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authorThiago Macieira <thiago.macieira@nokia.com>2010-04-16 11:31:06 (GMT)
committerThiago Macieira <thiago.macieira@nokia.com>2010-04-16 11:33:38 (GMT)
commit26b9ca7189676b6afd055ec64fc211afaf652f7f (patch)
tree7eba29e85466ffc7403d438b4e77415e816a78d3 /tests/manual
parent4b684fb390c0bb63c8a68b6281fd5a77629a94d2 (diff)
downloadQt-26b9ca7189676b6afd055ec64fc211afaf652f7f.zip
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Add SSL remote host tests
Diffstat (limited to 'tests/manual')
-rw-r--r--tests/manual/network_remote_stresstest/tst_network_remote_stresstest.cpp129
1 files changed, 95 insertions, 34 deletions
diff --git a/tests/manual/network_remote_stresstest/tst_network_remote_stresstest.cpp b/tests/manual/network_remote_stresstest/tst_network_remote_stresstest.cpp
index dca09c1..542147c 100644
--- a/tests/manual/network_remote_stresstest/tst_network_remote_stresstest.cpp
+++ b/tests/manual/network_remote_stresstest/tst_network_remote_stresstest.cpp
@@ -85,7 +85,7 @@ public:
qint64 byteCounter;
QNetworkAccessManager manager;
- QVector<QUrl> httpUrls;
+ QVector<QUrl> httpUrls, httpsUrls, mixedUrls;
bool intermediateDebug;
private:
@@ -125,17 +125,26 @@ tst_NetworkRemoteStressTest::tst_NetworkRemoteStressTest()
QUrl url = QUrl::fromEncoded(line);
if (url.scheme() == "http")
httpUrls << url;
+ else if (url.scheme() == "https")
+ httpsUrls << url;
+ mixedUrls << url;
}
}
httpUrls << httpUrls;
+ httpsUrls << httpsUrls;
}
void tst_NetworkRemoteStressTest::initTestCase_data()
{
QTest::addColumn<QVector<QUrl> >("urlList");
+ QTest::addColumn<bool>("useSslSocket");
- QTest::newRow("no-ssl") << httpUrls;
+// QTest::newRow("no-ssl") << httpUrls << false;
+// QTest::newRow("no-ssl-in-sslsocket") << httpUrls << true;
+ QTest::newRow("ssl") << httpsUrls << true;
+ QTest::newRow("mixed") << mixedUrls << false;
+// QTest::newRow("mixed-in-sslsocket") << mixedUrls << true;
}
void tst_NetworkRemoteStressTest::init()
@@ -145,7 +154,6 @@ void tst_NetworkRemoteStressTest::init()
if (strncmp(QTest::currentTestFunction(), "nam") == 0)
QSKIP("QNetworkAccessManager tests disabled", SkipAll);
#endif
- qDebug() << QTest::currentTestFunction() << QTest::currentDataTag();
}
void tst_NetworkRemoteStressTest::clearManager()
@@ -219,6 +227,7 @@ bool nativeSelect(int fd, int timeout, bool selectForWrite)
void tst_NetworkRemoteStressTest::blockingSequentialRemoteHosts()
{
QFETCH_GLOBAL(QVector<QUrl>, urlList);
+ QFETCH_GLOBAL(bool, useSslSocket);
qint64 totalBytes = 0;
QElapsedTimer outerTimer;
@@ -226,27 +235,41 @@ void tst_NetworkRemoteStressTest::blockingSequentialRemoteHosts()
for (int i = 0; i < urlList.size(); ++i) {
const QUrl &url = urlList.at(i);
+ bool isHttps = url.scheme() == "https";
QElapsedTimer timeout;
byteCounter = 0;
timeout.start();
- QTcpSocket socket;
- socket.connectToHost(url.host(), url.port(80));
- QVERIFY2(socket.waitForConnected(10000), "Timeout connecting");
-
- socket.write("GET " + url.toEncoded(QUrl::RemoveScheme | QUrl::RemoveAuthority | QUrl::RemoveFragment) + " HTTP/1.0\r\n"
- "Connection: close\r\n"
- "User-Agent: tst_QTcpSocket_stresstest/1.0\r\n"
- "Host: " + url.encodedHost() + "\r\n"
- "\r\n");
- while (socket.bytesToWrite())
- QVERIFY2(socket.waitForBytesWritten(10000), "Timeout writing");
-
- while (socket.state() == QAbstractSocket::ConnectedState && !timeout.hasExpired(10000)) {
- socket.waitForReadyRead(10000);
- byteCounter += socket.readAll().size(); // discard
+ QSharedPointer<QTcpSocket> socket;
+ if (useSslSocket || isHttps) {
+ socket = QSharedPointer<QTcpSocket>(new QSslSocket);
+ } else {
+ socket = QSharedPointer<QTcpSocket>(new QTcpSocket);
}
- QVERIFY2(!timeout.hasExpired(10000), "Timeout reading");
+
+ socket->connectToHost(url.host(), url.port(isHttps ? 443 : 80));
+ QVERIFY2(socket->waitForConnected(10000), "Timeout connecting to " + url.encodedHost());
+
+ if (isHttps) {
+ static_cast<QSslSocket *>(socket.data())->setProtocol(QSsl::TlsV1);
+ static_cast<QSslSocket *>(socket.data())->startClientEncryption();
+ static_cast<QSslSocket *>(socket.data())->ignoreSslErrors();
+ QVERIFY2(static_cast<QSslSocket *>(socket.data())->waitForEncrypted(10000), "Timeout starting TLS with " + url.encodedHost());
+ }
+
+ socket->write("GET " + url.toEncoded(QUrl::RemoveScheme | QUrl::RemoveAuthority | QUrl::RemoveFragment) + " HTTP/1.0\r\n"
+ "Connection: close\r\n"
+ "User-Agent: tst_QTcpSocket_stresstest/1.0\r\n"
+ "Host: " + url.encodedHost() + "\r\n"
+ "\r\n");
+ while (socket->bytesToWrite())
+ QVERIFY2(socket->waitForBytesWritten(10000), "Timeout writing to " + url.encodedHost());
+
+ while (socket->state() == QAbstractSocket::ConnectedState && !timeout.hasExpired(10000)) {
+ socket->waitForReadyRead(10000);
+ byteCounter += socket->readAll().size(); // discard
+ }
+ QVERIFY2(!timeout.hasExpired(10000), "Timeout reading from " + url.encodedHost());
totalBytes += byteCounter;
if (intermediateDebug) {
@@ -261,6 +284,7 @@ void tst_NetworkRemoteStressTest::blockingSequentialRemoteHosts()
void tst_NetworkRemoteStressTest::sequentialRemoteHosts()
{
QFETCH_GLOBAL(QVector<QUrl>, urlList);
+ QFETCH_GLOBAL(bool, useSslSocket);
qint64 totalBytes = 0;
QElapsedTimer outerTimer;
@@ -268,23 +292,35 @@ void tst_NetworkRemoteStressTest::sequentialRemoteHosts()
for (int i = 0; i < urlList.size(); ++i) {
const QUrl &url = urlList.at(i);
+ bool isHttps = url.scheme() == "https";
QElapsedTimer timeout;
byteCounter = 0;
timeout.start();
- QTcpSocket socket;
- socket.connectToHost(url.host(), url.port(80));
+ QSharedPointer<QTcpSocket> socket;
+ if (useSslSocket || isHttps) {
+ socket = QSharedPointer<QTcpSocket>(new QSslSocket);
+ } else {
+ socket = QSharedPointer<QTcpSocket>(new QTcpSocket);
+ }
+ socket->connectToHost(url.host(), url.port(isHttps ? 443 : 80));
+ if (isHttps) {
+ static_cast<QSslSocket *>(socket.data())->setProtocol(QSsl::TlsV1);
+ static_cast<QSslSocket *>(socket.data())->startClientEncryption();
+ static_cast<QSslSocket *>(socket.data())->ignoreSslErrors();
+ }
- socket.write("GET " + url.toEncoded(QUrl::RemoveScheme | QUrl::RemoveAuthority | QUrl::RemoveFragment) + " HTTP/1.0\r\n"
- "Connection: close\r\n"
- "User-Agent: tst_QTcpSocket_stresstest/1.0\r\n"
- "Host: " + url.encodedHost() + "\r\n"
- "\r\n");
- connect(&socket, SIGNAL(readyRead()), SLOT(slotReadAll()));
+ socket->write("GET " + url.toEncoded(QUrl::RemoveScheme | QUrl::RemoveAuthority | QUrl::RemoveFragment) + " HTTP/1.0\r\n"
+ "Connection: close\r\n"
+ "User-Agent: tst_QTcpSocket_stresstest/1.0\r\n"
+ "Host: " + url.encodedHost() + "\r\n"
+ "\r\n");
+ connect(socket.data(), SIGNAL(readyRead()), SLOT(slotReadAll()));
- QTestEventLoop::instance().connect(&socket, SIGNAL(disconnected()), SLOT(exitLoop()));
+ QTestEventLoop::instance().connect(socket.data(), SIGNAL(disconnected()), SLOT(exitLoop()));
QTestEventLoop::instance().enterLoop(30);
- QVERIFY2(!QTestEventLoop::instance().timeout(), "Timeout");
+ QVERIFY2(!QTestEventLoop::instance().timeout(), "Timeout with " + url.encodedHost() + "; "
+ + QByteArray::number(socket->bytesToWrite()) + " bytes to write");
totalBytes += byteCounter;
if (intermediateDebug) {
@@ -313,6 +349,7 @@ void tst_NetworkRemoteStressTest::parallelRemoteHosts_data()
void tst_NetworkRemoteStressTest::parallelRemoteHosts()
{
QFETCH_GLOBAL(QVector<QUrl>, urlList);
+ QFETCH_GLOBAL(bool, useSslSocket);
QFETCH(int, parallelAttempts);
@@ -330,8 +367,18 @@ void tst_NetworkRemoteStressTest::parallelRemoteHosts()
sockets.reserve(parallelAttempts);
for (int j = 0; j < parallelAttempts && it != urlList.constEnd(); ++j, ++it) {
const QUrl &url = *it;
- QTcpSocket *socket = new QTcpSocket;
- socket->connectToHost(url.host(), url.port(80));
+ bool isHttps = url.scheme() == "https";
+ QTcpSocket *socket;
+ if (useSslSocket || isHttps)
+ socket = new QSslSocket;
+ else
+ socket = new QTcpSocket;
+ socket->connectToHost(url.host(), url.port(isHttps ? 443 : 80));
+ if (isHttps) {
+ static_cast<QSslSocket *>(socket)->setProtocol(QSsl::TlsV1);
+ static_cast<QSslSocket *>(socket)->startClientEncryption();
+ static_cast<QSslSocket *>(socket)->ignoreSslErrors();
+ }
socket->write("GET " + url.toEncoded(QUrl::RemoveScheme | QUrl::RemoveAuthority | QUrl::RemoveFragment) + " HTTP/1.0\r\n"
"Connection: close\r\n"
@@ -340,11 +387,12 @@ void tst_NetworkRemoteStressTest::parallelRemoteHosts()
"\r\n");
connect(socket, SIGNAL(readyRead()), SLOT(slotReadAll()));
QTestEventLoop::instance().connect(socket, SIGNAL(disconnected()), SLOT(exitLoop()));
+ socket->setProperty("remoteUrl", url);
sockets.append(QSharedPointer<QTcpSocket>(socket));
}
- while (!timeout.hasExpired(30000)) {
+ while (!timeout.hasExpired(10000)) {
QTestEventLoop::instance().enterLoop(10);
int done = 0;
for (int j = 0; j < sockets.size(); ++j)
@@ -352,6 +400,13 @@ void tst_NetworkRemoteStressTest::parallelRemoteHosts()
if (done == sockets.size())
break;
}
+ if (timeout.hasExpired(10000)) {
+ for (int j = 0; j < sockets.size(); ++j)
+ if (sockets[j]->state() != QAbstractSocket::UnconnectedState)
+ qDebug() << "Socket to" << sockets[j]->property("remoteUrl").toUrl() << "still open with"
+ << sockets[j]->bytesToWrite() << "bytes to write";
+ QFAIL("Timed out");
+ }
totalBytes += byteCounter;
if (intermediateDebug) {
@@ -402,6 +457,7 @@ void tst_NetworkRemoteStressTest::namRemoteGet()
for (int j = 0; j < parallelAttempts && it != urlList.constEnd(); ++j) {
req.setUrl(*it++);
QNetworkReply *r = manager.get(req);
+ r->ignoreSslErrors();
connect(r, SIGNAL(readyRead()), SLOT(slotReadAll()));
QTestEventLoop::instance().connect(r, SIGNAL(finished()), SLOT(exitLoop()));
@@ -409,7 +465,7 @@ void tst_NetworkRemoteStressTest::namRemoteGet()
replies.append(QSharedPointer<QNetworkReply>(r));
}
- while (!timeout.hasExpired(30000)) {
+ while (!timeout.hasExpired(10000)) {
QTestEventLoop::instance().enterLoop(10);
int done = 0;
for (int j = 0; j < replies.size(); ++j)
@@ -417,9 +473,14 @@ void tst_NetworkRemoteStressTest::namRemoteGet()
if (done == replies.size())
break;
}
+ if (timeout.hasExpired(10000)) {
+ for (int j = 0; j < replies.size(); ++j)
+ if (!replies[j]->isFinished())
+ qDebug() << "Request" << replies[j]->url() << "not finished";
+ QFAIL("Timed out");
+ }
replies.clear();
- QVERIFY2(!timeout.hasExpired(30000), "Timeout");
totalBytes += byteCounter;
if (intermediateDebug) {
double rate = (byteCounter * 1.0 / timeout.elapsed());