store: 'requisites' now takes a list of store items.
* guix/store.scm (fold-path): Change 'path' to 'paths' and adjust body accordingly. (requisites): Likewise. * guix/scripts/environment.scm (inputs->requisites): Adjust user accordingly. * guix/scripts/size.scm (requisites*): Likewise. * guix/scripts/gc.scm (guix-gc): Likewise. * tests/store.scm ("requisites"): Likewise.
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@ -333,11 +333,11 @@ requisite store items i.e. the union closure of all the inputs."
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(requisites*
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(match input
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((drv output)
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(derivation->output-path drv output))
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(list (derivation->output-path drv output)))
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((drv)
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(derivation->output-path drv))
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(list (derivation->output-path drv)))
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((? direct-store-path? path)
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path))))
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(list path)))))
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(mlet %store-monad ((reqs (sequence %store-monad
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(map input->requisites inputs))))
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@ -229,7 +229,8 @@ Invoke the garbage collector.\n"))
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((list-references)
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(list-relatives references))
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((list-requisites)
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(list-relatives requisites))
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(list-relatives (lambda (store item)
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(requisites store (list item)))))
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((list-referrers)
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(list-relatives referrers))
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((optimize)
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@ -122,7 +122,7 @@ substitutes."
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(guard (c ((nix-protocol-error? c)
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(values (substitutable-requisites store item)
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store)))
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(values (requisites store item) store))))
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(values (requisites store (list item)) store))))
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(define (mappend-map mproc lst)
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"Apply MPROC to each item of LST and concatenate the resulting list."
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@ -803,12 +803,12 @@ the list of references")
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(loop items tail
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(cons head result)))))))))
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(define* (fold-path store proc seed path
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(define* (fold-path store proc seed paths
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#:optional (relatives (cut references store <>)))
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"Call PROC for each of the RELATIVES of PATH, exactly once, and return the
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"Call PROC for each of the RELATIVES of PATHS, exactly once, and return the
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result formed from the successive calls to PROC, the first of which is passed
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SEED."
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(let loop ((paths (list path))
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(let loop ((paths paths)
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(result seed)
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(seen vlist-null))
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(match paths
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@ -822,10 +822,10 @@ SEED."
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(()
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result))))
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(define (requisites store path)
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"Return the requisites of PATH, including PATH---i.e., its closure (all its
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references, recursively)."
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(fold-path store cons '() path))
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(define (requisites store paths)
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"Return the requisites of PATHS, including PATHS---i.e., their closures (all
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its references, recursively)."
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(fold-path store cons '() paths))
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(define (topologically-sorted store paths)
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"Return a list containing PATHS and all their references sorted in
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@ -244,10 +244,12 @@
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(and (= (length x) (length y))
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(lset= equal? x y)))
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(and (same? (requisites %store t1) (list t1))
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(same? (requisites %store t2) (list t1 t2))
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(same? (requisites %store t3) (list t1 t2 t3))
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(same? (requisites %store t4) (list t1 t2 t3 t4)))))
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(and (same? (requisites %store (list t1)) (list t1))
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(same? (requisites %store (list t2)) (list t1 t2))
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(same? (requisites %store (list t3)) (list t1 t2 t3))
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(same? (requisites %store (list t4)) (list t1 t2 t3 t4))
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(same? (requisites %store (list t1 t2 t3 t4))
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(list t1 t2 t3 t4)))))
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(test-assert "derivers"
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(let* ((b (add-text-to-store %store "build" "echo $foo > $out" '()))
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