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<H2><A NAME="SECTION00078000000000000000">
psb_spins -- Insert a cloud of elements into a sparse
matrix</A>
</H2>
<P>
<PRE>
call psb_spins(nz, ia, ja, val, a, desc_a, info [,local])
</PRE>
<P>
<DL>
<DT><STRONG>Type:</STRONG></DT>
<DD>Asynchronous.
</DD>
<DT><STRONG><B>On Entry</B></STRONG></DT>
<DD>
</DD>
<DT><STRONG>nz</STRONG></DT>
<DD>the number of elements to be inserted.
<BR>
Scope:<B>local</B>.
<BR>
Type:<B>required</B>.
<BR>
Intent: <B>in</B>.
<BR>
Specified as: an integer scalar.
</DD>
<DT><STRONG>ia</STRONG></DT>
<DD>the row indices of the elements to be inserted.
<BR>
Scope:<B>local</B>.
<BR>
Type:<B>required</B>.
<BR>
Intent: <B>in</B>.
<BR>
Specified as: an integer array of size <IMG
WIDTH="22" HEIGHT="13" ALIGN="BOTTOM" BORDER="0"
SRC="img101.png"
ALT="$nz$">.
</DD>
<DT><STRONG>ja</STRONG></DT>
<DD>the column indices of the elements to be inserted.
<BR>
Scope:<B>local</B>.
<BR>
Type:<B>required</B>.
<BR>
Intent: <B>in</B>.
<BR>
Specified as: an integer array of size <IMG
WIDTH="22" HEIGHT="13" ALIGN="BOTTOM" BORDER="0"
SRC="img101.png"
ALT="$nz$">.
</DD>
<DT><STRONG>val</STRONG></DT>
<DD>the elements to be inserted.
<BR>
Scope:<B>local</B>.
<BR>
Type:<B>required</B>.
<BR>
Intent: <B>in</B>.
<BR>
Specified as: an array of size <IMG
WIDTH="22" HEIGHT="13" ALIGN="BOTTOM" BORDER="0"
SRC="img101.png"
ALT="$nz$">. Must be of the same type and kind
of the coefficients of the sparse matrix <IMG
WIDTH="12" HEIGHT="13" ALIGN="BOTTOM" BORDER="0"
SRC="img104.png"
ALT="$a$">.
</DD>
<DT><STRONG>desc_a</STRONG></DT>
<DD>The communication descriptor.
<BR>
Scope: <B>local</B>.
<BR>
Type: <B>required</B>.
<BR>
Intent: <B>inout</B>.
<BR>
Specified as: a variable of type descdata<TT>psb_desc_type</TT>.
<BR></DD>
<DT><STRONG>local</STRONG></DT>
<DD>Whether the entries in the indices vectors <code>ia</code>,
<code>ja</code> are already in local numbering.
<BR>
Scope:<B>local</B>.
<BR>
Type:<B>optional</B>.
<BR>
Specified as: a logical value; default: <code>.false.</code>.
<P>
</DD>
</DL>
<P>
<DL>
<DT><STRONG><B>On Return</B></STRONG></DT>
<DD>
</DD>
<DT><STRONG>a</STRONG></DT>
<DD>the matrix into which elements will be inserted.
<BR>
Scope:<B>local</B>
<BR>
Type:<B>required</B>
<BR>
Intent: <B>inout</B>.
<BR>
Specified as: a structured data of type spdata<TT>psb_Tspmat_type</TT>.
</DD>
<DT><STRONG>desc_a</STRONG></DT>
<DD>The communication descriptor.
<BR>
Scope: <B>local</B>.
<BR>
Type: <B>required</B>.
<BR>
Intent: <B>inout</B>.
<BR>
Specified as: a variable of type descdata<TT>psb_desc_type</TT>.
<BR></DD>
<DT><STRONG>info</STRONG></DT>
<DD>Error code.
<BR>
Scope: <B>local</B>
<BR>
Type: <B>required</B>
<BR>
Intent: <B>out</B>.
<BR>
An integer value; 0 means no error has been detected.
</DD>
</DL>
<P>
<FONT SIZE="+1"><B>Notes</B></FONT>
<OL>
<LI>On entry to this routine the descriptor may be in either the
build or assembled state.
</LI>
<LI>On entry to this routine the sparse matrix may be in either the
build or update state.
</LI>
<LI>If the descriptor is in the build state, then the sparse matrix
must also be in the build state; the action of the routine is to
(implicitly) call <code>psb_cdins</code> to add entries to the sparsity
pattern; each sparse matrix entry implicitly defines a graph edge,
that is passed to the descriptor routine for the appropriate
processing;
</LI>
<LI>The coefficients to be inserted are represented by the ordered
triples <!-- MATH
$ia(i),ja(i),val(i)$
-->
<IMG
WIDTH="124" HEIGHT="32" ALIGN="MIDDLE" BORDER="0"
SRC="img105.png"
ALT="$ia(i),ja(i),val(i)$">, for <IMG
WIDTH="91" HEIGHT="29" ALIGN="MIDDLE" BORDER="0"
SRC="img106.png"
ALT="$i=1,\dots,nz$">; these triples
should belong to the current process, i.e. <IMG
WIDTH="36" HEIGHT="32" ALIGN="MIDDLE" BORDER="0"
SRC="img99.png"
ALT="$ia(i)$"> should be one of
the local indices, but are otherwise arbitrary;
</LI>
<LI>There is no
requirement that a given row must be passed in its entirety to a
single call to this routine: the buildup of a row may be split into
as many calls as desired;
</LI>
<LI>Coefficients from different rows may also be mixed up freely
in a single call, according to the application needs;
</LI>
<LI>Any coefficients from matrix rows not owned by the calling
process are silently ignored;
</LI>
<LI>If the descriptor is in the assembled state, then any entries in
the sparse matrix that would generate additional communication
requirements are ignored;
</LI>
<LI>If the matrix is in the update state, any entries in positions
that were not present in the original matrix are ignored.
</LI>
</OL>
<P>
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