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9897128cb9
Change-Id: I9d707083f0a9e71d3bcc02b3265bfb233bdbe46c Reviewed-on: https://review.haiku-os.org/c/buildtools/+/3019 Reviewed-by: Adrien Destugues <pulkomandy@gmail.com>
685 lines
20 KiB
C
685 lines
20 KiB
C
/*
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* Copyright 2011 INRIA Saclay
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* Copyright 2012-2014 Ecole Normale Superieure
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* Copyright 2016 Sven Verdoolaege
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*
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* Use of this software is governed by the MIT license
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*
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* Written by Sven Verdoolaege, INRIA Saclay - Ile-de-France,
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* Parc Club Orsay Universite, ZAC des vignes, 4 rue Jacques Monod,
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* 91893 Orsay, France
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* and Ecole Normale Superieure, 45 rue d'Ulm, 75230 Paris, France
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*/
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#include <isl/ctx.h>
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#include <isl/val.h>
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#include <isl_aff_private.h>
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#include <isl/map.h>
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#include <isl/set.h>
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#include <isl/schedule.h>
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#include <isl/schedule_node.h>
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#include <isl_sort.h>
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#include <isl/printer.h>
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#include <isl_schedule_private.h>
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#include <isl_schedule_tree.h>
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#include <isl_schedule_node_private.h>
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/* Return a schedule encapsulating the given schedule tree.
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*
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* We currently only allow schedule trees with a domain or extension as root.
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*
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* The leaf field is initialized as a leaf node so that it can be
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* used to represent leaves in the constructed schedule.
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* The reference count is set to -1 since the isl_schedule_tree
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* should never be freed. It is up to the (internal) users of
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* these leaves to ensure that they are only used while the schedule
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* is still alive.
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*/
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__isl_give isl_schedule *isl_schedule_from_schedule_tree(isl_ctx *ctx,
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__isl_take isl_schedule_tree *tree)
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{
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enum isl_schedule_node_type type;
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isl_schedule *schedule;
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if (!tree)
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return NULL;
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type = isl_schedule_tree_get_type(tree);
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if (type != isl_schedule_node_domain &&
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type != isl_schedule_node_extension)
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isl_die(isl_schedule_tree_get_ctx(tree), isl_error_unsupported,
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"root of schedule tree should be a domain or extension",
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goto error);
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schedule = isl_calloc_type(ctx, isl_schedule);
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if (!schedule)
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goto error;
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schedule->ref = 1;
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schedule->root = tree;
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schedule->leaf = isl_schedule_tree_leaf(ctx);
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if (!schedule->leaf)
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return isl_schedule_free(schedule);
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return schedule;
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error:
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isl_schedule_tree_free(tree);
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return NULL;
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}
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/* Return a pointer to a schedule with as single node
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* a domain node with the given domain.
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*/
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__isl_give isl_schedule *isl_schedule_from_domain(
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__isl_take isl_union_set *domain)
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{
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isl_ctx *ctx;
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isl_schedule_tree *tree;
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ctx = isl_union_set_get_ctx(domain);
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tree = isl_schedule_tree_from_domain(domain);
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return isl_schedule_from_schedule_tree(ctx, tree);
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}
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/* Return a pointer to a schedule with as single node
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* a domain node with an empty domain.
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*/
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__isl_give isl_schedule *isl_schedule_empty(__isl_take isl_space *space)
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{
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return isl_schedule_from_domain(isl_union_set_empty(space));
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}
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/* Return a new reference to "sched".
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*/
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__isl_give isl_schedule *isl_schedule_copy(__isl_keep isl_schedule *sched)
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{
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if (!sched)
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return NULL;
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sched->ref++;
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return sched;
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}
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/* Return an isl_schedule that is equal to "schedule" and that has only
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* a single reference.
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*/
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__isl_give isl_schedule *isl_schedule_cow(__isl_take isl_schedule *schedule)
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{
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isl_ctx *ctx;
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isl_schedule_tree *tree;
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if (!schedule)
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return NULL;
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if (schedule->ref == 1)
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return schedule;
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ctx = isl_schedule_get_ctx(schedule);
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schedule->ref--;
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tree = isl_schedule_tree_copy(schedule->root);
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return isl_schedule_from_schedule_tree(ctx, tree);
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}
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__isl_null isl_schedule *isl_schedule_free(__isl_take isl_schedule *sched)
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{
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if (!sched)
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return NULL;
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if (--sched->ref > 0)
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return NULL;
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isl_schedule_tree_free(sched->root);
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isl_schedule_tree_free(sched->leaf);
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free(sched);
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return NULL;
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}
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/* Replace the root of "schedule" by "tree".
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*/
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__isl_give isl_schedule *isl_schedule_set_root(
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__isl_take isl_schedule *schedule, __isl_take isl_schedule_tree *tree)
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{
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if (!schedule || !tree)
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goto error;
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if (schedule->root == tree) {
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isl_schedule_tree_free(tree);
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return schedule;
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}
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schedule = isl_schedule_cow(schedule);
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if (!schedule)
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goto error;
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isl_schedule_tree_free(schedule->root);
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schedule->root = tree;
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return schedule;
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error:
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isl_schedule_free(schedule);
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isl_schedule_tree_free(tree);
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return NULL;
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}
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isl_ctx *isl_schedule_get_ctx(__isl_keep isl_schedule *schedule)
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{
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return schedule ? isl_schedule_tree_get_ctx(schedule->leaf) : NULL;
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}
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/* Return a pointer to the leaf of "schedule".
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*/
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__isl_keep isl_schedule_tree *isl_schedule_peek_leaf(
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__isl_keep isl_schedule *schedule)
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{
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return schedule ? schedule->leaf : NULL;
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}
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/* Are "schedule1" and "schedule2" obviously equal to each other?
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*/
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isl_bool isl_schedule_plain_is_equal(__isl_keep isl_schedule *schedule1,
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__isl_keep isl_schedule *schedule2)
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{
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if (!schedule1 || !schedule2)
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return isl_bool_error;
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if (schedule1 == schedule2)
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return isl_bool_true;
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return isl_schedule_tree_plain_is_equal(schedule1->root,
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schedule2->root);
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}
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/* Return the (parameter) space of the schedule, i.e., the space
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* of the root domain.
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*/
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__isl_give isl_space *isl_schedule_get_space(
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__isl_keep isl_schedule *schedule)
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{
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enum isl_schedule_node_type type;
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isl_space *space;
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isl_union_set *domain;
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if (!schedule)
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return NULL;
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type = isl_schedule_tree_get_type(schedule->root);
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if (type != isl_schedule_node_domain)
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isl_die(isl_schedule_get_ctx(schedule), isl_error_internal,
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"root node not a domain node", return NULL);
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domain = isl_schedule_tree_domain_get_domain(schedule->root);
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space = isl_union_set_get_space(domain);
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isl_union_set_free(domain);
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return space;
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}
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/* Return a pointer to the root of "schedule".
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*/
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__isl_give isl_schedule_node *isl_schedule_get_root(
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__isl_keep isl_schedule *schedule)
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{
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isl_ctx *ctx;
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isl_schedule_tree *tree;
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isl_schedule_tree_list *ancestors;
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if (!schedule)
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return NULL;
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ctx = isl_schedule_get_ctx(schedule);
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tree = isl_schedule_tree_copy(schedule->root);
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schedule = isl_schedule_copy(schedule);
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ancestors = isl_schedule_tree_list_alloc(ctx, 0);
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return isl_schedule_node_alloc(schedule, tree, ancestors, NULL);
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}
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/* Return the domain of the root domain node of "schedule".
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*/
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__isl_give isl_union_set *isl_schedule_get_domain(
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__isl_keep isl_schedule *schedule)
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{
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if (!schedule)
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return NULL;
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return isl_schedule_tree_domain_get_domain(schedule->root);
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}
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/* Traverse all nodes of "sched" in depth first preorder.
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*
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* If "fn" returns -1 on any of the nodes, then the traversal is aborted.
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* If "fn" returns 0 on any of the nodes, then the subtree rooted
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* at that node is skipped.
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*
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* Return 0 on success and -1 on failure.
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*/
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isl_stat isl_schedule_foreach_schedule_node_top_down(
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__isl_keep isl_schedule *sched,
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isl_bool (*fn)(__isl_keep isl_schedule_node *node, void *user),
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void *user)
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{
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isl_schedule_node *node;
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isl_stat r;
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if (!sched)
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return isl_stat_error;
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node = isl_schedule_get_root(sched);
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r = isl_schedule_node_foreach_descendant_top_down(node, fn, user);
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isl_schedule_node_free(node);
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return r;
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}
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/* Traverse the node of "sched" in depth first postorder,
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* allowing the user to modify the visited node.
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* The traversal continues from the node returned by the callback function.
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* It is the responsibility of the user to ensure that this does not
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* lead to an infinite loop. It is safest to always return a pointer
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* to the same position (same ancestors and child positions) as the input node.
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*/
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__isl_give isl_schedule *isl_schedule_map_schedule_node_bottom_up(
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__isl_take isl_schedule *schedule,
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__isl_give isl_schedule_node *(*fn)(
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__isl_take isl_schedule_node *node, void *user), void *user)
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{
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isl_schedule_node *node;
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node = isl_schedule_get_root(schedule);
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isl_schedule_free(schedule);
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node = isl_schedule_node_map_descendant_bottom_up(node, fn, user);
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schedule = isl_schedule_node_get_schedule(node);
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isl_schedule_node_free(node);
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return schedule;
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}
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/* Wrapper around isl_schedule_node_reset_user for use as
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* an isl_schedule_map_schedule_node_bottom_up callback.
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*/
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static __isl_give isl_schedule_node *reset_user(
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__isl_take isl_schedule_node *node, void *user)
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{
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return isl_schedule_node_reset_user(node);
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}
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/* Reset the user pointer on all identifiers of parameters and tuples
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* in the schedule "schedule".
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*/
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__isl_give isl_schedule *isl_schedule_reset_user(
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__isl_take isl_schedule *schedule)
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{
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return isl_schedule_map_schedule_node_bottom_up(schedule, &reset_user,
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NULL);
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}
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/* Wrapper around isl_schedule_node_align_params for use as
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* an isl_schedule_map_schedule_node_bottom_up callback.
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*/
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static __isl_give isl_schedule_node *align_params(
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__isl_take isl_schedule_node *node, void *user)
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{
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isl_space *space = user;
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return isl_schedule_node_align_params(node, isl_space_copy(space));
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}
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/* Align the parameters of all nodes in schedule "schedule"
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* to those of "space".
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*/
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__isl_give isl_schedule *isl_schedule_align_params(
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__isl_take isl_schedule *schedule, __isl_take isl_space *space)
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{
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schedule = isl_schedule_map_schedule_node_bottom_up(schedule,
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&align_params, space);
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isl_space_free(space);
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return schedule;
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}
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/* Wrapper around isl_schedule_node_pullback_union_pw_multi_aff for use as
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* an isl_schedule_map_schedule_node_bottom_up callback.
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*/
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static __isl_give isl_schedule_node *pullback_upma(
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__isl_take isl_schedule_node *node, void *user)
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{
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isl_union_pw_multi_aff *upma = user;
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return isl_schedule_node_pullback_union_pw_multi_aff(node,
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isl_union_pw_multi_aff_copy(upma));
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}
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/* Compute the pullback of "schedule" by the function represented by "upma".
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* In other words, plug in "upma" in the iteration domains of "schedule".
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*
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* The schedule tree is not allowed to contain any expansion nodes.
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*/
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__isl_give isl_schedule *isl_schedule_pullback_union_pw_multi_aff(
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__isl_take isl_schedule *schedule,
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__isl_take isl_union_pw_multi_aff *upma)
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{
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schedule = isl_schedule_map_schedule_node_bottom_up(schedule,
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&pullback_upma, upma);
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isl_union_pw_multi_aff_free(upma);
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return schedule;
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}
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/* Expand the schedule "schedule" by extending all leaves
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* with an expansion node with as subtree the tree of "expansion".
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* The expansion of the expansion node is determined by "contraction"
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* and the domain of "expansion". That is, the domain of "expansion"
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* is contracted according to "contraction".
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*
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* Call isl_schedule_node_expand after extracting the required
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* information from "expansion".
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*/
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__isl_give isl_schedule *isl_schedule_expand(__isl_take isl_schedule *schedule,
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__isl_take isl_union_pw_multi_aff *contraction,
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__isl_take isl_schedule *expansion)
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{
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isl_union_set *domain;
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isl_schedule_node *node;
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isl_schedule_tree *tree;
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domain = isl_schedule_get_domain(expansion);
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node = isl_schedule_get_root(expansion);
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node = isl_schedule_node_child(node, 0);
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tree = isl_schedule_node_get_tree(node);
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isl_schedule_node_free(node);
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isl_schedule_free(expansion);
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node = isl_schedule_get_root(schedule);
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isl_schedule_free(schedule);
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node = isl_schedule_node_expand(node, contraction, domain, tree);
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schedule = isl_schedule_node_get_schedule(node);
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isl_schedule_node_free(node);
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return schedule;
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}
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/* Intersect the domain of the schedule "schedule" with "domain".
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* The root of "schedule" is required to be a domain node.
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*/
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__isl_give isl_schedule *isl_schedule_intersect_domain(
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__isl_take isl_schedule *schedule, __isl_take isl_union_set *domain)
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{
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enum isl_schedule_node_type root_type;
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isl_schedule_node *node;
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if (!schedule || !domain)
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goto error;
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root_type = isl_schedule_tree_get_type(schedule->root);
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if (root_type != isl_schedule_node_domain)
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isl_die(isl_schedule_get_ctx(schedule), isl_error_invalid,
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"root node must be a domain node", goto error);
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node = isl_schedule_get_root(schedule);
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isl_schedule_free(schedule);
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node = isl_schedule_node_domain_intersect_domain(node, domain);
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schedule = isl_schedule_node_get_schedule(node);
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isl_schedule_node_free(node);
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return schedule;
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error:
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isl_schedule_free(schedule);
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isl_union_set_free(domain);
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return NULL;
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}
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/* Replace the domain of the schedule "schedule" with the gist
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* of the original domain with respect to the parameter domain "context".
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*/
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__isl_give isl_schedule *isl_schedule_gist_domain_params(
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__isl_take isl_schedule *schedule, __isl_take isl_set *context)
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{
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enum isl_schedule_node_type root_type;
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isl_schedule_node *node;
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if (!schedule || !context)
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goto error;
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root_type = isl_schedule_tree_get_type(schedule->root);
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if (root_type != isl_schedule_node_domain)
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isl_die(isl_schedule_get_ctx(schedule), isl_error_invalid,
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"root node must be a domain node", goto error);
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node = isl_schedule_get_root(schedule);
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isl_schedule_free(schedule);
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node = isl_schedule_node_domain_gist_params(node, context);
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schedule = isl_schedule_node_get_schedule(node);
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isl_schedule_node_free(node);
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return schedule;
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error:
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isl_schedule_free(schedule);
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isl_set_free(context);
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return NULL;
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}
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/* Return an isl_union_map representation of the schedule. In particular,
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* return an isl_union_map corresponding to the subtree schedule of the child
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* of the root domain node. That is, we do not intersect the domain
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* of the returned isl_union_map with the domain constraints.
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*/
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__isl_give isl_union_map *isl_schedule_get_map(__isl_keep isl_schedule *sched)
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{
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enum isl_schedule_node_type type;
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isl_schedule_node *node;
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isl_union_map *umap;
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if (!sched)
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return NULL;
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type = isl_schedule_tree_get_type(sched->root);
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if (type != isl_schedule_node_domain)
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isl_die(isl_schedule_get_ctx(sched), isl_error_internal,
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"root node not a domain node", return NULL);
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node = isl_schedule_get_root(sched);
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node = isl_schedule_node_child(node, 0);
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umap = isl_schedule_node_get_subtree_schedule_union_map(node);
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isl_schedule_node_free(node);
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return umap;
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}
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/* Insert a band node with partial schedule "partial" between the domain
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* root node of "schedule" and its single child.
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* Return a pointer to the updated schedule.
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*
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* If any of the nodes in the tree depend on the set of outer band nodes
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* then we refuse to insert the band node.
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*/
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__isl_give isl_schedule *isl_schedule_insert_partial_schedule(
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__isl_take isl_schedule *schedule,
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__isl_take isl_multi_union_pw_aff *partial)
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{
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isl_schedule_node *node;
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int anchored;
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node = isl_schedule_get_root(schedule);
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isl_schedule_free(schedule);
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if (!node)
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goto error;
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if (isl_schedule_node_get_type(node) != isl_schedule_node_domain)
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isl_die(isl_schedule_node_get_ctx(node), isl_error_internal,
|
|
"root node not a domain node", goto error);
|
|
|
|
node = isl_schedule_node_child(node, 0);
|
|
anchored = isl_schedule_node_is_subtree_anchored(node);
|
|
if (anchored < 0)
|
|
goto error;
|
|
if (anchored)
|
|
isl_die(isl_schedule_node_get_ctx(node), isl_error_invalid,
|
|
"cannot insert band node in anchored subtree",
|
|
goto error);
|
|
node = isl_schedule_node_insert_partial_schedule(node, partial);
|
|
|
|
schedule = isl_schedule_node_get_schedule(node);
|
|
isl_schedule_node_free(node);
|
|
|
|
return schedule;
|
|
error:
|
|
isl_schedule_node_free(node);
|
|
isl_multi_union_pw_aff_free(partial);
|
|
return NULL;
|
|
}
|
|
|
|
/* Insert a context node with constraints "context" between the domain
|
|
* root node of "schedule" and its single child.
|
|
* Return a pointer to the updated schedule.
|
|
*/
|
|
__isl_give isl_schedule *isl_schedule_insert_context(
|
|
__isl_take isl_schedule *schedule, __isl_take isl_set *context)
|
|
{
|
|
isl_schedule_node *node;
|
|
|
|
node = isl_schedule_get_root(schedule);
|
|
isl_schedule_free(schedule);
|
|
node = isl_schedule_node_child(node, 0);
|
|
node = isl_schedule_node_insert_context(node, context);
|
|
schedule = isl_schedule_node_get_schedule(node);
|
|
isl_schedule_node_free(node);
|
|
|
|
return schedule;
|
|
}
|
|
|
|
/* Insert a guard node with constraints "guard" between the domain
|
|
* root node of "schedule" and its single child.
|
|
* Return a pointer to the updated schedule.
|
|
*/
|
|
__isl_give isl_schedule *isl_schedule_insert_guard(
|
|
__isl_take isl_schedule *schedule, __isl_take isl_set *guard)
|
|
{
|
|
isl_schedule_node *node;
|
|
|
|
node = isl_schedule_get_root(schedule);
|
|
isl_schedule_free(schedule);
|
|
node = isl_schedule_node_child(node, 0);
|
|
node = isl_schedule_node_insert_guard(node, guard);
|
|
schedule = isl_schedule_node_get_schedule(node);
|
|
isl_schedule_node_free(node);
|
|
|
|
return schedule;
|
|
}
|
|
|
|
/* Return a tree with as top-level node a filter corresponding to "filter" and
|
|
* as child, the (single) child of "tree".
|
|
* However, if this single child is of type "type", then the filter is inserted
|
|
* in the children of this single child instead.
|
|
*/
|
|
static __isl_give isl_schedule_tree *insert_filter_in_child_of_type(
|
|
__isl_take isl_schedule_tree *tree, __isl_take isl_union_set *filter,
|
|
enum isl_schedule_node_type type)
|
|
{
|
|
if (!isl_schedule_tree_has_children(tree)) {
|
|
isl_schedule_tree_free(tree);
|
|
return isl_schedule_tree_from_filter(filter);
|
|
} else {
|
|
tree = isl_schedule_tree_child(tree, 0);
|
|
}
|
|
|
|
if (isl_schedule_tree_get_type(tree) == type)
|
|
tree = isl_schedule_tree_children_insert_filter(tree, filter);
|
|
else
|
|
tree = isl_schedule_tree_insert_filter(tree, filter);
|
|
|
|
return tree;
|
|
}
|
|
|
|
/* Construct a schedule that combines the schedules "schedule1" and "schedule2"
|
|
* with a top-level node (underneath the domain node) of type "type",
|
|
* either isl_schedule_node_sequence or isl_schedule_node_set.
|
|
* The domains of the two schedules are assumed to be disjoint.
|
|
*
|
|
* The new schedule has as domain the union of the domains of the two
|
|
* schedules. The child of the domain node is a node of type "type"
|
|
* with two filters corresponding to the domains of the input schedules.
|
|
* If one (or both) of the top-level nodes of the two schedules is itself
|
|
* of type "type", then the filter is pushed into the children of that
|
|
* node and the sequence or set is flattened.
|
|
*/
|
|
__isl_give isl_schedule *isl_schedule_pair(enum isl_schedule_node_type type,
|
|
__isl_take isl_schedule *schedule1, __isl_take isl_schedule *schedule2)
|
|
{
|
|
int disjoint;
|
|
isl_ctx *ctx;
|
|
enum isl_schedule_node_type root_type;
|
|
isl_schedule_tree *tree1, *tree2;
|
|
isl_union_set *filter1, *filter2, *domain;
|
|
|
|
if (!schedule1 || !schedule2)
|
|
goto error;
|
|
|
|
root_type = isl_schedule_tree_get_type(schedule1->root);
|
|
if (root_type != isl_schedule_node_domain)
|
|
isl_die(isl_schedule_get_ctx(schedule1), isl_error_internal,
|
|
"root node not a domain node", goto error);
|
|
root_type = isl_schedule_tree_get_type(schedule2->root);
|
|
if (root_type != isl_schedule_node_domain)
|
|
isl_die(isl_schedule_get_ctx(schedule1), isl_error_internal,
|
|
"root node not a domain node", goto error);
|
|
|
|
ctx = isl_schedule_get_ctx(schedule1);
|
|
tree1 = isl_schedule_tree_copy(schedule1->root);
|
|
filter1 = isl_schedule_tree_domain_get_domain(tree1);
|
|
tree2 = isl_schedule_tree_copy(schedule2->root);
|
|
filter2 = isl_schedule_tree_domain_get_domain(tree2);
|
|
|
|
isl_schedule_free(schedule1);
|
|
isl_schedule_free(schedule2);
|
|
|
|
disjoint = isl_union_set_is_disjoint(filter1, filter2);
|
|
if (disjoint < 0)
|
|
filter1 = isl_union_set_free(filter1);
|
|
if (!disjoint)
|
|
isl_die(ctx, isl_error_invalid,
|
|
"schedule domains not disjoint",
|
|
filter1 = isl_union_set_free(filter1));
|
|
|
|
domain = isl_union_set_union(isl_union_set_copy(filter1),
|
|
isl_union_set_copy(filter2));
|
|
filter1 = isl_union_set_gist(filter1, isl_union_set_copy(domain));
|
|
filter2 = isl_union_set_gist(filter2, isl_union_set_copy(domain));
|
|
|
|
tree1 = insert_filter_in_child_of_type(tree1, filter1, type);
|
|
tree2 = insert_filter_in_child_of_type(tree2, filter2, type);
|
|
|
|
tree1 = isl_schedule_tree_from_pair(type, tree1, tree2);
|
|
tree1 = isl_schedule_tree_insert_domain(tree1, domain);
|
|
|
|
return isl_schedule_from_schedule_tree(ctx, tree1);
|
|
error:
|
|
isl_schedule_free(schedule1);
|
|
isl_schedule_free(schedule2);
|
|
return NULL;
|
|
}
|
|
|
|
/* Construct a schedule that combines the schedules "schedule1" and "schedule2"
|
|
* through a sequence node.
|
|
* The domains of the input schedules are assumed to be disjoint.
|
|
*/
|
|
__isl_give isl_schedule *isl_schedule_sequence(
|
|
__isl_take isl_schedule *schedule1, __isl_take isl_schedule *schedule2)
|
|
{
|
|
return isl_schedule_pair(isl_schedule_node_sequence,
|
|
schedule1, schedule2);
|
|
}
|
|
|
|
/* Construct a schedule that combines the schedules "schedule1" and "schedule2"
|
|
* through a set node.
|
|
* The domains of the input schedules are assumed to be disjoint.
|
|
*/
|
|
__isl_give isl_schedule *isl_schedule_set(
|
|
__isl_take isl_schedule *schedule1, __isl_take isl_schedule *schedule2)
|
|
{
|
|
return isl_schedule_pair(isl_schedule_node_set, schedule1, schedule2);
|
|
}
|
|
|
|
/* Print "schedule" to "p".
|
|
*/
|
|
__isl_give isl_printer *isl_printer_print_schedule(__isl_take isl_printer *p,
|
|
__isl_keep isl_schedule *schedule)
|
|
{
|
|
if (!schedule)
|
|
return isl_printer_free(p);
|
|
|
|
return isl_printer_print_schedule_tree(p, schedule->root);
|
|
}
|
|
|
|
#undef BASE
|
|
#define BASE schedule
|
|
#include <print_templ_yaml.c>
|