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Merge pull request #7692 from edolstra/fix-docker-auto-uid-allocation
Fix auto-uid-allocation in Docker containers
This commit is contained in:
commit
ae6de012ee
@ -16,6 +16,7 @@
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#include "json-utils.hh"
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#include "json-utils.hh"
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#include "cgroup.hh"
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#include "cgroup.hh"
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#include "personality.hh"
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#include "personality.hh"
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#include "namespaces.hh"
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#include <regex>
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#include <regex>
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#include <queue>
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#include <queue>
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@ -167,7 +168,8 @@ void LocalDerivationGoal::killSandbox(bool getStats)
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}
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}
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void LocalDerivationGoal::tryLocalBuild() {
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void LocalDerivationGoal::tryLocalBuild()
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{
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unsigned int curBuilds = worker.getNrLocalBuilds();
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unsigned int curBuilds = worker.getNrLocalBuilds();
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if (curBuilds >= settings.maxBuildJobs) {
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if (curBuilds >= settings.maxBuildJobs) {
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state = &DerivationGoal::tryToBuild;
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state = &DerivationGoal::tryToBuild;
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@ -205,6 +207,17 @@ void LocalDerivationGoal::tryLocalBuild() {
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#endif
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#endif
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}
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}
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#if __linux__
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if (useChroot) {
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if (!mountNamespacesSupported() || !pidNamespacesSupported()) {
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if (!settings.sandboxFallback)
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throw Error("this system does not support the kernel namespaces that are required for sandboxing; use '--no-sandbox' to disable sandboxing");
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debug("auto-disabling sandboxing because the prerequisite namespaces are not available");
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useChroot = false;
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}
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}
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#endif
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if (useBuildUsers()) {
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if (useBuildUsers()) {
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if (!buildUser)
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if (!buildUser)
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buildUser = acquireUserLock(parsedDrv->useUidRange() ? 65536 : 1, useChroot);
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buildUser = acquireUserLock(parsedDrv->useUidRange() ? 65536 : 1, useChroot);
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@ -888,12 +901,7 @@ void LocalDerivationGoal::startBuilder()
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userNamespaceSync.create();
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userNamespaceSync.create();
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Path maxUserNamespaces = "/proc/sys/user/max_user_namespaces";
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usingUserNamespace = userNamespacesSupported();
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static bool userNamespacesEnabled =
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pathExists(maxUserNamespaces)
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&& trim(readFile(maxUserNamespaces)) != "0";
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usingUserNamespace = userNamespacesEnabled;
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Pid helper = startProcess([&]() {
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Pid helper = startProcess([&]() {
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@ -920,64 +928,15 @@ void LocalDerivationGoal::startBuilder()
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flags |= CLONE_NEWUSER;
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flags |= CLONE_NEWUSER;
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pid_t child = clone(childEntry, stack + stackSize, flags, this);
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pid_t child = clone(childEntry, stack + stackSize, flags, this);
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if (child == -1 && errno == EINVAL) {
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/* Fallback for Linux < 2.13 where CLONE_NEWPID and
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if (child == -1)
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CLONE_PARENT are not allowed together. */
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throw SysError("creating sandboxed builder process using clone()");
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flags &= ~CLONE_NEWPID;
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child = clone(childEntry, stack + stackSize, flags, this);
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}
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if (usingUserNamespace && child == -1 && (errno == EPERM || errno == EINVAL)) {
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/* Some distros patch Linux to not allow unprivileged
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* user namespaces. If we get EPERM or EINVAL, try
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* without CLONE_NEWUSER and see if that works.
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* Details: https://salsa.debian.org/kernel-team/linux/-/commit/d98e00eda6bea437e39b9e80444eee84a32438a6
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*/
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usingUserNamespace = false;
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flags &= ~CLONE_NEWUSER;
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child = clone(childEntry, stack + stackSize, flags, this);
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}
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if (child == -1) {
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switch(errno) {
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case EPERM:
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case EINVAL: {
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int errno_ = errno;
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if (!userNamespacesEnabled && errno==EPERM)
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notice("user namespaces appear to be disabled; they are required for sandboxing; check /proc/sys/user/max_user_namespaces");
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if (userNamespacesEnabled) {
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Path procSysKernelUnprivilegedUsernsClone = "/proc/sys/kernel/unprivileged_userns_clone";
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if (pathExists(procSysKernelUnprivilegedUsernsClone)
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&& trim(readFile(procSysKernelUnprivilegedUsernsClone)) == "0") {
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notice("user namespaces appear to be disabled; they are required for sandboxing; check /proc/sys/kernel/unprivileged_userns_clone");
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}
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}
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Path procSelfNsUser = "/proc/self/ns/user";
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if (!pathExists(procSelfNsUser))
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notice("/proc/self/ns/user does not exist; your kernel was likely built without CONFIG_USER_NS=y, which is required for sandboxing");
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/* Otherwise exit with EPERM so we can handle this in the
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parent. This is only done when sandbox-fallback is set
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to true (the default). */
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if (settings.sandboxFallback)
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_exit(1);
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/* Mention sandbox-fallback in the error message so the user
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knows that having it disabled contributed to the
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unrecoverability of this failure */
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throw SysError(errno_, "creating sandboxed builder process using clone(), without sandbox-fallback");
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}
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default:
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throw SysError("creating sandboxed builder process using clone()");
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}
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}
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writeFull(builderOut.writeSide.get(),
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writeFull(builderOut.writeSide.get(),
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fmt("%d %d\n", usingUserNamespace, child));
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fmt("%d %d\n", usingUserNamespace, child));
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_exit(0);
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_exit(0);
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});
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});
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int res = helper.wait();
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if (helper.wait() != 0)
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if (res != 0 && settings.sandboxFallback) {
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useChroot = false;
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initTmpDir();
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goto fallback;
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} else if (res != 0)
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throw Error("unable to start build process");
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throw Error("unable to start build process");
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userNamespaceSync.readSide = -1;
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userNamespaceSync.readSide = -1;
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@ -1045,9 +1004,6 @@ void LocalDerivationGoal::startBuilder()
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} else
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} else
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#endif
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#endif
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{
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{
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#if __linux__
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fallback:
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#endif
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pid = startProcess([&]() {
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pid = startProcess([&]() {
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runChild();
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runChild();
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});
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});
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100
src/libutil/namespaces.cc
Normal file
100
src/libutil/namespaces.cc
Normal file
@ -0,0 +1,100 @@
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#if __linux__
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#include "namespaces.hh"
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#include "util.hh"
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#include "finally.hh"
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#include <mntent.h>
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namespace nix {
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bool userNamespacesSupported()
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{
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static auto res = [&]() -> bool
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{
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if (!pathExists("/proc/self/ns/user")) {
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debug("'/proc/self/ns/user' does not exist; your kernel was likely built without CONFIG_USER_NS=y");
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return false;
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}
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Path maxUserNamespaces = "/proc/sys/user/max_user_namespaces";
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if (!pathExists(maxUserNamespaces) ||
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trim(readFile(maxUserNamespaces)) == "0")
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{
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debug("user namespaces appear to be disabled; check '/proc/sys/user/max_user_namespaces'");
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return false;
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}
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Path procSysKernelUnprivilegedUsernsClone = "/proc/sys/kernel/unprivileged_userns_clone";
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if (pathExists(procSysKernelUnprivilegedUsernsClone)
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&& trim(readFile(procSysKernelUnprivilegedUsernsClone)) == "0")
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{
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debug("user namespaces appear to be disabled; check '/proc/sys/kernel/unprivileged_userns_clone'");
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return false;
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}
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Pid pid = startProcess([&]()
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{
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auto res = unshare(CLONE_NEWUSER);
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_exit(res ? 1 : 0);
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});
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bool supported = pid.wait() == 0;
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if (!supported)
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debug("user namespaces do not work on this system");
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return supported;
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}();
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return res;
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}
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bool mountNamespacesSupported()
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{
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static auto res = [&]() -> bool
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{
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bool useUserNamespace = userNamespacesSupported();
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Pid pid = startProcess([&]()
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{
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auto res = unshare(CLONE_NEWNS | (useUserNamespace ? CLONE_NEWUSER : 0));
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_exit(res ? 1 : 0);
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});
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bool supported = pid.wait() == 0;
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if (!supported)
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debug("mount namespaces do not work on this system");
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return supported;
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}();
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return res;
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}
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bool pidNamespacesSupported()
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{
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static auto res = [&]() -> bool
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{
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/* Check whether /proc is fully visible, i.e. there are no
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filesystems mounted on top of files inside /proc. If this
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is not the case, then we cannot mount a new /proc inside
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the sandbox that matches the sandbox's PID namespace.
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See https://lore.kernel.org/lkml/87tvsrjai0.fsf@xmission.com/T/. */
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auto fp = fopen("/proc/mounts", "r");
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if (!fp) return false;
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Finally delFP = [&]() { fclose(fp); };
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while (auto ent = getmntent(fp))
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if (hasPrefix(std::string_view(ent->mnt_dir), "/proc/")) {
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debug("PID namespaces do not work because /proc is not fully visible; disabling sandboxing");
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return false;
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}
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return true;
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}();
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return res;
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}
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}
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#endif
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15
src/libutil/namespaces.hh
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15
src/libutil/namespaces.hh
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@ -0,0 +1,15 @@
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#pragma once
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namespace nix {
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#if __linux__
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bool userNamespacesSupported();
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bool mountNamespacesSupported();
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bool pidNamespacesSupported();
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#endif
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}
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