forked from lix-project/lix
199 lines
5.1 KiB
C++
199 lines
5.1 KiB
C++
#include "storeexpr.hh"
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#include "globals.hh"
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#include "store.hh"
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#include "storeexpr-ast.hh"
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#include "storeexpr-ast.cc"
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Hash hashTerm(ATerm t)
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{
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return hashString(atPrint(t));
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}
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Path writeTerm(ATerm t, const string & suffix)
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{
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/* The id of a term is its hash. */
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Hash h = hashTerm(t);
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Path path = canonPath(nixStore + "/" +
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(string) h + suffix + ".store");
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if (!readOnlyMode && !isValidPath(path)) {
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char * s = ATwriteToString(t);
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if (!s) throw Error(format("cannot write aterm to `%1%'") % path);
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addTextToStore(path, string(s));
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}
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return path;
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}
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static void parsePaths(ATermList paths, PathSet & out)
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{
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for (ATermIterator i(paths); i; ++i) {
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if (ATgetType(*i) != AT_APPL)
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throw badTerm("not a path", *i);
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string s = aterm2String(*i);
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if (s.size() == 0 || s[0] != '/')
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throw badTerm("not a path", *i);
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out.insert(s);
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}
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}
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static void checkClosure(const Closure & closure)
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{
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if (closure.elems.size() == 0)
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throw Error("empty closure");
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PathSet decl;
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for (ClosureElems::const_iterator i = closure.elems.begin();
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i != closure.elems.end(); i++)
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decl.insert(i->first);
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for (PathSet::const_iterator i = closure.roots.begin();
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i != closure.roots.end(); i++)
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if (decl.find(*i) == decl.end())
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throw Error(format("undefined root path `%1%'") % *i);
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for (ClosureElems::const_iterator i = closure.elems.begin();
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i != closure.elems.end(); i++)
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for (PathSet::const_iterator j = i->second.refs.begin();
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j != i->second.refs.end(); j++)
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if (decl.find(*j) == decl.end())
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throw Error(
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format("undefined path `%1%' referenced by `%2%'")
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% *j % i->first);
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}
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/* Parse a closure. */
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static bool parseClosure(ATerm t, Closure & closure)
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{
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ATermList roots, elems;
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if (!matchClosure(t, roots, elems))
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return false;
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parsePaths(roots, closure.roots);
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for (ATermIterator i(elems); i; ++i) {
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ATerm path;
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ATermList refs;
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if (!matchClosureElem(*i, path, refs))
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throw badTerm("not a closure element", *i);
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ClosureElem elem;
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parsePaths(refs, elem.refs);
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closure.elems[aterm2String(path)] = elem;
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}
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checkClosure(closure);
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return true;
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}
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static bool parseDerivation(ATerm t, Derivation & derivation)
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{
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ATermList outs, ins, args, bnds;
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ATerm builder, platform;
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if (!matchDerive(t, outs, ins, platform, builder, args, bnds))
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return false;
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parsePaths(outs, derivation.outputs);
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parsePaths(ins, derivation.inputs);
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derivation.builder = aterm2String(builder);
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derivation.platform = aterm2String(platform);
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for (ATermIterator i(args); i; ++i) {
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if (ATgetType(*i) != AT_APPL)
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throw badTerm("string expected", *i);
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derivation.args.push_back(aterm2String(*i));
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}
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for (ATermIterator i(bnds); i; ++i) {
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ATerm s1, s2;
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if (!matchEnvBinding(*i, s1, s2))
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throw badTerm("tuple of strings expected", *i);
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derivation.env[aterm2String(s1)] = aterm2String(s2);
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}
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return true;
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}
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StoreExpr parseStoreExpr(ATerm t)
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{
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StoreExpr ne;
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if (parseClosure(t, ne.closure))
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ne.type = StoreExpr::neClosure;
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else if (parseDerivation(t, ne.derivation))
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ne.type = StoreExpr::neDerivation;
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else throw badTerm("not a store expression", t);
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return ne;
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}
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static ATermList unparsePaths(const PathSet & paths)
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{
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ATermList l = ATempty;
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for (PathSet::const_iterator i = paths.begin();
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i != paths.end(); i++)
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l = ATinsert(l, toATerm(*i));
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return ATreverse(l);
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}
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static ATerm unparseClosure(const Closure & closure)
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{
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ATermList roots = unparsePaths(closure.roots);
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ATermList elems = ATempty;
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for (ClosureElems::const_iterator i = closure.elems.begin();
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i != closure.elems.end(); i++)
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elems = ATinsert(elems,
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makeClosureElem(
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toATerm(i->first),
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unparsePaths(i->second.refs)));
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return makeClosure(roots, elems);
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}
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static ATerm unparseDerivation(const Derivation & derivation)
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{
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ATermList args = ATempty;
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for (Strings::const_iterator i = derivation.args.begin();
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i != derivation.args.end(); i++)
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args = ATinsert(args, toATerm(*i));
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ATermList env = ATempty;
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for (StringPairs::const_iterator i = derivation.env.begin();
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i != derivation.env.end(); i++)
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env = ATinsert(env,
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makeEnvBinding(
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toATerm(i->first),
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toATerm(i->second)));
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return makeDerive(
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unparsePaths(derivation.outputs),
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unparsePaths(derivation.inputs),
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toATerm(derivation.platform),
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toATerm(derivation.builder),
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ATreverse(args),
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ATreverse(env));
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}
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ATerm unparseStoreExpr(const StoreExpr & ne)
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{
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if (ne.type == StoreExpr::neClosure)
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return unparseClosure(ne.closure);
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else if (ne.type == StoreExpr::neDerivation)
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return unparseDerivation(ne.derivation);
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else abort();
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}
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