forked from lix-project/lix
478 lines
15 KiB
C++
478 lines
15 KiB
C++
#include "globals.hh"
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#include "shared.hh"
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#include "store-api.hh"
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#include "gc-store.hh"
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#include "util.hh"
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#include "loggers.hh"
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#include "progress-bar.hh"
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#include <algorithm>
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#include <cctype>
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#include <exception>
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#include <iostream>
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#include <mutex>
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#include <cstdlib>
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#include <sys/time.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <signal.h>
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#ifdef __linux__
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#include <features.h>
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#endif
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#ifdef __GLIBC__
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#include <gnu/lib-names.h>
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#include <nss.h>
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#include <dlfcn.h>
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#endif
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#include <openssl/crypto.h>
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#include <sodium.h>
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namespace nix {
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char * * savedArgv;
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static bool gcWarning = true;
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void printGCWarning()
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{
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if (!gcWarning) return;
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static bool haveWarned = false;
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warnOnce(haveWarned,
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"you did not specify '--add-root'; "
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"the result might be removed by the garbage collector");
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}
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void printMissing(ref<Store> store, const std::vector<DerivedPath> & paths, Verbosity lvl)
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{
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uint64_t downloadSize, narSize;
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StorePathSet willBuild, willSubstitute, unknown;
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store->queryMissing(paths, willBuild, willSubstitute, unknown, downloadSize, narSize);
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printMissing(store, willBuild, willSubstitute, unknown, downloadSize, narSize, lvl);
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}
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void printMissing(ref<Store> store, const StorePathSet & willBuild,
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const StorePathSet & willSubstitute, const StorePathSet & unknown,
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uint64_t downloadSize, uint64_t narSize, Verbosity lvl)
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{
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if (!willBuild.empty()) {
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if (willBuild.size() == 1)
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printMsg(lvl, "this derivation will be built:");
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else
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printMsg(lvl, "these %d derivations will be built:", willBuild.size());
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auto sorted = store->topoSortPaths(willBuild);
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reverse(sorted.begin(), sorted.end());
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for (auto & i : sorted)
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printMsg(lvl, " %s", store->printStorePath(i));
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}
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if (!willSubstitute.empty()) {
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const float downloadSizeMiB = downloadSize / (1024.f * 1024.f);
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const float narSizeMiB = narSize / (1024.f * 1024.f);
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if (willSubstitute.size() == 1) {
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printMsg(lvl, "this path will be fetched (%.2f MiB download, %.2f MiB unpacked):",
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downloadSizeMiB,
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narSizeMiB);
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} else {
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printMsg(lvl, "these %d paths will be fetched (%.2f MiB download, %.2f MiB unpacked):",
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willSubstitute.size(),
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downloadSizeMiB,
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narSizeMiB);
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}
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for (auto & i : willSubstitute)
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printMsg(lvl, " %s", store->printStorePath(i));
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}
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if (!unknown.empty()) {
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printMsg(lvl, "don't know how to build these paths%s:",
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(settings.readOnlyMode ? " (may be caused by read-only store access)" : ""));
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for (auto & i : unknown)
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printMsg(lvl, " %s", store->printStorePath(i));
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}
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}
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std::string getArg(const std::string & opt,
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Strings::iterator & i, const Strings::iterator & end)
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{
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++i;
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if (i == end) throw UsageError("'%1%' requires an argument", opt);
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return *i;
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}
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#if OPENSSL_VERSION_NUMBER < 0x10101000L
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/* OpenSSL is not thread-safe by default - it will randomly crash
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unless the user supplies a mutex locking function. So let's do
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that. */
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static std::vector<std::mutex> opensslLocks;
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static void opensslLockCallback(int mode, int type, const char * file, int line)
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{
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if (mode & CRYPTO_LOCK)
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opensslLocks[type].lock();
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else
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opensslLocks[type].unlock();
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}
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#endif
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static std::once_flag dns_resolve_flag;
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static void preloadNSS() {
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/* builtin:fetchurl can trigger a DNS lookup, which with glibc can trigger a dynamic library load of
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one of the glibc NSS libraries in a sandboxed child, which will fail unless the library's already
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been loaded in the parent. So we force a lookup of an invalid domain to force the NSS machinery to
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load its lookup libraries in the parent before any child gets a chance to. */
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std::call_once(dns_resolve_flag, []() {
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#ifdef __GLIBC__
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/* On linux, glibc will run every lookup through the nss layer.
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* That means every lookup goes, by default, through nscd, which acts as a local
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* cache.
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* Because we run builds in a sandbox, we also remove access to nscd otherwise
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* lookups would leak into the sandbox.
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*
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* But now we have a new problem, we need to make sure the nss_dns backend that
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* does the dns lookups when nscd is not available is loaded or available.
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*
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* We can't make it available without leaking nix's environment, so instead we'll
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* load the backend, and configure nss so it does not try to run dns lookups
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* through nscd.
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*
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* This is technically only used for builtins:fetch* functions so we only care
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* about dns.
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*
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* All other platforms are unaffected.
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*/
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if (!dlopen(LIBNSS_DNS_SO, RTLD_NOW))
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warn("unable to load nss_dns backend");
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// FIXME: get hosts entry from nsswitch.conf.
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__nss_configure_lookup("hosts", "files dns");
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#endif
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});
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}
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static void sigHandler(int signo) { }
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void initNix()
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{
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/* Turn on buffering for cerr. */
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#if HAVE_PUBSETBUF
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static char buf[1024];
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std::cerr.rdbuf()->pubsetbuf(buf, sizeof(buf));
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#endif
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#if OPENSSL_VERSION_NUMBER < 0x10101000L
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/* Initialise OpenSSL locking. */
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opensslLocks = std::vector<std::mutex>(CRYPTO_num_locks());
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CRYPTO_set_locking_callback(opensslLockCallback);
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#endif
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if (sodium_init() == -1)
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throw Error("could not initialise libsodium");
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loadConfFile();
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startSignalHandlerThread();
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/* Reset SIGCHLD to its default. */
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struct sigaction act;
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sigemptyset(&act.sa_mask);
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act.sa_flags = 0;
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act.sa_handler = SIG_DFL;
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if (sigaction(SIGCHLD, &act, 0))
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throw SysError("resetting SIGCHLD");
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/* Install a dummy SIGUSR1 handler for use with pthread_kill(). */
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act.sa_handler = sigHandler;
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if (sigaction(SIGUSR1, &act, 0)) throw SysError("handling SIGUSR1");
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#if __APPLE__
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/* HACK: on darwin, we need can’t use sigprocmask with SIGWINCH.
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* Instead, add a dummy sigaction handler, and signalHandlerThread
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* can handle the rest. */
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act.sa_handler = sigHandler;
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if (sigaction(SIGWINCH, &act, 0)) throw SysError("handling SIGWINCH");
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/* Disable SA_RESTART for interrupts, so that system calls on this thread
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* error with EINTR like they do on Linux.
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* Most signals on BSD systems default to SA_RESTART on, but Nix
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* expects EINTR from syscalls to properly exit. */
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act.sa_handler = SIG_DFL;
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if (sigaction(SIGINT, &act, 0)) throw SysError("handling SIGINT");
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if (sigaction(SIGTERM, &act, 0)) throw SysError("handling SIGTERM");
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if (sigaction(SIGHUP, &act, 0)) throw SysError("handling SIGHUP");
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if (sigaction(SIGPIPE, &act, 0)) throw SysError("handling SIGPIPE");
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if (sigaction(SIGQUIT, &act, 0)) throw SysError("handling SIGQUIT");
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if (sigaction(SIGTRAP, &act, 0)) throw SysError("handling SIGTRAP");
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#endif
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/* Register a SIGSEGV handler to detect stack overflows. */
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detectStackOverflow();
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/* There is no privacy in the Nix system ;-) At least not for
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now. In particular, store objects should be readable by
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everybody. */
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umask(0022);
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/* Initialise the PRNG. */
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struct timeval tv;
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gettimeofday(&tv, 0);
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srandom(tv.tv_usec);
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/* On macOS, don't use the per-session TMPDIR (as set e.g. by
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sshd). This breaks build users because they don't have access
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to the TMPDIR, in particular in ‘nix-store --serve’. */
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#if __APPLE__
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if (hasPrefix(getEnv("TMPDIR").value_or("/tmp"), "/var/folders/"))
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unsetenv("TMPDIR");
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#endif
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preloadNSS();
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initLibStore();
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}
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LegacyArgs::LegacyArgs(const std::string & programName,
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std::function<bool(Strings::iterator & arg, const Strings::iterator & end)> parseArg)
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: MixCommonArgs(programName), parseArg(parseArg)
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{
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addFlag({
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.longName = "no-build-output",
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.shortName = 'Q',
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.description = "Do not show build output.",
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.handler = {[&]() {setLogFormat(LogFormat::raw); }},
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});
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addFlag({
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.longName = "keep-failed",
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.shortName ='K',
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.description = "Keep temporary directories of failed builds.",
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.handler = {&(bool&) settings.keepFailed, true},
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});
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addFlag({
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.longName = "keep-going",
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.shortName ='k',
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.description = "Keep going after a build fails.",
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.handler = {&(bool&) settings.keepGoing, true},
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});
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addFlag({
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.longName = "fallback",
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.description = "Build from source if substitution fails.",
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.handler = {&(bool&) settings.tryFallback, true},
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});
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auto intSettingAlias = [&](char shortName, const std::string & longName,
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const std::string & description, const std::string & dest)
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{
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addFlag({
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.longName = longName,
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.shortName = shortName,
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.description = description,
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.labels = {"n"},
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.handler = {[=](std::string s) {
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auto n = string2IntWithUnitPrefix<uint64_t>(s);
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settings.set(dest, std::to_string(n));
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}}
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});
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};
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intSettingAlias(0, "cores", "Maximum number of CPU cores to use inside a build.", "cores");
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intSettingAlias(0, "max-silent-time", "Number of seconds of silence before a build is killed.", "max-silent-time");
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intSettingAlias(0, "timeout", "Number of seconds before a build is killed.", "timeout");
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addFlag({
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.longName = "readonly-mode",
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.description = "Do not write to the Nix store.",
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.handler = {&settings.readOnlyMode, true},
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});
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addFlag({
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.longName = "no-gc-warning",
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.description = "Disable warnings about not using `--add-root`.",
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.handler = {&gcWarning, false},
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});
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addFlag({
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.longName = "store",
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.description = "The URL of the Nix store to use.",
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.labels = {"store-uri"},
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.handler = {&(std::string&) settings.storeUri},
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});
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}
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bool LegacyArgs::processFlag(Strings::iterator & pos, Strings::iterator end)
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{
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if (MixCommonArgs::processFlag(pos, end)) return true;
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bool res = parseArg(pos, end);
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if (res) ++pos;
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return res;
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}
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bool LegacyArgs::processArgs(const Strings & args, bool finish)
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{
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if (args.empty()) return true;
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assert(args.size() == 1);
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Strings ss(args);
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auto pos = ss.begin();
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if (!parseArg(pos, ss.end()))
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throw UsageError("unexpected argument '%1%'", args.front());
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return true;
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}
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void parseCmdLine(int argc, char * * argv,
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std::function<bool(Strings::iterator & arg, const Strings::iterator & end)> parseArg)
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{
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parseCmdLine(std::string(baseNameOf(argv[0])), argvToStrings(argc, argv), parseArg);
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}
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void parseCmdLine(const std::string & programName, const Strings & args,
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std::function<bool(Strings::iterator & arg, const Strings::iterator & end)> parseArg)
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{
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LegacyArgs(programName, parseArg).parseCmdline(args);
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}
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void printVersion(const std::string & programName)
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{
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std::cout << format("%1% (Nix) %2%") % programName % nixVersion << std::endl;
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if (verbosity > lvlInfo) {
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Strings cfg;
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#if HAVE_BOEHMGC
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cfg.push_back("gc");
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#endif
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cfg.push_back("signed-caches");
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std::cout << "System type: " << settings.thisSystem << "\n";
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std::cout << "Additional system types: " << concatStringsSep(", ", settings.extraPlatforms.get()) << "\n";
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std::cout << "Features: " << concatStringsSep(", ", cfg) << "\n";
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std::cout << "System configuration file: " << settings.nixConfDir + "/nix.conf" << "\n";
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std::cout << "User configuration files: " <<
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concatStringsSep(":", settings.nixUserConfFiles)
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<< "\n";
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std::cout << "Store directory: " << settings.nixStore << "\n";
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std::cout << "State directory: " << settings.nixStateDir << "\n";
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std::cout << "Data directory: " << settings.nixDataDir << "\n";
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}
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throw Exit();
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}
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void showManPage(const std::string & name)
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{
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restoreProcessContext();
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setenv("MANPATH", settings.nixManDir.c_str(), 1);
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execlp("man", "man", name.c_str(), nullptr);
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throw SysError("command 'man %1%' failed", name.c_str());
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}
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int handleExceptions(const std::string & programName, std::function<void()> fun)
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{
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ReceiveInterrupts receiveInterrupts; // FIXME: need better place for this
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ErrorInfo::programName = baseNameOf(programName);
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std::string error = ANSI_RED "error:" ANSI_NORMAL " ";
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try {
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try {
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fun();
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} catch (...) {
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/* Subtle: we have to make sure that any `interrupted'
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condition is discharged before we reach printMsg()
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below, since otherwise it will throw an (uncaught)
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exception. */
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setInterruptThrown();
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throw;
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}
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} catch (Exit & e) {
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return e.status;
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} catch (UsageError & e) {
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logError(e.info());
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printError("Try '%1% --help' for more information.", programName);
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return 1;
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} catch (BaseError & e) {
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logError(e.info());
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return e.status;
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} catch (std::bad_alloc & e) {
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printError(error + "out of memory");
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return 1;
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} catch (std::exception & e) {
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printError(error + e.what());
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return 1;
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}
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return 0;
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}
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RunPager::RunPager()
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{
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if (!isatty(STDOUT_FILENO)) return;
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char * pager = getenv("NIX_PAGER");
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if (!pager) pager = getenv("PAGER");
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if (pager && ((std::string) pager == "" || (std::string) pager == "cat")) return;
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stopProgressBar();
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Pipe toPager;
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toPager.create();
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pid = startProcess([&]() {
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if (dup2(toPager.readSide.get(), STDIN_FILENO) == -1)
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throw SysError("dupping stdin");
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if (!getenv("LESS"))
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setenv("LESS", "FRSXMK", 1);
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restoreProcessContext();
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if (pager)
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execl("/bin/sh", "sh", "-c", pager, nullptr);
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execlp("pager", "pager", nullptr);
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execlp("less", "less", nullptr);
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execlp("more", "more", nullptr);
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throw SysError("executing '%1%'", pager);
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});
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pid.setKillSignal(SIGINT);
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stdout = fcntl(STDOUT_FILENO, F_DUPFD_CLOEXEC, 0);
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if (dup2(toPager.writeSide.get(), STDOUT_FILENO) == -1)
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throw SysError("dupping stdout");
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}
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RunPager::~RunPager()
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{
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try {
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if (pid != -1) {
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std::cout.flush();
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dup2(stdout, STDOUT_FILENO);
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pid.wait();
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}
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} catch (...) {
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ignoreException();
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}
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}
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PrintFreed::~PrintFreed()
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{
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if (show)
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std::cout << fmt("%d store paths deleted, %s freed\n",
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results.paths.size(),
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showBytes(results.bytesFreed));
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}
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Exit::~Exit() { }
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}
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