mirror of
https://github.com/zhenyan121/Cubed.git
synced 2026-08-08 17:57:02 +08:00
* build: replace FetchContent with direct includes for glm * build(deps): replace SOIL2 with stb for image and vorbis decoding * build: replace FetchContent with direct includes for toml++ * refactor(texture): bump block texture size to 512 and disable items tab * feat: add hotbar system with ItemStack and RowLayout * fix(ui): restrict Ctrl key handling to typing mode * feat(ui): add widget border support and highlight selected hotbar slot * fix(ui): update borders on scale change and correct Image width - Added update_border() calls in set_scale() for Button, ChatBox, Image, Label, and TextField. - Fixed Image::width() to multiply by width instead of height. - Added early return in Widget::update_border() if border is not supported. * feat(ui): add border visual feedback on slider drag * feat(ui): add ItemSlot widget and refactor hotbar to use it * feat(world_scene): add inventory UI and pause type enum * feat(ui): add item slot tooltip and make window size static * fix(ui label): account for background offset in width/height * refactor(ui): centralize item info label in inventory and add update * feat(ui): add hotbar interaction in inventory UI * fix(inventory-ui): correct row creation logic for first item The loop starting at index 0 created a new row on the first iteration (i % 10 == 0). Shift the loop to start at 1 and adjust modulus condition to create rows correctly every 10 items. * feat(block): add name_key for localized block names Add `name_key` field to all block TOML definitions, enabling per-block localization. Update `BlockData` struct and `BlockManager` with `local_name()` method that returns a localized string via the translation system. Add corresponding entries to `en_US.json` and `zh_CN.json`. Modify inventory UI to use the localized name when displaying block info, and fix a bug where emptying a hotbar slot did not clear the item locally. * fix(ui): change inventory item slot color from white to gray * fix(ui): add missing include for std::array
498 lines
18 KiB
C++
498 lines
18 KiB
C++
/// @ref gtx_string_cast
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#include <cstdarg>
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#include <cstdio>
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namespace glm{
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namespace detail
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{
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template <typename T>
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struct cast
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{
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typedef T value_type;
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};
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template <>
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struct cast<float>
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{
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typedef double value_type;
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};
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GLM_FUNC_QUALIFIER std::string format(const char* message, ...) {
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std::size_t const STRING_BUFFER(4096);
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assert(message != NULL);
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assert(strlen(message) < STRING_BUFFER);
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char buffer[STRING_BUFFER];
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va_list list;
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#if GLM_COMPILER & GLM_COMPILER_CLANG
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# pragma clang diagnostic push
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# pragma clang diagnostic ignored "-Wformat-nonliteral"
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#endif
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va_start(list, message);
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vsnprintf(buffer, STRING_BUFFER, message, list);
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va_end(list);
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#if GLM_COMPILER & GLM_COMPILER_CLANG
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# pragma clang diagnostic pop
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#endif
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return buffer;
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}
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static const char* LabelTrue = "true";
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static const char* LabelFalse = "false";
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template<typename T, bool isFloat = false>
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struct literal
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "%d";}
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};
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template<typename T>
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struct literal<T, true>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "%f";}
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};
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# if GLM_MODEL == GLM_MODEL_32 && GLM_COMPILER && GLM_COMPILER_VC
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template<>
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struct literal<uint64_t, false>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "%lld";}
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};
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template<>
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struct literal<int64_t, false>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "%lld";}
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};
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# endif//GLM_MODEL == GLM_MODEL_32 && GLM_COMPILER && GLM_COMPILER_VC
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template<typename T>
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struct prefix{};
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template<>
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struct prefix<float>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "";}
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};
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template<>
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struct prefix<double>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "d";}
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};
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template<>
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struct prefix<bool>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "b";}
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};
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template<>
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struct prefix<uint8_t>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "u8";}
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};
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template<>
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struct prefix<int8_t>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "i8";}
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};
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template<>
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struct prefix<uint16_t>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "u16";}
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};
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template<>
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struct prefix<int16_t>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "i16";}
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};
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template<>
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struct prefix<uint32_t>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "u";}
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};
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template<>
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struct prefix<int32_t>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "i";}
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};
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template<>
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struct prefix<uint64_t>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "u64";}
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};
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template<>
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struct prefix<int64_t>
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{
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GLM_FUNC_QUALIFIER static char const * value() {return "i64";}
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};
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template<typename matType>
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struct compute_to_string
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{};
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template<qualifier Q>
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struct compute_to_string<vec<1, bool, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(vec<1, bool, Q> const& x)
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{
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return detail::format("bvec1(%s)",
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x[0] ? detail::LabelTrue : detail::LabelFalse);
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}
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};
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template<qualifier Q>
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struct compute_to_string<vec<2, bool, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(vec<2, bool, Q> const& x)
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{
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return detail::format("bvec2(%s, %s)",
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x[0] ? detail::LabelTrue : detail::LabelFalse,
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x[1] ? detail::LabelTrue : detail::LabelFalse);
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}
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};
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template<qualifier Q>
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struct compute_to_string<vec<3, bool, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(vec<3, bool, Q> const& x)
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{
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return detail::format("bvec3(%s, %s, %s)",
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x[0] ? detail::LabelTrue : detail::LabelFalse,
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x[1] ? detail::LabelTrue : detail::LabelFalse,
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x[2] ? detail::LabelTrue : detail::LabelFalse);
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}
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};
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template<qualifier Q>
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struct compute_to_string<vec<4, bool, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(vec<4, bool, Q> const& x)
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{
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return detail::format("bvec4(%s, %s, %s, %s)",
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x[0] ? detail::LabelTrue : detail::LabelFalse,
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x[1] ? detail::LabelTrue : detail::LabelFalse,
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x[2] ? detail::LabelTrue : detail::LabelFalse,
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x[3] ? detail::LabelTrue : detail::LabelFalse);
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<vec<1, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(vec<1, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%svec1(%s)",
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PrefixStr,
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LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<vec<2, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(vec<2, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%svec2(%s, %s)",
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PrefixStr,
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LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0]),
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static_cast<typename cast<T>::value_type>(x[1]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<vec<3, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(vec<3, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%svec3(%s, %s, %s)",
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PrefixStr,
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LiteralStr, LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0]),
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static_cast<typename cast<T>::value_type>(x[1]),
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static_cast<typename cast<T>::value_type>(x[2]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<vec<4, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(vec<4, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%svec4(%s, %s, %s, %s)",
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PrefixStr,
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LiteralStr, LiteralStr, LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0]),
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static_cast<typename cast<T>::value_type>(x[1]),
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static_cast<typename cast<T>::value_type>(x[2]),
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static_cast<typename cast<T>::value_type>(x[3]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<mat<2, 2, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(mat<2, 2, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%smat2x2((%s, %s), (%s, %s))",
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PrefixStr,
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LiteralStr, LiteralStr,
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LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]),
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static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<mat<2, 3, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(mat<2, 3, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%smat2x3((%s, %s, %s), (%s, %s, %s))",
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PrefixStr,
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LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]), static_cast<typename cast<T>::value_type>(x[0][2]),
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static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]), static_cast<typename cast<T>::value_type>(x[1][2]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<mat<2, 4, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(mat<2, 4, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%smat2x4((%s, %s, %s, %s), (%s, %s, %s, %s))",
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PrefixStr,
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LiteralStr, LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]), static_cast<typename cast<T>::value_type>(x[0][2]), static_cast<typename cast<T>::value_type>(x[0][3]),
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static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]), static_cast<typename cast<T>::value_type>(x[1][2]), static_cast<typename cast<T>::value_type>(x[1][3]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<mat<3, 2, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(mat<3, 2, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%smat3x2((%s, %s), (%s, %s), (%s, %s))",
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PrefixStr,
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LiteralStr, LiteralStr,
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LiteralStr, LiteralStr,
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LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]),
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static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]),
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static_cast<typename cast<T>::value_type>(x[2][0]), static_cast<typename cast<T>::value_type>(x[2][1]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<mat<3, 3, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(mat<3, 3, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%smat3x3((%s, %s, %s), (%s, %s, %s), (%s, %s, %s))",
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PrefixStr,
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LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]), static_cast<typename cast<T>::value_type>(x[0][2]),
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static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]), static_cast<typename cast<T>::value_type>(x[1][2]),
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static_cast<typename cast<T>::value_type>(x[2][0]), static_cast<typename cast<T>::value_type>(x[2][1]), static_cast<typename cast<T>::value_type>(x[2][2]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<mat<3, 4, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(mat<3, 4, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%smat3x4((%s, %s, %s, %s), (%s, %s, %s, %s), (%s, %s, %s, %s))",
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PrefixStr,
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LiteralStr, LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]), static_cast<typename cast<T>::value_type>(x[0][2]), static_cast<typename cast<T>::value_type>(x[0][3]),
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static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]), static_cast<typename cast<T>::value_type>(x[1][2]), static_cast<typename cast<T>::value_type>(x[1][3]),
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static_cast<typename cast<T>::value_type>(x[2][0]), static_cast<typename cast<T>::value_type>(x[2][1]), static_cast<typename cast<T>::value_type>(x[2][2]), static_cast<typename cast<T>::value_type>(x[2][3]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<mat<4, 2, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(mat<4, 2, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%smat4x2((%s, %s), (%s, %s), (%s, %s), (%s, %s))",
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PrefixStr,
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LiteralStr, LiteralStr,
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LiteralStr, LiteralStr,
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LiteralStr, LiteralStr,
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LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]),
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static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]),
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static_cast<typename cast<T>::value_type>(x[2][0]), static_cast<typename cast<T>::value_type>(x[2][1]),
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static_cast<typename cast<T>::value_type>(x[3][0]), static_cast<typename cast<T>::value_type>(x[3][1]));
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}
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};
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template<typename T, qualifier Q>
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struct compute_to_string<mat<4, 3, T, Q> >
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{
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GLM_FUNC_QUALIFIER static std::string call(mat<4, 3, T, Q> const& x)
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{
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char const * PrefixStr = prefix<T>::value();
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char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
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std::string FormatStr(detail::format("%smat4x3((%s, %s, %s), (%s, %s, %s), (%s, %s, %s), (%s, %s, %s))",
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PrefixStr,
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LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr,
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LiteralStr, LiteralStr, LiteralStr));
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return detail::format(FormatStr.c_str(),
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|
static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]), static_cast<typename cast<T>::value_type>(x[0][2]),
|
|
static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]), static_cast<typename cast<T>::value_type>(x[1][2]),
|
|
static_cast<typename cast<T>::value_type>(x[2][0]), static_cast<typename cast<T>::value_type>(x[2][1]), static_cast<typename cast<T>::value_type>(x[2][2]),
|
|
static_cast<typename cast<T>::value_type>(x[3][0]), static_cast<typename cast<T>::value_type>(x[3][1]), static_cast<typename cast<T>::value_type>(x[3][2]));
|
|
}
|
|
};
|
|
|
|
template<typename T, qualifier Q>
|
|
struct compute_to_string<mat<4, 4, T, Q> >
|
|
{
|
|
GLM_FUNC_QUALIFIER static std::string call(mat<4, 4, T, Q> const& x)
|
|
{
|
|
char const * PrefixStr = prefix<T>::value();
|
|
char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
|
|
std::string FormatStr(detail::format("%smat4x4((%s, %s, %s, %s), (%s, %s, %s, %s), (%s, %s, %s, %s), (%s, %s, %s, %s))",
|
|
PrefixStr,
|
|
LiteralStr, LiteralStr, LiteralStr, LiteralStr,
|
|
LiteralStr, LiteralStr, LiteralStr, LiteralStr,
|
|
LiteralStr, LiteralStr, LiteralStr, LiteralStr,
|
|
LiteralStr, LiteralStr, LiteralStr, LiteralStr));
|
|
|
|
return detail::format(FormatStr.c_str(),
|
|
static_cast<typename cast<T>::value_type>(x[0][0]), static_cast<typename cast<T>::value_type>(x[0][1]), static_cast<typename cast<T>::value_type>(x[0][2]), static_cast<typename cast<T>::value_type>(x[0][3]),
|
|
static_cast<typename cast<T>::value_type>(x[1][0]), static_cast<typename cast<T>::value_type>(x[1][1]), static_cast<typename cast<T>::value_type>(x[1][2]), static_cast<typename cast<T>::value_type>(x[1][3]),
|
|
static_cast<typename cast<T>::value_type>(x[2][0]), static_cast<typename cast<T>::value_type>(x[2][1]), static_cast<typename cast<T>::value_type>(x[2][2]), static_cast<typename cast<T>::value_type>(x[2][3]),
|
|
static_cast<typename cast<T>::value_type>(x[3][0]), static_cast<typename cast<T>::value_type>(x[3][1]), static_cast<typename cast<T>::value_type>(x[3][2]), static_cast<typename cast<T>::value_type>(x[3][3]));
|
|
}
|
|
};
|
|
|
|
|
|
template<typename T, qualifier Q>
|
|
struct compute_to_string<qua<T, Q> >
|
|
{
|
|
GLM_FUNC_QUALIFIER static std::string call(qua<T, Q> const& q)
|
|
{
|
|
char const * PrefixStr = prefix<T>::value();
|
|
char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
|
|
std::string FormatStr(detail::format("%squat(%s, {%s, %s, %s})",
|
|
PrefixStr,
|
|
LiteralStr, LiteralStr, LiteralStr, LiteralStr));
|
|
|
|
return detail::format(FormatStr.c_str(),
|
|
static_cast<typename cast<T>::value_type>(q.w),
|
|
static_cast<typename cast<T>::value_type>(q.x),
|
|
static_cast<typename cast<T>::value_type>(q.y),
|
|
static_cast<typename cast<T>::value_type>(q.z));
|
|
}
|
|
};
|
|
|
|
template<typename T, qualifier Q>
|
|
struct compute_to_string<tdualquat<T, Q> >
|
|
{
|
|
GLM_FUNC_QUALIFIER static std::string call(tdualquat<T, Q> const& x)
|
|
{
|
|
char const * PrefixStr = prefix<T>::value();
|
|
char const * LiteralStr = literal<T, std::numeric_limits<T>::is_iec559>::value();
|
|
std::string FormatStr(detail::format("%sdualquat((%s, {%s, %s, %s}), (%s, {%s, %s, %s}))",
|
|
PrefixStr,
|
|
LiteralStr, LiteralStr, LiteralStr, LiteralStr,
|
|
LiteralStr, LiteralStr, LiteralStr, LiteralStr));
|
|
|
|
return detail::format(FormatStr.c_str(),
|
|
static_cast<typename cast<T>::value_type>(x.real.w),
|
|
static_cast<typename cast<T>::value_type>(x.real.x),
|
|
static_cast<typename cast<T>::value_type>(x.real.y),
|
|
static_cast<typename cast<T>::value_type>(x.real.z),
|
|
static_cast<typename cast<T>::value_type>(x.dual.w),
|
|
static_cast<typename cast<T>::value_type>(x.dual.x),
|
|
static_cast<typename cast<T>::value_type>(x.dual.y),
|
|
static_cast<typename cast<T>::value_type>(x.dual.z));
|
|
}
|
|
};
|
|
|
|
}//namespace detail
|
|
|
|
template<class matType>
|
|
GLM_FUNC_QUALIFIER std::string to_string(matType const& x)
|
|
{
|
|
return detail::compute_to_string<matType>::call(x);
|
|
}
|
|
|
|
}//namespace glm
|