=========================================================== .___ __ __ _________________ __ __ __| _/|__|/ |_ / ___\_` __ \__ \ | | \/ __ | | \\_ __\ / /_/ > | \// __ \| | / /_/ | | || | \___ /|__| (____ /____/\____ | |__||__| /_____/ \/ \/ grep rough audit - static analysis tool v2.8 written by @Wireghoul =================================[justanotherhacker.com]=== lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h-711- * \f$ J = -\frac{1}{8 \pi} \oint_{\infty} K_j^i m^j {\mathrm d}S_i\f$ lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h:712: * where \f$\vec{m} = \frac{\partial}{\partial \phi}\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h-713- * ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h-931- * \f$ J = -\frac{1}{8 \pi} \oint_{\infty} K_j^i m^j {\mathrm d}S_i\f$ lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h:932: * where \f$\vec{m} = \frac{\partial}{\partial \phi}\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h-933- */ ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h-938- * \f$ J = -\sum_{a= 1, 2} \frac{1}{8 \pi} \oint_{H_a} \Psi^6 K_j^i m^j {\mathrm d}S_i\f$ lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h:939: * where \f$\vec{m} = \frac{\partial}{\partial \phi}\f$ and \f$H_a\f$ denotes the horizon lorene-0.0.0~cvs20161116+dfsg/C++/Include/bhole.h-940- * of the hole \e a . ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/compobj.h-778- * \f] lorene-0.0.0~cvs20161116+dfsg/C++/Include/compobj.h:779: * where \f$\sigma = \sigma_m + \sigma_q\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/compobj.h-780- * \f$\lambda\f$ is computed according to the formula ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/etoile.h-1986- * \f] lorene-0.0.0~cvs20161116+dfsg/C++/Include/etoile.h:1987: * where \f$\sigma = \sigma_m + \sigma_q\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/etoile.h-1988- * \f$\lambda\f$ is computed according to the formula ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-436- /** Pointer on \f$\partial/\partial y\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h:437: * where \f$y=r\sin\theta \sin\phi\f$(0x0 if not up to date) lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-438- */ ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-794- /** Returns \f$\partial/\partial x\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h:795: * where \f$x=r\sin\theta \cos\phi\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-796- * If \c dzpuis is zero, then the returned \c Scalar has ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-801- /** Returns \f$\partial/\partial y\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h:802: * where \f$y=r\sin\theta \sin\phi\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-803- * If \c dzpuis is zero, then the returned \c Scalar has ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-808- /** Returns \f$\partial/\partial z\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h:809: * where \f$z=r\cos\theta\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-810- * If \c dzpuis is zero, then the returned \c Scalar has ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-815- /** Returns \f$\partial/\partial x_i\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h:816: * where \f$x_i = (x, y, z)\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/scalar.h-817- * If \c dzpuis is zero, then the returned \c Scalar has ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/star_rot.h-556- * \f] lorene-0.0.0~cvs20161116+dfsg/C++/Include/star_rot.h:557: * where \f$\sigma = \sigma_m + \sigma_q\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/star_rot.h-558- * \f$\lambda\f$ is computed according to the formula ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h-974- /** Returns \f$\partial/\partial x\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h:975: * where \f$x=r\sin\theta \cos\phi\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h-976- * Note that in the external compactified domain (ZEC), it returns ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h-981- /** Returns \f$\partial/\partial y\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h:982: * where \f$y=r\sin\theta \sin\phi\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h-983- * Note that in the external compactified domain (ZEC), it returns ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h-988- /** Returns \f$\partial/\partial z\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h:989: * where \f$z=r\cos\theta\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h-990- * Note that in the external compactified domain (ZEC), it returns ############################################## lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h-995- /** Returns \f$\partial/\partial x_i\f$ of \c *this , lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h:996: * where \f$x_i = (x, y, z)\f$. lorene-0.0.0~cvs20161116+dfsg/C++/Include/cmp.h-997- * Note that in the external compactified domain (ZEC), it returns ############################################## lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C-108- cout << "Value of the Kerr parameter a/M ?" << endl ; lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C:109: double aasm ; lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C:110: cin >> aasm ; lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C-111- ############################################## lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C-160- lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C:161: double aa = aasm * mm ; // angular momentum parameter a = J / M lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C-162- ############################################## lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C-208- // ------------------------------------------------------------- lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C:209: if (aasm == double(0)) { lorene-0.0.0~cvs20161116+dfsg/Codes/Test/Metric/test_kerr.C-210- ############################################## lorene-0.0.0~cvs20161116+dfsg/debian/rules-66-# of the unpacked Debian source package: lorene-0.0.0~cvs20161116+dfsg/debian/rules:67:# ./debian/rules CVS_DATE=`dpkg-parsechangelog -SVersion | sed 's/0.0.0~cvs//' | awk -F- '{print $1}'` get-orig-source lorene-0.0.0~cvs20161116+dfsg/debian/rules-68-# The source code will be retrieved from CVS into the ./Lorene