Blender  V2.93
transform_convert_object_texspace.c
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1 /*
2  * This program is free software; you can redistribute it and/or
3  * modify it under the terms of the GNU General Public License
4  * as published by the Free Software Foundation; either version 2
5  * of the License, or (at your option) any later version.
6  *
7  * This program is distributed in the hope that it will be useful,
8  * but WITHOUT ANY WARRANTY; without even the implied warranty of
9  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10  * GNU General Public License for more details.
11  *
12  * You should have received a copy of the GNU General Public License
13  * along with this program; if not, write to the Free Software Foundation,
14  * Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
15  *
16  * The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
17  * All rights reserved.
18  */
19 
24 #include "MEM_guardedalloc.h"
25 
26 #include "BLI_math.h"
27 
28 #include "BKE_animsys.h"
29 #include "BKE_context.h"
30 #include "BKE_object.h"
31 #include "BKE_report.h"
32 
33 #include "DNA_mesh_types.h"
34 
35 #include "transform.h"
36 #include "transform_snap.h"
37 
38 /* Own include. */
39 #include "transform_convert.h"
40 
41 /* -------------------------------------------------------------------- */
49 {
50  ViewLayer *view_layer = t->view_layer;
51  TransData *td;
52  Object *ob;
53  ID *id;
54  short *texflag;
55 
56  ob = OBACT(view_layer);
57 
58  if (ob == NULL) { /* Shouldn't logically happen, but still. */
59  return;
60  }
61 
62  id = ob->data;
63  if (id == NULL || !ELEM(GS(id->name), ID_ME, ID_CU, ID_MB)) {
64  BKE_report(t->reports, RPT_ERROR, "Unsupported object type for text-space transform");
65  return;
66  }
67 
69  BKE_report(t->reports, RPT_ERROR, "Linked data can't text-space transform");
70  return;
71  }
72 
73  {
74  BLI_assert(t->data_container_len == 1);
75  TransDataContainer *tc = t->data_container;
76  tc->data_len = 1;
77  td = tc->data = MEM_callocN(sizeof(TransData), "TransTexspace");
78  td->ext = tc->data_ext = MEM_callocN(sizeof(TransDataExtension), "TransTexspace");
79  }
80 
81  td->flag = TD_SELECTED;
82  copy_v3_v3(td->center, ob->obmat[3]);
83  td->ob = ob;
84 
85  copy_m3_m4(td->mtx, ob->obmat);
86  copy_m3_m4(td->axismtx, ob->obmat);
87  normalize_m3(td->axismtx);
89 
90  if (BKE_object_obdata_texspace_get(ob, &texflag, &td->loc, &td->ext->size)) {
91  ob->dtx |= OB_TEXSPACE;
92  *texflag &= ~ME_AUTOSPACE;
93  }
94 
95  copy_v3_v3(td->iloc, td->loc);
96  copy_v3_v3(td->ext->isize, td->ext->size);
97 }
98 
101 /* -------------------------------------------------------------------- */
105 /* helper for recalcData() - for object transforms, typically in the 3D view */
107 {
108 
109  if (t->state != TRANS_CANCEL) {
110  applyProject(t);
111  }
112 
114  TransData *td = tc->data;
115 
116  for (int i = 0; i < tc->data_len; i++, td++) {
117  if (td->flag & TD_SKIP) {
118  continue;
119  }
121  }
122  }
123 }
124 
General operations, lookup, etc. for blender objects.
bool BKE_object_obdata_is_libdata(const struct Object *ob)
bool BKE_object_obdata_texspace_get(struct Object *ob, short **r_texflag, float **r_loc, float **r_size)
Definition: object.c:4413
void BKE_report(ReportList *reports, ReportType type, const char *message)
Definition: report.c:104
#define BLI_assert(a)
Definition: BLI_assert.h:58
void copy_m3_m4(float m1[3][3], const float m2[4][4])
Definition: math_matrix.c:105
#define PSEUDOINVERSE_EPSILON
void normalize_m3(float R[3][3]) ATTR_NONNULL()
Definition: math_matrix.c:1919
void pseudoinverse_m3_m3(float Ainv[3][3], const float A[3][3], float epsilon)
Definition: math_matrix.c:3228
MINLINE void copy_v3_v3(float r[3], const float a[3])
#define ELEM(...)
void DEG_id_tag_update(struct ID *id, int flag)
@ ID_RECALC_GEOMETRY
Definition: DNA_ID.h:611
@ ID_ME
Definition: DNA_ID_enums.h:60
@ ID_MB
Definition: DNA_ID_enums.h:62
@ ID_CU
Definition: DNA_ID_enums.h:61
@ ME_AUTOSPACE
@ OB_TEXSPACE
#define OBACT(_view_layer)
_GL_VOID GLfloat value _GL_VOID_RET _GL_VOID const GLuint GLboolean *residences _GL_BOOL_RET _GL_VOID GLsizei GLfloat GLfloat GLfloat GLfloat const GLubyte *bitmap _GL_VOID_RET _GL_VOID GLenum const void *lists _GL_VOID_RET _GL_VOID const GLdouble *equation _GL_VOID_RET _GL_VOID GLdouble GLdouble blue _GL_VOID_RET _GL_VOID GLfloat GLfloat blue _GL_VOID_RET _GL_VOID GLint GLint blue _GL_VOID_RET _GL_VOID GLshort GLshort blue _GL_VOID_RET _GL_VOID GLubyte GLubyte blue _GL_VOID_RET _GL_VOID GLuint GLuint blue _GL_VOID_RET _GL_VOID GLushort GLushort blue _GL_VOID_RET _GL_VOID GLbyte GLbyte GLbyte alpha _GL_VOID_RET _GL_VOID GLdouble GLdouble GLdouble alpha _GL_VOID_RET _GL_VOID GLfloat GLfloat GLfloat alpha _GL_VOID_RET _GL_VOID GLint GLint GLint alpha _GL_VOID_RET _GL_VOID GLshort GLshort GLshort alpha _GL_VOID_RET _GL_VOID GLubyte GLubyte GLubyte alpha _GL_VOID_RET _GL_VOID GLuint GLuint GLuint alpha _GL_VOID_RET _GL_VOID GLushort GLushort GLushort alpha _GL_VOID_RET _GL_VOID GLenum mode _GL_VOID_RET _GL_VOID GLint GLsizei GLsizei GLenum type _GL_VOID_RET _GL_VOID GLsizei GLenum GLenum const void *pixels _GL_VOID_RET _GL_VOID const void *pointer _GL_VOID_RET _GL_VOID GLdouble v _GL_VOID_RET _GL_VOID GLfloat v _GL_VOID_RET _GL_VOID GLint GLint i2 _GL_VOID_RET _GL_VOID GLint j _GL_VOID_RET _GL_VOID GLfloat param _GL_VOID_RET _GL_VOID GLint param _GL_VOID_RET _GL_VOID GLdouble GLdouble GLdouble GLdouble GLdouble zFar _GL_VOID_RET _GL_UINT GLdouble *equation _GL_VOID_RET _GL_VOID GLenum GLint *params _GL_VOID_RET _GL_VOID GLenum GLfloat *v _GL_VOID_RET _GL_VOID GLenum GLfloat *params _GL_VOID_RET _GL_VOID GLfloat *values _GL_VOID_RET _GL_VOID GLushort *values _GL_VOID_RET _GL_VOID GLenum GLfloat *params _GL_VOID_RET _GL_VOID GLenum GLdouble *params _GL_VOID_RET _GL_VOID GLenum GLint *params _GL_VOID_RET _GL_VOID GLsizei const void *pointer _GL_VOID_RET _GL_VOID GLsizei const void *pointer _GL_VOID_RET _GL_BOOL GLfloat param _GL_VOID_RET _GL_VOID GLint param _GL_VOID_RET _GL_VOID GLenum GLfloat param _GL_VOID_RET _GL_VOID GLenum GLint param _GL_VOID_RET _GL_VOID GLushort pattern _GL_VOID_RET _GL_VOID GLdouble GLdouble GLint GLint const GLdouble *points _GL_VOID_RET _GL_VOID GLdouble GLdouble GLint GLint GLdouble GLdouble GLint GLint const GLdouble *points _GL_VOID_RET _GL_VOID GLdouble GLdouble u2 _GL_VOID_RET _GL_VOID GLdouble GLdouble GLint GLdouble GLdouble v2 _GL_VOID_RET _GL_VOID GLenum GLfloat param _GL_VOID_RET _GL_VOID GLenum GLint param _GL_VOID_RET _GL_VOID GLenum mode _GL_VOID_RET _GL_VOID GLdouble GLdouble nz _GL_VOID_RET _GL_VOID GLfloat GLfloat nz _GL_VOID_RET _GL_VOID GLint GLint nz _GL_VOID_RET _GL_VOID GLshort GLshort nz _GL_VOID_RET _GL_VOID GLsizei const void *pointer _GL_VOID_RET _GL_VOID GLsizei const GLfloat *values _GL_VOID_RET _GL_VOID GLsizei const GLushort *values _GL_VOID_RET _GL_VOID GLint param _GL_VOID_RET _GL_VOID const GLuint const GLclampf *priorities _GL_VOID_RET _GL_VOID GLdouble y _GL_VOID_RET _GL_VOID GLfloat y _GL_VOID_RET _GL_VOID GLint y _GL_VOID_RET _GL_VOID GLshort y _GL_VOID_RET _GL_VOID GLdouble GLdouble z _GL_VOID_RET _GL_VOID GLfloat GLfloat z _GL_VOID_RET _GL_VOID GLint GLint z _GL_VOID_RET _GL_VOID GLshort GLshort z _GL_VOID_RET _GL_VOID GLdouble GLdouble GLdouble w _GL_VOID_RET _GL_VOID GLfloat GLfloat GLfloat w _GL_VOID_RET _GL_VOID GLint GLint GLint w _GL_VOID_RET _GL_VOID GLshort GLshort GLshort w _GL_VOID_RET _GL_VOID GLdouble GLdouble GLdouble y2 _GL_VOID_RET _GL_VOID GLfloat GLfloat GLfloat y2 _GL_VOID_RET _GL_VOID GLint GLint GLint y2 _GL_VOID_RET _GL_VOID GLshort GLshort GLshort y2 _GL_VOID_RET _GL_VOID GLdouble GLdouble GLdouble z _GL_VOID_RET _GL_VOID GLdouble GLdouble z _GL_VOID_RET _GL_VOID GLuint *buffer _GL_VOID_RET _GL_VOID GLdouble t _GL_VOID_RET _GL_VOID GLfloat t _GL_VOID_RET _GL_VOID GLint t _GL_VOID_RET _GL_VOID GLshort t _GL_VOID_RET _GL_VOID GLdouble t
Read Guarded memory(de)allocation.
#define GS(x)
Definition: iris.c:241
void *(* MEM_callocN)(size_t len, const char *str)
Definition: mallocn.c:45
Definition: DNA_ID.h:273
char name[66]
Definition: DNA_ID.h:283
float obmat[4][4]
void * data
TransData * data
Definition: transform.h:448
TransDataExtension * data_ext
Definition: transform.h:450
float smtx[3][3]
float axismtx[3][3]
float mtx[3][3]
TransDataExtension * ext
struct Object * ob
@ TRANS_CANCEL
Definition: transform.h:193
#define FOREACH_TRANS_DATA_CONTAINER(t, th)
Definition: transform.h:813
conversion and adaptation of different datablocks to a common struct.
void recalcData_texspace(TransInfo *t)
void createTransTexspace(TransInfo *t)
@ TD_SELECTED
@ TD_SKIP
void applyProject(TransInfo *t)