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//===--- RewriteTest.cpp - Playground for the code rewriter ---------------===//
//
// The LLVM Compiler Infrastructure
//
// This file was developed by Chris Lattner and is distributed under the
// University of Illinois Open Source License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
//
// Hacks and fun related to the code rewriter.
//
//===----------------------------------------------------------------------===//
#include "ASTConsumers.h"
#include "clang/Rewrite/Rewriter.h"
#include "clang/AST/AST.h"
#include "clang/AST/ASTConsumer.h"
#include "clang/Basic/SourceManager.h"
using namespace clang;
namespace {
class RewriteTest : public ASTConsumer {
Rewriter Rewrite;
ASTContext *Context;
SourceManager *SM;
unsigned MainFileID;
SourceLocation LastIncLoc;
llvm::SmallVector<ObjcImplementationDecl *, 8> ClassImplementation;
llvm::SmallVector<ObjcCategoryImplDecl *, 8> CategoryImplementation;
static const int OBJC_ABI_VERSION =7 ;
public:
void Initialize(ASTContext &context, unsigned mainFileID) {
Context = &context;
SM = &Context->SourceMgr;
MainFileID = mainFileID;
Rewrite.setSourceMgr(Context->SourceMgr);
}
virtual void HandleTopLevelDecl(Decl *D);
void HandleDeclInMainFile(Decl *D);
void RewriteInclude(SourceLocation Loc);
void RewriteFunctionBody(Stmt *S);
void RewriteAtEncode(ObjCEncodeExpr *Exp);
void WriteObjcClassMetaData(ObjcImplementationDecl *IDecl);
void WriteObjcMetaData();
~RewriteTest();
};
}
ASTConsumer *clang::CreateCodeRewriterTest() { return new RewriteTest(); }
void RewriteTest::HandleTopLevelDecl(Decl *D) {
// Two cases: either the decl could be in the main file, or it could be in a
// #included file. If the former, rewrite it now. If the later, check to see
// if we rewrote the #include/#import.
SourceLocation Loc = D->getLocation();
Loc = SM->getLogicalLoc(Loc);
// If this is for a builtin, ignore it.
if (Loc.isInvalid()) return;
if (SM->getDecomposedFileLoc(Loc).first == MainFileID)
return HandleDeclInMainFile(D);
RewriteInclude(Loc);
}
void RewriteTest::RewriteInclude(SourceLocation Loc) {
// Rip up the #include stack to the main file.
SourceLocation IncLoc = Loc, NextLoc = Loc;
do {
IncLoc = Loc;
Loc = SM->getLogicalLoc(NextLoc);
NextLoc = SM->getIncludeLoc(Loc);
} while (!NextLoc.isInvalid());
// Loc is now the location of the #include filename "foo" or <foo/bar.h>.
// IncLoc indicates the header that was included if it is useful.
IncLoc = SM->getLogicalLoc(IncLoc);
if (SM->getDecomposedFileLoc(Loc).first != MainFileID ||
Loc == LastIncLoc)
return;
LastIncLoc = Loc;
unsigned IncCol = SM->getColumnNumber(Loc);
SourceLocation LineStartLoc = Loc.getFileLocWithOffset(-IncCol+1);
// Replace the #import with #include.
Rewrite.ReplaceText(LineStartLoc, IncCol-1, "#include ", strlen("#include "));
}
/// HandleDeclInMainFile - This is called for each top-level decl defined in the
/// main file of the input.
void RewriteTest::HandleDeclInMainFile(Decl *D) {
if (FunctionDecl *FD = dyn_cast<FunctionDecl>(D))
if (Stmt *Body = FD->getBody())
RewriteFunctionBody(Body);
if (ObjcImplementationDecl *CI = dyn_cast<ObjcImplementationDecl>(D))
ClassImplementation.push_back(CI);
else if (ObjcCategoryImplDecl *CI = dyn_cast<ObjcCategoryImplDecl>(D))
CategoryImplementation.push_back(CI);
// Nothing yet.
}
void RewriteTest::RewriteFunctionBody(Stmt *S) {
// Handle specific things.
if (ObjCEncodeExpr *AtEncode = dyn_cast<ObjCEncodeExpr>(S))
return RewriteAtEncode(AtEncode);
// Otherwise, just rewrite all children.
for (Stmt::child_iterator CI = S->child_begin(), E = S->child_end();
CI != E; ++CI)
if (*CI)
RewriteFunctionBody(*CI);
}
void RewriteTest::RewriteAtEncode(ObjCEncodeExpr *Exp) {
// Create a new string expression.
QualType StrType = Context->getPointerType(Context->CharTy);
Expr *Replacement = new StringLiteral("foo", 3, false, StrType,
SourceLocation(), SourceLocation());
Rewrite.ReplaceStmt(Exp, Replacement);
delete Replacement;
}
void RewriteTest::WriteObjcClassMetaData(ObjcImplementationDecl *IDecl) {
ObjcInterfaceDecl *CDecl = IDecl->getClassInterface();
if (IDecl->getImplDeclNumIvars() > 0 ||
CDecl&& CDecl->getIntfDeclNumIvars() > 0) {
static bool objc_ivar = false;
int NumIvars = IDecl->getImplDeclNumIvars() > 0
? IDecl->getImplDeclNumIvars()
: CDecl->getIntfDeclNumIvars();
if (!objc_ivar) {
/* struct _objc_ivar {
char *ivar_name;
char *ivar_type;
int ivar_offset;
};
*/
printf("\nstruct _objc_ivar {\n");
printf("\tchar *ivar_name;\n");
printf("\tchar *ivar_type;\n");
printf("\tint ivar_offset;\n");
printf("};\n");
objc_ivar = true;
}
/* struct _objc_ivar_list {
int ivar_count;
struct _objc_ivar ivar_list[ivar_count];
};
*/
printf("\nstatic struct {\n");
printf("\tint ivar_count;\n");
printf("\tstruct _objc_ivar ivar_list[%d];\n", NumIvars);
printf("} _OBJC_INSTANCE_VARIABLES_%s "
"__attribute__ ((section (\"__OBJC, __instance_vars\")))= "
"{\n\t%d\n",IDecl->getName(),
NumIvars);
ObjcIvarDecl **Ivars = IDecl->getImplDeclIVars()
? IDecl->getImplDeclIVars()
: CDecl->getIntfDeclIvars();
for (int i = 0; i < NumIvars; i++)
// TODO: 1) ivar names may have to go to another section. 2) encode
// ivar_type type of each ivar . 3) compute and add ivar offset.
printf("\t,\"%s\", \"\", 0\n", Ivars[i]->getName());
printf("};\n");
}
}
void RewriteTest::WriteObjcMetaData() {
int ClsDefCount = ClassImplementation.size();
int CatDefCount = CategoryImplementation.size();
if (ClsDefCount == 0 && CatDefCount == 0)
return;
// For each defined class, write out all its meta data.
for (int i = 0; i < ClsDefCount; i++)
WriteObjcClassMetaData(ClassImplementation[i]);
// Write objc_symtab metadata
/*
struct _objc_symtab
{
long sel_ref_cnt;
SEL *refs;
short cls_def_cnt;
short cat_def_cnt;
void *defs[cls_def_cnt + cat_def_cnt];
};
*/
printf("\nstruct _objc_symtab {\n");
printf("\tlong sel_ref_cnt;\n");
printf("\tSEL *refs;\n");
printf("\tshort cls_def_cnt;\n");
printf("\tshort cat_def_cnt;\n");
printf("\tvoid *defs[%d];\n", ClsDefCount + CatDefCount);
printf("};\n\n");
printf("static struct _objc_symtab "
"_OBJC_SYMBOLS __attribute__ ((section (\"__OBJC, __symbols\")))= {\n");
printf("\t0, 0, %d, %d\n", ClsDefCount, CatDefCount);
for (int i = 0; i < ClsDefCount; i++)
printf("\t,_OBJC_CLASS_%s\n", ClassImplementation[i]->getName());
for (int i = 0; i < CatDefCount; i++)
printf("\t,_OBJC_CATEGORY_%s_%s\n",
CategoryImplementation[i]->getClassInterface()->getName(),
CategoryImplementation[i]->getName());
printf("};\n\n");
// Write objc_module metadata
/*
struct _objc_module {
long version;
long size;
const char *name;
struct _objc_symtab *symtab;
}
*/
printf("\nstruct _objc_module {\n");
printf("\tlong version;\n");
printf("\tlong size;\n");
printf("\tconst char *name;\n");
printf("\tstruct _objc_symtab *symtab;");
printf("};\n\n");
printf("static struct _objc_module "
"_OBJC_MODULES __attribute__ ((section (\"__OBJC, __module_info\")))= {\n");
printf("\t%d, %d, \"\", &_OBJC_SYMBOLS\n", OBJC_ABI_VERSION, 16);
printf("};\n\n");
}
RewriteTest::~RewriteTest() {
// Get the top-level buffer that this corresponds to.
std::pair<const char*, const char*> MainBuf = SM->getBufferData(MainFileID);
const char *MainBufStart = MainBuf.first;
const char *MainBufEnd = MainBuf.second;
// Loop over the whole file, looking for tabs.
for (const char *BufPtr = MainBufStart; BufPtr != MainBufEnd; ++BufPtr) {
if (*BufPtr != '\t')
continue;
// Okay, we found a tab. This tab will turn into at least one character,
// but it depends on which 'virtual column' it is in. Compute that now.
unsigned VCol = 0;
while (BufPtr-
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