Greg
d8552bcf9d
config directives. Do not panic on failed regexp in AST parsing, instead return &ast.Unknown{} for further debugging. Add debutast: directive to print context when AST nodes are not recognized.
338 lines
7.6 KiB
Go
338 lines
7.6 KiB
Go
package main
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import (
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"fmt"
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"io/ioutil"
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"log"
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"os"
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"os/exec"
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"regexp"
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"runtime"
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"runtime/pprof"
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"strings"
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"gopkg.in/yaml.v2"
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"git.wow.st/gmp/nswrap/ast"
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"git.wow.st/gmp/nswrap/wrap"
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)
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var Debug = false
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var Profile = false
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type conf struct {
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Positions bool
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Package string
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Inputfiles []string
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Astfile string
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Debugast bool
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Classes []string
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Functions []string
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Enums []string
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Delegates map[string]map[string][]string
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Subclasses map[string]map[string][]string
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Frameworks []string
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Imports []string
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Sysimports []string
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Pragma []string
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Vaargs int
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//Arc flag for debugging only, builds will break
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Arc bool
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}
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var Config conf
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func readAST(data []byte) []string {
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return strings.Split(string(data), "\n")
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}
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type treeNode struct {
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indent int
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node ast.Node
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}
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func printLinesWithContext(lines []string,i int) {
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b := i - 3
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if b < 0 { b = 0 }
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var flag string
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for x := b; (x < b + 6) && (x < len(lines)); x++ {
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if x == i {
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flag = "--> "
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} else {
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flag = " "
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}
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fmt.Printf("%s%s\n",flag,lines[x])
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}
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}
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func convertLinesToNodes(lines []string) []treeNode {
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nodes := make([]treeNode, len(lines))
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var counter int
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unknowns := 0
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for i, line := range lines {
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if strings.TrimSpace(line) == "" {
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continue
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}
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// It is tempting to discard null AST nodes, but these may
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// have semantic importance: for example, they represent omitted
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// for-loop conditions, as in for(;;).
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line = strings.Replace(line, "<<<NULL>>>", "NullStmt", 1)
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trimmed := strings.TrimLeft(line, "|\\- `")
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node := ast.Parse(trimmed)
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indentLevel := (len(line) - len(trimmed)) / 2
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nodes[counter] = treeNode{indentLevel, node}
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counter++
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if !Config.Debugast {
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continue
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}
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switch node.(type) {
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case *ast.Unknown:
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fmt.Printf("Unrecognized node:\n")
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printLinesWithContext(lines,i)
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fmt.Printf("\n")
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unknowns++
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if unknowns > 5 {
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fmt.Printf("nswrap failed due to unrecognized nodes.\n")
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os.Exit(-1)
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}
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}
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}
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nodes = nodes[0:counter]
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if Config.Debugast && unknowns > 0 {
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fmt.Printf("\nswrap failed due to unrecognized nodes.\n")
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os.Exit(-1)
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}
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return nodes
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}
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func convertLinesToNodesParallel(lines []string) []treeNode {
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// function f separate full list on 2 parts and
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// then each part can recursive run function f
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var f func([]string, int) []treeNode
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f = func(lines []string, deep int) []treeNode {
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deep = deep - 2
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part := len(lines) / 2
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var tr1 = make(chan []treeNode)
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var tr2 = make(chan []treeNode)
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go func(lines []string, deep int) {
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if deep <= 0 || len(lines) < deep {
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tr1 <- convertLinesToNodes(lines)
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return
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}
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tr1 <- f(lines, deep)
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}(lines[0:part], deep)
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go func(lines []string, deep int) {
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if deep <= 0 || len(lines) < deep {
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tr2 <- convertLinesToNodes(lines)
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return
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}
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tr2 <- f(lines, deep)
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}(lines[part:], deep)
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defer close(tr1)
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defer close(tr2)
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return append(<-tr1, <-tr2...)
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}
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// Parameter of deep - can be any, but effective to use
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// same amount of CPU
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return f(lines, runtime.NumCPU())
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}
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// buildTree converts an array of nodes, each prefixed with a depth into a tree.
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func buildTree(nodes []treeNode, depth int) []ast.Node {
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if len(nodes) == 0 {
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return []ast.Node{}
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}
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// Split the list into sections, treat each section as a tree with its own
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// root.
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sections := [][]treeNode{}
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for _, node := range nodes {
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if node.indent == depth {
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sections = append(sections, []treeNode{node})
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} else {
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sections[len(sections)-1] = append(sections[len(sections)-1], node)
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}
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}
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results := []ast.Node{}
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for _, section := range sections {
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slice := []treeNode{}
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for _, n := range section {
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if n.indent > depth {
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slice = append(slice, n)
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}
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}
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children := buildTree(slice, depth+1)
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for _, child := range children {
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section[0].node.AddChild(child)
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}
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results = append(results, section[0].node)
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}
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return results
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}
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func matches(x string, rs []string) bool {
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for _,r := range rs {
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if m, _ := regexp.MatchString("^" + r + "$",x); m {
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return true
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}
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}
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return false
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}
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// Start begins transpiling an input file.
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func Start() (err error) {
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astPP := []byte{}
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if Config.Astfile != "" {
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fmt.Printf("Reading ast file %s\n",Config.Astfile)
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_, err = os.Stat(Config.Astfile)
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if err != nil {
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return fmt.Errorf("Input AST file %s not found",Config.Astfile)
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}
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astPP, err = ioutil.ReadFile(Config.Astfile)
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if err != nil {
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return err
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}
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} else {
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for _, in := range Config.Inputfiles {
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_, err = os.Stat(in)
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if err != nil {
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return fmt.Errorf("Input file %s is not found", in)
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}
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}
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// Generate AST
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cargs := []string{"-xobjective-c", "-Xclang", "-ast-dump",
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"-fsyntax-only","-fno-color-diagnostics"}
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if Config.Arc {
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cargs = append(cargs,"-fobjc-arc")
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}
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cargs = append(cargs,Config.Inputfiles...)
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fmt.Printf("Generating AST\n")
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astPP, err = exec.Command("clang",cargs...).Output()
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if err != nil {
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// If clang fails it still prints out the AST, so we have to run it
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// again to get the real error.
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//errBody, _ := exec.Command("clang", cargs...).CombinedOutput()
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var txt string
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switch x := err.(type) {
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case *exec.ExitError:
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txt = string(x.Stderr)
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default:
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txt = err.Error()
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}
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fmt.Printf("clang failed:\n%s\n", txt)
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os.Exit(-1)
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}
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}
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lines := readAST(astPP)
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// Converting to nodes
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fmt.Printf("Building nodes\n")
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if Config.Positions {
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ast.TrackPositions = true
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}
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if Config.Arc {
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wrap.Arc = true
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}
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//NOTE: converting in parallel is slower on my system
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//nodes := convertLinesToNodesParallel(lines)
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nodes := convertLinesToNodes(lines)
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// build tree
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fmt.Printf("Assembling tree\n")
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tree := buildTree(nodes, 0)
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w := wrap.NewWrapper(Debug)
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w.Package = Config.Package
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w.Frameworks(Config.Frameworks)
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w.Import(Config.Imports)
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w.SysImport(Config.Sysimports)
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w.Pragma(Config.Pragma)
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w.Delegate(Config.Delegates)
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w.Subclass(Config.Subclasses)
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if Config.Vaargs == 0 {
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Config.Vaargs = 16
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}
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w.Vaargs = Config.Vaargs
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for _, u := range tree {
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fmt.Printf("--processing translation unit\n")
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for _, n := range(u.Children()) {
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switch x := n.(type) {
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case *ast.ObjCInterfaceDecl:
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w.AddInterface(x)
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for _,ss := range Config.Subclasses {
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if sc,ok := ss["superclass"]; ok {
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if matches(x.Name,sc) {
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Config.Classes = append(Config.Classes,x.Name)
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}
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}
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}
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case *ast.ObjCCategoryDecl:
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w.AddCategory(x)
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case *ast.TypedefDecl:
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w.AddTypedef(x.Name,x.Type)
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case *ast.FunctionDecl:
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if matches(x.Name,Config.Functions) {
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w.AddFunction(x)
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}
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case *ast.ObjCProtocolDecl:
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w.AddProtocol(x)
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case *ast.EnumDecl:
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w.AddEnum(x,Config.Enums)
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}
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}
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}
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w.Wrap(Config.Classes)
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return nil
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}
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func main() {
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if Profile {
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f1, err := os.Create("cpuprofile.pprof")
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if err != nil {
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log.Fatal("could not create CPU profile: ", err)
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}
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defer f1.Close()
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if err := pprof.StartCPUProfile(f1); err != nil {
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log.Fatal("could not start CPU profile: ", err)
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}
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defer pprof.StopCPUProfile()
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}
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confbytes, err := ioutil.ReadFile("nswrap.yaml")
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if err != nil {
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fmt.Printf("%s\n\nFATAL ERROR: Configuration file must be present in directory where nswrap\nis invoked.\n",err)
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os.Exit(-1)
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}
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if err = yaml.UnmarshalStrict(confbytes,&Config); err != nil {
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fmt.Printf("Cannot decode config file nswrap.yaml. %s\n",err)
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os.Exit(-1)
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}
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if err := Start(); err != nil {
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fmt.Printf("Error: %v\n", err)
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os.Exit(-1)
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}
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if Profile {
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f2, err := os.Create("memprofile.pprof")
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if err != nil {
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log.Fatal("could not create memory profile: ", err)
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}
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defer f2.Close()
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runtime.GC() // get up-to-date statistics
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if err := pprof.WriteHeapProfile(f2); err != nil {
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log.Fatal("could not write memory profile: ", err)
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}
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}
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}
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