2016-03-29 15:29:50 +03:00
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#include "command.hh"
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#include "shared.hh"
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#include "store-api.hh"
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#include "sync.hh"
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#include "thread-pool.hh"
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2018-03-30 01:56:13 +03:00
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#include "references.hh"
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2016-03-29 15:29:50 +03:00
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#include <atomic>
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using namespace nix;
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2016-04-14 22:14:29 +03:00
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struct CmdVerify : StorePathsCommand
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2016-03-29 15:29:50 +03:00
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{
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bool noContents = false;
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2016-04-07 16:14:12 +03:00
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bool noTrust = false;
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2016-03-30 12:18:54 +03:00
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Strings substituterUris;
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2019-10-10 16:03:01 +03:00
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size_t sigsNeeded = 0;
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2016-03-29 15:29:50 +03:00
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2016-04-14 22:14:29 +03:00
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CmdVerify()
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2016-03-29 15:29:50 +03:00
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{
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mkFlag(0, "no-contents", "do not verify the contents of each store path", &noContents);
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2016-04-07 16:14:12 +03:00
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mkFlag(0, "no-trust", "do not verify whether each store path is trusted", &noTrust);
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2020-05-04 23:40:19 +03:00
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addFlag({
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.longName = "substituter",
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.shortName = 's',
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.description = "use signatures from specified store",
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.labels = {"store-uri"},
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.handler = {[&](std::string s) { substituterUris.push_back(s); }}
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});
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2016-04-07 16:14:12 +03:00
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mkIntFlag('n', "sigs-needed", "require that each path has at least N valid signatures", &sigsNeeded);
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2016-03-29 15:29:50 +03:00
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}
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2016-04-14 22:14:29 +03:00
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std::string description() override
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{
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return "verify the integrity of store paths";
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}
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2016-04-21 15:58:32 +03:00
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Examples examples() override
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{
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return {
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Example{
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"To verify the entire Nix store:",
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"nix verify --all"
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},
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Example{
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"To check whether each path in the closure of Firefox has at least 2 signatures:",
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"nix verify -r -n2 --no-contents $(type -p firefox)"
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},
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};
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}
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2019-12-05 20:11:09 +02:00
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void run(ref<Store> store, StorePaths storePaths) override
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2016-03-29 15:29:50 +03:00
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{
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2016-03-30 12:18:54 +03:00
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std::vector<ref<Store>> substituters;
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for (auto & s : substituterUris)
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2016-09-02 13:35:48 +03:00
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substituters.push_back(openStore(s));
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2016-03-30 12:18:54 +03:00
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2016-03-29 15:29:50 +03:00
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auto publicKeys = getDefaultPublicKeys();
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2017-08-16 20:23:46 +03:00
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Activity act(*logger, actVerifyPaths);
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2016-04-25 16:26:07 +03:00
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std::atomic<size_t> done{0};
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2016-03-29 15:29:50 +03:00
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std::atomic<size_t> untrusted{0};
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std::atomic<size_t> corrupted{0};
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std::atomic<size_t> failed{0};
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2017-08-16 20:23:46 +03:00
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std::atomic<size_t> active{0};
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2016-03-29 15:29:50 +03:00
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2017-08-16 20:23:46 +03:00
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auto update = [&]() {
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act.progress(done, storePaths.size(), active, failed);
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};
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2016-03-29 15:29:50 +03:00
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ThreadPool pool;
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auto doPath = [&](const Path & storePath) {
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try {
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2016-03-30 12:18:54 +03:00
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checkInterrupt();
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2017-08-28 20:13:24 +03:00
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Activity act2(*logger, lvlInfo, actUnknown, fmt("checking '%s'", storePath));
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2017-08-16 20:23:46 +03:00
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MaintainCount<std::atomic<size_t>> mcActive(active);
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update();
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2016-03-29 15:29:50 +03:00
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2019-12-05 20:11:09 +02:00
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auto info = store->queryPathInfo(store->parseStorePath(storePath));
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2016-03-29 15:29:50 +03:00
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if (!noContents) {
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2018-03-30 01:56:13 +03:00
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std::unique_ptr<AbstractHashSink> hashSink;
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if (info->ca == "")
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hashSink = std::make_unique<HashSink>(info->narHash.type);
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else
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2019-12-05 20:11:09 +02:00
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hashSink = std::make_unique<HashModuloSink>(info->narHash.type, storePathToHash(store->printStorePath(info->path)));
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2016-03-29 15:29:50 +03:00
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2018-03-30 01:56:13 +03:00
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store->narFromPath(info->path, *hashSink);
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auto hash = hashSink->finish();
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2016-03-29 15:29:50 +03:00
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2016-04-19 19:50:15 +03:00
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if (hash.first != info->narHash) {
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2017-08-16 20:23:46 +03:00
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corrupted++;
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2019-12-05 20:11:09 +02:00
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act2.result(resCorruptedPath, store->printStorePath(info->path));
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2016-09-21 17:11:01 +03:00
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printError(
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2019-12-05 20:11:09 +02:00
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"path '%s' was modified! expected hash '%s', got '%s'",
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store->printStorePath(info->path), info->narHash.to_string(), hash.first.to_string());
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2016-03-29 15:29:50 +03:00
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}
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}
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2016-04-07 16:14:12 +03:00
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if (!noTrust) {
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2016-03-29 15:29:50 +03:00
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2016-03-30 12:18:54 +03:00
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bool good = false;
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2016-04-19 19:50:15 +03:00
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if (info->ultimate && !sigsNeeded)
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2016-03-30 12:18:54 +03:00
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good = true;
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2016-04-07 16:14:12 +03:00
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else {
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StringSet sigsSeen;
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2019-10-10 16:03:01 +03:00
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size_t actualSigsNeeded = std::max(sigsNeeded, (size_t) 1);
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2016-04-07 16:14:12 +03:00
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size_t validSigs = 0;
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auto doSigs = [&](StringSet sigs) {
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for (auto sig : sigs) {
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2019-10-09 16:51:52 +03:00
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if (!sigsSeen.insert(sig).second) continue;
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2019-12-05 20:11:09 +02:00
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if (validSigs < ValidPathInfo::maxSigs && info->checkSignature(*store, publicKeys, sig))
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2016-04-07 16:14:12 +03:00
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validSigs++;
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}
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};
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2016-08-03 14:17:11 +03:00
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if (info->isContentAddressed(*store)) validSigs = ValidPathInfo::maxSigs;
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2016-04-19 19:50:15 +03:00
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doSigs(info->sigs);
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2016-03-30 12:18:54 +03:00
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for (auto & store2 : substituters) {
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2016-04-07 16:14:12 +03:00
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if (validSigs >= actualSigsNeeded) break;
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try {
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2016-08-03 14:17:11 +03:00
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auto info2 = store2->queryPathInfo(info->path);
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if (info2->isContentAddressed(*store)) validSigs = ValidPathInfo::maxSigs;
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doSigs(info2->sigs);
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2016-04-19 19:50:15 +03:00
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} catch (InvalidPath &) {
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2016-04-07 16:14:12 +03:00
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} catch (Error & e) {
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2016-09-21 17:11:01 +03:00
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printError(format(ANSI_RED "error:" ANSI_NORMAL " %s") % e.what());
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2016-03-30 12:18:54 +03:00
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}
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}
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2016-04-07 16:14:12 +03:00
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if (validSigs >= actualSigsNeeded)
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good = true;
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2016-03-30 12:18:54 +03:00
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}
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if (!good) {
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2016-03-29 15:29:50 +03:00
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untrusted++;
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2019-12-05 20:11:09 +02:00
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act2.result(resUntrustedPath, store->printStorePath(info->path));
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printError("path '%s' is untrusted", store->printStorePath(info->path));
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2016-03-29 15:29:50 +03:00
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}
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}
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done++;
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} catch (Error & e) {
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2016-09-21 17:11:01 +03:00
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printError(format(ANSI_RED "error:" ANSI_NORMAL " %s") % e.what());
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2016-03-29 15:29:50 +03:00
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failed++;
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}
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2017-08-16 20:23:46 +03:00
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update();
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2016-03-29 15:29:50 +03:00
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};
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for (auto & storePath : storePaths)
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2019-12-05 20:11:09 +02:00
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pool.enqueue(std::bind(doPath, store->printStorePath(storePath)));
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2016-03-29 15:29:50 +03:00
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pool.process();
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throw Exit(
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(corrupted ? 1 : 0) |
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(untrusted ? 2 : 0) |
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(failed ? 4 : 0));
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}
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};
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2019-06-18 17:01:35 +03:00
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static auto r1 = registerCommand<CmdVerify>("verify");
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