1511aa9f48
Previously, to build a derivation remotely, we had to copy the entire closure of the .drv file to the remote machine, even though we only need the top-level derivation. This is very wasteful: the closure can contain thousands of store paths, and in some Hydra use cases, include source paths that are very large (e.g. Git/Mercurial checkouts). So now there is a new operation, StoreAPI::buildDerivation(), that performs a build from an in-memory representation of a derivation (BasicDerivation) rather than from a on-disk .drv file. The only files that need to be in the Nix store are the sources of the derivation (drv.inputSrcs), and the needed output paths of the dependencies (as described by drv.inputDrvs). "nix-store --serve" exposes this interface. Note that this is a privileged operation, because you can construct a derivation that builds any store path whatsoever. Fixing this will require changing the hashing scheme (i.e., the output paths should be computed from the other fields in BasicDerivation, allowing them to be verified without access to other derivations). However, this would be quite nice because it would allow .drv-free building (e.g. "nix-env -i" wouldn't have to write any .drv files to disk). Fixes #173.
346 lines
9.6 KiB
C++
346 lines
9.6 KiB
C++
#pragma once
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#include <string>
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#include <unordered_set>
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#include "store-api.hh"
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#include "util.hh"
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#include "pathlocks.hh"
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class sqlite3;
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class sqlite3_stmt;
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namespace nix {
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/* Nix store and database schema version. Version 1 (or 0) was Nix <=
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0.7. Version 2 was Nix 0.8 and 0.9. Version 3 is Nix 0.10.
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Version 4 is Nix 0.11. Version 5 is Nix 0.12-0.16. Version 6 is
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Nix 1.0. Version 7 is Nix 1.3. */
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const int nixSchemaVersion = 7;
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extern string drvsLogDir;
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struct Derivation;
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struct OptimiseStats
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{
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unsigned long filesLinked;
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unsigned long long bytesFreed;
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unsigned long long blocksFreed;
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OptimiseStats()
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{
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filesLinked = 0;
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bytesFreed = blocksFreed = 0;
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}
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};
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struct RunningSubstituter
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{
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Path program;
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Pid pid;
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AutoCloseFD to, from, error;
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FdSource fromBuf;
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bool disabled;
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RunningSubstituter() : disabled(false) { };
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};
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/* Wrapper object to close the SQLite database automatically. */
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struct SQLite
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{
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sqlite3 * db;
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SQLite() { db = 0; }
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~SQLite();
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operator sqlite3 * () { return db; }
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};
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/* Wrapper object to create and destroy SQLite prepared statements. */
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struct SQLiteStmt
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{
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sqlite3 * db;
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sqlite3_stmt * stmt;
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unsigned int curArg;
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SQLiteStmt() { stmt = 0; }
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void create(sqlite3 * db, const string & s);
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void reset();
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~SQLiteStmt();
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operator sqlite3_stmt * () { return stmt; }
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void bind(const string & value);
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void bind(int value);
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void bind64(long long value);
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void bind();
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};
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class LocalStore : public StoreAPI
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{
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private:
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typedef std::map<Path, RunningSubstituter> RunningSubstituters;
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RunningSubstituters runningSubstituters;
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Path linksDir;
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public:
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/* Initialise the local store, upgrading the schema if
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necessary. */
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LocalStore(bool reserveSpace = true);
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~LocalStore();
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/* Implementations of abstract store API methods. */
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bool isValidPath(const Path & path);
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PathSet queryValidPaths(const PathSet & paths);
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PathSet queryAllValidPaths();
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ValidPathInfo queryPathInfo(const Path & path);
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Hash queryPathHash(const Path & path);
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void queryReferences(const Path & path, PathSet & references);
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void queryReferrers(const Path & path, PathSet & referrers);
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Path queryDeriver(const Path & path);
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PathSet queryValidDerivers(const Path & path);
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PathSet queryDerivationOutputs(const Path & path);
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StringSet queryDerivationOutputNames(const Path & path);
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Path queryPathFromHashPart(const string & hashPart);
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PathSet querySubstitutablePaths(const PathSet & paths);
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void querySubstitutablePathInfos(const Path & substituter,
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PathSet & paths, SubstitutablePathInfos & infos);
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void querySubstitutablePathInfos(const PathSet & paths,
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SubstitutablePathInfos & infos);
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Path addToStore(const string & name, const Path & srcPath,
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bool recursive = true, HashType hashAlgo = htSHA256,
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PathFilter & filter = defaultPathFilter, bool repair = false);
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/* Like addToStore(), but the contents of the path are contained
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in `dump', which is either a NAR serialisation (if recursive ==
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true) or simply the contents of a regular file (if recursive ==
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false). */
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Path addToStoreFromDump(const string & dump, const string & name,
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bool recursive = true, HashType hashAlgo = htSHA256, bool repair = false);
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Path addTextToStore(const string & name, const string & s,
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const PathSet & references, bool repair = false);
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void exportPath(const Path & path, bool sign,
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Sink & sink);
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Paths importPaths(bool requireSignature, Source & source);
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void buildPaths(const PathSet & paths, BuildMode buildMode);
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BuildResult buildDerivation(const Path & drvPath, const BasicDerivation & drv,
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BuildMode buildMode) override;
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void ensurePath(const Path & path);
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void addTempRoot(const Path & path);
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void addIndirectRoot(const Path & path);
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void syncWithGC();
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Roots findRoots();
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void collectGarbage(const GCOptions & options, GCResults & results);
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/* Optimise the disk space usage of the Nix store by hard-linking
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files with the same contents. */
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void optimiseStore(OptimiseStats & stats);
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/* Generic variant of the above method. */
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void optimiseStore();
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/* Optimise a single store path. */
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void optimisePath(const Path & path);
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/* Check the integrity of the Nix store. Returns true if errors
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remain. */
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bool verifyStore(bool checkContents, bool repair);
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/* Register the validity of a path, i.e., that `path' exists, that
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the paths referenced by it exists, and in the case of an output
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path of a derivation, that it has been produced by a successful
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execution of the derivation (or something equivalent). Also
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register the hash of the file system contents of the path. The
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hash must be a SHA-256 hash. */
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void registerValidPath(const ValidPathInfo & info);
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void registerValidPaths(const ValidPathInfos & infos);
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/* Register that the build of a derivation with output `path' has
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failed. */
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void registerFailedPath(const Path & path);
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/* Query whether `path' previously failed to build. */
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bool hasPathFailed(const Path & path);
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PathSet queryFailedPaths();
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void clearFailedPaths(const PathSet & paths);
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void vacuumDB();
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/* Repair the contents of the given path by redownloading it using
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a substituter (if available). */
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void repairPath(const Path & path);
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/* Check whether the given valid path exists and has the right
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contents. */
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bool pathContentsGood(const Path & path);
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void markContentsGood(const Path & path);
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void setSubstituterEnv();
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private:
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Path schemaPath;
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/* Lock file used for upgrading. */
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AutoCloseFD globalLock;
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/* The SQLite database object. */
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SQLite db;
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/* Some precompiled SQLite statements. */
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SQLiteStmt stmtRegisterValidPath;
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SQLiteStmt stmtUpdatePathInfo;
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SQLiteStmt stmtAddReference;
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SQLiteStmt stmtQueryPathInfo;
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SQLiteStmt stmtQueryReferences;
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SQLiteStmt stmtQueryReferrers;
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SQLiteStmt stmtInvalidatePath;
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SQLiteStmt stmtRegisterFailedPath;
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SQLiteStmt stmtHasPathFailed;
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SQLiteStmt stmtQueryFailedPaths;
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SQLiteStmt stmtClearFailedPath;
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SQLiteStmt stmtAddDerivationOutput;
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SQLiteStmt stmtQueryValidDerivers;
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SQLiteStmt stmtQueryDerivationOutputs;
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SQLiteStmt stmtQueryPathFromHashPart;
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/* Cache for pathContentsGood(). */
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std::map<Path, bool> pathContentsGoodCache;
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bool didSetSubstituterEnv;
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/* The file to which we write our temporary roots. */
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Path fnTempRoots;
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AutoCloseFD fdTempRoots;
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int getSchema();
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void openDB(bool create);
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void makeStoreWritable();
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unsigned long long queryValidPathId(const Path & path);
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unsigned long long addValidPath(const ValidPathInfo & info, bool checkOutputs = true);
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void addReference(unsigned long long referrer, unsigned long long reference);
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void appendReferrer(const Path & from, const Path & to, bool lock);
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void rewriteReferrers(const Path & path, bool purge, PathSet referrers);
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void invalidatePath(const Path & path);
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/* Delete a path from the Nix store. */
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void invalidatePathChecked(const Path & path);
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void verifyPath(const Path & path, const PathSet & store,
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PathSet & done, PathSet & validPaths, bool repair, bool & errors);
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void updatePathInfo(const ValidPathInfo & info);
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void upgradeStore6();
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void upgradeStore7();
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PathSet queryValidPathsOld();
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ValidPathInfo queryPathInfoOld(const Path & path);
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struct GCState;
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void deleteGarbage(GCState & state, const Path & path);
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void tryToDelete(GCState & state, const Path & path);
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bool canReachRoot(GCState & state, PathSet & visited, const Path & path);
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void deletePathRecursive(GCState & state, const Path & path);
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bool isActiveTempFile(const GCState & state,
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const Path & path, const string & suffix);
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int openGCLock(LockType lockType);
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void removeUnusedLinks(const GCState & state);
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void startSubstituter(const Path & substituter,
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RunningSubstituter & runningSubstituter);
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string getLineFromSubstituter(RunningSubstituter & run);
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template<class T> T getIntLineFromSubstituter(RunningSubstituter & run);
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Path createTempDirInStore();
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Path importPath(bool requireSignature, Source & source);
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void checkDerivationOutputs(const Path & drvPath, const Derivation & drv);
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typedef std::unordered_set<ino_t> InodeHash;
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InodeHash loadInodeHash();
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Strings readDirectoryIgnoringInodes(const Path & path, const InodeHash & inodeHash);
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void optimisePath_(OptimiseStats & stats, const Path & path, InodeHash & inodeHash);
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// Internal versions that are not wrapped in retry_sqlite.
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bool isValidPath_(const Path & path);
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void queryReferrers_(const Path & path, PathSet & referrers);
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};
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typedef std::pair<dev_t, ino_t> Inode;
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typedef set<Inode> InodesSeen;
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/* "Fix", or canonicalise, the meta-data of the files in a store path
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after it has been built. In particular:
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- the last modification date on each file is set to 1 (i.e.,
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00:00:01 1/1/1970 UTC)
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- the permissions are set of 444 or 555 (i.e., read-only with or
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without execute permission; setuid bits etc. are cleared)
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- the owner and group are set to the Nix user and group, if we're
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running as root. */
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void canonicalisePathMetaData(const Path & path, uid_t fromUid, InodesSeen & inodesSeen);
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void canonicalisePathMetaData(const Path & path, uid_t fromUid);
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void canonicaliseTimestampAndPermissions(const Path & path);
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MakeError(PathInUse, Error);
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}
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