SuperCollider Prototyping stage
This commit is contained in:
parent
e17d1675d7
commit
6b3a1c8092
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data.csv
220
data.csv
@ -1,168 +1,80 @@
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52
test.py
52
test.py
@ -9,18 +9,20 @@ from osc4py3 import oscbuildparse
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#github test
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osc_startup()
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osc_udp_client("127.0.0.1", 57120, "local")
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note_C = oscbuildparse.OSCMessage("/note_C", None, ["C",440])
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note_Db = oscbuildparse.OSCMessage("/note_Db", None, ["text"])
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note_D = oscbuildparse.OSCMessage("/note_D", None, ["text"])
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note_Eb = oscbuildparse.OSCMessage("/note_Eb", None, ["text"])
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note_E = oscbuildparse.OSCMessage("/note_E", None, ["text"])
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note_F = oscbuildparse.OSCMessage("/note_F", None, ["text"])
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note_Gb = oscbuildparse.OSCMessage("/note_Gb", None, ["text"])
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note_G = oscbuildparse.OSCMessage("/note_G", None, ["text"])
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note_Ab = oscbuildparse.OSCMessage("/note_Ab", None, ["text"])
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note_A = oscbuildparse.OSCMessage("/note_A", None, ["text"])
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note_Bb = oscbuildparse.OSCMessage("/note_Bb", None, ["text"])
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note_B = oscbuildparse.OSCMessage("/note_B", None, ["text"])
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note_C = oscbuildparse.OSCMessage("/notes", None, ["C",440])
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# note_Db = oscbuildparse.OSCMessage("/note_Db", None, ["text"])
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# note_D = oscbuildparse.OSCMessage("/note_D", None, ["text"])
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# note_Eb = oscbuildparse.OSCMessage("/note_Eb", None, ["text"])
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# note_E = oscbuildparse.OSCMessage("/note_E", None, ["text"])
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# note_F = oscbuildparse.OSCMessage("/note_F", None, ["text"])
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# note_Gb = oscbuildparse.OSCMessage("/note_Gb", None, ["text"])
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# note_G = oscbuildparse.OSCMessage("/note_G", None, ["text"])
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# note_Ab = oscbuildparse.OSCMessage("/note_Ab", None, ["text"])
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# note_A = oscbuildparse.OSCMessage("/note_A", None, ["text"])
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# note_Bb = oscbuildparse.OSCMessage("/note_Bb", None, ["text"])
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# note_B = oscbuildparse.OSCMessage("/note_B", None, ["text"])
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#import imutils
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CONNECTIVITY = 4
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@ -28,7 +30,7 @@ DRAW_CIRCLE_RADIUS = 5
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imageorg = cv2.imread('testimage.jpg')
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imageorginal = cv2.imread('testimage.jpg')
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gray = cv2.cvtColor(imageorg, cv2.COLOR_BGR2GRAY)
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thresh = cv2.threshold(gray, 80, 255, cv2.THRESH_BINARY)[1]
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thresh = cv2.threshold(gray, 120, 255, cv2.THRESH_BINARY)[1]
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height, width, channels = imageorg.shape
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# perform a series of erosions and dilations to remove
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@ -119,8 +121,8 @@ for x in range(int(height / 2)):
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# distance[3] = 1
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elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int((width / 2) + numpy.sqrt(3)*int(height / 2)/2), int(height / 2 - int(height / 2) / 2),int(width/2 + height / 2), int(height / 2)):
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cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (50, 150, 20), thickness=1)
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osc_send(note_D, "local")
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osc_process()
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#osc_send(note_D, "local")
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#osc_process()
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distance[3] = 1
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# elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int(width/2 + height / 2), int(height / 2),int((width / 2) + numpy.sqrt(3)*int(height / 2)/2), int(height / 2 + int(height / 2) / 2)):
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# cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (200, 100, 50), thickness=1)
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@ -129,13 +131,13 @@ for x in range(int(height / 2)):
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# distance[3] = 1
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elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int((width / 2) + numpy.sqrt(3)*int(height / 2)/2), int(height / 2 + int(height / 2) / 2),int((width / 2) + int(height / 2) / 2), int(height / 2 + numpy.sqrt(3)*int(height / 2)/2)):
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cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (200, 200, 50), thickness=1)
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osc_send(note_E, "local")
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osc_process()
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#osc_send(note_E, "local")
|
||||
#osc_process()
|
||||
distance[3] = 1
|
||||
elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int((width / 2) + int(height / 2) / 2), int(height / 2 + numpy.sqrt(3)*int(height / 2)/2),int(width / 2),int(height)):
|
||||
cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (200, 200, 200), thickness=1)
|
||||
osc_send(note_F, "local")
|
||||
osc_process()
|
||||
#osc_send(note_F, "local")
|
||||
#osc_process()
|
||||
distance[3] = 1
|
||||
# elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int(width / 2),int(height),int((width / 2) - int(height / 2) / 2), int(height / 2 + numpy.sqrt(3)*int(height / 2)/2)):
|
||||
# cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (0, 200, 200), thickness=1)
|
||||
@ -144,8 +146,8 @@ for x in range(int(height / 2)):
|
||||
# distance[3] = 1
|
||||
elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int((width / 2) - int(height / 2) / 2), int(height / 2 + numpy.sqrt(3)*int(height / 2)/2),int((width / 2) - numpy.sqrt(3)*int(height / 2)/2), int(height / 2 + int(height / 2) / 2)):
|
||||
cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (0, 250, 200), thickness=1)
|
||||
osc_send(note_G, "local")
|
||||
osc_process()
|
||||
#osc_send(note_G, "local")
|
||||
#osc_process()
|
||||
distance[3] = 1
|
||||
# elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int((width / 2) - numpy.sqrt(3)*int(height / 2)/2), int(height / 2 + int(height / 2) / 2),int((width / 2) - (height / 2)),int(height / 2) ):
|
||||
# cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (0,50, 250), thickness=1)
|
||||
@ -154,8 +156,8 @@ for x in range(int(height / 2)):
|
||||
# distance[3] = 1
|
||||
elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int((width / 2) - (height / 2)),int(height / 2),int((width / 2) - numpy.sqrt(3)*int(height / 2)/2), int(height / 2 - int(height / 2) / 2) ):
|
||||
cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (0,150, 250), thickness=1)
|
||||
osc_send(note_A, "local")
|
||||
osc_process()
|
||||
#osc_send(note_A, "local")
|
||||
#osc_process()
|
||||
distance[3] = 1
|
||||
# elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int((width / 2) - numpy.sqrt(3)*int(height / 2)/2), int(height / 2 - int(height / 2) / 2),int((width / 2) - int(height / 2) / 2), int(height / 2 - numpy.sqrt(3)*int(height / 2)/2) ):
|
||||
# cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (0,200, 250), thickness=1)
|
||||
@ -164,8 +166,8 @@ for x in range(int(height / 2)):
|
||||
# distance[3] = 1
|
||||
elif (distance[3]==0) and (distance[2] <= x) and inArea(int(distance[0]),int(distance[1]),int(width/2),int(height/2),int((width / 2) - int(height / 2) / 2), int(height / 2 - numpy.sqrt(3)*int(height / 2)/2),int(width / 2),0 ):
|
||||
cv2.circle(imageorg, (int(distance[0]),int(distance[1])), DRAW_CIRCLE_RADIUS, (50,250, 250), thickness=1)
|
||||
osc_send(note_B, "local")
|
||||
osc_process()
|
||||
#osc_send(note_B, "local")
|
||||
#osc_process()
|
||||
distance[3] = 1
|
||||
#cv2.circle(imageorg, (389,33), DRAW_CIRCLE_RADIUS, (0, 255, 0), thickness=1)
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user