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[Cipher_code.git] / measure_energy_iot / client_tcp4.py
index f8b73f0baea1514a8a3a08391cbc0a221a515296..6485a5dfafc9f447882261ebaebd65a0f92e7847 100644 (file)
@@ -3,22 +3,93 @@ import threading
 import os
 import time
 import buffer
+from PIL import Image
+import sys
+from io import BytesIO
+from pathlib import Path
+import numpy as np
 
-HOST = 'bilbo'
+HOST = "192.168.0.106"
 PORT = 2345
 
 s = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
 s.connect((HOST, PORT))
 
+nb_times=100
+
+quality=int(sys.argv[1])
+print("quality ",quality)
+
+
+
+
+im=Image.open("lena.jpg")
+im.save("lena.bmp",quality=quality)
+elapsed_time=0
+t = time.time()
+for i in range(nb_times):
+    buf = BytesIO()
+    im.save(buf, "BMP", quality=quality)
+
+elapsed_time += time.time() - t
+
+print("compute bmp",elapsed_time/nb_times," / size of file ",Path('lena.bmp').stat().st_size)
+
+
+"""
+im=Image.open("lena.jpg")
+
+elapsed_time=0
+t = time.time()
+for i in range(nb_times):
+    im.save("lena.bmp",quality=quality)
+
+elapsed_time += time.time() - t
+
+print("time bmp",elapsed_time/nb_times)
+"""
+
+
+
+im=Image.open("lena.jpg")
+elapsed_time=0
+im.save("lena2.jpg",quality=quality)
+t = time.time()
+for i in range(nb_times):
+    buf = BytesIO()
+    im.save(buf, "JPEG", quality=quality)
+    
+elapsed_time += time.time() - t
+
+print("compute noscale jpg",elapsed_time/nb_times, " / size of file ",Path('lena2.jpg').stat().st_size)
+
+
+
+elapsed_time=0
+im2=im.resize((256, 256))
+im2.save("lena3.jpg",quality=quality)
+t = time.time()
+for i in range(nb_times):
+    im2=im.resize((256, 256))
+    buf = BytesIO()
+    im2.save(buf, "JPEG", quality=quality)
+    
+elapsed_time += time.time() - t
+print("compute scale 4 jpg ",elapsed_time/nb_times, " / size of file ",Path('lena3.jpg').stat().st_size)
+
+
+
+
+
+
 with s:
     sbuf = buffer.Buffer(s)
 
 
-    elapsed_time=0
-    t=time.time()
-    file_name="lena.jpg"
-    for i in range(10):
-        print(file_name)
+    elapsed_time=[]
+    file_name="lena.bmp"
+    for i in range(nb_times):
+        t=time.time()
         sbuf.put_utf8(file_name)
 
         file_size = os.path.getsize(file_name)
@@ -26,15 +97,30 @@ with s:
 
         with open(file_name, 'rb') as f:
             sbuf.put_bytes(f.read())
-        print('File Sent')
-    elapsed_time += time.time() - t    
-    print("send lena ",elapsed_time)
+        elapsed_time.append(time.time() - t)
 
-    elapsed_time=0
-    t=time.time()
+    print("send bmp mean",np.mean(elapsed_time), " std ",np.std(elapsed_time))
+
+    elapsed_time=[]
     file_name="lena2.jpg"
-    for i in range(10):
-        print(file_name)
+    for i in range(nb_times):
+        t=time.time()
+        sbuf.put_utf8(file_name)
+
+        file_size = os.path.getsize(file_name)
+        sbuf.put_utf8(str(file_size))
+
+        with open(file_name, 'rb') as f:
+            sbuf.put_bytes(f.read())
+        elapsed_time.append(time.time() - t)
+
+    print("send noscale jpg   mean",np.mean(elapsed_time), " std ",np.std(elapsed_time))
+
+    elapsed_time=[]
+
+    file_name="lena3.jpg"
+    for i in range(nb_times):
+        t=time.time()
         sbuf.put_utf8(file_name)
 
         file_size = os.path.getsize(file_name)
@@ -42,8 +128,7 @@ with s:
 
         with open(file_name, 'rb') as f:
             sbuf.put_bytes(f.read())
-        print('File Sent')
-    elapsed_time += time.time() - t    
-    print("send lena ",elapsed_time)
+        elapsed_time.append(time.time() - t)
 
+    print("send scale 4 jpg  mean",np.mean(elapsed_time), " std ",np.std(elapsed_time))