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|
// **********************************************************************
//
// Copyright (c) 2003-2004 ZeroC, Inc. All rights reserved.
//
// This copy of Ice is licensed to you under the terms described in the
// ICE_LICENSE file included in this distribution.
//
// **********************************************************************
#include <Ice/Application.h>
#include <IcePatch/FileDescFactory.h>
#include <IcePatch/Util.h>
#include <IcePatch/ClientUtil.h>
#include <Glacier/Glacier.h>
#include <IceUtil/Base64.h>
#include <IceSSL/Plugin.h>
#include <iomanip>
#ifdef _WIN32
# include <direct.h>
#endif
#include <set>
using namespace std;
using namespace Ice;
using namespace IcePatch;
namespace IcePatch
{
class Client : public Application
{
public:
void usage();
virtual int run(int, char*[]);
private:
void patch(const DirectoryDescPtr&, const string&, Long&, Long) const;
bool _remove;
bool _thorough;
};
}
void
IcePatch::Client::usage()
{
cerr << "Usage: " << appName() << " [options] [sub-directories...]\n";
cerr <<
"Options:\n"
"-h, --help Show this message.\n"
"-v, --version Display the Ice version.\n"
;
}
int
IcePatch::Client::run(int argc, char* argv[])
{
Glacier::RouterPrx router;
try
{
int idx = 1;
while(idx < argc)
{
if(strcmp(argv[idx], "-h") == 0 || strcmp(argv[idx], "--help") == 0)
{
usage();
return EXIT_SUCCESS;
}
else if(strcmp(argv[idx], "-v") == 0 || strcmp(argv[idx], "--version") == 0)
{
cout << ICE_STRING_VERSION << endl;
return EXIT_SUCCESS;
}
else if(argv[idx][0] == '-')
{
cerr << appName() << ": unknown option `" << argv[idx] << "'" << endl;
usage();
return EXIT_FAILURE;
}
else
{
++idx;
}
}
vector<string> subdirs;
if(argc > 1)
{
for(int i = 1; i < argc; ++i)
{
subdirs.push_back(argv[i]);
}
}
else
{
subdirs.push_back(".");
}
PropertiesPtr properties = communicator()->getProperties();
//
// Do Glacier setup, if so requested.
//
const char* glacierStarterEndpointsProperty = "Glacier.Starter.Endpoints";
string glacierStarterEndpoints = properties->getProperty(glacierStarterEndpointsProperty);
if(!glacierStarterEndpoints.empty())
{
ObjectPrx starterBase = communicator()->stringToProxy("Glacier/starter:" + glacierStarterEndpoints);
Glacier::StarterPrx starter = Glacier::StarterPrx::checkedCast(starterBase);
if(!starter)
{
cerr << appName() << ": endpoints `" << glacierStarterEndpoints
<< "' do not refer to a glacier router starter" << endl;
return EXIT_FAILURE;
}
ByteSeq privateKey;
ByteSeq publicKey;
ByteSeq routerCert;
while(!router)
{
string id;
string pw;
cout << "user id: " << flush;
cin >> id;
cout << "password: " << flush;
cin >> pw;
try
{
router = starter->startRouter(id, pw, privateKey, publicKey, routerCert);
}
catch(const Glacier::CannotStartRouterException& ex)
{
cerr << appName() << ": " << ex << ":\n" << ex.reason << endl;
return EXIT_FAILURE;
}
catch(const Glacier::PermissionDeniedException&)
{
cout << "password is invalid, try again" << endl;
}
}
string clientConfig = properties->getProperty("IceSSL.Client.Config");
if(!clientConfig.empty())
{
string privateKeyBase64 = IceUtil::Base64::encode(privateKey);
string publicKeyBase64 = IceUtil::Base64::encode(publicKey);
string routerCertString = IceUtil::Base64::encode(routerCert);
PluginManagerPtr pluginManager = communicator()->getPluginManager();
PluginPtr plugin = pluginManager->getPlugin("IceSSL");
IceSSL::PluginPtr sslPlugin = IceSSL::PluginPtr::dynamicCast(plugin);
assert(sslPlugin);
sslPlugin->setCertificateVerifier(IceSSL::Client, sslPlugin->getSingleCertVerifier(routerCert));
sslPlugin->setRSAKeysBase64(IceSSL::Client, privateKeyBase64, publicKeyBase64);
sslPlugin->addTrustedCertificateBase64(IceSSL::Client, routerCertString);
}
communicator()->setDefaultRouter(router);
}
//
// Get the IcePatch endpoints.
//
const char* endpointsProperty = "IcePatch.Endpoints";
string endpoints = properties->getProperty(endpointsProperty);
if(endpoints.empty())
{
cerr << appName() << ": property `" << endpointsProperty << "' is not set" << endl;
return EXIT_FAILURE;
}
//
// Get the working directory and change to this directory.
//
const char* directoryProperty = "IcePatch.Directory";
string directory = properties->getProperty(directoryProperty);
if(!directory.empty())
{
#ifdef _WIN32
if(_chdir(directory.c_str()) == -1)
#else
if(chdir(directory.c_str()) == -1)
#endif
{
cerr << appName() << ": cannot change to directory `" << directory << "': " << strerror(errno) << endl;
return EXIT_FAILURE;
}
}
#ifdef _WIN32
char cwd[_MAX_PATH];
_getcwd(cwd, _MAX_PATH);
#else
char cwd[PATH_MAX];
getcwd(cwd, PATH_MAX);
#endif
//
// Check whether we want to remove orphaned files.
//
_remove = properties->getPropertyAsInt("IcePatch.RemoveOrphaned") > 0;
if(_remove)
{
cout << "WARNING: All orphaned files in `" << cwd << "' will be removed." << endl;
string answer;
do
{
cout << "Do you want to proceed? (yes/no)" << endl;
cin >> answer;
transform(answer.begin(), answer.end(), answer.begin(), ::tolower);
if(answer == "no")
{
return EXIT_SUCCESS;
}
}
while(answer != "yes");
}
//
// Check whether we want to do a thorough check.
//
_thorough = properties->getPropertyAsInt("IcePatch.Thorough") > 0;
//
// Create and install the node description factories.
//
ObjectFactoryPtr factory = new FileDescFactory;
communicator()->addObjectFactory(factory, "::IcePatch::DirectoryDesc");
communicator()->addObjectFactory(factory, "::IcePatch::RegularDesc");
//
// Patch all subdirectories.
//
FilePrx top;
for(vector<string>::const_iterator p = subdirs.begin(); p != subdirs.end(); ++p)
{
Identity identity = pathToIdentity(*p);
ObjectPrx topObj = communicator()->stringToProxy(identityToString(identity) + ':' + endpoints);
try
{
top = FilePrx::checkedCast(topObj);
}
catch(const ObjectNotExistException&)
{
}
if(!top)
{
cerr << appName() << ": `" << *p << "' does not exist" << endl;
return EXIT_FAILURE;
}
DirectoryDescPtr topDesc = DirectoryDescPtr::dynamicCast(top->describe());
if(!topDesc)
{
cerr << appName() << ": `" << *p << "' is not a directory" << endl;
return EXIT_FAILURE;
}
string::size_type pos = 0;
while(pos < p->size())
{
string::size_type pos2 = p->find('/', pos);
if(pos2 == string::npos)
{
pos2 = p->size();
}
string subPath = p->substr(0, pos2);
FileInfo subPathInfo = getFileInfo(subPath, false);
if(subPathInfo.type == FileTypeNotExist)
{
createDirectory(subPath);
cout << subPath << ": created" << endl;
}
pos = pos2 + 1;
}
cout << pathToName(*p) << endl;
string dir = *p;
if(dir == ".")
{
dir = cwd;
}
Long total = 0;
ByteSeq md5;
try
{
md5 = getMD5(dir);
}
catch(const FileAccessException&)
{
}
total = topDesc->dir->getTotal(md5);
Long runningTotal = 0;
patch(topDesc, "", runningTotal, total);
createMD5(dir);
}
}
catch(const FileAccessException& ex)
{
cout << endl; // There might still be a non-terminated line on cout.
cerr << appName() << ": " << ex << ":\n" << ex.reason << endl;
if(router)
{
router->shutdown();
}
return EXIT_FAILURE;
}
catch(const BusyException&)
{
cout << endl; // There might still be a non-terminated line on cout.
cerr << appName() << ": patching service busy, try again later" << endl;
if(router)
{
router->shutdown();
}
return EXIT_FAILURE;
}
catch(...)
{
cout << endl; // There might still be a non-terminated line on cout.
if(router)
{
router->shutdown();
}
throw; // Let Application::main() print the error message for this exception.
}
if(router)
{
router->shutdown();
}
return EXIT_SUCCESS;
}
class MyProgressCB : public ProgressCB
{
public:
MyProgressCB(Long runningTotal, Long patchTotal) :
_runningTotal(runningTotal), _patchTotal(patchTotal)
{
}
virtual void startDownload(Int total, Int pos)
{
Ice::Int percent = pos * 100 / total;
cout << " download " << setw(3) << percent << "%" << flush;
_fileTotal = 0;
}
virtual void updateDownload(Int total, Int pos)
{
Ice::Int percent = pos * 100 / total;
cout << "\b\b\b\b" << setw(3) << percent << "%" << flush;
}
virtual void finishedDownload(Int total)
{
updateDownload(total, total);
_fileTotal = total;
}
virtual void startUncompress(Int total, Int pos)
{
Ice::Int percent = pos * 100 / total;
cout << " uncompress " << setw(3) << percent << "%" << flush;
}
virtual void updateUncompress(Int total, Int pos)
{
Ice::Int percent = pos * 100 / total;
cout << "\b\b\b\b" << setw(3) << percent << "%" << flush;
}
virtual void finishedUncompress(Int total)
{
finishedDownload(total);
if(_patchTotal > 0)
{
Long percent = ((_runningTotal + _fileTotal) * 100) / _patchTotal;
if(percent > 100)
{
percent = 100;
}
cout << " (" << static_cast<Int>(percent) << "% complete)";
}
cout << endl;
}
private:
Long _runningTotal;
Long _patchTotal;
Int _fileTotal;
};
#ifdef _WIN32
typedef set<string, CICompare> OrphanedSet;
#else
typedef set<string> OrphanedSet;
#endif
void
IcePatch::Client::patch(const DirectoryDescPtr& dirDesc, const string& indent, Long& runningTotal,
Long patchTotal) const
{
OrphanedSet orphaned;
if(_remove)
{
StringSeq fullDirectoryListing = readDirectory(identityToPath(dirDesc->dir->ice_getIdentity()));
for(StringSeq::const_iterator p = fullDirectoryListing.begin(); p != fullDirectoryListing.end(); ++p)
{
orphaned.insert(*p);
}
}
FileDescSeq fileDescSeq = dirDesc->dir->getContents();
for(unsigned int i = 0; i < fileDescSeq.size(); ++i)
{
string path;
DirectoryDescPtr subDirDesc = DirectoryDescPtr::dynamicCast(fileDescSeq[i]);
RegularDescPtr regDesc;
if(subDirDesc)
{
path = identityToPath(subDirDesc->dir->ice_getIdentity());
}
else
{
regDesc = RegularDescPtr::dynamicCast(fileDescSeq[i]);
assert(regDesc);
path = identityToPath(regDesc->reg->ice_getIdentity());
}
if(_remove)
{
orphaned.erase(path);
orphaned.erase(path + ".md5");
}
bool last = (i == fileDescSeq.size() - 1) && orphaned.empty();
if(subDirDesc)
{
cout << indent << "+-" << pathToName(path) << ":";
FileInfo info = getFileInfo(path, false);
switch(info.type)
{
case FileTypeNotExist:
{
createDirectory(path);
cout << " created" << endl;
break;
}
case FileTypeDirectory:
{
cout << " ok" << endl;
if(!_thorough && !subDirDesc->md5.empty())
{
ByteSeq md5;
string pathMD5 = path + ".md5";
FileInfo infoMD5 = getFileInfo(pathMD5, false);
if(infoMD5.type == FileTypeRegular && infoMD5.time >= info.time)
{
md5 = getMD5(path);
}
if(md5 == subDirDesc->md5)
{
continue;
}
}
break;
}
case FileTypeRegular:
{
removeRecursive(path);
createDirectory(path);
cout << " created" << endl;
break;
}
}
string newIndent;
if(last)
{
newIndent = indent + " ";
}
else
{
newIndent = indent + "| ";
}
patch(subDirDesc, newIndent, runningTotal, patchTotal);
if(!subDirDesc->md5.empty())
{
putMD5(path, subDirDesc->md5);
}
}
else
{
assert(regDesc);
cout << indent << "+-" << pathToName(path) << ":";
MyProgressCB progressCB(runningTotal, patchTotal);
bool update = false;
FileInfo info = getFileInfo(path, false);
switch(info.type)
{
case FileTypeNotExist:
{
update = true;
break;
}
case FileTypeDirectory:
{
removeRecursive(path);
update = true;
break;
}
case FileTypeRegular:
{
ByteSeq md5;
if(_thorough)
{
md5 = calcMD5(path);
}
else
{
string pathMD5 = path + ".md5";
FileInfo infoMD5 = getFileInfo(pathMD5, false);
if(infoMD5.type == FileTypeRegular && infoMD5.time >= info.time)
{
md5 = getMD5(path);
}
}
if(md5 != regDesc->md5)
{
removeRecursive(path);
update = true;
}
else
{
cout << " ok" << endl;
}
break;
}
}
if(update)
{
orphaned.erase(path + ".bz2");
int retries = 0;
while(true)
{
//
// Retrieve file from server.
//
getRegular(regDesc->reg, progressCB);
//
// Get the latest file description from server, as
// the file may mave recently changed.
//
regDesc = RegularDescPtr::dynamicCast(regDesc->reg->describe());
if(!regDesc)
{
removeRecursive(path);
FileAccessException ex;
ex.reason = "Unexpected error accessing `" + path + "' remotely.";
throw ex;
}
//
// Compare the icepatch and locally built MD5s. If
// they differ, try again unless we've hit the
// retry limit.
//
ByteSeq md5;
string pathMD5 = path + ".md5";
FileInfo infoMD5 = getFileInfo(pathMD5, false);
if(infoMD5.type == FileTypeRegular)
{
md5 = getMD5(path);
}
if(regDesc->md5 == md5)
{
runningTotal += regDesc->reg->getBZ2Size();
break;
}
else if(retries < 3)
{
++retries;
}
else
{
removeRecursive(path);
FileAccessException ex;
ex.reason = "Retry count exceeded while patching `" + path + "':\n";
if(infoMD5.type == FileTypeRegular)
{
ex.reason += "MD5 mismatch";
}
else
{
ex.reason += "MD5 file not found";
}
throw ex;
}
}
}
}
}
for(OrphanedSet::const_iterator p = orphaned.begin(); p != orphaned.end(); ++p)
{
cout << indent << "+-" << pathToName(*p) << ": removing orphaned file" << endl;
removeRecursive(*p);
}
}
int
main(int argc, char* argv[])
{
Client app;
return app.main(argc, argv);
}
|