* A primitive operation `dependencyClosure' to do automatic dependency
determination (e.g., finding the header files dependencies of a C file) in Nix low-level builds automatically. For instance, in the function `compileC' in make/lib/default.nix, we find the header file dependencies of C file `main' as follows: localIncludes = dependencyClosure { scanner = file: import (findIncludes { inherit file; }); startSet = [main]; }; The function works by "growing" the set of dependencies, starting with the set `startSet', and calling the function `scanner' for each file to get its dependencies (which should yield a list of strings representing relative paths). For instance, when `scanner' is called on a file `foo.c' that includes the line #include "../bar/fnord.h" then `scanner' should yield ["../bar/fnord.h"]. This list of dependencies is absolutised relative to the including file and added to the set of dependencies. The process continues until no more dependencies are found (hence its a closure). `dependencyClosure' yields a list that contains in alternation a dependency, and its relative path to the directory of the start file, e.g., [ /bla/bla/foo.c "foo.c" /bla/bar/fnord.h "../bar/fnord.h" ] These relative paths are necessary for the builder that compiles foo.c to reconstruct the relative directory structure expected by foo.c. The advantage of `dependencyClosure' over the old approach (using the impure `__currentTime') is that it's completely pure, and more efficient because it only rescans for dependencies (i.e., by building the derivations yielded by `scanner') if sources have actually changed. The old approach rescanned every time.
This commit is contained in:
parent
714b7256cd
commit
08c53923db
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@ -1,11 +1,13 @@
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let {
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with import ../../lib;
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inherit (import ../../lib) compileC findIncludes link;
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let {
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hello = link {programName = "hello"; objects = compileC {
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hello = link {programName = "hello"; objects = compileC {
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main = ./foo/hello.c;
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main = ./foo/hello.c;
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localIncludes = "auto";
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localIncludes = "auto";
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};};
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};};
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# body = findIncludes {main = ./foo/hello.c;};
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body = [hello];
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body = [hello];
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}
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}
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@ -70,4 +70,5 @@ fi
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mkdir $out
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mkdir $out
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test "$prefix" && cd $prefix
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test "$prefix" && cd $prefix
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ls -l
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gcc -Wall $cFlags -c $mainName -o $out/$mainName.o
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gcc -Wall $cFlags -c $mainName -o $out/$mainName.o
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@ -14,11 +14,13 @@ rec {
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builder = ./compile-c.sh;
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builder = ./compile-c.sh;
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localIncludes =
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localIncludes =
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if localIncludes == "auto" then
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if localIncludes == "auto" then
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import (findIncludes {
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dependencyClosure {
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main = toString main;
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scanner = main:
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hack = __currentTime;
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import (findIncludes {
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inherit cFlags;
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inherit main;
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})
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});
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startSet = [main];
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}
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else
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else
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localIncludes;
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localIncludes;
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inherit main;
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inherit main;
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@ -36,10 +38,11 @@ rec {
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};
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};
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*/
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*/
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findIncludes = {main, hack, cFlags ? ""}: stdenv.mkDerivation {
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findIncludes = {main}: stdenv.mkDerivation {
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name = "find-includes";
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name = "find-includes";
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builder = ./find-includes.sh;
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realBuilder = pkgs.perl ~ "bin/perl";
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inherit main hack cFlags;
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args = [ ./find-includes.pl ];
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inherit main;
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};
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};
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link = {objects, programName ? "program", libraries ? []}: stdenv.mkDerivation {
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link = {objects, programName ? "program", libraries ? []}: stdenv.mkDerivation {
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19
make/lib/find-includes.pl
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19
make/lib/find-includes.pl
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@ -0,0 +1,19 @@
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use strict;
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my $root = $ENV{"main"};
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my $out = $ENV{"out"};
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open OUT, ">$out" or die "$!";
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print OUT "[\n";
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open IN, "<$root" or die "$!";
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while (<IN>) {
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if (/^\#include\s+\"(.*)\"/) {
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print "DEP $1\n";
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print OUT "\"$1\"\n";
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}
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}
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close IN;
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print OUT "]\n";
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close OUT;
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@ -1,20 +0,0 @@
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. $stdenv/setup
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echo "finding includes of \`$(basename $main)'..."
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makefile=$NIX_BUILD_TOP/makefile
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mainDir=$(dirname $main)
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(cd $mainDir && gcc $cFlags -MM $(basename $main) -MF $makefile) || false
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echo "[" >$out
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while read line; do
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line=$(echo "$line" | sed 's/.*://')
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for i in $line; do
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fullPath=$(readlink -f $mainDir/$i)
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echo " [ $fullPath \"$i\" ]" >>$out
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done
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done < $makefile
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echo "]" >>$out
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@ -410,6 +410,117 @@ static Expr primIsNull(EvalState & state, const ATermVector & args)
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}
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}
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static Path findDependency(Path start, string dep)
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{
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if (dep[0] == '/') throw Error(
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format("illegal absolute dependency `%1%'") % dep);
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Path p = canonPath(dirOf(start) + "/" + dep);
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if (pathExists(p))
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return p;
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else
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return "";
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}
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/* Make path `p' relative to directory `pivot'. E.g.,
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relativise("/a/b/c", "a/b/x/y") => "../x/y". Both input paths
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should be in absolute canonical form. */
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static string relativise(Path pivot, Path p)
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{
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assert(pivot.size() > 0 && pivot[0] == '/');
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assert(p.size() > 0 && p[0] == '/');
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if (pivot == p) return ".";
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/* `p' is in `pivot'? */
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Path pivot2 = pivot + "/";
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if (p.substr(0, pivot2.size()) == pivot2) {
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return p.substr(pivot2.size());
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}
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/* Otherwise, `p' is in a parent of `pivot'. Find up till which
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path component `p' and `pivot' match, and add an appropriate
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number of `..' components. */
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unsigned int i = 1;
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while (1) {
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unsigned int j = pivot.find('/', i);
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if (j == string::npos) break;
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j++;
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if (pivot.substr(0, j) != p.substr(0, j)) break;
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i = j;
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}
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string prefix;
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unsigned int slashes = count(pivot.begin() + i, pivot.end(), '/') + 1;
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while (slashes--) {
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prefix += "../";
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}
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return prefix + p.substr(i);
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}
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static Expr primDependencyClosure(EvalState & state, const ATermVector & args)
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{
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Expr attrs = evalExpr(state, args[0]);
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Expr scanner = queryAttr(attrs, "scanner");
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if (!scanner) throw Error("attribute `scanner' required");
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Expr startSet = queryAttr(attrs, "startSet");
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if (!startSet) throw Error("attribute `startSet' required");
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ATermList startSet2 = evalList(state, startSet);
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Path pivot;
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PathSet workSet;
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for (ATermIterator i(startSet2); i; ++i) {
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Path p = evalPath(state, *i);
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workSet.insert(p);
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pivot = dirOf(p);
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}
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/* Construct the dependency closure by querying the dependency of
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each path in `workSet', adding the dependencies to
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`workSet'. */
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PathSet doneSet;
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while (!workSet.empty()) {
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Path path = *(workSet.begin());
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workSet.erase(path);
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if (doneSet.find(path) != doneSet.end()) continue;
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doneSet.insert(path);
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/* Call the `scanner' function with `path' as argument. */
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printMsg(lvlError, format("finding dependencies in `%1%'") % path);
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ATermList deps = evalList(state, makeCall(scanner, makePath(toATerm(path))));
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/* Try to find the dependencies relative to the `path'. */
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for (ATermIterator i(deps); i; ++i) {
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Path dep = findDependency(path, evalString(state, *i));
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if (dep == "")
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printMsg(lvlError, format("did NOT find dependency `%1%'") % dep);
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else {
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printMsg(lvlError, format("found dependency `%1%'") % dep);
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workSet.insert(dep);
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}
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}
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}
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/* Return a list of the dependencies we've just found. */
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ATermList deps = ATempty;
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for (PathSet::iterator i = doneSet.begin(); i != doneSet.end(); ++i) {
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deps = ATinsert(deps, makeStr(toATerm(relativise(pivot, *i))));
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deps = ATinsert(deps, makePath(toATerm(*i)));
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}
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printMsg(lvlError, format("RESULT is `%1%'") % makeList(deps));
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return makeList(deps);
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}
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/* Apply a function to every element of a list. */
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/* Apply a function to every element of a list. */
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static Expr primMap(EvalState & state, const ATermVector & args)
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static Expr primMap(EvalState & state, const ATermVector & args)
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{
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{
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@ -469,6 +580,7 @@ void EvalState::addPrimOps()
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addPrimOp("baseNameOf", 1, primBaseNameOf);
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addPrimOp("baseNameOf", 1, primBaseNameOf);
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addPrimOp("toString", 1, primToString);
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addPrimOp("toString", 1, primToString);
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addPrimOp("isNull", 1, primIsNull);
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addPrimOp("isNull", 1, primIsNull);
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addPrimOp("dependencyClosure", 1, primDependencyClosure);
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addPrimOp("map", 2, primMap);
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addPrimOp("map", 2, primMap);
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addPrimOp("removeAttrs", 2, primRemoveAttrs);
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addPrimOp("removeAttrs", 2, primRemoveAttrs);
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Loading…
Reference in a new issue