github.com/panjjo/go@v0.0.0-20161104043856-d62b31386338/src/cmd/cgo/ast.go (about) 1 // Copyright 2009 The Go Authors. All rights reserved. 2 // Use of this source code is governed by a BSD-style 3 // license that can be found in the LICENSE file. 4 5 // Parse input AST and prepare Prog structure. 6 7 package main 8 9 import ( 10 "fmt" 11 "go/ast" 12 "go/parser" 13 "go/scanner" 14 "go/token" 15 "os" 16 "path/filepath" 17 "strings" 18 ) 19 20 func parse(name string, flags parser.Mode) *ast.File { 21 ast1, err := parser.ParseFile(fset, name, nil, flags) 22 if err != nil { 23 if list, ok := err.(scanner.ErrorList); ok { 24 // If err is a scanner.ErrorList, its String will print just 25 // the first error and then (+n more errors). 26 // Instead, turn it into a new Error that will return 27 // details for all the errors. 28 for _, e := range list { 29 fmt.Fprintln(os.Stderr, e) 30 } 31 os.Exit(2) 32 } 33 fatalf("parsing %s: %s", name, err) 34 } 35 return ast1 36 } 37 38 func sourceLine(n ast.Node) int { 39 return fset.Position(n.Pos()).Line 40 } 41 42 // ReadGo populates f with information learned from reading the 43 // Go source file with the given file name. It gathers the C preamble 44 // attached to the import "C" comment, a list of references to C.xxx, 45 // a list of exported functions, and the actual AST, to be rewritten and 46 // printed. 47 func (f *File) ReadGo(name string) { 48 // Create absolute path for file, so that it will be used in error 49 // messages and recorded in debug line number information. 50 // This matches the rest of the toolchain. See golang.org/issue/5122. 51 if aname, err := filepath.Abs(name); err == nil { 52 name = aname 53 } 54 55 // Two different parses: once with comments, once without. 56 // The printer is not good enough at printing comments in the 57 // right place when we start editing the AST behind its back, 58 // so we use ast1 to look for the doc comments on import "C" 59 // and on exported functions, and we use ast2 for translating 60 // and reprinting. 61 ast1 := parse(name, parser.ParseComments) 62 ast2 := parse(name, 0) 63 64 f.Package = ast1.Name.Name 65 f.Name = make(map[string]*Name) 66 67 // In ast1, find the import "C" line and get any extra C preamble. 68 sawC := false 69 for _, decl := range ast1.Decls { 70 d, ok := decl.(*ast.GenDecl) 71 if !ok { 72 continue 73 } 74 for _, spec := range d.Specs { 75 s, ok := spec.(*ast.ImportSpec) 76 if !ok || s.Path.Value != `"C"` { 77 continue 78 } 79 sawC = true 80 if s.Name != nil { 81 error_(s.Path.Pos(), `cannot rename import "C"`) 82 } 83 cg := s.Doc 84 if cg == nil && len(d.Specs) == 1 { 85 cg = d.Doc 86 } 87 if cg != nil { 88 f.Preamble += fmt.Sprintf("#line %d %q\n", sourceLine(cg), name) 89 f.Preamble += commentText(cg) + "\n" 90 f.Preamble += "#line 1 \"cgo-generated-wrapper\"\n" 91 } 92 } 93 } 94 if !sawC { 95 error_(token.NoPos, `cannot find import "C"`) 96 } 97 98 // In ast2, strip the import "C" line. 99 w := 0 100 for _, decl := range ast2.Decls { 101 d, ok := decl.(*ast.GenDecl) 102 if !ok { 103 ast2.Decls[w] = decl 104 w++ 105 continue 106 } 107 ws := 0 108 for _, spec := range d.Specs { 109 s, ok := spec.(*ast.ImportSpec) 110 if !ok || s.Path.Value != `"C"` { 111 d.Specs[ws] = spec 112 ws++ 113 } 114 } 115 if ws == 0 { 116 continue 117 } 118 d.Specs = d.Specs[0:ws] 119 ast2.Decls[w] = d 120 w++ 121 } 122 ast2.Decls = ast2.Decls[0:w] 123 124 // Accumulate pointers to uses of C.x. 125 if f.Ref == nil { 126 f.Ref = make([]*Ref, 0, 8) 127 } 128 f.walk(ast2, "prog", (*File).saveExprs) 129 130 // Accumulate exported functions. 131 // The comments are only on ast1 but we need to 132 // save the function bodies from ast2. 133 // The first walk fills in ExpFunc, and the 134 // second walk changes the entries to 135 // refer to ast2 instead. 136 f.walk(ast1, "prog", (*File).saveExport) 137 f.walk(ast2, "prog", (*File).saveExport2) 138 139 f.Comments = ast1.Comments 140 f.AST = ast2 141 } 142 143 // Like ast.CommentGroup's Text method but preserves 144 // leading blank lines, so that line numbers line up. 145 func commentText(g *ast.CommentGroup) string { 146 if g == nil { 147 return "" 148 } 149 var pieces []string 150 for _, com := range g.List { 151 c := com.Text 152 // Remove comment markers. 153 // The parser has given us exactly the comment text. 154 switch c[1] { 155 case '/': 156 //-style comment (no newline at the end) 157 c = c[2:] + "\n" 158 case '*': 159 /*-style comment */ 160 c = c[2 : len(c)-2] 161 } 162 pieces = append(pieces, c) 163 } 164 return strings.Join(pieces, "") 165 } 166 167 // Save various references we are going to need later. 168 func (f *File) saveExprs(x interface{}, context string) { 169 switch x := x.(type) { 170 case *ast.Expr: 171 switch (*x).(type) { 172 case *ast.SelectorExpr: 173 f.saveRef(x, context) 174 } 175 case *ast.CallExpr: 176 f.saveCall(x, context) 177 } 178 } 179 180 // Save references to C.xxx for later processing. 181 func (f *File) saveRef(n *ast.Expr, context string) { 182 sel := (*n).(*ast.SelectorExpr) 183 // For now, assume that the only instance of capital C is when 184 // used as the imported package identifier. 185 // The parser should take care of scoping in the future, so 186 // that we will be able to distinguish a "top-level C" from a 187 // local C. 188 if l, ok := sel.X.(*ast.Ident); !ok || l.Name != "C" { 189 return 190 } 191 if context == "as2" { 192 context = "expr" 193 } 194 if context == "embed-type" { 195 error_(sel.Pos(), "cannot embed C type") 196 } 197 goname := sel.Sel.Name 198 if goname == "errno" { 199 error_(sel.Pos(), "cannot refer to errno directly; see documentation") 200 return 201 } 202 if goname == "_CMalloc" { 203 error_(sel.Pos(), "cannot refer to C._CMalloc; use C.malloc") 204 return 205 } 206 if goname == "malloc" { 207 goname = "_CMalloc" 208 } 209 name := f.Name[goname] 210 if name == nil { 211 name = &Name{ 212 Go: goname, 213 } 214 f.Name[goname] = name 215 } 216 f.Ref = append(f.Ref, &Ref{ 217 Name: name, 218 Expr: n, 219 Context: context, 220 }) 221 } 222 223 // Save calls to C.xxx for later processing. 224 func (f *File) saveCall(call *ast.CallExpr, context string) { 225 sel, ok := call.Fun.(*ast.SelectorExpr) 226 if !ok { 227 return 228 } 229 if l, ok := sel.X.(*ast.Ident); !ok || l.Name != "C" { 230 return 231 } 232 c := &Call{Call: call, Deferred: context == "defer"} 233 f.Calls = append(f.Calls, c) 234 } 235 236 // If a function should be exported add it to ExpFunc. 237 func (f *File) saveExport(x interface{}, context string) { 238 n, ok := x.(*ast.FuncDecl) 239 if !ok { 240 return 241 } 242 243 if n.Doc == nil { 244 return 245 } 246 for _, c := range n.Doc.List { 247 if !strings.HasPrefix(c.Text, "//export ") { 248 continue 249 } 250 251 name := strings.TrimSpace(c.Text[9:]) 252 if name == "" { 253 error_(c.Pos(), "export missing name") 254 } 255 256 if name != n.Name.Name { 257 error_(c.Pos(), "export comment has wrong name %q, want %q", name, n.Name.Name) 258 } 259 260 doc := "" 261 for _, c1 := range n.Doc.List { 262 if c1 != c { 263 doc += c1.Text + "\n" 264 } 265 } 266 267 f.ExpFunc = append(f.ExpFunc, &ExpFunc{ 268 Func: n, 269 ExpName: name, 270 Doc: doc, 271 }) 272 break 273 } 274 } 275 276 // Make f.ExpFunc[i] point at the Func from this AST instead of the other one. 277 func (f *File) saveExport2(x interface{}, context string) { 278 n, ok := x.(*ast.FuncDecl) 279 if !ok { 280 return 281 } 282 283 for _, exp := range f.ExpFunc { 284 if exp.Func.Name.Name == n.Name.Name { 285 exp.Func = n 286 break 287 } 288 } 289 } 290 291 // walk walks the AST x, calling visit(f, x, context) for each node. 292 func (f *File) walk(x interface{}, context string, visit func(*File, interface{}, string)) { 293 visit(f, x, context) 294 switch n := x.(type) { 295 case *ast.Expr: 296 f.walk(*n, context, visit) 297 298 // everything else just recurs 299 default: 300 error_(token.NoPos, "unexpected type %T in walk", x, visit) 301 panic("unexpected type") 302 303 case nil: 304 305 // These are ordered and grouped to match ../../go/ast/ast.go 306 case *ast.Field: 307 if len(n.Names) == 0 && context == "field" { 308 f.walk(&n.Type, "embed-type", visit) 309 } else { 310 f.walk(&n.Type, "type", visit) 311 } 312 case *ast.FieldList: 313 for _, field := range n.List { 314 f.walk(field, context, visit) 315 } 316 case *ast.BadExpr: 317 case *ast.Ident: 318 case *ast.Ellipsis: 319 case *ast.BasicLit: 320 case *ast.FuncLit: 321 f.walk(n.Type, "type", visit) 322 f.walk(n.Body, "stmt", visit) 323 case *ast.CompositeLit: 324 f.walk(&n.Type, "type", visit) 325 f.walk(n.Elts, "expr", visit) 326 case *ast.ParenExpr: 327 f.walk(&n.X, context, visit) 328 case *ast.SelectorExpr: 329 f.walk(&n.X, "selector", visit) 330 case *ast.IndexExpr: 331 f.walk(&n.X, "expr", visit) 332 f.walk(&n.Index, "expr", visit) 333 case *ast.SliceExpr: 334 f.walk(&n.X, "expr", visit) 335 if n.Low != nil { 336 f.walk(&n.Low, "expr", visit) 337 } 338 if n.High != nil { 339 f.walk(&n.High, "expr", visit) 340 } 341 if n.Max != nil { 342 f.walk(&n.Max, "expr", visit) 343 } 344 case *ast.TypeAssertExpr: 345 f.walk(&n.X, "expr", visit) 346 f.walk(&n.Type, "type", visit) 347 case *ast.CallExpr: 348 if context == "as2" { 349 f.walk(&n.Fun, "call2", visit) 350 } else { 351 f.walk(&n.Fun, "call", visit) 352 } 353 f.walk(n.Args, "expr", visit) 354 case *ast.StarExpr: 355 f.walk(&n.X, context, visit) 356 case *ast.UnaryExpr: 357 f.walk(&n.X, "expr", visit) 358 case *ast.BinaryExpr: 359 f.walk(&n.X, "expr", visit) 360 f.walk(&n.Y, "expr", visit) 361 case *ast.KeyValueExpr: 362 f.walk(&n.Key, "expr", visit) 363 f.walk(&n.Value, "expr", visit) 364 365 case *ast.ArrayType: 366 f.walk(&n.Len, "expr", visit) 367 f.walk(&n.Elt, "type", visit) 368 case *ast.StructType: 369 f.walk(n.Fields, "field", visit) 370 case *ast.FuncType: 371 f.walk(n.Params, "param", visit) 372 if n.Results != nil { 373 f.walk(n.Results, "param", visit) 374 } 375 case *ast.InterfaceType: 376 f.walk(n.Methods, "field", visit) 377 case *ast.MapType: 378 f.walk(&n.Key, "type", visit) 379 f.walk(&n.Value, "type", visit) 380 case *ast.ChanType: 381 f.walk(&n.Value, "type", visit) 382 383 case *ast.BadStmt: 384 case *ast.DeclStmt: 385 f.walk(n.Decl, "decl", visit) 386 case *ast.EmptyStmt: 387 case *ast.LabeledStmt: 388 f.walk(n.Stmt, "stmt", visit) 389 case *ast.ExprStmt: 390 f.walk(&n.X, "expr", visit) 391 case *ast.SendStmt: 392 f.walk(&n.Chan, "expr", visit) 393 f.walk(&n.Value, "expr", visit) 394 case *ast.IncDecStmt: 395 f.walk(&n.X, "expr", visit) 396 case *ast.AssignStmt: 397 f.walk(n.Lhs, "expr", visit) 398 if len(n.Lhs) == 2 && len(n.Rhs) == 1 { 399 f.walk(n.Rhs, "as2", visit) 400 } else { 401 f.walk(n.Rhs, "expr", visit) 402 } 403 case *ast.GoStmt: 404 f.walk(n.Call, "expr", visit) 405 case *ast.DeferStmt: 406 f.walk(n.Call, "defer", visit) 407 case *ast.ReturnStmt: 408 f.walk(n.Results, "expr", visit) 409 case *ast.BranchStmt: 410 case *ast.BlockStmt: 411 f.walk(n.List, context, visit) 412 case *ast.IfStmt: 413 f.walk(n.Init, "stmt", visit) 414 f.walk(&n.Cond, "expr", visit) 415 f.walk(n.Body, "stmt", visit) 416 f.walk(n.Else, "stmt", visit) 417 case *ast.CaseClause: 418 if context == "typeswitch" { 419 context = "type" 420 } else { 421 context = "expr" 422 } 423 f.walk(n.List, context, visit) 424 f.walk(n.Body, "stmt", visit) 425 case *ast.SwitchStmt: 426 f.walk(n.Init, "stmt", visit) 427 f.walk(&n.Tag, "expr", visit) 428 f.walk(n.Body, "switch", visit) 429 case *ast.TypeSwitchStmt: 430 f.walk(n.Init, "stmt", visit) 431 f.walk(n.Assign, "stmt", visit) 432 f.walk(n.Body, "typeswitch", visit) 433 case *ast.CommClause: 434 f.walk(n.Comm, "stmt", visit) 435 f.walk(n.Body, "stmt", visit) 436 case *ast.SelectStmt: 437 f.walk(n.Body, "stmt", visit) 438 case *ast.ForStmt: 439 f.walk(n.Init, "stmt", visit) 440 f.walk(&n.Cond, "expr", visit) 441 f.walk(n.Post, "stmt", visit) 442 f.walk(n.Body, "stmt", visit) 443 case *ast.RangeStmt: 444 f.walk(&n.Key, "expr", visit) 445 f.walk(&n.Value, "expr", visit) 446 f.walk(&n.X, "expr", visit) 447 f.walk(n.Body, "stmt", visit) 448 449 case *ast.ImportSpec: 450 case *ast.ValueSpec: 451 f.walk(&n.Type, "type", visit) 452 if len(n.Names) == 2 && len(n.Values) == 1 { 453 f.walk(&n.Values[0], "as2", visit) 454 } else { 455 f.walk(n.Values, "expr", visit) 456 } 457 case *ast.TypeSpec: 458 f.walk(&n.Type, "type", visit) 459 460 case *ast.BadDecl: 461 case *ast.GenDecl: 462 f.walk(n.Specs, "spec", visit) 463 case *ast.FuncDecl: 464 if n.Recv != nil { 465 f.walk(n.Recv, "param", visit) 466 } 467 f.walk(n.Type, "type", visit) 468 if n.Body != nil { 469 f.walk(n.Body, "stmt", visit) 470 } 471 472 case *ast.File: 473 f.walk(n.Decls, "decl", visit) 474 475 case *ast.Package: 476 for _, file := range n.Files { 477 f.walk(file, "file", visit) 478 } 479 480 case []ast.Decl: 481 for _, d := range n { 482 f.walk(d, context, visit) 483 } 484 case []ast.Expr: 485 for i := range n { 486 f.walk(&n[i], context, visit) 487 } 488 case []ast.Stmt: 489 for _, s := range n { 490 f.walk(s, context, visit) 491 } 492 case []ast.Spec: 493 for _, s := range n { 494 f.walk(s, context, visit) 495 } 496 } 497 }