 1/2);
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// +
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path.moveTo(w * 1/2, h * 3/16);
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path.lineTo(w * 1/2, h * 7/16);
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path.moveTo(w * 3/8, h * 5/16);
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path.lineTo(w * 5/8, h * 5/16);
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// -
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path.moveTo(w * 3/8, h * 11/16);
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path.lineTo(w * 5/8, h * 11/16);
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// ac
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path.moveTo( w * 2/8, h * 9/16);
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path.curveTo(w * 2/8, h * 9/16,
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w * 2/8 , h * 8/16,
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w * 3/8, h * 8/16);
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path.moveTo( w * 3/8, h * 8/16);
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path.curveTo(w * 3/8, h * 8/16,
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w * 4/8 , h * 8/16,
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w * 4/8 , h * 9/16);
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path.moveTo( w * 4/8, h * 9/16);
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path.curveTo(w * 4/8, h * 9/16,
|
||||
w * 4/8 , h * 10/16,
|
||||
w * 5/8 , h * 10/16);
|
||||
|
||||
path.moveTo( w * 5/8, h * 10/16);
|
||||
path.curveTo(w * 5/8, h * 10/16,
|
||||
w * 6/8 , h * 10/16,
|
||||
w * 6/8 , h * 9/16);
|
||||
|
||||
path.end();
|
||||
}
|
||||
};
|
||||
|
||||
function Vsin_Shape() { };
|
||||
Vsin_Shape.prototype = new mxCylinder();
|
||||
Vsin_Shape.prototype.constructor = Vsin_Shape;
|
||||
Vsin_Shape.prototype.redrawPath = function(path, x, y, w, h, isForeground)
|
||||
{
|
||||
if (isForeground)
|
||||
{
|
||||
path.moveTo(w * 1/2, h * 0);
|
||||
path.lineTo(w * 1/2, h * 1/8);
|
||||
path.moveTo(w * 1/2, h * 1);
|
||||
path.lineTo(w * 1/2, h * 7/8);
|
||||
|
||||
path.moveTo(w * 1/2, h * 1/8);
|
||||
path.curveTo(w * 1/2, h * 1/8,
|
||||
w * 7/8, h * 1/8,
|
||||
w * 7/8, h * 1/2);
|
||||
|
||||
path.moveTo(w * 1/2, h * 1/8);
|
||||
path.curveTo(w * 1/2, h * 1/8,
|
||||
w * 1/8, h * 1/8,
|
||||
w * 1/8, h * 1/2);
|
||||
|
||||
path.moveTo(w * 1/2, h * 7/8);
|
||||
path.curveTo(w * 1/2, h * 7/8,
|
||||
w * 7/8, h * 7/8,
|
||||
w * 7/8, h * 1/2);
|
||||
|
||||
path.moveTo( w * 1/2, h * 7/8);
|
||||
path.curveTo(w * 1/2, h * 7/8,
|
||||
w * 1/8, h * 7/8,
|
||||
w * 1/8, h * 1/2);
|
||||
|
||||
// ac
|
||||
path.moveTo( w * 2/8, h * 9/16);
|
||||
path.curveTo(w * 2/8, h * 9/16,
|
||||
w * 2/8 , h * 8/16,
|
||||
w * 3/8, h * 8/16);
|
||||
|
||||
path.moveTo( w * 3/8, h * 8/16);
|
||||
path.curveTo(w * 3/8, h * 8/16,
|
||||
w * 4/8 , h * 8/16,
|
||||
w * 4/8 , h * 9/16);
|
||||
|
||||
path.moveTo( w * 4/8, h * 9/16);
|
||||
path.curveTo(w * 4/8, h * 9/16,
|
||||
w * 4/8 , h * 10/16,
|
||||
w * 5/8 , h * 10/16);
|
||||
|
||||
path.moveTo( w * 5/8, h * 10/16);
|
||||
path.curveTo(w * 5/8, h * 10/16,
|
||||
w * 6/8 , h * 10/16,
|
||||
w * 6/8 , h * 9/16);
|
||||
|
||||
path.end();
|
||||
}
|
||||
};
|
||||
|
||||
mxCellRenderer.registerShape('resistor' , ResistorShape);
|
||||
mxCellRenderer.registerShape('n_mosfet' , N_Mosfet_Shape);
|
||||
mxCellRenderer.registerShape('p_mosfet' , P_Mosfet_Shape);
|
||||
|
@ -2158,6 +2474,10 @@ Adds oval markers for edge-to-edge connections.
|
|||
mxCellRenderer.registerShape('capacitor', Capacitor_Shape);
|
||||
mxCellRenderer.registerShape('pin' , Pin_Shape);
|
||||
mxCellRenderer.registerShape('pout' , Pout_Shape);
|
||||
mxCellRenderer.registerShape('vdc' , Vdc_Shape);
|
||||
mxCellRenderer.registerShape('vac' , Vac_Shape);
|
||||
mxCellRenderer.registerShape('vsin' , Vsin_Shape);
|
||||
|
||||
</script>
|
||||
|
||||
<!-- 进行端口限制 -->
|
||||
|
@ -2199,7 +2519,7 @@ Adds oval markers for edge-to-edge connections.
|
|||
return ports2;
|
||||
};
|
||||
|
||||
// ... except for n mosfet
|
||||
// for n mosfet
|
||||
var ports_resistor = new Array();
|
||||
ports_resistor['pos'] = {x: 0, y: 0.5, perimeter: true, constraint: 'west'};
|
||||
ports_resistor['neg'] = {x: 1, y: 0.5, perimeter: true, constraint: 'east'};
|
||||
|
@ -2209,7 +2529,7 @@ Adds oval markers for edge-to-edge connections.
|
|||
return ports_resistor;
|
||||
};
|
||||
|
||||
// ... except for n mosfet
|
||||
// for n mosfet
|
||||
var ports_nmosfet = new Array();
|
||||
ports_nmosfet['gate'] = {x: 0, y: 0.5, perimeter: true, constraint: 'west'};
|
||||
ports_nmosfet['drain'] = {x: 1, y: 0.25, perimeter: true, constraint: 'east'};
|
||||
|
@ -2218,7 +2538,7 @@ Adds oval markers for edge-to-edge connections.
|
|||
N_Mosfet_Shape.prototype.getPorts = function(){
|
||||
return ports_nmosfet;
|
||||
};
|
||||
// ... except for p mosfet
|
||||
// for p mosfet
|
||||
var ports_pmosfet = new Array();
|
||||
ports_pmosfet['gate'] = {x: 0, y: 0.5, perimeter: true, constraint: 'west'};
|
||||
ports_pmosfet['source'] = {x: 1, y: 0.25, perimeter: true, constraint: 'east'};
|
||||
|
@ -2227,14 +2547,14 @@ Adds oval markers for edge-to-edge connections.
|
|||
P_Mosfet_Shape.prototype.getPorts = function(){
|
||||
return ports_pmosfet;
|
||||
};
|
||||
// ... except for vdd
|
||||
// for vdd
|
||||
var ports_vdd = new Array();
|
||||
ports_vdd['vdd'] = {x: 0.5, y: 1, perimeter: true, constraint: 'south'};
|
||||
|
||||
Vdd_Shape.prototype.getPorts = function(){
|
||||
return ports_vdd;
|
||||
};
|
||||
// ... except for gnd
|
||||
// for gnd
|
||||
var ports_gnd = new Array();
|
||||
ports_gnd['gnd'] = {x: 0.5, y: 0, perimeter: true, constraint: 'north'};
|
||||
|
||||
|
@ -2242,7 +2562,7 @@ Adds oval markers for edge-to-edge connections.
|
|||
return ports_gnd;
|
||||
};
|
||||
|
||||
// ... except for capatiance
|
||||
// for capatiance
|
||||
var ports_capatiance = new Array();
|
||||
ports_capatiance['pos'] = {x: 0.0, y: 0.5, perimeter: true, constraint: 'west'};
|
||||
ports_capatiance['neg'] = {x: 1.0, y: 0.5, perimeter: true, constraint: 'east'};
|
||||
|
@ -2251,20 +2571,48 @@ Adds oval markers for edge-to-edge connections.
|
|||
return ports_capatiance;
|
||||
};
|
||||
|
||||
// ... except for capatiance
|
||||
// for port_pin
|
||||
var ports_pin = new Array();
|
||||
ports_pin['pin'] = {x: 1.0, y: 0.5, perimeter: true, constraint: 'east'};
|
||||
|
||||
Pin_Shape.prototype.getPorts = function(){
|
||||
return ports_pin;
|
||||
};
|
||||
// ... except for capatiance
|
||||
// for port_out
|
||||
var ports_pout = new Array();
|
||||
ports_pout['pout'] = {x: 0.0, y: 0.5, perimeter: true, constraint: 'west'};
|
||||
|
||||
Pout_Shape.prototype.getPorts = function(){
|
||||
return ports_pout;
|
||||
};
|
||||
// for Vdc
|
||||
var ports_vdc = new Array();
|
||||
ports_vdc['pos'] = {x: 0.5, y: 0.0, perimeter: true, constraint: 'north'};
|
||||
ports_vdc['neg'] = {x: 0.5, y: 1.0, perimeter: true, constraint: 'south'};
|
||||
|
||||
Vdc_Shape.prototype.getPorts = function(){
|
||||
return ports_vdc;
|
||||
};
|
||||
// for Vac
|
||||
var ports_vac = new Array();
|
||||
ports_vac['pos'] = {x: 0.5, y: 0.0, perimeter: true, constraint: 'north'};
|
||||
ports_vac['neg'] = {x: 0.5, y: 1.0, perimeter: true, constraint: 'south'};
|
||||
|
||||
Vac_Shape.prototype.getPorts = function(){
|
||||
return ports_vac;
|
||||
};
|
||||
|
||||
// for Vsin
|
||||
var ports_vsin = new Array();
|
||||
ports_vsin['pos'] = {x: 0.5, y: 0.0, perimeter: true, constraint: 'north'};
|
||||
ports_vsin['neg'] = {x: 0.5, y: 1.0, perimeter: true, constraint: 'south'};
|
||||
|
||||
Vsin_Shape.prototype.getPorts = function(){
|
||||
return ports_vsin;
|
||||
};
|
||||
|
||||
|
||||
|
||||
</script>
|
||||
|
||||
|
||||
|
|
Loading…
Reference in New Issue