Compare commits
4 Commits
Author | SHA1 | Date | |
---|---|---|---|
9fecb97df7 | |||
6994ea911f | |||
f3314441d3 | |||
8164320694 |
4
.gitignore
vendored
4
.gitignore
vendored
@ -1,3 +1,5 @@
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.*swp*
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.*sw*
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*__pycache__
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www/config.js
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73
clitools/generators/drawingTests/adjust_brightness.py
Normal file
73
clitools/generators/drawingTests/adjust_brightness.py
Normal file
@ -0,0 +1,73 @@
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#!/usr/bin/python3
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# -*- coding: utf-8 -*-
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# -*- mode: Python -*-
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'''
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This generator print different squar from big to small.
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The purepose is to see the difference of brightness with the length
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v0.1.0
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LICENCE : CC
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by lapin (aka nipal)
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'''
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from __future__ import print_function
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import time
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import argparse
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import sys
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import math
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name="generator::endingPoint"
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def debug(*args, **kwargs):
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if( verbose == False ):
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return
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print(*args, file=sys.stderr, **kwargs)
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argsparser = argparse.ArgumentParser(description="dummy generator")
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argsparser.add_argument("-f","--fps",help="Frame Per Second",default=30,type=int)
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argsparser.add_argument("-s","--speed",help="point per frame progress",default=3,type=int)
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argsparser.add_argument("-v","--verbose",action="store_true",help="Verbose output")
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args = argsparser.parse_args()
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fps=args.fps
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verbose=args.verbose
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optimal_looptime = 1 / fps
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debug(name+" optimal looptime "+str(optimal_looptime))
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width = 800
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height = 800
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offset = 50
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white = 0xFFFFFF
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blank = 0x0
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shape = []
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def set_shape():
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nb_spire = int(width / (2 * offset)) - 1
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for i in range(1, nb_spire + 1):
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shape.append([ i * offset, i * offset, blank])
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shape.append([ i * offset, i * offset, white])
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shape.append([ i * offset, height - i * offset, white])
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shape.append([width - i * offset, height - i * offset, white])
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shape.append([width - i * offset, i * offset, white])
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shape.append([ i * offset, i * offset, white])
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shape.append([ i * offset, i * offset, blank])
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set_shape()
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while True:
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start = time.time()
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print(shape, flush=True);
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looptime = time.time() - start
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if( looptime < optimal_looptime ):
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time.sleep( optimal_looptime - looptime)
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debug(name+" micro sleep:"+str( optimal_looptime - looptime))
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262
clitools/generators/drawingTests/angleInteractive.py
Normal file
262
clitools/generators/drawingTests/angleInteractive.py
Normal file
@ -0,0 +1,262 @@
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#!/usr/bin/python3
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# -*- coding: utf-8 -*-
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# -*- mode: Python -*-
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'''
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This generator print diferent one angle but you can modify it interactively.
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The key are:
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* '' => *somthing*
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* ...
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v0.1.0
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LICENCE : CC
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by lapin (aka nipal)
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'''
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from __future__ import print_function
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import time
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import argparse
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import math
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import sys
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# import for non-bloking input reading
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#import sys
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import select
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import tty
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import termios
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name="generator::endingPoint"
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def debug(*args, **kwargs):
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if( verbose == False ):
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return
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print(*args, file=sys.stderr, **kwargs)
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def isData():
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return select.select([sys.stdin], [], [], 0) == ([sys.stdin], [], [])
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def flush_input():
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try:
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import msvcrt
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while msvcrt.kbhit():
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msvcrt.getch()
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except ImportError:
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import sys, termios #for linux/unix
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termios.tcflush(sys.stdin, termios.TCIOFLUSH)
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old_settings = termios.tcgetattr(sys.stdin)
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argsparser = argparse.ArgumentParser(description="dummy generator")
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argsparser.add_argument("-f","--fps",help="Frame Per Second",default=30,type=int)
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argsparser.add_argument("-s","--speed",help="point per frame progress",default=3,type=int)
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argsparser.add_argument("-v","--verbose",action="store_true",help="Verbose output")
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args = argsparser.parse_args()
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fps=args.fps
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verbose=args.verbose
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optimal_looptime = 1 / fps
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#debug(name+" optimal looptime "+str(optimal_looptime))
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width = 800
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height = 800
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white = 0xFFFFFF
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blank = 0x0
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seg1_length = 100
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seg2_length = 100
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ang = 50
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incrLengthLittle= 5
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incrLengthLot= 20
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incrAngleLittle= 1
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incrAngleLot= 10
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angle_min = 0
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angle_max = 90
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length_min = 1
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length_max = 350
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shape = []
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# angle
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def ang_add_1():
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global ang
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if ang + incrAngleLittle <= angle_max:
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ang += incrAngleLittle
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else:
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ang = angle_max
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def ang_add_2():
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global ang
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if ang + incrAngleLot <= angle_max:
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ang += incrAngleLot
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else:
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ang = angle_max
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def ang_sub_1():
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global ang
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if ang - incrAngleLittle >= angle_min:
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ang -= incrAngleLittle
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else:
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ang = angle_min
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def ang_sub_2():
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global ang
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if ang - incrAngleLot >= angle_min:
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ang -= incrAngleLot
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else:
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ang = angle_min
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# seg1
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def seg_1_add_1():
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global seg1_length
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if seg1_length + incrLengthLittle <= length_max:
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seg1_length += incrLengthLittle
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else:
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seg1_length = length_max
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def seg_1_add_2():
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global seg1_length
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if seg1_length + incrLengthLot <= length_max:
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seg1_length += incrLengthLot
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else:
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seg1_length = length_max
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def seg_1_sub_1():
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global seg1_length
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if seg1_length - incrLengthLittle >= length_min:
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seg1_length -= incrLengthLittle
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else:
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seg1_length = length_min
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def seg_1_sub_2():
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global seg1_length
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if seg1_length - incrLengthLot >= length_min:
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seg1_length -= incrLengthLot
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else:
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seg1_length = length_min
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# seg2
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def seg_2_add_1():
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global seg2_length
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if seg2_length + incrLengthLittle <= length_max:
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seg2_length += incrLengthLittle
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else:
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seg2_length = length_max
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def seg_2_add_2():
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global seg2_length
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if seg2_length + incrLengthLot <= length_max:
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seg2_length += incrLengthLot
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else:
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seg2_length = length_max
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def seg_2_sub_1():
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global seg2_length
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if seg2_length - incrLengthLittle >= length_min:
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seg2_length -= incrLengthLittle
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else:
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seg2_length = length_min
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def seg_2_sub_2():
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global seg2_length
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if seg2_length - incrLengthLot >= length_min:
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seg2_length -= incrLengthLot
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else:
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seg2_length = length_min
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action = {
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# segment 1
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'q': seg_1_sub_1,
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'w': ssg_1_add_1,
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'a': seg_1_sub_2,
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's': seg_1_add_2,
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# segment 2
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'o': seg_2_sub_1,
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'p': seg_2_add_1,
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'l': seg_2_sub_2,
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';': seg_2_add_2,
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# angle
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't': ang_sub_1,
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'y': ang_add_1,
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'g': ang_sub_2,
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'h': ang_add_2,
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}
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def print_param():
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debug("\n\n===")
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debug("segment 1 length:", seg1_length)
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debug("segment 2 length:", seg2_length)
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debug("angle:", ang)
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def set_shape():
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global shape
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shape.clear()
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cx = width / 2
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cy = height / 2
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px1 = int(seg1_length * math.cos(math.radians(ang)))
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py1 = int(seg1_length * math.sin(math.radians(ang)))
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px2 = int(seg2_length * math.cos(math.radians(ang)))
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py2 = int(seg2_length * math.sin(math.radians(ang)))
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# line up
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shape.append([-px1 + cx, -py1 + cy, blank])
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shape.append([-px1 + cx, -py1 + cy, white])
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shape.append([ cx, + cy, white])
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shape.append([ px2 + cx, -py2 + cy, white])
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shape.append([ px2 + cx, -py2 + cy, blank])
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# line down
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shape.append([ px1 + cx, py1 + cy, blank])
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shape.append([ px1 + cx, py1 + cy, white])
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shape.append([ cx, + cy, white])
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shape.append([-px2 + cx, py2 + cy, white])
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shape.append([-px2 + cx, py2 + cy, blank])
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def update_param(c):
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if c in action:
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action[c]()
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print_param()
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set_shape()
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try:
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tty.setcbreak(sys.stdin.fileno())
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set_shape()
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print_param()
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print(shape, flush=True);
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while 1:
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if isData():
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c = sys.stdin.read(1)
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update_param(c)
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start = time.time()
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print(shape, flush=True);
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looptime = time.time() - start
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if( looptime < optimal_looptime ):
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time.sleep( optimal_looptime - looptime)
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#debug(name+" micro sleep:"+str( optimal_looptime - looptime))
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finally:
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termios.tcsetattr(sys.stdin, termios.TCSADRAIN, old_settings)
|
98
clitools/generators/drawingTests/angleOptimization.py
Normal file
98
clitools/generators/drawingTests/angleOptimization.py
Normal file
@ -0,0 +1,98 @@
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#!/usr/bin/python3
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# -*- coding: utf-8 -*-
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# -*- mode: Python -*-
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||||
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'''
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This generator print different angle form 0 to 180 degres
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|
||||
v0.1.0
|
||||
|
||||
LICENCE : CC
|
||||
|
||||
by lapin (aka nipal)
|
||||
|
||||
'''
|
||||
|
||||
from __future__ import print_function
|
||||
import time
|
||||
import argparse
|
||||
import sys
|
||||
import math
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|
||||
name="generator::endingPoint"
|
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|
||||
|
||||
def debug(*args, **kwargs):
|
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if( verbose == False ):
|
||||
return
|
||||
print(*args, file=sys.stderr, **kwargs)
|
||||
|
||||
argsparser = argparse.ArgumentParser(description="dummy generator")
|
||||
argsparser.add_argument("-f","--fps",help="Frame Per Second",default=30,type=int)
|
||||
argsparser.add_argument("-s","--speed",help="point per frame progress",default=3,type=int)
|
||||
argsparser.add_argument("-v","--verbose",action="store_true",help="Verbose output")
|
||||
args = argsparser.parse_args()
|
||||
|
||||
fps=args.fps
|
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verbose=args.verbose
|
||||
optimal_looptime = 1 / fps
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debug(name+" optimal looptime "+str(optimal_looptime))
|
||||
|
||||
width = 800
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height = 800
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|
||||
white = 0xFFFFFF
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blank = 0
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radius = 100
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offset_circles = 10
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beg_angle = 0
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end_angle = 90
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offset_angle = 10
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||||
angles_lines = []
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shape = []
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def set_angles_lines():
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margin = radius + offset_circles
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spacing_betwen = 2 * radius + offset_circles
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circles_per_line = math.floor((width - margin) / spacing_betwen)
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||||
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for ang in range(beg_angle, end_angle + offset_angle, offset_angle):
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||||
nb = int(ang / offset_angle)
|
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cx = margin + (nb % circles_per_line) * spacing_betwen
|
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cy = margin + int(nb / circles_per_line) * spacing_betwen
|
||||
|
||||
px = radius * math.cos(math.radians(ang))
|
||||
py = radius * math.sin(math.radians(ang))
|
||||
|
||||
# line up
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angles_lines.append([-px + cx, py + cy, blank])
|
||||
angles_lines.append([-px + cx, py + cy, white])
|
||||
angles_lines.append([ cx, 2 + cy, white])
|
||||
angles_lines.append([ px + cx, py + cy, white])
|
||||
#angles_lines.append([ px + cx, py + cy, blank])
|
||||
|
||||
# line down
|
||||
angles_lines.append([-px + cx, -py + cy, blank])
|
||||
angles_lines.append([-px + cx, -py + cy, white])
|
||||
angles_lines.append([ cx, -2 + cy, white])
|
||||
angles_lines.append([ px + cx, -py + cy, white])
|
||||
#angles_lines.append([ px + cx, -py + cy, blank])
|
||||
|
||||
|
||||
set_angles_lines()
|
||||
|
||||
shape = angles_lines
|
||||
# print(angles_lines)
|
||||
|
||||
while True:
|
||||
start = time.time()
|
||||
print(shape, flush=True);
|
||||
looptime = time.time() - start
|
||||
if( looptime < optimal_looptime ):
|
||||
time.sleep( optimal_looptime - looptime)
|
||||
debug(name+" micro sleep:"+str( optimal_looptime - looptime))
|
||||
|
117
clitools/generators/drawingTests/conected_component.py
Normal file
117
clitools/generators/drawingTests/conected_component.py
Normal file
@ -0,0 +1,117 @@
|
||||
#!/usr/bin/python3
|
||||
# -*- coding: utf-8 -*-
|
||||
# -*- mode: Python -*-
|
||||
|
||||
|
||||
'''
|
||||
|
||||
This generator print a shape with 3 discinected component, 2 non eulerian and one eulerian.
|
||||
|
||||
v0.1.0
|
||||
|
||||
LICENCE : CC
|
||||
|
||||
by lapin (aka nipal)
|
||||
|
||||
'''
|
||||
|
||||
from __future__ import print_function
|
||||
import time
|
||||
import argparse
|
||||
import sys
|
||||
import math
|
||||
|
||||
name="generator::endingPoint"
|
||||
|
||||
|
||||
def debug(*args, **kwargs):
|
||||
if( verbose == False ):
|
||||
return
|
||||
print(*args, file=sys.stderr, **kwargs)
|
||||
|
||||
def debug2(*args, **kwargs):
|
||||
print(*args, file=sys.stderr, **kwargs)
|
||||
|
||||
argsparser = argparse.ArgumentParser(description="dummy generator")
|
||||
argsparser.add_argument("-f","--fps",help="Frame Per Second",default=30,type=int)
|
||||
argsparser.add_argument("-s","--speed",help="point per frame progress",default=3,type=int)
|
||||
argsparser.add_argument("-v","--verbose",action="store_true",help="Verbose output")
|
||||
args = argsparser.parse_args()
|
||||
|
||||
fps=args.fps
|
||||
verbose=args.verbose
|
||||
optimal_looptime = 1 / fps
|
||||
debug(name+" optimal looptime "+str(optimal_looptime))
|
||||
|
||||
width = 800
|
||||
height = 800
|
||||
|
||||
white = 0xFFFFFF
|
||||
blank = 0
|
||||
|
||||
def shape_scale(shape, scale_factor):
|
||||
new_shape = []
|
||||
|
||||
for p in shape:
|
||||
new_shape.append([p[0] * scale_factor, p[1] * scale_factor, p[2]])
|
||||
return new_shape
|
||||
|
||||
def shape_incr(shape, x, y):
|
||||
new_shape = []
|
||||
|
||||
for p in shape:
|
||||
new_shape.append([p[0] + x, p[1] + y, p[2]])
|
||||
return new_shape
|
||||
|
||||
comp_a = []
|
||||
comp_b = []
|
||||
comp_c = []
|
||||
|
||||
comp_b.append([ 0, 3, blank])
|
||||
comp_b.append([ 0, 4, white])
|
||||
comp_b.append([ 0, 0, white])
|
||||
comp_b.append([ 3, 0, white])
|
||||
comp_b.append([ 3, 6, white])
|
||||
comp_b.append([ 3, 6, white])
|
||||
comp_b.append([ 3, 0, white])
|
||||
comp_b.append([ 3, 0, blank])
|
||||
comp_b.append([ 3, 0, white])
|
||||
comp_b.append([ 5, 4, white])
|
||||
comp_b.append([ 5, 4, blank])
|
||||
|
||||
comp_a.append([ 5, 17, blank])
|
||||
comp_a.append([ 5, 17, white])
|
||||
comp_a.append([ 0, 5, white])
|
||||
comp_a.append([12, 0, white])
|
||||
comp_a.append([17, 12, white])
|
||||
comp_a.append([ 5, 17, white])
|
||||
comp_a.append([ 5, 17, blank])
|
||||
|
||||
comp_c.append([-3, 5, blank])
|
||||
comp_c.append([-3, 5, white])
|
||||
comp_c.append([ 0, 4, white])
|
||||
comp_c.append([ 0, 0, white])
|
||||
comp_c.append([ 4, 0, white])
|
||||
comp_c.append([ 4, 4, white])
|
||||
comp_c.append([ 7, 5, white])
|
||||
comp_c.append([ 7, 5, blank])
|
||||
|
||||
comp_a = shape_scale(comp_a, 11)
|
||||
comp_a = shape_incr(comp_a, 300, 75)
|
||||
|
||||
comp_b = shape_scale(comp_b, 45)
|
||||
comp_b = shape_incr(comp_b, 0, 300)
|
||||
|
||||
comp_c = shape_scale(comp_c, 30)
|
||||
comp_c = shape_incr(comp_c, 600, 300)
|
||||
|
||||
shape = comp_a + comp_b + comp_c
|
||||
|
||||
while True:
|
||||
start = time.time()
|
||||
print(shape, flush=True);
|
||||
looptime = time.time() - start
|
||||
if( looptime < optimal_looptime ):
|
||||
time.sleep( optimal_looptime - looptime)
|
||||
debug(name+" micro sleep:"+str( optimal_looptime - looptime))
|
||||
|
77
clitools/generators/drawingTests/endingPoint.py
Normal file
77
clitools/generators/drawingTests/endingPoint.py
Normal file
@ -0,0 +1,77 @@
|
||||
#!/usr/bin/python3
|
||||
# -*- coding: utf-8 -*-
|
||||
# -*- mode: Python -*-
|
||||
|
||||
|
||||
'''
|
||||
|
||||
This generator print 3 static vertical line.
|
||||
The aim is to show The aim is to show the laser beam ignition time.
|
||||
beam when ther is no optimisation
|
||||
|
||||
v0.1.0
|
||||
|
||||
LICENCE : CC
|
||||
|
||||
by lapin (aka nipal)
|
||||
|
||||
'''
|
||||
|
||||
from __future__ import print_function
|
||||
import time
|
||||
import argparse
|
||||
import sys
|
||||
|
||||
name="generator::endingPoint"
|
||||
|
||||
|
||||
def debug(*args, **kwargs):
|
||||
if( verbose == False ):
|
||||
return
|
||||
print(*args, file=sys.stderr, **kwargs)
|
||||
|
||||
argsparser = argparse.ArgumentParser(description="dummy generator")
|
||||
argsparser.add_argument("-f","--fps",help="Frame Per Second",default=30,type=int)
|
||||
argsparser.add_argument("-s","--speed",help="point per frame progress",default=3,type=int)
|
||||
argsparser.add_argument("-v","--verbose",action="store_true",help="Verbose output")
|
||||
args = argsparser.parse_args()
|
||||
|
||||
fps=args.fps
|
||||
verbose=args.verbose
|
||||
optimal_looptime = 1 / fps
|
||||
debug(name+" optimal looptime "+str(optimal_looptime))
|
||||
|
||||
white = 0xFFFFFF
|
||||
blank = 0
|
||||
offset_y = 100
|
||||
offset_x = 50
|
||||
|
||||
begin_x = 200
|
||||
begin_y = 200
|
||||
|
||||
shape_factor = [
|
||||
[0, 0, white],
|
||||
[0, 1, blank],
|
||||
[1, 1, white],
|
||||
[1, 0, blank],
|
||||
[2, 0, white],
|
||||
[2, 1, blank],
|
||||
[2, 1, blank],
|
||||
]
|
||||
|
||||
shape = []
|
||||
|
||||
for point in shape_factor:
|
||||
shape.append([begin_x + offset_x * point[0],
|
||||
begin_y + offset_y * point[1],
|
||||
point[2]])
|
||||
|
||||
|
||||
while True:
|
||||
start = time.time()
|
||||
print(shape, flush=True);
|
||||
looptime = time.time() - start
|
||||
if( looptime < optimal_looptime ):
|
||||
time.sleep( optimal_looptime - looptime)
|
||||
debug(name+" micro sleep:"+str( optimal_looptime - looptime))
|
||||
|
77
clitools/generators/drawingTests/keyborad_input.py
Normal file
77
clitools/generators/drawingTests/keyborad_input.py
Normal file
@ -0,0 +1,77 @@
|
||||
# code exemple find at : https://stackoverflow.com/questions/2408560/python-nonblocking-console-input
|
||||
|
||||
import sys
|
||||
import select
|
||||
import tty
|
||||
import termios
|
||||
|
||||
def isData():
|
||||
return select.select([sys.stdin], [], [], 0) == ([sys.stdin], [], [])
|
||||
|
||||
old_settings = termios.tcgetattr(sys.stdin)
|
||||
|
||||
try:
|
||||
tty.setcbreak(sys.stdin.fileno())
|
||||
|
||||
i = 0
|
||||
while 1:
|
||||
#if i % 100000 == 0:
|
||||
# print("i", i)
|
||||
#i += 1
|
||||
if isData():
|
||||
c = sys.stdin.read(1)
|
||||
print(c)
|
||||
if c == '\x1b': # x1b is ESC
|
||||
break
|
||||
|
||||
finally:
|
||||
termios.tcsetattr(sys.stdin, termios.TCSADRAIN, old_settings)
|
||||
|
||||
|
||||
|
||||
### for windows
|
||||
#import msvcrt
|
||||
#
|
||||
#num = 0
|
||||
#done = False
|
||||
#while not done:
|
||||
# print(num)
|
||||
# num += 1
|
||||
#
|
||||
# if msvcrt.kbhit():
|
||||
# print "you pressed",msvcrt.getch(),"so now i will quit"
|
||||
# done = True
|
||||
#
|
||||
|
||||
## cross platforme (but may be a bit huge to import pygame...)
|
||||
#import pygame
|
||||
#from pygame.locals import *
|
||||
#
|
||||
#def display(str):
|
||||
# text = font.render(str, True, (255, 255, 255), (159, 182, 205))
|
||||
# textRect = text.get_rect()
|
||||
# textRect.centerx = screen.get_rect().centerx
|
||||
# textRect.centery = screen.get_rect().centery
|
||||
#
|
||||
# screen.blit(text, textRect)
|
||||
# pygame.display.update()
|
||||
#
|
||||
#pygame.init()
|
||||
#screen = pygame.display.set_mode( (640,480) )
|
||||
#pygame.display.set_caption('Python numbers')
|
||||
#screen.fill((159, 182, 205))
|
||||
#
|
||||
#font = pygame.font.Font(None, 17)
|
||||
#
|
||||
#num = 0
|
||||
#done = False
|
||||
#while not done:
|
||||
# display( str(num) )
|
||||
# num += 1
|
||||
#
|
||||
# pygame.event.pump()
|
||||
# keys = pygame.key.get_pressed()
|
||||
# if keys[K_ESCAPE]:
|
||||
# done = True
|
||||
#
|
||||
|
84
clitools/generators/drawingTests/order_optimization.py
Normal file
84
clitools/generators/drawingTests/order_optimization.py
Normal file
@ -0,0 +1,84 @@
|
||||
#!/usr/bin/python3
|
||||
# -*- coding: utf-8 -*-
|
||||
# -*- mode: Python -*-
|
||||
|
||||
|
||||
'''
|
||||
|
||||
This generator print a shape with best angle representation when the path is redraw
|
||||
|
||||
v0.1.0
|
||||
|
||||
LICENCE : CC
|
||||
|
||||
by lapin (aka nipal)
|
||||
|
||||
'''
|
||||
|
||||
from __future__ import print_function
|
||||
import time
|
||||
import argparse
|
||||
import sys
|
||||
import math
|
||||
|
||||
name="generator::endingPoint"
|
||||
|
||||
|
||||
def debug(*args, **kwargs):
|
||||
if( verbose == False ):
|
||||
return
|
||||
print(*args, file=sys.stderr, **kwargs)
|
||||
|
||||
def debug2(*args, **kwargs):
|
||||
print(*args, file=sys.stderr, **kwargs)
|
||||
|
||||
argsparser = argparse.ArgumentParser(description="dummy generator")
|
||||
argsparser.add_argument("-f","--fps",help="Frame Per Second",default=30,type=int)
|
||||
argsparser.add_argument("-s","--speed",help="point per frame progress",default=3,type=int)
|
||||
argsparser.add_argument("-v","--verbose",action="store_true",help="Verbose output")
|
||||
args = argsparser.parse_args()
|
||||
|
||||
fps=args.fps
|
||||
verbose=args.verbose
|
||||
optimal_looptime = 1 / fps
|
||||
debug(name+" optimal looptime "+str(optimal_looptime))
|
||||
|
||||
width = 800
|
||||
height = 800
|
||||
|
||||
white = 0xFFFFFF
|
||||
blank = 0
|
||||
|
||||
point_offset = 250
|
||||
|
||||
point_width = 4
|
||||
point_list = [
|
||||
[8,7,6,10,7,3,6,2,7,11,6,9],
|
||||
[5,6,1,],
|
||||
[4,7,12,],
|
||||
]
|
||||
|
||||
shape = []
|
||||
|
||||
# on ajoute des lilste de point
|
||||
for l in point_list:
|
||||
x = point_offset * ((l[0] - 1) % (point_width))
|
||||
y = point_offset * int((l[0] - 1) / (point_width))
|
||||
shape.append([x, y, blank])
|
||||
debug2("=====")
|
||||
debug2(f"id: {l[0]}\tx: {x}\ty: {y}\t\tpoint_width: {point_width}\t\n")
|
||||
|
||||
for p in l:
|
||||
x = point_offset * ((p - 1) % (point_width))
|
||||
y = point_offset * int((p - 1) / (point_width))
|
||||
shape.append([x, y, white])
|
||||
debug2(f"id: {p}\tx: {x}\ty: {y}\t\tpoint_width: {point_width}\t\n")
|
||||
|
||||
while True:
|
||||
start = time.time()
|
||||
print(shape, flush=True);
|
||||
looptime = time.time() - start
|
||||
if( looptime < optimal_looptime ):
|
||||
time.sleep( optimal_looptime - looptime)
|
||||
debug(name+" micro sleep:"+str( optimal_looptime - looptime))
|
||||
|
255
libs3/plotOptimizer.py
Normal file
255
libs3/plotOptimizer.py
Normal file
File diff suppressed because one or more lines are too long
@ -81,7 +81,8 @@ import pdb
|
||||
import ast
|
||||
import redis
|
||||
|
||||
from libs3 import homographyp
|
||||
from libs3 import homographyp, plotOptimizer as po
|
||||
|
||||
import numpy as np
|
||||
import binascii
|
||||
|
||||
@ -223,43 +224,39 @@ class DAC(object):
|
||||
|
||||
while True:
|
||||
|
||||
#pdb.set_trace()
|
||||
self.pl = po.optimizer(self.pl)
|
||||
for indexpoint,currentpoint in enumerate(self.pl):
|
||||
#print indexpoint, currentpoint
|
||||
|
||||
# transformations des point au format adapter au etherdream
|
||||
xyc = [currentpoint[0],currentpoint[1],currentpoint[2]]
|
||||
self.xyrgb = self.EtherPoint(xyc)
|
||||
#print(self.xyrgb[2:])
|
||||
rgb = (round(self.xyrgb[2:][0] *self.intred/100), round(self.xyrgb[2:][1] *self.intgreen/100), round(self.xyrgb[2:][2] *self.intblue/100))
|
||||
#print("rgb :", rgb)
|
||||
|
||||
#round(*self.intred/100)
|
||||
#round(*self.intgreen/100)
|
||||
#round(*self.intblue/100)
|
||||
yield self.xyrgb
|
||||
##**//# ajout de point pour un tracer adapter
|
||||
##**//delta_x, delta_y = self.xyrgb[0] - self.xyrgb_prev[0], self.xyrgb[1] - self.xyrgb_prev[1]
|
||||
##**//#test adaptation selon longueur ligne
|
||||
##**//if math.hypot(delta_x, delta_y) < 4000:
|
||||
|
||||
delta_x, delta_y = self.xyrgb[0] - self.xyrgb_prev[0], self.xyrgb[1] - self.xyrgb_prev[1]
|
||||
##**// # For glitch art : decrease lsteps
|
||||
##**// #l_steps = [ (1.0, 8)]
|
||||
##**// l_steps = gstt.stepshortline
|
||||
|
||||
#test adaptation selon longueur ligne
|
||||
if math.hypot(delta_x, delta_y) < 4000:
|
||||
##**//else:
|
||||
##**// # For glitch art : decrease lsteps
|
||||
##**// #l_steps = [ (0.25, 3), (0.75, 3), (1.0, 10)]
|
||||
##**// l_steps = gstt.stepslongline
|
||||
|
||||
# For glitch art : decrease lsteps
|
||||
#l_steps = [ (1.0, 8)]
|
||||
l_steps = gstt.stepshortline
|
||||
##**//for e in l_steps:
|
||||
##**// step = e[0]
|
||||
|
||||
else:
|
||||
# For glitch art : decrease lsteps
|
||||
#l_steps = [ (0.25, 3), (0.75, 3), (1.0, 10)]
|
||||
l_steps = gstt.stepslongline
|
||||
##**// for i in range(0,e[1]):
|
||||
|
||||
for e in l_steps:
|
||||
step = e[0]
|
||||
##**// self.xyrgb_step = (self.xyrgb_prev[0] + step*delta_x, self.xyrgb_prev[1] + step*delta_y) + rgb # + self.xyrgb_prev[2:]# + rgb
|
||||
##**// #print(self.xyrgb_step)
|
||||
##**// yield self.xyrgb_step
|
||||
|
||||
for i in range(0,e[1]):
|
||||
|
||||
self.xyrgb_step = (self.xyrgb_prev[0] + step*delta_x, self.xyrgb_prev[1] + step*delta_y) + rgb # + self.xyrgb_prev[2:]# + rgb
|
||||
#print(self.xyrgb_step)
|
||||
yield self.xyrgb_step
|
||||
|
||||
self.xyrgb_prev = self.xyrgb
|
||||
##**//self.xyrgb_prev = self.xyrgb
|
||||
|
||||
|
||||
def GetPoints(self, n):
|
||||
|
Loading…
Reference in New Issue
Block a user