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package main
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import (
"bytes"
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"fmt"
"log"
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"strconv"
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"strings"
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//"regexp"
"io/ioutil"
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"path/filepath"
"reflect"
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"text/template/parse"
)
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// TODO: Turn this file into a library
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var ctemplates [ ] string
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var tmplPtrMap = make ( map [ string ] interface { } )
var textOverlapList = make ( map [ string ] int )
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// nolint
type VarItem struct {
Name string
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Destination string
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Type string
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}
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type VarItemReflect struct {
Name string
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Destination string
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Value reflect . Value
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}
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type CTemplateSet struct {
tlist map [ string ] * parse . Tree
dir string
funcMap map [ string ] interface { }
importMap map [ string ] string
Fragments map [ string ] int
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FragmentCursor map [ string ] int
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FragOut string
varList map [ string ] VarItem
localVars map [ string ] map [ string ] VarItemReflect
stats map [ string ] int
pVarList string
pVarPosition int
previousNode parse . NodeType
currentNode parse . NodeType
nextNode parse . NodeType
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//tempVars map[string]string
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doImports bool
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expectsInt interface { }
}
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func ( c * CTemplateSet ) compileTemplate ( name string , dir string , expects string , expectsInt interface { } , varList map [ string ] VarItem ) ( out string , err error ) {
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if dev . DebugMode {
fmt . Println ( "Compiling template '" + name + "'" )
}
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c . dir = dir
c . doImports = true
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c . funcMap = map [ string ] interface { } {
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"and" : "&&" ,
"not" : "!" ,
"or" : "||" ,
"eq" : true ,
"ge" : true ,
"gt" : true ,
"le" : true ,
"lt" : true ,
"ne" : true ,
"add" : true ,
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"subtract" : true ,
"multiply" : true ,
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"divide" : true ,
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}
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c . importMap = map [ string ] string {
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"net/http" : "net/http" ,
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}
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c . varList = varList
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//c.pVarList = ""
//c.pVarPosition = 0
c . stats = make ( map [ string ] int )
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c . expectsInt = expectsInt
holdreflect := reflect . ValueOf ( expectsInt )
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res , err := ioutil . ReadFile ( dir + name )
if err != nil {
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return "" , err
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}
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content := string ( res )
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if config . MinifyTemplates {
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content = minify ( content )
}
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tree := parse . New ( name , c . funcMap )
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var treeSet = make ( map [ string ] * parse . Tree )
tree , err = tree . Parse ( content , "{{" , "}}" , treeSet , c . funcMap )
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if err != nil {
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return "" , err
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}
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if dev . TemplateDebug {
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fmt . Println ( name )
}
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out = ""
fname := strings . TrimSuffix ( name , filepath . Ext ( name ) )
c . tlist = make ( map [ string ] * parse . Tree )
c . tlist [ fname ] = tree
varholder := "tmpl_" + fname + "_vars"
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if dev . TemplateDebug {
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fmt . Println ( c . tlist )
}
c . localVars = make ( map [ string ] map [ string ] VarItemReflect )
c . localVars [ fname ] = make ( map [ string ] VarItemReflect )
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c . localVars [ fname ] [ "." ] = VarItemReflect { "." , varholder , holdreflect }
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if c . Fragments == nil {
c . Fragments = make ( map [ string ] int )
}
c . FragmentCursor = make ( map [ string ] int )
c . FragmentCursor [ fname ] = 0
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out += c . rootIterate ( c . tlist [ fname ] , varholder , holdreflect , fname )
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var importList string
if c . doImports {
for _ , item := range c . importMap {
importList += "import \"" + item + "\"\n"
}
}
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var varString string
for _ , varItem := range c . varList {
varString += "var " + varItem . Name + " " + varItem . Type + " = " + varItem . Destination + "\n"
}
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fout := "// +build !no_templategen\n\n// Code generated by Gosora. More below:\n/* This file was automatically generated by the software. Please don't edit it as your changes may be overwritten at any moment. */\n"
fout += "package main\n" + importList + c . pVarList + "\n"
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fout += "// nolint\nfunc init() {\n\ttemplate_" + fname + "_handle = template_" + fname + "\n\t//o_template_" + fname + "_handle = template_" + fname + "\n\tctemplates = append(ctemplates,\"" + fname + "\")\n\ttmplPtrMap[\"" + fname + "\"] = &template_" + fname + "_handle\n\ttmplPtrMap[\"o_" + fname + "\"] = template_" + fname + "\n}\n\n"
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fout += "// nolint\nfunc template_" + fname + "(tmpl_" + fname + "_vars " + expects + ", w http.ResponseWriter) error {\n" + varString + out + "\treturn nil\n}\n"
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fout = strings . Replace ( fout , ` ) )
w . Write ( [ ] byte ( ` , " + " , - 1 )
fout = strings . Replace ( fout , "` + `" , "" , - 1 )
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//spstr := "`([:space:]*)`"
//whitespace_writes := regexp.MustCompile(`(?s)w.Write\(\[\]byte\(`+spstr+`\)\)`)
//fout = whitespace_writes.ReplaceAllString(fout,"")
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if dev . DebugMode {
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for index , count := range c . stats {
fmt . Println ( index + ": " + strconv . Itoa ( count ) )
}
fmt . Println ( " " )
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}
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if dev . TemplateDebug {
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fmt . Println ( "Output!" )
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fmt . Println ( fout )
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}
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return fout , nil
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}
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func ( c * CTemplateSet ) rootIterate ( tree * parse . Tree , varholder string , holdreflect reflect . Value , fname string ) ( out string ) {
if dev . TemplateDebug {
fmt . Println ( tree . Root )
}
treeLength := len ( tree . Root . Nodes )
for index , node := range tree . Root . Nodes {
if dev . TemplateDebug {
fmt . Println ( "Node: " , node . String ( ) )
}
c . previousNode = c . currentNode
c . currentNode = node . Type ( )
if treeLength != ( index + 1 ) {
c . nextNode = tree . Root . Nodes [ index + 1 ] . Type ( )
}
out += c . compileSwitch ( varholder , holdreflect , fname , node )
}
return out
}
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func ( c * CTemplateSet ) compileSwitch ( varholder string , holdreflect reflect . Value , templateName string , node interface { } ) ( out string ) {
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if dev . TemplateDebug {
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fmt . Println ( "in compileSwitch" )
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}
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switch node := node . ( type ) {
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case * parse . ActionNode :
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if dev . TemplateDebug {
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fmt . Println ( "Action Node" )
}
if node . Pipe == nil {
break
}
for _ , cmd := range node . Pipe . Cmds {
out += c . compileSubswitch ( varholder , holdreflect , templateName , cmd )
}
return out
case * parse . IfNode :
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if dev . TemplateDebug {
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fmt . Println ( "If Node:" )
fmt . Println ( "node.Pipe" , node . Pipe )
}
var expr string
for _ , cmd := range node . Pipe . Cmds {
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if dev . TemplateDebug {
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fmt . Println ( "If Node Bit:" , cmd )
fmt . Println ( "If Node Bit Type:" , reflect . ValueOf ( cmd ) . Type ( ) . Name ( ) )
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}
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expr += c . compileVarswitch ( varholder , holdreflect , templateName , cmd )
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if dev . TemplateDebug {
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fmt . Println ( "If Node Expression Step:" , c . compileVarswitch ( varholder , holdreflect , templateName , cmd ) )
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}
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}
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if dev . TemplateDebug {
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fmt . Println ( "If Node Expression:" , expr )
}
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c . previousNode = c . currentNode
c . currentNode = parse . NodeList
c . nextNode = - 1
if node . ElseList == nil {
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if dev . TemplateDebug {
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fmt . Println ( "Selected Branch 1" )
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}
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return "if " + expr + " {\n" + c . compileSwitch ( varholder , holdreflect , templateName , node . List ) + "}\n"
}
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if dev . TemplateDebug {
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fmt . Println ( "Selected Branch 2" )
}
return "if " + expr + " {\n" + c . compileSwitch ( varholder , holdreflect , templateName , node . List ) + "} else {\n" + c . compileSwitch ( varholder , holdreflect , templateName , node . ElseList ) + "}\n"
case * parse . ListNode :
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if dev . TemplateDebug {
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fmt . Println ( "List Node" )
}
for _ , subnode := range node . Nodes {
out += c . compileSwitch ( varholder , holdreflect , templateName , subnode )
}
return out
case * parse . RangeNode :
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if dev . TemplateDebug {
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fmt . Println ( "Range Node!" )
fmt . Println ( node . Pipe )
}
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var outVal reflect . Value
for _ , cmd := range node . Pipe . Cmds {
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if dev . TemplateDebug {
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fmt . Println ( "Range Bit:" , cmd )
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}
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out , outVal = c . compileReflectswitch ( varholder , holdreflect , templateName , cmd )
}
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if dev . TemplateDebug {
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fmt . Println ( "Returned:" , out )
fmt . Println ( "Range Kind Switch!" )
}
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switch outVal . Kind ( ) {
case reflect . Map :
var item reflect . Value
for _ , key := range outVal . MapKeys ( ) {
item = outVal . MapIndex ( key )
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}
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if dev . DebugMode {
fmt . Println ( "Range item:" , item )
}
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if ! item . IsValid ( ) {
panic ( "item" + "^\n" + "Invalid map. Maybe, it doesn't have any entries for the template engine to analyse?" )
}
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if node . ElseList != nil {
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out = "if len(" + out + ") != 0 {\nfor _, item := range " + out + " {\n" + c . compileSwitch ( "item" , item , templateName , node . List ) + "}\n} else {\n" + c . compileSwitch ( "item" , item , templateName , node . ElseList ) + "}\n"
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} else {
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out = "if len(" + out + ") != 0 {\nfor _, item := range " + out + " {\n" + c . compileSwitch ( "item" , item , templateName , node . List ) + "}\n}"
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}
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case reflect . Slice :
if outVal . Len ( ) == 0 {
panic ( "The sample data needs at-least one or more elements for the slices. We're looking into removing this requirement at some point!" )
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}
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item := outVal . Index ( 0 )
out = "if len(" + out + ") != 0 {\nfor _, item := range " + out + " {\n" + c . compileSwitch ( "item" , item , templateName , node . List ) + "}\n}"
case reflect . Invalid :
return ""
}
if node . ElseList != nil {
out += " else {\n" + c . compileSwitch ( varholder , holdreflect , templateName , node . ElseList ) + "}\n"
} else {
out += "\n"
}
return out
case * parse . TemplateNode :
return c . compileSubtemplate ( varholder , holdreflect , node )
case * parse . TextNode :
c . previousNode = c . currentNode
c . currentNode = node . Type ( )
c . nextNode = 0
tmpText := bytes . TrimSpace ( node . Text )
if len ( tmpText ) == 0 {
return ""
}
//return "w.Write([]byte(`" + string(node.Text) + "`))\n"
fragmentName := templateName + "_" + strconv . Itoa ( c . FragmentCursor [ templateName ] )
_ , ok := c . Fragments [ fragmentName ]
if ! ok {
c . Fragments [ fragmentName ] = len ( node . Text )
c . FragOut += "var " + fragmentName + " = []byte(`" + string ( node . Text ) + "`)\n"
}
c . FragmentCursor [ templateName ] = c . FragmentCursor [ templateName ] + 1
return "w.Write(" + fragmentName + ")\n"
default :
panic ( "Unknown Node in main switch" )
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}
return ""
}
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func ( c * CTemplateSet ) compileSubswitch ( varholder string , holdreflect reflect . Value , templateName string , node * parse . CommandNode ) ( out string ) {
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if dev . TemplateDebug {
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fmt . Println ( "in compileSubswitch" )
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}
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firstWord := node . Args [ 0 ]
switch n := firstWord . ( type ) {
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case * parse . FieldNode :
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if dev . TemplateDebug {
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fmt . Println ( "Field Node:" , n . Ident )
}
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/* Use reflect to determine if the field is for a method, otherwise assume it's a variable. Variable declarations are coming soon! */
cur := holdreflect
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var varbit string
if cur . Kind ( ) == reflect . Interface {
cur = cur . Elem ( )
varbit += ".(" + cur . Type ( ) . Name ( ) + ")"
}
for _ , id := range n . Ident {
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if dev . TemplateDebug {
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fmt . Println ( "Data Kind:" , cur . Kind ( ) . String ( ) )
fmt . Println ( "Field Bit:" , id )
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}
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if cur . Kind ( ) == reflect . Ptr {
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if dev . TemplateDebug {
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fmt . Println ( "Looping over pointer" )
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}
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for cur . Kind ( ) == reflect . Ptr {
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cur = cur . Elem ( )
}
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if dev . TemplateDebug {
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fmt . Println ( "Data Kind:" , cur . Kind ( ) . String ( ) )
fmt . Println ( "Field Bit:" , id )
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}
}
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if ! cur . IsValid ( ) {
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if dev . DebugMode {
fmt . Println ( "Debug Data:" )
fmt . Println ( "Holdreflect:" , holdreflect )
fmt . Println ( "Holdreflect.Kind()" , holdreflect . Kind ( ) )
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if ! dev . TemplateDebug {
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fmt . Println ( "cur.Kind():" , cur . Kind ( ) . String ( ) )
}
fmt . Println ( "" )
}
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panic ( varholder + varbit + "^\n" + "Invalid value. Maybe, it doesn't exist?" )
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}
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cur = cur . FieldByName ( id )
if cur . Kind ( ) == reflect . Interface {
cur = cur . Elem ( )
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// TODO: Surely, there's a better way of detecting this?
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/ * if cur . Kind ( ) == reflect . String && cur . Type ( ) . Name ( ) != "string" {
varbit = "string(" + varbit + "." + id + ")" * /
//if cur.Kind() == reflect.String && cur.Type().Name() != "string" {
if cur . Type ( ) . PkgPath ( ) != "main" && cur . Type ( ) . PkgPath ( ) != "" {
c . importMap [ "html/template" ] = "html/template"
varbit += "." + id + ".(" + strings . TrimPrefix ( cur . Type ( ) . PkgPath ( ) , "html/" ) + "." + cur . Type ( ) . Name ( ) + ")"
} else {
varbit += "." + id + ".(" + cur . Type ( ) . Name ( ) + ")"
}
} else {
varbit += "." + id
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}
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if dev . TemplateDebug {
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fmt . Println ( "End Cycle" )
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}
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}
out = c . compileVarsub ( varholder + varbit , cur )
for _ , varItem := range c . varList {
if strings . HasPrefix ( out , varItem . Destination ) {
out = strings . Replace ( out , varItem . Destination , varItem . Name , 1 )
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}
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}
return out
case * parse . DotNode :
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if dev . TemplateDebug {
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fmt . Println ( "Dot Node:" , node . String ( ) )
}
return c . compileVarsub ( varholder , holdreflect )
case * parse . NilNode :
panic ( "Nil is not a command x.x" )
case * parse . VariableNode :
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if dev . TemplateDebug {
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fmt . Println ( "Variable Node:" , n . String ( ) )
fmt . Println ( n . Ident )
}
varname , reflectVal := c . compileIfVarsub ( n . String ( ) , varholder , templateName , holdreflect )
return c . compileVarsub ( varname , reflectVal )
case * parse . StringNode :
return n . Quoted
case * parse . IdentifierNode :
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if dev . TemplateDebug {
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fmt . Println ( "Identifier Node:" , node )
fmt . Println ( "Identifier Node Args:" , node . Args )
}
return c . compileVarsub ( c . compileIdentswitch ( varholder , holdreflect , templateName , node ) )
default :
fmt . Println ( "Unknown Kind:" , reflect . ValueOf ( firstWord ) . Elem ( ) . Kind ( ) )
fmt . Println ( "Unknown Type:" , reflect . ValueOf ( firstWord ) . Elem ( ) . Type ( ) . Name ( ) )
panic ( "I don't know what node this is" )
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}
}
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func ( c * CTemplateSet ) compileVarswitch ( varholder string , holdreflect reflect . Value , templateName string , node * parse . CommandNode ) ( out string ) {
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if dev . TemplateDebug {
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fmt . Println ( "in compile_varswitch" )
}
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firstWord := node . Args [ 0 ]
switch n := firstWord . ( type ) {
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case * parse . FieldNode :
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if dev . TemplateDebug {
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fmt . Println ( "Field Node:" , n . Ident )
for _ , id := range n . Ident {
fmt . Println ( "Field Bit:" , id )
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}
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}
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/* Use reflect to determine if the field is for a method, otherwise assume it's a variable. Coming Soon. */
return c . compileBoolsub ( n . String ( ) , varholder , templateName , holdreflect )
case * parse . ChainNode :
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if dev . TemplateDebug {
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fmt . Println ( "Chain Node:" , n . Node )
fmt . Println ( "Chain Node Args:" , node . Args )
}
case * parse . IdentifierNode :
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if dev . TemplateDebug {
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fmt . Println ( "Identifier Node:" , node )
fmt . Println ( "Identifier Node Args:" , node . Args )
}
return c . compileIdentswitchN ( varholder , holdreflect , templateName , node )
case * parse . DotNode :
return varholder
case * parse . VariableNode :
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if dev . TemplateDebug {
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fmt . Println ( "Variable Node:" , n . String ( ) )
fmt . Println ( "Variable Node Identifier:" , n . Ident )
}
out , _ = c . compileIfVarsub ( n . String ( ) , varholder , templateName , holdreflect )
return out
case * parse . NilNode :
panic ( "Nil is not a command x.x" )
case * parse . PipeNode :
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if dev . TemplateDebug {
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fmt . Println ( "Pipe Node!" )
fmt . Println ( n )
fmt . Println ( "Args:" , node . Args )
}
out += c . compileIdentswitchN ( varholder , holdreflect , templateName , node )
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if dev . TemplateDebug {
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fmt . Println ( "Out:" , out )
}
return out
default :
fmt . Println ( "Unknown Kind:" , reflect . ValueOf ( firstWord ) . Elem ( ) . Kind ( ) )
fmt . Println ( "Unknown Type:" , reflect . ValueOf ( firstWord ) . Elem ( ) . Type ( ) . Name ( ) )
panic ( "I don't know what node this is! Grr..." )
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}
return ""
}
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func ( c * CTemplateSet ) compileIdentswitchN ( varholder string , holdreflect reflect . Value , templateName string , node * parse . CommandNode ) ( out string ) {
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if dev . TemplateDebug {
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fmt . Println ( "in compile_identswitch_n" )
}
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out , _ = c . compileIdentswitch ( varholder , holdreflect , templateName , node )
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return out
}
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func ( c * CTemplateSet ) compileIdentswitch ( varholder string , holdreflect reflect . Value , templateName string , node * parse . CommandNode ) ( out string , val reflect . Value ) {
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if dev . TemplateDebug {
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fmt . Println ( "in compileIdentswitch" )
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}
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//var outbuf map[int]string
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ArgLoop :
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for pos := 0 ; pos < len ( node . Args ) ; pos ++ {
id := node . Args [ pos ]
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if dev . TemplateDebug {
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fmt . Println ( "pos:" , pos )
fmt . Println ( "ID:" , id )
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}
switch id . String ( ) {
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case "not" :
out += "!"
case "or" :
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if dev . TemplateDebug {
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fmt . Println ( "Building or function" )
}
if pos == 0 {
fmt . Println ( "pos:" , pos )
panic ( "or is missing a left operand" )
}
if len ( node . Args ) <= pos {
fmt . Println ( "post pos:" , pos )
fmt . Println ( "len(node.Args):" , len ( node . Args ) )
panic ( "or is missing a right operand" )
}
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left := c . compileBoolsub ( node . Args [ pos - 1 ] . String ( ) , varholder , templateName , holdreflect )
_ , funcExists := c . funcMap [ node . Args [ pos + 1 ] . String ( ) ]
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var right string
if ! funcExists {
right = c . compileBoolsub ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect )
}
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out += left + " || " + right
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if dev . TemplateDebug {
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fmt . Println ( "Left operand:" , node . Args [ pos - 1 ] )
fmt . Println ( "Right operand:" , node . Args [ pos + 1 ] )
}
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if ! funcExists {
pos ++
}
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if dev . TemplateDebug {
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fmt . Println ( "pos:" , pos )
fmt . Println ( "len(node.Args):" , len ( node . Args ) )
}
case "and" :
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if dev . TemplateDebug {
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fmt . Println ( "Building and function" )
}
if pos == 0 {
fmt . Println ( "pos:" , pos )
panic ( "and is missing a left operand" )
}
if len ( node . Args ) <= pos {
fmt . Println ( "post pos:" , pos )
fmt . Println ( "len(node.Args):" , len ( node . Args ) )
panic ( "and is missing a right operand" )
}
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left := c . compileBoolsub ( node . Args [ pos - 1 ] . String ( ) , varholder , templateName , holdreflect )
_ , funcExists := c . funcMap [ node . Args [ pos + 1 ] . String ( ) ]
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var right string
if ! funcExists {
right = c . compileBoolsub ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect )
}
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out += left + " && " + right
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if dev . TemplateDebug {
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fmt . Println ( "Left operand:" , node . Args [ pos - 1 ] )
fmt . Println ( "Right operand:" , node . Args [ pos + 1 ] )
}
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if ! funcExists {
pos ++
}
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if dev . TemplateDebug {
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fmt . Println ( "pos:" , pos )
fmt . Println ( "len(node.Args):" , len ( node . Args ) )
}
case "le" :
out += c . compileIfVarsubN ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect ) + " <= " + c . compileIfVarsubN ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
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if dev . TemplateDebug {
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fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "lt" :
out += c . compileIfVarsubN ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect ) + " < " + c . compileIfVarsubN ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
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if dev . TemplateDebug {
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fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "gt" :
out += c . compileIfVarsubN ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect ) + " > " + c . compileIfVarsubN ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
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if dev . TemplateDebug {
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fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "ge" :
out += c . compileIfVarsubN ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect ) + " >= " + c . compileIfVarsubN ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
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if dev . TemplateDebug {
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fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "eq" :
out += c . compileIfVarsubN ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect ) + " == " + c . compileIfVarsubN ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
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if dev . TemplateDebug {
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fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "ne" :
out += c . compileIfVarsubN ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect ) + " != " + c . compileIfVarsubN ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
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if dev . TemplateDebug {
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fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "add" :
param1 , val2 := c . compileIfVarsub ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect )
param2 , val3 := c . compileIfVarsub ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
if val2 . IsValid ( ) {
val = val2
} else if val3 . IsValid ( ) {
val = val3
} else {
numSample := 1
val = reflect . ValueOf ( numSample )
}
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out += param1 + " + " + param2
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if dev . TemplateDebug {
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fmt . Println ( "add" )
fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "subtract" :
param1 , val2 := c . compileIfVarsub ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect )
param2 , val3 := c . compileIfVarsub ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
if val2 . IsValid ( ) {
val = val2
} else if val3 . IsValid ( ) {
val = val3
} else {
numSample := 1
val = reflect . ValueOf ( numSample )
}
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out += param1 + " - " + param2
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if dev . TemplateDebug {
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fmt . Println ( "subtract" )
fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "divide" :
param1 , val2 := c . compileIfVarsub ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect )
param2 , val3 := c . compileIfVarsub ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
if val2 . IsValid ( ) {
val = val2
} else if val3 . IsValid ( ) {
val = val3
} else {
numSample := 1
val = reflect . ValueOf ( numSample )
}
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out += param1 + " / " + param2
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if dev . TemplateDebug {
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fmt . Println ( "divide" )
fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
case "multiply" :
param1 , val2 := c . compileIfVarsub ( node . Args [ pos + 1 ] . String ( ) , varholder , templateName , holdreflect )
param2 , val3 := c . compileIfVarsub ( node . Args [ pos + 2 ] . String ( ) , varholder , templateName , holdreflect )
if val2 . IsValid ( ) {
val = val2
} else if val3 . IsValid ( ) {
val = val3
} else {
numSample := 1
val = reflect . ValueOf ( numSample )
}
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out += param1 + " * " + param2
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if dev . TemplateDebug {
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fmt . Println ( "multiply" )
fmt . Println ( "node.Args[pos + 1]" , node . Args [ pos + 1 ] )
fmt . Println ( "node.Args[pos + 2]" , node . Args [ pos + 2 ] )
}
break ArgLoop
default :
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if dev . TemplateDebug {
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fmt . Println ( "Variable!" )
}
if len ( node . Args ) > ( pos + 1 ) {
nextNode := node . Args [ pos + 1 ] . String ( )
if nextNode == "or" || nextNode == "and" {
continue
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}
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}
out += c . compileIfVarsubN ( id . String ( ) , varholder , templateName , holdreflect )
2016-12-16 10:37:42 +00:00
}
}
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//for _, outval := range outbuf {
// out += outval
//}
2017-01-21 18:16:27 +00:00
return out , val
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}
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func ( c * CTemplateSet ) compileReflectswitch ( varholder string , holdreflect reflect . Value , templateName string , node * parse . CommandNode ) ( out string , outVal reflect . Value ) {
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if dev . TemplateDebug {
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fmt . Println ( "in compileReflectswitch" )
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}
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firstWord := node . Args [ 0 ]
switch n := firstWord . ( type ) {
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case * parse . FieldNode :
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if dev . TemplateDebug {
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fmt . Println ( "Field Node:" , n . Ident )
for _ , id := range n . Ident {
fmt . Println ( "Field Bit:" , id )
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}
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}
/* Use reflect to determine if the field is for a method, otherwise assume it's a variable. Coming Soon. */
return c . compileIfVarsub ( n . String ( ) , varholder , templateName , holdreflect )
case * parse . ChainNode :
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if dev . TemplateDebug {
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fmt . Println ( "Chain Node:" , n . Node )
fmt . Println ( "node.Args" , node . Args )
}
return "" , outVal
case * parse . DotNode :
return varholder , holdreflect
case * parse . NilNode :
panic ( "Nil is not a command x.x" )
default :
//panic("I don't know what node this is")
2016-12-16 10:37:42 +00:00
}
return "" , outVal
}
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func ( c * CTemplateSet ) compileIfVarsubN ( varname string , varholder string , templateName string , cur reflect . Value ) ( out string ) {
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if dev . TemplateDebug {
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fmt . Println ( "in compileIfVarsubN" )
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}
2017-09-03 04:50:31 +00:00
out , _ = c . compileIfVarsub ( varname , varholder , templateName , cur )
2016-12-16 10:37:42 +00:00
return out
}
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func ( c * CTemplateSet ) compileIfVarsub ( varname string , varholder string , templateName string , cur reflect . Value ) ( out string , val reflect . Value ) {
2017-09-23 21:28:50 +00:00
if dev . TemplateDebug {
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fmt . Println ( "in compileIfVarsub" )
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}
2016-12-16 10:37:42 +00:00
if varname [ 0 ] != '.' && varname [ 0 ] != '$' {
return varname , cur
}
2017-06-16 10:41:30 +00:00
2017-09-03 04:50:31 +00:00
bits := strings . Split ( varname , "." )
2016-12-16 10:37:42 +00:00
if varname [ 0 ] == '$' {
var res VarItemReflect
if varname [ 1 ] == '.' {
2017-09-03 04:50:31 +00:00
res = c . localVars [ templateName ] [ "." ]
2016-12-16 10:37:42 +00:00
} else {
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res = c . localVars [ templateName ] [ strings . TrimPrefix ( bits [ 0 ] , "$" ) ]
2016-12-16 10:37:42 +00:00
}
out += res . Destination
cur = res . Value
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if cur . Kind ( ) == reflect . Interface {
cur = cur . Elem ( )
}
} else {
if cur . Kind ( ) == reflect . Interface {
cur = cur . Elem ( )
out += varholder + ".(" + cur . Type ( ) . Name ( ) + ")"
} else {
out += varholder
}
}
2017-09-03 04:50:31 +00:00
bits [ 0 ] = strings . TrimPrefix ( bits [ 0 ] , "$" )
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2017-09-23 21:28:50 +00:00
if dev . TemplateDebug {
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fmt . Println ( "Cur Kind:" , cur . Kind ( ) )
fmt . Println ( "Cur Type:" , cur . Type ( ) . Name ( ) )
2016-12-16 10:37:42 +00:00
}
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for _ , bit := range bits {
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if dev . TemplateDebug {
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fmt . Println ( "Variable Field:" , bit )
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}
if bit == "" {
continue
}
2017-06-16 10:41:30 +00:00
2017-09-10 16:57:22 +00:00
// TODO: Fix this up so that it works for regular pointers and not just struct pointers. Ditto for the other cur.Kind() == reflect.Ptr we have in this file
2017-08-06 15:22:18 +00:00
if cur . Kind ( ) == reflect . Ptr {
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if dev . TemplateDebug {
2017-08-06 15:22:18 +00:00
fmt . Println ( "Looping over pointer" )
}
for cur . Kind ( ) == reflect . Ptr {
cur = cur . Elem ( )
}
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if dev . TemplateDebug {
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fmt . Println ( "Data Kind:" , cur . Kind ( ) . String ( ) )
fmt . Println ( "Field Bit:" , bit )
2017-08-06 15:22:18 +00:00
}
}
2016-12-16 10:37:42 +00:00
cur = cur . FieldByName ( bit )
if cur . Kind ( ) == reflect . Interface {
cur = cur . Elem ( )
out += "." + bit + ".(" + cur . Type ( ) . Name ( ) + ")"
} else {
out += "." + bit
}
2017-06-16 10:41:30 +00:00
2017-06-19 08:06:54 +00:00
if ! cur . IsValid ( ) {
panic ( out + "^\n" + "Invalid value. Maybe, it doesn't exist?" )
}
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if dev . TemplateDebug {
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fmt . Println ( "Data Kind:" , cur . Kind ( ) )
fmt . Println ( "Data Type:" , cur . Type ( ) . Name ( ) )
2016-12-16 10:37:42 +00:00
}
}
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if dev . TemplateDebug {
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fmt . Println ( "Out Value:" , out )
fmt . Println ( "Out Kind:" , cur . Kind ( ) )
fmt . Println ( "Out Type:" , cur . Type ( ) . Name ( ) )
2017-01-21 18:16:27 +00:00
}
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2016-12-16 10:37:42 +00:00
for _ , varItem := range c . varList {
if strings . HasPrefix ( out , varItem . Destination ) {
out = strings . Replace ( out , varItem . Destination , varItem . Name , 1 )
}
}
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if dev . TemplateDebug {
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fmt . Println ( "Out Value:" , out )
fmt . Println ( "Out Kind:" , cur . Kind ( ) )
fmt . Println ( "Out Type:" , cur . Type ( ) . Name ( ) )
2017-01-21 18:16:27 +00:00
}
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2016-12-17 03:39:53 +00:00
_ , ok := c . stats [ out ]
if ok {
c . stats [ out ] ++
} else {
c . stats [ out ] = 1
}
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2016-12-16 10:37:42 +00:00
return out , cur
}
2017-09-03 04:50:31 +00:00
func ( c * CTemplateSet ) compileBoolsub ( varname string , varholder string , templateName string , val reflect . Value ) string {
2017-09-23 21:28:50 +00:00
if dev . TemplateDebug {
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fmt . Println ( "in compileBoolsub" )
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}
2017-09-03 04:50:31 +00:00
out , val := c . compileIfVarsub ( varname , varholder , templateName , val )
Added Quick Topic.
Added Attachments.
Added Attachment Media Embeds.
Renamed a load of *Store and *Cache methods to reduce the amount of unneccesary typing.
Added petabytes as a unit and cleaned up a few of the friendly units.
Refactored the username change logic to make it easier to maintain.
Refactored the avatar change logic to make it easier to maintain.
Shadow now uses CSS Variables for most of it's colours. We have plans to transpile this to support older browsers later on!
Snuck some CSS Variables into Tempra Conflux.
Added the GroupCache interface to MemoryGroupStore.
Added the Length method to MemoryGroupStore.
Added support for a site short name.
Added the UploadFiles permission.
Renamed more functions.
Fixed the background for the left gutter on the postbit for Tempra Simple and Shadow.
Added support for if statements operating on int8, int16, int32, int32, int64, uint, uint8, uint16, uint32, uint64, float32, and float64 for the template compiler.
Added support for if statements operating on slices and maps for the template compiler.
Fixed a security exploit in reply editing.
Fixed a bug in the URL detector in the parser where it couldn't find URLs with non-standard ports.
Fixed buttons having blue outlines on focus on Shadow.
Refactored the topic creation logic to make it easier to maintain.
Made a few responsive fixes, but there's still more to do in the following commits!
2017-10-05 10:20:28 +00:00
// TODO: What if it's a pointer or an interface? I *think* we've got pointers handled somewhere, but not interfaces which we don't know the types of at compile time
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switch val . Kind ( ) {
Added Quick Topic.
Added Attachments.
Added Attachment Media Embeds.
Renamed a load of *Store and *Cache methods to reduce the amount of unneccesary typing.
Added petabytes as a unit and cleaned up a few of the friendly units.
Refactored the username change logic to make it easier to maintain.
Refactored the avatar change logic to make it easier to maintain.
Shadow now uses CSS Variables for most of it's colours. We have plans to transpile this to support older browsers later on!
Snuck some CSS Variables into Tempra Conflux.
Added the GroupCache interface to MemoryGroupStore.
Added the Length method to MemoryGroupStore.
Added support for a site short name.
Added the UploadFiles permission.
Renamed more functions.
Fixed the background for the left gutter on the postbit for Tempra Simple and Shadow.
Added support for if statements operating on int8, int16, int32, int32, int64, uint, uint8, uint16, uint32, uint64, float32, and float64 for the template compiler.
Added support for if statements operating on slices and maps for the template compiler.
Fixed a security exploit in reply editing.
Fixed a bug in the URL detector in the parser where it couldn't find URLs with non-standard ports.
Fixed buttons having blue outlines on focus on Shadow.
Refactored the topic creation logic to make it easier to maintain.
Made a few responsive fixes, but there's still more to do in the following commits!
2017-10-05 10:20:28 +00:00
case reflect . Int , reflect . Int8 , reflect . Int16 , reflect . Int32 , reflect . Int64 , reflect . Uint , reflect . Uint8 , reflect . Uint16 , reflect . Uint32 , reflect . Uint64 , reflect . Float32 , reflect . Float64 :
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out += " > 0"
case reflect . Bool : // Do nothing
case reflect . String :
out += " != \"\""
Added Quick Topic.
Added Attachments.
Added Attachment Media Embeds.
Renamed a load of *Store and *Cache methods to reduce the amount of unneccesary typing.
Added petabytes as a unit and cleaned up a few of the friendly units.
Refactored the username change logic to make it easier to maintain.
Refactored the avatar change logic to make it easier to maintain.
Shadow now uses CSS Variables for most of it's colours. We have plans to transpile this to support older browsers later on!
Snuck some CSS Variables into Tempra Conflux.
Added the GroupCache interface to MemoryGroupStore.
Added the Length method to MemoryGroupStore.
Added support for a site short name.
Added the UploadFiles permission.
Renamed more functions.
Fixed the background for the left gutter on the postbit for Tempra Simple and Shadow.
Added support for if statements operating on int8, int16, int32, int32, int64, uint, uint8, uint16, uint32, uint64, float32, and float64 for the template compiler.
Added support for if statements operating on slices and maps for the template compiler.
Fixed a security exploit in reply editing.
Fixed a bug in the URL detector in the parser where it couldn't find URLs with non-standard ports.
Fixed buttons having blue outlines on focus on Shadow.
Refactored the topic creation logic to make it easier to maintain.
Made a few responsive fixes, but there's still more to do in the following commits!
2017-10-05 10:20:28 +00:00
case reflect . Slice , reflect . Map :
out = "len(" + out + ") != 0"
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default :
fmt . Println ( "Variable Name:" , varname )
fmt . Println ( "Variable Holder:" , varholder )
fmt . Println ( "Variable Kind:" , val . Kind ( ) )
panic ( "I don't know what this variable's type is o.o\n" )
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}
return out
}
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func ( c * CTemplateSet ) compileVarsub ( varname string , val reflect . Value ) string {
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if dev . TemplateDebug {
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fmt . Println ( "in compileVarsub" )
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}
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for _ , varItem := range c . varList {
if strings . HasPrefix ( varname , varItem . Destination ) {
varname = strings . Replace ( varname , varItem . Destination , varItem . Name , 1 )
}
}
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_ , ok := c . stats [ varname ]
if ok {
c . stats [ varname ] ++
} else {
c . stats [ varname ] = 1
}
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if val . Kind ( ) == reflect . Interface {
val = val . Elem ( )
}
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switch val . Kind ( ) {
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case reflect . Int :
c . importMap [ "strconv" ] = "strconv"
return "w.Write([]byte(strconv.Itoa(" + varname + ")))\n"
case reflect . Bool :
return "if " + varname + " {\nw.Write([]byte(\"true\"))} else {\nw.Write([]byte(\"false\"))\n}\n"
case reflect . String :
if val . Type ( ) . Name ( ) != "string" && ! strings . HasPrefix ( varname , "string(" ) {
return "w.Write([]byte(string(" + varname + ")))\n"
}
return "w.Write([]byte(" + varname + "))\n"
case reflect . Int64 :
c . importMap [ "strconv" ] = "strconv"
return "w.Write([]byte(strconv.FormatInt(" + varname + ", 10)))"
default :
if ! val . IsValid ( ) {
panic ( varname + "^\n" + "Invalid value. Maybe, it doesn't exist?" )
}
fmt . Println ( "Unknown Variable Name:" , varname )
fmt . Println ( "Unknown Kind:" , val . Kind ( ) )
fmt . Println ( "Unknown Type:" , val . Type ( ) . Name ( ) )
panic ( "// I don't know what this variable's type is o.o\n" )
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}
}
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func ( c * CTemplateSet ) compileSubtemplate ( pvarholder string , pholdreflect reflect . Value , node * parse . TemplateNode ) ( out string ) {
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if dev . TemplateDebug {
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fmt . Println ( "in compileSubtemplate" )
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fmt . Println ( "Template Node:" , node . Name )
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}
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fname := strings . TrimSuffix ( node . Name , filepath . Ext ( node . Name ) )
varholder := "tmpl_" + fname + "_vars"
var holdreflect reflect . Value
if node . Pipe != nil {
for _ , cmd := range node . Pipe . Cmds {
firstWord := cmd . Args [ 0 ]
switch firstWord . ( type ) {
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case * parse . DotNode :
varholder = pvarholder
holdreflect = pholdreflect
case * parse . NilNode :
panic ( "Nil is not a command x.x" )
default :
out = "var " + varholder + " := false\n"
out += c . compileCommand ( cmd )
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}
}
}
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// TODO: Cascade errors back up the tree to the caller?
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res , err := ioutil . ReadFile ( c . dir + node . Name )
if err != nil {
log . Fatal ( err )
}
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content := string ( res )
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if config . MinifyTemplates {
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content = minify ( content )
}
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tree := parse . New ( node . Name , c . funcMap )
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var treeSet = make ( map [ string ] * parse . Tree )
tree , err = tree . Parse ( content , "{{" , "}}" , treeSet , c . funcMap )
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if err != nil {
log . Fatal ( err )
}
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c . tlist [ fname ] = tree
subtree := c . tlist [ fname ]
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if dev . TemplateDebug {
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fmt . Println ( "subtree.Root" , subtree . Root )
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}
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c . localVars [ fname ] = make ( map [ string ] VarItemReflect )
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c . localVars [ fname ] [ "." ] = VarItemReflect { "." , varholder , holdreflect }
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c . FragmentCursor [ fname ] = 0
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out += c . rootIterate ( subtree , varholder , holdreflect , fname )
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return out
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}
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func ( c * CTemplateSet ) compileCommand ( * parse . CommandNode ) ( out string ) {
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panic ( "Uh oh! Something went wrong!" )
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}
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// TODO: Write unit tests for this
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func minify ( data string ) string {
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data = strings . Replace ( data , "\t" , "" , - 1 )
data = strings . Replace ( data , "\v" , "" , - 1 )
data = strings . Replace ( data , "\n" , "" , - 1 )
data = strings . Replace ( data , "\r" , "" , - 1 )
data = strings . Replace ( data , " " , " " , - 1 )
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return data
}
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// TODO: Strip comments
// TODO: Handle CSS nested in <style> tags?
// TODO: Write unit tests for this
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func minifyHTML ( data string ) string {
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return minify ( data )
}
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// TODO: Have static files use this
// TODO: Strip comments
// TODO: Convert the rgb()s to hex codes?
// TODO: Write unit tests for this
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func minifyCSS ( data string ) string {
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return minify ( data )
}
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// TODO: Convert this to three character hex strings whenever possible?
// TODO: Write unit tests for this
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// nolint
func rgbToHexstr ( red int , green int , blue int ) string {
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return strconv . FormatInt ( int64 ( red ) , 16 ) + strconv . FormatInt ( int64 ( green ) , 16 ) + strconv . FormatInt ( int64 ( blue ) , 16 )
}
/ *
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// TODO: Write unit tests for this
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func hexstrToRgb ( hexstr string ) ( red int , blue int , green int , err error ) {
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// Strip the # at the start
if hexstr [ 0 ] == '#' {
hexstr = strings . TrimPrefix ( hexstr , "#" )
}
if len ( hexstr ) != 3 && len ( hexstr ) != 6 {
return 0 , 0 , 0 , errors . New ( "Hex colour codes may only be three or six characters long" )
}
if len ( hexstr ) == 3 {
hexstr = hexstr [ 0 ] + hexstr [ 0 ] + hexstr [ 1 ] + hexstr [ 1 ] + hexstr [ 2 ] + hexstr [ 2 ]
}
} * /