df27017ba3
Moved from `MetaShapedTexture` - it will be useful in several other places as well. Part-of: <https://gitlab.gnome.org/GNOME/mutter/-/merge_requests/344>
205 lines
6.4 KiB
C
205 lines
6.4 KiB
C
/*
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* Copyright (C) 2018 Robert Mader
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*
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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 as
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* published by the Free Software Foundation; either version 2 of the
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* 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, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* 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, see <http://www.gnu.org/licenses/>.
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*/
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#include "config.h"
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#include "backends/meta-monitor-transform.h"
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MetaMonitorTransform
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meta_monitor_transform_from_orientation (MetaOrientation orientation)
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{
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switch (orientation)
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{
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case META_ORIENTATION_BOTTOM_UP:
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return META_MONITOR_TRANSFORM_180;
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case META_ORIENTATION_LEFT_UP:
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return META_MONITOR_TRANSFORM_90;
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case META_ORIENTATION_RIGHT_UP:
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return META_MONITOR_TRANSFORM_270;
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case META_ORIENTATION_UNDEFINED:
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case META_ORIENTATION_NORMAL:
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default:
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return META_MONITOR_TRANSFORM_NORMAL;
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}
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}
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MetaMonitorTransform
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meta_monitor_transform_invert (MetaMonitorTransform transform)
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{
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switch (transform)
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{
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case META_MONITOR_TRANSFORM_90:
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return META_MONITOR_TRANSFORM_270;
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case META_MONITOR_TRANSFORM_270:
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return META_MONITOR_TRANSFORM_90;
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case META_MONITOR_TRANSFORM_NORMAL:
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case META_MONITOR_TRANSFORM_180:
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case META_MONITOR_TRANSFORM_FLIPPED:
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case META_MONITOR_TRANSFORM_FLIPPED_90:
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case META_MONITOR_TRANSFORM_FLIPPED_180:
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case META_MONITOR_TRANSFORM_FLIPPED_270:
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return transform;
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}
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g_assert_not_reached ();
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return 0;
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}
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static MetaMonitorTransform
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meta_monitor_transform_flip (MetaMonitorTransform transform)
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{
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switch (transform)
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{
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case META_MONITOR_TRANSFORM_NORMAL:
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return META_MONITOR_TRANSFORM_FLIPPED;
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case META_MONITOR_TRANSFORM_90:
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return META_MONITOR_TRANSFORM_FLIPPED_270;
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case META_MONITOR_TRANSFORM_180:
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return META_MONITOR_TRANSFORM_FLIPPED_180;
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case META_MONITOR_TRANSFORM_270:
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return META_MONITOR_TRANSFORM_FLIPPED_90;
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case META_MONITOR_TRANSFORM_FLIPPED:
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return META_MONITOR_TRANSFORM_NORMAL;
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case META_MONITOR_TRANSFORM_FLIPPED_90:
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return META_MONITOR_TRANSFORM_270;
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case META_MONITOR_TRANSFORM_FLIPPED_180:
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return META_MONITOR_TRANSFORM_180;
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case META_MONITOR_TRANSFORM_FLIPPED_270:
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return META_MONITOR_TRANSFORM_90;
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}
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g_assert_not_reached ();
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return 0;
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}
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MetaMonitorTransform
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meta_monitor_transform_transform (MetaMonitorTransform transform,
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MetaMonitorTransform other)
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{
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MetaMonitorTransform new_transform;
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gboolean needs_flip = FALSE;
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if (meta_monitor_transform_is_flipped (other))
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new_transform = meta_monitor_transform_flip (transform);
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else
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new_transform = transform;
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if (meta_monitor_transform_is_flipped (new_transform))
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needs_flip = TRUE;
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new_transform += other;
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new_transform %= META_MONITOR_TRANSFORM_FLIPPED;
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if (needs_flip)
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new_transform += META_MONITOR_TRANSFORM_FLIPPED;
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return new_transform;
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}
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void
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meta_monitor_transform_transform_point (MetaMonitorTransform transform,
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int area_width,
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int area_height,
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int x,
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int y,
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int *out_x,
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int *out_y)
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{
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switch (transform)
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{
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case META_MONITOR_TRANSFORM_NORMAL:
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*out_x = x;
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*out_y = y;
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break;
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case META_MONITOR_TRANSFORM_90:
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*out_x = area_width - y;
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*out_y = x;
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break;
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case META_MONITOR_TRANSFORM_180:
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*out_x = area_width - x;
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*out_y = area_height - y;
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break;
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case META_MONITOR_TRANSFORM_270:
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*out_x = y,
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*out_y = area_height - x;
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break;
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case META_MONITOR_TRANSFORM_FLIPPED:
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*out_x = area_width - x;
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*out_y = y;
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break;
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case META_MONITOR_TRANSFORM_FLIPPED_90:
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*out_x = area_width - y;
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*out_y = area_height - x;
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break;
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case META_MONITOR_TRANSFORM_FLIPPED_180:
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*out_x = x;
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*out_y = area_height - y;
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break;
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case META_MONITOR_TRANSFORM_FLIPPED_270:
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*out_x = y;
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*out_y = x;
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break;
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}
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}
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void
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meta_monitor_transform_transform_matrix (MetaMonitorTransform transform,
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graphene_matrix_t *matrix)
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{
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graphene_euler_t euler;
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if (transform == META_MONITOR_TRANSFORM_NORMAL)
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return;
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graphene_matrix_translate (matrix,
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&GRAPHENE_POINT3D_INIT (-0.5, -0.5, 0.0));
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switch (transform)
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{
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case META_MONITOR_TRANSFORM_90:
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graphene_euler_init_with_order (&euler, 0.0, 0.0, 270.0,
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GRAPHENE_EULER_ORDER_SYXZ);
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break;
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case META_MONITOR_TRANSFORM_180:
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graphene_euler_init_with_order (&euler, 0.0, 0.0, 180.0,
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GRAPHENE_EULER_ORDER_SYXZ);
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break;
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case META_MONITOR_TRANSFORM_270:
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graphene_euler_init_with_order (&euler, 0.0, 0.0, 90.0,
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GRAPHENE_EULER_ORDER_SYXZ);
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break;
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case META_MONITOR_TRANSFORM_FLIPPED:
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graphene_euler_init_with_order (&euler, 0.0, 180.0, 0.0,
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GRAPHENE_EULER_ORDER_SYXZ);
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break;
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case META_MONITOR_TRANSFORM_FLIPPED_90:
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graphene_euler_init_with_order (&euler, 0.0, 180.0, 90.0,
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GRAPHENE_EULER_ORDER_SYXZ);
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break;
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case META_MONITOR_TRANSFORM_FLIPPED_180:
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graphene_euler_init_with_order (&euler, 0.0, 180.0, 180.0,
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GRAPHENE_EULER_ORDER_SYXZ);
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break;
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case META_MONITOR_TRANSFORM_FLIPPED_270:
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graphene_euler_init_with_order (&euler, 0.0, 180.0, 270.0,
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GRAPHENE_EULER_ORDER_SYXZ);
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break;
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case META_MONITOR_TRANSFORM_NORMAL:
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g_assert_not_reached ();
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}
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graphene_matrix_rotate_euler (matrix, &euler);
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graphene_matrix_translate (matrix,
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&GRAPHENE_POINT3D_INIT (0.5, 0.5, 0.0));
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}
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