0.0.177
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@ -494,6 +494,12 @@ hex = guan.rgb_to_hex(rgb, pound=1)
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# 将HEX转成RGB
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rgb = guan.hex_to_rgb(hex)
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# 使用MD5进行散列加密
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hashed_password = guan.encryption_MD5(password, salt='')
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# 使用SHA-256进行散列加密
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hashed_password = guan.encryption_SHA_256(password, salt='')
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# Module 13: file processing
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@ -1,7 +1,7 @@
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[metadata]
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# replace with your username:
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name = guan
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version = 0.0.176
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version = 0.0.177
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author = guanjihuan
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author_email = guanjihuan@163.com
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description = An open source python package
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@ -1,6 +1,6 @@
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Metadata-Version: 2.1
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Name: guan
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Version: 0.0.176
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Version: 0.0.177
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Summary: An open source python package
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Home-page: https://py.guanjihuan.com
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Author: guanjihuan
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@ -2,7 +2,7 @@
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# With this package, you can calculate band structures, density of states, quantum transport and topological invariant of tight-binding models by invoking the functions you need. Other frequently used functions are also integrated in this package, such as file reading/writing, figure plotting, data processing.
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# The current version is guan-0.0.176, updated on September 14, 2023.
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# The current version is guan-0.0.177, updated on September 29, 2023.
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# Installation: pip install --upgrade guan
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@ -2858,6 +2858,24 @@ def hex_to_rgb(hex):
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length = len(hex)
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return tuple(int(hex[i:i+length//3], 16) for i in range(0, length, length//3))
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# 使用MD5进行散列加密
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def encryption_MD5(password, salt=''):
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import hashlib
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password = salt+password
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hashed_password = hashlib.md5(password.encode()).hexdigest()
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return hashed_password
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# 使用SHA-256进行散列加密
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def encryption_SHA_256(password, salt=''):
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import hashlib
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password = salt+password
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print(password)
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hashed_password = hashlib.sha256(password.encode()).hexdigest()
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return hashed_password
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