}
std::vector<FrameData> SortedFrames(Frames.begin(), Frames.end());
- std::sort(SortedFrames.begin(), SortedFrames.end(),
- [](const FrameData &LHS, const FrameData &RHS) {
- return LHS.RvaStart < RHS.RvaStart;
- });
+ llvm::sort(SortedFrames, [](const FrameData &LHS, const FrameData &RHS) {
+ return LHS.RvaStart < RHS.RvaStart;
+ });
if (auto EC = Writer.writeArray(makeArrayRef(SortedFrames)))
return EC;
return Error::success();
};
for (auto &KV : Layout) {
auto &SL = KV.second;
- std::sort(SL.ContentSections.begin(), SL.ContentSections.end(),
- CompareByOrdinal);
- std::sort(SL.ZeroFillSections.begin(), SL.ZeroFillSections.end(),
- CompareByOrdinal);
+ llvm::sort(SL.ContentSections, CompareByOrdinal);
+ llvm::sort(SL.ZeroFillSections, CompareByOrdinal);
}
}
OrderedLayoutHeads.push_back(DA);
// Now sort the list of layout heads by address.
- std::sort(OrderedLayoutHeads.begin(), OrderedLayoutHeads.end(),
- [](const DefinedAtom *LHS, const DefinedAtom *RHS) {
- return LHS->getAddress() < RHS->getAddress();
- });
+ llvm::sort(OrderedLayoutHeads,
+ [](const DefinedAtom *LHS, const DefinedAtom *RHS) {
+ return LHS->getAddress() < RHS->getAddress();
+ });
// Now populate the SI.Atoms field by appending each of the chains.
for (auto *DA : OrderedLayoutHeads) {
#include "llvm/IR/Function.h"
#include "llvm/Support/ErrorHandling.h"
#include "llvm/Target/TargetOptions.h"
-#include <algorithm> // std::sort
using namespace llvm;