Loading...
--- dyld/dyld-195.6/launch-cache/update_dyld_shared_cache.cpp
+++ dyld/dyld-239.4/launch-cache/update_dyld_shared_cache.cpp
@@ -31,7 +31,9 @@
#include <stdarg.h>
#include <stdio.h>
#include <stdlib.h>
+#include <math.h>
#include <fcntl.h>
+#include <dlfcn.h>
#include <signal.h>
#include <errno.h>
#include <sys/uio.h>
@@ -44,25 +46,29 @@
#include <servers/bootstrap.h>
#include <mach-o/loader.h>
#include <mach-o/fat.h>
+#include <CoreFoundation/CoreFoundation.h>
+#include <Security/Security.h>
+#include <Security/SecCodeSigner.h>
+#include <CommonCrypto/CommonDigest.h>
#include "dyld_cache_format.h"
#include <vector>
#include <set>
#include <map>
-#include <ext/hash_map>
+#include <unordered_map>
#include "Architectures.hpp"
#include "MachOLayout.hpp"
#include "MachORebaser.hpp"
#include "MachOBinder.hpp"
#include "CacheFileAbstraction.hpp"
+#include "dyld_cache_config.h"
#define SELOPT_WRITE
-#include <objc/objc-selopt.h>
-
-#define FIRST_DYLIB_TEXT_OFFSET 0x5000
-#define FIRST_DYLIB_DATA_OFFSET 0x1000
+#include "objc-shared-cache.h"
+
+#define FIRST_DYLIB_TEXT_OFFSET 0x8000
#ifndef LC_FUNCTION_STARTS
#define LC_FUNCTION_STARTS 0x26
@@ -95,21 +101,34 @@
}
-static uint64_t pageAlign(uint64_t addr) { return ( (addr + 4095) & (-4096) ); }
+class CStringHash {
+public:
+ size_t operator()(const char* __s) const {
+ size_t __h = 0;
+ for ( ; *__s; ++__s)
+ __h = 5 * __h + *__s;
+ return __h;
+ };
+};
+class CStringEquals
+{
+public:
+ bool operator()(const char* left, const char* right) const { return (strcmp(left, right) == 0); }
+};
+
+
class ArchGraph
{
public:
- struct CStringEquals {
- bool operator()(const char* left, const char* right) const { return (strcmp(left, right) == 0); }
- };
- typedef __gnu_cxx::hash_map<const char*, const char*, __gnu_cxx::hash<const char*>, CStringEquals> StringToString;
+ typedef std::unordered_map<const char*, const char*, CStringHash, CStringEquals> StringToString;
static void addArchPair(ArchPair ap);
static void addRoot(const char* vpath, const std::set<ArchPair>& archs);
static void findSharedDylibs(ArchPair ap);
static ArchGraph* graphForArchPair(ArchPair ap) { return fgPerArchGraph[ap]; }
- static void setFileSystemRoot(const char* root, bool usesOverlay) { fgFileSystemRoot = root; fgUsesOverlay = usesOverlay; }
+ static void setFileSystemRoot(const char* root) { fgFileSystemRoot = root; }
+ static void setFileSystemOverlay(const char* overlay) { fgFileSystemOverlay = overlay; }
static const char* archName(ArchPair ap);
ArchPair getArchPair() { return fArchPair; }
@@ -139,7 +158,7 @@
std::set<DependencyNode*> fRootsDependentOnThis;
};
- typedef __gnu_cxx::hash_map<const char*, class DependencyNode*, __gnu_cxx::hash<const char*>, CStringEquals> PathToNode;
+ typedef std::unordered_map<const char*, class DependencyNode*, CStringHash, CStringEquals> PathToNode;
ArchGraph(ArchPair ap) : fArchPair(ap) {}
@@ -151,7 +170,7 @@
static std::map<ArchPair, ArchGraph*> fgPerArchGraph;
static const char* fgFileSystemRoot;
- static bool fgUsesOverlay;
+ static const char* fgFileSystemOverlay;
ArchPair fArchPair;
std::set<DependencyNode*> fRoots;
@@ -161,7 +180,7 @@
};
std::map<ArchPair, ArchGraph*> ArchGraph::fgPerArchGraph;
const char* ArchGraph::fgFileSystemRoot = "";
-bool ArchGraph::fgUsesOverlay = false;
+const char* ArchGraph::fgFileSystemOverlay = "";
void ArchGraph::addArchPair(ArchPair ap)
{
@@ -171,28 +190,30 @@
void ArchGraph::addRoot(const char* vpath, const std::set<ArchPair>& onlyArchs)
{
- char completePath[strlen(fgFileSystemRoot)+strlen(vpath)+2];
+ //fprintf(stderr, "addRoot(%s)\n", vpath);
+ char completePath[MAXPATHLEN];
const char* path = NULL;
- if ( strlen(fgFileSystemRoot) == 0 ) {
- path = vpath;
- }
- else {
+ // check -overlay path first
+ if ( fgFileSystemOverlay[0] != '\0' ) {
+ strcpy(completePath, fgFileSystemOverlay);
+ strcat(completePath, vpath); // assumes vpath starts with '/'
+ struct stat stat_buf;
+ if ( stat(completePath, &stat_buf) == 0 )
+ path = completePath;
+ }
+ // if not found in overlay, check for -root
+ if ( (path == NULL) && (fgFileSystemRoot[0] != '\0') ) {
strcpy(completePath, fgFileSystemRoot);
strcat(completePath, vpath); // assumes vpath starts with '/'
- if ( fgUsesOverlay ) {
- // using -overlay means if /overlay/usr/lib exists use it, otherwise use original path
- struct stat stat_buf;
- if ( stat(completePath, &stat_buf) == 0 )
- path = completePath;
- else
- path = vpath;
- }
- else {
- // using -root means alway redirect /usr/lib to /rootpath/usr/lib
+ struct stat stat_buf;
+ if ( stat(completePath, &stat_buf) == 0 )
path = completePath;
- }
- }
+ }
+ if ( path == NULL )
+ path = vpath;
+
try {
+ //fprintf(stderr, " UniversalMachOLayout::find(%s)\n", path);
const UniversalMachOLayout& uni = UniversalMachOLayout::find(path, &onlyArchs);
for(std::set<ArchPair>::iterator ait = onlyArchs.begin(); ait != onlyArchs.end(); ++ait) {
try {
@@ -230,53 +251,58 @@
}
// a virtual path does not have the fgFileSystemRoot prefix
-// a virtual path does not have the fgFileSystemRoot prefix
ArchGraph::DependencyNode* ArchGraph::getNodeForVirtualPath(const char* vpath)
{
- if ( fgFileSystemRoot == NULL ) {
- return this->getNode(vpath);
- }
- else {
- char completePath[strlen(fgFileSystemRoot)+strlen(vpath)+2];
+ //fprintf(stderr, "getNodeForVirtualPath(%s)\n", vpath);
+ char completePath[MAXPATHLEN];
+ if ( fgFileSystemOverlay[0] != '\0' ) {
+ // using -overlay means if /overlay/path/dylib exists use it, otherwise use /path/dylib
+ strcpy(completePath, fgFileSystemOverlay);
+ strcat(completePath, vpath); // assumes vpath starts with '/'
+ struct stat stat_buf;
+ if ( stat(completePath, &stat_buf) == 0 )
+ return this->getNode(completePath);
+ else {
+ // <rdar://problem/9279770> support when install name is a symlink
+ const char* pathToSymlink = vpath;
+ if ( fgFileSystemRoot[0] != '\0' ) {
+ strcpy(completePath, fgFileSystemRoot);
+ strcat(completePath, vpath);
+ pathToSymlink = completePath;
+ }
+ if ( (lstat(pathToSymlink, &stat_buf) == 0) && S_ISLNK(stat_buf.st_mode) ) {
+ // requested path did not exist in /overlay, but leaf of path is a symlink in /
+ char pathInSymLink[MAXPATHLEN];
+ size_t res = readlink(pathToSymlink, pathInSymLink, sizeof(pathInSymLink));
+ if ( res != -1 ) {
+ pathInSymLink[res] = '\0';
+ if ( pathInSymLink[0] != '/' ) {
+ char symFullPath[MAXPATHLEN];
+ strcpy(symFullPath, vpath);
+ char* lastSlash = strrchr(symFullPath, '/');
+ if ( lastSlash != NULL ) {
+ strcpy(lastSlash+1, pathInSymLink);
+ // (re)try looking for what symlink points to, but in /overlay
+ return this->getNodeForVirtualPath(symFullPath);
+ }
+ }
+ }
+ }
+ }
+ }
+ if ( fgFileSystemRoot[0] != '\0' ) {
+ // using -root means always use /rootpath/usr/lib
strcpy(completePath, fgFileSystemRoot);
strcat(completePath, vpath); // assumes vpath starts with '/'
- if ( fgUsesOverlay ) {
- // using -overlay means if /overlay/path/dylib exists use it, otherwise use /path/dylib
- struct stat stat_buf;
- if ( stat(completePath, &stat_buf) == 0 )
- return this->getNode(completePath);
- else {
- // <rdar://problem/9279770> support when install name is a symlink
- if ( (lstat(vpath, &stat_buf) == 0) && S_ISLNK(stat_buf.st_mode) ) {
- // requested path did not exist in /overlay, but leaf of path is a symlink in /
- char pathInSymLink[MAXPATHLEN];
- size_t res = readlink(vpath, pathInSymLink, sizeof(pathInSymLink));
- if ( res != -1 ) {
- pathInSymLink[res] = '\0';
- if ( pathInSymLink[0] != '/' ) {
- char symFullPath[MAXPATHLEN];
- strcpy(symFullPath, vpath);
- char* lastSlash = strrchr(symFullPath, '/');
- if ( lastSlash != NULL ) {
- strcpy(lastSlash+1, pathInSymLink);
- // (re)try looking for what symlink points to, but in /overlay
- return this->getNodeForVirtualPath(symFullPath);
- }
- }
- }
- }
- return this->getNode(vpath);
- }
- }
- else {
- // using -root means always use /rootpath/usr/lib
- return this->getNode(completePath);
- }
- }
+ return this->getNode(completePath);
+ }
+ // not found in -overlay or -root not used
+ return this->getNode(vpath);
}
ArchGraph::DependencyNode* ArchGraph::getNode(const char* path)
{
+ //fprintf(stderr, "getNode(%s)\n", path);
// look up supplied path to see if node already exists
PathToNode::iterator pos = fNodes.find(path);
if ( pos != fNodes.end() )
@@ -317,19 +343,36 @@
//fprintf(stderr, "adding %s node alias %s for %s\n", archName(fArchPair), node->getLayout()->getID().name, realPath);
pos = fNodes.find(node->getLayout()->getID().name);
if ( pos != fNodes.end() ) {
- // <rdar://problem/8305479> warn if two dylib in cache have same install_name
- char* msg;
- asprintf(&msg, "update_dyld_shared_cache: warning, found two dylibs with same install path: %s\n\t%s\n\t%s\n",
- node->getLayout()->getID().name, pos->second->getPath(), node->getPath());
- fprintf(stderr, "%s", msg);
- warnings.push_back(msg);
+ // get uuids of two dylibs to see if this is accidental copy of a dylib or two differnent dylibs with same -install_name
+ uuid_t uuid1;
+ uuid_t uuid2;
+ node->getLayout()->uuid(uuid1);
+ pos->second->getLayout()->uuid(uuid2);
+ if ( memcmp(&uuid1, &uuid2, 16) == 0 ) {
+ // <rdar://problem/8305479> warn if two dylib in cache have same install_name
+ char* msg;
+ asprintf(&msg, "update_dyld_shared_cache: warning, found two copies of the same dylib with same install path: %s\n\t%s\n\t%s\n",
+ node->getLayout()->getID().name, pos->second->getPath(), node->getPath());
+ fprintf(stderr, "%s", msg);
+ warnings.push_back(msg);
+ }
+ else {
+ // <rdar://problem/12763450> update_dyld_shared_cache should fail if two images have same install name
+ fprintf(stderr, "update_dyld_shared_cache: found two different dylibs with same install path: %s\n\t%s\n\t%s\n",
+ node->getLayout()->getID().name, pos->second->getPath(), node->getPath());
+ exit(1);
+ }
}
else
fNodes[node->getLayout()->getID().name] = node;
// update fAliasesMap with symlinks found
const char* aliasPath = realPath;
- if ( (fgFileSystemRoot != NULL) && (strncmp(realPath, fgFileSystemRoot, strlen(fgFileSystemRoot)) == 0) ) {
+ if ( (fgFileSystemRoot != NULL) && (fgFileSystemRoot[0] != '\0') && (strncmp(realPath, fgFileSystemRoot, strlen(fgFileSystemRoot)) == 0) ) {
aliasPath = &realPath[strlen(fgFileSystemRoot)];
+ }
+ // <rdar://problem/11192810> Too many aliases in -overlay mode
+ if ( (fgFileSystemOverlay != NULL) && (fgFileSystemOverlay[0] != '\0') && (strncmp(realPath, fgFileSystemOverlay, strlen(fgFileSystemOverlay)) == 0) ) {
+ aliasPath = &realPath[strlen(fgFileSystemOverlay)];
}
if ( fAliasesMap.find(aliasPath) == fAliasesMap.end() ) {
if ( strcmp(aliasPath, node->getLayout()->getID().name) != 0 ) {
@@ -402,7 +445,7 @@
fDependsOn.insert(fGraph->getNodeForVirtualPath(dependentPath));
}
catch (const char* msg) {
- if ( it->weakImport && ! fLayout->hasSplitSegInfo() ) {
+ if ( it->weakImport || ! fLayout->hasSplitSegInfo() ) {
// ok to ignore missing weak imported dylibs from things that are
// not going to be in the dyld shared cache
}
@@ -476,8 +519,6 @@
const char* ArchGraph::archName(ArchPair ap)
{
switch ( ap.arch ) {
- case CPU_TYPE_POWERPC:
- return "ppc";
case CPU_TYPE_I386:
return "i386";
case CPU_TYPE_X86_64:
@@ -494,6 +535,12 @@
return "arm-xscale";
case CPU_SUBTYPE_ARM_V7:
return "armv7";
+ case CPU_SUBTYPE_ARM_V7F:
+ return "armv7f";
+ case CPU_SUBTYPE_ARM_V7K:
+ return "armv7k";
+ case CPU_SUBTYPE_ARM_V7S:
+ return "armv7s";
default:
return "arm";
}
@@ -554,6 +601,9 @@
if ( nodes.find(realPath) != nodes.end() )
continue;
}
+ // handle weak imported dylibs not found
+ if ( dit->weakImport )
+ continue;
shareableMap[layout] = false;
char* msg;
asprintf(&msg, "can't put %s in shared cache because it depends on %s which can't be found", layout->getID().name, dit->name);
@@ -578,13 +628,90 @@
}
+
+class StringPool
+{
+public:
+ StringPool();
+ const char* getBuffer();
+ uint32_t size();
+ uint32_t add(const char* str);
+ uint32_t addUnique(const char* str);
+ const char* stringAtIndex(uint32_t) const;
+private:
+ typedef std::unordered_map<const char*, uint32_t, CStringHash, CStringEquals> StringToOffset;
+
+ char* fBuffer;
+ uint32_t fBufferAllocated;
+ uint32_t fBufferUsed;
+ StringToOffset fUniqueStrings;
+};
+
+
+StringPool::StringPool()
+ : fBufferUsed(0), fBufferAllocated(48*1024*1024)
+{
+ fBuffer = (char*)malloc(fBufferAllocated);
+}
+
+uint32_t StringPool::add(const char* str)
+{
+ uint32_t len = strlen(str);
+ if ( (fBufferUsed + len + 1) > fBufferAllocated ) {
+ // grow buffer
+ throw "string buffer exhausted";
+ }
+ strcpy(&fBuffer[fBufferUsed], str);
+ uint32_t result = fBufferUsed;
+ fUniqueStrings[&fBuffer[fBufferUsed]] = result;
+ fBufferUsed += len+1;
+ return result;
+}
+
+uint32_t StringPool::addUnique(const char* str)
+{
+ StringToOffset::iterator pos = fUniqueStrings.find(str);
+ if ( pos != fUniqueStrings.end() )
+ return pos->second;
+ else {
+ //fprintf(stderr, "StringPool::addUnique() new string: %s\n", str);
+ return this->add(str);
+ }
+}
+
+uint32_t StringPool::size()
+{
+ return fBufferUsed;
+}
+
+const char* StringPool::getBuffer()
+{
+ return fBuffer;
+}
+
+const char* StringPool::stringAtIndex(uint32_t index) const
+{
+ return &fBuffer[index];
+}
+
+
+
+struct LocalSymbolInfo
+{
+ uint32_t dylibOffset;
+ uint32_t nlistStartIndex;
+ uint32_t nlistCount;
+};
+
+
template <typename A>
class SharedCache
{
public:
- SharedCache(ArchGraph* graph, const char* rootPath, const char* cacheDir, bool alphaSort, bool verify, bool optimize, bool overlay, uint64_t dyldBaseAddress);
- bool update(bool usesOverlay, bool force, bool optimize, bool deleteExistingFirst, int archIndex,
- int archCount, bool keepSignatures);
+ SharedCache(ArchGraph* graph, const char* rootPath, const char* overlayPath, const char* cacheDir, bool explicitCacheDir,
+ bool alphaSort, bool verify, bool optimize, uint64_t dyldBaseAddress);
+ bool update(bool force, bool optimize, bool deleteExistingFirst, int archIndex,
+ int archCount, bool keepSignatures, bool dontMapLocalSymbols);
static const char* cacheFileSuffix(bool optimized, const char* archName);
// vm address = address AS WRITTEN into the cache
@@ -595,6 +722,8 @@
uint64_t cacheFileOffsetForVMAddress(uint64_t addr) const;
uint64_t VMAddressForCacheFileOffset(uint64_t addr) const;
+ static const char* archName();
+
private:
typedef typename A::P P;
typedef typename A::P::E E;
@@ -602,19 +731,19 @@
bool notUpToDate(const char* path, unsigned int aliasCount);
bool notUpToDate(const void* cache, unsigned int aliasCount);
- uint8_t* optimizeLINKEDIT(bool keepSignatures);
+ uint8_t* optimizeLINKEDIT(bool keepSignatures, bool dontMapLocalSymbols);
void optimizeObjC(std::vector<void*>& pointersInData);
static void getSharedCacheBasAddresses(cpu_type_t arch, uint64_t* baseReadOnly, uint64_t* baseWritable);
static cpu_type_t arch();
- static const char* archName();
- static uint64_t sharedRegionReadOnlyStartAddress();
- static uint64_t sharedRegionWritableStartAddress();
- static uint64_t sharedRegionReadOnlySize();
- static uint64_t sharedRegionWritableSize();
+ static uint64_t sharedRegionStartAddress();
+ static uint64_t sharedRegionSize();
+ static uint64_t sharedRegionStartWritableAddress(uint64_t);
+ static uint64_t sharedRegionStartReadOnlyAddress(uint64_t, uint64_t);
static uint64_t getWritableSegmentNewAddress(uint64_t proposedNewAddress, uint64_t originalAddress, uint64_t executableSlide);
static bool addCacheSlideInfo();
+ static uint64_t pageAlign(uint64_t addr);
void assignNewBaseAddresses(bool verify);
struct LayoutInfo {
@@ -626,6 +755,12 @@
struct ByNameSorter {
bool operator()(const LayoutInfo& left, const LayoutInfo& right)
{ return (strcmp(left.layout->getID().name, right.layout->getID().name) < 0); }
+ };
+
+ struct ByAddressSorter {
+ bool operator()(const LayoutInfo& left, const LayoutInfo& right) {
+ return (left.layout->getSegments()[0].newAddress() < right.layout->getSegments()[0].newAddress());
+ }
};
struct ByCStringSectionSizeSorter {
@@ -670,6 +805,9 @@
std::vector<LayoutInfo> fDylibs;
std::vector<LayoutInfo> fDylibAliases;
std::vector<shared_file_mapping_np> fMappings;
+ std::vector<macho_nlist<P> > fUnmappedLocalSymbols;
+ StringPool fUnmappedLocalsStringPool;
+ std::vector<LocalSymbolInfo> fLocalSymbolInfos;
uint32_t fHeaderSize;
uint8_t* fInMemoryCache;
uint64_t fDyldBaseAddress;
@@ -690,7 +828,10 @@
uint32_t fSizeOfOldStringPoolInCombinedLinkedit;
uint32_t fOffsetOfFunctionStartsInCombinedLinkedit;
uint32_t fSizeOfFunctionStartsInCombinedLinkedit;
+ uint32_t fOffsetOfDataInCodeInCombinedLinkedit;
+ uint32_t fSizeOfDataInCodeInCombinedLinkedit;
uint32_t fLinkEditsTotalOptimizedSize;
+ uint32_t fUnmappedLocalSymbolsSize;
};
@@ -783,44 +924,43 @@
-template <> cpu_type_t SharedCache<ppc>::arch() { return CPU_TYPE_POWERPC; }
template <> cpu_type_t SharedCache<x86>::arch() { return CPU_TYPE_I386; }
template <> cpu_type_t SharedCache<x86_64>::arch() { return CPU_TYPE_X86_64; }
template <> cpu_type_t SharedCache<arm>::arch() { return CPU_TYPE_ARM; }
-template <> uint64_t SharedCache<ppc>::sharedRegionReadOnlyStartAddress() { return 0x90000000; }
-template <> uint64_t SharedCache<x86>::sharedRegionReadOnlyStartAddress() { return 0x90000000; }
-template <> uint64_t SharedCache<x86_64>::sharedRegionReadOnlyStartAddress() { return 0x7FFF80000000LL; }
-template <> uint64_t SharedCache<arm>::sharedRegionReadOnlyStartAddress() { return 0x30000000; }
-
-template <> uint64_t SharedCache<ppc>::sharedRegionWritableStartAddress() { return 0xA0000000; }
-template <> uint64_t SharedCache<x86>::sharedRegionWritableStartAddress() { return 0xAC000000; }
-template <> uint64_t SharedCache<x86_64>::sharedRegionWritableStartAddress() { return 0x7FFF70000000LL; }
-template <> uint64_t SharedCache<arm>::sharedRegionWritableStartAddress() { return 0x3E000000; }
-
-template <> uint64_t SharedCache<ppc>::sharedRegionReadOnlySize() { return 0x10000000; }
-template <> uint64_t SharedCache<x86>::sharedRegionReadOnlySize() { return 0x1C000000; }
-template <> uint64_t SharedCache<x86_64>::sharedRegionReadOnlySize() { return 0x40000000; }
-template <> uint64_t SharedCache<arm>::sharedRegionReadOnlySize() { return 0x0E000000; }
-
-template <> uint64_t SharedCache<ppc>::sharedRegionWritableSize() { return 0x10000000; }
-template <> uint64_t SharedCache<x86>::sharedRegionWritableSize() { return 0x04000000; }
-template <> uint64_t SharedCache<x86_64>::sharedRegionWritableSize() { return 0x10000000; }
-template <> uint64_t SharedCache<arm>::sharedRegionWritableSize() { return 0x02000000; }
-
-
-template <> const char* SharedCache<ppc>::archName() { return "ppc"; }
+template <> uint64_t SharedCache<x86>::sharedRegionStartAddress() { return 0x90000000; }
+template <> uint64_t SharedCache<x86_64>::sharedRegionStartAddress() { return 0x7FFF80000000LL; }
+template <> uint64_t SharedCache<arm>::sharedRegionStartAddress() { return ARM_SHARED_REGION_START; }
+
+template <> uint64_t SharedCache<x86>::sharedRegionSize() { return 0x20000000; }
+template <> uint64_t SharedCache<x86_64>::sharedRegionSize() { return 0x40000000; }
+template <> uint64_t SharedCache<arm>::sharedRegionSize() { return ARM_SHARED_REGION_SIZE; }
+
+template <> uint64_t SharedCache<x86>::sharedRegionStartWritableAddress(uint64_t exEnd) { return exEnd + 0x04000000; }
+template <> uint64_t SharedCache<x86_64>::sharedRegionStartWritableAddress(uint64_t exEnd) { return 0x7FFF70000000LL; }
+template <> uint64_t SharedCache<arm>::sharedRegionStartWritableAddress(uint64_t exEnd) { return (exEnd + 16383) & (-16384); }
+
+template <> uint64_t SharedCache<x86>::sharedRegionStartReadOnlyAddress(uint64_t wrEnd, uint64_t exEnd) { return wrEnd + 0x04000000; }
+template <> uint64_t SharedCache<x86_64>::sharedRegionStartReadOnlyAddress(uint64_t wrEnd, uint64_t exEnd){ return exEnd; }
+template <> uint64_t SharedCache<arm>::sharedRegionStartReadOnlyAddress(uint64_t wrEnd, uint64_t exEnd) { return (wrEnd + 16383) & (-16384); }
+
+
template <> const char* SharedCache<x86>::archName() { return "i386"; }
template <> const char* SharedCache<x86_64>::archName() { return "x86_64"; }
template <> const char* SharedCache<arm>::archName() { return "arm"; }
-template <> const char* SharedCache<ppc>::cacheFileSuffix(bool optimized, const char*) { return optimized ? "ppc" : "rosetta"; }
template <> const char* SharedCache<x86>::cacheFileSuffix(bool, const char* archName) { return archName; }
template <> const char* SharedCache<x86_64>::cacheFileSuffix(bool, const char* archName){ return archName; }
template <> const char* SharedCache<arm>::cacheFileSuffix(bool, const char* archName) { return archName; }
+
+template <> uint64_t SharedCache<x86>::pageAlign(uint64_t addr) { return ( (addr + 4095) & (-4096) ); }
+template <> uint64_t SharedCache<x86_64>::pageAlign(uint64_t addr) { return ( (addr + 4095) & (-4096) ); }
+template <> uint64_t SharedCache<arm>::pageAlign(uint64_t addr) { return ( (addr + 4095) & (-4096) ); }
+
+
template <typename A>
-SharedCache<A>::SharedCache(ArchGraph* graph, const char* rootPath, const char* cacheDir, bool alphaSort, bool verify, bool optimize, bool overlay, uint64_t dyldBaseAddress)
+SharedCache<A>::SharedCache(ArchGraph* graph, const char* rootPath, const char* overlayPath, const char* cacheDir, bool explicitCacheDir, bool alphaSort, bool verify, bool optimize, uint64_t dyldBaseAddress)
: fArchGraph(graph), fVerify(verify), fExistingIsNotUpToDate(true),
fCacheFileInFinalLocation(rootPath[0] == '\0'), fCacheFilePath(NULL),
fExistingCacheForVerification(NULL), fDyldBaseAddress(dyldBaseAddress),
@@ -830,7 +970,9 @@
fOffsetOfOldExternalRelocationsInCombinedLinkedit(0), fSizeOfOldExternalRelocationsInCombinedLinkedit(0),
fOffsetOfOldIndirectSymbolsInCombinedLinkedit(0), fSizeOfOldIndirectSymbolsInCombinedLinkedit(0),
fOffsetOfOldStringPoolInCombinedLinkedit(0), fSizeOfOldStringPoolInCombinedLinkedit(0),
- fOffsetOfFunctionStartsInCombinedLinkedit(0), fSizeOfFunctionStartsInCombinedLinkedit(0)
+ fOffsetOfFunctionStartsInCombinedLinkedit(0), fSizeOfFunctionStartsInCombinedLinkedit(0),
+ fOffsetOfDataInCodeInCombinedLinkedit(0), fSizeOfDataInCodeInCombinedLinkedit(0),
+ fUnmappedLocalSymbolsSize(0)
{
if ( fArchGraph->getArchPair().arch != arch() )
throwf("SharedCache object is wrong architecture: 0x%08X vs 0x%08X", fArchGraph->getArchPair().arch, arch());
@@ -857,29 +999,50 @@
}
// create path to cache file
- char cachePathNonOverlay[1024];
- strcpy(cachePathNonOverlay, cacheDir);
- if ( cachePathNonOverlay[strlen(cachePathNonOverlay)-1] != '/' )
- strcat(cachePathNonOverlay, "/");
- strcat(cachePathNonOverlay, DYLD_SHARED_CACHE_BASE_NAME);
- strcat(cachePathNonOverlay, cacheFileSuffix(optimize, fArchGraph->archName()));
- char cachePath[1024];
- strcpy(cachePath, rootPath);
- strcat(cachePath, "/");
- strcat(cachePath, cachePathNonOverlay);
- if ( !overlay && (rootPath[0] != '\0') )
- fCacheFilePath = strdup(cachePathNonOverlay);
- else
+ char cachePathCanonical[MAXPATHLEN];
+ strcpy(cachePathCanonical, cacheDir);
+ if ( cachePathCanonical[strlen(cachePathCanonical)-1] != '/' )
+ strcat(cachePathCanonical, "/");
+ strcat(cachePathCanonical, DYLD_SHARED_CACHE_BASE_NAME);
+ strcat(cachePathCanonical, cacheFileSuffix(optimize, fArchGraph->archName()));
+ char cachePath[MAXPATHLEN];
+ if ( explicitCacheDir ) {
+ fCacheFilePath = strdup(cachePathCanonical);
+ }
+ else if ( overlayPath[0] != '\0' ) {
+ strcpy(cachePath, overlayPath);
+ strcat(cachePath, "/");
+ strcat(cachePath, cachePathCanonical);
fCacheFilePath = strdup(cachePath);
- if ( overlay ) {
+ }
+ else if ( rootPath[0] != '\0' ) {
+ strcpy(cachePath, rootPath);
+ strcat(cachePath, "/");
+ strcat(cachePath, cachePathCanonical);
+ fCacheFilePath = strdup(cachePath);
+ }
+ else {
+ fCacheFilePath = strdup(cachePathCanonical);
+ }
+ if ( overlayPath[0] != '\0' ) {
// in overlay mode if there already is a cache file in the overlay
- // check if it is up to date. If there is no file, check if
- // the one in the boot volume is up to date.
+ // check if it is up to date.
struct stat stat_buf;
- if ( stat(fCacheFilePath, &stat_buf) == 0 )
+ if ( stat(fCacheFilePath, &stat_buf) == 0 ) {
fExistingIsNotUpToDate = this->notUpToDate(fCacheFilePath, aliasCount);
- else
- fExistingIsNotUpToDate = this->notUpToDate(cachePathNonOverlay, aliasCount);
+ }
+ else if ( rootPath[0] != '\0' ) {
+ // using -root and -overlay, but no cache file in overlay, check one in -root
+ char cachePathRoot[MAXPATHLEN];
+ strcpy(cachePathRoot, rootPath);
+ strcat(cachePathRoot, "/");
+ strcat(cachePathRoot, cachePathCanonical);
+ fExistingIsNotUpToDate = this->notUpToDate(cachePathRoot, aliasCount);
+ }
+ else {
+ // uisng -overlay, but no cache file in overlay, check one in boot volume
+ fExistingIsNotUpToDate = this->notUpToDate(cachePathCanonical, aliasCount);
+ }
}
else {
fExistingIsNotUpToDate = this->notUpToDate(fCacheFilePath, aliasCount);
@@ -908,6 +1071,7 @@
fHeaderSize = sizeof(dyld_cache_header)
+ fMappings.size()*sizeof(shared_file_mapping_np)
+ (fDylibs.size()+aliasCount)*sizeof(dyld_cache_image_info);
+ const uint64_t baseHeaderSize = fHeaderSize;
//fprintf(stderr, "aliasCount=%d, fHeaderSize=0x%08X\n", aliasCount, fHeaderSize);
// build list of aliases and compute where each ones path string will go
for(typename std::vector<struct LayoutInfo>::const_iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
@@ -931,21 +1095,21 @@
// if no existing cache, say so
if ( fExistingCacheForVerification == NULL ) {
throwf("update_dyld_shared_cache[%u] for arch=%s, could not verify because cache file does not exist in /var/db/dyld/\n",
- getpid(), archName());
+ getpid(), fArchGraph->archName());
}
const dyldCacheHeader<E>* header = (dyldCacheHeader<E>*)fExistingCacheForVerification;
const dyldCacheImageInfo<E>* cacheEntry = (dyldCacheImageInfo<E>*)(fExistingCacheForVerification + header->imagesOffset());
for(typename std::vector<LayoutInfo>::iterator it = fDylibs.begin(); it != fDylibs.end(); ++it, ++cacheEntry) {
if ( cacheEntry->address() != it->layout->getSegments()[0].newAddress() ) {
throwf("update_dyld_shared_cache[%u] warning: for arch=%s, could not verify cache because start address of %s is 0x%llX in cache, but should be 0x%llX\n",
- getpid(), archName(), it->layout->getID().name, cacheEntry->address(), it->layout->getSegments()[0].newAddress());
+ getpid(), fArchGraph->archName(), it->layout->getID().name, cacheEntry->address(), it->layout->getSegments()[0].newAddress());
}
}
}
if ( fHeaderSize > FIRST_DYLIB_TEXT_OFFSET )
- throwf("header size miscalculation 0x%08X", fHeaderSize);
+ throwf("header size overflow: allowed=0x%08X, base=0x%08llX, aliases=0x%08llX", FIRST_DYLIB_TEXT_OFFSET, baseHeaderSize, fHeaderSize-baseHeaderSize);
}
@@ -955,143 +1119,84 @@
return proposedNewAddress;
}
-template <>
-uint64_t SharedCache<ppc>::getWritableSegmentNewAddress(uint64_t proposedNewAddress, uint64_t originalAddress, uint64_t executableSlide)
-{
- // for ppc writable segments can only move in increments of 64K (so only hi16 instruction needs to be modified)
- return (((executableSlide & 0x000000000000F000ULL) - ((proposedNewAddress - originalAddress) & 0x000000000000F000ULL)) & 0x000000000000F000ULL) + proposedNewAddress;
-}
-
template <typename A>
void SharedCache<A>::assignNewBaseAddresses(bool verify)
{
- uint64_t sharedCacheStartAddress = sharedRegionReadOnlyStartAddress();
-#if 0
- if ( arch() == CPU_TYPE_X86_64 ) {
- if ( verify ) {
- if ( fExistingCacheForVerification == NULL ) {
- throwf("update_dyld_shared_cache[%u] for arch=%s, could not verify because cache file does not exist in /var/db/dyld/\n",
- getpid(), archName());
- }
- const dyldCacheHeader<E>* header = (dyldCacheHeader<E>*)fExistingCacheForVerification;
- const dyldCacheFileMapping<E>* mappings = (dyldCacheFileMapping<E>*)(fExistingCacheForVerification + header->mappingOffset());
- sharedCacheStartAddress = mappings[0].address();
- }
- else {
- // <rdar://problem/5274722> dyld shared cache can be more random
- uint64_t readOnlySize = 0;
- for(typename std::vector<LayoutInfo>::iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
- if ( ! it->layout->hasSplitSegInfo() )
- continue;
- std::vector<MachOLayoutAbstraction::Segment>& segs = ((MachOLayoutAbstraction*)(it->layout))->getSegments();
- for (int i=0; i < segs.size(); ++i) {
- MachOLayoutAbstraction::Segment& seg = segs[i];
- if ( ! seg.writable() )
- readOnlySize += pageAlign(seg.size());
- }
- }
- uint64_t maxSlide = sharedRegionReadOnlySize() - (readOnlySize + FIRST_DYLIB_TEXT_OFFSET);
- sharedCacheStartAddress = sharedRegionReadOnlyStartAddress() + pageAlign(arc4random() % maxSlide);
- }
- }
-#endif
- uint64_t currentExecuteAddress = sharedCacheStartAddress + FIRST_DYLIB_TEXT_OFFSET;
- uint64_t currentWritableAddress = sharedRegionWritableStartAddress() + FIRST_DYLIB_DATA_OFFSET;
-
- // first layout TEXT and DATA for dylibs
+ // first layout TEXT for dylibs
+ const uint64_t startExecuteAddress = sharedRegionStartAddress();
+ uint64_t currentExecuteAddress = startExecuteAddress + FIRST_DYLIB_TEXT_OFFSET;
for(typename std::vector<LayoutInfo>::iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
std::vector<MachOLayoutAbstraction::Segment>& segs = ((MachOLayoutAbstraction*)(it->layout))->getSegments();
- MachOLayoutAbstraction::Segment* executableSegment = NULL;
+ for (int i=0; i < segs.size(); ++i) {
+ MachOLayoutAbstraction::Segment& seg = segs[i];
+ seg.reset();
+ if ( seg.executable() && !seg.writable() ) {
+ // __TEXT segment
+ if ( it->info.address == 0 )
+ it->info.address = currentExecuteAddress;
+ seg.setNewAddress(currentExecuteAddress);
+ currentExecuteAddress += pageAlign(seg.size());
+ }
+ }
+ }
+
+ // layout DATA for dylibs
+ const uint64_t startWritableAddress = sharedRegionStartWritableAddress(currentExecuteAddress);
+ uint64_t currentWritableAddress = startWritableAddress;
+ for(typename std::vector<LayoutInfo>::iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
+ std::vector<MachOLayoutAbstraction::Segment>& segs = ((MachOLayoutAbstraction*)(it->layout))->getSegments();
for (int i=0; i < segs.size(); ++i) {
MachOLayoutAbstraction::Segment& seg = segs[i];
seg.reset();
if ( seg.writable() ) {
- if ( seg.executable() && it->layout->hasSplitSegInfo() ) {
- // skip __IMPORT segments in this pass
- }
- else {
- // __DATA segment
- // for ppc, writable segments have to move in 64K increments
- if ( it->layout->hasSplitSegInfo() ) {
- if ( executableSegment == NULL )
- throwf("first segment in dylib is not executable for %s", it->layout->getID().name);
- seg.setNewAddress(getWritableSegmentNewAddress(currentWritableAddress, seg.address(), executableSegment->newAddress() - executableSegment->address()));
- }
- else
- seg.setNewAddress(currentWritableAddress);
- currentWritableAddress = pageAlign(seg.newAddress() + seg.size());
- }
- }
- else {
- if ( seg.executable() ) {
- // __TEXT segment
- if ( it->info.address == 0 )
- it->info.address = currentExecuteAddress;
- executableSegment = &seg;
- seg.setNewAddress(currentExecuteAddress);
- currentExecuteAddress += pageAlign(seg.size());
- }
- else {
- // skip read-only segments in this pass
- }
- }
- }
- }
-
- // append all read-only (but not LINKEDIT) segments at end of all TEXT segments
- // append all IMPORT segments at end of all DATA segments rounded to next 2MB
- uint64_t currentReadOnlyAddress = currentExecuteAddress;
- uint64_t startWritableExecutableAddress = (currentWritableAddress + 0x200000 - 1) & (-0x200000);
- uint64_t currentWritableExecutableAddress = startWritableExecutableAddress;
+ if ( seg.executable() )
+ throw "found writable and executable segment";
+ // __DATA segment
+ seg.setNewAddress(currentWritableAddress);
+ currentWritableAddress = pageAlign(seg.newAddress() + seg.size());
+ }
+ }
+ }
+
+ // layout all read-only (but not LINKEDIT) segments
+ const uint64_t startReadOnlyAddress = sharedRegionStartReadOnlyAddress(currentWritableAddress, currentExecuteAddress);
+ uint64_t currentReadOnlyAddress = startReadOnlyAddress;
for(typename std::vector<LayoutInfo>::iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
std::vector<MachOLayoutAbstraction::Segment>& segs = ((MachOLayoutAbstraction*)(it->layout))->getSegments();
for(int i=0; i < segs.size(); ++i) {
MachOLayoutAbstraction::Segment& seg = segs[i];
- if ( !seg.writable() && !seg.executable() && (strcmp(seg.name(), "__LINKEDIT") != 0) ) {
- // allocate non-executable,read-only segments from end of read only shared region
+ if ( seg.readable() && !seg.writable() && !seg.executable() && (strcmp(seg.name(), "__LINKEDIT") != 0) ) {
+ // __UNICODE segment
seg.setNewAddress(currentReadOnlyAddress);
currentReadOnlyAddress += pageAlign(seg.size());
}
- else if ( seg.writable() && seg.executable() && it->layout->hasSplitSegInfo() ) {
- // allocate IMPORT segments to end of writable shared region
- seg.setNewAddress(currentWritableExecutableAddress);
- currentWritableExecutableAddress += pageAlign(seg.size());
- }
}
}
- // append all LINKEDIT segments at end of all read-only segments
+ // layout all LINKEDIT segments at end of all read-only segments
fLinkEditsStartAddress = currentReadOnlyAddress;
fFirstLinkEditSegment = NULL;
for(typename std::vector<LayoutInfo>::iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
std::vector<MachOLayoutAbstraction::Segment>& segs = ((MachOLayoutAbstraction*)(it->layout))->getSegments();
for(int i=0; i < segs.size(); ++i) {
MachOLayoutAbstraction::Segment& seg = segs[i];
- if ( !seg.writable() && !seg.executable() && (strcmp(seg.name(), "__LINKEDIT") == 0) ) {
+ if ( seg.readable() && !seg.writable() && !seg.executable() && (strcmp(seg.name(), "__LINKEDIT") == 0) ) {
if ( fFirstLinkEditSegment == NULL )
fFirstLinkEditSegment = &seg;
- // allocate non-executable,read-only segments from end of read only shared region
seg.setNewAddress(currentReadOnlyAddress);
currentReadOnlyAddress += pageAlign(seg.size());
}
}
}
- fLinkEditsTotalUnoptimizedSize = (currentReadOnlyAddress - fLinkEditsStartAddress + 4095) & (-4096);
-
- // <rdar://problem/9361288> i386 dyld shared cache overflows after adding libclh.dylib
- if ( (currentReadOnlyAddress - sharedRegionReadOnlyStartAddress()) > sharedRegionReadOnlySize() )
- throwf("read-only slice of cache too big: %lluMB (max %lluMB)",
- (currentReadOnlyAddress - sharedRegionReadOnlyStartAddress())/(1024*1024),
- sharedRegionReadOnlySize()/(1024*1024));
-
+ fLinkEditsTotalUnoptimizedSize = pageAlign(currentReadOnlyAddress - fLinkEditsStartAddress);
// populate large mappings
uint64_t cacheFileOffset = 0;
- if ( currentExecuteAddress > sharedCacheStartAddress + FIRST_DYLIB_TEXT_OFFSET ) {
+ if ( currentExecuteAddress > startExecuteAddress ) {
shared_file_mapping_np executeMapping;
- executeMapping.sfm_address = sharedCacheStartAddress;
- executeMapping.sfm_size = currentExecuteAddress - sharedCacheStartAddress;
+ executeMapping.sfm_address = startExecuteAddress;
+ executeMapping.sfm_size = currentExecuteAddress - startExecuteAddress;
executeMapping.sfm_file_offset = cacheFileOffset;
executeMapping.sfm_max_prot = VM_PROT_READ | VM_PROT_EXECUTE;
executeMapping.sfm_init_prot = VM_PROT_READ | VM_PROT_EXECUTE;
@@ -1099,29 +1204,18 @@
cacheFileOffset += executeMapping.sfm_size;
shared_file_mapping_np writableMapping;
- writableMapping.sfm_address = sharedRegionWritableStartAddress();
- writableMapping.sfm_size = currentWritableAddress - sharedRegionWritableStartAddress();
+ writableMapping.sfm_address = startWritableAddress;
+ writableMapping.sfm_size = currentWritableAddress - startWritableAddress;
writableMapping.sfm_file_offset = cacheFileOffset;
writableMapping.sfm_max_prot = VM_PROT_READ | VM_PROT_WRITE;
writableMapping.sfm_init_prot = VM_PROT_READ | VM_PROT_WRITE;
fMappings.push_back(writableMapping);
cacheFileOffset += writableMapping.sfm_size;
-
- if ( currentWritableExecutableAddress > startWritableExecutableAddress ) {
- shared_file_mapping_np writableExecutableMapping;
- writableExecutableMapping.sfm_address = startWritableExecutableAddress;
- writableExecutableMapping.sfm_size = currentWritableExecutableAddress - startWritableExecutableAddress;
- writableExecutableMapping.sfm_file_offset= cacheFileOffset;
- writableExecutableMapping.sfm_max_prot = VM_PROT_READ | VM_PROT_WRITE | VM_PROT_EXECUTE;
- writableExecutableMapping.sfm_init_prot = VM_PROT_READ | VM_PROT_WRITE | VM_PROT_EXECUTE;
- fMappings.push_back(writableExecutableMapping);
- cacheFileOffset += writableExecutableMapping.sfm_size;
- }
-
+
// make read-only (contains LINKEDIT segments) last, so it can be cut back when optimized
shared_file_mapping_np readOnlyMapping;
- readOnlyMapping.sfm_address = currentExecuteAddress;
- readOnlyMapping.sfm_size = currentReadOnlyAddress - currentExecuteAddress;
+ readOnlyMapping.sfm_address = startReadOnlyAddress;
+ readOnlyMapping.sfm_size = currentReadOnlyAddress - startReadOnlyAddress;
readOnlyMapping.sfm_file_offset = cacheFileOffset;
readOnlyMapping.sfm_max_prot = VM_PROT_READ;
readOnlyMapping.sfm_init_prot = VM_PROT_READ;
@@ -1131,7 +1225,7 @@
else {
// empty cache
shared_file_mapping_np cacheHeaderMapping;
- cacheHeaderMapping.sfm_address = sharedRegionWritableStartAddress();
+ cacheHeaderMapping.sfm_address = startExecuteAddress;
cacheHeaderMapping.sfm_size = FIRST_DYLIB_TEXT_OFFSET;
cacheHeaderMapping.sfm_file_offset = cacheFileOffset;
cacheHeaderMapping.sfm_max_prot = VM_PROT_READ;
@@ -1288,7 +1382,7 @@
struct stat stat_buf;
::fstat(fd, &stat_buf);
uint32_t cacheFileSize = stat_buf.st_size;
- uint32_t cacheAllocatedSize = (cacheFileSize + 4095) & (-4096);
+ uint32_t cacheAllocatedSize = pageAlign(cacheFileSize);
uint8_t* mappingAddr = NULL;
if ( vm_allocate(mach_task_self(), (vm_address_t*)(&mappingAddr), cacheAllocatedSize, VM_FLAGS_ANYWHERE) != KERN_SUCCESS )
throwf("can't vm_allocate cache of size %u", cacheFileSize);
@@ -1296,7 +1390,7 @@
(void)fcntl(fd, F_NOCACHE, 1);
ssize_t readResult = pread(fd, mappingAddr, cacheFileSize, 0);
if ( readResult != cacheFileSize )
- throw "can't read existing cache file";
+ throwf("can't read all of existing cache file (%lu of %u): %s", readResult, cacheFileSize, path);
::close(fd);
// validate it
@@ -1314,76 +1408,6 @@
return result;
}
-class CStringEquals
-{
-public:
- bool operator()(const char* left, const char* right) const { return (strcmp(left, right) == 0); }
-};
-
-class StringPool
-{
-public:
- StringPool();
- const char* getBuffer();
- uint32_t size();
- uint32_t add(const char* str);
- uint32_t addUnique(const char* str);
- const char* stringAtIndex(uint32_t) const;
-private:
- typedef __gnu_cxx::hash_map<const char*, uint32_t, __gnu_cxx::hash<const char*>, CStringEquals> StringToOffset;
-
- char* fBuffer;
- uint32_t fBufferAllocated;
- uint32_t fBufferUsed;
- StringToOffset fUniqueStrings;
-};
-
-
-StringPool::StringPool()
- : fBufferUsed(0), fBufferAllocated(32*1024*1024)
-{
- fBuffer = (char*)malloc(fBufferAllocated);
-}
-
-uint32_t StringPool::add(const char* str)
-{
- uint32_t len = strlen(str);
- if ( (fBufferUsed + len + 1) > fBufferAllocated ) {
- // grow buffer
- throw "string buffer exhausted";
- }
- strcpy(&fBuffer[fBufferUsed], str);
- uint32_t result = fBufferUsed;
- fUniqueStrings[&fBuffer[fBufferUsed]] = result;
- fBufferUsed += len+1;
- return result;
-}
-
-uint32_t StringPool::addUnique(const char* str)
-{
- StringToOffset::iterator pos = fUniqueStrings.find(str);
- if ( pos != fUniqueStrings.end() )
- return pos->second;
- else {
- //fprintf(stderr, "StringPool::addUnique() new string: %s\n", str);
- return this->add(str);
- }
-}
-
-uint32_t StringPool::size()
-{
- return fBufferUsed;
-}
-
-const char* StringPool::getBuffer()
-{
- return fBuffer;
-}
-
-const char* StringPool::stringAtIndex(uint32_t index) const
-{
- return &fBuffer[index];
-}
template <typename A>
@@ -1397,12 +1421,16 @@
void copyWeakBindInfo(uint32_t&);
void copyLazyBindInfo(uint32_t&);
void copyExportInfo(uint32_t&);
- void copyLocalSymbols(uint32_t symbolTableOffset, uint32_t&);
+ void copyLocalSymbols(uint32_t symbolTableOffset, uint32_t&, bool dontMapLocalSymbols,
+ uint8_t* cacheStart, StringPool& unmappedLocalsStringPool,
+ std::vector<macho_nlist<typename A::P> >& unmappedSymbols,
+ std::vector<LocalSymbolInfo>& info);
void copyExportedSymbols(uint32_t symbolTableOffset, uint32_t&);
void copyImportedSymbols(uint32_t symbolTableOffset, uint32_t&);
void copyExternalRelocations(uint32_t& offset);
void copyIndirectSymbolTable(uint32_t& offset);
void copyFunctionStarts(uint32_t& offset);
+ void copyDataInCode(uint32_t& offset);
void updateLoadCommands(uint64_t newVMAddress, uint64_t size, uint32_t stringPoolOffset,
uint32_t linkEditsFileOffset, bool keepSignatures);
@@ -1422,6 +1450,7 @@
macho_dyld_info_command<P>* fDyldInfo;
macho_dysymtab_command<P>* fDynamicSymbolTable;
macho_linkedit_data_command<P>* fFunctionStarts;
+ macho_linkedit_data_command<P>* fDataInCode;
macho_symtab_command<P>* fSymbolTableLoadCommand;
const macho_nlist<P>* fSymbolTable;
const char* fStrings;
@@ -1445,6 +1474,9 @@
uint32_t fExternalRelocationsOffsetIntoNewLinkEdit;
uint32_t fIndirectSymbolTableOffsetInfoNewLinkEdit;
uint32_t fFunctionStartsOffsetInNewLinkEdit;
+ uint32_t fDataInCodeOffsetInNewLinkEdit;
+ uint32_t fUnmappedLocalSymbolsStartIndexInNewLinkEdit;
+ uint32_t fUnmappedLocalSymbolsCountInNewLinkEdit;
};
@@ -1452,7 +1484,8 @@
template <typename A>
LinkEditOptimizer<A>::LinkEditOptimizer(const MachOLayoutAbstraction& layout, const SharedCache<A>& sharedCache, uint8_t* newLinkEdit, StringPool& stringPool)
: fSharedCache(sharedCache), fLayout(layout), fLinkEditBase(NULL), fNewLinkEditStart(newLinkEdit), fDyldInfo(NULL),
- fDynamicSymbolTable(NULL), fFunctionStarts(NULL), fSymbolTableLoadCommand(NULL), fSymbolTable(NULL), fStrings(NULL), fNewStringPool(stringPool),
+ fDynamicSymbolTable(NULL), fFunctionStarts(NULL), fDataInCode(NULL),
+ fSymbolTableLoadCommand(NULL), fSymbolTable(NULL), fStrings(NULL), fNewStringPool(stringPool),
fBindInfoOffsetIntoNewLinkEdit(0), fBindInfoSizeInNewLinkEdit(0),
fWeakBindInfoOffsetIntoNewLinkEdit(0), fWeakBindInfoSizeInNewLinkEdit(0),
fLazyBindInfoOffsetIntoNewLinkEdit(0), fLazyBindInfoSizeInNewLinkEdit(0),
@@ -1462,7 +1495,8 @@
fExportedSymbolsStartIndexInNewLinkEdit(0), fExportedSymbolsCountInNewLinkEdit(0),
fImportSymbolsStartIndexInNewLinkEdit(0), fImportedSymbolsCountInNewLinkEdit(0),
fExternalRelocationsOffsetIntoNewLinkEdit(0), fIndirectSymbolTableOffsetInfoNewLinkEdit(0),
- fFunctionStartsOffsetInNewLinkEdit(0)
+ fFunctionStartsOffsetInNewLinkEdit(0), fDataInCodeOffsetInNewLinkEdit(0),
+ fUnmappedLocalSymbolsStartIndexInNewLinkEdit(0), fUnmappedLocalSymbolsCountInNewLinkEdit(0)
{
fHeader = (const macho_header<P>*)fLayout.getSegments()[0].mappedAddress();
@@ -1497,6 +1531,8 @@
break;
case LC_FUNCTION_STARTS:
fFunctionStarts = (macho_linkedit_data_command<P>*)cmd;
+ case LC_DATA_IN_CODE:
+ fDataInCode = (macho_linkedit_data_command<P>*)cmd;
break;
}
cmd = (const macho_load_command<P>*)(((uint8_t*)cmd)+cmd->cmdsize());
@@ -1569,25 +1605,46 @@
}
-
template <typename A>
-void LinkEditOptimizer<A>::copyLocalSymbols(uint32_t symbolTableOffset, uint32_t& symbolIndex)
+void LinkEditOptimizer<A>::copyLocalSymbols(uint32_t symbolTableOffset, uint32_t& symbolIndex, bool dontMapLocalSymbols, uint8_t* cacheStart,
+ StringPool& unmappedLocalsStringPool, std::vector<macho_nlist<P> >& unmappedSymbols,
+ std::vector<LocalSymbolInfo>& dylibInfos)
{
fLocalSymbolsStartIndexInNewLinkEdit = symbolIndex;
+ LocalSymbolInfo localInfo;
+ localInfo.dylibOffset = ((uint8_t*)fHeader) - cacheStart;
+ localInfo.nlistStartIndex = unmappedSymbols.size();
+ localInfo.nlistCount = 0;
fSymbolTableStartOffsetInNewLinkEdit = symbolTableOffset + symbolIndex*sizeof(macho_nlist<P>);
macho_nlist<P>* const newSymbolTableStart = (macho_nlist<P>*)(fNewLinkEditStart+symbolTableOffset);
const macho_nlist<P>* const firstLocal = &fSymbolTable[fDynamicSymbolTable->ilocalsym()];
const macho_nlist<P>* const lastLocal = &fSymbolTable[fDynamicSymbolTable->ilocalsym()+fDynamicSymbolTable->nlocalsym()];
uint32_t oldIndex = fDynamicSymbolTable->ilocalsym();
for (const macho_nlist<P>* entry = firstLocal; entry < lastLocal; ++entry, ++oldIndex) {
- if ( (entry->n_type() & N_TYPE) == N_SECT ) {
+ // <rdar://problem/12237639> don't copy stab symbols
+ if ( (entry->n_sect() != NO_SECT) && ((entry->n_type() & N_STAB) == 0) ) {
+ const char* name = &fStrings[entry->n_strx()];
macho_nlist<P>* newSymbolEntry = &newSymbolTableStart[symbolIndex];
*newSymbolEntry = *entry;
- newSymbolEntry->set_n_strx(fNewStringPool.addUnique(&fStrings[entry->n_strx()]));
- ++symbolIndex;
+ if ( dontMapLocalSymbols ) {
+ // if local in __text, add <redacted> symbol name to shared cache so backtraces don't have bogus names
+ if ( entry->n_sect() == 1 ) {
+ newSymbolEntry->set_n_strx(fNewStringPool.addUnique("<redacted>"));
+ ++symbolIndex;
+ }
+ // copy local symbol to unmmapped locals area
+ unmappedSymbols.push_back(*entry);
+ unmappedSymbols.back().set_n_strx(unmappedLocalsStringPool.addUnique(name));
+ }
+ else {
+ newSymbolEntry->set_n_strx(fNewStringPool.addUnique(name));
+ ++symbolIndex;
+ }
}
}
fLocalSymbolsCountInNewLinkEdit = symbolIndex - fLocalSymbolsStartIndexInNewLinkEdit;
+ localInfo.nlistCount = unmappedSymbols.size() - localInfo.nlistStartIndex;
+ dylibInfos.push_back(localInfo);
//fprintf(stderr, "%u locals starting at %u for %s\n", fLocalSymbolsCountInNewLinkEdit, fLocalSymbolsStartIndexInNewLinkEdit, fLayout.getFilePath());
}
@@ -1673,6 +1730,17 @@
offset += fFunctionStarts->datasize();
}
}
+
+template <typename A>
+void LinkEditOptimizer<A>::copyDataInCode(uint32_t& offset)
+{
+ if ( fDataInCode != NULL ) {
+ fDataInCodeOffsetInNewLinkEdit = offset;
+ memcpy(&fNewLinkEditStart[offset], &fLinkEditBase[fDataInCode->dataoff()], fDataInCode->datasize());
+ offset += fDataInCode->datasize();
+ }
+}
+
template <typename A>
void LinkEditOptimizer<A>::copyIndirectSymbolTable(uint32_t& offset)
@@ -1772,6 +1840,10 @@
if ( fFunctionStarts != NULL ) {
fFunctionStarts->set_dataoff(linkEditsFileOffset+fFunctionStartsOffsetInNewLinkEdit);
}
+ // update data-in-code info
+ if ( fDataInCode != NULL ) {
+ fDataInCode->set_dataoff(linkEditsFileOffset+fDataInCodeOffsetInNewLinkEdit);
+ }
// now remove load commands no longer needed
const macho_load_command<P>* srcCmd = cmds;
@@ -1781,6 +1853,7 @@
uint32_t cmdSize = srcCmd->cmdsize();
switch ( srcCmd->cmd() ) {
case LC_SEGMENT_SPLIT_INFO:
+ case LC_DYLIB_CODE_SIGN_DRS:
// don't copy
break;
case LC_CODE_SIGNATURE:
@@ -1814,7 +1887,7 @@
template <typename A>
-uint8_t* SharedCache<A>::optimizeLINKEDIT(bool keepSignatures)
+uint8_t* SharedCache<A>::optimizeLINKEDIT(bool keepSignatures, bool dontMapLocalSymbols)
{
// allocate space for optimized LINKEDIT area
uint8_t* newLinkEdit = new uint8_t[fLinkEditsTotalUnoptimizedSize];
@@ -1860,8 +1933,11 @@
fOffsetOfOldSymbolTableInfoInCombinedLinkedit = offset;
uint32_t symbolTableOffset = offset;
uint32_t symbolTableIndex = 0;
+ if ( dontMapLocalSymbols )
+ fUnmappedLocalSymbols.reserve(16384);
for(typename std::vector<LinkEditOptimizer<A>*>::iterator it = optimizers.begin(); it != optimizers.end(); ++it) {
- (*it)->copyLocalSymbols(symbolTableOffset, symbolTableIndex);
+ (*it)->copyLocalSymbols(symbolTableOffset, symbolTableIndex, dontMapLocalSymbols, fInMemoryCache,
+ fUnmappedLocalsStringPool, fUnmappedLocalSymbols, fLocalSymbolInfos);
(*it)->copyExportedSymbols(symbolTableOffset, symbolTableIndex);
(*it)->copyImportedSymbols(symbolTableOffset, symbolTableIndex);
}
@@ -1881,6 +1957,13 @@
(*it)->copyFunctionStarts(offset);
}
fSizeOfFunctionStartsInCombinedLinkedit = offset - fOffsetOfFunctionStartsInCombinedLinkedit;
+
+ // copy data-in-code info
+ fOffsetOfDataInCodeInCombinedLinkedit = offset;
+ for(typename std::vector<LinkEditOptimizer<A>*>::iterator it = optimizers.begin(); it != optimizers.end(); ++it) {
+ (*it)->copyDataInCode(offset);
+ }
+ fSizeOfDataInCodeInCombinedLinkedit = offset - fOffsetOfDataInCodeInCombinedLinkedit;
// copy indirect symbol tables
fOffsetOfOldIndirectSymbolsInCombinedLinkedit = offset;
@@ -1895,11 +1978,11 @@
fSizeOfOldStringPoolInCombinedLinkedit = stringPool.size();
// total new size round up to page size
- fLinkEditsTotalOptimizedSize = (fOffsetOfOldStringPoolInCombinedLinkedit + fSizeOfOldStringPoolInCombinedLinkedit + 4095) & (-4096);
+ fLinkEditsTotalOptimizedSize = pageAlign(fOffsetOfOldStringPoolInCombinedLinkedit + fSizeOfOldStringPoolInCombinedLinkedit);
// choose new linkedit file offset
uint32_t linkEditsFileOffset = cacheFileOffsetForVMAddress(fLinkEditsStartAddress);
-// uint32_t linkEditsFileOffset = fLinkEditsStartAddress - sharedRegionReadOnlyStartAddress();
+// uint32_t linkEditsFileOffset = fLinkEditsStartAddress - sharedRegionStartAddress();
// update load commands so that all dylibs shared different areas of the same LINKEDIT segment
for(typename std::vector<LinkEditOptimizer<A>*>::iterator it = optimizers.begin(); it != optimizers.end(); ++it) {
@@ -1932,7 +2015,6 @@
}
-
template <typename A>
class ObjCSelectorUniquer
{
@@ -1966,14 +2048,71 @@
size_t count() const { return fCount; }
};
+
+template <typename A>
+class ClassListBuilder
+{
+private:
+ typedef typename A::P P;
+
+ objc_opt::string_map fClassNames;
+ objc_opt::class_map fClasses;
+ size_t fCount;
+ HeaderInfoOptimizer<A>& fHinfos;
+
+public:
+
+ ClassListBuilder(HeaderInfoOptimizer<A>& hinfos)
+ : fClassNames()
+ , fClasses()
+ , fCount(0)
+ , fHinfos(hinfos)
+ { }
+
+ void visitClass(SharedCache<A>* cache,
+ const macho_header<P>* header,
+ objc_class_t<A>* cls)
+ {
+ if (cls->isMetaClass(cache)) return;
+
+ const char *name = cls->getName(cache);
+ uint64_t name_vmaddr = cache->VMAddressForMappedAddress(name);
+ uint64_t cls_vmaddr = cache->VMAddressForMappedAddress(cls);
+ uint64_t hinfo_vmaddr = cache->VMAddressForMappedAddress(fHinfos.hinfoForHeader(cache, header));
+ fClassNames.insert(objc_opt::string_map::value_type(name, name_vmaddr));
+ fClasses.insert(objc_opt::class_map::value_type(name, std::pair<uint64_t, uint64_t>(cls_vmaddr, hinfo_vmaddr)));
+ fCount++;
+ }
+
+ objc_opt::string_map& classNames() {
+ return fClassNames;
+ }
+
+ objc_opt::class_map& classes() {
+ return fClasses;
+ }
+
+ size_t count() const { return fCount; }
+};
+
+
+static int percent(size_t num, size_t denom) {
+ if (denom) return (int)(num / (double)denom * 100);
+ else return 100;
+}
+
template <typename A>
void SharedCache<A>::optimizeObjC(std::vector<void*>& pointersInData)
{
const char *err;
- size_t headerSize = sizeof(objc_opt::objc_opt_t);
if ( verbose ) {
fprintf(stderr, "update_dyld_shared_cache: for %s, optimizing objc metadata\n", archName());
+ }
+
+ size_t headerSize = P::round_up(sizeof(objc_opt::objc_opt_t));
+ if (headerSize != sizeof(objc_opt::objc_opt_t)) {
+ warn(archName(), "libobjc's optimization structure size is wrong (metadata not optimized)");
}
// Find libobjc's empty sections to fill in
@@ -1983,9 +2122,6 @@
if ( strstr(it->layout->getFilePath(), "libobjc") != NULL ) {
const macho_header<P>* mh = (const macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
optROSection = mh->getSection("__TEXT", "__objc_opt_ro");
- // __objc_selopt is old name for __objc_opt_ro
- if ( optROSection == NULL )
- optROSection = mh->getSection("__TEXT", "__objc_selopt");
optRWSection = mh->getSection("__DATA", "__objc_opt_rw");
break;
}
@@ -1996,17 +2132,62 @@
return;
}
- objc_opt::objc_opt_t* optROHeader = (objc_opt::objc_opt_t*)mappedAddressForVMAddress(optROSection->addr());
- if (optROSection->size() < headerSize) {
+ if ( optRWSection == NULL ) {
+ warn(archName(), "libobjc's read/write section missing (metadata not optimized)");
+ return;
+ }
+
+ uint8_t* optROData = (uint8_t*)mappedAddressForVMAddress(optROSection->addr());
+ size_t optRORemaining = optROSection->size();
+
+ uint8_t* optRWData = (uint8_t*)mappedAddressForVMAddress(optRWSection->addr());
+ size_t optRWRemaining = optRWSection->size();
+
+ if (optRORemaining < headerSize) {
warn(archName(), "libobjc's read-only section is too small (metadata not optimized)");
return;
}
+ objc_opt::objc_opt_t* optROHeader = (objc_opt::objc_opt_t *)optROData;
+ optROData += headerSize;
+ optRORemaining -= headerSize;
if (E::get32(optROHeader->version) != objc_opt::VERSION) {
warn(archName(), "libobjc's read-only section version is unrecognized (metadata not optimized)");
return;
}
+ // Write nothing to optROHeader until everything else is written.
+ // If something fails below, libobjc will not use the section.
+
+ // Find objc-containing dylibs
+ std::vector<LayoutInfo> objcDylibs;
+ for(typename std::vector<LayoutInfo>::const_iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
+ macho_header<P> *mh = (macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
+ if (mh->getSection("__DATA", "__objc_imageinfo") || mh->getSegment("__OBJC")) {
+ objcDylibs.push_back(*it);
+ }
+ }
+
+ // Build image list
+
+ // This is SAFE: the binaries themselves are unmodified.
+
+ std::vector<LayoutInfo> addressSortedDylibs = objcDylibs;
+ std::sort(addressSortedDylibs.begin(), addressSortedDylibs.end(), ByAddressSorter());
+
+ uint64_t hinfoVMAddr = optRWSection->addr() + optRWSection->size() - optRWRemaining;
+ HeaderInfoOptimizer<A> hinfoOptimizer;
+ err = hinfoOptimizer.init(objcDylibs.size(), optRWData, optRWRemaining);
+ if (err) {
+ warn(archName(), err);
+ return;
+ }
+ for(typename std::vector<LayoutInfo>::const_iterator it = addressSortedDylibs.begin(); it != addressSortedDylibs.end(); ++it) {
+ const macho_header<P> *mh = (const macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
+ hinfoOptimizer.update(this, mh, pointersInData);
+ }
+
+
// Update selector references and build selector list
// This is SAFE: if we run out of room for the selector table,
@@ -2015,101 +2196,127 @@
// Heuristic: choose selectors from libraries with more cstring data first.
// This tries to localize selector cstring memory.
ObjCSelectorUniquer<A> uniq(this);
- std::vector<LayoutInfo> sortedDylibs = fDylibs;
- std::sort(sortedDylibs.begin(), sortedDylibs.end(), ByCStringSectionSizeSorter());
+ std::vector<LayoutInfo> sizeSortedDylibs = objcDylibs;
+ std::sort(sizeSortedDylibs.begin(), sizeSortedDylibs.end(), ByCStringSectionSizeSorter());
SelectorOptimizer<A, ObjCSelectorUniquer<A> > selOptimizer(uniq);
- for(typename std::vector<LayoutInfo>::const_iterator it = sortedDylibs.begin(); it != sortedDylibs.end(); ++it) {
+ for(typename std::vector<LayoutInfo>::const_iterator it = sizeSortedDylibs.begin(); it != sizeSortedDylibs.end(); ++it) {
const macho_header<P> *mh = (const macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
LegacySelectorUpdater<A, ObjCSelectorUniquer<A> >::update(this, mh, uniq);
selOptimizer.optimize(this, mh);
}
- if ( verbose ) {
- fprintf(stderr, "update_dyld_shared_cache: for %s, found %zu unique objc selectors\n", archName(), uniq.strings().size());
- }
-
- // Write selector table in read-only data.
- size_t selTableOffset = P::round_up(headerSize);
- size_t selTableSize;
- objc_opt::objc_selopt_t *seloptData = (objc_opt::objc_selopt_t *)
- mappedAddressForVMAddress(optROSection->addr() + selTableOffset);
- err = objc_opt::write_selopt(seloptData,
- optROSection->addr() + selTableOffset,
- optROSection->size() - selTableOffset,
- uniq.strings(),
- E::little_endian, &selTableSize);
+ uint64_t seloptVMAddr = optROSection->addr() + optROSection->size() - optRORemaining;
+ objc_opt::objc_selopt_t *selopt = new(optROData) objc_opt::objc_selopt_t;
+ err = selopt->write(seloptVMAddr, optRORemaining, uniq.strings());
if (err) {
warn(archName(), err);
return;
}
+ optROData += selopt->size();
+ optRORemaining -= selopt->size();
+ selopt->byteswap(E::little_endian), selopt = NULL;
+
+
+ // Build class table.
+
+ // This is SAFE: the binaries themselves are unmodified.
+
+ ClassListBuilder<A> classes(hinfoOptimizer);
+ ClassWalker< A, ClassListBuilder<A> > classWalker(classes);
+ for(typename std::vector<LayoutInfo>::const_iterator it = sizeSortedDylibs.begin(); it != sizeSortedDylibs.end(); ++it) {
+ const macho_header<P> *mh = (const macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
+ classWalker.walk(this, mh);
+ }
+
+ uint64_t clsoptVMAddr = optROSection->addr() + optROSection->size() - optRORemaining;
+ objc_opt::objc_clsopt_t *clsopt = new(optROData) objc_opt::objc_clsopt_t;
+ err = clsopt->write(clsoptVMAddr, optRORemaining,
+ classes.classNames(), classes.classes(), verbose);
+ if (err) {
+ warn(archName(), err);
+ return;
+ }
+ optROData += clsopt->size();
+ optRORemaining -= clsopt->size();
+ size_t duplicateCount = clsopt->duplicateCount();
+ clsopt->byteswap(E::little_endian), clsopt = NULL;
+
+
+ // Sort method lists.
+
+ // This is SAFE: modified binaries are still usable as unsorted lists.
+ // This must be done AFTER uniquing selectors.
+
+ MethodListSorter<A> methodSorter;
+ for(typename std::vector<LayoutInfo>::const_iterator it = sizeSortedDylibs.begin(); it != sizeSortedDylibs.end(); ++it) {
+ macho_header<P> *mh = (macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
+ methodSorter.optimize(this, mh);
+ }
+
+
+ // Repair ivar offsets.
+
+ // This is SAFE: the runtime always validates ivar offsets at runtime.
+
+ IvarOffsetOptimizer<A> ivarOffsetOptimizer;
+ for(typename std::vector<LayoutInfo>::const_iterator it = sizeSortedDylibs.begin(); it != sizeSortedDylibs.end(); ++it) {
+ const macho_header<P> *mh = (const macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
+ ivarOffsetOptimizer.optimize(this, mh);
+ }
+
+
+ // Success. Mark dylibs as optimized.
+ for(typename std::vector<LayoutInfo>::const_iterator it = sizeSortedDylibs.begin(); it != sizeSortedDylibs.end(); ++it) {
+ const macho_header<P> *mh = (const macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
+ const macho_section<P> *imageInfoSection;
+ imageInfoSection = mh->getSection("__DATA", "__objc_imageinfo");
+ if (!imageInfoSection) {
+ imageInfoSection = mh->getSection("__OBJC", "__image_info");
+ }
+ if (imageInfoSection) {
+ objc_image_info<A> *info = (objc_image_info<A> *)
+ mappedAddressForVMAddress(imageInfoSection->addr());
+ info->setOptimizedByDyld();
+ }
+ }
+
+
+ // Success. Update RO header last.
+ E::set32(optROHeader->selopt_offset, seloptVMAddr - optROSection->addr());
+ E::set32(optROHeader->clsopt_offset, clsoptVMAddr - optROSection->addr());
+ E::set32(optROHeader->headeropt_offset, hinfoVMAddr - optROSection->addr());
if ( verbose ) {
- size_t totalSize = headerSize + selTableSize;
+ size_t roSize = optROSection->size() - optRORemaining;
+ size_t rwSize = optRWSection->size() - optRWRemaining;
fprintf(stderr, "update_dyld_shared_cache: for %s, %zu/%llu bytes "
"(%d%%) used in libobjc read-only optimization section\n",
- archName(), totalSize, optROSection->size(),
- (int)(totalSize / (double)optROSection->size() * 100));
+ archName(), roSize, optROSection->size(),
+ percent(roSize, optROSection->size()));
+ fprintf(stderr, "update_dyld_shared_cache: for %s, %zu/%llu bytes "
+ "(%d%%) used in libobjc read/write optimization section\n",
+ archName(), rwSize, optRWSection->size(),
+ percent(rwSize, optRWSection->size()));
+ fprintf(stderr, "update_dyld_shared_cache: for %s, "
+ "uniqued %zu selectors\n",
+ archName(), uniq.strings().size());
fprintf(stderr, "update_dyld_shared_cache: for %s, "
"updated %zu selector references\n",
archName(), uniq.count());
fprintf(stderr, "update_dyld_shared_cache: for %s, "
+ "updated %zu ivar offsets\n",
+ archName(), ivarOffsetOptimizer.optimized());
+ fprintf(stderr, "update_dyld_shared_cache: for %s, "
+ "sorted %zu method lists\n",
+ archName(), methodSorter.optimized());
+ fprintf(stderr, "update_dyld_shared_cache: for %s, "
+ "recorded %zu classes (%zu duplicates)\n",
+ archName(), classes.classNames().size(), duplicateCount);
+ fprintf(stderr, "update_dyld_shared_cache: for %s, "
"wrote objc metadata optimization version %d\n",
archName(), objc_opt::VERSION);
}
-
- // if r/w section exists in libojc attempt to optimize categories into classes
- if ( optRWSection != NULL ) {
- // Attach categories to classes in the same framework.
- // Build aggregated (but unsorted) method lists in read-write data.
-
- // This is SAFE: if we run out of room while attaching categories in
- // a binary then previously-edited binaries are still valid. (This assumes
- // each binary is processed all-or-nothing, which CategoryAttacher does.)
- // This must be done AFTER uniquing selectors.
- // This must be done BEFORE sorting method lists.
-
- size_t categoryOffset = 0;
- uint8_t *categoryData = (uint8_t*)mappedAddressForVMAddress(optRWSection->addr() + categoryOffset);
- CategoryAttacher<A> categoryAttacher(categoryData, optRWSection->size() - categoryOffset);
- for(typename std::vector<LayoutInfo>::const_iterator it = sortedDylibs.begin(); it != sortedDylibs.end(); ++it) {
- macho_header<P> *mh = (macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
- err = categoryAttacher.optimize(this, mh, pointersInData);
- if (err) {
- warn(archName(), err);
- return;
- }
- }
- size_t categorySize = categoryAttacher.bytesUsed();
-
-
- // Sort method lists.
-
- // This is SAFE: modified binaries are still usable as unsorted lists.
- // This must be done AFTER uniquing selectors.
- // This must be done AFTER attaching categories.
-
- MethodListSorter<A> methodSorter;
- for(typename std::vector<LayoutInfo>::const_iterator it = sortedDylibs.begin(); it != sortedDylibs.end(); ++it) {
- macho_header<P> *mh = (macho_header<P>*)(*it->layout).getSegments()[0].mappedAddress();
- methodSorter.optimize(this, mh);
- }
-
- if ( verbose ) {
- size_t totalRWSize = categorySize;
- fprintf(stderr, "update_dyld_shared_cache: for %s, %zu/%llu bytes "
- "(%d%%) used in libobjc read-write optimization section\n",
- archName(), totalRWSize, optRWSection->size(),
- (int)(totalRWSize / (double)optRWSection->size() * 100));
- fprintf(stderr, "update_dyld_shared_cache: for %s, "
- "attached %zu categories (%zd bytes used)\n",
- archName(), categoryAttacher.count(),
- categoryAttacher.bytesUsed());
- }
- }
-
- // Success. Update RO header last
- E::set32(optROHeader->selopt_offset, headerSize);
return;
}
@@ -2128,17 +2335,79 @@
}
+// <rdar://problem/10730767> update_dyld_shared_cache should use sync_volume_np() instead of sync()
+static void sync_volume(const char* volumePath)
+{
+#if __MAC_OS_X_VERSION_MIN_REQUIRED >= 1080
+ int error = sync_volume_np(volumePath, SYNC_VOLUME_FULLSYNC|SYNC_VOLUME_FULLSYNC);
+#else
+ int full_sync = 3; // SYNC_VOLUME_FULLSYNC | SYNC_VOLUME_FULLSYNC
+ int error = 0;
+ if ( fsctl(volumePath, 0x80004101 /*FSCTL_SYNC_VOLUME*/, &full_sync, 0) == -1)
+ error = errno;
+#endif
+ if ( error )
+ ::sync();
+}
+
+
+// <rdar://problem/12552226> update shared cache should sign the shared cache
+static bool adhoc_codesign_share_cache(const char* path)
+{
+ CFURLRef target = ::CFURLCreateFromFileSystemRepresentation(NULL, (const UInt8 *)path, strlen(path), FALSE);
+ if ( target == NULL )
+ return false;
+
+ SecStaticCodeRef code;
+ OSStatus status = ::SecStaticCodeCreateWithPath(target, kSecCSDefaultFlags, &code);
+ CFRelease(target);
+ if ( status ) {
+ ::fprintf(stderr, "codesign: failed to create url to signed object\n");
+ return false;
+ }
+
+ const void * keys[1] = { (void *)kSecCodeSignerIdentity } ;
+ const void * values[1] = { (void *)kCFNull };
+ CFDictionaryRef params = ::CFDictionaryCreate(NULL, keys, values, 1, &kCFTypeDictionaryKeyCallBacks, &kCFTypeDictionaryValueCallBacks);
+ if ( params == NULL ) {
+ CFRelease(code);
+ return false;
+ }
+
+ SecCodeSignerRef signer;
+ status = ::SecCodeSignerCreate(params, kSecCSDefaultFlags, &signer);
+ CFRelease(params);
+ if ( status ) {
+ CFRelease(code);
+ ::fprintf(stderr, "codesign: failed to create signer object\n");
+ return false;
+ }
+
+ status = ::SecCodeSignerAddSignatureWithErrors(signer, code, kSecCSDefaultFlags, NULL);
+ CFRelease(code);
+ CFRelease(signer);
+ if ( status ) {
+ ::fprintf(stderr, "codesign: failed to sign object: %s\n", path);
+ return false;
+ }
+
+ if ( verbose )
+ ::fprintf(stderr, "codesigning complete of %s\n", path);
+
+ return true;
+}
+
+
template <> bool SharedCache<x86_64>::addCacheSlideInfo(){ return true; }
template <> bool SharedCache<arm>::addCacheSlideInfo() { return true; }
template <> bool SharedCache<x86>::addCacheSlideInfo() { return false; }
-template <> bool SharedCache<ppc>::addCacheSlideInfo() { return false; }
template <typename A>
-bool SharedCache<A>::update(bool usesOverlay, bool force, bool optimize, bool deleteExistingFirst, int archIndex,
- int archCount, bool keepSignatures)
+bool SharedCache<A>::update(bool force, bool optimize, bool deleteExistingFirst, int archIndex,
+ int archCount, bool keepSignatures, bool dontMapLocalSymbols)
{
bool didUpdate = false;
@@ -2188,6 +2457,8 @@
header->set_codeSignatureSize(0);
header->set_slideInfoOffset(0);
header->set_slideInfoSize(0);
+ header->set_localSymbolsOffset(0);
+ header->set_localSymbolsSize(0);
// fill in mappings
dyldCacheFileMapping<E>* mapping = (dyldCacheFileMapping<E>*)&inMemoryCache[sizeof(dyldCacheHeader<E>)];
@@ -2243,7 +2514,7 @@
throwf("file modified during cache creation: %s", path);
if ( verbose )
- fprintf(stderr, "update_dyld_shared_cache: copying %s to cache\n", it->layout->getID().name);
+ fprintf(stderr, "update_dyld_shared_cache: copying %s to cache\n", it->layout->getFilePath());
try {
const std::vector<MachOLayoutAbstraction::Segment>& segs = it->layout->getSegments();
for (int i=0; i < segs.size(); ++i) {
@@ -2293,10 +2564,6 @@
std::vector<void*> pointersInData;
pointersInData.reserve(1024);
- // add pointer in start of __DATA to start of __TEXT to remain compatible with previous dylds
- pint_t* dataStartPtr = (pint_t*)(&inMemoryCache[fMappings[1].sfm_file_offset]);
- P::setP(*dataStartPtr, fMappings[0].sfm_address);
-
// rebase each dylib in shared cache
for(typename std::vector<LayoutInfo>::const_iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
try {
@@ -2356,7 +2623,7 @@
// merge/optimize all LINKEDIT segments
if ( optimize ) {
//fprintf(stderr, "update_dyld_shared_cache: original cache file size %uMB\n", cacheFileSize/(1024*1024));
- cacheFileSize = (this->optimizeLINKEDIT(keepSignatures) - inMemoryCache);
+ cacheFileSize = (this->optimizeLINKEDIT(keepSignatures, dontMapLocalSymbols) - inMemoryCache);
//fprintf(stderr, "update_dyld_shared_cache: optimized cache file size %uMB\n", cacheFileSize/(1024*1024));
// update header to reduce mapping size
dyldCacheHeader<E>* cacheHeader = (dyldCacheHeader<E>*)inMemoryCache;
@@ -2437,7 +2704,7 @@
}
slideInfo->set_entries_count(entry_count);
- int slideInfoPageSize = (slideInfo->entries_offset() + entry_count*entry_size + 4095) & (-4096);
+ int slideInfoPageSize = pageAlign(slideInfo->entries_offset() + entry_count*entry_size);
cacheFileSize += slideInfoPageSize;
// update mappings to increase RO size
@@ -2458,6 +2725,70 @@
memcpy(&inMemoryCache[cacheHeader->slideInfoOffset()], slideInfo, slideInfoPageSize);
}
+ // make sure after all optimizations, that whole cache file fits into shared region address range
+ {
+ dyldCacheHeader<E>* cacheHeader = (dyldCacheHeader<E>*)inMemoryCache;
+ dyldCacheFileMapping<E>* mappings = (dyldCacheFileMapping<E>*)&inMemoryCache[cacheHeader->mappingOffset()];
+ for (int i=0; i < cacheHeader->mappingCount(); ++i) {
+ uint64_t endAddr = mappings[i].address() + mappings[i].size();
+ if ( endAddr > (sharedRegionStartAddress() + sharedRegionSize()) ) {
+ throwf("update_dyld_shared_cache[%u] for arch=%s, shared cache will not fit in address space: 0x%llX\n",
+ getpid(), fArchGraph->archName(), endAddr);
+ }
+ }
+ }
+
+ // append local symbol info in an unmapped region
+ if ( dontMapLocalSymbols ) {
+ uint32_t spaceAtEnd = allocatedCacheSize - cacheFileSize;
+ uint32_t localSymbolsOffset = pageAlign(cacheFileSize);
+ dyldCacheLocalSymbolsInfo<E>* infoHeader = (dyldCacheLocalSymbolsInfo<E>*)(&inMemoryCache[localSymbolsOffset]);
+ const uint32_t entriesOffset = sizeof(dyldCacheLocalSymbolsInfo<E>);
+ const uint32_t entriesCount = fLocalSymbolInfos.size();
+ const uint32_t nlistOffset = entriesOffset + entriesCount * sizeof(dyldCacheLocalSymbolEntry<E>);
+ const uint32_t nlistCount = fUnmappedLocalSymbols.size();
+ const uint32_t stringsOffset = nlistOffset + nlistCount * sizeof(macho_nlist<P>);
+ const uint32_t stringsSize = fUnmappedLocalsStringPool.size();
+ if ( stringsOffset+stringsSize > spaceAtEnd )
+ throwf("update_dyld_shared_cache[%u] for arch=%s, out of space for local symbols. Have 0x%X, Need 0x%X\n",
+ getpid(), fArchGraph->archName(), spaceAtEnd, stringsOffset+stringsSize);
+ // fill in local symbols info
+ infoHeader->set_nlistOffset(nlistOffset);
+ infoHeader->set_nlistCount(nlistCount);
+ infoHeader->set_stringsOffset(stringsOffset);
+ infoHeader->set_stringsSize(stringsSize);
+ infoHeader->set_entriesOffset(entriesOffset);
+ infoHeader->set_entriesCount(entriesCount);
+ // copy info for each dylib
+ dyldCacheLocalSymbolEntry<E>* entries = (dyldCacheLocalSymbolEntry<E>*)(&inMemoryCache[localSymbolsOffset+entriesOffset]);
+ for (int i=0; i < entriesCount; ++i) {
+ entries[i].set_dylibOffset(fLocalSymbolInfos[i].dylibOffset);
+ entries[i].set_nlistStartIndex(fLocalSymbolInfos[i].nlistStartIndex);
+ entries[i].set_nlistCount(fLocalSymbolInfos[i].nlistCount);
+ }
+ // copy nlists
+ memcpy(&inMemoryCache[localSymbolsOffset+nlistOffset], &fUnmappedLocalSymbols[0], nlistCount*sizeof(macho_nlist<P>));
+ // copy string pool
+ memcpy(&inMemoryCache[localSymbolsOffset+stringsOffset], fUnmappedLocalsStringPool.getBuffer(), stringsSize);
+
+ // update state
+ fUnmappedLocalSymbolsSize = pageAlign(stringsOffset + stringsSize);
+ cacheFileSize = localSymbolsOffset + fUnmappedLocalSymbolsSize;
+
+ // update header to show location of slidePointers
+ dyldCacheHeader<E>* cacheHeader = (dyldCacheHeader<E>*)inMemoryCache;
+ cacheHeader->set_localSymbolsOffset(localSymbolsOffset);
+ cacheHeader->set_localSymbolsSize(stringsOffset+stringsSize);
+ cacheHeader->set_codeSignatureOffset(cacheFileSize);
+ }
+
+ // compute UUID of whole cache
+ uint8_t digest[16];
+ CC_MD5(inMemoryCache, cacheFileSize, digest);
+ // <rdar://problem/6723729> uuids should conform to RFC 4122 UUID version 4 & UUID version 5 formats
+ digest[6] = ( digest[6] & 0x0F ) | ( 3 << 4 );
+ digest[8] = ( digest[8] & 0x3F ) | 0x80;
+ ((dyldCacheHeader<E>*)inMemoryCache)->set_uuid(digest);
if ( fVerify ) {
// if no existing cache, say so
@@ -2556,7 +2887,7 @@
// write out cache file
if ( verbose )
- fprintf(stderr, "update_dyld_shared_cache: writing cache to disk\n");
+ fprintf(stderr, "update_dyld_shared_cache: writing cache to disk: %s\n", tempCachePath);
if ( ::pwrite(fd, inMemoryCache, cacheFileSize, 0) != cacheFileSize )
throwf("write() failure creating cache file, errno=%d", errno);
if ( progress ) {
@@ -2572,6 +2903,9 @@
if ( result != 0 )
fprintf(stderr, "update_dyld_shared_cache: warning, close() failed with errno=%d for %s\n", errno, tempCachePath);
+ if ( !iPhoneOS )
+ adhoc_codesign_share_cache(tempCachePath);
+
// <rdar://problem/7901042> Make life easier for the kernel at shutdown.
// If we just move the new cache file over the old, the old file
// may need to exist in the open-unlink state. But because it
@@ -2594,13 +2928,15 @@
}
// move new cache file to correct location for use after reboot
+ if ( verbose )
+ fprintf(stderr, "update_dyld_shared_cache: atomically moving cache file into place: %s\n", fCacheFilePath);
result = ::rename(tempCachePath, fCacheFilePath);
if ( result != 0 )
throwf("can't swap newly create dyld shared cache file: rename(%s,%s) returned errno=%d", tempCachePath, fCacheFilePath, errno);
// flush everything to disk to assure rename() gets recorded
- ::sync();
+ sync_volume(fCacheFilePath);
didUpdate = true;
// restore default signal handlers
@@ -2629,51 +2965,70 @@
else if ( it->sfm_init_prot == (VM_PROT_EXECUTE|VM_PROT_WRITE|VM_PROT_READ) )
prot = "WX";
if ( it->sfm_size > 1024*1024 )
- fprintf(fmap, "mapping %s %4lluMB 0x%0llX -> 0x%0llX\n", prot, it->sfm_size/(1024*1024),
+ fprintf(fmap, "mapping %s %4lluMB 0x%0llX -> 0x%0llX\n", prot, it->sfm_size/(1024*1024),
it->sfm_address, it->sfm_address+it->sfm_size);
else
- fprintf(fmap, "mapping %s %4lluKB 0x%0llX -> 0x%0llX\n", prot, it->sfm_size/1024,
+ fprintf(fmap, "mapping %s %4lluKB 0x%0llX -> 0x%0llX\n", prot, it->sfm_size/1024,
it->sfm_address, it->sfm_address+it->sfm_size);
}
- fprintf(fmap, "linkedit %4uKB 0x%0llX -> 0x%0llX weak binding info\n",
+ fprintf(fmap, " linkedit %4uKB 0x%0llX -> 0x%0llX weak binding info\n",
(fOffsetOfExportInfoInCombinedLinkedit-fOffsetOfWeakBindInfoInCombinedLinkedit)/1024,
fLinkEditsStartAddress+fOffsetOfWeakBindInfoInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfExportInfoInCombinedLinkedit);
- fprintf(fmap, "linkedit %4uKB 0x%0llX -> 0x%0llX export info\n",
+ fprintf(fmap, " linkedit %4uKB 0x%0llX -> 0x%0llX export info\n",
(fOffsetOfBindInfoInCombinedLinkedit-fOffsetOfExportInfoInCombinedLinkedit)/1024,
fLinkEditsStartAddress+fOffsetOfExportInfoInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfBindInfoInCombinedLinkedit);
- fprintf(fmap, "linkedit %4uKB 0x%0llX -> 0x%0llX binding info\n",
+ fprintf(fmap, " linkedit %4uKB 0x%0llX -> 0x%0llX binding info\n",
(fOffsetOfLazyBindInfoInCombinedLinkedit-fOffsetOfBindInfoInCombinedLinkedit)/1024,
fLinkEditsStartAddress+fOffsetOfBindInfoInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfLazyBindInfoInCombinedLinkedit);
- fprintf(fmap, "linkedit %4uKB 0x%0llX -> 0x%0llX lazy binding info\n",
+ fprintf(fmap, " linkedit %4uKB 0x%0llX -> 0x%0llX lazy binding info\n",
(fOffsetOfOldSymbolTableInfoInCombinedLinkedit-fOffsetOfLazyBindInfoInCombinedLinkedit)/1024,
fLinkEditsStartAddress+fOffsetOfLazyBindInfoInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfOldSymbolTableInfoInCombinedLinkedit);
- fprintf(fmap, "linkedit %4uMB 0x%0llX -> 0x%0llX non-dyld symbol table size\n",
+ fprintf(fmap, " linkedit %4uMB 0x%0llX -> 0x%0llX non-dyld symbol table size\n",
(fSizeOfOldSymbolTableInfoInCombinedLinkedit)/(1024*1024),
fLinkEditsStartAddress+fOffsetOfOldSymbolTableInfoInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfOldSymbolTableInfoInCombinedLinkedit+fSizeOfOldSymbolTableInfoInCombinedLinkedit);
if ( fSizeOfFunctionStartsInCombinedLinkedit != 0 )
- fprintf(fmap, "linkedit %4uKB 0x%0llX -> 0x%0llX non-dyld functions starts size\n",
+ fprintf(fmap, " linkedit %4uKB 0x%0llX -> 0x%0llX non-dyld functions starts size\n",
fSizeOfFunctionStartsInCombinedLinkedit/1024,
fLinkEditsStartAddress+fOffsetOfFunctionStartsInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfFunctionStartsInCombinedLinkedit+fSizeOfFunctionStartsInCombinedLinkedit);
+ if ( fSizeOfDataInCodeInCombinedLinkedit != 0 )
+ fprintf(fmap, " linkedit %4uKB 0x%0llX -> 0x%0llX non-dyld data-in-code info size\n",
+ fSizeOfDataInCodeInCombinedLinkedit/1024,
+ fLinkEditsStartAddress+fOffsetOfDataInCodeInCombinedLinkedit,
+ fLinkEditsStartAddress+fOffsetOfDataInCodeInCombinedLinkedit+fSizeOfDataInCodeInCombinedLinkedit);
if ( fSizeOfOldExternalRelocationsInCombinedLinkedit != 0 )
- fprintf(fmap, "linkedit %4uKB 0x%0llX -> 0x%0llX non-dyld external relocs size\n",
+ fprintf(fmap, " linkedit %4uKB 0x%0llX -> 0x%0llX non-dyld external relocs size\n",
fSizeOfOldExternalRelocationsInCombinedLinkedit/1024,
fLinkEditsStartAddress+fOffsetOfOldExternalRelocationsInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfOldExternalRelocationsInCombinedLinkedit+fSizeOfOldExternalRelocationsInCombinedLinkedit);
- fprintf(fmap, "linkedit %4uKB 0x%0llX -> 0x%0llX non-dyld indirect symbol table size\n",
+ fprintf(fmap, " linkedit %4uKB 0x%0llX -> 0x%0llX non-dyld indirect symbol table size\n",
fSizeOfOldIndirectSymbolsInCombinedLinkedit/1024,
fLinkEditsStartAddress+fOffsetOfOldIndirectSymbolsInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfOldIndirectSymbolsInCombinedLinkedit+fSizeOfOldIndirectSymbolsInCombinedLinkedit);
- fprintf(fmap, "linkedit %4uMB 0x%0llX -> 0x%0llX non-dyld string pool\n",
+ fprintf(fmap, " linkedit %4uMB 0x%0llX -> 0x%0llX non-dyld string pool\n",
(fSizeOfOldStringPoolInCombinedLinkedit)/(1024*1024),
fLinkEditsStartAddress+fOffsetOfOldStringPoolInCombinedLinkedit,
fLinkEditsStartAddress+fOffsetOfOldStringPoolInCombinedLinkedit+fSizeOfOldStringPoolInCombinedLinkedit);
+
+ fprintf(fmap, "unmapped -- %4uMB local symbol info\n", fUnmappedLocalSymbolsSize/(1024*1024));
+
+ uint64_t endMappingAddr = fMappings[2].sfm_address + fMappings[2].sfm_size;
+ fprintf(fmap, "total map %4lluMB\n", (endMappingAddr - sharedRegionStartAddress())/(1024*1024));
+ if ( sharedRegionStartWritableAddress(0) == 0x7FFF70000000LL ) {
+ // x86_64 has different slide constraints
+ uint64_t freeSpace = 256*1024*1024 - fMappings[1].sfm_size;
+ fprintf(fmap, "r/w space %4lluMB -> %d bits of entropy for ASLR\n\n", freeSpace/(1024*1024), (int)log2(freeSpace/4096));
+ }
+ else {
+ uint64_t freeSpace = sharedRegionStartAddress() + sharedRegionSize() - endMappingAddr;
+ fprintf(fmap, "free space %4lluMB -> %d bits of entropy for ASLR\n\n", freeSpace/(1024*1024), (int)log2(freeSpace/4096));
+ }
for(typename std::vector<LayoutInfo>::const_iterator it = fDylibs.begin(); it != fDylibs.end(); ++it) {
fprintf(fmap, "%s\n", it->layout->getID().name);
@@ -2774,8 +3129,9 @@
// <rdar://problem/8305479> images in shared cache are bound against different IOKit than found at runtime
// HACK: Just ignore the known bad IOKit
if ( strcmp(symbolStart, "/System/Library/Frameworks/IOKit.framework/IOKit") == 0 ) {
- fprintf(stderr, "update_dyld_shared_cache: warning, ignoring /System/Library/Frameworks/IOKit.framework/IOKit\n");
- warnings.push_back("update_dyld_shared_cache: warning, ignoring /System/Library/Frameworks/IOKit.framework/IOKit\n");
+ // Disable warning because after three years <rdar://problem/7089957> has still not been fixed...
+ //fprintf(stderr, "update_dyld_shared_cache: warning, ignoring /System/Library/Frameworks/IOKit.framework/IOKit\n");
+ //warnings.push_back("update_dyld_shared_cache: warning, ignoring /System/Library/Frameworks/IOKit.framework/IOKit\n");
}
else {
paths.push_back(symbolStart);
@@ -2795,10 +3151,11 @@
-static void setSharedDylibs(const char* rootPath, bool usesOverlay, const std::set<ArchPair>& onlyArchs, std::vector<const char*> rootsPaths)
+static void setSharedDylibs(const char* rootPath, const char* overlayPath, const std::set<ArchPair>& onlyArchs, std::vector<const char*> rootsPaths)
{
// set file system root
- ArchGraph::setFileSystemRoot(rootPath, usesOverlay);
+ ArchGraph::setFileSystemRoot(rootPath);
+ ArchGraph::setFileSystemOverlay(overlayPath);
// initialize all architectures requested
for(std::set<ArchPair>::iterator a = onlyArchs.begin(); a != onlyArchs.end(); ++a)
@@ -2814,12 +3171,11 @@
}
-static void scanForSharedDylibs(const char* rootPath, bool usesOverlay, const char* dirOfPathFiles, const std::set<ArchPair>& onlyArchs)
+static void scanForSharedDylibs(const char* rootPath, const char* overlayPath, const char* dirOfPathFiles, const std::set<ArchPair>& onlyArchs)
{
char rootDirOfPathFiles[strlen(rootPath)+strlen(dirOfPathFiles)+2];
- // in -overlay mode, still look for roots in /var/db/dyld
// in -root mode, look for roots in /rootpath/var/db/dyld
- if ( !usesOverlay && (strlen(rootPath) != 0) ) {
+ if ( rootPath[0] != '\0' ) {
strcpy(rootDirOfPathFiles, rootPath);
strcat(rootDirOfPathFiles, dirOfPathFiles);
dirOfPathFiles = rootDirOfPathFiles;
@@ -2860,14 +3216,14 @@
if ( rootsPaths.size() == 0 )
fprintf(stderr, "update_dyld_shared_cache: warning, no entries found in shared_region_roots\n");
- setSharedDylibs(rootPath, usesOverlay, onlyArchs, rootsPaths);
-}
-
-static void setSharedDylibs(const char* rootPath, bool usesOverlay, const char* pathsFile, const std::set<ArchPair>& onlyArchs)
+ setSharedDylibs(rootPath, overlayPath, onlyArchs, rootsPaths);
+}
+
+static void setSharedDylibs(const char* rootPath, const char* overlayPath, const char* pathsFile, const std::set<ArchPair>& onlyArchs)
{
std::vector<const char*> rootsPaths;
parsePathsFile(pathsFile, rootsPaths);
- setSharedDylibs(rootPath, usesOverlay, onlyArchs, rootsPaths);
+ setSharedDylibs(rootPath, overlayPath, onlyArchs, rootsPaths);
}
@@ -2914,8 +3270,8 @@
-static bool updateSharedeCacheFile(const char* rootPath, bool usesOverlay, const char* cacheDir, const std::set<ArchPair>& onlyArchs,
- bool force, bool alphaSort, bool optimize, bool deleteExistingFirst, bool verify, bool keepSignatures)
+static bool updateSharedeCacheFile(const char* rootPath, const char* overlayPath, const char* cacheDir, bool explicitCacheDir, const std::set<ArchPair>& onlyArchs,
+ bool force, bool alphaSort, bool optimize, bool deleteExistingFirst, bool verify, bool keepSignatures, bool dontMapLocalSymbols)
{
bool didUpdate = false;
// get dyld load address info
@@ -2940,34 +3296,22 @@
else
fprintf(stderr, "update_dyld_shared_cache: warning, dyld not available for specified architectures\n");
switch ( a->arch ) {
- case CPU_TYPE_POWERPC:
- {
- #if __i386__ || __x86_64__
- // <rdar://problem/5217377> Rosetta does not work with optimized dyld shared cache
- SharedCache<ppc> cache(ArchGraph::graphForArchPair(*a), rootPath, cacheDir, alphaSort, verify, false, usesOverlay, dyldBaseAddress);
- didUpdate |= cache.update(usesOverlay, force, false, deleteExistingFirst, index, archCount, keepSignatures);
- #else
- SharedCache<ppc> cache(ArchGraph::graphForArchPair(*a), rootPath, cacheDir, alphaSort, verify, optimize, usesOverlay, dyldBaseAddress);
- didUpdate |= cache.update(usesOverlay, force, optimize, deleteExistingFirst, index, archCount, keepSignatures);
- #endif
- }
- break;
case CPU_TYPE_I386:
{
- SharedCache<x86> cache(ArchGraph::graphForArchPair(*a), rootPath, cacheDir, alphaSort, verify, optimize, usesOverlay, dyldBaseAddress);
- didUpdate |= cache.update(usesOverlay, force, optimize, deleteExistingFirst, index, archCount, keepSignatures);
+ SharedCache<x86> cache(ArchGraph::graphForArchPair(*a), rootPath, overlayPath, cacheDir, explicitCacheDir, alphaSort, verify, optimize, dyldBaseAddress);
+ didUpdate |= cache.update(force, optimize, deleteExistingFirst, index, archCount, keepSignatures, dontMapLocalSymbols);
}
break;
case CPU_TYPE_X86_64:
{
- SharedCache<x86_64> cache(ArchGraph::graphForArchPair(*a), rootPath, cacheDir, alphaSort, verify, optimize, usesOverlay, dyldBaseAddress);
- didUpdate |= cache.update(usesOverlay, force, optimize, deleteExistingFirst, index, archCount, keepSignatures);
+ SharedCache<x86_64> cache(ArchGraph::graphForArchPair(*a), rootPath, overlayPath, cacheDir, explicitCacheDir, alphaSort, verify, optimize, dyldBaseAddress);
+ didUpdate |= cache.update(force, optimize, deleteExistingFirst, index, archCount, keepSignatures, dontMapLocalSymbols);
}
break;
case CPU_TYPE_ARM:
{
- SharedCache<arm> cache(ArchGraph::graphForArchPair(*a), rootPath, cacheDir, alphaSort, verify, optimize, usesOverlay, dyldBaseAddress);
- didUpdate |= cache.update(usesOverlay, force, optimize, deleteExistingFirst, index, archCount, keepSignatures);
+ SharedCache<arm> cache(ArchGraph::graphForArchPair(*a), rootPath, overlayPath, cacheDir, explicitCacheDir, alphaSort, verify, optimize, dyldBaseAddress);
+ didUpdate |= cache.update(force, optimize, deleteExistingFirst, index, archCount, keepSignatures, dontMapLocalSymbols);
}
break;
}
@@ -2990,14 +3334,15 @@
{
std::set<ArchPair> onlyArchs;
const char* rootPath = "";
+ const char* overlayPath = "";
const char* dylibListFile = NULL;
bool force = false;
bool alphaSort = false;
bool optimize = true;
- bool hasRoot = false;
- bool hasOverlay = false;
bool verify = false;
bool keepSignatures = false;
+ bool explicitCacheDir = false;
+ bool dontMapLocalSymbols = false;
const char* cacheDir = NULL;
try {
@@ -3026,8 +3371,12 @@
else if ( strcmp(arg, "-no_opt") == 0 ) {
optimize = false;
}
+ else if ( strcmp(arg, "-dont_map_local_symbols") == 0 ) {
+ dontMapLocalSymbols = true;
+ }
else if ( strcmp(arg, "-iPhone") == 0 ) {
iPhoneOS = true;
+ alphaSort = true;
}
else if ( strcmp(arg, "-dylib_list") == 0 ) {
dylibListFile = argv[++i];
@@ -3035,31 +3384,24 @@
throw "-dylib_list missing path argument";
}
else if ( (strcmp(arg, "-root") == 0) || (strcmp(arg, "--root") == 0) ) {
- if ( hasOverlay )
- throw "cannot use both -root and -overlay";
rootPath = argv[++i];
if ( rootPath == NULL )
throw "-root missing path argument";
- hasRoot = true;
}
else if ( strcmp(arg, "-overlay") == 0 ) {
- if ( hasRoot )
- throw "cannot use both -root and -overlay";
- rootPath = argv[++i];
- if ( rootPath == NULL )
- throw "-root missing path argument";
- hasOverlay = true;
+ overlayPath = argv[++i];
+ if ( overlayPath == NULL )
+ throw "-overlay missing path argument";
}
else if ( strcmp(arg, "-cache_dir") == 0 ) {
cacheDir = argv[++i];
if ( cacheDir == NULL )
throw "-cache_dir missing path argument";
+ explicitCacheDir = true;
}
else if ( strcmp(arg, "-arch") == 0 ) {
const char* arch = argv[++i];
- if ( strcmp(arch, "ppc") == 0 )
- onlyArchs.insert(ArchPair(CPU_TYPE_POWERPC, CPU_SUBTYPE_POWERPC_ALL));
- else if ( strcmp(arch, "i386") == 0 )
+ if ( strcmp(arch, "i386") == 0 )
onlyArchs.insert(ArchPair(CPU_TYPE_I386, CPU_SUBTYPE_I386_ALL));
else if ( strcmp(arch, "x86_64") == 0 )
onlyArchs.insert(ArchPair(CPU_TYPE_X86_64, CPU_SUBTYPE_X86_64_ALL));
@@ -3071,13 +3413,16 @@
onlyArchs.insert(ArchPair(CPU_TYPE_ARM, CPU_SUBTYPE_ARM_V6));
else if ( strcmp(arch, "armv7") == 0 )
onlyArchs.insert(ArchPair(CPU_TYPE_ARM, CPU_SUBTYPE_ARM_V7));
+ else if ( strcmp(arch, "armv7f") == 0 )
+ onlyArchs.insert(ArchPair(CPU_TYPE_ARM, CPU_SUBTYPE_ARM_V7F));
+ else if ( strcmp(arch, "armv7k") == 0 )
+ onlyArchs.insert(ArchPair(CPU_TYPE_ARM, CPU_SUBTYPE_ARM_V7K));
+ else if ( strcmp(arch, "armv7s") == 0 )
+ onlyArchs.insert(ArchPair(CPU_TYPE_ARM, CPU_SUBTYPE_ARM_V7S));
else
throwf("unknown architecture %s", arch);
}
else if ( strcmp(arg, "-universal_boot") == 0 ) {
- #if __ppc__
- throwf("universal_boot option can only be used on Intel machines");
- #endif
onlyArchs.insert(ArchPair(CPU_TYPE_X86_64, CPU_SUBTYPE_X86_64_ALL));
onlyArchs.insert(ArchPair(CPU_TYPE_I386, CPU_SUBTYPE_I386_ALL));
}
@@ -3092,7 +3437,7 @@
}
}
- // strip tailing slashes on -root or -overlay
+ // strip tailing slashes on -root
// make it a real path so as to not make all dylibs look like symlink aliases
if ( rootPath[0] != '\0' ) {
char realRootPath[MAXPATHLEN];
@@ -3101,15 +3446,17 @@
rootPath = strdup(realRootPath);
}
- // set location to write cache dir
- if ( cacheDir == NULL ) {
- if ( (rootPath[0] == '\0') || hasOverlay ) {
- cacheDir = (iPhoneOS ? IPHONE_DYLD_SHARED_CACHE_DIR : MACOSX_DYLD_SHARED_CACHE_DIR);
- }
- else {
- asprintf((char**)&cacheDir, "%s/%s", rootPath, (iPhoneOS ? IPHONE_DYLD_SHARED_CACHE_DIR : MACOSX_DYLD_SHARED_CACHE_DIR));
- }
- }
+ // strip tailing slashes on -overlay
+ if ( overlayPath[0] != '\0' ) {
+ char realOverlayPath[MAXPATHLEN];
+ if ( realpath(overlayPath, realOverlayPath) == NULL )
+ throwf("realpath() failed on %s\n", overlayPath);
+ overlayPath = strdup(realOverlayPath);
+ }
+
+ // set default location to write cache dir
+ if ( cacheDir == NULL )
+ cacheDir = (iPhoneOS ? IPHONE_DYLD_SHARED_CACHE_DIR : MACOSX_DYLD_SHARED_CACHE_DIR);
// if no restrictions specified, use architectures that work on this machine
if ( onlyArchs.size() == 0 ) {
@@ -3122,19 +3469,6 @@
size_t len = sizeof(int);
#if __i386__ || __x86_64__
onlyArchs.insert(ArchPair(CPU_TYPE_I386, CPU_SUBTYPE_I386_ALL));
- // check rosetta is installed
- char rosettaPath[1024];
- strlcpy(rosettaPath, rootPath, 1024);
- strlcat(rosettaPath, "/usr/libexec/oah/translate", 1024);
- struct stat stat_buf;
- if ( stat(rosettaPath, &stat_buf) == 0 ) {
- onlyArchs.insert(ArchPair(CPU_TYPE_POWERPC, CPU_SUBTYPE_POWERPC_ALL));
- }
- else if ( hasOverlay ) {
- // in overlay mode, rosetta may be installed on base system, but is not in update root
- if ( stat("/usr/libexec/oah/translate", &stat_buf) == 0 )
- onlyArchs.insert(ArchPair(CPU_TYPE_POWERPC, CPU_SUBTYPE_POWERPC_ALL));
- }
// check system is capable of running 64-bit programs
if ( (sysctlbyname("hw.optional.x86_64", &available, &len, NULL, 0) == 0) && available )
onlyArchs.insert(ArchPair(CPU_TYPE_X86_64, CPU_SUBTYPE_X86_64_ALL));
@@ -3149,11 +3483,26 @@
// build list of shared dylibs
if ( dylibListFile != NULL )
- setSharedDylibs(rootPath, hasOverlay, dylibListFile, onlyArchs);
+ setSharedDylibs(rootPath, overlayPath, dylibListFile, onlyArchs);
else
- scanForSharedDylibs(rootPath, hasOverlay, "/var/db/dyld/shared_region_roots/", onlyArchs);
- updateSharedeCacheFile(rootPath, hasOverlay, cacheDir, onlyArchs, force, alphaSort, optimize,
- false, verify, keepSignatures);
+ scanForSharedDylibs(rootPath, overlayPath, "/var/db/dyld/shared_region_roots/", onlyArchs);
+ bool didUpdate = updateSharedeCacheFile(rootPath, overlayPath, cacheDir, explicitCacheDir, onlyArchs, force, alphaSort, optimize,
+ false, verify, keepSignatures, dontMapLocalSymbols);
+
+ if ( didUpdate && !iPhoneOS ) {
+ void* handle = dlopen("/usr/lib/libspindump.dylib", RTLD_LAZY);
+ if ( handle != NULL ) {
+ typedef bool (*dscsym_proc_t)(const char *root);
+ dscsym_proc_t proc = (dscsym_proc_t)dlsym(handle, "dscsym_save_nuggets_for_current_caches");
+ const char* nuggetRootPath = "/";
+ if ( overlayPath[0] != '\0' )
+ nuggetRootPath = overlayPath;
+ else if ( rootPath[0] != '\0' )
+ nuggetRootPath = rootPath;
+ (*proc)(nuggetRootPath);
+ }
+ dlclose(handle);
+ }
}
catch (const char* msg) {
fprintf(stderr, "update_dyld_shared_cache failed: %s\n", msg);