github.com/FenixAra/go@v0.0.0-20170127160404-96ea0918e670/src/cmd/cgo/out.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 package main 6 7 import ( 8 "bytes" 9 "debug/elf" 10 "debug/macho" 11 "debug/pe" 12 "fmt" 13 "go/ast" 14 "go/printer" 15 "go/token" 16 "io" 17 "os" 18 "sort" 19 "strings" 20 ) 21 22 var ( 23 conf = printer.Config{Mode: printer.SourcePos, Tabwidth: 8} 24 noSourceConf = printer.Config{Tabwidth: 8} 25 ) 26 27 // writeDefs creates output files to be compiled by gc and gcc. 28 func (p *Package) writeDefs() { 29 var fgo2, fc io.Writer 30 f := creat(*objDir + "_cgo_gotypes.go") 31 defer f.Close() 32 fgo2 = f 33 if *gccgo { 34 f := creat(*objDir + "_cgo_defun.c") 35 defer f.Close() 36 fc = f 37 } 38 fm := creat(*objDir + "_cgo_main.c") 39 40 var gccgoInit bytes.Buffer 41 42 fflg := creat(*objDir + "_cgo_flags") 43 for k, v := range p.CgoFlags { 44 fmt.Fprintf(fflg, "_CGO_%s=%s\n", k, strings.Join(v, " ")) 45 if k == "LDFLAGS" && !*gccgo { 46 for _, arg := range v { 47 fmt.Fprintf(fgo2, "//go:cgo_ldflag %q\n", arg) 48 } 49 } 50 } 51 fflg.Close() 52 53 // Write C main file for using gcc to resolve imports. 54 fmt.Fprintf(fm, "int main() { return 0; }\n") 55 if *importRuntimeCgo { 56 fmt.Fprintf(fm, "void crosscall2(void(*fn)(void*, int, __SIZE_TYPE__), void *a, int c, __SIZE_TYPE__ ctxt) { }\n") 57 fmt.Fprintf(fm, "__SIZE_TYPE__ _cgo_wait_runtime_init_done() { return 0; }\n") 58 fmt.Fprintf(fm, "void _cgo_release_context(__SIZE_TYPE__ ctxt) { }\n") 59 fmt.Fprintf(fm, "char* _cgo_topofstack(void) { return (char*)0; }\n") 60 } else { 61 // If we're not importing runtime/cgo, we *are* runtime/cgo, 62 // which provides these functions. We just need a prototype. 63 fmt.Fprintf(fm, "void crosscall2(void(*fn)(void*, int, __SIZE_TYPE__), void *a, int c, __SIZE_TYPE__ ctxt);\n") 64 fmt.Fprintf(fm, "__SIZE_TYPE__ _cgo_wait_runtime_init_done();\n") 65 fmt.Fprintf(fm, "void _cgo_release_context(__SIZE_TYPE__);\n") 66 } 67 fmt.Fprintf(fm, "void _cgo_allocate(void *a, int c) { }\n") 68 fmt.Fprintf(fm, "void _cgo_panic(void *a, int c) { }\n") 69 fmt.Fprintf(fm, "void _cgo_reginit(void) { }\n") 70 71 // Write second Go output: definitions of _C_xxx. 72 // In a separate file so that the import of "unsafe" does not 73 // pollute the original file. 74 fmt.Fprintf(fgo2, "// Created by cgo - DO NOT EDIT\n\n") 75 fmt.Fprintf(fgo2, "package %s\n\n", p.PackageName) 76 fmt.Fprintf(fgo2, "import \"unsafe\"\n\n") 77 if !*gccgo && *importRuntimeCgo { 78 fmt.Fprintf(fgo2, "import _ \"runtime/cgo\"\n\n") 79 } 80 if *importSyscall { 81 fmt.Fprintf(fgo2, "import \"syscall\"\n\n") 82 fmt.Fprintf(fgo2, "var _ syscall.Errno\n") 83 } 84 fmt.Fprintf(fgo2, "func _Cgo_ptr(ptr unsafe.Pointer) unsafe.Pointer { return ptr }\n\n") 85 86 if !*gccgo { 87 fmt.Fprintf(fgo2, "//go:linkname _Cgo_always_false runtime.cgoAlwaysFalse\n") 88 fmt.Fprintf(fgo2, "var _Cgo_always_false bool\n") 89 fmt.Fprintf(fgo2, "//go:linkname _Cgo_use runtime.cgoUse\n") 90 fmt.Fprintf(fgo2, "func _Cgo_use(interface{})\n") 91 } 92 93 typedefNames := make([]string, 0, len(typedef)) 94 for name := range typedef { 95 typedefNames = append(typedefNames, name) 96 } 97 sort.Strings(typedefNames) 98 for _, name := range typedefNames { 99 def := typedef[name] 100 fmt.Fprintf(fgo2, "type %s ", name) 101 // We don't have source info for these types, so write them out without source info. 102 // Otherwise types would look like: 103 // 104 // type _Ctype_struct_cb struct { 105 // //line :1 106 // on_test *[0]byte 107 // //line :1 108 // } 109 // 110 // Which is not useful. Moreover we never override source info, 111 // so subsequent source code uses the same source info. 112 // Moreover, empty file name makes compile emit no source debug info at all. 113 noSourceConf.Fprint(fgo2, fset, def.Go) 114 fmt.Fprintf(fgo2, "\n\n") 115 } 116 if *gccgo { 117 fmt.Fprintf(fgo2, "type _Ctype_void byte\n") 118 } else { 119 fmt.Fprintf(fgo2, "type _Ctype_void [0]byte\n") 120 } 121 122 if *gccgo { 123 fmt.Fprint(fgo2, gccgoGoProlog) 124 fmt.Fprint(fc, p.cPrologGccgo()) 125 } else { 126 fmt.Fprint(fgo2, goProlog) 127 } 128 129 if fc != nil { 130 fmt.Fprintf(fc, "#line 1 \"cgo-generated-wrappers\"\n") 131 } 132 if fm != nil { 133 fmt.Fprintf(fm, "#line 1 \"cgo-generated-wrappers\"\n") 134 } 135 136 gccgoSymbolPrefix := p.gccgoSymbolPrefix() 137 138 cVars := make(map[string]bool) 139 for _, key := range nameKeys(p.Name) { 140 n := p.Name[key] 141 if !n.IsVar() { 142 continue 143 } 144 145 if !cVars[n.C] { 146 if *gccgo { 147 fmt.Fprintf(fc, "extern byte *%s;\n", n.C) 148 } else { 149 fmt.Fprintf(fm, "extern char %s[];\n", n.C) 150 fmt.Fprintf(fm, "void *_cgohack_%s = %s;\n\n", n.C, n.C) 151 fmt.Fprintf(fgo2, "//go:linkname __cgo_%s %s\n", n.C, n.C) 152 fmt.Fprintf(fgo2, "//go:cgo_import_static %s\n", n.C) 153 fmt.Fprintf(fgo2, "var __cgo_%s byte\n", n.C) 154 } 155 cVars[n.C] = true 156 } 157 158 var node ast.Node 159 if n.Kind == "var" { 160 node = &ast.StarExpr{X: n.Type.Go} 161 } else if n.Kind == "fpvar" { 162 node = n.Type.Go 163 } else { 164 panic(fmt.Errorf("invalid var kind %q", n.Kind)) 165 } 166 if *gccgo { 167 fmt.Fprintf(fc, `extern void *%s __asm__("%s.%s");`, n.Mangle, gccgoSymbolPrefix, n.Mangle) 168 fmt.Fprintf(&gccgoInit, "\t%s = &%s;\n", n.Mangle, n.C) 169 fmt.Fprintf(fc, "\n") 170 } 171 172 fmt.Fprintf(fgo2, "var %s ", n.Mangle) 173 conf.Fprint(fgo2, fset, node) 174 if !*gccgo { 175 fmt.Fprintf(fgo2, " = (") 176 conf.Fprint(fgo2, fset, node) 177 fmt.Fprintf(fgo2, ")(unsafe.Pointer(&__cgo_%s))", n.C) 178 } 179 fmt.Fprintf(fgo2, "\n") 180 } 181 if *gccgo { 182 fmt.Fprintf(fc, "\n") 183 } 184 185 for _, key := range nameKeys(p.Name) { 186 n := p.Name[key] 187 if n.Const != "" { 188 fmt.Fprintf(fgo2, "const _Cconst_%s = %s\n", n.Go, n.Const) 189 } 190 } 191 fmt.Fprintf(fgo2, "\n") 192 193 callsMalloc := false 194 for _, key := range nameKeys(p.Name) { 195 n := p.Name[key] 196 if n.FuncType != nil { 197 p.writeDefsFunc(fgo2, n, &callsMalloc) 198 } 199 } 200 201 fgcc := creat(*objDir + "_cgo_export.c") 202 fgcch := creat(*objDir + "_cgo_export.h") 203 if *gccgo { 204 p.writeGccgoExports(fgo2, fm, fgcc, fgcch) 205 } else { 206 p.writeExports(fgo2, fm, fgcc, fgcch) 207 } 208 209 if callsMalloc && !*gccgo { 210 fmt.Fprint(fgo2, strings.Replace(cMallocDefGo, "PREFIX", cPrefix, -1)) 211 fmt.Fprint(fgcc, strings.Replace(strings.Replace(cMallocDefC, "PREFIX", cPrefix, -1), "PACKED", p.packedAttribute(), -1)) 212 } 213 214 if err := fgcc.Close(); err != nil { 215 fatalf("%s", err) 216 } 217 if err := fgcch.Close(); err != nil { 218 fatalf("%s", err) 219 } 220 221 if *exportHeader != "" && len(p.ExpFunc) > 0 { 222 fexp := creat(*exportHeader) 223 fgcch, err := os.Open(*objDir + "_cgo_export.h") 224 if err != nil { 225 fatalf("%s", err) 226 } 227 _, err = io.Copy(fexp, fgcch) 228 if err != nil { 229 fatalf("%s", err) 230 } 231 if err = fexp.Close(); err != nil { 232 fatalf("%s", err) 233 } 234 } 235 236 init := gccgoInit.String() 237 if init != "" { 238 fmt.Fprintln(fc, "static void init(void) __attribute__ ((constructor));") 239 fmt.Fprintln(fc, "static void init(void) {") 240 fmt.Fprint(fc, init) 241 fmt.Fprintln(fc, "}") 242 } 243 } 244 245 func dynimport(obj string) { 246 stdout := os.Stdout 247 if *dynout != "" { 248 f, err := os.Create(*dynout) 249 if err != nil { 250 fatalf("%s", err) 251 } 252 stdout = f 253 } 254 255 fmt.Fprintf(stdout, "package %s\n", *dynpackage) 256 257 if f, err := elf.Open(obj); err == nil { 258 if *dynlinker { 259 // Emit the cgo_dynamic_linker line. 260 if sec := f.Section(".interp"); sec != nil { 261 if data, err := sec.Data(); err == nil && len(data) > 1 { 262 // skip trailing \0 in data 263 fmt.Fprintf(stdout, "//go:cgo_dynamic_linker %q\n", string(data[:len(data)-1])) 264 } 265 } 266 } 267 sym, err := f.ImportedSymbols() 268 if err != nil { 269 fatalf("cannot load imported symbols from ELF file %s: %v", obj, err) 270 } 271 for _, s := range sym { 272 targ := s.Name 273 if s.Version != "" { 274 targ += "#" + s.Version 275 } 276 fmt.Fprintf(stdout, "//go:cgo_import_dynamic %s %s %q\n", s.Name, targ, s.Library) 277 } 278 lib, err := f.ImportedLibraries() 279 if err != nil { 280 fatalf("cannot load imported libraries from ELF file %s: %v", obj, err) 281 } 282 for _, l := range lib { 283 fmt.Fprintf(stdout, "//go:cgo_import_dynamic _ _ %q\n", l) 284 } 285 return 286 } 287 288 if f, err := macho.Open(obj); err == nil { 289 sym, err := f.ImportedSymbols() 290 if err != nil { 291 fatalf("cannot load imported symbols from Mach-O file %s: %v", obj, err) 292 } 293 for _, s := range sym { 294 if len(s) > 0 && s[0] == '_' { 295 s = s[1:] 296 } 297 fmt.Fprintf(stdout, "//go:cgo_import_dynamic %s %s %q\n", s, s, "") 298 } 299 lib, err := f.ImportedLibraries() 300 if err != nil { 301 fatalf("cannot load imported libraries from Mach-O file %s: %v", obj, err) 302 } 303 for _, l := range lib { 304 fmt.Fprintf(stdout, "//go:cgo_import_dynamic _ _ %q\n", l) 305 } 306 return 307 } 308 309 if f, err := pe.Open(obj); err == nil { 310 sym, err := f.ImportedSymbols() 311 if err != nil { 312 fatalf("cannot load imported symbols from PE file %s: %v", obj, err) 313 } 314 for _, s := range sym { 315 ss := strings.Split(s, ":") 316 name := strings.Split(ss[0], "@")[0] 317 fmt.Fprintf(stdout, "//go:cgo_import_dynamic %s %s %q\n", name, ss[0], strings.ToLower(ss[1])) 318 } 319 return 320 } 321 322 fatalf("cannot parse %s as ELF, Mach-O or PE", obj) 323 } 324 325 // Construct a gcc struct matching the gc argument frame. 326 // Assumes that in gcc, char is 1 byte, short 2 bytes, int 4 bytes, long long 8 bytes. 327 // These assumptions are checked by the gccProlog. 328 // Also assumes that gc convention is to word-align the 329 // input and output parameters. 330 func (p *Package) structType(n *Name) (string, int64) { 331 var buf bytes.Buffer 332 fmt.Fprint(&buf, "struct {\n") 333 off := int64(0) 334 for i, t := range n.FuncType.Params { 335 if off%t.Align != 0 { 336 pad := t.Align - off%t.Align 337 fmt.Fprintf(&buf, "\t\tchar __pad%d[%d];\n", off, pad) 338 off += pad 339 } 340 c := t.Typedef 341 if c == "" { 342 c = t.C.String() 343 } 344 fmt.Fprintf(&buf, "\t\t%s p%d;\n", c, i) 345 off += t.Size 346 } 347 if off%p.PtrSize != 0 { 348 pad := p.PtrSize - off%p.PtrSize 349 fmt.Fprintf(&buf, "\t\tchar __pad%d[%d];\n", off, pad) 350 off += pad 351 } 352 if t := n.FuncType.Result; t != nil { 353 if off%t.Align != 0 { 354 pad := t.Align - off%t.Align 355 fmt.Fprintf(&buf, "\t\tchar __pad%d[%d];\n", off, pad) 356 off += pad 357 } 358 fmt.Fprintf(&buf, "\t\t%s r;\n", t.C) 359 off += t.Size 360 } 361 if off%p.PtrSize != 0 { 362 pad := p.PtrSize - off%p.PtrSize 363 fmt.Fprintf(&buf, "\t\tchar __pad%d[%d];\n", off, pad) 364 off += pad 365 } 366 if off == 0 { 367 fmt.Fprintf(&buf, "\t\tchar unused;\n") // avoid empty struct 368 } 369 fmt.Fprintf(&buf, "\t}") 370 return buf.String(), off 371 } 372 373 func (p *Package) writeDefsFunc(fgo2 io.Writer, n *Name, callsMalloc *bool) { 374 name := n.Go 375 gtype := n.FuncType.Go 376 void := gtype.Results == nil || len(gtype.Results.List) == 0 377 if n.AddError { 378 // Add "error" to return type list. 379 // Type list is known to be 0 or 1 element - it's a C function. 380 err := &ast.Field{Type: ast.NewIdent("error")} 381 l := gtype.Results.List 382 if len(l) == 0 { 383 l = []*ast.Field{err} 384 } else { 385 l = []*ast.Field{l[0], err} 386 } 387 t := new(ast.FuncType) 388 *t = *gtype 389 t.Results = &ast.FieldList{List: l} 390 gtype = t 391 } 392 393 // Go func declaration. 394 d := &ast.FuncDecl{ 395 Name: ast.NewIdent(n.Mangle), 396 Type: gtype, 397 } 398 399 // Builtins defined in the C prolog. 400 inProlog := builtinDefs[name] != "" 401 cname := fmt.Sprintf("_cgo%s%s", cPrefix, n.Mangle) 402 paramnames := []string(nil) 403 for i, param := range d.Type.Params.List { 404 paramName := fmt.Sprintf("p%d", i) 405 param.Names = []*ast.Ident{ast.NewIdent(paramName)} 406 paramnames = append(paramnames, paramName) 407 } 408 409 if *gccgo { 410 // Gccgo style hooks. 411 fmt.Fprint(fgo2, "\n") 412 conf.Fprint(fgo2, fset, d) 413 fmt.Fprint(fgo2, " {\n") 414 if !inProlog { 415 fmt.Fprint(fgo2, "\tdefer syscall.CgocallDone()\n") 416 fmt.Fprint(fgo2, "\tsyscall.Cgocall()\n") 417 } 418 if n.AddError { 419 fmt.Fprint(fgo2, "\tsyscall.SetErrno(0)\n") 420 } 421 fmt.Fprint(fgo2, "\t") 422 if !void { 423 fmt.Fprint(fgo2, "r := ") 424 } 425 fmt.Fprintf(fgo2, "%s(%s)\n", cname, strings.Join(paramnames, ", ")) 426 427 if n.AddError { 428 fmt.Fprint(fgo2, "\te := syscall.GetErrno()\n") 429 fmt.Fprint(fgo2, "\tif e != 0 {\n") 430 fmt.Fprint(fgo2, "\t\treturn ") 431 if !void { 432 fmt.Fprint(fgo2, "r, ") 433 } 434 fmt.Fprint(fgo2, "e\n") 435 fmt.Fprint(fgo2, "\t}\n") 436 fmt.Fprint(fgo2, "\treturn ") 437 if !void { 438 fmt.Fprint(fgo2, "r, ") 439 } 440 fmt.Fprint(fgo2, "nil\n") 441 } else if !void { 442 fmt.Fprint(fgo2, "\treturn r\n") 443 } 444 445 fmt.Fprint(fgo2, "}\n") 446 447 // declare the C function. 448 fmt.Fprintf(fgo2, "//extern %s\n", cname) 449 d.Name = ast.NewIdent(cname) 450 if n.AddError { 451 l := d.Type.Results.List 452 d.Type.Results.List = l[:len(l)-1] 453 } 454 conf.Fprint(fgo2, fset, d) 455 fmt.Fprint(fgo2, "\n") 456 457 return 458 } 459 460 if inProlog { 461 fmt.Fprint(fgo2, builtinDefs[name]) 462 if strings.Contains(builtinDefs[name], "_cgo_cmalloc") { 463 *callsMalloc = true 464 } 465 return 466 } 467 468 // Wrapper calls into gcc, passing a pointer to the argument frame. 469 fmt.Fprintf(fgo2, "//go:cgo_import_static %s\n", cname) 470 fmt.Fprintf(fgo2, "//go:linkname __cgofn_%s %s\n", cname, cname) 471 fmt.Fprintf(fgo2, "var __cgofn_%s byte\n", cname) 472 fmt.Fprintf(fgo2, "var %s = unsafe.Pointer(&__cgofn_%s)\n", cname, cname) 473 474 nret := 0 475 if !void { 476 d.Type.Results.List[0].Names = []*ast.Ident{ast.NewIdent("r1")} 477 nret = 1 478 } 479 if n.AddError { 480 d.Type.Results.List[nret].Names = []*ast.Ident{ast.NewIdent("r2")} 481 } 482 483 fmt.Fprint(fgo2, "\n") 484 fmt.Fprint(fgo2, "//go:cgo_unsafe_args\n") 485 conf.Fprint(fgo2, fset, d) 486 fmt.Fprint(fgo2, " {\n") 487 488 // NOTE: Using uintptr to hide from escape analysis. 489 arg := "0" 490 if len(paramnames) > 0 { 491 arg = "uintptr(unsafe.Pointer(&p0))" 492 } else if !void { 493 arg = "uintptr(unsafe.Pointer(&r1))" 494 } 495 496 prefix := "" 497 if n.AddError { 498 prefix = "errno := " 499 } 500 fmt.Fprintf(fgo2, "\t%s_cgo_runtime_cgocall(%s, %s)\n", prefix, cname, arg) 501 if n.AddError { 502 fmt.Fprintf(fgo2, "\tif errno != 0 { r2 = syscall.Errno(errno) }\n") 503 } 504 fmt.Fprintf(fgo2, "\tif _Cgo_always_false {\n") 505 for i := range d.Type.Params.List { 506 fmt.Fprintf(fgo2, "\t\t_Cgo_use(p%d)\n", i) 507 } 508 fmt.Fprintf(fgo2, "\t}\n") 509 fmt.Fprintf(fgo2, "\treturn\n") 510 fmt.Fprintf(fgo2, "}\n") 511 } 512 513 // writeOutput creates stubs for a specific source file to be compiled by gc 514 func (p *Package) writeOutput(f *File, srcfile string) { 515 base := srcfile 516 if strings.HasSuffix(base, ".go") { 517 base = base[0 : len(base)-3] 518 } 519 base = strings.Map(slashToUnderscore, base) 520 fgo1 := creat(*objDir + base + ".cgo1.go") 521 fgcc := creat(*objDir + base + ".cgo2.c") 522 523 p.GoFiles = append(p.GoFiles, base+".cgo1.go") 524 p.GccFiles = append(p.GccFiles, base+".cgo2.c") 525 526 // Write Go output: Go input with rewrites of C.xxx to _C_xxx. 527 fmt.Fprintf(fgo1, "// Created by cgo - DO NOT EDIT\n\n") 528 conf.Fprint(fgo1, fset, f.AST) 529 530 // While we process the vars and funcs, also write gcc output. 531 // Gcc output starts with the preamble. 532 fmt.Fprintf(fgcc, "%s\n", f.Preamble) 533 fmt.Fprintf(fgcc, "%s\n", gccProlog) 534 fmt.Fprintf(fgcc, "%s\n", tsanProlog) 535 536 for _, key := range nameKeys(f.Name) { 537 n := f.Name[key] 538 if n.FuncType != nil { 539 p.writeOutputFunc(fgcc, n) 540 } 541 } 542 543 fgo1.Close() 544 fgcc.Close() 545 } 546 547 // fixGo converts the internal Name.Go field into the name we should show 548 // to users in error messages. There's only one for now: on input we rewrite 549 // C.malloc into C._CMalloc, so change it back here. 550 func fixGo(name string) string { 551 if name == "_CMalloc" { 552 return "malloc" 553 } 554 return name 555 } 556 557 var isBuiltin = map[string]bool{ 558 "_Cfunc_CString": true, 559 "_Cfunc_CBytes": true, 560 "_Cfunc_GoString": true, 561 "_Cfunc_GoStringN": true, 562 "_Cfunc_GoBytes": true, 563 "_Cfunc__CMalloc": true, 564 } 565 566 func (p *Package) writeOutputFunc(fgcc *os.File, n *Name) { 567 name := n.Mangle 568 if isBuiltin[name] || p.Written[name] { 569 // The builtins are already defined in the C prolog, and we don't 570 // want to duplicate function definitions we've already done. 571 return 572 } 573 p.Written[name] = true 574 575 if *gccgo { 576 p.writeGccgoOutputFunc(fgcc, n) 577 return 578 } 579 580 ctype, _ := p.structType(n) 581 582 // Gcc wrapper unpacks the C argument struct 583 // and calls the actual C function. 584 fmt.Fprintf(fgcc, "CGO_NO_SANITIZE_THREAD\n") 585 if n.AddError { 586 fmt.Fprintf(fgcc, "int\n") 587 } else { 588 fmt.Fprintf(fgcc, "void\n") 589 } 590 fmt.Fprintf(fgcc, "_cgo%s%s(void *v)\n", cPrefix, n.Mangle) 591 fmt.Fprintf(fgcc, "{\n") 592 if n.AddError { 593 fmt.Fprintf(fgcc, "\tint _cgo_errno;\n") 594 } 595 // We're trying to write a gcc struct that matches gc's layout. 596 // Use packed attribute to force no padding in this struct in case 597 // gcc has different packing requirements. 598 fmt.Fprintf(fgcc, "\t%s %v *a = v;\n", ctype, p.packedAttribute()) 599 if n.FuncType.Result != nil { 600 // Save the stack top for use below. 601 fmt.Fprintf(fgcc, "\tchar *stktop = _cgo_topofstack();\n") 602 } 603 tr := n.FuncType.Result 604 if tr != nil { 605 fmt.Fprintf(fgcc, "\t__typeof__(a->r) r;\n") 606 } 607 fmt.Fprintf(fgcc, "\t_cgo_tsan_acquire();\n") 608 if n.AddError { 609 fmt.Fprintf(fgcc, "\terrno = 0;\n") 610 } 611 fmt.Fprintf(fgcc, "\t") 612 if tr != nil { 613 fmt.Fprintf(fgcc, "r = ") 614 if c := tr.C.String(); c[len(c)-1] == '*' { 615 fmt.Fprint(fgcc, "(__typeof__(a->r)) ") 616 } 617 } 618 fmt.Fprintf(fgcc, "%s(", n.C) 619 for i := range n.FuncType.Params { 620 if i > 0 { 621 fmt.Fprintf(fgcc, ", ") 622 } 623 fmt.Fprintf(fgcc, "a->p%d", i) 624 } 625 fmt.Fprintf(fgcc, ");\n") 626 if n.AddError { 627 fmt.Fprintf(fgcc, "\t_cgo_errno = errno;\n") 628 } 629 fmt.Fprintf(fgcc, "\t_cgo_tsan_release();\n") 630 if n.FuncType.Result != nil { 631 // The cgo call may have caused a stack copy (via a callback). 632 // Adjust the return value pointer appropriately. 633 fmt.Fprintf(fgcc, "\ta = (void*)((char*)a + (_cgo_topofstack() - stktop));\n") 634 // Save the return value. 635 fmt.Fprintf(fgcc, "\ta->r = r;\n") 636 } 637 if n.AddError { 638 fmt.Fprintf(fgcc, "\treturn _cgo_errno;\n") 639 } 640 fmt.Fprintf(fgcc, "}\n") 641 fmt.Fprintf(fgcc, "\n") 642 } 643 644 // Write out a wrapper for a function when using gccgo. This is a 645 // simple wrapper that just calls the real function. We only need a 646 // wrapper to support static functions in the prologue--without a 647 // wrapper, we can't refer to the function, since the reference is in 648 // a different file. 649 func (p *Package) writeGccgoOutputFunc(fgcc *os.File, n *Name) { 650 fmt.Fprintf(fgcc, "CGO_NO_SANITIZE_THREAD\n") 651 if t := n.FuncType.Result; t != nil { 652 fmt.Fprintf(fgcc, "%s\n", t.C.String()) 653 } else { 654 fmt.Fprintf(fgcc, "void\n") 655 } 656 fmt.Fprintf(fgcc, "_cgo%s%s(", cPrefix, n.Mangle) 657 for i, t := range n.FuncType.Params { 658 if i > 0 { 659 fmt.Fprintf(fgcc, ", ") 660 } 661 c := t.Typedef 662 if c == "" { 663 c = t.C.String() 664 } 665 fmt.Fprintf(fgcc, "%s p%d", c, i) 666 } 667 fmt.Fprintf(fgcc, ")\n") 668 fmt.Fprintf(fgcc, "{\n") 669 if t := n.FuncType.Result; t != nil { 670 fmt.Fprintf(fgcc, "\t%s r;\n", t.C.String()) 671 } 672 fmt.Fprintf(fgcc, "\t_cgo_tsan_acquire();\n") 673 fmt.Fprintf(fgcc, "\t") 674 if t := n.FuncType.Result; t != nil { 675 fmt.Fprintf(fgcc, "r = ") 676 // Cast to void* to avoid warnings due to omitted qualifiers. 677 if c := t.C.String(); c[len(c)-1] == '*' { 678 fmt.Fprintf(fgcc, "(void*)") 679 } 680 } 681 fmt.Fprintf(fgcc, "%s(", n.C) 682 for i := range n.FuncType.Params { 683 if i > 0 { 684 fmt.Fprintf(fgcc, ", ") 685 } 686 fmt.Fprintf(fgcc, "p%d", i) 687 } 688 fmt.Fprintf(fgcc, ");\n") 689 fmt.Fprintf(fgcc, "\t_cgo_tsan_release();\n") 690 if t := n.FuncType.Result; t != nil { 691 fmt.Fprintf(fgcc, "\treturn ") 692 // Cast to void* to avoid warnings due to omitted qualifiers 693 // and explicit incompatible struct types. 694 if c := t.C.String(); c[len(c)-1] == '*' { 695 fmt.Fprintf(fgcc, "(void*)") 696 } 697 fmt.Fprintf(fgcc, "r;\n") 698 } 699 fmt.Fprintf(fgcc, "}\n") 700 fmt.Fprintf(fgcc, "\n") 701 } 702 703 // packedAttribute returns host compiler struct attribute that will be 704 // used to match gc's struct layout. For example, on 386 Windows, 705 // gcc wants to 8-align int64s, but gc does not. 706 // Use __gcc_struct__ to work around http://gcc.gnu.org/PR52991 on x86, 707 // and https://golang.org/issue/5603. 708 func (p *Package) packedAttribute() string { 709 s := "__attribute__((__packed__" 710 if !p.GccIsClang && (goarch == "amd64" || goarch == "386") { 711 s += ", __gcc_struct__" 712 } 713 return s + "))" 714 } 715 716 // Write out the various stubs we need to support functions exported 717 // from Go so that they are callable from C. 718 func (p *Package) writeExports(fgo2, fm, fgcc, fgcch io.Writer) { 719 p.writeExportHeader(fgcch) 720 721 fmt.Fprintf(fgcc, "/* Created by cgo - DO NOT EDIT. */\n") 722 fmt.Fprintf(fgcc, "#include <stdlib.h>\n") 723 fmt.Fprintf(fgcc, "#include \"_cgo_export.h\"\n\n") 724 725 fmt.Fprintf(fgcc, "extern void crosscall2(void (*fn)(void *, int, __SIZE_TYPE__), void *, int, __SIZE_TYPE__);\n") 726 fmt.Fprintf(fgcc, "extern __SIZE_TYPE__ _cgo_wait_runtime_init_done();\n") 727 fmt.Fprintf(fgcc, "extern void _cgo_release_context(__SIZE_TYPE__);\n\n") 728 fmt.Fprintf(fgcc, "extern char* _cgo_topofstack(void);") 729 fmt.Fprintf(fgcc, "%s\n", tsanProlog) 730 731 for _, exp := range p.ExpFunc { 732 fn := exp.Func 733 734 // Construct a gcc struct matching the gc argument and 735 // result frame. The gcc struct will be compiled with 736 // __attribute__((packed)) so all padding must be accounted 737 // for explicitly. 738 ctype := "struct {\n" 739 off := int64(0) 740 npad := 0 741 if fn.Recv != nil { 742 t := p.cgoType(fn.Recv.List[0].Type) 743 ctype += fmt.Sprintf("\t\t%s recv;\n", t.C) 744 off += t.Size 745 } 746 fntype := fn.Type 747 forFieldList(fntype.Params, 748 func(i int, aname string, atype ast.Expr) { 749 t := p.cgoType(atype) 750 if off%t.Align != 0 { 751 pad := t.Align - off%t.Align 752 ctype += fmt.Sprintf("\t\tchar __pad%d[%d];\n", npad, pad) 753 off += pad 754 npad++ 755 } 756 ctype += fmt.Sprintf("\t\t%s p%d;\n", t.C, i) 757 off += t.Size 758 }) 759 if off%p.PtrSize != 0 { 760 pad := p.PtrSize - off%p.PtrSize 761 ctype += fmt.Sprintf("\t\tchar __pad%d[%d];\n", npad, pad) 762 off += pad 763 npad++ 764 } 765 forFieldList(fntype.Results, 766 func(i int, aname string, atype ast.Expr) { 767 t := p.cgoType(atype) 768 if off%t.Align != 0 { 769 pad := t.Align - off%t.Align 770 ctype += fmt.Sprintf("\t\tchar __pad%d[%d];\n", npad, pad) 771 off += pad 772 npad++ 773 } 774 ctype += fmt.Sprintf("\t\t%s r%d;\n", t.C, i) 775 off += t.Size 776 }) 777 if off%p.PtrSize != 0 { 778 pad := p.PtrSize - off%p.PtrSize 779 ctype += fmt.Sprintf("\t\tchar __pad%d[%d];\n", npad, pad) 780 off += pad 781 npad++ 782 } 783 if ctype == "struct {\n" { 784 ctype += "\t\tchar unused;\n" // avoid empty struct 785 } 786 ctype += "\t}" 787 788 // Get the return type of the wrapper function 789 // compiled by gcc. 790 gccResult := "" 791 if fntype.Results == nil || len(fntype.Results.List) == 0 { 792 gccResult = "void" 793 } else if len(fntype.Results.List) == 1 && len(fntype.Results.List[0].Names) <= 1 { 794 gccResult = p.cgoType(fntype.Results.List[0].Type).C.String() 795 } else { 796 fmt.Fprintf(fgcch, "\n/* Return type for %s */\n", exp.ExpName) 797 fmt.Fprintf(fgcch, "struct %s_return {\n", exp.ExpName) 798 forFieldList(fntype.Results, 799 func(i int, aname string, atype ast.Expr) { 800 fmt.Fprintf(fgcch, "\t%s r%d;", p.cgoType(atype).C, i) 801 if len(aname) > 0 { 802 fmt.Fprintf(fgcch, " /* %s */", aname) 803 } 804 fmt.Fprint(fgcch, "\n") 805 }) 806 fmt.Fprintf(fgcch, "};\n") 807 gccResult = "struct " + exp.ExpName + "_return" 808 } 809 810 // Build the wrapper function compiled by gcc. 811 s := fmt.Sprintf("%s %s(", gccResult, exp.ExpName) 812 if fn.Recv != nil { 813 s += p.cgoType(fn.Recv.List[0].Type).C.String() 814 s += " recv" 815 } 816 forFieldList(fntype.Params, 817 func(i int, aname string, atype ast.Expr) { 818 if i > 0 || fn.Recv != nil { 819 s += ", " 820 } 821 s += fmt.Sprintf("%s p%d", p.cgoType(atype).C, i) 822 }) 823 s += ")" 824 825 if len(exp.Doc) > 0 { 826 fmt.Fprintf(fgcch, "\n%s", exp.Doc) 827 } 828 fmt.Fprintf(fgcch, "\nextern %s;\n", s) 829 830 fmt.Fprintf(fgcc, "extern void _cgoexp%s_%s(void *, int, __SIZE_TYPE__);\n", cPrefix, exp.ExpName) 831 fmt.Fprintf(fgcc, "\nCGO_NO_SANITIZE_THREAD") 832 fmt.Fprintf(fgcc, "\n%s\n", s) 833 fmt.Fprintf(fgcc, "{\n") 834 fmt.Fprintf(fgcc, "\t__SIZE_TYPE__ _cgo_ctxt = _cgo_wait_runtime_init_done();\n") 835 fmt.Fprintf(fgcc, "\t%s %v a;\n", ctype, p.packedAttribute()) 836 if gccResult != "void" && (len(fntype.Results.List) > 1 || len(fntype.Results.List[0].Names) > 1) { 837 fmt.Fprintf(fgcc, "\t%s r;\n", gccResult) 838 } 839 if fn.Recv != nil { 840 fmt.Fprintf(fgcc, "\ta.recv = recv;\n") 841 } 842 forFieldList(fntype.Params, 843 func(i int, aname string, atype ast.Expr) { 844 fmt.Fprintf(fgcc, "\ta.p%d = p%d;\n", i, i) 845 }) 846 fmt.Fprintf(fgcc, "\t_cgo_tsan_release();\n") 847 fmt.Fprintf(fgcc, "\tcrosscall2(_cgoexp%s_%s, &a, %d, _cgo_ctxt);\n", cPrefix, exp.ExpName, off) 848 fmt.Fprintf(fgcc, "\t_cgo_tsan_acquire();\n") 849 fmt.Fprintf(fgcc, "\t_cgo_release_context(_cgo_ctxt);\n") 850 if gccResult != "void" { 851 if len(fntype.Results.List) == 1 && len(fntype.Results.List[0].Names) <= 1 { 852 fmt.Fprintf(fgcc, "\treturn a.r0;\n") 853 } else { 854 forFieldList(fntype.Results, 855 func(i int, aname string, atype ast.Expr) { 856 fmt.Fprintf(fgcc, "\tr.r%d = a.r%d;\n", i, i) 857 }) 858 fmt.Fprintf(fgcc, "\treturn r;\n") 859 } 860 } 861 fmt.Fprintf(fgcc, "}\n") 862 863 // Build the wrapper function compiled by cmd/compile. 864 goname := "_cgoexpwrap" + cPrefix + "_" 865 if fn.Recv != nil { 866 goname += fn.Recv.List[0].Names[0].Name + "_" 867 } 868 goname += exp.Func.Name.Name 869 fmt.Fprintf(fgo2, "//go:cgo_export_dynamic %s\n", exp.ExpName) 870 fmt.Fprintf(fgo2, "//go:linkname _cgoexp%s_%s _cgoexp%s_%s\n", cPrefix, exp.ExpName, cPrefix, exp.ExpName) 871 fmt.Fprintf(fgo2, "//go:cgo_export_static _cgoexp%s_%s\n", cPrefix, exp.ExpName) 872 fmt.Fprintf(fgo2, "//go:nosplit\n") // no split stack, so no use of m or g 873 fmt.Fprintf(fgo2, "//go:norace\n") // must not have race detector calls inserted 874 fmt.Fprintf(fgo2, "func _cgoexp%s_%s(a unsafe.Pointer, n int32, ctxt uintptr) {\n", cPrefix, exp.ExpName) 875 fmt.Fprintf(fgo2, "\tfn := %s\n", goname) 876 // The indirect here is converting from a Go function pointer to a C function pointer. 877 fmt.Fprintf(fgo2, "\t_cgo_runtime_cgocallback(**(**unsafe.Pointer)(unsafe.Pointer(&fn)), a, uintptr(n), ctxt);\n") 878 fmt.Fprintf(fgo2, "}\n") 879 880 fmt.Fprintf(fm, "int _cgoexp%s_%s;\n", cPrefix, exp.ExpName) 881 882 // This code uses printer.Fprint, not conf.Fprint, 883 // because we don't want //line comments in the middle 884 // of the function types. 885 fmt.Fprintf(fgo2, "\n") 886 fmt.Fprintf(fgo2, "func %s(", goname) 887 comma := false 888 if fn.Recv != nil { 889 fmt.Fprintf(fgo2, "recv ") 890 printer.Fprint(fgo2, fset, fn.Recv.List[0].Type) 891 comma = true 892 } 893 forFieldList(fntype.Params, 894 func(i int, aname string, atype ast.Expr) { 895 if comma { 896 fmt.Fprintf(fgo2, ", ") 897 } 898 fmt.Fprintf(fgo2, "p%d ", i) 899 printer.Fprint(fgo2, fset, atype) 900 comma = true 901 }) 902 fmt.Fprintf(fgo2, ")") 903 if gccResult != "void" { 904 fmt.Fprint(fgo2, " (") 905 forFieldList(fntype.Results, 906 func(i int, aname string, atype ast.Expr) { 907 if i > 0 { 908 fmt.Fprint(fgo2, ", ") 909 } 910 fmt.Fprintf(fgo2, "r%d ", i) 911 printer.Fprint(fgo2, fset, atype) 912 }) 913 fmt.Fprint(fgo2, ")") 914 } 915 fmt.Fprint(fgo2, " {\n") 916 if gccResult == "void" { 917 fmt.Fprint(fgo2, "\t") 918 } else { 919 // Verify that any results don't contain any 920 // Go pointers. 921 addedDefer := false 922 forFieldList(fntype.Results, 923 func(i int, aname string, atype ast.Expr) { 924 if !p.hasPointer(nil, atype, false) { 925 return 926 } 927 if !addedDefer { 928 fmt.Fprint(fgo2, "\tdefer func() {\n") 929 addedDefer = true 930 } 931 fmt.Fprintf(fgo2, "\t\t_cgoCheckResult(r%d)\n", i) 932 }) 933 if addedDefer { 934 fmt.Fprint(fgo2, "\t}()\n") 935 } 936 fmt.Fprint(fgo2, "\treturn ") 937 } 938 if fn.Recv != nil { 939 fmt.Fprintf(fgo2, "recv.") 940 } 941 fmt.Fprintf(fgo2, "%s(", exp.Func.Name) 942 forFieldList(fntype.Params, 943 func(i int, aname string, atype ast.Expr) { 944 if i > 0 { 945 fmt.Fprint(fgo2, ", ") 946 } 947 fmt.Fprintf(fgo2, "p%d", i) 948 }) 949 fmt.Fprint(fgo2, ")\n") 950 fmt.Fprint(fgo2, "}\n") 951 } 952 953 fmt.Fprintf(fgcch, "%s", gccExportHeaderEpilog) 954 } 955 956 // Write out the C header allowing C code to call exported gccgo functions. 957 func (p *Package) writeGccgoExports(fgo2, fm, fgcc, fgcch io.Writer) { 958 gccgoSymbolPrefix := p.gccgoSymbolPrefix() 959 960 p.writeExportHeader(fgcch) 961 962 fmt.Fprintf(fgcc, "/* Created by cgo - DO NOT EDIT. */\n") 963 fmt.Fprintf(fgcc, "#include \"_cgo_export.h\"\n") 964 965 fmt.Fprintf(fgcc, "%s\n", gccgoExportFileProlog) 966 fmt.Fprintf(fgcc, "%s\n", tsanProlog) 967 968 for _, exp := range p.ExpFunc { 969 fn := exp.Func 970 fntype := fn.Type 971 972 cdeclBuf := new(bytes.Buffer) 973 resultCount := 0 974 forFieldList(fntype.Results, 975 func(i int, aname string, atype ast.Expr) { resultCount++ }) 976 switch resultCount { 977 case 0: 978 fmt.Fprintf(cdeclBuf, "void") 979 case 1: 980 forFieldList(fntype.Results, 981 func(i int, aname string, atype ast.Expr) { 982 t := p.cgoType(atype) 983 fmt.Fprintf(cdeclBuf, "%s", t.C) 984 }) 985 default: 986 // Declare a result struct. 987 fmt.Fprintf(fgcch, "\n/* Return type for %s */\n", exp.ExpName) 988 fmt.Fprintf(fgcch, "struct %s_result {\n", exp.ExpName) 989 forFieldList(fntype.Results, 990 func(i int, aname string, atype ast.Expr) { 991 t := p.cgoType(atype) 992 fmt.Fprintf(fgcch, "\t%s r%d;", t.C, i) 993 if len(aname) > 0 { 994 fmt.Fprintf(fgcch, " /* %s */", aname) 995 } 996 fmt.Fprint(fgcch, "\n") 997 }) 998 fmt.Fprintf(fgcch, "};\n") 999 fmt.Fprintf(cdeclBuf, "struct %s_result", exp.ExpName) 1000 } 1001 1002 cRet := cdeclBuf.String() 1003 1004 cdeclBuf = new(bytes.Buffer) 1005 fmt.Fprintf(cdeclBuf, "(") 1006 if fn.Recv != nil { 1007 fmt.Fprintf(cdeclBuf, "%s recv", p.cgoType(fn.Recv.List[0].Type).C.String()) 1008 } 1009 // Function parameters. 1010 forFieldList(fntype.Params, 1011 func(i int, aname string, atype ast.Expr) { 1012 if i > 0 || fn.Recv != nil { 1013 fmt.Fprintf(cdeclBuf, ", ") 1014 } 1015 t := p.cgoType(atype) 1016 fmt.Fprintf(cdeclBuf, "%s p%d", t.C, i) 1017 }) 1018 fmt.Fprintf(cdeclBuf, ")") 1019 cParams := cdeclBuf.String() 1020 1021 if len(exp.Doc) > 0 { 1022 fmt.Fprintf(fgcch, "\n%s", exp.Doc) 1023 } 1024 1025 fmt.Fprintf(fgcch, "extern %s %s %s;\n", cRet, exp.ExpName, cParams) 1026 1027 // We need to use a name that will be exported by the 1028 // Go code; otherwise gccgo will make it static and we 1029 // will not be able to link against it from the C 1030 // code. 1031 goName := "Cgoexp_" + exp.ExpName 1032 fmt.Fprintf(fgcc, `extern %s %s %s __asm__("%s.%s");`, cRet, goName, cParams, gccgoSymbolPrefix, goName) 1033 fmt.Fprint(fgcc, "\n") 1034 1035 fmt.Fprint(fgcc, "\nCGO_NO_SANITIZE_THREAD\n") 1036 fmt.Fprintf(fgcc, "%s %s %s {\n", cRet, exp.ExpName, cParams) 1037 if resultCount > 0 { 1038 fmt.Fprintf(fgcc, "\t%s r;\n", cRet) 1039 } 1040 fmt.Fprintf(fgcc, "\tif(_cgo_wait_runtime_init_done)\n") 1041 fmt.Fprintf(fgcc, "\t\t_cgo_wait_runtime_init_done();\n") 1042 fmt.Fprintf(fgcc, "\t_cgo_tsan_release();\n") 1043 fmt.Fprint(fgcc, "\t") 1044 if resultCount > 0 { 1045 fmt.Fprint(fgcc, "r = ") 1046 } 1047 fmt.Fprintf(fgcc, "%s(", goName) 1048 if fn.Recv != nil { 1049 fmt.Fprint(fgcc, "recv") 1050 } 1051 forFieldList(fntype.Params, 1052 func(i int, aname string, atype ast.Expr) { 1053 if i > 0 || fn.Recv != nil { 1054 fmt.Fprintf(fgcc, ", ") 1055 } 1056 fmt.Fprintf(fgcc, "p%d", i) 1057 }) 1058 fmt.Fprint(fgcc, ");\n") 1059 fmt.Fprintf(fgcc, "\t_cgo_tsan_acquire();\n") 1060 if resultCount > 0 { 1061 fmt.Fprint(fgcc, "\treturn r;\n") 1062 } 1063 fmt.Fprint(fgcc, "}\n") 1064 1065 // Dummy declaration for _cgo_main.c 1066 fmt.Fprintf(fm, `char %s[1] __asm__("%s.%s");`, goName, gccgoSymbolPrefix, goName) 1067 fmt.Fprint(fm, "\n") 1068 1069 // For gccgo we use a wrapper function in Go, in order 1070 // to call CgocallBack and CgocallBackDone. 1071 1072 // This code uses printer.Fprint, not conf.Fprint, 1073 // because we don't want //line comments in the middle 1074 // of the function types. 1075 fmt.Fprint(fgo2, "\n") 1076 fmt.Fprintf(fgo2, "func %s(", goName) 1077 if fn.Recv != nil { 1078 fmt.Fprint(fgo2, "recv ") 1079 printer.Fprint(fgo2, fset, fn.Recv.List[0].Type) 1080 } 1081 forFieldList(fntype.Params, 1082 func(i int, aname string, atype ast.Expr) { 1083 if i > 0 || fn.Recv != nil { 1084 fmt.Fprintf(fgo2, ", ") 1085 } 1086 fmt.Fprintf(fgo2, "p%d ", i) 1087 printer.Fprint(fgo2, fset, atype) 1088 }) 1089 fmt.Fprintf(fgo2, ")") 1090 if resultCount > 0 { 1091 fmt.Fprintf(fgo2, " (") 1092 forFieldList(fntype.Results, 1093 func(i int, aname string, atype ast.Expr) { 1094 if i > 0 { 1095 fmt.Fprint(fgo2, ", ") 1096 } 1097 printer.Fprint(fgo2, fset, atype) 1098 }) 1099 fmt.Fprint(fgo2, ")") 1100 } 1101 fmt.Fprint(fgo2, " {\n") 1102 fmt.Fprint(fgo2, "\tsyscall.CgocallBack()\n") 1103 fmt.Fprint(fgo2, "\tdefer syscall.CgocallBackDone()\n") 1104 fmt.Fprint(fgo2, "\t") 1105 if resultCount > 0 { 1106 fmt.Fprint(fgo2, "return ") 1107 } 1108 if fn.Recv != nil { 1109 fmt.Fprint(fgo2, "recv.") 1110 } 1111 fmt.Fprintf(fgo2, "%s(", exp.Func.Name) 1112 forFieldList(fntype.Params, 1113 func(i int, aname string, atype ast.Expr) { 1114 if i > 0 { 1115 fmt.Fprint(fgo2, ", ") 1116 } 1117 fmt.Fprintf(fgo2, "p%d", i) 1118 }) 1119 fmt.Fprint(fgo2, ")\n") 1120 fmt.Fprint(fgo2, "}\n") 1121 } 1122 1123 fmt.Fprintf(fgcch, "%s", gccExportHeaderEpilog) 1124 } 1125 1126 // writeExportHeader writes out the start of the _cgo_export.h file. 1127 func (p *Package) writeExportHeader(fgcch io.Writer) { 1128 fmt.Fprintf(fgcch, "/* Created by \"go tool cgo\" - DO NOT EDIT. */\n\n") 1129 pkg := *importPath 1130 if pkg == "" { 1131 pkg = p.PackagePath 1132 } 1133 fmt.Fprintf(fgcch, "/* package %s */\n\n", pkg) 1134 1135 fmt.Fprintf(fgcch, "/* Start of preamble from import \"C\" comments. */\n\n") 1136 fmt.Fprintf(fgcch, "%s\n", p.Preamble) 1137 fmt.Fprintf(fgcch, "\n/* End of preamble from import \"C\" comments. */\n\n") 1138 1139 fmt.Fprintf(fgcch, "%s\n", p.gccExportHeaderProlog()) 1140 } 1141 1142 // Return the package prefix when using gccgo. 1143 func (p *Package) gccgoSymbolPrefix() string { 1144 if !*gccgo { 1145 return "" 1146 } 1147 1148 clean := func(r rune) rune { 1149 switch { 1150 case 'A' <= r && r <= 'Z', 'a' <= r && r <= 'z', 1151 '0' <= r && r <= '9': 1152 return r 1153 } 1154 return '_' 1155 } 1156 1157 if *gccgopkgpath != "" { 1158 return strings.Map(clean, *gccgopkgpath) 1159 } 1160 if *gccgoprefix == "" && p.PackageName == "main" { 1161 return "main" 1162 } 1163 prefix := strings.Map(clean, *gccgoprefix) 1164 if prefix == "" { 1165 prefix = "go" 1166 } 1167 return prefix + "." + p.PackageName 1168 } 1169 1170 // Call a function for each entry in an ast.FieldList, passing the 1171 // index into the list, the name if any, and the type. 1172 func forFieldList(fl *ast.FieldList, fn func(int, string, ast.Expr)) { 1173 if fl == nil { 1174 return 1175 } 1176 i := 0 1177 for _, r := range fl.List { 1178 if r.Names == nil { 1179 fn(i, "", r.Type) 1180 i++ 1181 } else { 1182 for _, n := range r.Names { 1183 fn(i, n.Name, r.Type) 1184 i++ 1185 } 1186 } 1187 } 1188 } 1189 1190 func c(repr string, args ...interface{}) *TypeRepr { 1191 return &TypeRepr{repr, args} 1192 } 1193 1194 // Map predeclared Go types to Type. 1195 var goTypes = map[string]*Type{ 1196 "bool": {Size: 1, Align: 1, C: c("GoUint8")}, 1197 "byte": {Size: 1, Align: 1, C: c("GoUint8")}, 1198 "int": {Size: 0, Align: 0, C: c("GoInt")}, 1199 "uint": {Size: 0, Align: 0, C: c("GoUint")}, 1200 "rune": {Size: 4, Align: 4, C: c("GoInt32")}, 1201 "int8": {Size: 1, Align: 1, C: c("GoInt8")}, 1202 "uint8": {Size: 1, Align: 1, C: c("GoUint8")}, 1203 "int16": {Size: 2, Align: 2, C: c("GoInt16")}, 1204 "uint16": {Size: 2, Align: 2, C: c("GoUint16")}, 1205 "int32": {Size: 4, Align: 4, C: c("GoInt32")}, 1206 "uint32": {Size: 4, Align: 4, C: c("GoUint32")}, 1207 "int64": {Size: 8, Align: 8, C: c("GoInt64")}, 1208 "uint64": {Size: 8, Align: 8, C: c("GoUint64")}, 1209 "float32": {Size: 4, Align: 4, C: c("GoFloat32")}, 1210 "float64": {Size: 8, Align: 8, C: c("GoFloat64")}, 1211 "complex64": {Size: 8, Align: 4, C: c("GoComplex64")}, 1212 "complex128": {Size: 16, Align: 8, C: c("GoComplex128")}, 1213 } 1214 1215 // Map an ast type to a Type. 1216 func (p *Package) cgoType(e ast.Expr) *Type { 1217 switch t := e.(type) { 1218 case *ast.StarExpr: 1219 x := p.cgoType(t.X) 1220 return &Type{Size: p.PtrSize, Align: p.PtrSize, C: c("%s*", x.C)} 1221 case *ast.ArrayType: 1222 if t.Len == nil { 1223 // Slice: pointer, len, cap. 1224 return &Type{Size: p.PtrSize * 3, Align: p.PtrSize, C: c("GoSlice")} 1225 } 1226 case *ast.StructType: 1227 // TODO 1228 case *ast.FuncType: 1229 return &Type{Size: p.PtrSize, Align: p.PtrSize, C: c("void*")} 1230 case *ast.InterfaceType: 1231 return &Type{Size: 2 * p.PtrSize, Align: p.PtrSize, C: c("GoInterface")} 1232 case *ast.MapType: 1233 return &Type{Size: p.PtrSize, Align: p.PtrSize, C: c("GoMap")} 1234 case *ast.ChanType: 1235 return &Type{Size: p.PtrSize, Align: p.PtrSize, C: c("GoChan")} 1236 case *ast.Ident: 1237 // Look up the type in the top level declarations. 1238 // TODO: Handle types defined within a function. 1239 for _, d := range p.Decl { 1240 gd, ok := d.(*ast.GenDecl) 1241 if !ok || gd.Tok != token.TYPE { 1242 continue 1243 } 1244 for _, spec := range gd.Specs { 1245 ts, ok := spec.(*ast.TypeSpec) 1246 if !ok { 1247 continue 1248 } 1249 if ts.Name.Name == t.Name { 1250 return p.cgoType(ts.Type) 1251 } 1252 } 1253 } 1254 if def := typedef[t.Name]; def != nil { 1255 return def 1256 } 1257 if t.Name == "uintptr" { 1258 return &Type{Size: p.PtrSize, Align: p.PtrSize, C: c("GoUintptr")} 1259 } 1260 if t.Name == "string" { 1261 // The string data is 1 pointer + 1 (pointer-sized) int. 1262 return &Type{Size: 2 * p.PtrSize, Align: p.PtrSize, C: c("GoString")} 1263 } 1264 if t.Name == "error" { 1265 return &Type{Size: 2 * p.PtrSize, Align: p.PtrSize, C: c("GoInterface")} 1266 } 1267 if r, ok := goTypes[t.Name]; ok { 1268 if r.Size == 0 { // int or uint 1269 rr := new(Type) 1270 *rr = *r 1271 rr.Size = p.IntSize 1272 rr.Align = p.IntSize 1273 r = rr 1274 } 1275 if r.Align > p.PtrSize { 1276 r.Align = p.PtrSize 1277 } 1278 return r 1279 } 1280 error_(e.Pos(), "unrecognized Go type %s", t.Name) 1281 return &Type{Size: 4, Align: 4, C: c("int")} 1282 case *ast.SelectorExpr: 1283 id, ok := t.X.(*ast.Ident) 1284 if ok && id.Name == "unsafe" && t.Sel.Name == "Pointer" { 1285 return &Type{Size: p.PtrSize, Align: p.PtrSize, C: c("void*")} 1286 } 1287 } 1288 error_(e.Pos(), "Go type not supported in export: %s", gofmt(e)) 1289 return &Type{Size: 4, Align: 4, C: c("int")} 1290 } 1291 1292 const gccProlog = ` 1293 #line 1 "cgo-gcc-prolog" 1294 /* 1295 If x and y are not equal, the type will be invalid 1296 (have a negative array count) and an inscrutable error will come 1297 out of the compiler and hopefully mention "name". 1298 */ 1299 #define __cgo_compile_assert_eq(x, y, name) typedef char name[(x-y)*(x-y)*-2+1]; 1300 1301 // Check at compile time that the sizes we use match our expectations. 1302 #define __cgo_size_assert(t, n) __cgo_compile_assert_eq(sizeof(t), n, _cgo_sizeof_##t##_is_not_##n) 1303 1304 __cgo_size_assert(char, 1) 1305 __cgo_size_assert(short, 2) 1306 __cgo_size_assert(int, 4) 1307 typedef long long __cgo_long_long; 1308 __cgo_size_assert(__cgo_long_long, 8) 1309 __cgo_size_assert(float, 4) 1310 __cgo_size_assert(double, 8) 1311 1312 extern char* _cgo_topofstack(void); 1313 1314 #include <errno.h> 1315 #include <string.h> 1316 ` 1317 1318 // Prologue defining TSAN functions in C. 1319 const noTsanProlog = ` 1320 #define CGO_NO_SANITIZE_THREAD 1321 #define _cgo_tsan_acquire() 1322 #define _cgo_tsan_release() 1323 ` 1324 1325 // This must match the TSAN code in runtime/cgo/libcgo.h. 1326 const yesTsanProlog = ` 1327 #line 1 "cgo-tsan-prolog" 1328 #define CGO_NO_SANITIZE_THREAD __attribute__ ((no_sanitize_thread)) 1329 1330 long long _cgo_sync __attribute__ ((common)); 1331 1332 extern void __tsan_acquire(void*); 1333 extern void __tsan_release(void*); 1334 1335 __attribute__ ((unused)) 1336 static void _cgo_tsan_acquire() { 1337 __tsan_acquire(&_cgo_sync); 1338 } 1339 1340 __attribute__ ((unused)) 1341 static void _cgo_tsan_release() { 1342 __tsan_release(&_cgo_sync); 1343 } 1344 ` 1345 1346 // Set to yesTsanProlog if we see -fsanitize=thread in the flags for gcc. 1347 var tsanProlog = noTsanProlog 1348 1349 const builtinProlog = ` 1350 #line 1 "cgo-builtin-prolog" 1351 #include <stddef.h> /* for ptrdiff_t and size_t below */ 1352 1353 /* Define intgo when compiling with GCC. */ 1354 typedef ptrdiff_t intgo; 1355 1356 typedef struct { char *p; intgo n; } _GoString_; 1357 typedef struct { char *p; intgo n; intgo c; } _GoBytes_; 1358 _GoString_ GoString(char *p); 1359 _GoString_ GoStringN(char *p, int l); 1360 _GoBytes_ GoBytes(void *p, int n); 1361 char *CString(_GoString_); 1362 void *CBytes(_GoBytes_); 1363 void *_CMalloc(size_t); 1364 ` 1365 1366 const goProlog = ` 1367 //go:linkname _cgo_runtime_cgocall runtime.cgocall 1368 func _cgo_runtime_cgocall(unsafe.Pointer, uintptr) int32 1369 1370 //go:linkname _cgo_runtime_cgocallback runtime.cgocallback 1371 func _cgo_runtime_cgocallback(unsafe.Pointer, unsafe.Pointer, uintptr, uintptr) 1372 1373 //go:linkname _cgoCheckPointer runtime.cgoCheckPointer 1374 func _cgoCheckPointer(interface{}, ...interface{}) 1375 1376 //go:linkname _cgoCheckResult runtime.cgoCheckResult 1377 func _cgoCheckResult(interface{}) 1378 ` 1379 1380 const gccgoGoProlog = ` 1381 func _cgoCheckPointer(interface{}, ...interface{}) 1382 1383 func _cgoCheckResult(interface{}) 1384 ` 1385 1386 const goStringDef = ` 1387 //go:linkname _cgo_runtime_gostring runtime.gostring 1388 func _cgo_runtime_gostring(*_Ctype_char) string 1389 1390 func _Cfunc_GoString(p *_Ctype_char) string { 1391 return _cgo_runtime_gostring(p) 1392 } 1393 ` 1394 1395 const goStringNDef = ` 1396 //go:linkname _cgo_runtime_gostringn runtime.gostringn 1397 func _cgo_runtime_gostringn(*_Ctype_char, int) string 1398 1399 func _Cfunc_GoStringN(p *_Ctype_char, l _Ctype_int) string { 1400 return _cgo_runtime_gostringn(p, int(l)) 1401 } 1402 ` 1403 1404 const goBytesDef = ` 1405 //go:linkname _cgo_runtime_gobytes runtime.gobytes 1406 func _cgo_runtime_gobytes(unsafe.Pointer, int) []byte 1407 1408 func _Cfunc_GoBytes(p unsafe.Pointer, l _Ctype_int) []byte { 1409 return _cgo_runtime_gobytes(p, int(l)) 1410 } 1411 ` 1412 1413 const cStringDef = ` 1414 func _Cfunc_CString(s string) *_Ctype_char { 1415 p := _cgo_cmalloc(uint64(len(s)+1)) 1416 pp := (*[1<<30]byte)(p) 1417 copy(pp[:], s) 1418 pp[len(s)] = 0 1419 return (*_Ctype_char)(p) 1420 } 1421 ` 1422 1423 const cBytesDef = ` 1424 func _Cfunc_CBytes(b []byte) unsafe.Pointer { 1425 p := _cgo_cmalloc(uint64(len(b))) 1426 pp := (*[1<<30]byte)(p) 1427 copy(pp[:], b) 1428 return p 1429 } 1430 ` 1431 1432 const cMallocDef = ` 1433 func _Cfunc__CMalloc(n _Ctype_size_t) unsafe.Pointer { 1434 return _cgo_cmalloc(uint64(n)) 1435 } 1436 ` 1437 1438 var builtinDefs = map[string]string{ 1439 "GoString": goStringDef, 1440 "GoStringN": goStringNDef, 1441 "GoBytes": goBytesDef, 1442 "CString": cStringDef, 1443 "CBytes": cBytesDef, 1444 "_CMalloc": cMallocDef, 1445 } 1446 1447 // Definitions for C.malloc in Go and in C. We define it ourselves 1448 // since we call it from functions we define, such as C.CString. 1449 // Also, we have historically ensured that C.malloc does not return 1450 // nil even for an allocation of 0. 1451 1452 const cMallocDefGo = ` 1453 //go:cgo_import_static _cgoPREFIX_Cfunc__Cmalloc 1454 //go:linkname __cgofn__cgoPREFIX_Cfunc__Cmalloc _cgoPREFIX_Cfunc__Cmalloc 1455 var __cgofn__cgoPREFIX_Cfunc__Cmalloc byte 1456 var _cgoPREFIX_Cfunc__Cmalloc = unsafe.Pointer(&__cgofn__cgoPREFIX_Cfunc__Cmalloc) 1457 1458 //go:linkname runtime_throw runtime.throw 1459 func runtime_throw(string) 1460 1461 //go:cgo_unsafe_args 1462 func _cgo_cmalloc(p0 uint64) (r1 unsafe.Pointer) { 1463 _cgo_runtime_cgocall(_cgoPREFIX_Cfunc__Cmalloc, uintptr(unsafe.Pointer(&p0))) 1464 if r1 == nil { 1465 runtime_throw("runtime: C malloc failed") 1466 } 1467 return 1468 } 1469 ` 1470 1471 // cMallocDefC defines the C version of C.malloc for the gc compiler. 1472 // It is defined here because C.CString and friends need a definition. 1473 // We define it by hand, rather than simply inventing a reference to 1474 // C.malloc, because <stdlib.h> may not have been included. 1475 // This is approximately what writeOutputFunc would generate, but 1476 // skips the cgo_topofstack code (which is only needed if the C code 1477 // calls back into Go). This also avoids returning nil for an 1478 // allocation of 0 bytes. 1479 const cMallocDefC = ` 1480 CGO_NO_SANITIZE_THREAD 1481 void _cgoPREFIX_Cfunc__Cmalloc(void *v) { 1482 struct { 1483 unsigned long long p0; 1484 void *r1; 1485 } PACKED *a = v; 1486 void *ret; 1487 _cgo_tsan_acquire(); 1488 ret = malloc(a->p0); 1489 if (ret == 0 && a->p0 == 0) { 1490 ret = malloc(1); 1491 } 1492 a->r1 = ret; 1493 _cgo_tsan_release(); 1494 } 1495 ` 1496 1497 func (p *Package) cPrologGccgo() string { 1498 return strings.Replace(strings.Replace(cPrologGccgo, "PREFIX", cPrefix, -1), 1499 "GCCGOSYMBOLPREF", p.gccgoSymbolPrefix(), -1) 1500 } 1501 1502 const cPrologGccgo = ` 1503 #line 1 "cgo-c-prolog-gccgo" 1504 #include <stdint.h> 1505 #include <stdlib.h> 1506 #include <string.h> 1507 1508 typedef unsigned char byte; 1509 typedef intptr_t intgo; 1510 1511 struct __go_string { 1512 const unsigned char *__data; 1513 intgo __length; 1514 }; 1515 1516 typedef struct __go_open_array { 1517 void* __values; 1518 intgo __count; 1519 intgo __capacity; 1520 } Slice; 1521 1522 struct __go_string __go_byte_array_to_string(const void* p, intgo len); 1523 struct __go_open_array __go_string_to_byte_array (struct __go_string str); 1524 1525 const char *_cgoPREFIX_Cfunc_CString(struct __go_string s) { 1526 char *p = malloc(s.__length+1); 1527 memmove(p, s.__data, s.__length); 1528 p[s.__length] = 0; 1529 return p; 1530 } 1531 1532 void *_cgoPREFIX_Cfunc_CBytes(struct __go_open_array b) { 1533 char *p = malloc(b.__count); 1534 memmove(p, b.__values, b.__count); 1535 return p; 1536 } 1537 1538 struct __go_string _cgoPREFIX_Cfunc_GoString(char *p) { 1539 intgo len = (p != NULL) ? strlen(p) : 0; 1540 return __go_byte_array_to_string(p, len); 1541 } 1542 1543 struct __go_string _cgoPREFIX_Cfunc_GoStringN(char *p, int32_t n) { 1544 return __go_byte_array_to_string(p, n); 1545 } 1546 1547 Slice _cgoPREFIX_Cfunc_GoBytes(char *p, int32_t n) { 1548 struct __go_string s = { (const unsigned char *)p, n }; 1549 return __go_string_to_byte_array(s); 1550 } 1551 1552 extern void runtime_throw(const char *); 1553 void *_cgoPREFIX_Cfunc__CMalloc(size_t n) { 1554 void *p = malloc(n); 1555 if(p == NULL && n == 0) 1556 p = malloc(1); 1557 if(p == NULL) 1558 runtime_throw("runtime: C malloc failed"); 1559 return p; 1560 } 1561 1562 struct __go_type_descriptor; 1563 typedef struct __go_empty_interface { 1564 const struct __go_type_descriptor *__type_descriptor; 1565 void *__object; 1566 } Eface; 1567 1568 extern void runtimeCgoCheckPointer(Eface, Slice) 1569 __asm__("runtime.cgoCheckPointer") 1570 __attribute__((weak)); 1571 1572 extern void localCgoCheckPointer(Eface, Slice) 1573 __asm__("GCCGOSYMBOLPREF._cgoCheckPointer"); 1574 1575 void localCgoCheckPointer(Eface ptr, Slice args) { 1576 if(runtimeCgoCheckPointer) { 1577 runtimeCgoCheckPointer(ptr, args); 1578 } 1579 } 1580 1581 extern void runtimeCgoCheckResult(Eface) 1582 __asm__("runtime.cgoCheckResult") 1583 __attribute__((weak)); 1584 1585 extern void localCgoCheckResult(Eface) 1586 __asm__("GCCGOSYMBOLPREF._cgoCheckResult"); 1587 1588 void localCgoCheckResult(Eface val) { 1589 if(runtimeCgoCheckResult) { 1590 runtimeCgoCheckResult(val); 1591 } 1592 } 1593 ` 1594 1595 func (p *Package) gccExportHeaderProlog() string { 1596 return strings.Replace(gccExportHeaderProlog, "GOINTBITS", fmt.Sprint(8*p.IntSize), -1) 1597 } 1598 1599 const gccExportHeaderProlog = ` 1600 /* Start of boilerplate cgo prologue. */ 1601 #line 1 "cgo-gcc-export-header-prolog" 1602 1603 #ifndef GO_CGO_PROLOGUE_H 1604 #define GO_CGO_PROLOGUE_H 1605 1606 typedef signed char GoInt8; 1607 typedef unsigned char GoUint8; 1608 typedef short GoInt16; 1609 typedef unsigned short GoUint16; 1610 typedef int GoInt32; 1611 typedef unsigned int GoUint32; 1612 typedef long long GoInt64; 1613 typedef unsigned long long GoUint64; 1614 typedef GoIntGOINTBITS GoInt; 1615 typedef GoUintGOINTBITS GoUint; 1616 typedef __SIZE_TYPE__ GoUintptr; 1617 typedef float GoFloat32; 1618 typedef double GoFloat64; 1619 typedef float _Complex GoComplex64; 1620 typedef double _Complex GoComplex128; 1621 1622 /* 1623 static assertion to make sure the file is being used on architecture 1624 at least with matching size of GoInt. 1625 */ 1626 typedef char _check_for_GOINTBITS_bit_pointer_matching_GoInt[sizeof(void*)==GOINTBITS/8 ? 1:-1]; 1627 1628 typedef struct { const char *p; GoInt n; } GoString; 1629 typedef void *GoMap; 1630 typedef void *GoChan; 1631 typedef struct { void *t; void *v; } GoInterface; 1632 typedef struct { void *data; GoInt len; GoInt cap; } GoSlice; 1633 1634 #endif 1635 1636 /* End of boilerplate cgo prologue. */ 1637 1638 #ifdef __cplusplus 1639 extern "C" { 1640 #endif 1641 ` 1642 1643 // gccExportHeaderEpilog goes at the end of the generated header file. 1644 const gccExportHeaderEpilog = ` 1645 #ifdef __cplusplus 1646 } 1647 #endif 1648 ` 1649 1650 // gccgoExportFileProlog is written to the _cgo_export.c file when 1651 // using gccgo. 1652 // We use weak declarations, and test the addresses, so that this code 1653 // works with older versions of gccgo. 1654 const gccgoExportFileProlog = ` 1655 #line 1 "cgo-gccgo-export-file-prolog" 1656 extern _Bool runtime_iscgo __attribute__ ((weak)); 1657 1658 static void GoInit(void) __attribute__ ((constructor)); 1659 static void GoInit(void) { 1660 if(&runtime_iscgo) 1661 runtime_iscgo = 1; 1662 } 1663 1664 extern __SIZE_TYPE__ _cgo_wait_runtime_init_done() __attribute__ ((weak)); 1665 `