mirror of
https://github.com/privatevoid-net/nix-super.git
synced 2024-11-27 00:06:16 +02:00
* Store lists as lists of pointers to values rather than as lists of
values. This improves sharing and gives another speed up. Evaluation of the NixOS system attribute is now almost 7 times faster than the old evaluator.
This commit is contained in:
parent
e41b5828db
commit
04c4bd3624
7 changed files with 41 additions and 34 deletions
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@ -61,7 +61,7 @@ void findAlongAttrPath(EvalState & state, const string & attrPath,
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if (attrIndex >= v.list.length)
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if (attrIndex >= v.list.length)
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throw Error(format("list index %1% in selection path `%2%' is out of range") % attrIndex % curPath);
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throw Error(format("list index %1% in selection path `%2%' is out of range") % attrIndex % curPath);
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v = v.list.elems[attrIndex];
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v = *v.list.elems[attrIndex];
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}
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}
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}
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}
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@ -113,6 +113,7 @@ void run(Strings args)
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doTest(state, "with { x = 1; }; let inherit x; y = x; in y");
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doTest(state, "with { x = 1; }; let inherit x; y = x; in y");
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doTest(state, "builtins.toXML 123");
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doTest(state, "builtins.toXML 123");
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doTest(state, "builtins.toXML { a.b = \"x\" + \"y\"; c = [ 1 2 ] ++ [ 3 4 ]; }");
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doTest(state, "builtins.toXML { a.b = \"x\" + \"y\"; c = [ 1 2 ] ++ [ 3 4 ]; }");
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doTest(state, "builtins.attrNames { x = 1; y = 2; }");
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state.printStats();
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state.printStats();
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}
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}
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@ -50,7 +50,7 @@ std::ostream & operator << (std::ostream & str, Value & v)
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case tList:
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case tList:
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str << "[ ";
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str << "[ ";
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for (unsigned int n = 0; n < v.list.length; ++n)
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for (unsigned int n = 0; n < v.list.length; ++n)
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str << v.list.elems[n] << " ";
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str << *v.list.elems[n] << " ";
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str << "]";
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str << "]";
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break;
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break;
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case tThunk:
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case tThunk:
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@ -102,7 +102,7 @@ EvalState::EvalState()
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, baseEnvDispl(0)
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, baseEnvDispl(0)
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, staticBaseEnv(false, 0)
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, staticBaseEnv(false, 0)
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{
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{
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nrEnvs = nrValuesInEnvs = nrValuesInLists = nrValues = 0;
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nrEnvs = nrValuesInEnvs = nrValues = nrListElems = 0;
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nrEvaluated = recursionDepth = maxRecursionDepth = 0;
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nrEvaluated = recursionDepth = maxRecursionDepth = 0;
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deepestStack = (char *) -1;
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deepestStack = (char *) -1;
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@ -251,6 +251,7 @@ Value * EvalState::lookupVar(Env * env, const VarRef & var)
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Value * EvalState::allocValues(unsigned int count)
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Value * EvalState::allocValues(unsigned int count)
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{
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{
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nrValues += count;
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return new Value[count]; // !!! check destructor
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return new Value[count]; // !!! check destructor
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}
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}
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@ -268,8 +269,8 @@ void EvalState::mkList(Value & v, unsigned int length)
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{
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{
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v.type = tList;
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v.type = tList;
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v.list.length = length;
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v.list.length = length;
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v.list.elems = allocValues(length);
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v.list.elems = new Value *[length];
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nrValuesInLists += length;
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nrListElems += length;
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}
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}
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@ -461,8 +462,11 @@ void ExprLet::eval(EvalState & state, Env & env, Value & v)
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void ExprList::eval(EvalState & state, Env & env, Value & v)
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void ExprList::eval(EvalState & state, Env & env, Value & v)
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{
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{
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state.mkList(v, elems.size());
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state.mkList(v, elems.size());
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for (unsigned int n = 0; n < v.list.length; ++n)
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Value * vs = state.allocValues(v.list.length);
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mkThunk(v.list.elems[n], env, elems[n]);
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for (unsigned int n = 0; n < v.list.length; ++n) {
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v.list.elems[n] = &vs[n];
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mkThunk(vs[n], env, elems[n]);
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}
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}
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}
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@ -543,7 +547,6 @@ void EvalState::callFunction(Value & fun, Value & arg, Value & v)
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primOp->primOp.fun(*this, vArgs, v);
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primOp->primOp.fun(*this, vArgs, v);
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} else {
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} else {
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Value * v2 = allocValues(2);
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Value * v2 = allocValues(2);
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nrValues += 2;
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v2[0] = fun;
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v2[0] = fun;
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v2[1] = arg;
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v2[1] = arg;
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v.type = tPrimOpApp;
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v.type = tPrimOpApp;
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@ -734,8 +737,6 @@ void ExprOpConcatLists::eval(EvalState & state, Env & env, Value & v)
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Value v2; state.eval(env, e2, v2);
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Value v2; state.eval(env, e2, v2);
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state.forceList(v2);
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state.forceList(v2);
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state.mkList(v, v1.list.length + v2.list.length);
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state.mkList(v, v1.list.length + v2.list.length);
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/* !!! This loses sharing with the original lists. We could use a
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tCopy node, but that would use more memory. */
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for (unsigned int n = 0; n < v1.list.length; ++n)
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for (unsigned int n = 0; n < v1.list.length; ++n)
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v.list.elems[n] = v1.list.elems[n];
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v.list.elems[n] = v1.list.elems[n];
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for (unsigned int n = 0; n < v2.list.length; ++n)
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for (unsigned int n = 0; n < v2.list.length; ++n)
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@ -810,7 +811,7 @@ void EvalState::strictForceValue(Value & v)
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else if (v.type == tList) {
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else if (v.type == tList) {
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for (unsigned int n = 0; n < v.list.length; ++n)
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for (unsigned int n = 0; n < v.list.length; ++n)
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strictForceValue(v.list.elems[n]);
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strictForceValue(*v.list.elems[n]);
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}
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}
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}
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}
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@ -951,11 +952,11 @@ string EvalState::coerceToString(Value & v, PathSet & context,
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if (v.type == tList) {
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if (v.type == tList) {
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string result;
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string result;
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for (unsigned int n = 0; n < v.list.length; ++n) {
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for (unsigned int n = 0; n < v.list.length; ++n) {
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result += coerceToString(v.list.elems[n],
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result += coerceToString(*v.list.elems[n],
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context, coerceMore, copyToStore);
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context, coerceMore, copyToStore);
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if (n < v.list.length - 1
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if (n < v.list.length - 1
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/* !!! not quite correct */
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/* !!! not quite correct */
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&& (v.list.elems[n].type != tList || v.list.elems[n].list.length != 0))
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&& (v.list.elems[n]->type != tList || v.list.elems[n]->list.length != 0))
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result += " ";
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result += " ";
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}
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}
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return result;
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return result;
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@ -1009,14 +1010,14 @@ bool EvalState::eqValues(Value & v1, Value & v2)
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case tList:
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case tList:
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if (v2.type != tList || v1.list.length != v2.list.length) return false;
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if (v2.type != tList || v1.list.length != v2.list.length) return false;
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for (unsigned int n = 0; n < v1.list.length; ++n)
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for (unsigned int n = 0; n < v1.list.length; ++n)
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if (!eqValues(v1.list.elems[n], v2.list.elems[n])) return false;
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if (!eqValues(*v1.list.elems[n], *v2.list.elems[n])) return false;
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return true;
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return true;
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case tAttrs: {
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case tAttrs: {
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if (v2.type != tAttrs || v1.attrs->size() != v2.attrs->size()) return false;
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if (v2.type != tAttrs || v1.attrs->size() != v2.attrs->size()) return false;
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Bindings::iterator i, j;
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Bindings::iterator i, j;
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for (i = v1.attrs->begin(), j = v2.attrs->begin(); i != v1.attrs->end(); ++i, ++j)
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for (i = v1.attrs->begin(), j = v2.attrs->begin(); i != v1.attrs->end(); ++i, ++j)
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if (!eqValues(i->second, j->second)) return false;
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if (i->first != j->first || !eqValues(i->second, j->second)) return false;
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return true;
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return true;
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}
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}
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@ -1046,8 +1047,8 @@ void EvalState::printStats()
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% nrEnvs % (nrEnvs * sizeof(Env)));
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% nrEnvs % (nrEnvs * sizeof(Env)));
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printMsg(v, format(" values allocated in environments: %1% (%2% bytes)")
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printMsg(v, format(" values allocated in environments: %1% (%2% bytes)")
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% nrValuesInEnvs % (nrValuesInEnvs * sizeof(Value)));
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% nrValuesInEnvs % (nrValuesInEnvs * sizeof(Value)));
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printMsg(v, format(" values allocated in lists: %1% (%2% bytes)")
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printMsg(v, format(" list elements: %1% (%2% bytes)")
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% nrValuesInLists % (nrValuesInLists * sizeof(Value)));
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% nrListElems % (nrListElems * sizeof(Value *)));
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printMsg(v, format(" misc. values allocated: %1% (%2% bytes) ")
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printMsg(v, format(" misc. values allocated: %1% (%2% bytes) ")
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% nrValues % (nrValues * sizeof(Value)));
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% nrValues % (nrValues * sizeof(Value)));
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printMsg(v, format(" symbols in symbol table: %1%") % symbols.size());
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printMsg(v, format(" symbols in symbol table: %1%") % symbols.size());
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@ -76,7 +76,7 @@ struct Value
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Bindings * attrs;
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Bindings * attrs;
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struct {
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struct {
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unsigned int length;
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unsigned int length;
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Value * elems;
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Value * * elems;
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} list;
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} list;
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struct {
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struct {
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Env * env;
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Env * env;
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@ -282,8 +282,8 @@ private:
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unsigned long nrEnvs;
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unsigned long nrEnvs;
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unsigned long nrValuesInEnvs;
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unsigned long nrValuesInEnvs;
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unsigned long nrValuesInLists;
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unsigned long nrValues;
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unsigned long nrValues;
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unsigned long nrListElems;
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unsigned long nrEvaluated;
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unsigned long nrEvaluated;
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unsigned int recursionDepth;
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unsigned int recursionDepth;
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unsigned int maxRecursionDepth;
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unsigned int maxRecursionDepth;
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@ -48,7 +48,7 @@ MetaInfo DrvInfo::queryMetaInfo(EvalState & state) const
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} else if (i->second.type == tList) {
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} else if (i->second.type == tList) {
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value.type = MetaValue::tpStrings;
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value.type = MetaValue::tpStrings;
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for (unsigned int j = 0; j < i->second.list.length; ++j)
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for (unsigned int j = 0; j < i->second.list.length; ++j)
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value.stringValues.push_back(state.forceStringNoCtx(i->second.list.elems[j]));
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value.stringValues.push_back(state.forceStringNoCtx(*i->second.list.elems[j]));
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} else continue;
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} else continue;
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meta[i->first] = value;
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meta[i->first] = value;
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}
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}
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@ -206,8 +206,8 @@ static void getDerivations(EvalState & state, Value & vIn,
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startNest(nest, lvlDebug,
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startNest(nest, lvlDebug,
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format("evaluating list element"));
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format("evaluating list element"));
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string pathPrefix2 = addToPath(pathPrefix, (format("%1%") % n).str());
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string pathPrefix2 = addToPath(pathPrefix, (format("%1%") % n).str());
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if (getDerivation(state, v.list.elems[n], pathPrefix2, drvs, done))
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if (getDerivation(state, *v.list.elems[n], pathPrefix2, drvs, done))
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getDerivations(state, v.list.elems[n], pathPrefix2, autoArgs, drvs, done);
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getDerivations(state, *v.list.elems[n], pathPrefix2, autoArgs, drvs, done);
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}
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}
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}
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}
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@ -311,7 +311,7 @@ static void prim_derivationStrict(EvalState & state, Value * * args, Value & v)
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if (key == "args") {
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if (key == "args") {
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state.forceList(i->second);
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state.forceList(i->second);
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for (unsigned int n = 0; n < i->second.list.length; ++n) {
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for (unsigned int n = 0; n < i->second.list.length; ++n) {
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string s = state.coerceToString(i->second.list.elems[n], context, true);
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string s = state.coerceToString(*i->second.list.elems[n], context, true);
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drv.args.push_back(s);
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drv.args.push_back(s);
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}
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}
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}
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}
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@ -651,14 +651,17 @@ static void prim_attrNames(EvalState & state, Value * * args, Value & v)
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state.forceAttrs(*args[0]);
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state.forceAttrs(*args[0]);
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state.mkList(v, args[0]->attrs->size());
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state.mkList(v, args[0]->attrs->size());
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Value * vs = state.allocValues(v.list.length);
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StringSet names;
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StringSet names;
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foreach (Bindings::iterator, i, *args[0]->attrs)
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foreach (Bindings::iterator, i, *args[0]->attrs)
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names.insert(i->first);
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names.insert(i->first);
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unsigned int n = 0;
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unsigned int n = 0;
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foreach (StringSet::iterator, i, names)
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foreach (StringSet::iterator, i, names) {
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mkString(v.list.elems[n++], *i);
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v.list.elems[n] = &vs[n];
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mkString(vs[n++], *i);
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}
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}
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}
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@ -701,8 +704,8 @@ static void prim_removeAttrs(EvalState & state, Value * * args, Value & v)
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state.cloneAttrs(*args[0], v);
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state.cloneAttrs(*args[0], v);
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for (unsigned int i = 0; i < args[1]->list.length; ++i) {
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for (unsigned int i = 0; i < args[1]->list.length; ++i) {
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state.forceStringNoCtx(args[1]->list.elems[i]);
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state.forceStringNoCtx(*args[1]->list.elems[i]);
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v.attrs->erase(state.symbols.create(args[1]->list.elems[i].string.s));
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v.attrs->erase(state.symbols.create(args[1]->list.elems[i]->string.s));
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}
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}
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}
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}
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@ -718,7 +721,7 @@ static void prim_listToAttrs(EvalState & state, Value * * args, Value & v)
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state.mkAttrs(v);
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state.mkAttrs(v);
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for (unsigned int i = 0; i < args[0]->list.length; ++i) {
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for (unsigned int i = 0; i < args[0]->list.length; ++i) {
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Value & v2(args[0]->list.elems[i]);
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Value & v2(*args[0]->list.elems[i]);
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state.forceAttrs(v2);
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state.forceAttrs(v2);
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Bindings::iterator j = v2.attrs->find(state.sName);
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Bindings::iterator j = v2.attrs->find(state.sName);
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@ -815,8 +818,8 @@ static void prim_head(EvalState & state, Value * * args, Value & v)
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state.forceList(*args[0]);
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state.forceList(*args[0]);
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if (args[0]->list.length == 0)
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if (args[0]->list.length == 0)
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throw Error("`head' called on an empty list");
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throw Error("`head' called on an empty list");
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state.forceValue(args[0]->list.elems[0]);
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state.forceValue(*args[0]->list.elems[0]);
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v = args[0]->list.elems[0];
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v = *args[0]->list.elems[0];
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}
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}
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@ -840,11 +843,13 @@ static void prim_map(EvalState & state, Value * * args, Value & v)
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state.forceList(*args[1]);
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state.forceList(*args[1]);
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state.mkList(v, args[1]->list.length);
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state.mkList(v, args[1]->list.length);
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Value * vs = state.allocValues(v.list.length);
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for (unsigned int n = 0; n < v.list.length; ++n) {
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for (unsigned int n = 0; n < v.list.length; ++n) {
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v.list.elems[n].type = tApp;
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v.list.elems[n] = &vs[n];
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v.list.elems[n].app.left = args[0];
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vs[n].type = tApp;
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v.list.elems[n].app.right = &args[1]->list.elems[n];
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vs[n].app.left = args[0];
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vs[n].app.right = args[1]->list.elems[n];
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}
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}
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}
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}
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@ -97,7 +97,7 @@ static void printValueAsXML(EvalState & state, bool strict, Value & v,
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case tList: {
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case tList: {
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XMLOpenElement _(doc, "list");
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XMLOpenElement _(doc, "list");
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for (unsigned int n = 0; n < v.list.length; ++n)
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for (unsigned int n = 0; n < v.list.length; ++n)
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printValueAsXML(state, strict, v.list.elems[n], doc, context, drvsSeen);
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printValueAsXML(state, strict, *v.list.elems[n], doc, context, drvsSeen);
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break;
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break;
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}
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}
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