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Fixed indentation
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@@ -270,14 +270,14 @@ class="small-caps">i</span><span
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class="small-caps">o</span><span
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class="small-caps">n</span><span
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class="small-caps">e</span><span
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class="small-caps">r</span></span> </td></tr><tr
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class="small-caps">r</span></span> </td></tr><tr
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class="hline"><td><hr></td><td><hr></td><td><hr></td></tr><tr
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style="vertical-align:baseline;" id="TBL-1-2-"><td style="white-space:nowrap; text-align:left;" id="TBL-1-2-1"
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class="td11">No preconditioner </td><td style="white-space:wrap; text-align:left;" id="TBL-1-2-2"
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class="td11"><!--l. 62--><p class="noindent" ><span class="obeylines-h"><span class="verb"><span
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class="cmtt-10x-x-109">’NONE’</span></span></span> </td><td style="white-space:wrap; text-align:left;" id="TBL-1-2-3"
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class="td11"><!--l. 62--><p class="noindent" >Considered to use the PSBLAS Krylov solvers
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with no preconditioner. </td>
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class="td11"><!--l. 62--><p class="noindent" >Considered to use the PSBLAS Krylov
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solvers with no preconditioner. </td>
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</tr><tr
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class="hline"><td><hr></td><td><hr></td><td><hr></td></tr><tr
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style="vertical-align:baseline;" id="TBL-1-3-"><td style="white-space:nowrap; text-align:left;" id="TBL-1-3-1"
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@@ -288,10 +288,10 @@ class="cmtt-10x-x-109">’DIAG’</span></span></span>,
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class="cmtt-10x-x-109">’JACOBI’</span></span></span>,
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<span class="obeylines-h"><span class="verb"><span
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class="cmtt-10x-x-109">’L1-JACOBI’</span></span></span> </td><td style="white-space:wrap; text-align:left;" id="TBL-1-3-3"
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class="td11"><!--l. 64--><p class="noindent" >Diagonal preconditioner. For any zero diagonal
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entry of the matrix to be preconditioned, the
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corresponding entry of the preconditioner is set
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to 1. </td>
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class="td11"><!--l. 64--><p class="noindent" >Diagonal preconditioner. For any zero
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diagonal entry of the matrix to be
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preconditioned, the corresponding entry
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of the preconditioner is set to 1. </td>
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</tr><tr
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class="hline"><td><hr></td><td><hr></td><td><hr></td></tr><tr
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style="vertical-align:baseline;" id="TBL-1-4-"><td style="white-space:nowrap; text-align:left;" id="TBL-1-4-1"
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@@ -300,8 +300,9 @@ class="td11"><!--l. 67--><p class="noindent" ><span class="obeylines-h"><span cl
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class="cmtt-10x-x-109">’GS’</span></span></span>,
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<span class="obeylines-h"><span class="verb"><span
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class="cmtt-10x-x-109">’L1-GS’</span></span></span> </td><td style="white-space:wrap; text-align:left;" id="TBL-1-4-3"
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class="td11"><!--l. 67--><p class="noindent" >Hybrid Gauss-Seidel (forward), that is, global
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block Jacobi with Gauss-Seidel as local solver. </td>
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class="td11"><!--l. 67--><p class="noindent" >Hybrid Gauss-Seidel (forward), that is,
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global block Jacobi with Gauss-Seidel as
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local solver. </td>
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</tr><tr
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class="hline"><td><hr></td><td><hr></td><td><hr></td></tr><tr
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style="vertical-align:baseline;" id="TBL-1-5-"><td style="white-space:nowrap; text-align:left;" id="TBL-1-5-1"
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@@ -310,9 +311,9 @@ class="td11"><!--l. 70--><p class="noindent" ><span class="obeylines-h"><span cl
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class="cmtt-10x-x-109">’FBGS’</span></span></span>,
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<span class="obeylines-h"><span class="verb"><span
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class="cmtt-10x-x-109">’L1-FBGS’</span></span></span> </td><td style="white-space:wrap; text-align:left;" id="TBL-1-5-3"
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class="td11"><!--l. 70--><p class="noindent" >Symmetrized hybrid Gauss-Seidel, that is,
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forward Gauss-Seidel followed by backward
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Gauss-Seidel. </td>
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class="td11"><!--l. 70--><p class="noindent" >Symmetrized hybrid Gauss-Seidel, that
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is, forward Gauss-Seidel followed by
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backward Gauss-Seidel. </td>
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</tr><tr
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class="hline"><td><hr></td><td><hr></td><td><hr></td></tr><tr
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style="vertical-align:baseline;" id="TBL-1-6-"><td style="white-space:nowrap; text-align:left;" id="TBL-1-6-1"
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@@ -321,31 +322,33 @@ class="td11"><!--l. 73--><p class="noindent" ><span class="obeylines-h"><span cl
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class="cmtt-10x-x-109">’BJAC’</span></span></span>,
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<span class="obeylines-h"><span class="verb"><span
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class="cmtt-10x-x-109">’L1-BJAC’</span></span></span> </td><td style="white-space:wrap; text-align:left;" id="TBL-1-6-3"
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class="td11"><!--l. 73--><p class="noindent" >Block-Jacobi with ILU(0) on the local blocks. </td>
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class="td11"><!--l. 73--><p class="noindent" >Block-Jacobi with ILU(0) on the local
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blocks. </td>
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</tr><tr
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class="hline"><td><hr></td><td><hr></td><td><hr></td></tr><tr
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style="vertical-align:baseline;" id="TBL-1-7-"><td style="white-space:nowrap; text-align:left;" id="TBL-1-7-1"
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class="td11">Additive Schwarz </td><td style="white-space:wrap; text-align:left;" id="TBL-1-7-2"
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class="td11"><!--l. 74--><p class="noindent" ><span class="obeylines-h"><span class="verb"><span
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class="cmtt-10x-x-109">’AS’</span></span></span> </td><td style="white-space:wrap; text-align:left;" id="TBL-1-7-3"
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class="td11"><!--l. 74--><p class="noindent" >Additive Schwarz (AS), with overlap 1 and
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ILU(0) on the local blocks. </td>
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class="td11"><!--l. 74--><p class="noindent" >Additive Schwarz (AS), with overlap 1
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and ILU(0) on the local blocks. </td>
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</tr><tr
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class="hline"><td><hr></td><td><hr></td><td><hr></td></tr><tr
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style="vertical-align:baseline;" id="TBL-1-8-"><td style="white-space:nowrap; text-align:left;" id="TBL-1-8-1"
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class="td11">Multilevel </td><td style="white-space:wrap; text-align:left;" id="TBL-1-8-2"
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class="td11"><!--l. 76--><p class="noindent" ><span class="obeylines-h"><span class="verb"><span
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class="cmtt-10x-x-109">’ML’</span></span></span> </td><td style="white-space:wrap; text-align:left;" id="TBL-1-8-3"
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class="td11"><!--l. 76--><p class="noindent" >V-cycle with one hybrid forward Gauss-Seidel
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(GS) sweep
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as pre-smoother and one hybrid backward GS
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sweep as post-smoother, decoupled smoothed
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aggregation as coarsening algorithm, and LU
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(plus triangular solve) as coarsest-level solver.
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See the default values in Tables <a
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class="td11"><!--l. 76--><p class="noindent" >V-cycle with one hybrid
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forward Gauss-Seidel (GS) sweep as
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pre-smoother and one hybrid backward
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GS sweep as post-smoother, decoupled
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smoothed aggregation as coarsening
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algorithm, and LU (plus triangular solve)
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as coarsest-level solver. See the default
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values in Tables <a
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href="userhtmlsu8.html#x17-160092">2<!--tex4ht:ref: tab:p_cycle --></a>-<a
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href="userhtmlsu8.html#x17-160158">8<!--tex4ht:ref: tab:p_smoother_1 --></a> for further
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details of the preconditioner. </td>
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href="userhtmlsu8.html#x17-160158">8<!--tex4ht:ref: tab:p_smoother_1 --></a> for further details of
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the preconditioner. </td>
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</tr><tr
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class="hline"><td><hr></td><td><hr></td><td><hr></td></tr><tr
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style="vertical-align:baseline;" id="TBL-1-9-"><td style="white-space:nowrap; text-align:left;" id="TBL-1-9-1"
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@@ -56,7 +56,7 @@ Examples showing the basic use of AMG4PSBLAS are reported in Section~\ref{sec:ex
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\begin{table}[h!]
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\begin{center}
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%{\small
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\begin{tabular}{|l|p{2cm}|p{8cm}|}
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\begin{tabular}{|l|p{2cm}|p{6.8cm}|}
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\hline
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\textsc{type} & \textsc{string} & \textsc{default preconditioner} \\ \hline
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No preconditioner &\verb|'NONE'|& Considered to use the PSBLAS
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