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< li class = "navelem" > < a class = "el" href = "dir_934f46a345653ef2b3014a1b37a162c1.html" > G:< / a > < / li > < li class = "navelem" > < a class = "el" href = "dir_98f7f9d41f9d3029bd68cf237526a774.html" > Source< / a > < / li > < li class = "navelem" > < a class = "el" href = "dir_9344afb825aed5e2f5be1d2015dde43c.html" > G-Truc< / a > < / li > < li class = "navelem" > < a class = "el" href = "dir_45973f864e07b2505003ae343b7c8af7.html" > glm< / a > < / li > < li class = "navelem" > < a class = "el" href = "dir_304be5dfae1339a7705426c0b536faf2.html" > glm< / a > < / li > < li class = "navelem" > < a class = "el" href = "dir_e8f3c1046ba4b357711397765359cd18.html" > gtx< / a > < / li > < / ul >
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< div class = "title" > matrix_factorisation.hpp< / div > < / div >
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< div class = "contents" >
< a href = "a00059.html" > Go to the documentation of this file.< / a > < div class = "fragment" > < div class = "line" > < a name = "l00001" > < / a > < span class = "lineno" > 1< / span >   < / div >
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< div class = "line" > < a name = "l00013" > < / a > < span class = "lineno" > 13< / span >   < span class = "preprocessor" > #pragma once< / span > < / div >
< div class = "line" > < a name = "l00014" > < / a > < span class = "lineno" > 14< / span >   < / div >
< div class = "line" > < a name = "l00015" > < / a > < span class = "lineno" > 15< / span >   < span class = "comment" > // Dependency:< / span > < / div >
< div class = "line" > < a name = "l00016" > < / a > < span class = "lineno" > 16< / span >   < span class = "preprocessor" > #include " ../glm.hpp" < / span > < / div >
< div class = "line" > < a name = "l00017" > < / a > < span class = "lineno" > 17< / span >   < / div >
< div class = "line" > < a name = "l00018" > < / a > < span class = "lineno" > 18< / span >   < span class = "preprocessor" > #ifndef GLM_ENABLE_EXPERIMENTAL< / span > < / div >
< div class = "line" > < a name = "l00019" > < / a > < span class = "lineno" > 19< / span >   < span class = "preprocessor" > # error " GLM: GLM_GTX_matrix_factorisation is an experimental extension and may change in the future. Use #define GLM_ENABLE_EXPERIMENTAL before including it, if you really want to use it." < / span > < / div >
< div class = "line" > < a name = "l00020" > < / a > < span class = "lineno" > 20< / span >   < span class = "preprocessor" > #endif< / span > < / div >
< div class = "line" > < a name = "l00021" > < / a > < span class = "lineno" > 21< / span >   < / div >
< div class = "line" > < a name = "l00022" > < / a > < span class = "lineno" > 22< / span >   < span class = "preprocessor" > #if GLM_MESSAGES == GLM_MESSAGES_ENABLED & & !defined(GLM_EXT_INCLUDED)< / span > < / div >
< div class = "line" > < a name = "l00023" > < / a > < span class = "lineno" > 23< / span >   < span class = "preprocessor" > # pragma message(" GLM: GLM_GTX_matrix_factorisation extension included" )< / span > < / div >
< div class = "line" > < a name = "l00024" > < / a > < span class = "lineno" > 24< / span >   < span class = "preprocessor" > #endif< / span > < / div >
< div class = "line" > < a name = "l00025" > < / a > < span class = "lineno" > 25< / span >   < / div >
< div class = "line" > < a name = "l00026" > < / a > < span class = "lineno" > 26< / span >   < span class = "comment" > /*< / span > < / div >
< div class = "line" > < a name = "l00027" > < / a > < span class = "lineno" > 27< / span >   < span class = "comment" > Suggestions:< / span > < / div >
< div class = "line" > < a name = "l00028" > < / a > < span class = "lineno" > 28< / span >   < span class = "comment" > - Move helper functions flipud and fliplr to another file: They may be helpful in more general circumstances.< / span > < / div >
< div class = "line" > < a name = "l00029" > < / a > < span class = "lineno" > 29< / span >   < span class = "comment" > - Implement other types of matrix factorisation, such as: QL and LQ, L(D)U, eigendecompositions, etc...< / span > < / div >
< div class = "line" > < a name = "l00030" > < / a > < span class = "lineno" > 30< / span >   < span class = "comment" > */< / span > < / div >
< div class = "line" > < a name = "l00031" > < / a > < span class = "lineno" > 31< / span >   < / div >
< div class = "line" > < a name = "l00032" > < / a > < span class = "lineno" > 32< / span >   < span class = "keyword" > namespace < / span > < a class = "code" href = "a00135.html" > glm< / a > < / div >
< div class = "line" > < a name = "l00033" > < / a > < span class = "lineno" > 33< / span >   {< / div >
< div class = "line" > < a name = "l00036" > < / a > < span class = "lineno" > 36< / span >   < / div >
< div class = "line" > < a name = "l00040" > < / a > < span class = "lineno" > 40< / span >   < span class = "keyword" > template< / span > < length_t C, length_t R, < span class = "keyword" > typename< / span > T, qualifier Q> < / div >
< div class = "line" > < a name = "l00041" > < / a > < span class = "lineno" > 41< / span >   GLM_FUNC_DECL mat< C, R, T, Q> < a class = "code" href = "a00196.html#ga85003371f0ba97380dd25e8905de1870" > flipud< / a > (mat< C, R, T, Q> < span class = "keyword" > const< / span > & in);< / div >
< div class = "line" > < a name = "l00042" > < / a > < span class = "lineno" > 42< / span >   < / div >
< div class = "line" > < a name = "l00046" > < / a > < span class = "lineno" > 46< / span >   < span class = "keyword" > template< / span > < length_t C, length_t R, < span class = "keyword" > typename< / span > T, qualifier Q> < / div >
< div class = "line" > < a name = "l00047" > < / a > < span class = "lineno" > 47< / span >   GLM_FUNC_DECL mat< C, R, T, Q> < a class = "code" href = "a00196.html#gaf39f4e5f78eb29c1a90277d45b9b3feb" > fliplr< / a > (mat< C, R, T, Q> < span class = "keyword" > const< / span > & in);< / div >
< div class = "line" > < a name = "l00048" > < / a > < span class = "lineno" > 48< / span >   < / div >
< div class = "line" > < a name = "l00054" > < / a > < span class = "lineno" > 54< / span >   < span class = "keyword" > template< / span > < length_t C, length_t R, < span class = "keyword" > typename< / span > T, qualifier Q> < / div >
< div class = "line" > < a name = "l00055" > < / a > < span class = "lineno" > 55< / span >   GLM_FUNC_DECL < span class = "keywordtype" > void< / span > < a class = "code" href = "a00196.html#gac62d7bfc8dc661e616620d70552cd566" > qr_decompose< / a > (mat< C, R, T, Q> < span class = "keyword" > const< / span > & in, mat< (C < R ? C : R), R, T, Q> & q, mat< C, (C < R ? C : R), T, Q> & r);< / div >
< div class = "line" > < a name = "l00056" > < / a > < span class = "lineno" > 56< / span >   < / div >
< div class = "line" > < a name = "l00063" > < / a > < span class = "lineno" > 63< / span >   < span class = "keyword" > template< / span > < length_t C, length_t R, < span class = "keyword" > typename< / span > T, qualifier Q> < / div >
< div class = "line" > < a name = "l00064" > < / a > < span class = "lineno" > 64< / span >   GLM_FUNC_DECL < span class = "keywordtype" > void< / span > < a class = "code" href = "a00196.html#ga82874e2ebe891ba35ac21d9993873758" > rq_decompose< / a > (mat< C, R, T, Q> < span class = "keyword" > const< / span > & in, mat< (C < R ? C : R), R, T, Q> & r, mat< C, (C < R ? C : R), T, Q> & q);< / div >
< div class = "line" > < a name = "l00065" > < / a > < span class = "lineno" > 65< / span >   < / div >
< div class = "line" > < a name = "l00067" > < / a > < span class = "lineno" > 67< / span >   }< / div >
< div class = "line" > < a name = "l00068" > < / a > < span class = "lineno" > 68< / span >   < / div >
< div class = "line" > < a name = "l00069" > < / a > < span class = "lineno" > 69< / span >   < span class = "preprocessor" > #include " matrix_factorisation.inl" < / span > < / div >
< div class = "ttc" id = "a00135_html" > < div class = "ttname" > < a href = "a00135.html" > glm< / a > < / div > < div class = "ttdef" > < b > Definition:< / b > < a href = "a00015_source.html#l00020" > common.hpp:20< / a > < / div > < / div >
< div class = "ttc" id = "a00196_html_gaf39f4e5f78eb29c1a90277d45b9b3feb" > < div class = "ttname" > < a href = "a00196.html#gaf39f4e5f78eb29c1a90277d45b9b3feb" > glm::fliplr< / a > < / div > < div class = "ttdeci" > GLM_FUNC_DECL mat< C, R, T, Q > fliplr(mat< C, R, T, Q > const & in)< / div > < div class = "ttdoc" > Flips the matrix columns right and left. < / div > < / div >
< div class = "ttc" id = "a00196_html_ga82874e2ebe891ba35ac21d9993873758" > < div class = "ttname" > < a href = "a00196.html#ga82874e2ebe891ba35ac21d9993873758" > glm::rq_decompose< / a > < / div > < div class = "ttdeci" > GLM_FUNC_DECL void rq_decompose(mat< C, R, T, Q > const & in, mat< (C< R?C:R), R, T, Q > & r, mat< C,(C< R?C:R), T, Q > & q)< / div > < div class = "ttdoc" > Performs RQ factorisation of a matrix. < / div > < / div >
< div class = "ttc" id = "a00196_html_ga85003371f0ba97380dd25e8905de1870" > < div class = "ttname" > < a href = "a00196.html#ga85003371f0ba97380dd25e8905de1870" > glm::flipud< / a > < / div > < div class = "ttdeci" > GLM_FUNC_DECL mat< C, R, T, Q > flipud(mat< C, R, T, Q > const & in)< / div > < div class = "ttdoc" > Flips the matrix rows up and down. < / div > < / div >
< div class = "ttc" id = "a00196_html_gac62d7bfc8dc661e616620d70552cd566" > < div class = "ttname" > < a href = "a00196.html#gac62d7bfc8dc661e616620d70552cd566" > glm::qr_decompose< / a > < / div > < div class = "ttdeci" > GLM_FUNC_DECL void qr_decompose(mat< C, R, T, Q > const & in, mat< (C< R?C:R), R, T, Q > & q, mat< C,(C< R?C:R), T, Q > & r)< / div > < div class = "ttdoc" > Performs QR factorisation of a matrix. < / div > < / div >
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