Switch external cvtres.exe for llvm's own resource library.

In this patch, I flip the switch in DriverUtils from using the external
cvtres.exe tool to using the Windows Resource library in llvm.

I also fixed a bug where .rsrc sections were marked as discardable
memory and therefore were placed in the wrong order in the final PE.

Furthermore, I modified WindowsResource to write the coff directly to a
memory buffer instead of to file, also had it use the machine types
already declared in COFF.h instead creating my own enum.

Finally, I flipped the switch to allow all unit tests that had
previously run only on windows due to a winres dependency to run
cross-platform.

Reviewers: zturner, ruiu

Subscribers: llvm-commits, hiraditya

Differential Revision: https://reviews.llvm.org/D34265

git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@305592 91177308-0d34-0410-b5e6-96231b3b80d8
This commit is contained in:
Eric Beckmann 2017-06-16 21:13:24 +00:00
parent 512a2c924a
commit c501cd4b20
3 changed files with 47 additions and 46 deletions

View File

@ -45,14 +45,10 @@
namespace llvm {
class FileOutputBuffer;
namespace object {
class WindowsResource;
enum class Machine { UNKNOWN, ARM, X64, X86 };
class ResourceEntryRef {
public:
Error moveNext(bool &End);
@ -185,7 +181,8 @@ private:
std::vector<std::vector<UTF16>> StringTable;
};
Error writeWindowsResourceCOFF(StringRef OutputFile, Machine MachineType,
Error writeWindowsResourceCOFF(std::unique_ptr<MemoryBuffer> &OutputBuffer,
llvm::COFF::MachineTypes MachineType,
const WindowsResourceParser &Parser);
} // namespace object

View File

@ -21,6 +21,8 @@
#include <sstream>
#include <system_error>
using namespace llvm;
namespace llvm {
namespace object {
@ -305,7 +307,8 @@ uint32_t WindowsResourceParser::TreeNode::getTreeSize() const {
class WindowsResourceCOFFWriter {
public:
WindowsResourceCOFFWriter(StringRef OutputFile, Machine MachineType,
WindowsResourceCOFFWriter(std::unique_ptr<MemoryBuffer> &OutputBuffer,
COFF::MachineTypes MachineType,
const WindowsResourceParser &Parser, Error &E);
Error write();
@ -323,10 +326,10 @@ private:
void writeDirectoryTree();
void writeDirectoryStringTable();
void writeFirstSectionRelocations();
std::unique_ptr<FileOutputBuffer> Buffer;
uint8_t *BufferStart;
std::unique_ptr<MemoryBuffer> &OutputBuffer;
char *BufferStart;
uint64_t CurrentOffset = 0;
Machine MachineType;
COFF::MachineTypes MachineType;
const WindowsResourceParser::TreeNode &Resources;
const ArrayRef<std::vector<uint8_t>> Data;
uint64_t FileSize;
@ -343,20 +346,14 @@ private:
};
WindowsResourceCOFFWriter::WindowsResourceCOFFWriter(
StringRef OutputFile, Machine MachineType,
std::unique_ptr<MemoryBuffer> &OutputBuffer, COFF::MachineTypes MachineType,
const WindowsResourceParser &Parser, Error &E)
: MachineType(MachineType), Resources(Parser.getTree()),
Data(Parser.getData()), StringTable(Parser.getStringTable()) {
: OutputBuffer(OutputBuffer), MachineType(MachineType),
Resources(Parser.getTree()), Data(Parser.getData()),
StringTable(Parser.getStringTable()) {
performFileLayout();
ErrorOr<std::unique_ptr<FileOutputBuffer>> BufferOrErr =
FileOutputBuffer::create(OutputFile, FileSize);
if (!BufferOrErr) {
E = errorCodeToError(BufferOrErr.getError());
return;
}
Buffer = std::move(*BufferOrErr);
OutputBuffer = std::move(MemoryBuffer::getNewMemBuffer(FileSize));
}
void WindowsResourceCOFFWriter::performFileLayout() {
@ -421,7 +418,7 @@ static std::time_t getTime() {
}
Error WindowsResourceCOFFWriter::write() {
BufferStart = Buffer->getBufferStart();
BufferStart = const_cast<char *>(OutputBuffer->getBufferStart());
writeCOFFHeader();
writeFirstSectionHeader();
@ -431,10 +428,6 @@ Error WindowsResourceCOFFWriter::write() {
writeSymbolTable();
writeStringTable();
if (auto EC = Buffer->commit()) {
return errorCodeToError(EC);
}
return Error::success();
}
@ -443,13 +436,13 @@ void WindowsResourceCOFFWriter::writeCOFFHeader() {
auto *Header =
reinterpret_cast<llvm::object::coff_file_header *>(BufferStart);
switch (MachineType) {
case Machine::ARM:
case COFF::IMAGE_FILE_MACHINE_ARMNT:
Header->Machine = llvm::COFF::IMAGE_FILE_MACHINE_ARMNT;
break;
case Machine::X64:
case COFF::IMAGE_FILE_MACHINE_AMD64:
Header->Machine = llvm::COFF::IMAGE_FILE_MACHINE_AMD64;
break;
case Machine::X86:
case COFF::IMAGE_FILE_MACHINE_I386:
Header->Machine = llvm::COFF::IMAGE_FILE_MACHINE_I386;
break;
default:
@ -481,7 +474,8 @@ void WindowsResourceCOFFWriter::writeFirstSectionHeader() {
SectionOneHeader->Characteristics = llvm::COFF::IMAGE_SCN_ALIGN_1BYTES;
SectionOneHeader->Characteristics +=
llvm::COFF::IMAGE_SCN_CNT_INITIALIZED_DATA;
SectionOneHeader->Characteristics += llvm::COFF::IMAGE_SCN_MEM_DISCARDABLE;
SectionOneHeader->Characteristics +=
llvm::COFF::IMAGE_SCN_CNT_INITIALIZED_DATA;
SectionOneHeader->Characteristics += llvm::COFF::IMAGE_SCN_MEM_READ;
}
@ -715,13 +709,13 @@ void WindowsResourceCOFFWriter::writeFirstSectionRelocations() {
Reloc->VirtualAddress = RelocationAddresses[i];
Reloc->SymbolTableIndex = NextSymbolIndex++;
switch (MachineType) {
case Machine::ARM:
case COFF::IMAGE_FILE_MACHINE_ARMNT:
Reloc->Type = llvm::COFF::IMAGE_REL_ARM_ADDR32NB;
break;
case Machine::X64:
case COFF::IMAGE_FILE_MACHINE_AMD64:
Reloc->Type = llvm::COFF::IMAGE_REL_AMD64_ADDR32NB;
break;
case Machine::X86:
case COFF::IMAGE_FILE_MACHINE_I386:
Reloc->Type = llvm::COFF::IMAGE_REL_I386_DIR32NB;
break;
default:
@ -731,10 +725,11 @@ void WindowsResourceCOFFWriter::writeFirstSectionRelocations() {
}
}
Error writeWindowsResourceCOFF(StringRef OutputFile, Machine MachineType,
Error writeWindowsResourceCOFF(std::unique_ptr<MemoryBuffer> &OutputBuffer,
COFF::MachineTypes MachineType,
const WindowsResourceParser &Parser) {
Error E = Error::success();
WindowsResourceCOFFWriter Writer(OutputFile, MachineType, Parser, E);
WindowsResourceCOFFWriter Writer(OutputBuffer, MachineType, Parser, E);
if (E)
return E;
return Writer.write();

View File

@ -114,21 +114,21 @@ int main(int argc_, const char *argv_[]) {
bool Verbose = InputArgs.hasArg(OPT_VERBOSE);
Machine MachineType;
COFF::MachineTypes MachineType;
if (InputArgs.hasArg(OPT_MACHINE)) {
std::string MachineString = InputArgs.getLastArgValue(OPT_MACHINE).upper();
MachineType = StringSwitch<Machine>(MachineString)
.Case("ARM", Machine::ARM)
.Case("X64", Machine::X64)
.Case("X86", Machine::X86)
.Default(Machine::UNKNOWN);
if (MachineType == Machine::UNKNOWN)
MachineType = StringSwitch<COFF::MachineTypes>(MachineString)
.Case("ARM", COFF::IMAGE_FILE_MACHINE_ARMNT)
.Case("X64", COFF::IMAGE_FILE_MACHINE_AMD64)
.Case("X86", COFF::IMAGE_FILE_MACHINE_I386)
.Default(COFF::IMAGE_FILE_MACHINE_UNKNOWN);
if (MachineType == COFF::IMAGE_FILE_MACHINE_UNKNOWN)
reportError("Unsupported machine architecture");
} else {
if (Verbose)
outs() << "Machine architecture not specified; assumed X64.\n";
MachineType = Machine::X64;
MachineType = COFF::IMAGE_FILE_MACHINE_AMD64;
}
std::vector<std::string> InputFiles = InputArgs.getAllArgValues(OPT_INPUT);
@ -149,10 +149,10 @@ int main(int argc_, const char *argv_[]) {
if (Verbose) {
outs() << "Machine: ";
switch (MachineType) {
case Machine::ARM:
case COFF::IMAGE_FILE_MACHINE_ARMNT:
outs() << "ARM\n";
break;
case Machine::X86:
case COFF::IMAGE_FILE_MACHINE_I386:
outs() << "X86\n";
break;
default:
@ -196,8 +196,17 @@ int main(int argc_, const char *argv_[]) {
Parser.printTree(errs());
}
error(
llvm::object::writeWindowsResourceCOFF(OutputFile, MachineType, Parser));
std::unique_ptr<MemoryBuffer> OutputBuffer;
error(llvm::object::writeWindowsResourceCOFF(OutputBuffer, MachineType,
Parser));
auto FileOrErr =
FileOutputBuffer::create(OutputFile, OutputBuffer->getBufferSize());
if (!FileOrErr)
reportError(OutputFile, FileOrErr.getError());
std::unique_ptr<FileOutputBuffer> FileBuffer = std::move(*FileOrErr);
std::copy(OutputBuffer->getBufferStart(), OutputBuffer->getBufferEnd(),
FileBuffer->getBufferStart());
error(FileBuffer->commit());
if (Verbose) {
Expected<object::OwningBinary<object::Binary>> BinaryOrErr =