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Corrects: logic for int promotion, object sizes, int64_t gets, sizes prefixed to objects.
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@ -183,16 +183,20 @@ template <typename Type> bool Reflection::get(const Struct &target, const std::s
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// If the type is an int that is larger than the stored type and matches the signedness, cast upward.
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if constexpr (std::is_integral<Type>::value) {
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constexpr size_t size = sizeof(Type);
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const bool target_is_integral = TypeInfo::is_integral(target_type);
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const bool signs_match = std::is_signed<Type>::value == TypeInfo::is_signed(target_type);
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const size_t target_size = TypeInfo::size(target_type);
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if(TypeInfo::is_integral(target_type)) {
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const bool target_is_signed = TypeInfo::is_signed(target_type);
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const size_t target_size = TypeInfo::size(target_type);
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if(signs_match && size > target_size && target_is_integral) {
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#define Map(x) if(*target_type == typeid(x)) { value = static_cast<Type>(*reinterpret_cast<const x *>(target.get(name))); }
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ForAllInts(Map);
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// An unsigned type can map to any larger type, signed or unsigned;
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// a signed type can map to a larger type only if it also is signed.
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if(sizeof(Type) > target_size && (!target_is_signed || std::is_signed<Type>::value)) {
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const auto address = reinterpret_cast<const uint8_t *>(target.get(name)) + offset * target_size;
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#define Map(x) if(*target_type == typeid(x)) { value = static_cast<Type>(*reinterpret_cast<const x *>(address)); }
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ForAllInts(Map);
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#undef Map
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return true;
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return true;
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}
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}
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}
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@ -203,7 +207,9 @@ template <typename Type> bool Reflection::get(const Struct &target, const std::s
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const size_t target_size = TypeInfo::size(target_type);
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if(size > target_size && target_is_floating_point) {
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#define Map(x) if(*target_type == typeid(x)) { value = static_cast<Type>(*reinterpret_cast<const x *>(target.get(name))); }
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const auto address = reinterpret_cast<const uint8_t *>(target.get(name)) + offset * target_size;
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#define Map(x) if(*target_type == typeid(x)) { value = static_cast<Type>(*reinterpret_cast<const x *>(address)); }
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ForAllFloats(Map);
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#undef Map
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return true;
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@ -317,27 +323,20 @@ std::vector<uint8_t> Reflection::Struct::serialise() const {
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if(*type == typeid(bool)) {
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result.push_back(0x08);
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push_name();
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result.push_back(uint8_t(Reflection::get<bool>(*this, key)));
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result.push_back(uint8_t(Reflection::get<bool>(*this, key, offset)));
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return;
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}
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// Test for ints that will safely convert to an int32.
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int32_t int32;
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if(Reflection::get(*this, key, int32)) {
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if(Reflection::get(*this, key, int32, offset)) {
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push_int(0x10, int32);
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return;
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}
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// Test for ints that can be converted to a uint64.
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uint32_t uint64;
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if(Reflection::get(*this, key, uint64)) {
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push_int(0x11, uint64);
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return;
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}
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// Test for ints that can be converted to an int64.
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int32_t int64;
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if(Reflection::get(*this, key, int64)) {
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int64_t int64;
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if(Reflection::get(*this, key, int64, offset)) {
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push_int(0x12, int64);
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return;
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}
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@ -346,12 +345,13 @@ std::vector<uint8_t> Reflection::Struct::serialise() const {
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// There's only one potential float type: a double.
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double float64;
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if(Reflection::get(*this, key, float64)) {
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if(Reflection::get(*this, key, float64, offset)) {
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// TODO: place as little-endian IEEE 754-2008.
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return;
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}
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// Okay, check for a potential recursion.
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// Not currently supported: arrays of structs.
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if(*type == typeid(Reflection::Struct)) {
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result.push_back(0x03);
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push_name();
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@ -373,7 +373,9 @@ std::vector<uint8_t> Reflection::Struct::serialise() const {
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The int32 is the total number of bytes comprising the document.
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*/
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data.push_back(0);
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const uint32_t size_with_prefix = uint32_t(data.size()) + 2;
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const uint32_t size_with_prefix = uint32_t(data.size()) + 4;
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data.insert(data.begin(), uint8_t(size_with_prefix >> 24));
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data.insert(data.begin(), uint8_t(size_with_prefix >> 16));
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data.insert(data.begin(), uint8_t(size_with_prefix >> 8));
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data.insert(data.begin(), uint8_t(size_with_prefix & 0xff));
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};
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@ -390,6 +392,8 @@ std::vector<uint8_t> Reflection::Struct::serialise() const {
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if(count > 1) {
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// In BSON, an array is a sub-document with ASCII keys '0', '1', etc.
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result.push_back(0x04);
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std::copy(key.begin(), key.end(), std::back_inserter(result));
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result.push_back(0);
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std::vector<uint8_t> array;
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for(size_t c = 0; c < count; ++c) {
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