Dependencies generated by the script introduced with #6839 were not including anymore the fix about enum34 for CentOS 6.
This PR reinserts this fix, and updates the script overrides to ensure that this fix will stay in next dependencies generation.
* Add the environment marker back. Ensure that it will stay by adding an override to dependencies generator.
* Add comments, for future fix
* Update letsencrypt-auto-source/rebuild_dependencies.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update comment
This PR is a part of the effort to remove the last broken unit tests in certbot codebase for Windows, as described in #6850.
It solves the problems associated to ErrorHandler in Windows (enlighted by tests errors) by ... wipping out the problem: no signal is handled by ErrorHandler on Windows. See the relevant inline comment in certbot.error_handler for explanation and sources.
This PR is the first part of #6497 to ease the integration, following the new plan propose by @bmw here: #6497 (comment)
This step 1 refactor existing certbot.compat module into certbot.compat.misc, without any logic changed. Package certbot.compat will host the new modules that constitute the security model for Windows.
* Create the certbot.compat package. Move logic in certbot.compat.misc
* Add doc
* Fix lint
* Correct mypy
* Update client.py
This PR is a part of the tls-sni-01 removal plan described in #6849.
As `acme` is a library, we need to put some efforts to make a decent deprecation path before totally removing tls-sni in it. While initialization of `acme.challenges.TLSSNI01` was already creating deprecation warning, not all cases were covered.
For instance, and innocent call like this ...
```python
if not isinstance(challenge, acme.challenges.TLSSNI01):
print('I am not using this TLS-SNI deprecated stuff, what could possibly go wrong?')
```
... would break if we suddenly remove all objects related to this challenge.
So, I use the _Deprecator Warning Machine, Let's Pacify this Technical Debt_ (Guido ®), to make `acme.challenges` and `acme.standalone` patch themselves, and display a deprecation warning on stderr for any access to the tls-sni challenge objects.
No dev should be able to avoid the deprecation warning. I set the deprecation warning in the idea to remove the code on `0.34.0`, but the exact deprecation window is open to discussion of course.
* Modules challenges and standalone patch themselves to generated deprecation warning when tls-sni related objects are accessed.
* Correct unit tests
* Correct lint
* Update challenges_test.py
* Correct lint
* Fix an error during tests
* Update coverage
* Use multiprocessing for coverage
* Add coverage
* Update test_util.py
* Factor the logic about global deprecation warning when accessing TLS-SNI-01 attributes
* Fix coverage
* Add comment for cryptography example.
* Use warnings.
* Add a changelog
* Fix deprecation during tests
* Reload
* Update acme/acme/__init__.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update CHANGELOG.md
* Pick a random free port.
This PR is a part of the tls-sni-01 removal plan described in #6849.
This PR removes --tls-sni-01-port, --tls-sni-01-address and tls-sni-01/tls-sni options from --preferred-challenges. They are replace by deprecation warning, indicating that these options will be removed soon.
This deprecation, instead of complete removal, is done to avoid certbot instances to hard fail if some automated scripts still use these flags for some users.
Once this PR lands, we can remove completely theses flags in one or two release.
* Remove tls-sni related flags in cli. Add a deprecation warning instead.
* Adapt tests to cli and renewal towards tls-sni flags deprecation
* Add https_port option. Make tls_sni_01_port show a deprecation warning, but silently modify https_port if set
* Migrate last items
* Fix lint
* Update certbot/cli.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Ensure to remove all occurences of tls-sni-01
* Remove unused parameter
* Revert modifications on cli-help.txt
* Use logger.warning instead of sys.stderr
* Update the logger warning message
* Remove standalone_supported_challenges option.
* Fix order of preferred-challenges
* Remove supported_challenges property
* Fix some tests
* Fix lint
* Fix tests
* Add a changelog
* Clean code, fix test
* Update CI
* Reload
* No hard date for tls-sni removal
* Remove useless cast to list
* Update certbot/tests/renewal_test.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Add entry to the changelog
* Add entry to the changelog
Currently, `tox -e le_auto_jessie` job fails. It breaks in particular the cron pipeline that test everything each night.
The failure occurs while setting up the Jessie Docker container to run the tests for certbot-auto, when `apt-get update` is invoked, with this error:
```
W: Failed to fetch http://deb.debian.org/debian/dists/jessie-updates/main/binary-amd64/Packages 404 Not Found
```
Indeed, if there are `stretch-updates`, `buster-updates` and so on in the repository, there is no `jessie-updates`. I do not know exactly the logic of Debian here, but as `*-updates` folders store stable updates, a distribution moving to LTS support like Jessie has no stable updates anymore. I suppose `jessie-updates have been decommissioned recently, and the official Docker has not been updated yet to use the LTS configuration for repositories.
This PR does that live in the Dockerfile, using official instructions from https://wiki.debian.org/LTS/Using, and fixes this specific job.
An example of a successful job with this modification can be found here: https://travis-ci.com/certbot/certbot/jobs/187864341
Explicit is better than implicit
When calling raise without an argument, Python will raise the last error occured from the caller except block. This makes my PyCharm very sad however. So this PR makes the function handling the error raising explicitly the error received as an argument.
To fix one of the two uncovered lines in certbot-apache, given in #6880. Instead of adding a test to just increase the coverage, this fixes the uncovered line by removing the unused code.
This PR is a part of the effort to remove the last broken unit tests in certbot codebase for Windows, as described in #6850.
This PR fixes various unit tests on Windows, whose resolution was only to modify some logic in the tests, or minor changes in certbot codecase impacting Windows only (like handling correctly paths with DOS-style).
* Correct several tests
* Skip test definitively
* Test to be reactivated with #6497
* Mock log system to avoid errors due to multiple calls to main in main_test
* Simplify mock
* Update cli_test.py
* One test to be repaired when windows file permissions PR is merged
* Remove tls-sni from nginx config
* Add a dedicated configuration to define what is the HTTPS port for this certbot instance.
* Correct some tests
* Reestablish default vhost creation
* Clean tls references for nginx integration tests
* Associate https_port only to tests and nginx
* Add a dedicated configuration to define what is the HTTPS port for this certbot instance.
* Remove tls-sni in apache plugin
* Update constants.py
* Update interfaces.py
* Remove option
* Simplify a test
* Reconfigure compatibility tests to use http challenge
* Correct simple test
* Add a fake DNS resolution for HTTP simple_verify
* Debug
* More subtle approach: we monkey patch urllib3 to fake a dns resolution to the target IP, allowing every host header to be preserved.
* Private package
* Relaxed permissions on certbot temp working dir
* Move the fake DNS logic in compatibility test, to avoid degrading the acme coverage
* Fix lint
* Update certbot-compatibility-test/certbot_compatibility_test/configurators/common.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
This PR is a part of the tls-sni-01 removal plan described in #6849.
This PR removes the tls-sni-01 challenge tests during the integration tests. The approach I used here is not to remove completely the existing test code, but simply editing it to use a http-01 challenge. Indeed:
* the current integration tests are strongly coupled, and would require more modifications that it is worth, because ...
* the certbot-ci project, that has already no tls-sni tests, will soon replace completely the current integration tests code.
Currently coverage invocation during integration tests on certbot core is misplaced, just before the OCSP statuses tests.
This PR move back the coverage invocation at the end of the script.
Fixes#6836.
OCSP responses contains a thisUpdate and nextUpdate that allow to calculate its validity. Certbot currently uses datetime.now() to get the current time when OCSP check is done through cryptography. But datetime.now() expresses the date in the machine local time, and comparison operators on datetime do not take into account the offset between two datetime objects expressed in difference timezones.
As a consequence, a given thisUpdate may be seen as a future date depending on the local time, failing the OCSP check process.
The error is not critical for certbot, as it will just make some valid OCSP responses giving an EXPIRED status been ignored.
This PR fixes this comparison by taking the current time in UTC using datetime.utctime().
Fixes#6698
Fedora maintainers engaged a deprecation path for Python 2.x with Fedora 29. As a first step, python2-virtualenv does not install the virtualenv binary anymore, in favor of python3-virtualenv, and so the installation of Python 3 virtual environments by default.
However, certbot-auto installs python2-virtualenv for all recent RPM distributions, and relies of the execution of virtualenv, and this is failing the process.
Since the plan in the future is to remove Python 2.x from Fedora, this PR follows this logic to fix certbot-auto: started to Fedora 29, certbot-auto will install and execute certbot on Python 3. This implies to detect that we are on Fedora 29+, install python3-virtualenv that will install also Python 3 dependencies and virtualenv binary, then instruct the process to use Python 3. This is in fact similar to EOL distributions shipping with Python 2.6, and for which Python 3.4 from EPEL is installed and used.
Older versions of Fedora continue to use Python 2.x, and their process is untouched. Four scenarios are covered here:
fresh Fedora 28: old process is used, nothing changes
fresh Fedora 29: new process is used, Python 3 is installed, certbot runs on it
update Fedora 29 from 28, already installed certbot-auto without rebootstrapping required: existing venv continue to be used, certbot runs on it
update Fedora 29 from 28, already installed certbot-auto with rebootstrapping required: new process is used, installing python3-virtualenv, python3-devel and python3-rpm-macros, Python 3 is installed, certbot runs on it
* Add a step to handle python3 on fedora29
* Update letsencrypt-auto-source/letsencrypt-auto.template
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update letsencrypt-auto-source/letsencrypt-auto.template
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update letsencrypt-auto-source/letsencrypt-auto.template
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update rpm_python3.sh
* Rebuild certbot-auto
* Empty commit to relaunch CI pipeline
* Add changelog
* Update CHANGELOG.md
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update CHANGELOG.md
Fixes#6228.
Since OpenSUSE Leap 15, python-virtualenv became a source package, breaking certbot-auto bootstrap on this version. Then python2-virtualenv must be used to create Python 2.x virtual environments.
This PR makes certbot-auto compatible to prior and after Leap 15, by testing the existence of python-virtualenv on current OpenSUSE system, and then use appropriate packages.
* Cover case of OpenSUSE Leap 15+ in certbot-auto
* Revert increment on bootstrap for OpenSUSE
* Fix configuration for Leap15+
* Add comment about explicit installation of python2-setuptools
* Update letsencrypt-auto-source/pieces/bootstrappers/suse_common.sh
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update letsencrypt-auto
By removing all the builds on push to master, done in #6804, we also removing the coveralls reports that are necessary to calculate the effect of a PR on code coverage, that is part of the quality gate process.
This PR is reverting #6804, and another implementation preserving the coveralls reports will be done soon.
This reverts commit a468a3b255.
Fixes#5789
This PR is about allowing Certbot to respect the Retry-After HTTP header that an ACME CA server can return to a client POSTing to a challenge, to instruct him and retry the request later.
However, this feature was not easily implementable in the current code of certbot.auth_handler, because the code became really hard to read. In fact, @bmw was thinking that the code was really deceiving, and a lot of supposed functionalities declared in the comments were in fact not implemented or not functional.
So I took the time to understand what was going on, and effectively, most of the code is in fact not usable or not used. Then I did a refactoring against the bare ACME spec about what to do to prepare challenges, instruct the ACME CA server to perform them, then polling regularly the authorization resources until they are decided (valid or invalid).
And of course this implementation takes care of Retry-After ^^
I added a lot of comments in the new implementation, to explain what is going on for a future developer. The workflow I used is relying on the relationships between authorizations and challenges states as described in section 7.1.6 of the ACME spec draft: https://datatracker.ietf.org/doc/draft-ietf-acme-acme/
* Clean auth_handler a bit, and implement retry-after.
* Remove a debug logger
* Correct tests
* Fix mypy and lint. Setup max retries and default retry after accordingly.
* Ease a comparison in tests
* Update documentation
* Add tests
* Adapt windows coverage threshold to the global LOC reduction
* Update certbot/auth_handler.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Corrections under review
* Correction under review
* Update certbot/auth_handler.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Corrections under review
* Update auth_handler_test.py
* Reimplementing user readable report for failed authorizations
* Fixes two tests
* Fix another test + lint + mypy
* Update auth_handler.py
* Update auth_handler_test.py
* Fix tests
* Update certbot/auth_handler.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Raise directly the exception on polling timout
* Improve interface documentation
* Move the wait on top of the loop, to be used initially or after a new loop iteration. Do not wait for negative values.
* Always display the report about failed authorizations.
* Clarify an exception.
* Return, instead of break
* Use setdefault
* Remove useless assertion
* Adapt tests
* Improve a test about retry after value.
* Update certbot/auth_handler.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Add a complete test on best_effort
* Add entry to the changelog
* Gather all failed authzrs to be reported in one unique report in case of best_effort
* Build complete warn/report/raise process about failed authzrs
Fixes#6746.
Every commit on master is always the result of a merged PR, that has been tested by Travis. So retesting the merge commit on master is superfluous. This PR uses build conditions to avoid to launch a build for a commit push on master.
I also added the equivalent logic for AppVeyor. Builds cannot received conditions, so it needs to be done on init using Exit-AppVeyorBuild. This command does not fail the build, it finishes it prematurely with success.
* Disable build for commit pushed on master (PR are still tested of course)
* Equivalent exclusion code for AppVeyor
If you execute `tests/lock_test.py` or `tox -e integration` on a fairly recent machine, you will get the following error during tests executing against a live Nginx instance:
```
no "ssl_certificate" is defined in server listening on SSL port while SSL handshaking, client: x.x.x.x, server: y:y:y:y:z
```
Indeed, having no defined ssl certificate for a ssl port would inevitably lead to an error during the handshake SSL process between a client and this mis-configured nginx instance.
However it was not a problem one year before, because the handshake was not occurring in practice: the test just need to have a nginx started, and then immediately proceed to modify the configuration with a correct SSL setup. And nginx was able to start with a mis-configuration on SSL.
But then this fix has been done: https://trac.nginx.org/nginx/ticket/178
Basically with this, validation of the configuration is done during nginx startup, that will refuse to start with invalid configuration on SSL. Consequently, all related tests are failing with a sufficiently up-to-date nginx. For now, it is not seen on Travis because Ubuntu Trusty is used, with an old Nginx.
The PR fixes that, by generating on the fly self-signed certificates in the two impacted tests, and pushing the right parameters in the Nginx configuration.
* Fix nginx configuration with self-signed certificates generated on the fly
* Fix lint/mypy
* Fix old cryptography
* Unattended openssl
* Update lock_test.py
* First part
* Several optimizations about the docker env setup
* Documentation
* Various corrections and documentation. Add acme and certbot explicitly as dependencies of certbot-ci.
* Correct a variable misinterpreted as a pytest hook
* Correct strict parsing option on pebble
* Refactor acme setup to be executed from pytest hooks.
* Pass TRAVIS env variable to trigger specific xdist logic
* Retrigger build.
* Work in progress
* Config operational
* Propagate to xdist
* Corrections on acme and misc
* Correct subnet for pebble
* Remove gobetween, as tls-sni challenges are not tested anymore.
* Improve pebble setup. Reduce LOC.
* Update acme.py
* Optimize acme ca setup, with less temporary assets
* Silent setup
* Clean code
* Remove unused workspace
* Use default network driver
* Remove bridge
* Update package documentation
* Remove rerun capability for integration tests, not needed.
* Add documentation
* Variable for all ports and subnets used by the stack
* Update certbot-ci/certbot_integration_tests/conftest.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update certbot-ci/certbot_integration_tests/utils/acme.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update certbot-ci/certbot_integration_tests/utils/misc.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update tox.ini
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update certbot-ci/certbot_integration_tests/utils/misc.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update certbot-ci/certbot_integration_tests/utils/acme.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update certbot-ci/certbot_integration_tests/utils/acme.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update certbot-ci/certbot_integration_tests/conftest.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Rename to acme_server
* Add comment
* Refactor in a unique context fixture
* Remove the need of CERTBOT_ACME_XDIST environment variable
* Remove nonstrict/strict options in pebble
* Clean dependencies
* Clean tox
* Change function name
* Add comment about coveragerc specificities
* Change a comment.
* Update setup.py
* Update conftest.py
* Use the production-ready docker-compose.yml file for Pebble
* New style class
* Tune pebble to have a stable test environment
* Pin a dependency
The rerun capability in a test campaign can be a nice feature. It can also a bad design.
It is right that with high level tests, like performance or end-to-end tests, a given test runtime can depend on an external component, outside the scope of the developers, that would spuriously fail. In theses situations, having the capacity to rerun several time a test can be a great benefit. Indeed, as these tests are inherently flaky, the rerun greatly reduces their failure because of external reasons, reducing also the Pierre et le Loup effect (from a well-known french book for children): because tests constantly fail for no reason, you stop to listen to them and to not see when they fail for a real reason.
However this not apply to unit tests, or operations about code quality. For theses executions, the flakiness should not exist: a unit test is supposed to have no external dependency. A rerun approach would just hide a situation that is not desirable for this kind of tests
Also effectively I see that our tests are usually not flaky: so the only effect of the rerun is to give the failure state about a test three times slower. If a test becomes flaky, this should be fixed, and so be visible immediately in our CI.
For these reasons, I remove the travis_retry in the script section of .travis-ci.yml, to call directly tox and let the pipeline fails on the first error.
* Disable rerun feature of Travis
* Update .travis.yml
* Remove completely the retry logic
* Fix pipstrap on windows
* Pipstrap pin setuptools version, so explicit install it is not needed anymore.
* Rebuild letsencrypt-auto source
* Use sys.executable in pipstrap to allow straightforward execution in a venv by choosing the python interpreter from this venv.
* Update letsencrypt-auto
* Simulate test-everything
* Revert "Simulate test-everything"
This reverts commit b62c4d719a.
* Clean pipstrap code
* Reenabling OCSP cryptography support
* Refactor the validation logic of OCSP response to match the OpenSSL one
* Prepare runtime for OCSP response test
* Move unrelated test to another relevant place
* Reimplement OCSP status checks in integration tests
* Clean script
* Protect OCSP check against connection errors
* Update tests/certbot-boulder-integration.sh
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Cleaning
* Add a specific script for letsencrypt-auto install+help
* Remove inconsistent assertion
* Add executable permissions
* Remove unused variable
* Move testdata
* Corrected cleanup code
* Empty commit
Fixes#6755.
POSTing the `keyAuthorization` in a JWS token when answering an ACME challenge, has been deprecated for some time now. Indeed, this is superfluous as the request is already authentified by the JWS signature.
Boulder still accepts to see this field in the JWS token, and ignore it. Pebble in non strict mode also. But Pebble in strict mode refuses the request, to prepare complete removal of this field in ACME v2.
Certbot still sends the `keyAuthorization` field. This PR removes it, and makes Certbot compliant with current ACME v2 protocol, and so Pebble in strict mode.
See also [letsencrypt/pebble#192](https://github.com/letsencrypt/pebble/issues/192) for implementation details server side.
* New implementation, with a fallback.
* Add deprecation on changelog
* Update acme/acme/client.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Fix an instance parameter
* Update changelog, extend coverage
* Update comment
* Add unit tests on keyAuthorization dump
* Update acme/acme/client.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Restrict the magic of setting a variable in immutable object in one place. Make a soon to be removed method private.
So merging the study from @bmw and me, here is what happened.
Each invocation of `certbot.logger.post_arg_parse_setup` create a file handler on `letsencrypt.log`. This function also set an atexit handler invoking `logger.shutdown()`, that have the effect to close all logger file handler not already closed at this point. This method is supposed to be called when a python process is close to exit, because it makes all logger unable to write new logs on any handler.
Before #6667 and this PR, for tests, the atexit handle would be triggered only at the end of the pytest process. It means that each test that launches `certbot.logger.post_arg_parse_setup` add a new file handler. These tests were typically connecting the file handler on a `letsencrypt.log` located in a temporary directory, and this directory and content was wipped out at each test tearDown. As a consequence, the file handles, not cleared from the logger, were accumulating in the logger, with all of them connected to a deleted file log, except the last one that was just created by the current test. Considering the number of tests concerned, there were ~300 file handler at the end of pytest execution.
One can see that, on prior #6667, by calling `print(logger.getLogger().handlers` on the `tearDown` of these tests, and see the array growing at each test execution.
Even if this represent a memory leak, this situation was not really a problem on Linux: because a file can be deleted before it is closed, it was only meaning that a given invocation of `logger.debug` for instance, during the tests, was written in 300 log files. The overhead is negligeable. On Windows however, the file handlers were failing because you cannot delete a file before it is closed.
It was one of the reason for #6667, that added a call to `logging.shutdown()` at each test tearDown, with the consequence to close all file handlers. At this point, Linux is not happy anymore. Any call to `logger.warn` will generate an error for each closed file handler. As a file handler is added for each test, the number of errors grows on each test, following an arithmetical suite divergence.
On `test_sdists.py`, that is using the bare setuptools test suite without output capturing, we can see the damages. The total output takes 216000 lines, and 23000 errors are generated. A decent machine can support this load, but a not a small AWS instance, that is crashing during the execution. Even with pytest, the captured output and the memory leak become so large that segfaults are generated.
On the current PR, the problem is solved, by resetting the file handlers array on the logging system on each test tearDown. So each fileHandler is properly closed, and removed from the stack. They do not participate anymore in the logging system, and can be garbage collected. Then we stay on always one file handler opened at any time, and tests can succeed on AWS instances.
For the record, here is all the places where the logging system is called and fail if there is still file handlers closed but not cleaned (extracted from the original huge output before correction):
```
Logged from file account.py, line 116
Logged from file account.py, line 178
Logged from file client.py, line 166
Logged from file client.py, line 295
Logged from file client.py, line 415
Logged from file client.py, line 422
Logged from file client.py, line 480
Logged from file client.py, line 503
Logged from file client.py, line 540
Logged from file client.py, line 601
Logged from file client.py, line 622
Logged from file client.py, line 750
Logged from file cli.py, line 220
Logged from file cli.py, line 226
Logged from file crypto_util.py, line 101
Logged from file crypto_util.py, line 127
Logged from file crypto_util.py, line 147
Logged from file crypto_util.py, line 261
Logged from file crypto_util.py, line 283
Logged from file crypto_util.py, line 307
Logged from file crypto_util.py, line 336
Logged from file disco.py, line 116
Logged from file disco.py, line 124
Logged from file disco.py, line 134
Logged from file disco.py, line 138
Logged from file disco.py, line 141
Logged from file dns_common_lexicon.py, line 45
Logged from file dns_common_lexicon.py, line 61
Logged from file dns_common_lexicon.py, line 67
Logged from file dns_common.py, line 316
Logged from file dns_common.py, line 64
Logged from file eff.py, line 60
Logged from file eff.py, line 73
Logged from file error_handler.py, line 105
Logged from file error_handler.py, line 110
Logged from file error_handler.py, line 87
Logged from file hooks.py, line 248
Logged from file main.py, line 1071
Logged from file main.py, line 1075
Logged from file main.py, line 1189
Logged from file ops.py, line 122
Logged from file ops.py, line 325
Logged from file ops.py, line 338
Logged from file reporter.py, line 55
Logged from file selection.py, line 110
Logged from file selection.py, line 118
Logged from file selection.py, line 123
Logged from file selection.py, line 176
Logged from file selection.py, line 231
Logged from file selection.py, line 310
Logged from file selection.py, line 66
Logged from file standalone.py, line 101
Logged from file standalone.py, line 88
Logged from file standalone.py, line 97
Logged from file standalone.py, line 98
Logged from file storage.py, line 52
Logged from file storage.py, line 59
Logged from file storage.py, line 75
Logged from file util.py, line 56
Logged from file webroot.py, line 165
Logged from file webroot.py, line 186
Logged from file webroot.py, line 187
Logged from file webroot.py, line 204
Logged from file webroot.py, line 223
Logged from file webroot.py, line 234
Logged from file webroot.py, line 235
Logged from file webroot.py, line 237
Logged from file webroot.py, line 91
```
* Reapply #6667
* Make setuptools delegates tests execution to pytest, like in acme module.
* Clean handlers at each tearDown to avoid memory leaks.
* Update changelog
This PR fixes certbot-nginx and relevant tests to make them succeed on Windows.
Next step will be to enable integration tests through certbot-ci in a future PR.
* Fix tests and incompabilities in certbot-nginx for Windows
* Fix lint, fix oldest local dependencies
The method `lock_and_call`, in `certbot.tests.util` is designed to acquire a lock on a foreign process, then execute a callable in the current process. This is done to closely reproduce the lock mechanism involved between two certbot instances that are running in parallel.
This method uses the `multiprocessing` module. But its implementation in `lock_and_call` is broken for Windows: the two processes fail to communicate, leading to a deadlock.
In fact, `multiprocessing` module is using the fork mechanism on Linux, and the spawn mechanism on Windows, leading to behavior inconsistencies between the two platforms.
As this method is for tests, and not for production code, I did not try to make two implementations "by the book", one suitable for Windows, the other for Linux, like for the `certbot.lock` module.
Instead, I use a `subprocess` approach with a trigger file allowing to coordinate the current process and the subprocess. With this, `lock_and_call` is running from the same code both on Linux and Windows.
Relevant tests in the `certbot.tests.lock_test` test module are now enabled for Windows.
* Implement new lock_and_call method
* Reactivate tests for Windows
First PR about this issue, #6440, involved to much refactoring to ensure a correct behavior on Linux and installer plugins.
This PR proposes a new implementation of a lock mechanism for Linux and Windows, without implying a refactoring. It takes strictly the existing behavior for Linux, and add the appropriate logic for Windows. The `lock` module formalizes two independant mechanism dedicated to each platform, to improve maintainability.
Tests related to locking are re-activated for Windows, or definitively skipped because of irrelevancy for this platform. 6 more tests are enabled overall.
* Reimplement lock file on basic level
* Remove unused code
* Re-activate some tests
* Update doc
* Reactivate tests relevant to locks in Windows. Correct a test that was not testing what is supposed to test.
* Clean compat.
* Move close sooner in Windows lock implementation
* Add strong mypy types
* Use os.name
* Refactor lock mechanism logic
* Enable more tests
* Update lock.py
* Update lock_test.py
This PR updates and fixes `pebble-fetch.sh` considering latest improvements done on Pebble, to start a working instance.
* Fix the pebble fetch script
* Update pebble-fetch.sh
* Update tox.ini
In response to #6594. [Fixes #6594.]
To execute OCSP requests, certbot relies currently on a openssl binary execution. If openssl is not present in the PATH, the OCSP check will be silently ignored. Since version 2.4, cryptography has support for OCSP requests, without the need to have openssl binary available locally.
This PR takes advantage of it, and will use the built-in support of OCSP in cryptography for versions >= 2.4. Otherwise, fallback is done do a direct call to openssl binary, allowing oldest requirements to still work with legacy cryptography versions.
Update: requirement is now cryptography >= 2.5, to avoid to rely on a private method from cryptography.
* Implement logic using cryptography
* Working OSCP using pure cryptography
* Fix openssl usage in unit tests
* Reduce verbosity
* Add tests
* Improve naive skipIf
* Test resiliency
* Update ocsp.py
* Validate OCSP response. Unify OCSP URL get
* Improve resiliency checks, correct lint/mypy
* Improve hash selection
* Fix warnings when calling openssl bin
* Load OCSP tests assets as vectors.
* Update ocsp.py
* Protect against invalid ocsp response.
* Add checks to OCSP response
* Add more control on ocsp response
* Be lenient about assertion that next_update must be in the future, similarly to openssl.
* Construct a more advanced OCSP response mock to trigger more logic in ocsp module.
* Add test
* Refactor signature process to use crypto_util
* Fallback for cryptography 2.4
* Avoid a collision with a meteor.
* Correct method signature documentation
* Relax OCSP update interval
* Trigger built-in ocsp logic from cryptography with 2.5+
* Update pinned version of cryptography
* Update certbot/ocsp.py
Co-Authored-By: adferrand <adferrand@users.noreply.github.com>
* Update ocsp.py
* Update ocsp_test.py
* Update CHANGELOG.md
* Update CHANGELOG.md
The account path used to store user credentials is calculated from the domain used to contact the relevant ACME CA server.
For instance, if the directory URL is https://my.domain.net/directory, then the account path will be $CONFIG_DIR/accounts/my.domain.net.
However, if non standard HTTP/HTTPS port need to be used, colons will be involved. For instance, https://my.domain.net:14000/directory will give $CONFIG_DIR/accounts/my.domain.net:14000.
Colons in paths are supported on POSIX systems, but not on Windows (it is reserved for the root drive letter).
This PR replaces colons by underscores for account paths on Windows, and leaves them untouched on Linux.
* Fix account path on Windows when colons are involved
* Protect colon in drive letter
* Refactor compat platform specific logic
When certbot is executing, several resources are opened. It is typically file handles and locks on them. Of course, theses resources need to be cleanup. It is done in Certbot by registering cleanup functions through atexit module, that ensures theses functions will be called when Certbot exit. This allow to not care about resource cleanup everywhere in the code, as it is processed globally.
The problem with atexit is it cleanup functions are called when the Python program exit. If the program is Certbot itself when used, this is Pytest in unit test execution. So during a unit test execution, cleanup is not called after a test and before its tearDown, but when Pytest exit, so way after tests and their respective tearDown.
But many tearDown implies to delete folders where this kind of resources are hold.
This is never a problem on Linux, thanks to its non-blocking file handling. It is usually not a problem on Windows, despite its blocking approach. But if the tearDown requires folder cleanup, exceptions are raised, and currently hidden as warnings. There is currently 504 exceptions of this type in Certbot core tests on Windows.
This PR starts to correct this situation. To do so, some of the functions cleanup normally called through atexit, are explicitly called as part of the tearDown process of relevant test classes, before directory removal is done. Theses situations come all from the certbot.tests.util.TempDirTestCase, so the code is in this specific tearDown process.
As a consequence, exceptions drop from 504 to 64.
Then there are still a significant part of them, that will be handled in later mitigation.
* Call atexit handlers before test tearDown to reduce errors on Windows
* Clear locks dict after global releasing execution
* Remove last tearDown errors.
* Clean out mock on open.
* Remove a test
* Reenable some tests
This PR reactivates tls-sni-01 challenges on recent Boulder versions checkout for integration tests. This allows to continue testing this challenge until it is officially dropped from server (Boulder) and client (Certbot).
Reverts #6679.
* Remove tls-sni-01 challenges in integration tests
* Remove the tls-sni test in the less invasive way
* Correct code coverage from tls-sni logic not been tested anymore.
* Update certbot-boulder-integration.sh
This PR fix tests when run with unpinned dependencies. Option --ignore-installed is removed from pip command, allowing to use local dev modules (like acme) that are not still released.
Be warned that these tests will mostly work correctly if the relevant virtualenv in .tox does not exist yet. Otherwise, already installed distribution, potentially not up-to-date, will be reused without update from pip if they match the minimal requirements in relevant projects. This is unlikely to be an issue on CI systems, that will start from a fresh system.
We may build a dedicated tox environment for unpinned dependencies tests purpose, and ensure consistency of these tests on all situations.
Fixes#6674
* Include local-oldest-requirements in the constraints when oldest is invoked
* Add oldest constraints for lexicon
* Skip editable requirements during merge
* Pin to lexicon 2.2.1 for oldest requirements. Override locally oldest if needed for specific providers.
This PR passes the CERTBOT_NO_PIN environment variable to the unit tests tox envs. By setting CERTBOT_NO_PIN to 1 before executing a given tox env, certbot dependencies will be installed at their latest version instead of the usual pinned version.
I also moved the unpin logic one layer below to allow it to be used potentially more widely, and avoid unnecessary merging constraints operation in this case.
As warnings are errors now, latest versions of Python will break now the tests, because collections launch a warning when some classes are imported from collections instead of collections.abc. Certbot code is patched, and warning is ignored for now, because a lot of third party libraries still depend on this behavior.
* Allow to execute a tox target without pinned dependencies
* Correct lint
* Retrigger build.
* Remove debug code
* Added test against unpinned dependencies from test-everything-unpinned-dependencies branch
* Remove duplicated assertion to pass TRAVIS and APPVEYOR in default tox environment.
Fixes#6659
It appears that the conditional statement if: cron = type works as expected:
on a push event, jobs marked with this statement are completely ignored
on a cron event, these jobs are executed
This PR takes advantages of it, by integrating the specific environments from test-everything branch to be merged into master, and add the conditional statement to execute them only during cron builds.
Once this PR is merged, a cron job can be set to build master at the appropriate time of the day, and test-everything will not be needed anymore.
For execution examples from this branch, see:
during a push event: https://travis-ci.org/adferrand/certbot/builds/480127828
during a cron event: https://travis-ci.org/adferrand/certbot/builds/480130236
* Use the conditional expression in travis.yml to execute jobs from test-everything only during cron executions.
* Update .travis.yml
* Update .travis.yml
* Remove before_install
This PR updates Lexicon dependency to the latest version available, 3.0.6, for every lexicon-based DNS plugins. It updates also the provider construction to use the new ConfigResolverobject, and to remove the legacy configuration process.
In response to #5342.
Currently, certbot will execute the operations necessary to validate a challenge even if the challenge has already been validated before against the acme ca server. This can occur for instance if a certificate is asked and issue correctly, then deleted locally, then asked again.
It is a corner case, but it will lead to some heavy operations (like updating a DNS zone, or creating an HTTP server) that are not needed.
This PR corrects this behavior by not executing challenges already validated, and use them directly instead to issue the certificate.
Fixes#5342
* Avoid to execute a given challenge that have been already validated by acme ca server.
* Execute tls challenge on a separate dns name, to avoid reusing the existing valid http challenge.
* Align with master
* Improve log
* Simplify the implementation
* Update changelog
* Add a unit test to ensure that validated challenges are not rerun
PR #6568 removed the --quiet option in pip invocations, because this option deletes a lot of extremely useful logs when something goes wrong. However, when everything goes right, or at least when pip install is correctly executed, theses logs add hundreds of lines that are only noise, making hard to debug errors that can be in only one or two lines.
We can have best of both worlds. Travis allows to fold large blocks of logs, that can be expanded directly from the UI if needed. It only requires to print in the console some specific code, that this PR implements in the pip_install.py script when the build is run in Travis (known by the existence of TRAVIS environment variable).
I also take the occasion to clean up a little tox.ini.
Note that AppVeyor does not have this fold capability, but it can be emulated using a proper capture of stdout/stderr delivered only when an error is detected.
* Fold pip install log on travis
* Global test env
* Export env variable
I observed that the current set of oldest requirements do not correspond to any environment, except the specific Xenial image in Travis CI (and standard Xenial containers will also fail).
It is because the requirements make cryptography and requests fail against standard libraries available in the typical Linux distributions that are targeted by the oldest requirements approach (Centos 6, Centos 7, Xenial, Jessie).
This PR fixes that, by aligning the minimal version requirements of cryptography and requests to the maximal versions that are available on Centos 6. Centos 7, Jessie and Xenial stay unusable with oldest requirements for other reasons, but at least one old and supported Linux distribution is able to run the tests with oldest requirements out of the box.
A test is also corrected to match the expected error message that old versions of urllib3 will raise.
File _venv_common.py uses single quotes to ask pip to install setuptools>=30.3. Using single quotes to enclose a string is not supported on Windows shell (Batch). This PR replaces theses single quotes by double quotes supported both on Windows and Linux.
* Extraction from #6541 to add flag to disable shuffle sleep on renew action
* Move the logic of random sleep to execute it only if there is effectively a certificate to renew.
* Add comments
* Correct lint
* Suspend lint rule
* Revert code cleaning
* Hide the flag
* Ignore lint
* Update cli.py
* Setup an integration tests env against Pebble, that enforce post-as-get
* Implement POST-as-GET requests, with fallback to GET.
* Fix unit tests
* Fix coverage.
* Fix or ignore lint errors
* Corrections after review
* Correct test
* Try a simple delegate approach
* Add a test
* Simplify test mocking
* Clean comment
Current pinned version of cffi is 1.10.0. This version does not provide pre-compiled wheels for latest Python versions on Windows. This implies on this plateform, when certbot is installed, to compile cffi from sources.
But for that, the computer will need to have the Visual C compiler available locally. This environnement is really heavy to setup, and totally outside of the scope.
This PR updates cffi to version 1.11.5, that has the required wheels, and makes certbot installable without a full .NET dev profile.
Defaults path of Certbot are the following:
config: /etc/letsencrypt
workdir: /var/letsencrypt/lib
logs: /var/letsencrypt/log
On Windows, this translate into:
config: C:\etc\letsencrypt
workdir: C:\var\letsencrypt\lib
logs: C:\var\letsencrypt\log
As Windows does not follow the standard POSIX filesystem layout, theses paths do not have a lot of sense in this case.
This PR sets the following default paths when Certbot is run on Windows:
config: C:\Certbot
workdir: C:\Certbot\lib
logs: C:\Certbot\log
Better to decide the default paths for Certbot before users start to run it on Windows, to avoid future migration procedures.
With current code, the certbot-auto self-upgrade process can make it actually to downgrade itself, because the comparison done is an equality test between local certbot-auto version and the remote one. This is a flaw for attackers, that could make certbot-auto break itself by falsely advertising it about an old version as the latest one available.
A function is added to make a more advanced comparison between version. Certbot-auto will upgrade itself only if the local version is strictly inferior to the latest one available. For instance, a version 0.28.0 will not upgrade itself if the latest one available on internet is 0.27.1. Similarly, non-official versions like 0.28.0.dev0 will never trigger a self-upgrade, to help development workflows.
This implementation relies only on the Python distribution installed by certbot-auto (supporting 2.7+) and basic shell operations, to be compatible with any UNIX-based system.
* Check version with protection again downgrade
* Create a stable version of letsencrypt-auto to use correctly self-upgrade functionality
* Update letsencrypt-auto-source/letsencrypt-auto.template
Following some inconsistencies occurred during by developments, and in the light of #6508, it decided to wrote a PR that will take fully advantage of the conversion from bash to python to the development setup tools.
This PR adresses several issues when trying to use the development setup tools (`tools/venv.py` and `tools/venv3.py`:
* on Windows, `python` executable is not always in PATH (default behavior)
* even if the option is checked, the `python` executable is not associated to the usually symlink `python3` on Windows
* on Windows again, really powerful introspection of the available Python environments can be done with `py`, the Windows Python launcher
* in general for all systems, `tools/venv.py` and `tools/venv3.py` ensures that the respective Python major version will be used to setup the virtual environment if available.
* finally, the best and first candidate to test should be the Python executable used to launch the `tools/venv*.py` script. It was not relevant before because it was shell scripts, but do it is.
The logic is shared in `_venv_common.py`, and will be called appropriately for both scripts. In priority decreasing order, python executable will be search and tested:
* from the current Python executable, as exposed by `sys.executable`
* from any python or pythonX (X as a python version like 2, 3 or 2.7 or 3.4) executable available in PATH
* from the Windows Python launched `py` if available
Individual changes were:
* Update tools/venv3.py to support py launcher on Windows
* Fix typo in help message
* More explicit calls with space protection
* Complete refactoring to take advantage of the python runtime, and control of the compatible version to use.
After #6485 and #6435, it appears that there is no good reason to not fail fast when test, cover or linting scripts are executed.
This PR ensures to fail fast by invoking commands throught subprocess.check_call instead of subprocess.call, and by removing the handling of non-zero exit code at the end of theses scripts.
As now coverage on Windows is executed with thresholds, I added specific thresholds for this platform. Because some portions of code that are done for Unix platform will not be executed on Windows.
Note that coverage reports from Travis and AppVeyor are accumulated on Codecov. So if a file is covered up to 50 % on Linux, and all other parts are covered on Windows, then coverage is 100 % for Codecov.
Note: that PR also fixes the ability of coverage tests to fail if thresholds are exceeded.
* Use check_call to fail fast in all scripts related to tests/lint/coverage/deploy
* Make specific coverage threshold for windows
It is about the exit codes that are returned from the various scripts in tools during tox execution.
Indeed, tox relies on the non-zero exit code from a given script to know that something failed during the execution.
Previously, theses scripts were in bash, and a bash script returns an exit code that is the higher code returned from any of the command executed by the script. So if any command return a non-zero (in particular pylint or pytest), then the script return also non-zero.
Now that these scripts are converted into python, pylint and pytest are executed via subprocess, that returns the exit code as variables. But if theses codes are not handled explicitly, the python script itself will return zero if no python exception occured. As a consequence currently, Certbot CI system is unable to detect any test error or lint error, because there is no exception in this case, only exit codes from the binaries executed.
This PR fixes that, by handling correctly the exit code from the most critical scripts, install_and_test.py and tox.cover.py, but also all the scripts that I converted into Python and that could be executed in the context of a shell (via tox or directly for instance).
Certbot relies heavily on bash scripts to deploy a development environment and to execute tests. This is fine for Linux systems, including Travis, but problematic for Windows machines.
This PR converts all theses scripts into Python, to make them platform independant.
As a consequence, tox-win.ini is not needed anymore, and tox can be run indifferently on Windows or on Linux using a common tox.ini. AppVeyor is updated accordingly to execute tests for acme, certbot and all dns plugins. Other tests are not executed as they are for Docker, unsupported Apache/Nginx/Postfix plugins (for now) or not relevant for Windows (explicit Linux distribution tests or pylint).
Another PR will be done on certbot website to update how a dev environment can be set up.
* Replace several shell scripts by python equivalent.
* Correction on tox coverage
* Extend usage of new python scripts
* Various corrections
* Replace venv construction bash scripts by python equivalents
* Update tox.ini
* Unicode lines to compare files
* Put modifications on letsencrypt-auto-source instead of generated scripts
* Add executable permissions for Linux.
* Merge tox win tests into main tox
* Skip lock_test on Windows
* Correct appveyor config
* Update appveyor.yml
* Explicit coverage py27 or py37
* Avoid to cover non supported certbot plugins on Windows
* Update tox.ini
* Remove specific warnings during CI
* No cover on a debug code for tests only.
* Update documentation and help script on venv/venv3.py
* Customize help message for Windows
* Quote correctly executable path with potential spaces in it.
* Copy pipstrap from upstream
This PR update requirement of Lexicon to 2.7.14 on OVH plugin, to allow HTTP proxy to be used correctly when underlying OVH provider is invoked.
* Update Lexicon to correct use of HTTP proxy on OVH provider
* Update dev_constraints.txt
* Update CHANGELOG.md
On Linux, you can invoke os.rename(src, dst) even if dst already exists. In this case, destination file will be atomically replaced by the source file.
On Windows, this will lead to an OSError because changes are not atomic. This cause certbot renew to fail in particular, because the old certificate configuration needs to be replace by the new when a certificate is effectively renewed.
One could use the cross-platform function os.replace, but it is available only on Python >= 3.3.
This PR add a function in compat to handle correctly this case on Windows, and delegating everything else to os.rename.
* Cross platform compatible os.rename (we can use os.replace if its python 3)
* Use os.replace instead of custom non-atomic code.
* Avoid errors for lint and mypy. Add a test.
So here we are: after #6361 has been merged, time is to provide an environment to execute the automated testing on Windows.
Here are the assertions used to build the CI on Windows:
every test running on Linux should ultimately be runnable on Windows, in a cross-platform compatible manner (there is one or two exception, when a test does not have any meaning for Windows),
currently some tests are not runnable on Windows: theses tests are ignored by default when the environment is Windows using a custom decorator: @broken_on_windows,
test environment should have functionalities similar to Travis, in particular an execution test matrix against various versions of Python and Windows,
so test execution is done through AppVeyor, as it supports the requirements: it add a CI step along Travis and Codecov for each PR, all of this ensuring that Certbot is entirely functional on both Linux and Windows,
code in tests can be changed, but code in Certbot should be changed as little as possible, to avoid regression risks.
So far in this PR, I focused on the tests on Certbot core and ACME library. Concerning the plugins, it will be done later, for plugins which have an interest on Windows. Test are executed against Python 3.4, 3.5, 3.6 and 3.7, for Windows Server 2012 R2 and Windows Server 2016.
I succeeded at making 258/259 of acme tests to work, and 828/868 of certbot core tests to work. Most of the errors where not because of Certbot itself, but because of how the tests are written. After redesigning some test utilitaries, and things like file path handling, or CRLF/LF, a lot of the errors vanished.
I needed also to ignore a lot of IO errors typically occurring when a tearDown test process tries to delete a file before it has been closed: this kind of behavior is acceptable for Linux, but not for Windows. As a consequence, and until the tearDown process is improved, a lot of temporary files are not cleared on Windows after a test campaign.
Remaining broken tests requires a more subtile approach to solve the errors, I will correct them progressively in future PR.
Last words about tox. I did not used the existing tox.ini for now. It is just to far from what is supported on Windows: lot of bash scripts that should be rewritten completely, and that contain test logic not ready/relevant for Windows (plugin tests, Docker compilation/test, GNU distribution versatility handling and so on). So I use an independent file tox-win.ini for now, with the goal to merge it ultimately with the existing logic.
* Define a tox configuration for windows, to execute tests against Python 3.4, 3.5, 3.6 and 3.7 + code coverage on Codecov.io
* Correct windows compatibility on certbot codebase
* Correct windows compatibility on certbot display functionalities
* Correct windows compatibility on certbot plugins
* Correct test utils to run tests on windows. Add decorator to skip (permanently) or mark broken (temporarily) tests on windows
* Correct tests on certbot core to run them both on windows and linux. Mark some of them as broken on windows for now.
* Lock tests are completely skipped on windows. Planned to be replace in next PR.
* Correct tests on certbot display to run them both on windows and linux. Mark some of them as broken on windows for now.
* Correct test utils for acme on windows. Add decorator to skip (permanently) or mark broken (temporarily) tests on windows.
* Correct acme tests to run them both on windows and linux. Allow a reduction of code coverage of 1% on acme code base.
* Create AppVeyor CI for Certbot on Windows, to run the test matrix (py34,35,36,37+coverage) on Windows Server 2012 R2 and Windows Server 2016.
* Update changelog with Windows compatibility of Certbot.
* Corrections about tox, pyreadline and CI logic
* Correct english
* Some corrections for acme
* Newlines corrections
* Remove changelog
* Use os.devnull instead of /dev/null to be used on Windows
* Uid is a always a number now.
* Correct linting
* PR https://github.com/python/typeshed/pull/2136 has been merge to third-party upstream 6 months ago, so code patch can be removed.
* And so acme coverage should be 100% again.
* More compatible tests Windows+Linux
* Use stable line separator
* Remove unused import
* Do not rely on pytest in certbot tests
* Use json.dumps to another json embedding weird characters
* Change comment
* Add import
* Test rolling builds #1
* Test rolling builds #2
* Correction on json serialization
* It seems that rolling builds are not canceling jobs on PR. Revert back to fail fast code in the pipeline.
* Add and use a compatibility layer to allow certbot to be run on windows.
* Fix path comparison
* Corrections on compat and util for tests
* Less intrusive way to parse prefix in webroot plugin working for both linux and windows.
* Disable pylint import-error for some optional imports in compat.py
* Ensure path is normalized before prefixes are generated in webroot plugin
* Same prefixes in linux and windows, in fact root path is not needed in webroot plugin
* Check that user has administrative rights before continuing on windows (necessary for symlink creation)
* More straightforward way to test administrative rights on windows
* Try to resolve import error in travis ci
* OK. We go for full introspection to trick the ci.
* Move the administrative rights control to the certbot entrypoint
* Add comment for a really non trivial code.
* Allow some commands to be run on a shell without admin rights
* Avoid races conditions on windows for lock files
* Add sphinx doc to the compat functions.
* Remove irrelevant Windows error in the lock mechanism.
* Some corrections on compat