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# include "signature/local-keys.hh"
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# include "source-accessor.hh"
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# include "globals.hh"
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# include "derived-path.hh"
# include "realisation.hh"
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# include "derivations.hh"
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# include "store-api.hh"
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# include "util.hh"
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# include "nar-info-disk-cache.hh"
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# include "thread-pool.hh"
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# include "url.hh"
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# include "references.hh"
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# include "archive.hh"
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# include "callback.hh"
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# include "remote-store.hh"
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// FIXME this should not be here, see TODO below on
// `addMultipleToStore`.
# include "worker-protocol.hh"
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# include "signals.hh"
# include "users.hh"
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# include <nlohmann/json.hpp>
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# include <regex>
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using json = nlohmann : : json ;
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namespace nix {
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bool StoreDirConfig : : isInStore ( PathView path ) const
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{
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return isInDir ( path , storeDir ) ;
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}
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std : : pair < StorePath , Path > StoreDirConfig : : toStorePath ( PathView path ) const
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{
if ( ! isInStore ( path ) )
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throw Error ( " path '%1%' is not in the Nix store " , path ) ;
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auto slash = path . find ( ' / ' , storeDir . size ( ) + 1 ) ;
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if ( slash = = Path : : npos )
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return { parseStorePath ( path ) , " " } ;
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else
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return { parseStorePath ( path . substr ( 0 , slash ) ) , ( Path ) path . substr ( slash ) } ;
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}
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Path Store : : followLinksToStore ( std : : string_view _path ) const
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{
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Path path = absPath ( std : : string ( _path ) ) ;
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while ( ! isInStore ( path ) ) {
if ( ! isLink ( path ) ) break ;
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auto target = readLink ( path ) ;
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path = absPath ( target , dirOf ( path ) ) ;
}
if ( ! isInStore ( path ) )
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throw BadStorePath ( " path '%1%' is not in the Nix store " , path ) ;
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return path ;
}
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StorePath Store : : followLinksToStorePath ( std : : string_view path ) const
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{
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return toStorePath ( followLinksToStore ( path ) ) . first ;
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}
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/* Store paths have the following form:
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< realized - path > = < store > / < h > - < name >
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where
< store > = the location of the Nix store , usually / nix / store
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< name > = a human readable name for the path , typically obtained
from the name attribute of the derivation , or the name of the
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source file from which the store path is created . For derivation
outputs other than the default " out " output , the string " -<id> "
is suffixed to < name > .
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< h > = base - 32 representation of the first 160 bits of a SHA - 256
hash of < s > ; the hash part of the store name
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< s > = the string " <type>:sha256:<h2>:<store>:<name> " ;
note that it includes the location of the store as well as the
name to make sure that changes to either of those are reflected
in the hash ( e . g . you won ' t get / nix / store / < h > - name1 and
/ nix / store / < h > - name2 with equal hash parts ) .
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< type > = one of :
" text:<r1>:<r2>:...<rN> "
for plain text files written to the store using
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addTextToStore ( ) ; < r1 > . . . < rN > are the store paths referenced
by this path , in the form described by < realized - path >
" source:<r1>:<r2>:...:<rN>:self "
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for paths copied to the store using addToStore ( ) when recursive
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= true and hashAlgo = " sha256 " . Just like in the text case , we
can have the store paths referenced by the path .
Additionally , we can have an optional : self label to denote self
reference .
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" output:<id> "
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for either the outputs created by derivations , OR paths copied
to the store using addToStore ( ) with recursive ! = true or
hashAlgo ! = " sha256 " ( in that case " source " is used ; it ' s
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silly , but it ' s done that way for compatibility ) . < id > is the
name of the output ( usually , " out " ) .
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< h2 > = base - 16 representation of a SHA - 256 hash of < s2 >
< s2 > =
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if < type > = " text:... " :
the string written to the resulting store path
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if < type > = " source:... " :
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the serialisation of the path from which this store path is
copied , as returned by hashPath ( )
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if < type > = " output:<id> " :
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for non - fixed derivation outputs :
the derivation ( see hashDerivationModulo ( ) in
primops . cc )
for paths copied by addToStore ( ) or produced by fixed - output
derivations :
the string " fixed:out:<rec><algo>:<hash>: " , where
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< rec > = " r: " for recursive ( path ) hashes , or " " for flat
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( file ) hashes
< algo > = " md5 " , " sha1 " or " sha256 "
< hash > = base - 16 representation of the path or flat hash of
the contents of the path ( or expected contents of the
path for fixed - output derivations )
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Note that since an output derivation has always type output , while
something added by addToStore can have type output or source depending
on the hash , this means that the same input can be hashed differently
if added to the store via addToStore or via a derivation , in the sha256
recursive case .
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It would have been nicer to handle fixed - output derivations under
" source " , e . g . have something like " source:<rec><algo> " , but we ' re
stuck with this for now . . .
The main reason for this way of computing names is to prevent name
collisions ( for security ) . For instance , it shouldn ' t be feasible
to come up with a derivation whose output path collides with the
path for a copied source . The former would have a < s > starting with
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" output:out: " , while the latter would have a < s > starting with
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" source: " .
*/
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StorePath StoreDirConfig : : makeStorePath ( std : : string_view type ,
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std : : string_view hash , std : : string_view name ) const
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{
/* e.g., "source:sha256:1abc...:/nix/store:foo.tar.gz" */
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auto s = std : : string ( type ) + " : " + std : : string ( hash )
+ " : " + storeDir + " : " + std : : string ( name ) ;
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auto h = compressHash ( hashString ( HashAlgorithm : : SHA256 , s ) , 20 ) ;
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return StorePath ( h , name ) ;
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}
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StorePath StoreDirConfig : : makeStorePath ( std : : string_view type ,
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const Hash & hash , std : : string_view name ) const
{
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return makeStorePath ( type , hash . to_string ( HashFormat : : Base16 , true ) , name ) ;
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}
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StorePath StoreDirConfig : : makeOutputPath ( std : : string_view id ,
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const Hash & hash , std : : string_view name ) const
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{
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return makeStorePath ( " output: " + std : : string { id } , hash , outputPathName ( name , id ) ) ;
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}
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/* Stuff the references (if any) into the type. This is a bit
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hacky , but we can ' t put them in , say , < s2 > ( per the grammar above )
since that would be ambiguous . */
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static std : : string makeType (
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const StoreDirConfig & store ,
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std : : string & & type ,
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const StoreReferences & references )
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{
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for ( auto & i : references . others ) {
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type + = " : " ;
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type + = store . printStorePath ( i ) ;
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}
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if ( references . self ) type + = " :self " ;
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return std : : move ( type ) ;
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}
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StorePath StoreDirConfig : : makeFixedOutputPath ( std : : string_view name , const FixedOutputInfo & info ) const
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{
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if ( info . hash . algo = = HashAlgorithm : : SHA256 & & info . method = = FileIngestionMethod : : Recursive ) {
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return makeStorePath ( makeType ( * this , " source " , info . references ) , info . hash , name ) ;
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} else {
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if ( ! info . references . empty ( ) ) {
throw Error ( " fixed output derivation '%s' is not allowed to refer to other store paths. \n You may need to use the 'unsafeDiscardReferences' derivation attribute, see the manual for more details. " ,
name ) ;
}
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return makeStorePath ( " output:out " ,
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hashString ( HashAlgorithm : : SHA256 ,
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" fixed:out: "
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+ makeFileIngestionPrefix ( info . method )
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+ info . hash . to_string ( HashFormat : : Base16 , true ) + " : " ) ,
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name ) ;
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}
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}
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StorePath StoreDirConfig : : makeFixedOutputPathFromCA ( std : : string_view name , const ContentAddressWithReferences & ca ) const
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{
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// New template
return std : : visit ( overloaded {
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[ & ] ( const TextInfo & ti ) {
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assert ( ti . hash . algo = = HashAlgorithm : : SHA256 ) ;
return makeStorePath (
makeType ( * this , " text " , StoreReferences {
. others = ti . references ,
. self = false ,
} ) ,
ti . hash ,
name ) ;
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} ,
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[ & ] ( const FixedOutputInfo & foi ) {
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return makeFixedOutputPath ( name , foi ) ;
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}
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} , ca . raw ) ;
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}
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std : : pair < StorePath , Hash > StoreDirConfig : : computeStorePath (
std : : string_view name ,
SourceAccessor & accessor ,
const CanonPath & path ,
ContentAddressMethod method ,
HashAlgorithm hashAlgo ,
const StorePathSet & references ,
PathFilter & filter ) const
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{
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auto h = hashPath ( accessor , path , method . getFileIngestionMethod ( ) , hashAlgo , filter ) . first ;
return {
makeFixedOutputPathFromCA (
name ,
ContentAddressWithReferences : : fromParts (
method ,
h ,
{
. others = references ,
. self = false ,
} ) ) ,
h ,
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} ;
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}
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StorePath Store : : addToStore (
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std : : string_view name ,
SourceAccessor & accessor ,
const CanonPath & path ,
ContentAddressMethod method ,
HashAlgorithm hashAlgo ,
const StorePathSet & references ,
PathFilter & filter ,
RepairFlag repair )
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{
auto source = sinkToSource ( [ & ] ( Sink & sink ) {
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dumpPath ( accessor , path , sink , method . getFileIngestionMethod ( ) , filter ) ;
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} ) ;
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return addToStoreFromDump ( * source , name , method , hashAlgo , references , repair ) ;
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}
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void Store : : addMultipleToStore (
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PathsSource & pathsToCopy ,
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Activity & act ,
RepairFlag repair ,
CheckSigsFlag checkSigs )
{
std : : atomic < size_t > nrDone { 0 } ;
std : : atomic < size_t > nrFailed { 0 } ;
std : : atomic < uint64_t > bytesExpected { 0 } ;
std : : atomic < uint64_t > nrRunning { 0 } ;
using PathWithInfo = std : : pair < ValidPathInfo , std : : unique_ptr < Source > > ;
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std : : map < StorePath , PathWithInfo * > infosMap ;
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StorePathSet storePathsToAdd ;
for ( auto & thingToAdd : pathsToCopy ) {
infosMap . insert_or_assign ( thingToAdd . first . path , & thingToAdd ) ;
storePathsToAdd . insert ( thingToAdd . first . path ) ;
}
auto showProgress = [ & ] ( ) {
act . progress ( nrDone , pathsToCopy . size ( ) , nrRunning , nrFailed ) ;
} ;
ThreadPool pool ;
processGraph < StorePath > ( pool ,
storePathsToAdd ,
[ & ] ( const StorePath & path ) {
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auto & [ info , _ ] = * infosMap . at ( path ) ;
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if ( isValidPath ( info . path ) ) {
nrDone + + ;
showProgress ( ) ;
return StorePathSet ( ) ;
}
bytesExpected + = info . narSize ;
act . setExpected ( actCopyPath , bytesExpected ) ;
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return info . references ;
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} ,
[ & ] ( const StorePath & path ) {
checkInterrupt ( ) ;
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auto & [ info_ , source_ ] = * infosMap . at ( path ) ;
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auto info = info_ ;
info . ultimate = false ;
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/* Make sure that the Source object is destroyed when
we ' re done . In particular , a SinkToSource object must
be destroyed to ensure that the destructors on its
stack frame are run ; this includes
LegacySSHStore : : narFromPath ( ) ' s connection lock . */
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auto source = std : : move ( source_ ) ;
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if ( ! isValidPath ( info . path ) ) {
MaintainCount < decltype ( nrRunning ) > mc ( nrRunning ) ;
showProgress ( ) ;
try {
addToStore ( info , * source , repair , checkSigs ) ;
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} catch ( Error & e ) {
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nrFailed + + ;
if ( ! settings . keepGoing )
throw e ;
printMsg ( lvlError , " could not copy %s: %s " , printStorePath ( path ) , e . what ( ) ) ;
showProgress ( ) ;
return ;
}
}
nrDone + + ;
showProgress ( ) ;
} ) ;
}
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void Store : : addMultipleToStore (
Source & source ,
RepairFlag repair ,
CheckSigsFlag checkSigs )
{
auto expected = readNum < uint64_t > ( source ) ;
for ( uint64_t i = 0 ; i < expected ; + + i ) {
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// FIXME we should not be using the worker protocol here, let
// alone the worker protocol with a hard-coded version!
auto info = WorkerProto : : Serialise < ValidPathInfo > : : read ( * this ,
WorkerProto : : ReadConn {
. from = source ,
. version = 16 ,
} ) ;
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info . ultimate = false ;
addToStore ( info , source , repair , checkSigs ) ;
}
}
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/*
The aim of this function is to compute in one pass the correct ValidPathInfo for
the files that we are trying to add to the store . To accomplish that in one
pass , given the different kind of inputs that we can take ( normal nar archives ,
nar archives with non SHA - 256 hashes , and flat files ) , we set up a net of sinks
and aliases . Also , since the dataflow is obfuscated by this , we include here a
graphviz diagram :
digraph graphname {
node [ shape = box ]
fileSource - > narSink
narSink [ style = dashed ]
narSink - > unsualHashTee [ style = dashed , label = " Recursive && !SHA-256 " ]
narSink - > narHashSink [ style = dashed , label = " else " ]
unsualHashTee - > narHashSink
unsualHashTee - > caHashSink
fileSource - > parseSink
parseSink [ style = dashed ]
parseSink - > fileSink [ style = dashed , label = " Flat " ]
parseSink - > blank [ style = dashed , label = " Recursive " ]
fileSink - > caHashSink
}
*/
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ValidPathInfo Store : : addToStoreSlow (
std : : string_view name ,
SourceAccessor & accessor ,
const CanonPath & srcPath ,
ContentAddressMethod method , HashAlgorithm hashAlgo ,
const StorePathSet & references ,
std : : optional < Hash > expectedCAHash )
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{
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HashSink narHashSink { HashAlgorithm : : SHA256 } ;
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HashSink caHashSink { hashAlgo } ;
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/* Note that fileSink and unusualHashTee must be mutually exclusive, since
they both write to caHashSink . Note that that requisite is currently true
because the former is only used in the flat case . */
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RegularFileSink fileSink { caHashSink } ;
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TeeSink unusualHashTee { narHashSink , caHashSink } ;
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auto & narSink = method = = FileIngestionMethod : : Recursive & & hashAlgo ! = HashAlgorithm : : SHA256
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? static_cast < Sink & > ( unusualHashTee )
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: narHashSink ;
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/* Functionally, this means that fileSource will yield the content of
srcPath . The fact that we use scratchpadSink as a temporary buffer here
is an implementation detail . */
auto fileSource = sinkToSource ( [ & ] ( Sink & scratchpadSink ) {
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accessor . dumpPath ( srcPath , scratchpadSink ) ;
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} ) ;
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/* tapped provides the same data as fileSource, but we also write all the
information to narSink . */
TeeSource tapped { * fileSource , narSink } ;
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NullFileSystemObjectSink blank ;
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auto & parseSink = method . getFileIngestionMethod ( ) = = FileIngestionMethod : : Flat
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? ( FileSystemObjectSink & ) fileSink
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: method . getFileIngestionMethod ( ) = = FileIngestionMethod : : Recursive
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? ( FileSystemObjectSink & ) blank
: ( abort ( ) , ( FileSystemObjectSink & ) * ( FileSystemObjectSink * ) nullptr ) ; // handled both cases
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/* The information that flows from tapped (besides being replicated in
narSink ) , is now put in parseSink . */
parseDump ( parseSink , tapped ) ;
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/* We extract the result of the computation from the sink by calling
finish . */
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auto [ narHash , narSize ] = narHashSink . finish ( ) ;
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auto hash = method = = FileIngestionMethod : : Recursive & & hashAlgo = = HashAlgorithm : : SHA256
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? narHash
: caHashSink . finish ( ) . first ;
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if ( expectedCAHash & & expectedCAHash ! = hash )
throw Error ( " hash mismatch for '%s' " , srcPath ) ;
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ValidPathInfo info {
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* this ,
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name ,
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ContentAddressWithReferences : : fromParts (
method ,
hash ,
{
. others = references ,
. self = false ,
} ) ,
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narHash ,
} ;
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info . narSize = narSize ;
if ( ! isValidPath ( info . path ) ) {
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auto source = sinkToSource ( [ & ] ( Sink & scratchpadSink ) {
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accessor . dumpPath ( srcPath , scratchpadSink ) ;
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} ) ;
addToStore ( info , * source ) ;
}
return info ;
}
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StringSet StoreConfig : : getDefaultSystemFeatures ( )
{
auto res = settings . systemFeatures . get ( ) ;
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if ( experimentalFeatureSettings . isEnabled ( Xp : : CaDerivations ) )
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res . insert ( " ca-derivations " ) ;
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if ( experimentalFeatureSettings . isEnabled ( Xp : : RecursiveNix ) )
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res . insert ( " recursive-nix " ) ;
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return res ;
}
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Store : : Store ( const Params & params )
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: StoreConfig ( params )
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, state ( { ( size_t ) pathInfoCacheSize } )
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{
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assertLibStoreInitialized ( ) ;
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}
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std : : string Store : : getUri ( )
{
return " " ;
}
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bool Store : : PathInfoCacheValue : : isKnownNow ( )
{
std : : chrono : : duration ttl = didExist ( )
? std : : chrono : : seconds ( settings . ttlPositiveNarInfoCache )
: std : : chrono : : seconds ( settings . ttlNegativeNarInfoCache ) ;
return std : : chrono : : steady_clock : : now ( ) < time_point + ttl ;
}
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std : : map < std : : string , std : : optional < StorePath > > Store : : queryStaticPartialDerivationOutputMap ( const StorePath & path )
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{
std : : map < std : : string , std : : optional < StorePath > > outputs ;
auto drv = readInvalidDerivation ( path ) ;
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for ( auto & [ outputName , output ] : drv . outputsAndOptPaths ( * this ) ) {
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outputs . emplace ( outputName , output . second ) ;
}
return outputs ;
}
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std : : map < std : : string , std : : optional < StorePath > > Store : : queryPartialDerivationOutputMap (
const StorePath & path ,
Store * evalStore_ )
{
auto & evalStore = evalStore_ ? * evalStore_ : * this ;
auto outputs = evalStore . queryStaticPartialDerivationOutputMap ( path ) ;
if ( ! experimentalFeatureSettings . isEnabled ( Xp : : CaDerivations ) )
return outputs ;
auto drv = evalStore . readInvalidDerivation ( path ) ;
auto drvHashes = staticOutputHashes ( * this , drv ) ;
for ( auto & [ outputName , hash ] : drvHashes ) {
auto realisation = queryRealisation ( DrvOutput { hash , outputName } ) ;
if ( realisation ) {
outputs . insert_or_assign ( outputName , realisation - > outPath ) ;
} else {
// queryStaticPartialDerivationOutputMap is not guaranteed
// to return std::nullopt for outputs which are not
// statically known.
outputs . insert ( { outputName , std : : nullopt } ) ;
}
}
return outputs ;
}
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OutputPathMap Store : : queryDerivationOutputMap ( const StorePath & path , Store * evalStore ) {
auto resp = queryPartialDerivationOutputMap ( path , evalStore ) ;
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OutputPathMap result ;
for ( auto & [ outName , optOutPath ] : resp ) {
if ( ! optOutPath )
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throw MissingRealisation ( printStorePath ( path ) , outName ) ;
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result . insert_or_assign ( outName , * optOutPath ) ;
}
return result ;
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}
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StorePathSet Store : : queryDerivationOutputs ( const StorePath & path )
{
auto outputMap = this - > queryDerivationOutputMap ( path ) ;
StorePathSet outputPaths ;
for ( auto & i : outputMap ) {
outputPaths . emplace ( std : : move ( i . second ) ) ;
}
return outputPaths ;
}
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void Store : : querySubstitutablePathInfos ( const StorePathCAMap & paths , SubstitutablePathInfos & infos )
{
if ( ! settings . useSubstitutes ) return ;
for ( auto & sub : getDefaultSubstituters ( ) ) {
for ( auto & path : paths ) {
if ( infos . count ( path . first ) )
// Choose first succeeding substituter.
continue ;
auto subPath ( path . first ) ;
// Recompute store path so that we can use a different store root.
if ( path . second ) {
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subPath = makeFixedOutputPathFromCA (
path . first . name ( ) ,
ContentAddressWithReferences : : withoutRefs ( * path . second ) ) ;
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if ( sub - > storeDir = = storeDir )
assert ( subPath = = path . first ) ;
if ( subPath ! = path . first )
debug ( " replaced path '%s' with '%s' for substituter '%s' " , printStorePath ( path . first ) , sub - > printStorePath ( subPath ) , sub - > getUri ( ) ) ;
} else if ( sub - > storeDir ! = storeDir ) continue ;
debug ( " checking substituter '%s' for path '%s' " , sub - > getUri ( ) , sub - > printStorePath ( subPath ) ) ;
try {
auto info = sub - > queryPathInfo ( subPath ) ;
if ( sub - > storeDir ! = storeDir & & ! ( info - > isContentAddressed ( * sub ) & & info - > references . empty ( ) ) )
continue ;
auto narInfo = std : : dynamic_pointer_cast < const NarInfo > (
std : : shared_ptr < const ValidPathInfo > ( info ) ) ;
infos . insert_or_assign ( path . first , SubstitutablePathInfo {
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. deriver = info - > deriver ,
. references = info - > references ,
. downloadSize = narInfo ? narInfo - > fileSize : 0 ,
. narSize = info - > narSize ,
} ) ;
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} catch ( InvalidPath & ) {
} catch ( SubstituterDisabled & ) {
} catch ( Error & e ) {
if ( settings . tryFallback )
logError ( e . info ( ) ) ;
else
throw ;
}
}
}
}
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bool Store : : isValidPath ( const StorePath & storePath )
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{
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{
auto state_ ( state . lock ( ) ) ;
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auto res = state_ - > pathInfoCache . get ( std : : string ( storePath . to_string ( ) ) ) ;
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if ( res & & res - > isKnownNow ( ) ) {
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stats . narInfoReadAverted + + ;
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return res - > didExist ( ) ;
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}
}
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if ( diskCache ) {
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auto res = diskCache - > lookupNarInfo ( getUri ( ) , std : : string ( storePath . hashPart ( ) ) ) ;
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if ( res . first ! = NarInfoDiskCache : : oUnknown ) {
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stats . narInfoReadAverted + + ;
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auto state_ ( state . lock ( ) ) ;
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state_ - > pathInfoCache . upsert ( std : : string ( storePath . to_string ( ) ) ,
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res . first = = NarInfoDiskCache : : oInvalid ? PathInfoCacheValue { } : PathInfoCacheValue { . value = res . second } ) ;
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return res . first = = NarInfoDiskCache : : oValid ;
}
}
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bool valid = isValidPathUncached ( storePath ) ;
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if ( diskCache & & ! valid )
// FIXME: handle valid = true case.
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diskCache - > upsertNarInfo ( getUri ( ) , std : : string ( storePath . hashPart ( ) ) , 0 ) ;
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return valid ;
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}
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/* Default implementation for stores that only implement
queryPathInfoUncached ( ) . */
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bool Store : : isValidPathUncached ( const StorePath & path )
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{
try {
queryPathInfo ( path ) ;
return true ;
} catch ( InvalidPath & ) {
return false ;
}
}
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ref < const ValidPathInfo > Store : : queryPathInfo ( const StorePath & storePath )
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{
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std : : promise < ref < const ValidPathInfo > > promise ;
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queryPathInfo ( storePath ,
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{ [ & ] ( std : : future < ref < const ValidPathInfo > > result ) {
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try {
promise . set_value ( result . get ( ) ) ;
} catch ( . . . ) {
promise . set_exception ( std : : current_exception ( ) ) ;
}
} } ) ;
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return promise . get_future ( ) . get ( ) ;
}
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static bool goodStorePath ( const StorePath & expected , const StorePath & actual )
{
return
expected . hashPart ( ) = = actual . hashPart ( )
& & ( expected . name ( ) = = Store : : MissingName | | expected . name ( ) = = actual . name ( ) ) ;
}
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std : : optional < std : : shared_ptr < const ValidPathInfo > > Store : : queryPathInfoFromClientCache ( const StorePath & storePath )
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{
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auto hashPart = std : : string ( storePath . hashPart ( ) ) ;
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{
auto res = state . lock ( ) - > pathInfoCache . get ( std : : string ( storePath . to_string ( ) ) ) ;
if ( res & & res - > isKnownNow ( ) ) {
stats . narInfoReadAverted + + ;
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if ( res - > didExist ( ) )
return std : : make_optional ( res - > value ) ;
else
return std : : make_optional ( nullptr ) ;
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}
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}
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if ( diskCache ) {
auto res = diskCache - > lookupNarInfo ( getUri ( ) , hashPart ) ;
if ( res . first ! = NarInfoDiskCache : : oUnknown ) {
stats . narInfoReadAverted + + ;
{
auto state_ ( state . lock ( ) ) ;
state_ - > pathInfoCache . upsert ( std : : string ( storePath . to_string ( ) ) ,
res . first = = NarInfoDiskCache : : oInvalid ? PathInfoCacheValue { } : PathInfoCacheValue { . value = res . second } ) ;
if ( res . first = = NarInfoDiskCache : : oInvalid | |
! goodStorePath ( storePath , res . second - > path ) )
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return std : : make_optional ( nullptr ) ;
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}
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assert ( res . second ) ;
return std : : make_optional ( res . second ) ;
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}
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}
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return std : : nullopt ;
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}
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void Store : : queryPathInfo ( const StorePath & storePath ,
Callback < ref < const ValidPathInfo > > callback ) noexcept
{
auto hashPart = std : : string ( storePath . hashPart ( ) ) ;
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try {
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auto r = queryPathInfoFromClientCache ( storePath ) ;
if ( r . has_value ( ) ) {
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std : : shared_ptr < const ValidPathInfo > & info = * r ;
if ( info )
return callback ( ref ( info ) ) ;
else
throw InvalidPath ( " path '%s' is not valid " , printStorePath ( storePath ) ) ;
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}
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} catch ( . . . ) { return callback . rethrow ( ) ; }
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auto callbackPtr = std : : make_shared < decltype ( callback ) > ( std : : move ( callback ) ) ;
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queryPathInfoUncached ( storePath ,
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{ [ this , storePath , hashPart , callbackPtr ] ( std : : future < std : : shared_ptr < const ValidPathInfo > > fut ) {
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try {
auto info = fut . get ( ) ;
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if ( diskCache )
diskCache - > upsertNarInfo ( getUri ( ) , hashPart , info ) ;
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{
auto state_ ( state . lock ( ) ) ;
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state_ - > pathInfoCache . upsert ( std : : string ( storePath . to_string ( ) ) , PathInfoCacheValue { . value = info } ) ;
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}
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if ( ! info | | ! goodStorePath ( storePath , info - > path ) ) {
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stats . narInfoMissing + + ;
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throw InvalidPath ( " path '%s' is not valid " , printStorePath ( storePath ) ) ;
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}
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( * callbackPtr ) ( ref < const ValidPathInfo > ( info ) ) ;
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} catch ( . . . ) { callbackPtr - > rethrow ( ) ; }
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} } ) ;
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}
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void Store : : queryRealisation ( const DrvOutput & id ,
Callback < std : : shared_ptr < const Realisation > > callback ) noexcept
{
try {
if ( diskCache ) {
auto [ cacheOutcome , maybeCachedRealisation ]
= diskCache - > lookupRealisation ( getUri ( ) , id ) ;
switch ( cacheOutcome ) {
case NarInfoDiskCache : : oValid :
debug ( " Returning a cached realisation for %s " , id . to_string ( ) ) ;
callback ( maybeCachedRealisation ) ;
return ;
case NarInfoDiskCache : : oInvalid :
debug (
" Returning a cached missing realisation for %s " ,
id . to_string ( ) ) ;
callback ( nullptr ) ;
return ;
case NarInfoDiskCache : : oUnknown :
break ;
}
}
} catch ( . . . ) {
return callback . rethrow ( ) ;
}
auto callbackPtr
= std : : make_shared < decltype ( callback ) > ( std : : move ( callback ) ) ;
queryRealisationUncached (
id ,
{ [ this , id , callbackPtr ] (
std : : future < std : : shared_ptr < const Realisation > > fut ) {
try {
auto info = fut . get ( ) ;
if ( diskCache ) {
if ( info )
diskCache - > upsertRealisation ( getUri ( ) , * info ) ;
else
diskCache - > upsertAbsentRealisation ( getUri ( ) , id ) ;
}
( * callbackPtr ) ( std : : shared_ptr < const Realisation > ( info ) ) ;
} catch ( . . . ) {
callbackPtr - > rethrow ( ) ;
}
} } ) ;
}
std : : shared_ptr < const Realisation > Store : : queryRealisation ( const DrvOutput & id )
{
using RealPtr = std : : shared_ptr < const Realisation > ;
std : : promise < RealPtr > promise ;
queryRealisation ( id ,
{ [ & ] ( std : : future < RealPtr > result ) {
try {
promise . set_value ( result . get ( ) ) ;
} catch ( . . . ) {
promise . set_exception ( std : : current_exception ( ) ) ;
}
} } ) ;
return promise . get_future ( ) . get ( ) ;
}
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void Store : : substitutePaths ( const StorePathSet & paths )
{
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std : : vector < DerivedPath > paths2 ;
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for ( auto & path : paths )
if ( ! path . isDerivation ( ) )
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paths2 . emplace_back ( DerivedPath : : Opaque { path } ) ;
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uint64_t downloadSize , narSize ;
StorePathSet willBuild , willSubstitute , unknown ;
queryMissing ( paths2 ,
willBuild , willSubstitute , unknown , downloadSize , narSize ) ;
if ( ! willSubstitute . empty ( ) )
try {
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std : : vector < DerivedPath > subs ;
for ( auto & p : willSubstitute ) subs . push_back ( DerivedPath : : Opaque { p } ) ;
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buildPaths ( subs ) ;
} catch ( Error & e ) {
logWarning ( e . info ( ) ) ;
}
}
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StorePathSet Store : : queryValidPaths ( const StorePathSet & paths , SubstituteFlag maybeSubstitute )
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{
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struct State
{
size_t left ;
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StorePathSet valid ;
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std : : exception_ptr exc ;
} ;
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Sync < State > state_ ( State { paths . size ( ) , StorePathSet ( ) } ) ;
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std : : condition_variable wakeup ;
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ThreadPool pool ;
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auto doQuery = [ & ] ( const StorePath & path ) {
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checkInterrupt ( ) ;
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queryPathInfo ( path , { [ path , & state_ , & wakeup ] ( std : : future < ref < const ValidPathInfo > > fut ) {
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auto state ( state_ . lock ( ) ) ;
try {
auto info = fut . get ( ) ;
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state - > valid . insert ( path ) ;
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} catch ( InvalidPath & ) {
} catch ( . . . ) {
state - > exc = std : : current_exception ( ) ;
}
assert ( state - > left ) ;
if ( ! - - state - > left )
wakeup . notify_one ( ) ;
} } ) ;
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} ;
for ( auto & path : paths )
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pool . enqueue ( std : : bind ( doQuery , path ) ) ;
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pool . process ( ) ;
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while ( true ) {
auto state ( state_ . lock ( ) ) ;
if ( ! state - > left ) {
if ( state - > exc ) std : : rethrow_exception ( state - > exc ) ;
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return std : : move ( state - > valid ) ;
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}
state . wait ( wakeup ) ;
}
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}
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/* Return a string accepted by decodeValidPathInfo() that
registers the specified paths as valid . Note : it ' s the
responsibility of the caller to provide a closure . */
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std : : string Store : : makeValidityRegistration ( const StorePathSet & paths ,
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bool showDerivers , bool showHash )
{
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std : : string s = " " ;
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for ( auto & i : paths ) {
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s + = printStorePath ( i ) + " \n " ;
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auto info = queryPathInfo ( i ) ;
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if ( showHash ) {
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s + = info - > narHash . to_string ( HashFormat : : Base16 , false ) + " \n " ;
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s + = fmt ( " %1% \n " , info - > narSize ) ;
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}
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auto deriver = showDerivers & & info - > deriver ? printStorePath ( * info - > deriver ) : " " ;
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s + = deriver + " \n " ;
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s + = fmt ( " %1% \n " , info - > references . size ( ) ) ;
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for ( auto & j : info - > references )
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s + = printStorePath ( j ) + " \n " ;
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}
return s ;
}
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StorePathSet Store : : exportReferences ( const StorePathSet & storePaths , const StorePathSet & inputPaths )
{
StorePathSet paths ;
for ( auto & storePath : storePaths ) {
if ( ! inputPaths . count ( storePath ) )
throw BuildError ( " cannot export references of path '%s' because it is not in the input closure of the derivation " , printStorePath ( storePath ) ) ;
computeFSClosure ( { storePath } , paths ) ;
}
/* If there are derivations in the graph, then include their
outputs as well . This is useful if you want to do things
like passing all build - time dependencies of some path to a
derivation that builds a NixOS DVD image . */
auto paths2 = paths ;
for ( auto & j : paths2 ) {
if ( j . isDerivation ( ) ) {
Derivation drv = derivationFromPath ( j ) ;
for ( auto & k : drv . outputsAndOptPaths ( * this ) ) {
if ( ! k . second . second )
/* FIXME: I am confused why we are calling
` computeFSClosure ` on the output path , rather than
derivation itself . That doesn ' t seem right to me , so I
won ' t try to implemented this for CA derivations . */
throw UnimplementedError ( " exportReferences on CA derivations is not yet implemented " ) ;
computeFSClosure ( * k . second . second , paths ) ;
}
}
}
return paths ;
}
exportReferencesGraph: Export more complete info in JSON format
This writes info about every path in the closure in the same format as
‘nix path-info --json’. Thus it also includes NAR hashes and sizes.
Example:
[
{
"path": "/nix/store/10h6li26i7g6z3mdpvra09yyf10mmzdr-hello-2.10",
"narHash": "sha256:0ckdc4z20kkmpqdilx0wl6cricxv90lh85xpv2qljppcmz6vzcxl",
"narSize": 197648,
"references": [
"/nix/store/10h6li26i7g6z3mdpvra09yyf10mmzdr-hello-2.10",
"/nix/store/27binbdy296qvjycdgr1535v8872vz3z-glibc-2.24"
],
"closureSize": 20939776
},
{
"path": "/nix/store/27binbdy296qvjycdgr1535v8872vz3z-glibc-2.24",
"narHash": "sha256:1nfn3m3p98y1c0kd0brp80dn9n5mycwgrk183j17rajya0h7gax3",
"narSize": 20742128,
"references": [
"/nix/store/27binbdy296qvjycdgr1535v8872vz3z-glibc-2.24"
],
"closureSize": 20742128
}
]
Fixes #1134.
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const Store : : Stats & Store : : getStats ( )
{
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{
auto state_ ( state . lock ( ) ) ;
stats . pathInfoCacheSize = state_ - > pathInfoCache . size ( ) ;
}
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return stats ;
}
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static std : : string makeCopyPathMessage (
std : : string_view srcUri ,
std : : string_view dstUri ,
std : : string_view storePath )
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{
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return srcUri = = " local " | | srcUri = = " daemon "
? fmt ( " copying path '%s' to '%s' " , storePath , dstUri )
: dstUri = = " local " | | dstUri = = " daemon "
? fmt ( " copying path '%s' from '%s' " , storePath , srcUri )
: fmt ( " copying path '%s' from '%s' to '%s' " , storePath , srcUri , dstUri ) ;
}
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void copyStorePath (
Store & srcStore ,
Store & dstStore ,
const StorePath & storePath ,
RepairFlag repair ,
CheckSigsFlag checkSigs )
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{
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/* Bail out early (before starting a download from srcStore) if
dstStore already has this path . */
if ( ! repair & & dstStore . isValidPath ( storePath ) )
return ;
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auto srcUri = srcStore . getUri ( ) ;
auto dstUri = dstStore . getUri ( ) ;
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auto storePathS = srcStore . printStorePath ( storePath ) ;
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Activity act ( * logger , lvlInfo , actCopyPath ,
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makeCopyPathMessage ( srcUri , dstUri , storePathS ) ,
{ storePathS , srcUri , dstUri } ) ;
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PushActivity pact ( act . id ) ;
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auto info = srcStore . queryPathInfo ( storePath ) ;
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uint64_t total = 0 ;
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// recompute store path on the chance dstStore does it differently
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if ( info - > ca & & info - > references . empty ( ) ) {
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auto info2 = make_ref < ValidPathInfo > ( * info ) ;
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info2 - > path = dstStore . makeFixedOutputPathFromCA (
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info - > path . name ( ) ,
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info - > contentAddressWithReferences ( ) . value ( ) ) ;
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if ( dstStore . storeDir = = srcStore . storeDir )
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assert ( info - > path = = info2 - > path ) ;
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info = info2 ;
}
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if ( info - > ultimate ) {
auto info2 = make_ref < ValidPathInfo > ( * info ) ;
info2 - > ultimate = false ;
info = info2 ;
}
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auto source = sinkToSource ( [ & ] ( Sink & sink ) {
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LambdaSink progressSink ( [ & ] ( std : : string_view data ) {
total + = data . size ( ) ;
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act . progress ( total , info - > narSize ) ;
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} ) ;
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TeeSink tee { sink , progressSink } ;
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srcStore . narFromPath ( storePath , tee ) ;
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} , [ & ] ( ) {
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throw EndOfFile ( " NAR for '%s' fetched from '%s' is incomplete " , srcStore . printStorePath ( storePath ) , srcStore . getUri ( ) ) ;
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} ) ;
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dstStore . addToStore ( * info , * source , repair , checkSigs ) ;
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}
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std : : map < StorePath , StorePath > copyPaths (
Store & srcStore ,
Store & dstStore ,
const RealisedPath : : Set & paths ,
RepairFlag repair ,
CheckSigsFlag checkSigs ,
SubstituteFlag substitute )
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{
StorePathSet storePaths ;
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std : : set < Realisation > toplevelRealisations ;
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for ( auto & path : paths ) {
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storePaths . insert ( path . path ( ) ) ;
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if ( auto realisation = std : : get_if < Realisation > ( & path . raw ) ) {
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experimentalFeatureSettings . require ( Xp : : CaDerivations ) ;
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toplevelRealisations . insert ( * realisation ) ;
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}
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}
auto pathsMap = copyPaths ( srcStore , dstStore , storePaths , repair , checkSigs , substitute ) ;
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ThreadPool pool ;
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try {
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// Copy the realisation closure
processGraph < Realisation > (
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pool , Realisation : : closure ( srcStore , toplevelRealisations ) ,
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[ & ] ( const Realisation & current ) - > std : : set < Realisation > {
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std : : set < Realisation > children ;
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for ( const auto & [ drvOutput , _ ] : current . dependentRealisations ) {
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auto currentChild = srcStore . queryRealisation ( drvOutput ) ;
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if ( ! currentChild )
throw Error (
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" incomplete realisation closure: '%s' is a "
" dependency of '%s' but isn't registered " ,
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drvOutput . to_string ( ) , current . id . to_string ( ) ) ;
children . insert ( * currentChild ) ;
}
return children ;
} ,
[ & ] ( const Realisation & current ) - > void {
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dstStore . registerDrvOutput ( current , checkSigs ) ;
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} ) ;
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} catch ( MissingExperimentalFeature & e ) {
// Don't fail if the remote doesn't support CA derivations is it might
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// not be within our control to change that, and we might still want
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// to at least copy the output paths.
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if ( e . missingFeature = = Xp : : CaDerivations )
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ignoreException ( ) ;
else
throw ;
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}
return pathsMap ;
}
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std : : map < StorePath , StorePath > copyPaths (
Store & srcStore ,
Store & dstStore ,
const StorePathSet & storePaths ,
RepairFlag repair ,
CheckSigsFlag checkSigs ,
SubstituteFlag substitute )
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{
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auto valid = dstStore . queryValidPaths ( storePaths , substitute ) ;
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StorePathSet missing ;
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for ( auto & path : storePaths )
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if ( ! valid . count ( path ) ) missing . insert ( path ) ;
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Activity act ( * logger , lvlInfo , actCopyPaths , fmt ( " copying %d paths " , missing . size ( ) ) ) ;
// In the general case, `addMultipleToStore` requires a sorted list of
// store paths to add, so sort them right now
auto sortedMissing = srcStore . topoSortPaths ( missing ) ;
std : : reverse ( sortedMissing . begin ( ) , sortedMissing . end ( ) ) ;
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std : : map < StorePath , StorePath > pathsMap ;
for ( auto & path : storePaths )
pathsMap . insert_or_assign ( path , path ) ;
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Store : : PathsSource pathsToCopy ;
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auto computeStorePathForDst = [ & ] ( const ValidPathInfo & currentPathInfo ) - > StorePath {
auto storePathForSrc = currentPathInfo . path ;
auto storePathForDst = storePathForSrc ;
if ( currentPathInfo . ca & & currentPathInfo . references . empty ( ) ) {
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storePathForDst = dstStore . makeFixedOutputPathFromCA (
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currentPathInfo . path . name ( ) ,
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currentPathInfo . contentAddressWithReferences ( ) . value ( ) ) ;
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if ( dstStore . storeDir = = srcStore . storeDir )
assert ( storePathForDst = = storePathForSrc ) ;
if ( storePathForDst ! = storePathForSrc )
debug ( " replaced path '%s' to '%s' for substituter '%s' " ,
srcStore . printStorePath ( storePathForSrc ) ,
dstStore . printStorePath ( storePathForDst ) ,
dstStore . getUri ( ) ) ;
}
return storePathForDst ;
} ;
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// total is accessed by each copy, which are each handled in separate threads
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std : : atomic < uint64_t > total = 0 ;
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for ( auto & missingPath : sortedMissing ) {
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auto info = srcStore . queryPathInfo ( missingPath ) ;
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auto storePathForDst = computeStorePathForDst ( * info ) ;
pathsMap . insert_or_assign ( missingPath , storePathForDst ) ;
ValidPathInfo infoForDst = * info ;
infoForDst . path = storePathForDst ;
auto source = sinkToSource ( [ & ] ( Sink & sink ) {
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// We can reasonably assume that the copy will happen whenever we
// read the path, so log something about that at that point
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auto srcUri = srcStore . getUri ( ) ;
auto dstUri = dstStore . getUri ( ) ;
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auto storePathS = srcStore . printStorePath ( missingPath ) ;
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Activity act ( * logger , lvlInfo , actCopyPath ,
makeCopyPathMessage ( srcUri , dstUri , storePathS ) ,
{ storePathS , srcUri , dstUri } ) ;
PushActivity pact ( act . id ) ;
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LambdaSink progressSink ( [ & ] ( std : : string_view data ) {
total + = data . size ( ) ;
act . progress ( total , info - > narSize ) ;
} ) ;
TeeSink tee { sink , progressSink } ;
srcStore . narFromPath ( missingPath , tee ) ;
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} ) ;
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pathsToCopy . push_back ( std : : pair { infoForDst , std : : move ( source ) } ) ;
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}
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dstStore . addMultipleToStore ( pathsToCopy , act , repair , checkSigs ) ;
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return pathsMap ;
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}
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void copyClosure (
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Store & srcStore ,
Store & dstStore ,
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const RealisedPath : : Set & paths ,
RepairFlag repair ,
CheckSigsFlag checkSigs ,
SubstituteFlag substitute )
{
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if ( & srcStore = = & dstStore ) return ;
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RealisedPath : : Set closure ;
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RealisedPath : : closure ( srcStore , paths , closure ) ;
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copyPaths ( srcStore , dstStore , closure , repair , checkSigs , substitute ) ;
}
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void copyClosure (
Store & srcStore ,
Store & dstStore ,
const StorePathSet & storePaths ,
RepairFlag repair ,
CheckSigsFlag checkSigs ,
SubstituteFlag substitute )
{
if ( & srcStore = = & dstStore ) return ;
StorePathSet closure ;
srcStore . computeFSClosure ( storePaths , closure ) ;
copyPaths ( srcStore , dstStore , closure , repair , checkSigs , substitute ) ;
}
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std : : optional < ValidPathInfo > decodeValidPathInfo ( const Store & store , std : : istream & str , std : : optional < HashResult > hashGiven )
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{
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std : : string path ;
getline ( str , path ) ;
if ( str . eof ( ) ) { return { } ; }
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if ( ! hashGiven ) {
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std : : string s ;
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getline ( str , s ) ;
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auto narHash = Hash : : parseAny ( s , HashAlgorithm : : SHA256 ) ;
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getline ( str , s ) ;
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auto narSize = string2Int < uint64_t > ( s ) ;
if ( ! narSize ) throw Error ( " number expected " ) ;
hashGiven = { narHash , * narSize } ;
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}
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ValidPathInfo info ( store . parseStorePath ( path ) , hashGiven - > first ) ;
info . narSize = hashGiven - > second ;
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std : : string deriver ;
getline ( str , deriver ) ;
if ( deriver ! = " " ) info . deriver = store . parseStorePath ( deriver ) ;
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std : : string s ;
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getline ( str , s ) ;
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auto n = string2Int < int > ( s ) ;
if ( ! n ) throw Error ( " number expected " ) ;
while ( ( * n ) - - ) {
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getline ( str , s ) ;
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info . references . insert ( store . parseStorePath ( s ) ) ;
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}
if ( ! str | | str . eof ( ) ) throw Error ( " missing input " ) ;
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return std : : optional < ValidPathInfo > ( std : : move ( info ) ) ;
}
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std : : string StoreDirConfig : : showPaths ( const StorePathSet & paths )
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{
std : : string s ;
for ( auto & i : paths ) {
if ( s . size ( ) ! = 0 ) s + = " , " ;
s + = " ' " + printStorePath ( i ) + " ' " ;
}
return s ;
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}
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std : : string showPaths ( const PathSet & paths )
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{
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return concatStringsSep ( " , " , quoteStrings ( paths ) ) ;
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}
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Derivation Store : : derivationFromPath ( const StorePath & drvPath )
{
ensurePath ( drvPath ) ;
return readDerivation ( drvPath ) ;
}
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static Derivation readDerivationCommon ( Store & store , const StorePath & drvPath , bool requireValidPath )
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{
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auto accessor = store . getFSAccessor ( requireValidPath ) ;
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try {
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return parseDerivation ( store ,
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accessor - > readFile ( CanonPath ( store . printStorePath ( drvPath ) ) ) ,
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Derivation : : nameFromPath ( drvPath ) ) ;
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} catch ( FormatError & e ) {
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throw Error ( " error parsing derivation '%s': %s " , store . printStorePath ( drvPath ) , e . msg ( ) ) ;
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}
}
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std : : optional < StorePath > Store : : getBuildDerivationPath ( const StorePath & path )
{
if ( ! path . isDerivation ( ) ) {
try {
auto info = queryPathInfo ( path ) ;
if ( ! info - > deriver ) return std : : nullopt ;
return * info - > deriver ;
} catch ( InvalidPath & ) {
return std : : nullopt ;
}
}
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if ( ! experimentalFeatureSettings . isEnabled ( Xp : : CaDerivations ) | | ! isValidPath ( path ) )
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return path ;
auto drv = readDerivation ( path ) ;
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if ( ! drv . type ( ) . hasKnownOutputPaths ( ) ) {
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// The build log is actually attached to the corresponding
// resolved derivation, so we need to get it first
auto resolvedDrv = drv . tryResolve ( * this ) ;
if ( resolvedDrv )
return writeDerivation ( * this , * resolvedDrv , NoRepair , true ) ;
}
return path ;
}
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Derivation Store : : readDerivation ( const StorePath & drvPath )
{ return readDerivationCommon ( * this , drvPath , true ) ; }
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Derivation Store : : readInvalidDerivation ( const StorePath & drvPath )
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{ return readDerivationCommon ( * this , drvPath , false ) ; }
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2006-11-30 19:43:04 +02:00
}
# include "local-store.hh"
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# include "uds-remote-store.hh"
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namespace nix {
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/* Split URI into protocol+hierarchy part and its parameter set. */
std : : pair < std : : string , Store : : Params > splitUriAndParams ( const std : : string & uri_ )
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{
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auto uri ( uri_ ) ;
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Store : : Params params ;
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auto q = uri . find ( ' ? ' ) ;
if ( q ! = std : : string : : npos ) {
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params = decodeQuery ( uri . substr ( q + 1 ) ) ;
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uri = uri_ . substr ( 0 , q ) ;
}
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return { uri , params } ;
}
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static bool isNonUriPath ( const std : : string & spec )
{
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return
// is not a URL
spec . find ( " :// " ) = = std : : string : : npos
// Has at least one path separator, and so isn't a single word that
// might be special like "auto"
& & spec . find ( " / " ) ! = std : : string : : npos ;
}
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std : : shared_ptr < Store > openFromNonUri ( const std : : string & uri , const Store : : Params & params )
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{
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if ( uri = = " " | | uri = = " auto " ) {
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auto stateDir = getOr ( params , " state " , settings . nixStateDir ) ;
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if ( access ( stateDir . c_str ( ) , R_OK | W_OK ) = = 0 )
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return std : : make_shared < LocalStore > ( params ) ;
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else if ( pathExists ( settings . nixDaemonSocketFile ) )
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return std : : make_shared < UDSRemoteStore > ( params ) ;
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# if __linux__
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else if ( ! pathExists ( stateDir )
& & params . empty ( )
& & getuid ( ) ! = 0
& & ! getEnv ( " NIX_STORE_DIR " ) . has_value ( )
& & ! getEnv ( " NIX_STATE_DIR " ) . has_value ( ) )
{
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/* If /nix doesn't exist, there is no daemon socket, and
we ' re not root , then automatically set up a chroot
store in ~ / . local / share / nix / root . */
auto chrootStore = getDataDir ( ) + " /nix/root " ;
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if ( ! pathExists ( chrootStore ) ) {
try {
createDirs ( chrootStore ) ;
} catch ( Error & e ) {
return std : : make_shared < LocalStore > ( params ) ;
}
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warn ( " '%s' does not exist, so Nix will use '%s' as a chroot store " , stateDir , chrootStore ) ;
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} else
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debug ( " '%s' does not exist, so Nix will use '%s' as a chroot store " , stateDir , chrootStore ) ;
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Store : : Params params2 ;
params2 [ " root " ] = chrootStore ;
return std : : make_shared < LocalStore > ( params2 ) ;
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}
# endif
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else
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return std : : make_shared < LocalStore > ( params ) ;
} else if ( uri = = " daemon " ) {
return std : : make_shared < UDSRemoteStore > ( params ) ;
} else if ( uri = = " local " ) {
return std : : make_shared < LocalStore > ( params ) ;
} else if ( isNonUriPath ( uri ) ) {
Store : : Params params2 = params ;
params2 [ " root " ] = absPath ( uri ) ;
return std : : make_shared < LocalStore > ( params2 ) ;
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} else {
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return nullptr ;
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}
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}
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// The `parseURL` function supports both IPv6 URIs as defined in
// RFC2732, but also pure addresses. The latter one is needed here to
// connect to a remote store via SSH (it's possible to do e.g. `ssh root@::1`).
//
// This function now ensures that a usable connection string is available:
// * If the store to be opened is not an SSH store, nothing will be done.
// * If the URL looks like `root@[::1]` (which is allowed by the URL parser and probably
// needed to pass further flags), it
// will be transformed into `root@::1` for SSH (same for `[::1]` -> `::1`).
// * If the URL looks like `root@::1` it will be left as-is.
// * In any other case, the string will be left as-is.
static std : : string extractConnStr ( const std : : string & proto , const std : : string & connStr )
{
if ( proto . rfind ( " ssh " ) ! = std : : string : : npos ) {
std : : smatch result ;
std : : regex v6AddrRegex ( " ^((.*)@)? \\ [(.*) \\ ]$ " ) ;
if ( std : : regex_match ( connStr , result , v6AddrRegex ) ) {
if ( result [ 1 ] . matched ) {
return result . str ( 1 ) + result . str ( 3 ) ;
}
return result . str ( 3 ) ;
}
}
return connStr ;
}
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ref < Store > openStore ( const std : : string & uri_ ,
const Store : : Params & extraParams )
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{
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auto params = extraParams ;
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try {
auto parsedUri = parseURL ( uri_ ) ;
params . insert ( parsedUri . query . begin ( ) , parsedUri . query . end ( ) ) ;
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auto baseURI = extractConnStr (
parsedUri . scheme ,
parsedUri . authority . value_or ( " " ) + parsedUri . path
) ;
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for ( auto implem : * Implementations : : registered ) {
if ( implem . uriSchemes . count ( parsedUri . scheme ) ) {
auto store = implem . create ( parsedUri . scheme , baseURI , params ) ;
if ( store ) {
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experimentalFeatureSettings . require ( store - > experimentalFeature ( ) ) ;
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store - > init ( ) ;
store - > warnUnknownSettings ( ) ;
return ref < Store > ( store ) ;
}
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}
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}
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}
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catch ( BadURL & ) {
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auto [ uri , uriParams ] = splitUriAndParams ( uri_ ) ;
params . insert ( uriParams . begin ( ) , uriParams . end ( ) ) ;
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if ( auto store = openFromNonUri ( uri , params ) ) {
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store - > warnUnknownSettings ( ) ;
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return ref < Store > ( store ) ;
}
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}
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throw Error ( " don't know how to open Nix store '%s' " , uri_ ) ;
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}
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std : : list < ref < Store > > getDefaultSubstituters ( )
{
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static auto stores ( [ ] ( ) {
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std : : list < ref < Store > > stores ;
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StringSet done ;
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auto addStore = [ & ] ( const std : : string & uri ) {
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if ( ! done . insert ( uri ) . second ) return ;
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try {
stores . push_back ( openStore ( uri ) ) ;
} catch ( Error & e ) {
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logWarning ( e . info ( ) ) ;
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}
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} ;
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for ( auto uri : settings . substituters . get ( ) )
addStore ( uri ) ;
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stores . sort ( [ ] ( ref < Store > & a , ref < Store > & b ) {
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return a - > priority < b - > priority ;
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} ) ;
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return stores ;
} ( ) ) ;
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return stores ;
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}
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std : : vector < StoreFactory > * Implementations : : registered = 0 ;
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}