Newer
Older
# ##### BEGIN GPL LICENSE BLOCK #####
#
# This program is free software; you can redistribute it and / or
# modify it under the terms of the GNU General Public License
# as published by the Free Software Foundation; either version 2
# of the License, or (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program; if not, write to the Free Software Foundation,
# Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
#
# ##### END GPL LICENSE BLOCK #####
bl_info = {
'name': 'Dimension',
'author': 'Spivak Vladimir (http://cwolf3d.korostyshev.net)',
'version': (4, 0, 0),
'blender': (2, 80, 0),
'location': 'View3D > Add > Curve',
'description': 'Adds Dimension',
'warning': '', # used for warning icon and text in addons panel
'doc_url': 'http://wiki.blender.org/index.php/Extensions:2.6/Py/Scripts/Curve/Dimension',
"tracker_url": "https://developer.blender.org/maniphest/task/edit/form/2/",
'category': 'Add Curve'}
##------------------------------------------------------------
#### import modules
import bpy
from bpy.props import *
from mathutils import *
from math import *
from bpy.app.handlers import persistent
# Add a TextCurve
def addText(string = '', loc = ((0, 0, 0)), textsize = 1, align = 'CENTER', offset_y = 0, font = ''):
tcu = bpy.data.curves.new(string + 'Data', 'FONT')
text = bpy.data.objects.new(string + 'Text', tcu)
tcu.body = string
cwolf3d@yandex.ru
committed
tcu.align_x = align
tcu.size = textsize
tcu.offset_y = offset_y
if font == '':
fnt = bpy.data.fonts[0]
else:
fnt = bpy.data.fonts.load(font)
tcu.font = fnt
text.location = loc
bpy.context.collection.objects.link(text)
return text
##------------------------------------------------------------
# Dimension: Linear-1
def Linear1(width = 2, length = 2, dsize = 1, depth = 0.1, center = False, arrow = 'Arrow1', arrowdepth = 0.1, arrowlength = 0.25):
newpoints = []
w = 1
if width < 0:
w = -1
l = 1
if length < 0:
l = -1
if center:
center1 = w * depth / 2
center2 = w * depth / 2
else:
center1 = 0
center2 = w * depth
if arrow == 'Arrow1' or arrow == 'Arrow2':
newpoints.append([-center1, 0, 0]) #1
newpoints.append([-center1, length, 0]) #2
newpoints.append([-center1, length + l * dsize, 0]) #3
newpoints.append([center2, length + l * dsize, 0]) #4
newpoints.append([center2, length + l * dsize / 2 + l * depth / 100, 0]) #5
newpoints.append([center2 + w * arrowlength, length + l * dsize / 2 + l * arrowdepth + l * depth / 2, 0]) #6
if arrow == 'Arrow1':
newpoints.append([center2 + w * arrowlength, length + l * dsize / 2 + l * depth / 2, 0]) #7
newpoints.append([width-center2-w * arrowlength, length + l * dsize / 2 + l * depth / 2, 0]) #8
else:
newpoints.append([center2 + w * arrowlength * 3 / 4, length + l * dsize / 2 + l * depth / 2, 0]) #7
newpoints.append([width-center2-w * arrowlength * 3 / 4, length + l * dsize / 2 + l * depth / 2, 0]) #8
newpoints.append([width-center2-w * arrowlength, length + l * dsize / 2 + l * arrowdepth + l * depth / 2, 0]) #9
newpoints.append([width-center2, length + l * dsize / 2 + l * depth / 100, 0]) #10
newpoints.append([width-center2, length + l * dsize, 0]) #11
newpoints.append([width + center1, length + l * dsize, 0]) #12
newpoints.append([width + center1, length, 0]) #13
newpoints.append([width + center1, 0, 0]) #14
newpoints.append([width-center2, 0, 0]) #15
newpoints.append([width-center2, length, 0]) #16
newpoints.append([width-center2, length + l * dsize / 2-l * depth / 100, 0]) #17
newpoints.append([width-center2-w * arrowlength, length + l * dsize / 2-l * arrowdepth-l * depth / 2, 0]) #18
if arrow == 'Arrow1':
newpoints.append([width-center2-w * arrowlength, length + l * dsize / 2-l * depth / 2, 0]) #19
newpoints.append([center2 + w * arrowlength, length + l * dsize / 2-l * depth / 2, 0]) #20
else:
newpoints.append([width-center2-w * arrowlength * 3 / 4, length + l * dsize / 2-l * depth / 2, 0]) #19
newpoints.append([center2 + w * arrowlength * 3 / 4, length + l * dsize / 2-l * depth / 2, 0]) #20
newpoints.append([center2 + w * arrowlength, length + l * dsize / 2-l * arrowdepth-l * depth / 2, 0]) #21
newpoints.append([center2, length + l * dsize / 2-l * depth / 100, 0]) #22
newpoints.append([center2, length, 0]) #23
newpoints.append([center2, 0, 0]) #24
if arrow == 'Serifs1' or arrow == 'Serifs2':
b = sqrt(depth * depth / 2)
x = sin(radians(45)) * arrowlength * w
y = cos(radians(45)) * arrowlength * l
newpoints.append([-center1, 0, 0]) #1
newpoints.append([-center1, length, 0]) #2
newpoints.append([-center1, length + l * dsize / 2-l * depth / 2-l * b, 0]) #3
newpoints.append([-center1-x, length + l * dsize / 2-l * depth / 2-l * b-y, 0]) #4
newpoints.append([-center1-w * b-x, length + l * dsize / 2-l * depth / 2-y, 0]) #5
if arrow == 'Serifs2':
newpoints.append([-center1-w * b, length + l * dsize / 2-l * depth / 2, 0]) #6
newpoints.append([-center1-w * dsize / 2, length + l * dsize / 2-l * depth / 2, 0]) #7
newpoints.append([-center1-w * dsize / 2, length + l * dsize / 2 + l * depth / 2, 0]) #8
newpoints.append([-center1, length + l * dsize / 2 + l * depth / 2, 0]) #9
newpoints.append([-center1, length + l * dsize, 0]) #10
newpoints.append([center2, length + l * dsize, 0]) #11
newpoints.append([center2, length + l * dsize / 2 + l * depth / 2 + l * b, 0]) #12
newpoints.append([center2 + x, length + l * dsize / 2 + l * depth / 2 + l * b + y, 0]) #13
newpoints.append([center2 + w * b + x, length + l * dsize / 2 + l * depth / 2 + y, 0]) #14
newpoints.append([center2 + w * b, length + l * dsize / 2 + l * depth / 2, 0]) #15
newpoints.append([width-center2, length + l * dsize / 2 + l * depth / 2, 0]) #16
newpoints.append([width-center2, length + l * dsize, 0]) #17
newpoints.append([width + center1, length + l * dsize, 0]) #18
newpoints.append([width + center1, length + l * dsize / 2 + l * depth / 2 + l * b, 0]) #19
newpoints.append([width + center1 + x, length + l * dsize / 2 + l * depth / 2 + l * b + y, 0]) #20
newpoints.append([width + center1 + w * b + x, length + l * dsize / 2 + l * depth / 2 + y, 0]) #21
if arrow == 'Serifs2':
newpoints.append([width + center1 + w * b, length + l * dsize / 2 + l * depth / 2, 0]) #22
newpoints.append([width + center1 + w * dsize / 2, length + l * dsize / 2 + l * depth / 2, 0]) #23
newpoints.append([width + center1 + w * dsize / 2, length + l * dsize / 2-l * depth / 2, 0]) #24
newpoints.append([width + center1, length + l * dsize / 2-l * depth / 2, 0]) #25
newpoints.append([width + center1, length, 0]) #26
newpoints.append([width + center1, 0, 0]) #27
newpoints.append([width-center2, 0, 0]) #28
newpoints.append([width-center2, length, 0]) #29
newpoints.append([width-center2, length + l * dsize / 2-l * depth / 2-l * b, 0]) #30
newpoints.append([width-center2-x, length + l * dsize / 2-l * depth / 2-l * b-y, 0]) #31
newpoints.append([width-center2-w * b-x, length + l * dsize / 2-l * depth / 2-y, 0]) #32
newpoints.append([width-center2-w * b, length + l * dsize / 2-l * depth / 2, 0]) #33
newpoints.append([center2, length + l * dsize / 2-l * depth / 2, 0]) #34
newpoints.append([center2, length, 0]) #35
newpoints.append([center2, 0, 0]) #36
if arrow == 'Without':
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
newpoints.append([-center1, 0, 0]) #1
newpoints.append([-center1, length, 0]) #2
newpoints.append([-center1, length + l * dsize, 0]) #3
newpoints.append([center2, length + l * dsize, 0]) #4
newpoints.append([center2, length + l * dsize / 2 + l * depth / 2, 0]) #7
newpoints.append([width-center2, length + l * dsize / 2 + l * depth / 2, 0]) #8
newpoints.append([width-center2, length + l * dsize, 0]) #11
newpoints.append([width + center1, length + l * dsize, 0]) #12
newpoints.append([width + center1, length, 0]) #13
newpoints.append([width + center1, 0, 0]) #14
newpoints.append([width-center2, 0, 0]) #15
newpoints.append([width-center2, length, 0]) #16
newpoints.append([width-center2, length + l * dsize / 2-l * depth / 2, 0]) #19
newpoints.append([center2, length + l * dsize / 2-l * depth / 2, 0]) #20
newpoints.append([center2, length, 0]) #23
newpoints.append([center2, 0, 0]) #24
return newpoints
##------------------------------------------------------------
# Dimension: Linear-2
def Linear2(width = 2, dsize = 1, depth = 0.1, center = False, arrow = 'Arrow1', arrowdepth = 0.25, arrowlength = 0.25):
newpoints = []
w = 1
if width < 0:
w = -1
if center:
center1 = w * depth / 2
center2 = w * depth / 2
else:
center1 = 0
center2 = w * depth
if arrow == 'Arrow1' or arrow == 'Arrow2':
newpoints.append([0, 0, 0]) #1
newpoints.append([w * arrowlength, arrowdepth + depth / 2, 0]) #2
if arrow == 'Arrow1':
newpoints.append([w * arrowlength, depth / 2, 0]) #3
newpoints.append([width-w * arrowlength, depth / 2, 0]) #4
else:
Loading
Loading full blame...