mirror of
https://github.com/zhenyan121/Cubed.git
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* 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
296 lines
7.1 KiB
C++
296 lines
7.1 KiB
C++
#pragma once
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#include "setup.hpp"
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namespace glm
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{
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/// Qualify GLM types in term of alignment (packed, aligned) and precision in term of ULPs (lowp, mediump, highp)
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enum qualifier
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{
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packed_highp, ///< Typed data is tightly packed in memory and operations are executed with high precision in term of ULPs
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packed_mediump, ///< Typed data is tightly packed in memory and operations are executed with medium precision in term of ULPs for higher performance
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packed_lowp, ///< Typed data is tightly packed in memory and operations are executed with low precision in term of ULPs to maximize performance
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# if GLM_CONFIG_ALIGNED_GENTYPES == GLM_ENABLE
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aligned_highp, ///< Typed data is aligned in memory allowing SIMD optimizations and operations are executed with high precision in term of ULPs
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aligned_mediump, ///< Typed data is aligned in memory allowing SIMD optimizations and operations are executed with high precision in term of ULPs for higher performance
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aligned_lowp, // ///< Typed data is aligned in memory allowing SIMD optimizations and operations are executed with high precision in term of ULPs to maximize performance
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aligned = aligned_highp, ///< By default aligned qualifier is also high precision
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# endif
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highp = packed_highp, ///< By default highp qualifier is also packed
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mediump = packed_mediump, ///< By default mediump qualifier is also packed
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lowp = packed_lowp, ///< By default lowp qualifier is also packed
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packed = packed_highp, ///< By default packed qualifier is also high precision
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# if GLM_CONFIG_ALIGNED_GENTYPES == GLM_ENABLE && defined(GLM_FORCE_DEFAULT_ALIGNED_GENTYPES)
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defaultp = aligned_highp
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# else
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defaultp = highp
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# endif
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};
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typedef qualifier precision;
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template<length_t L, typename T, qualifier Q = defaultp> struct vec;
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template<length_t C, length_t R, typename T, qualifier Q = defaultp> struct mat;
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template<typename T, qualifier Q = defaultp> struct qua;
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# if GLM_HAS_TEMPLATE_ALIASES
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template <typename T, qualifier Q = defaultp> using tvec1 = vec<1, T, Q>;
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template <typename T, qualifier Q = defaultp> using tvec2 = vec<2, T, Q>;
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template <typename T, qualifier Q = defaultp> using tvec3 = vec<3, T, Q>;
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template <typename T, qualifier Q = defaultp> using tvec4 = vec<4, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat2x2 = mat<2, 2, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat2x3 = mat<2, 3, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat2x4 = mat<2, 4, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat3x2 = mat<3, 2, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat3x3 = mat<3, 3, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat3x4 = mat<3, 4, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat4x2 = mat<4, 2, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat4x3 = mat<4, 3, T, Q>;
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template <typename T, qualifier Q = defaultp> using tmat4x4 = mat<4, 4, T, Q>;
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template <typename T, qualifier Q = defaultp> using tquat = qua<T, Q>;
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# endif
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namespace detail
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{
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template<glm::qualifier P>
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struct is_aligned
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{
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static const bool value = false;
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};
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# if GLM_CONFIG_ALIGNED_GENTYPES == GLM_ENABLE
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template<>
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struct is_aligned<glm::aligned_lowp>
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{
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static const bool value = true;
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};
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template<>
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struct is_aligned<glm::aligned_mediump>
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{
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static const bool value = true;
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};
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template<>
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struct is_aligned<glm::aligned_highp>
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{
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static const bool value = true;
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};
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# endif
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template<length_t L, typename T, bool is_aligned>
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struct storage
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{
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typedef struct type {
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T data[L];
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} type;
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};
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# if GLM_HAS_ALIGNOF
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template<length_t L, typename T>
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struct storage<L, T, true>
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{
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typedef struct alignas(L * sizeof(T)) type {
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T data[L];
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} type;
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};
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template<typename T>
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struct storage<3, T, true>
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{
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typedef struct alignas(4 * sizeof(T)) type {
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T data[4];
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} type;
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};
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# endif
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# if GLM_ARCH & GLM_ARCH_SSE2_BIT
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template<>
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struct storage<4, float, true>
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{
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typedef glm_f32vec4 type;
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};
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template<>
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struct storage<4, int, true>
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{
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typedef glm_i32vec4 type;
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};
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template<>
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struct storage<4, unsigned int, true>
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{
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typedef glm_u32vec4 type;
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};
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template<>
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struct storage<3, float, true>
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{
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typedef glm_f32vec4 type;
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};
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template<>
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struct storage<3, int, true>
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{
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typedef glm_i32vec4 type;
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};
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template<>
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struct storage<3, unsigned int, true>
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{
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typedef glm_u32vec4 type;
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};
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template<>
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struct storage<2, double, true>
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{
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typedef glm_f64vec2 type;
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};
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template<>
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struct storage<2, detail::int64, true>
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{
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typedef glm_i64vec2 type;
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};
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template<>
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struct storage<2, detail::uint64, true>
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{
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typedef glm_u64vec2 type;
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};
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template<>
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struct storage<3, detail::uint64, true>
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{
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typedef glm_u64vec2 type;
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};
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template<>
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struct storage<4, double, true>
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{
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# if (GLM_ARCH & GLM_ARCH_AVX_BIT)
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typedef glm_f64vec4 type;
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# else
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struct type
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{
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glm_f64vec2 data[2];
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GLM_CONSTEXPR glm_f64vec2 getv(int i) const {
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return data[i];
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}
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GLM_CONSTEXPR void setv(int i, const glm_f64vec2& v) {
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data[i] = v;
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}
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};
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# endif
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};
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template<>
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struct storage<3, double, true> : public storage<4, double, true>
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{};
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# endif
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# if (GLM_ARCH & GLM_ARCH_AVX2_BIT)
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template<>
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struct storage<4, detail::int64, true>
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{
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typedef glm_i64vec4 type;
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};
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template<>
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struct storage<4, detail::uint64, true>
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{
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typedef glm_u64vec4 type;
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};
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# endif
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# if GLM_ARCH & GLM_ARCH_NEON_BIT
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template<>
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struct storage<4, float, true>
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{
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typedef glm_f32vec4 type;
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};
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template<>
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struct storage<3, float, true> : public storage<4, float, true>
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{};
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template<>
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struct storage<4, int, true>
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{
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typedef glm_i32vec4 type;
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};
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template<>
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struct storage<3, int, true> : public storage<4, int, true>
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{};
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template<>
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struct storage<4, unsigned int, true>
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{
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typedef glm_u32vec4 type;
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};
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template<>
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struct storage<3, unsigned int, true> : public storage<4, unsigned int, true>
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{};
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# if GLM_HAS_ALIGNOF
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template<>
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struct storage<3, double, true>
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{
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typedef struct alignas(4 * sizeof(double)) type {
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double data[4];
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} type;
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};
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# endif//GLM_HAS_ALIGNOF
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# endif
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enum genTypeEnum
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{
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GENTYPE_VEC,
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GENTYPE_MAT,
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GENTYPE_QUAT
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};
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template <typename genType>
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struct genTypeTrait
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{};
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template <length_t C, length_t R, typename T>
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struct genTypeTrait<mat<C, R, T> >
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{
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static const genTypeEnum GENTYPE = GENTYPE_MAT;
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};
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template<typename genType, genTypeEnum type>
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struct init_gentype
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{
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};
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template<typename genType>
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struct init_gentype<genType, GENTYPE_QUAT>
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{
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GLM_FUNC_QUALIFIER GLM_CONSTEXPR static genType identity()
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{
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return genType(1, 0, 0, 0);
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}
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};
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template<typename genType>
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struct init_gentype<genType, GENTYPE_MAT>
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{
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GLM_FUNC_QUALIFIER GLM_CONSTEXPR static genType identity()
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{
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return genType(1);
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}
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};
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}//namespace detail
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}//namespace glm
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