return X.capacity_in_bytes();
}
+template <typename RangeType>
+using ValueTypeFromRangeType =
+ typename std::remove_const<typename std::remove_reference<
+ decltype(*std::begin(std::declval<RangeType &>()))>::type>::type;
+
/// Given a range of type R, iterate the entire range and return a
/// SmallVector with elements of the vector. This is useful, for example,
/// when you want to iterate a range and then sort the results.
template <unsigned Size, typename R>
-SmallVector<typename std::remove_const<typename std::remove_reference<
- decltype(*std::begin(std::declval<R &>()))>::type>::type,
- Size>
+SmallVector<ValueTypeFromRangeType<R>, Size> to_vector(R &&Range) {
+ return {std::begin(Range), std::end(Range)};
+}
+template <typename R>
+SmallVector<ValueTypeFromRangeType<R>,
+ CalculateSmallVectorDefaultInlinedElements<
+ ValueTypeFromRangeType<R>>::value>
to_vector(R &&Range) {
return {std::begin(Range), std::end(Range)};
}
EXPECT_EQ(I, Enumerated[I].index());
EXPECT_EQ(v[I], Enumerated[I].value());
}
+
+ auto EnumeratedImplicitSize = to_vector(enumerate(v));
+ ASSERT_EQ(3u, EnumeratedImplicitSize.size());
+ for (size_t I = 0; I < v.size(); ++I) {
+ EXPECT_EQ(I, EnumeratedImplicitSize[I].index());
+ EXPECT_EQ(v[I], EnumeratedImplicitSize[I].value());
+ }
}
TEST(STLExtrasTest, ConcatRange) {