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llvm-mirror/lib/DebugInfo/DWARF/DWARFUnitIndex.cpp
Chandler Carruth eb66b33867 Sort the remaining #include lines in include/... and lib/....
I did this a long time ago with a janky python script, but now
clang-format has built-in support for this. I fed clang-format every
line with a #include and let it re-sort things according to the precise
LLVM rules for include ordering baked into clang-format these days.

I've reverted a number of files where the results of sorting includes
isn't healthy. Either places where we have legacy code relying on
particular include ordering (where possible, I'll fix these separately)
or where we have particular formatting around #include lines that
I didn't want to disturb in this patch.

This patch is *entirely* mechanical. If you get merge conflicts or
anything, just ignore the changes in this patch and run clang-format
over your #include lines in the files.

Sorry for any noise here, but it is important to keep these things
stable. I was seeing an increasing number of patches with irrelevant
re-ordering of #include lines because clang-format was used. This patch
at least isolates that churn, makes it easy to skip when resolving
conflicts, and gets us to a clean baseline (again).

llvm-svn: 304787
2017-06-06 11:49:48 +00:00

173 lines
5.2 KiB
C++

//===- DWARFUnitIndex.cpp -------------------------------------------------===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
#include "llvm/DebugInfo/DWARF/DWARFUnitIndex.h"
#include "llvm/ADT/STLExtras.h"
#include "llvm/ADT/StringRef.h"
#include "llvm/Support/ErrorHandling.h"
#include "llvm/Support/Format.h"
#include "llvm/Support/raw_ostream.h"
#include <cinttypes>
#include <cstdint>
using namespace llvm;
bool DWARFUnitIndex::Header::parse(DataExtractor IndexData,
uint32_t *OffsetPtr) {
if (!IndexData.isValidOffsetForDataOfSize(*OffsetPtr, 16))
return false;
Version = IndexData.getU32(OffsetPtr);
NumColumns = IndexData.getU32(OffsetPtr);
NumUnits = IndexData.getU32(OffsetPtr);
NumBuckets = IndexData.getU32(OffsetPtr);
return Version <= 2;
}
void DWARFUnitIndex::Header::dump(raw_ostream &OS) const {
OS << format("version = %u slots = %u\n\n", Version, NumBuckets);
}
bool DWARFUnitIndex::parse(DataExtractor IndexData) {
bool b = parseImpl(IndexData);
if (!b) {
// Make sure we don't try to dump anything
Header.NumBuckets = 0;
// Release any partially initialized data.
ColumnKinds.reset();
Rows.reset();
}
return b;
}
bool DWARFUnitIndex::parseImpl(DataExtractor IndexData) {
uint32_t Offset = 0;
if (!Header.parse(IndexData, &Offset))
return false;
if (!IndexData.isValidOffsetForDataOfSize(
Offset, Header.NumBuckets * (8 + 4) +
(2 * Header.NumUnits + 1) * 4 * Header.NumColumns))
return false;
Rows = llvm::make_unique<Entry[]>(Header.NumBuckets);
auto Contribs =
llvm::make_unique<Entry::SectionContribution *[]>(Header.NumUnits);
ColumnKinds = llvm::make_unique<DWARFSectionKind[]>(Header.NumColumns);
// Read Hash Table of Signatures
for (unsigned i = 0; i != Header.NumBuckets; ++i)
Rows[i].Signature = IndexData.getU64(&Offset);
// Read Parallel Table of Indexes
for (unsigned i = 0; i != Header.NumBuckets; ++i) {
auto Index = IndexData.getU32(&Offset);
if (!Index)
continue;
Rows[i].Index = this;
Rows[i].Contributions =
llvm::make_unique<Entry::SectionContribution[]>(Header.NumColumns);
Contribs[Index - 1] = Rows[i].Contributions.get();
}
// Read the Column Headers
for (unsigned i = 0; i != Header.NumColumns; ++i) {
ColumnKinds[i] = static_cast<DWARFSectionKind>(IndexData.getU32(&Offset));
if (ColumnKinds[i] == InfoColumnKind) {
if (InfoColumn != -1)
return false;
InfoColumn = i;
}
}
if (InfoColumn == -1)
return false;
// Read Table of Section Offsets
for (unsigned i = 0; i != Header.NumUnits; ++i) {
auto *Contrib = Contribs[i];
for (unsigned i = 0; i != Header.NumColumns; ++i)
Contrib[i].Offset = IndexData.getU32(&Offset);
}
// Read Table of Section Sizes
for (unsigned i = 0; i != Header.NumUnits; ++i) {
auto *Contrib = Contribs[i];
for (unsigned i = 0; i != Header.NumColumns; ++i)
Contrib[i].Length = IndexData.getU32(&Offset);
}
return true;
}
StringRef DWARFUnitIndex::getColumnHeader(DWARFSectionKind DS) {
#define CASE(DS) \
case DW_SECT_##DS: \
return #DS;
switch (DS) {
CASE(INFO);
CASE(TYPES);
CASE(ABBREV);
CASE(LINE);
CASE(LOC);
CASE(STR_OFFSETS);
CASE(MACINFO);
CASE(MACRO);
}
llvm_unreachable("unknown DWARFSectionKind");
}
void DWARFUnitIndex::dump(raw_ostream &OS) const {
if (!Header.NumBuckets)
return;
Header.dump(OS);
OS << "Index Signature ";
for (unsigned i = 0; i != Header.NumColumns; ++i)
OS << ' ' << left_justify(getColumnHeader(ColumnKinds[i]), 24);
OS << "\n----- ------------------";
for (unsigned i = 0; i != Header.NumColumns; ++i)
OS << " ------------------------";
OS << '\n';
for (unsigned i = 0; i != Header.NumBuckets; ++i) {
auto &Row = Rows[i];
if (auto *Contribs = Row.Contributions.get()) {
OS << format("%5u 0x%016" PRIx64 " ", i + 1, Row.Signature);
for (unsigned i = 0; i != Header.NumColumns; ++i) {
auto &Contrib = Contribs[i];
OS << format("[0x%08x, 0x%08x) ", Contrib.Offset,
Contrib.Offset + Contrib.Length);
}
OS << '\n';
}
}
}
const DWARFUnitIndex::Entry::SectionContribution *
DWARFUnitIndex::Entry::getOffset(DWARFSectionKind Sec) const {
uint32_t i = 0;
for (; i != Index->Header.NumColumns; ++i)
if (Index->ColumnKinds[i] == Sec)
return &Contributions[i];
return nullptr;
}
const DWARFUnitIndex::Entry::SectionContribution *
DWARFUnitIndex::Entry::getOffset() const {
return &Contributions[Index->InfoColumn];
}
const DWARFUnitIndex::Entry *
DWARFUnitIndex::getFromOffset(uint32_t Offset) const {
for (uint32_t i = 0; i != Header.NumBuckets; ++i)
if (const auto &Contribs = Rows[i].Contributions)
if (Contribs[InfoColumn].Offset == Offset)
return &Rows[i];
return nullptr;
}