prim_concatMap: allocate intermediate list on stack
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@ -1651,22 +1651,30 @@ static void prim_concatMap(EvalState & state, const Pos & pos, Value * * args, V
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{
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{
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state.forceFunction(*args[0], pos);
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state.forceFunction(*args[0], pos);
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state.forceList(*args[1], pos);
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state.forceList(*args[1], pos);
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auto len = args[1]->listSize();
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auto nrLists = args[1]->listSize();
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Value vList;
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Value lists[nrLists];
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state.mkList(vList, len);
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size_t len = 0;
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for (unsigned int n = 0; n < len; ++n) {
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for (unsigned int n = 0; n < nrLists; ++n) {
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Value * vElem = args[1]->listElems()[n];
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Value * vElem = args[1]->listElems()[n];
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state.forceValue(*vElem);
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state.forceValue(*vElem);
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state.callFunction(*args[0], *vElem, *(vList.listElems()[n] = state.allocValue()), pos);
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state.callFunction(*args[0], *vElem, lists[n], pos);
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state.forceList(lists[n], pos);
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len += lists[n].listSize();
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}
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}
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state.concatLists(v, len, vList.listElems(), pos);
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state.mkList(v, len);
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auto out = v.listElems();
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for (unsigned int n = 0, pos = 0; n < nrLists; ++n) {
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auto l = lists[n].listSize();
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if (l)
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memcpy(out + pos, lists[n].listElems(), l * sizeof(Value *));
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pos += l;
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}
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}
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}
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/*************************************************************
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/*************************************************************
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* Integer arithmetic
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* Integer arithmetic
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*************************************************************/
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*************************************************************/
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