add mat4.inverse, mat4.transpose
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@@ -7,6 +7,11 @@ static int l_idt(lua::State* L) {
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return lua::pushmat4(L, glm::mat4(1.0f));
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return lua::pushmat4(L, glm::mat4(1.0f));
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}
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}
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/// Overloads:
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/// mat4.mul(m1: float[16], m2: float[16]) -> float[16] - creates matrix of m1 and m2 multiplication result
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/// mat4.mul(m1: float[16], m2: float[16], dst: float[16]) -> float[16] - updates dst matrix with m1 and m2 multiplication result
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/// mat4.mul(m1: float[16], v: float[3 or 4]) -> float[3 or 4] - creates vector of m1 and v multiplication result
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/// mat4.mul(m1: float[16], v: float[3 or 4], dst: float[3 or 4]) -> float[3 or 4] - updates dst vector with m1 and v multiplication result
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static int l_mul(lua::State* L) {
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static int l_mul(lua::State* L) {
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uint argc = lua::gettop(L);
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uint argc = lua::gettop(L);
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if (argc < 2 || argc > 3) {
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if (argc < 2 || argc > 3) {
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@@ -98,6 +103,44 @@ inline int l_rotate(lua::State* L) {
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return 0;
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return 0;
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}
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}
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/// Overloads:
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/// mat4.inverse(matrix: float[16]) -> float[16] - creates inversed version of the matrix
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/// mat4.inverse(matrix: float[16], dst: float[16]) -> float[16] - updates dst matrix with inversed version of the matrix
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static int l_inverse(lua::State* L) {
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uint argc = lua::gettop(L);
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auto matrix = lua::tomat4(L, 1);
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switch (argc) {
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case 1: {
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return lua::pushmat4(L, glm::inverse(matrix));
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}
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case 2: {
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return lua::setmat4(L, 2, glm::inverse(matrix));
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}
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default: {
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throw std::runtime_error("invalid arguments number (1 or 2 expected)");
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}
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}
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}
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/// Overloads:
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/// mat4.transpose(matrix: float[16]) -> float[16] - creates transposed version of the matrix
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/// mat4.transpose(matrix: float[16], dst: float[16]) -> float[16] - updates dst matrix with transposed version of the matrix
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static int l_transpose(lua::State* L) {
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uint argc = lua::gettop(L);
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auto matrix = lua::tomat4(L, 1);
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switch (argc) {
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case 1: {
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return lua::pushmat4(L, glm::transpose(matrix));
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}
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case 2: {
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return lua::setmat4(L, 2, glm::transpose(matrix));
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}
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default: {
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throw std::runtime_error("invalid arguments number (1 or 2 expected)");
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}
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}
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}
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static int l_tostring(lua::State* L) {
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static int l_tostring(lua::State* L) {
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auto matrix = lua::tomat4(L, 1);
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auto matrix = lua::tomat4(L, 1);
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std::stringstream ss;
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std::stringstream ss;
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@@ -118,6 +161,8 @@ const luaL_Reg mat4lib [] = {
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{"scale", lua::wrap<l_transform_func<glm::scale>>},
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{"scale", lua::wrap<l_transform_func<glm::scale>>},
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{"rotate", lua::wrap<l_rotate>},
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{"rotate", lua::wrap<l_rotate>},
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{"translate", lua::wrap<l_transform_func<glm::translate>>},
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{"translate", lua::wrap<l_transform_func<glm::translate>>},
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{"inverse", lua::wrap<l_inverse>},
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{"transpose", lua::wrap<l_transpose>},
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{"tostring", lua::wrap<l_tostring>},
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{"tostring", lua::wrap<l_tostring>},
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{NULL, NULL}
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{NULL, NULL}
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};
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};
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