Commit 03922af3 by Sebastian Pop Committed by Sebastian Pop

Make print_scop output the scoplib format.

2010-03-16  Sebastian Pop  <sebastian.pop@amd.com>

	* graphite-poly.c (print_scattering_function): Pretty print following
	the scoplib format.
	(print_pdr): Same.
	(print_pbb_domain): Same.
	(dump_gbb_cases): Same.
	(dump_gbb_conditions): Same.
	(print_pdrs): Same.
	(print_pbb): Same.
	(print_scop_params): Same.
	(print_scop_context): Same.
	(print_scop): Same.
	(print_pbb_body): New.
	(lst_indent_to): New.
	(print_lst): Start new lines with a #.
	* graphite-poly.h (pbb_bb): New.
	(pbb_index): Use pbb_bb.
	* graphite-ppl.c (ppl_print_powerset_matrix): Print the number of
	disjuncts.
	* tree-data-ref.c (dump_data_reference): Start new lines with a #.

From-SVN: r157883
parent 7da9e6ed
2010-03-16 Sebastian Pop <sebastian.pop@amd.com>
* graphite-poly.c (print_scattering_function): Pretty print following
the scoplib format.
(print_pdr): Same.
(print_pbb_domain): Same.
(dump_gbb_cases): Same.
(dump_gbb_conditions): Same.
(print_pdrs): Same.
(print_pbb): Same.
(print_scop_params): Same.
(print_scop_context): Same.
(print_scop): Same.
(print_pbb_body): New.
(lst_indent_to): New.
(print_lst): Start new lines with a #.
* graphite-poly.h (pbb_bb): New.
(pbb_index): Use pbb_bb.
* graphite-ppl.c (ppl_print_powerset_matrix): Print the number of
disjuncts.
* tree-data-ref.c (dump_data_reference): Start new lines with a #.
2010-03-13 Sebastian Pop <sebastian.pop@amd.com>
PR middle-end/43351
......
......@@ -145,7 +145,16 @@ print_scattering_function (FILE *file, poly_bb_p pbb)
if (!PBB_TRANSFORMED (pbb))
return;
fprintf (file, "scattering bb_%d (\n", pbb_index (pbb));
if (PBB_TRANSFORMED_SCATTERING (pbb)
|| PBB_ORIGINAL_SCATTERING (pbb))
fprintf (file, "# Scattering function is provided\n1\n");
else
{
fprintf (file, "# Scattering function is not provided\n0\n");
return;
}
fprintf (file, "# scattering bb_%d (\n", pbb_index (pbb));
fprintf (file, "# eq");
for (i = 0; i < pbb_nb_scattering_transform (pbb); i++)
......@@ -162,9 +171,14 @@ print_scattering_function (FILE *file, poly_bb_p pbb)
fprintf (file, " cst\n");
ppl_print_polyhedron_matrix (file, PBB_TRANSFORMED_SCATTERING (pbb));
/* Number of disjunct components. Remove this when
PBB_TRANSFORMED_SCATTERING will be a pointset_powerset. */
fprintf (file, "1\n");
ppl_print_polyhedron_matrix (file, PBB_TRANSFORMED_SCATTERING (pbb)
? PBB_TRANSFORMED_SCATTERING (pbb)
: PBB_ORIGINAL_SCATTERING (pbb));
fprintf (file, ")\n");
fprintf (file, "#)\n");
}
/* Prints to FILE the iteration domain of PBB. */
......@@ -411,7 +425,7 @@ print_pdr_access_layout (FILE *file, poly_dr_p pdr)
void
print_pdr (FILE *file, poly_dr_p pdr)
{
fprintf (file, "pdr_%d (", PDR_ID (pdr));
fprintf (file, "# pdr_%d (", PDR_ID (pdr));
switch (PDR_TYPE (pdr))
{
......@@ -433,12 +447,12 @@ print_pdr (FILE *file, poly_dr_p pdr)
dump_data_reference (file, (data_reference_p) PDR_CDR (pdr));
fprintf (file, "data accesses (\n");
fprintf (file, "# data accesses (\n");
print_pdr_access_layout (file, pdr);
ppl_print_powerset_matrix (file, PDR_ACCESSES (pdr));
fprintf (file, ")\n");
fprintf (file, "#)\n");
fprintf (file, ")\n");
fprintf (file, "#)\n");
}
/* Prints to STDERR the polyhedral data reference PDR. */
......@@ -503,7 +517,7 @@ print_pbb_domain (FILE *file, poly_bb_p pbb)
if (!PBB_DOMAIN (pbb))
return;
fprintf (file, "domains bb_%d (\n", GBB_BB (gbb)->index);
fprintf (file, "# Iteration domain of bb_%d (\n", GBB_BB (gbb)->index);
fprintf (file, "# eq");
for (i = 0; i < pbb_dim_iter_domain (pbb); i++)
......@@ -516,8 +530,10 @@ print_pbb_domain (FILE *file, poly_bb_p pbb)
if (PBB_DOMAIN (pbb))
ppl_print_powerset_matrix (file, PBB_DOMAIN (pbb));
else
fprintf (file, "0\n");
fprintf (file, ")\n");
fprintf (file, "#)\n");
}
/* Dump the cases of a graphite basic block GBB on FILE. */
......@@ -536,12 +552,15 @@ dump_gbb_cases (FILE *file, gimple_bb_p gbb)
if (VEC_empty (gimple, cases))
return;
fprintf (file, "cases bb_%d (", GBB_BB (gbb)->index);
fprintf (file, "# cases bb_%d (\n", GBB_BB (gbb)->index);
for (i = 0; VEC_iterate (gimple, cases, i, stmt); i++)
print_gimple_stmt (file, stmt, 0, 0);
{
fprintf (file, "# ");
print_gimple_stmt (file, stmt, 0, 0);
}
fprintf (file, ")\n");
fprintf (file, "#)\n");
}
/* Dump conditions of a graphite basic block GBB on FILE. */
......@@ -560,12 +579,15 @@ dump_gbb_conditions (FILE *file, gimple_bb_p gbb)
if (VEC_empty (gimple, conditions))
return;
fprintf (file, "conditions bb_%d (", GBB_BB (gbb)->index);
fprintf (file, "# conditions bb_%d (\n", GBB_BB (gbb)->index);
for (i = 0; VEC_iterate (gimple, conditions, i, stmt); i++)
print_gimple_stmt (file, stmt, 0, 0);
{
fprintf (file, "# ");
print_gimple_stmt (file, stmt, 0, 0);
}
fprintf (file, ")\n");
fprintf (file, "#)\n");
}
/* Print to FILE all the data references of PBB. */
......@@ -575,9 +597,38 @@ print_pdrs (FILE *file, poly_bb_p pbb)
{
int i;
poly_dr_p pdr;
int nb_reads = 0;
int nb_writes = 0;
if (VEC_length (poly_dr_p, PBB_DRS (pbb)) == 0)
{
fprintf (file, "# Access informations are not provided\n0\n");
return;
}
fprintf (file, "# Data references (\n");
fprintf (file, "# Access informations are provided\n1\n");
for (i = 0; VEC_iterate (poly_dr_p, PBB_DRS (pbb), i, pdr); i++)
if (PDR_TYPE (pdr) == PDR_READ)
nb_reads++;
else
nb_writes++;
fprintf (file, "# Read data references (\n");
fprintf (file, "# Read access informations\n%d\n", nb_reads);
for (i = 0; VEC_iterate (poly_dr_p, PBB_DRS (pbb), i, pdr); i++)
print_pdr (file, pdr);
if (PDR_TYPE (pdr) == PDR_READ)
print_pdr (file, pdr);
fprintf (file, "#)\n");
fprintf (file, "# Write data references (\n");
fprintf (file, "# Write access informations\n%d\n", nb_writes);
for (i = 0; VEC_iterate (poly_dr_p, PBB_DRS (pbb), i, pdr); i++)
if (PDR_TYPE (pdr) != PDR_READ)
print_pdr (file, pdr);
fprintf (file, "#)\n");
fprintf (file, "#)\n");
}
/* Print to STDERR all the data references of PBB. */
......@@ -588,18 +639,34 @@ debug_pdrs (poly_bb_p pbb)
print_pdrs (stderr, pbb);
}
/* Print to FILE the body of PBB. */
static void
print_pbb_body (FILE *file, poly_bb_p pbb)
{
fprintf (file, "# Body (\n");
fprintf (file, "# Statement body is provided\n1\n");
fprintf (file, "# Original iterator names\n# Iterator names are not provided yet.\n");
fprintf (file, "# Statement body\n");
fprintf (file, "{\n");
dump_bb (pbb_bb (pbb), file, 0);
fprintf (file, "}\n");
fprintf (file, "#)\n");
}
/* Print to FILE the domain and scattering function of PBB. */
void
print_pbb (FILE *file, poly_bb_p pbb)
{
fprintf (file, "pbb_%d (\n", pbb_index (pbb));
fprintf (file, "# pbb_%d (\n", pbb_index (pbb));
dump_gbb_conditions (file, PBB_BLACK_BOX (pbb));
dump_gbb_cases (file, PBB_BLACK_BOX (pbb));
print_pdrs (file, pbb);
print_pbb_domain (file, pbb);
print_scattering_function (file, pbb);
fprintf (file, ")\n");
print_pdrs (file, pbb);
print_pbb_body (file, pbb);
fprintf (file, "#)\n");
}
/* Print to FILE the parameters of SCOP. */
......@@ -610,14 +677,19 @@ print_scop_params (FILE *file, scop_p scop)
int i;
tree t;
fprintf (file, "parameters (\n");
fprintf (file, "# parameters (\n");
if (VEC_length (tree, SESE_PARAMS (SCOP_REGION (scop))))
fprintf (file, "# Parameter names are provided\n1\n# Parameter names \n");
else
fprintf (file, "# Parameter names are not provided\n0\n");
for (i = 0; VEC_iterate (tree, SESE_PARAMS (SCOP_REGION (scop)), i, t); i++)
{
fprintf (file, "p_%d -> ", i);
print_generic_expr (file, t, 0);
fprintf (file, "\n");
fprintf (file, " # p_%d \n", i);
}
fprintf (file, ")\n");
fprintf (file, "#)\n");
}
/* Print to FILE the context of SCoP. */
......@@ -626,7 +698,7 @@ print_scop_context (FILE *file, scop_p scop)
{
graphite_dim_t i;
fprintf (file, "context (\n");
fprintf (file, "# Context (\n");
fprintf (file, "# eq");
for (i = 0; i < scop_nb_params (scop); i++)
......@@ -636,8 +708,10 @@ print_scop_context (FILE *file, scop_p scop)
if (SCOP_CONTEXT (scop))
ppl_print_powerset_matrix (file, SCOP_CONTEXT (scop));
else
fprintf (file, "0 %d\n", (int) scop_nb_params (scop) + 2);
fprintf (file, ")\n");
fprintf (file, "# )\n");
}
/* Print to FILE the SCOP. */
......@@ -648,22 +722,25 @@ print_scop (FILE *file, scop_p scop)
int i;
poly_bb_p pbb;
fprintf (file, "scop (\n");
print_scop_params (file, scop);
fprintf (file, "SCoP #(\n");
fprintf (file, "# Language\nGimple\n");
print_scop_context (file, scop);
print_scop_params (file, scop);
fprintf (file, "# Number of statements\n%d\n",
VEC_length (poly_bb_p, SCOP_BBS (scop)));
for (i = 0; VEC_iterate (poly_bb_p, SCOP_BBS (scop), i, pbb); i++)
print_pbb (file, pbb);
fprintf (file, "original_lst (\n");
fprintf (file, "# original_lst (\n");
print_lst (file, SCOP_ORIGINAL_SCHEDULE (scop), 0);
fprintf (file, ")\n");
fprintf (file, "\n#)\n");
fprintf (file, "transformed_lst (\n");
fprintf (file, "# transformed_lst (\n");
print_lst (file, SCOP_TRANSFORMED_SCHEDULE (scop), 0);
fprintf (file, ")\n");
fprintf (file, "\n#)\n");
fprintf (file, ")\n");
fprintf (file, "#)\n");
}
/* Print to STDERR the domain of PBB. */
......@@ -901,6 +978,20 @@ scop_to_lst (scop_p scop)
SCOP_TRANSFORMED_SCHEDULE (scop) = copy_lst (res);
}
/* Print to FILE on a new line COLUMN white spaces. */
static void
lst_indent_to (FILE *file, int column)
{
int i;
if (column > 0)
fprintf (file, "\n#");
for (i = 0; i < column; i++)
fprintf (file, " ");
}
/* Print LST to FILE with INDENT spaces of indentation. */
void
......@@ -909,7 +1000,7 @@ print_lst (FILE *file, lst_p lst, int indent)
if (!lst)
return;
indent_to (file, indent);
lst_indent_to (file, indent);
if (LST_LOOP_P (lst))
{
......@@ -919,7 +1010,7 @@ print_lst (FILE *file, lst_p lst, int indent)
if (LST_LOOP_FATHER (lst))
fprintf (file, "%d (loop", lst_dewey_number (lst));
else
fprintf (file, "(root");
fprintf (file, "#(root");
for (i = 0; VEC_iterate (lst_p, LST_SEQ (lst), i, l); i++)
print_lst (file, l, indent + 2);
......
......@@ -385,12 +385,19 @@ number_of_write_pdrs (poly_bb_p pbb)
return res;
}
/* The basic block of the PBB. */
static inline basic_block
pbb_bb (poly_bb_p pbb)
{
return GBB_BB (PBB_BLACK_BOX (pbb));
}
/* The index of the PBB. */
static inline int
pbb_index (poly_bb_p pbb)
{
return GBB_BB (PBB_BLACK_BOX (pbb))->index;
return pbb_bb (pbb)->index;
}
/* The loop of the PBB. */
......
......@@ -591,11 +591,15 @@ void
ppl_print_powerset_matrix (FILE *file,
ppl_Pointset_Powerset_C_Polyhedron_t ps)
{
size_t nb_disjuncts;
ppl_Pointset_Powerset_C_Polyhedron_iterator_t it, end;
ppl_new_Pointset_Powerset_C_Polyhedron_iterator (&it);
ppl_new_Pointset_Powerset_C_Polyhedron_iterator (&end);
ppl_Pointset_Powerset_C_Polyhedron_size (ps, &nb_disjuncts);
fprintf (file, "%d\n", (int) nb_disjuncts);
for (ppl_Pointset_Powerset_C_Polyhedron_iterator_begin (ps, it),
ppl_Pointset_Powerset_C_Polyhedron_iterator_end (ps, end);
!ppl_Pointset_Powerset_C_Polyhedron_iterator_equal_test (it, end);
......
......@@ -203,19 +203,19 @@ dump_data_reference (FILE *outf,
{
unsigned int i;
fprintf (outf, "(Data Ref: \n stmt: ");
fprintf (outf, "#(Data Ref: \n# stmt: ");
print_gimple_stmt (outf, DR_STMT (dr), 0, 0);
fprintf (outf, " ref: ");
fprintf (outf, "# ref: ");
print_generic_stmt (outf, DR_REF (dr), 0);
fprintf (outf, " base_object: ");
fprintf (outf, "# base_object: ");
print_generic_stmt (outf, DR_BASE_OBJECT (dr), 0);
for (i = 0; i < DR_NUM_DIMENSIONS (dr); i++)
{
fprintf (outf, " Access function %d: ", i);
fprintf (outf, "# Access function %d: ", i);
print_generic_stmt (outf, DR_ACCESS_FN (dr, i), 0);
}
fprintf (outf, ")\n");
fprintf (outf, "#)\n");
}
/* Dumps the affine function described by FN to the file OUTF. */
......
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