mirror of
https://github.com/moparisthebest/curl
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f1cc2a2c0c
The variable `$ipvnum` can now contain "unix" besides the integers 4 and 6 since the variable. Functions which receive this parameter have their `$port` parameter renamed to `$port_or_path` to support a path to the UNIX domain socket (as a "port" is only meaningful for TCP). Signed-off-by: Peter Wu <peter@lekensteyn.nl>
275 lines
9.6 KiB
Plaintext
275 lines
9.6 KiB
Plaintext
_ _ ____ _
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\___|\___/|_| \_\_____|
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The cURL Test Suite
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1. Running
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1.1 Requires to run
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1.2 Port numbers used by test servers
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1.3 Test servers
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1.4 Run
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1.5 Shell startup scripts
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1.6 Memory test
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1.7 Debug
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1.8 Logs
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1.9 Test input files
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1.10 Code coverage
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1.11 Remote testing
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2. Numbering
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2.1 Test case numbering
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3. Write tests
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3.1 test data
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3.2 curl tests
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3.3 libcurl tests
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3.4 unit tests
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4. TODO
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4.1 More protocols
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4.2 SOCKS auth
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==============================================================================
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1. Running
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1.1 Requires to run
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perl (and a unix-style shell)
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python (and a unix-style shell)
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diff (when a test fails, a diff is shown)
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stunnel (for HTTPS and FTPS tests)
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OpenSSH or SunSSH (for SCP, SFTP and SOCKS4/5 tests)
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1.2 Port numbers used by test servers
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- TCP/8990 for HTTP
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- TCP/8991 for HTTPS
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- TCP/8992 for FTP
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- TCP/8993 for FTPS
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- TCP/8994 for HTTP IPv6
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- TCP/8995 for FTP (2)
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- TCP/8996 for FTP IPv6
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- UDP/8997 for TFTP
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- UDP/8998 for TFTP IPv6
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- TCP/8999 for SCP/SFTP
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- TCP/9000 for SOCKS
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- TCP/9001 for POP3
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- TCP/9002 for IMAP
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- TCP/9003 for SMTP
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- TCP/9004 for SMTP IPv6
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- TCP/9005 for RTSP
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- TCP/9006 for RTSP IPv6
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- TCP/9007 for GOPHER
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- TCP/9008 for GOPHER IPv6
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- TCP/9008 for HTTPS server with TLS-SRP support
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1.3 Test servers
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The test suite runs simple FTP, POP3, IMAP, SMTP, HTTP and TFTP stand-alone
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servers on the ports listed above to which it makes requests. For SSL tests,
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it runs stunnel to handle encryption to the regular servers. For SSH, it
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runs a standard OpenSSH server. For SOCKS4/5 tests SSH is used to perform
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the SOCKS functionality and requires a SSH client and server.
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The base port number (8990), which all the individual port numbers are
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indexed from, can be set explicitly using runtests.pl' -b option to allow
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running more than one instance of the test suite simultaneously on one
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machine, or just move the servers in case you have local services on any of
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those ports.
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The HTTP server supports listening on a UNIX domain socket, the default
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location is 'http.sock'.
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1.4 Run
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'make test'. This builds the test suite support code and invokes the
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'runtests.pl' perl script to run all the tests. Edit the top variables
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of that script in case you have some specific needs, or run the script
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manually (after the support code has been built).
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The script breaks on the first test that doesn't do OK. Use -a to prevent
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the script from aborting on the first error. Run the script with -v for more
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verbose output. Use -d to run the test servers with debug output enabled as
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well. Specifying -k keeps all the log files generated by the test intact.
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Use -s for shorter output, or pass test numbers to run specific tests only
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(like "./runtests.pl 3 4" to test 3 and 4 only). It also supports test case
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ranges with 'to', as in "./runtests 3 to 9" which runs the seven tests from
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3 to 9. Any test numbers starting with ! are disabled, as are any test
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numbers found in the file data/DISABLED (one per line).
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When -s is not present, each successful test will display on one line the
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test number and description and on the next line a set of flags, the test
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result, current test sequence, total number of tests to be run and an
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estimated amount of time to complete the test run. The flags consist of
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these letters describing what is checked in this test:
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s stdout
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d data
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u upload
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p protocol
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o output
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e exit code
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m memory
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v valgrind
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1.5 Shell startup scripts
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Tests which use the ssh test server, SCP/SFTP/SOCKS tests, might be badly
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influenced by the output of system wide or user specific shell startup
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scripts, .bashrc, .profile, /etc/csh.cshrc, .login, /etc/bashrc, etc. which
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output text messages or escape sequences on user login. When these shell
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startup messages or escape sequences are output they might corrupt the
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expected stream of data which flows to the sftp-server or from the ssh
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client which can result in bad test behaviour or even prevent the test
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server from running.
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If the test suite ssh or sftp server fails to start up and logs the message
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'Received message too long' then you are certainly suffering the unwanted
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output of a shell startup script. Locate, cleanup or adjust the shell
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script.
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1.6 Memory test
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The test script will check that all allocated memory is freed properly IF
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curl has been built with the CURLDEBUG define set. The script will
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automatically detect if that is the case, and it will use the
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'memanalyze.pl' script to analyze the memory debugging output.
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Also, if you run tests on a machine where valgrind is found, the script will
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use valgrind to run the test with (unless you use -n) to further verify
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correctness.
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runtests.pl's -t option will enable torture testing mode, which runs each
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test many times and makes each different memory allocation fail on each
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successive run. This tests the out of memory error handling code to ensure
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that memory leaks do not occur even in those situations. It can help to
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compile curl with CPPFLAGS=-DMEMDEBUG_LOG_SYNC when using this option, to
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ensure that the memory log file is properly written even if curl crashes.
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1.7 Debug
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If a test case fails, you can conveniently get the script to invoke the
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debugger (gdb) for you with the server running and the exact same command
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line parameters that failed. Just invoke 'runtests.pl <test number> -g' and
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then just type 'run' in the debugger to perform the command through the
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debugger.
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1.8 Logs
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All logs are generated in the logs/ subdirectory (it is emptied first in the
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runtests.pl script). Use runtests.pl -k to force it to keep the temporary
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files after the test run since successful runs will clean it up otherwise.
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1.9 Test input files
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All test cases are put in the data/ subdirectory. Each test is stored in the
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file named according to the test number.
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See FILEFORMAT for the description of the test case files.
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1.10 Code coverage
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gcc provides a tool that can determine the code coverage figures for
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the test suite. To use it, configure curl with
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CFLAGS='-fprofile-arcs -ftest-coverage -g -O0'. Make sure you run the normal
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and torture tests to get more full coverage, i.e. do:
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make test
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make test-torture
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The graphical tool ggcov can be used to browse the source and create
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coverage reports on *NIX hosts:
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ggcov -r lib src
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The text mode tool gcov may also be used, but it doesn't handle object files
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in more than one directory very well.
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1.11 Remote testing
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The runtests.pl script provides some hooks to allow curl to be tested on a
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machine where perl can not be run. The test framework in this case runs on
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a workstation where perl is available, while curl itself is run on a remote
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system using ssh or some other remote execution method. See the comments at
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the beginning of runtests.pl for details.
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2. Numbering
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2.1 Test case numbering
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1 - 99 HTTP
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100 - 199 FTP*
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200 - 299 FILE*
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300 - 399 HTTPS
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400 - 499 FTPS
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500 - 599 libcurl source code tests, not using the curl command tool
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600 - 699 SCP/SFTP
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700 - 799 SOCKS4 (even numbers) and SOCK5 (odd numbers)
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800 - 899 POP3, IMAP, SMTP
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1000 - 1299 miscellaneous*
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1300 - 1399 unit tests*
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1400 - 1499 miscellaneous*
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1500 - 1599 libcurl source code tests, not using the curl command tool
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(same as 5xx)
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2000 - x multiple sequential protocols per test case*
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Since 30-apr-2003, there's nothing in the system that requires us to keep
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within these number series, and those sections marked with * actually
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contain tests for a variety of protocols. Each test case now specifies its
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own server requirements, independent of test number.
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3. Write tests
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Here's a quick description on writing test cases. We basically have three
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kinds of tests: the ones that test the curl tool, the ones that build small
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applications and test libcurl directly and the unit tests that test
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individual (possibly internal) functions.
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3.1 test data
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Each test has a master file that controls all the test data. What to read,
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what the protocol exchange should look like, what exit code to expect and
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what command line arguments to use etc.
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These files are tests/data/test[num] where [num] is described in section 2
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of this document, and the XML-like file format of them is described in the
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separate tests/FILEFORMAT document.
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3.2 curl tests
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A test case that runs the curl tool and verifies that it gets the correct
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data, it sends the correct data, it uses the correct protocol primitives
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etc.
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3.3 libcurl tests
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The libcurl tests are identical to the curl ones, except that they use a
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specific and dedicated custom-built program to run instead of "curl". This
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tool is built from source code placed in tests/libtest and if you want to
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make a new libcurl test that is where you add your code.
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3.4 unit tests
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Unit tests are tests in the 13xx sequence and they are placed in tests/unit.
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There's a tests/unit/README describing the specific set of checks and macros
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that may be used when writing tests that verify behaviors of specific
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individual functions.
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The unit tests depend on curl being built with debug enabled.
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4. TODO
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4.1 More protocols
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Add tests for TELNET, LDAP, DICT...
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4.2 SOCKS auth
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SOCKS4/5 test deficiencies - no proxy authentication tests as SSH (the
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test mechanism) doesn't support them
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