Revive running builds in a PID namespace
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f16b8786a2
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1 changed files with 59 additions and 30 deletions
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@ -1586,6 +1586,13 @@ void chmod_(const Path & path, mode_t mode)
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}
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}
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int childEntry(void * arg)
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{
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((DerivationGoal *) arg)->runChild();
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return 1;
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}
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void DerivationGoal::startBuilder()
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void DerivationGoal::startBuilder()
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{
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{
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startNest(nest, lvlInfo, format(
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startNest(nest, lvlInfo, format(
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@ -1902,11 +1909,58 @@ void DerivationGoal::startBuilder()
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builderOut.create();
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builderOut.create();
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/* Fork a child to build the package. */
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/* Fork a child to build the package. */
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ProcessOptions options;
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if (useChroot) {
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options.allowVfork = !buildUser.enabled();
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/* Set up private namespaces for the build:
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pid = startProcess([&]() {
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runChild();
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- The PID namespace causes the build to start as PID 1.
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}, options);
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Processes outside of the chroot are not visible to those
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on the inside, but processes inside the chroot are
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visible from the outside (though with different PIDs).
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- The private mount namespace ensures that all the bind
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mounts we do will only show up in this process and its
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children, and will disappear automatically when we're
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done.
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- The private network namespace ensures that the builder
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cannot talk to the outside world (or vice versa). It
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only has a private loopback interface.
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- The IPC namespace prevents the builder from communicating
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with outside processes using SysV IPC mechanisms (shared
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memory, message queues, semaphores). It also ensures
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that all IPC objects are destroyed when the builder
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exits.
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- The UTS namespace ensures that builders see a hostname of
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localhost rather than the actual hostname.
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We use a helper process to do the clone() to work around
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clone() being broken in multi-threaded programs due to
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at-fork handlers not being run. Note that we use
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CLONE_PARENT to ensure that the real builder is parented to
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us.
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*/
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Pid helper = startProcess([&]() {
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char stack[32 * 1024];
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pid_t child = clone(childEntry, stack + sizeof(stack) - 8,
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CLONE_NEWPID | CLONE_NEWNS | CLONE_NEWNET | CLONE_NEWIPC | CLONE_NEWUTS | CLONE_PARENT | SIGCHLD, this);
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if (child == -1) throw SysError("cloning builder process");
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writeFull(builderOut.writeSide, int2String(child) + "\n");
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_exit(0);
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});
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if (helper.wait(true) != 0)
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throw Error("unable to start build process");
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pid_t tmp;
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if (!string2Int<pid_t>(readLine(builderOut.readSide), tmp)) abort();
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pid = tmp;
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} else {
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ProcessOptions options;
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options.allowVfork = !buildUser.enabled();
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pid = startProcess([&]() {
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runChild();
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}, options);
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}
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/* parent */
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/* parent */
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pid.setSeparatePG(true);
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pid.setSeparatePG(true);
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@ -1922,7 +1976,6 @@ void DerivationGoal::startBuilder()
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printMsg(lvlError, format("@ build-started %1% - %2% %3%")
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printMsg(lvlError, format("@ build-started %1% - %2% %3%")
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% drvPath % drv.platform % logFile);
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% drvPath % drv.platform % logFile);
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}
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}
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}
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}
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@ -1938,30 +1991,6 @@ void DerivationGoal::runChild()
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#if CHROOT_ENABLED
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#if CHROOT_ENABLED
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if (useChroot) {
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if (useChroot) {
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/* Set up private namespaces for the build:
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- The private mount namespace ensures that all the bind
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mounts we do will only show up in this process and
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its children, and will disappear automatically when
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we're done.
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- The private network namespace ensures that the
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builder cannot talk to the outside world (or vice
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versa). It only has a private loopback interface.
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- The IPC namespace prevents the builder from
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communicating with outside processes using SysV IPC
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mechanisms (shared memory, message queues,
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semaphores). It also ensures that all IPC objects
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are destroyed when the builder exits.
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- The UTS namespace ensures that builders see a
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hostname of localhost rather than the actual
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hostname.
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*/
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if (unshare(CLONE_NEWNS | CLONE_NEWNET | CLONE_NEWIPC | CLONE_NEWUTS) == -1)
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throw SysError("setting up private namespaces");
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/* Initialise the loopback interface. */
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/* Initialise the loopback interface. */
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AutoCloseFD fd(socket(PF_INET, SOCK_DGRAM, IPPROTO_IP));
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AutoCloseFD fd(socket(PF_INET, SOCK_DGRAM, IPPROTO_IP));
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if (fd == -1) throw SysError("cannot open IP socket");
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if (fd == -1) throw SysError("cannot open IP socket");
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