:(before "End Primitive Recipe Declarations") TO_LOCATION_ARRAY, :(before "End Primitive Recipe Numbers") put(Recipe_ordinal, "to-location-array", TO_LOCATION_ARRAY); :(before "End Primitive Recipe Checks") case TO_LOCATION_ARRAY: { const recipe& caller = get(Recipe, r); if (!is_address_of_array_of_numbers(inst.products.at(0))) { raise << maybe(caller.name) << "product of 'to-location-array' has incorrect type: '" << to_original_string(inst) << "'\n" << end(); break; } break; } :(code) bool is_address_of_array_of_numbers(reagent/*copy*/ product) { canonize_type(product); if (!product.type || product.type->value != get(Type_ordinal, "address")) return false; drop_from_type(product, "address"); if (!product.type || product.type->value != get(Type_ordinal, "array")) return false; drop_from_type(product, "array"); if (!product.type || product.type->value != get(Type_ordinal, "number")) return false; return true; } :(before "End Primitive Recipe Implementations") case TO_LOCATION_ARRAY: { int array_size = SIZE(ingredients.at(0)); int allocation_size = array_size + /*refcount*/1 + /*length*/1; ensure_space(allocation_size); const int result = Current_routine->alloc; products.resize(1); products.at(0).push_back(result); // initialize array refcount put(Memory, result, 0); // initialize array length put(Memory, result+1, array_size); // now copy over data for (int i = 0; i < array_size; ++i) put(Memory, result+2+i, ingredients.at(0).at(i)); break; }