New interface for MUMPS_IPAR_ENTRY and MUMPS_RPAR_ENTRY. Document same.

stopcriterion
Salvatore Filippone 6 years ago
parent 37f068539a
commit 42b51e74f0

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@ -67,7 +67,7 @@ Ax=b,
<A NAME="eq:system"></A>
<TABLE WIDTH="100%" ALIGN="CENTER">
<TR VALIGN="MIDDLE"><TD ALIGN="CENTER" NOWRAP><A NAME="eq:system"></A><IMG
WIDTH="57" HEIGHT="30" BORDER="0"
WIDTH="58" HEIGHT="30" BORDER="0"
SRC="img2.png"
ALT="\begin{displaymath}
Ax=b,
@ -116,8 +116,7 @@ a hierarchy of index spaces and a corresponding hierarchy of matrices,
<IMG
WIDTH="398" HEIGHT="30" BORDER="0"
SRC="img7.png"
ALT="\begin{displaymath}\Omega^1 \equiv \Omega \supset \Omega^2 \supset \ldots \supset \Omega^{nlev},
\quad A^1 \equiv A, A^2, \ldots, A^{nlev}, \end{displaymath}">
ALT="\begin{displaymath}\Omega^1 \equiv \Omega \supset \Omega^2 \supset \ldots \supset \Omega^{nlev}, \quad A^1 \equiv A, A^2, \ldots, A^{nlev}, \end{displaymath}">
</DIV>
<BR CLEAR="ALL">
<P></P><BIG CLASS="LARGE"><BIG CLASS="LARGE"><BIG CLASS="LARGE">
@ -133,7 +132,7 @@ A vector space <!-- MATH
$\mathbb{R}^{n_{k}}$
-->
<SPAN CLASS="MATH"><IMG
WIDTH="34" HEIGHT="15" ALIGN="BOTTOM" BORDER="0"
WIDTH="33" HEIGHT="19" ALIGN="BOTTOM" BORDER="0"
SRC="img8.png"
ALT="$\mathbb{R}^{n_{k}}$"></SPAN> is associated with <SPAN CLASS="MATH"><IMG
WIDTH="25" HEIGHT="18" ALIGN="BOTTOM" BORDER="0"
@ -147,11 +146,11 @@ where <SPAN CLASS="MATH"><IMG
SRC="img9.png"
ALT="$\Omega^k$"></SPAN>.
For all <SPAN CLASS="MATH"><IMG
WIDTH="70" HEIGHT="34" ALIGN="MIDDLE" BORDER="0"
WIDTH="71" HEIGHT="32" ALIGN="MIDDLE" BORDER="0"
SRC="img11.png"
ALT="$k &lt; nlev$"></SPAN>, a restriction operator and a prolongation one are built,
which connect two levels <SPAN CLASS="MATH"><IMG
WIDTH="14" HEIGHT="15" ALIGN="BOTTOM" BORDER="0"
WIDTH="14" HEIGHT="20" ALIGN="BOTTOM" BORDER="0"
SRC="img12.png"
ALT="$k$"></SPAN> and <SPAN CLASS="MATH"><IMG
WIDTH="44" HEIGHT="34" ALIGN="MIDDLE" BORDER="0"
@ -168,7 +167,7 @@ P^k \in \mathbb{R}^{n_k \times n_{k+1}}, \quad
-->
<IMG
WIDTH="253" HEIGHT="30" BORDER="0"
WIDTH="254" HEIGHT="30" BORDER="0"
SRC="img14.png"
ALT="\begin{displaymath}
P^k \in \mathbb{R}^{n_k \times n_{k+1}}, \quad
@ -192,7 +191,7 @@ A^{k+1}=R^kA^kP^k.
-->
<IMG
WIDTH="129" HEIGHT="27" BORDER="0"
WIDTH="131" HEIGHT="28" BORDER="0"
SRC="img16.png"
ALT="\begin{displaymath}
A^{k+1}=R^kA^kP^k.
@ -208,19 +207,19 @@ A smoother with iteration matrix <SPAN CLASS="MATH"><IMG
WIDTH="32" HEIGHT="18" ALIGN="BOTTOM" BORDER="0"
SRC="img18.png"
ALT="$M^k$"></SPAN> is set up at each level <SPAN CLASS="MATH"><IMG
WIDTH="70" HEIGHT="34" ALIGN="MIDDLE" BORDER="0"
WIDTH="71" HEIGHT="32" ALIGN="MIDDLE" BORDER="0"
SRC="img11.png"
ALT="$k &lt; nlev$"></SPAN>, and a solver
is set up at the coarsest level, so that they are ready for application
(for example, setting up a solver based on the <SPAN CLASS="MATH"><IMG
WIDTH="30" HEIGHT="15" ALIGN="BOTTOM" BORDER="0"
WIDTH="30" HEIGHT="16" ALIGN="BOTTOM" BORDER="0"
SRC="img19.png"
ALT="$LU$"></SPAN> factorization means computing
and storing the <SPAN CLASS="MATH"><IMG
WIDTH="17" HEIGHT="15" ALIGN="BOTTOM" BORDER="0"
SRC="img20.png"
ALT="$L$"></SPAN> and <SPAN CLASS="MATH"><IMG
WIDTH="18" HEIGHT="15" ALIGN="BOTTOM" BORDER="0"
WIDTH="18" HEIGHT="16" ALIGN="BOTTOM" BORDER="0"
SRC="img21.png"
ALT="$U$"></SPAN> factors). The construction of the hierarchy of AMG components
described so far corresponds to the so-called build phase of the preconditioner.
@ -257,15 +256,8 @@ end
<IMG
WIDTH="333" HEIGHT="336" ALIGN="BOTTOM" BORDER="0"
SRC="img22.png"
ALT="\framebox{
\begin{minipage}{.85\textwidth}
\begin{tabbing}
\quad \=\quad \=\quad...
...[1mm]
\&gt;endif [1mm]
\&gt;return $u^k$ [1mm]
end
\end{tabbing}\end{minipage}}">
ALT="\framebox{ \begin{minipage}{.85\textwidth} \begin{tabbing} \quad \=\quad \=\quad...
...mm] \&gt;endif [1mm] \&gt;return $u^k$ [1mm] end \end{tabbing} \end{minipage} }">
</DIV></TD></TR>
</TABLE>

@ -149,7 +149,7 @@ strongly-coupled neighborood of <SPAN CLASS="MATH"><IMG
<A NAME="eq:strongly_coup"></A>
<TABLE WIDTH="100%" ALIGN="CENTER">
<TR VALIGN="MIDDLE"><TD ALIGN="CENTER" NOWRAP><A NAME="eq:strongly_coup"></A><IMG
WIDTH="387" HEIGHT="48" BORDER="0"
WIDTH="387" HEIGHT="49" BORDER="0"
SRC="img31.png"
ALT="\begin{displaymath}
\Omega^k_j \subset \mathcal{N}_i^k(\theta) =
@ -212,7 +212,7 @@ MLD2P4, since it has been shown to produce good results in practice
<A NAME="eq:tent_prol"></A>
<TABLE WIDTH="100%" ALIGN="CENTER">
<TR VALIGN="MIDDLE"><TD ALIGN="CENTER" NOWRAP><A NAME="eq:tent_prol"></A><IMG
WIDTH="286" HEIGHT="51" BORDER="0"
WIDTH="287" HEIGHT="52" BORDER="0"
SRC="img34.png"
ALT="\begin{displaymath}
\bar{P}^k =(\bar{p}_{ij}^k), \quad \bar{p}_{ij}^k =
@ -265,9 +265,7 @@ P^k = S^k \bar{P}^k,
<IMG
WIDTH="90" HEIGHT="30" BORDER="0"
SRC="img37.png"
ALT="\begin{displaymath}
P^k = S^k \bar{P}^k,
\end{displaymath}">
ALT="\begin{displaymath} P^k = S^k \bar{P}^k, \end{displaymath}">
</DIV>
<BR CLEAR="ALL">
<P></P><BIG CLASS="LARGE"><BIG CLASS="LARGE"><BIG CLASS="LARGE">
@ -277,7 +275,7 @@ method&nbsp;[<A
HREF="node36.html#BREZINA_VANEK">2</A>,<A
HREF="node36.html#Stuben_01">24</A>].
A simple choice for <SPAN CLASS="MATH"><IMG
WIDTH="25" HEIGHT="18" ALIGN="BOTTOM" BORDER="0"
WIDTH="24" HEIGHT="20" ALIGN="BOTTOM" BORDER="0"
SRC="img38.png"
ALT="$S^k$"></SPAN> is the damped Jacobi smoother:
</BIG></BIG></BIG>
@ -292,9 +290,7 @@ S^k = I - \omega^k (D^k)^{-1} A^k_F ,
<IMG
WIDTH="175" HEIGHT="31" BORDER="0"
SRC="img39.png"
ALT="\begin{displaymath}
S^k = I - \omega^k (D^k)^{-1} A^k_F ,
\end{displaymath}">
ALT="\begin{displaymath} S^k = I - \omega^k (D^k)^{-1} A^k_F , \end{displaymath}">
</DIV>
<BR CLEAR="ALL">
<P></P><BIG CLASS="LARGE"><BIG CLASS="LARGE"><BIG CLASS="LARGE">
@ -344,7 +340,7 @@ a_{ij}^k &amp; \m...
</TABLE>
<BR CLEAR="ALL"></DIV><P></P><BIG CLASS="LARGE"><BIG CLASS="LARGE"><BIG CLASS="LARGE">
and <SPAN CLASS="MATH"><IMG
WIDTH="24" HEIGHT="18" ALIGN="BOTTOM" BORDER="0"
WIDTH="24" HEIGHT="20" ALIGN="BOTTOM" BORDER="0"
SRC="img44.png"
ALT="$\omega^k$"></SPAN> is an approximation of <SPAN CLASS="MATH"><IMG
WIDTH="61" HEIGHT="39" ALIGN="MIDDLE" BORDER="0"

@ -93,13 +93,13 @@ operator <!-- MATH
SRC="img53.png"
ALT="$R_i^k \in \mathbb{R}^{n_{k,i} \times n_k}$"></SPAN>
that maps a vector <SPAN CLASS="MATH"><IMG
WIDTH="23" HEIGHT="18" ALIGN="BOTTOM" BORDER="0"
WIDTH="22" HEIGHT="20" ALIGN="BOTTOM" BORDER="0"
SRC="img54.png"
ALT="$x^k$"></SPAN> to the vector <SPAN CLASS="MATH"><IMG
WIDTH="22" HEIGHT="39" ALIGN="MIDDLE" BORDER="0"
SRC="img55.png"
ALT="$x_i^k$"></SPAN> made of the components of <SPAN CLASS="MATH"><IMG
WIDTH="23" HEIGHT="18" ALIGN="BOTTOM" BORDER="0"
WIDTH="22" HEIGHT="20" ALIGN="BOTTOM" BORDER="0"
SRC="img54.png"
ALT="$x^k$"></SPAN>
with indices in <SPAN CLASS="MATH"><IMG
@ -141,7 +141,7 @@ The classical AS preconditioner <SPAN CLASS="MATH"><IMG
-->
<IMG
WIDTH="218" HEIGHT="59" BORDER="0"
WIDTH="219" HEIGHT="59" BORDER="0"
SRC="img59.png"
ALT="\begin{displaymath}
( M^k_{AS} )^{-1} = \sum_{i=1}^{m_k} P_i^k (A_i^k)^{-1} R_i^{k},
@ -205,7 +205,7 @@ multilevel application phase, requires
</BIG></BIG></BIG>
<UL>
<LI>the restriction of <SPAN CLASS="MATH"><IMG
WIDTH="25" HEIGHT="18" ALIGN="BOTTOM" BORDER="0"
WIDTH="25" HEIGHT="20" ALIGN="BOTTOM" BORDER="0"
SRC="img67.png"
ALT="$w^k$"></SPAN> to the subspaces <!-- MATH
$\mathbb{R}^{n_{k,i}}$

@ -343,7 +343,7 @@ Parameters defining the aggregation algorithm.
$\lfloor 40 \sqrt[3]{n} \rfloor$
-->
<SPAN CLASS="MATH"><IMG
WIDTH="64" HEIGHT="38" ALIGN="MIDDLE" BORDER="0"
WIDTH="63" HEIGHT="37" ALIGN="MIDDLE" BORDER="0"
SRC="img76.png"
ALT="$\lfloor 40 \sqrt[3]{n} \rfloor$"></SPAN>, where <SPAN CLASS="MATH"><IMG
WIDTH="15" HEIGHT="18" ALIGN="BOTTOM" BORDER="0"
@ -361,7 +361,7 @@ Parameters defining the aggregation algorithm.
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=65>Any number
<P>
<SPAN CLASS="MATH"><IMG
WIDTH="32" HEIGHT="31" ALIGN="MIDDLE" BORDER="0"
WIDTH="31" HEIGHT="31" ALIGN="MIDDLE" BORDER="0"
SRC="img78.png"
ALT="$&gt; 1$"></SPAN></TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=82>1.5</TD>
@ -375,7 +375,7 @@ Parameters defining the aggregation algorithm.
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=65>Any integer
<P>
number <SPAN CLASS="MATH"><IMG
WIDTH="32" HEIGHT="31" ALIGN="MIDDLE" BORDER="0"
WIDTH="31" HEIGHT="31" ALIGN="MIDDLE" BORDER="0"
SRC="img78.png"
ALT="$&gt; 1$"></SPAN></TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=82>20</TD>
@ -393,7 +393,7 @@ Currently, only the
<code>SYMDEC</code> option applies decoupled
aggregation to the sparsity pattern
of <SPAN CLASS="MATH"><IMG
WIDTH="62" HEIGHT="40" ALIGN="MIDDLE" BORDER="0"
WIDTH="62" HEIGHT="39" ALIGN="MIDDLE" BORDER="0"
SRC="img79.png"
ALT="$A+A^T$"></SPAN>.</TD>
</TR>
@ -471,7 +471,7 @@ number&nbsp;<SPAN CLASS="MATH"><IMG
ALT="$\in [0, 1]$"></SPAN></TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=65>0.01</TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=187>The threshold <SPAN CLASS="MATH"><IMG
WIDTH="13" HEIGHT="15" ALIGN="BOTTOM" BORDER="0"
WIDTH="13" HEIGHT="20" ALIGN="BOTTOM" BORDER="0"
SRC="img81.png"
ALT="$\theta$"></SPAN> in the aggregation algorithm,
see (<A HREF="node14.html#eq:strongly_coup">3</A>) in Section&nbsp;<A HREF="node14.html#sec:aggregation">4.2</A>.
@ -897,7 +897,17 @@ Parameters defining the smoother or the details of the one-level preconditioner
</SMALL></TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=62><SMALL CLASS="SMALL"> 0
</SMALL></TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=201><SMALL CLASS="SMALL"> Set an entry in the MUMPS control array, as
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=201><SMALL CLASS="SMALL"> Set an entry in the MUMPS integer control array, as
chosen via the <code>idx</code> optional argument. </SMALL></TD>
</TR>
<TR><TD ALIGN="LEFT" VALIGN="TOP" WIDTH=85><SMALL CLASS="SMALL"> <code>'MUMPS_RPAR_ENTRY'</code> </SMALL></TD>
<TD ALIGN="LEFT"><SMALL CLASS="SMALL"> <code>real</code>
</SMALL></TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=71><SMALL CLASS="SMALL"> Any real number
</SMALL></TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=62><SMALL CLASS="SMALL"> 0
</SMALL></TD>
<TD ALIGN="LEFT" VALIGN="TOP" WIDTH=201><SMALL CLASS="SMALL"> Set an entry in the MUMPS real control array, as
chosen via the <code>idx</code> optional argument. </SMALL></TD>
</TR>
<TR><TD ALIGN="LEFT" VALIGN="TOP" WIDTH=85><SMALL CLASS="SMALL"> </SMALL></TD>

@ -62,9 +62,9 @@ This method computes <!-- MATH
$y = op(B^{-1})\, x$
-->
<SPAN CLASS="MATH"><IMG
WIDTH="113" HEIGHT="39" ALIGN="MIDDLE" BORDER="0"
WIDTH="112" HEIGHT="37" ALIGN="MIDDLE" BORDER="0"
SRC="img86.png"
ALT="$y = op(B^{-1}) x$"></SPAN>, where <SPAN CLASS="MATH"><IMG
ALT="$y = op(B^{-1})\, x$"></SPAN>, where <SPAN CLASS="MATH"><IMG
WIDTH="19" HEIGHT="15" ALIGN="BOTTOM" BORDER="0"
SRC="img24.png"
ALT="$B$"></SPAN> is a previously built

@ -72,7 +72,7 @@ Ax=b,
<A NAME="system1"></A>
<TABLE WIDTH="100%" ALIGN="CENTER">
<TR VALIGN="MIDDLE"><TD ALIGN="CENTER" NOWRAP><A NAME="system1"></A><IMG
WIDTH="57" HEIGHT="30" BORDER="0"
WIDTH="58" HEIGHT="30" BORDER="0"
SRC="img2.png"
ALT="\begin{displaymath}
Ax=b,

@ -60,7 +60,7 @@ Mathematics Department, Macquarie University, Sydney.
The command line arguments were: <BR>
<STRONG>latex2html</STRONG> <TT>-local_icons -noaddress -dir ../../html userhtml.tex</TT>
<P>
The translation was initiated on 2018-10-05<BIG CLASS="LARGE"><BIG CLASS="LARGE"></BIG></BIG>
The translation was initiated on 2018-10-21<BIG CLASS="LARGE"><BIG CLASS="LARGE"></BIG></BIG>
<BR><HR>
</BODY>

@ -80,7 +80,7 @@ constant
-->
<IMG
WIDTH="173" HEIGHT="31" BORDER="0"
WIDTH="172" HEIGHT="31" BORDER="0"
SRC="img4.png"
ALT="\begin{displaymath}\verb\vert mld_version_string_\vert\end{displaymath}">
</DIV>

@ -2,7 +2,7 @@
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/Title (MultiLevel Domain Decomposition Parallel Preconditioners Package based on PSBLAS, V. 2.2) /Subject (MultiLevel Domain Decomposition Parallel Preconditioners Package) /Keywords (Parallel Numerical Software, Algebraic Multilevel Preconditioners, Sparse Iterative Solvers, PSBLAS, MPI) /Creator (pdfLaTeX) /Producer ($Id: userguide.tex 2008-04-08 Pasqua D'Ambra, Daniela di Serafino, Salvatore Filippone$) /Author()/Title()/Subject()/Creator(LaTeX with hyperref package)/Producer(pdfTeX-1.40.17)/Keywords()
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@ -621,7 +621,12 @@ level (continued).\label{tab:p_coarse_1}}
\verb|'MUMPS_IPAR_ENTRY'| & \verb|integer|
& Any integer number
& 0
& Set an entry in the MUMPS control array, as
& Set an entry in the MUMPS integer control array, as
chosen via the \verb|idx| optional argument. \\ %\hline
\verb|'MUMPS_RPAR_ENTRY'| & \verb|real|
& Any real number
& 0
& Set an entry in the MUMPS real control array, as
chosen via the \verb|idx| optional argument. \\ %\hline
%\verb|mld_sub_ren_| \par \verb|SUB_REN| & \verb|character(len=*)|
% & \texttt{'RENUM\_NONE'} \texttt{'RENUM\_GLOBAL'} %, \texttt{'RENUM_GPS'}

@ -192,8 +192,11 @@ contains
deallocate(sv%id, sv%icntl, sv%rcntl)
if (allocated(sv%local_ictxt)) then
call psb_exit(sv%local_ictxt,close=.false.)
deallocate(sv%local_ictxt)
deallocate(sv%local_ictxt,stat=info)
end if
if (allocated(sv%icntl)) deallocate(sv%icntl,stat=info)
if (allocated(sv%rcntl)) deallocate(sv%rcntl,stat=info)
sv%built=.false.
end if
call psb_erractionrestore(err_act)
@ -266,7 +269,7 @@ contains
end subroutine c_mumps_solver_descr
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!! WARNING: OTHERS PARAMETERS OF MUMPS COULD BE ADDED. !!
!! WARNING: OTHER PARAMETERS OF MUMPS COULD BE ADDED. !!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
@ -294,6 +297,7 @@ contains
sv%ipar(2)=val
case('MUMPS_IPAR_ENTRY')
if(present(idx)) then
! Note: this will allocate %item
sv%icntl(idx)%item = val
end if
#endif
@ -333,6 +337,7 @@ contains
#if defined(HAVE_MUMPS_)
case('MUMPS_RPAR_ENTRY')
if(present(idx)) then
! Note: this will allocate %item
sv%rcntl(idx)%item = val
end if
#endif

@ -192,8 +192,11 @@ contains
deallocate(sv%id, sv%icntl, sv%rcntl)
if (allocated(sv%local_ictxt)) then
call psb_exit(sv%local_ictxt,close=.false.)
deallocate(sv%local_ictxt)
deallocate(sv%local_ictxt,stat=info)
end if
if (allocated(sv%icntl)) deallocate(sv%icntl,stat=info)
if (allocated(sv%rcntl)) deallocate(sv%rcntl,stat=info)
sv%built=.false.
end if
call psb_erractionrestore(err_act)
@ -266,7 +269,7 @@ contains
end subroutine d_mumps_solver_descr
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!! WARNING: OTHERS PARAMETERS OF MUMPS COULD BE ADDED. !!
!! WARNING: OTHER PARAMETERS OF MUMPS COULD BE ADDED. !!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
@ -294,6 +297,7 @@ contains
sv%ipar(2)=val
case('MUMPS_IPAR_ENTRY')
if(present(idx)) then
! Note: this will allocate %item
sv%icntl(idx)%item = val
end if
#endif
@ -333,6 +337,7 @@ contains
#if defined(HAVE_MUMPS_)
case('MUMPS_RPAR_ENTRY')
if(present(idx)) then
! Note: this will allocate %item
sv%rcntl(idx)%item = val
end if
#endif

@ -192,8 +192,11 @@ contains
deallocate(sv%id, sv%icntl, sv%rcntl)
if (allocated(sv%local_ictxt)) then
call psb_exit(sv%local_ictxt,close=.false.)
deallocate(sv%local_ictxt)
deallocate(sv%local_ictxt,stat=info)
end if
if (allocated(sv%icntl)) deallocate(sv%icntl,stat=info)
if (allocated(sv%rcntl)) deallocate(sv%rcntl,stat=info)
sv%built=.false.
end if
call psb_erractionrestore(err_act)
@ -266,7 +269,7 @@ contains
end subroutine s_mumps_solver_descr
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!! WARNING: OTHERS PARAMETERS OF MUMPS COULD BE ADDED. !!
!! WARNING: OTHER PARAMETERS OF MUMPS COULD BE ADDED. !!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
@ -294,6 +297,7 @@ contains
sv%ipar(2)=val
case('MUMPS_IPAR_ENTRY')
if(present(idx)) then
! Note: this will allocate %item
sv%icntl(idx)%item = val
end if
#endif
@ -333,6 +337,7 @@ contains
#if defined(HAVE_MUMPS_)
case('MUMPS_RPAR_ENTRY')
if(present(idx)) then
! Note: this will allocate %item
sv%rcntl(idx)%item = val
end if
#endif

@ -192,8 +192,11 @@ contains
deallocate(sv%id, sv%icntl, sv%rcntl)
if (allocated(sv%local_ictxt)) then
call psb_exit(sv%local_ictxt,close=.false.)
deallocate(sv%local_ictxt)
deallocate(sv%local_ictxt,stat=info)
end if
if (allocated(sv%icntl)) deallocate(sv%icntl,stat=info)
if (allocated(sv%rcntl)) deallocate(sv%rcntl,stat=info)
sv%built=.false.
end if
call psb_erractionrestore(err_act)
@ -266,7 +269,7 @@ contains
end subroutine z_mumps_solver_descr
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!! WARNING: OTHERS PARAMETERS OF MUMPS COULD BE ADDED. !!
!! WARNING: OTHER PARAMETERS OF MUMPS COULD BE ADDED. !!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
@ -294,6 +297,7 @@ contains
sv%ipar(2)=val
case('MUMPS_IPAR_ENTRY')
if(present(idx)) then
! Note: this will allocate %item
sv%icntl(idx)%item = val
end if
#endif
@ -333,6 +337,7 @@ contains
#if defined(HAVE_MUMPS_)
case('MUMPS_RPAR_ENTRY')
if(present(idx)) then
! Note: this will allocate %item
sv%rcntl(idx)%item = val
end if
#endif

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