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  < span id = "projectnumber" > 2.4.0< / span >
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< div class = "title" > INVERT - Implementation of a matrix inversion< / div > < / div >
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Exported functions< / h2 > < / td > < / tr >
< tr class = "memitem:ga7a19282d629041177b0c0fdf8a039b08" > < td class = "memItemLeft" align = "right" valign = "top" > < a class = "el" href = "openjpeg_8h.html#abb5dad6294f4611f1925388e919b16f4" > OPJ_BOOL< / a >   < / td > < td class = "memItemRight" valign = "bottom" > < a class = "el" href = "group___i_n_v_e_r_t.html#ga7a19282d629041177b0c0fdf8a039b08" > opj_matrix_inversion_f< / a > (< a class = "el" href = "openjpeg_8h.html#a62c71ae712322de0bef73cebae23fa04" > OPJ_FLOAT32< / a > *pSrcMatrix, < a class = "el" href = "openjpeg_8h.html#a62c71ae712322de0bef73cebae23fa04" > OPJ_FLOAT32< / a > *pDestMatrix, < a class = "el" href = "openjpeg_8h.html#a4cb1e6e6b6ef2df499d5c02f7df54cbb" > OPJ_UINT32< / a > nb_compo)< / td > < / tr >
< tr class = "memdesc:ga7a19282d629041177b0c0fdf8a039b08" > < td class = "mdescLeft" >   < / td > < td class = "mdescRight" > Calculates a n x n double matrix inversion with a LUP method. < a href = "#ga7a19282d629041177b0c0fdf8a039b08" > More...< / a > < br / > < / td > < / tr >
< tr class = "separator:ga7a19282d629041177b0c0fdf8a039b08" > < td class = "memSeparator" colspan = "2" >   < / td > < / tr >
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< a name = "details" id = "details" > < / a > < h2 class = "groupheader" > Detailed Description< / h2 >
< h2 class = "groupheader" > Function Documentation< / h2 >
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< td class = "memname" > < a class = "el" href = "openjpeg_8h.html#abb5dad6294f4611f1925388e919b16f4" > OPJ_BOOL< / a > opj_matrix_inversion_f < / td >
< td > (< / td >
< td class = "paramtype" > < a class = "el" href = "openjpeg_8h.html#a62c71ae712322de0bef73cebae23fa04" > OPJ_FLOAT32< / a > *  < / td >
< td class = "paramname" > < em > pSrcMatrix< / em > , < / td >
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< td class = "paramtype" > < a class = "el" href = "openjpeg_8h.html#a62c71ae712322de0bef73cebae23fa04" > OPJ_FLOAT32< / a > *  < / td >
< td class = "paramname" > < em > pDestMatrix< / em > , < / td >
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< td class = "paramtype" > < a class = "el" href = "openjpeg_8h.html#a4cb1e6e6b6ef2df499d5c02f7df54cbb" > OPJ_UINT32< / a >   < / td >
< td class = "paramname" > < em > nb_compo< / em >   < / td >
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< p > Calculates a n x n double matrix inversion with a LUP method. < / p >
< p > Data is aligned, rows after rows (or columns after columns). The function does not take ownership of any memory block, data must be fred by the user.< / p >
< dl class = "params" > < dt > Parameters< / dt > < dd >
< table class = "params" >
< tr > < td class = "paramname" > pSrcMatrix< / td > < td > the matrix to invert. < / td > < / tr >
< tr > < td class = "paramname" > pDestMatrix< / td > < td > data to store the inverted matrix. < / td > < / tr >
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< tr > < td class = "paramname" > nb_compo< / td > < td > size of the matrix < / td > < / tr >
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< dl class = "section return" > < dt > Returns< / dt > < dd > OPJ_TRUE if the inversion is successful, OPJ_FALSE if the matrix is singular.< / dd > < / dl >
< p > Calculates a n x n double matrix inversion with a LUP method. < / p >
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< p > References < a class = "el" href = "openjpeg_8h.html#ac672bfd7db39c609e828acb07a321964" > OPJ_FALSE< / a > , < a class = "el" href = "group___m_i_s_c.html#ga2bd00e2482ae36197631bde0665cfdfe" > opj_free()< / a > , < a class = "el" href = "invert_8c.html#a40666080ced941508395998c700a4b70" > opj_lupDecompose()< / a > , < a class = "el" href = "invert_8c.html#a88339411e582e3c36af4b808df8561e4" > opj_lupInvert()< / a > , < a class = "el" href = "group___m_i_s_c.html#ga49c70931cbed786f6eef5f095bcb2917" > opj_malloc()< / a > , and < a class = "el" href = "openjpeg_8h.html#a04830036d767cba56cbf5ae5bdc481d3" > OPJ_TRUE< / a > .< / p >
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< p > Referenced by < a class = "el" href = "group___j2_k.html#ga4a6561d0899d91b38099da38814cbe86" > opj_j2k_setup_encoder()< / a > .< / p >
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