224 lines
9.2 KiB
C
224 lines
9.2 KiB
C
/*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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* The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
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* All rights reserved.
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*/
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#ifndef __BKE_CONSTRAINT_H__
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#define __BKE_CONSTRAINT_H__
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/** \file
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* \ingroup bke
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*/
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struct Depsgraph;
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struct ID;
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struct ListBase;
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struct Object;
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struct Scene;
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struct bConstraint;
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struct bConstraintTarget;
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struct bPoseChannel;
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/* ---------------------------------------------------------------------------- */
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#ifdef __cplusplus
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extern "C" {
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#endif
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/* special struct for use in constraint evaluation */
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typedef struct bConstraintOb {
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/** to get evaluated armature. */
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struct Depsgraph *depsgraph;
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/** for system time, part of deglobalization, code nicer later with local time (ton) */
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struct Scene *scene;
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/** if pchan, then armature that it comes from, otherwise constraint owner */
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struct Object *ob;
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/** pose channel that owns the constraints being evaluated */
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struct bPoseChannel *pchan;
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/** matrix where constraints are accumulated + solved */
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float matrix[4][4];
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/** original matrix (before constraint solving) */
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float startmat[4][4];
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/** type of owner */
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short type;
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/** rotation order for constraint owner (as defined in eEulerRotationOrders in BLI_math.h) */
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short rotOrder;
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} bConstraintOb;
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/* ---------------------------------------------------------------------------- */
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/* Callback format for performing operations on ID-pointers for Constraints */
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typedef void (*ConstraintIDFunc)(struct bConstraint *con,
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struct ID **idpoin,
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bool is_reference,
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void *userdata);
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/* ....... */
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/**
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* Constraint Type-Info (shorthand in code = cti):
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* This struct provides function pointers for runtime, so that functions can be
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* written more generally (with fewer/no special exceptions for various constraints).
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*
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* Callers of these functions must check that they actually point to something useful,
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* as some constraints don't define some of these.
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*
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* Warning:
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* it is not too advisable to reorder order of members of this struct,
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* as you'll have to edit quite a few #NUM_CONSTRAINT_TYPES of these
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* structs.
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*/
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typedef struct bConstraintTypeInfo {
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/* admin/ident */
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/** CONSTRAINT_TYPE_### */
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short type;
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/** size in bytes of the struct */
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short size;
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/** name of constraint in interface */
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char name[32];
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/** name of struct for SDNA */
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char structName[32];
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/* data management function pointers - special handling */
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/** free any data that is allocated separately (optional) */
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void (*free_data)(struct bConstraint *con);
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/** run the provided callback function on all the ID-blocks linked to the constraint */
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void (*id_looper)(struct bConstraint *con, ConstraintIDFunc func, void *userdata);
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/** copy any special data that is allocated separately (optional) */
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void (*copy_data)(struct bConstraint *con, struct bConstraint *src);
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/**
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* Set settings for data that will be used for #bConstraint.data
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* (memory already allocated using #MEM_callocN).
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*/
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void (*new_data)(void *cdata);
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/* target handling function pointers */
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/**
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* For multi-target constraints: return that list;
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* otherwise make a temporary list (returns number of targets).
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*/
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int (*get_constraint_targets)(struct bConstraint *con, struct ListBase *list);
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/**
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* For single-target constraints only:
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* flush data back to source data, and the free memory used.
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*/
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void (*flush_constraint_targets)(struct bConstraint *con, struct ListBase *list, bool no_copy);
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/* evaluation */
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/** set the ct->matrix for the given constraint target (at the given ctime) */
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void (*get_target_matrix)(struct Depsgraph *depsgraph,
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struct bConstraint *con,
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struct bConstraintOb *cob,
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struct bConstraintTarget *ct,
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float ctime);
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/** evaluate the constraint for the given time */
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void (*evaluate_constraint)(struct bConstraint *con,
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struct bConstraintOb *cob,
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struct ListBase *targets);
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} bConstraintTypeInfo;
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/* Function Prototypes for bConstraintTypeInfo's */
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const bConstraintTypeInfo *BKE_constraint_typeinfo_get(struct bConstraint *con);
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const bConstraintTypeInfo *BKE_constraint_typeinfo_from_type(int type);
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/* ---------------------------------------------------------------------------- */
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/* Constraint function prototypes */
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void BKE_constraint_unique_name(struct bConstraint *con, struct ListBase *list);
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struct bConstraint *BKE_constraint_duplicate_ex(struct bConstraint *src,
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const int flag,
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const bool do_extern);
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void BKE_constraints_free(struct ListBase *list);
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void BKE_constraints_free_ex(struct ListBase *list, bool do_id_user);
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void BKE_constraints_copy(struct ListBase *dst, const struct ListBase *src, bool do_extern);
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void BKE_constraints_copy_ex(struct ListBase *dst,
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const struct ListBase *src,
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const int flag,
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bool do_extern);
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void BKE_constraints_id_loop(struct ListBase *list, ConstraintIDFunc func, void *userdata);
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void BKE_constraint_free_data(struct bConstraint *con);
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void BKE_constraint_free_data_ex(struct bConstraint *con, bool do_id_user);
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bool BKE_constraint_target_uses_bbone(struct bConstraint *con, struct bConstraintTarget *ct);
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/* Constraint API function prototypes */
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struct bConstraint *BKE_constraints_active_get(struct ListBase *list);
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void BKE_constraints_active_set(ListBase *list, struct bConstraint *con);
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struct bConstraint *BKE_constraints_find_name(struct ListBase *list, const char *name);
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struct bConstraint *BKE_constraint_find_from_target(struct Object *ob,
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struct bConstraintTarget *tgt,
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struct bPoseChannel **r_pchan);
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struct bConstraint *BKE_constraint_add_for_object(struct Object *ob, const char *name, short type);
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struct bConstraint *BKE_constraint_add_for_pose(struct Object *ob,
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struct bPoseChannel *pchan,
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const char *name,
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short type);
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bool BKE_constraint_remove_ex(ListBase *list,
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struct Object *ob,
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struct bConstraint *con,
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bool clear_dep);
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bool BKE_constraint_remove(ListBase *list, struct bConstraint *con);
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/* Constraints + Proxies function prototypes */
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void BKE_constraints_proxylocal_extract(struct ListBase *dst, struct ListBase *src);
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bool BKE_constraints_proxylocked_owner(struct Object *ob, struct bPoseChannel *pchan);
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/* Constraint Evaluation function prototypes */
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struct bConstraintOb *BKE_constraints_make_evalob(struct Depsgraph *depsgraph,
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struct Scene *scene,
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struct Object *ob,
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void *subdata,
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short datatype);
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void BKE_constraints_clear_evalob(struct bConstraintOb *cob);
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void BKE_constraint_mat_convertspace(struct Object *ob,
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struct bPoseChannel *pchan,
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float mat[4][4],
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short from,
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short to,
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const bool keep_scale);
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void BKE_constraint_target_matrix_get(struct Depsgraph *depsgraph,
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struct Scene *scene,
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struct bConstraint *con,
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int n,
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short ownertype,
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void *ownerdata,
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float mat[4][4],
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float ctime);
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void BKE_constraint_targets_for_solving_get(struct Depsgraph *depsgraph,
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struct bConstraint *con,
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struct bConstraintOb *ob,
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struct ListBase *targets,
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float ctime);
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void BKE_constraints_solve(struct Depsgraph *depsgraph,
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struct ListBase *conlist,
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struct bConstraintOb *cob,
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float ctime);
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#ifdef __cplusplus
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}
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#endif
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#endif
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