mirror of https://github.com/python/cpython
save_tuple(): So long as the charter is rewriting for clarity, the snaky
control flow had to be simplified.
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@ -458,27 +458,26 @@ class Pickler:
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def save_tuple(self, object):
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write = self.write
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save = self.save
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memo = self.memo
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proto = self.proto
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if proto >= 1:
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n = len(object)
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if n <= 3:
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if not object:
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write(EMPTY_TUPLE)
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return
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if proto >= 2:
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for element in object:
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save(element)
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# Subtle. Same as in the big comment below.
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if id(object) in memo:
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get = self.get(memo[id(object)][0])
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write(POP * n + get)
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else:
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write(_tuplesize2code[n])
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self.memoize(object)
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return
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n = len(object)
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if n == 0 and proto:
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write(EMPTY_TUPLE)
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return
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save = self.save
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memo = self.memo
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if n <= 3 and proto >= 2:
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for element in object:
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save(element)
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# Subtle. Same as in the big comment below.
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if id(object) in memo:
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get = self.get(memo[id(object)][0])
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write(POP * n + get)
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else:
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write(_tuplesize2code[n])
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self.memoize(object)
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return
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# proto 0, or proto 1 and tuple isn't empty, or proto > 1 and tuple
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# has more than 3 elements.
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@ -486,7 +485,7 @@ class Pickler:
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for element in object:
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save(element)
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if object and id(object) in memo:
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if n and id(object) in memo:
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# Subtle. d was not in memo when we entered save_tuple(), so
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# the process of saving the tuple's elements must have saved
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# the tuple itself: the tuple is recursive. The proper action
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@ -498,7 +497,7 @@ class Pickler:
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if proto:
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write(POP_MARK + get)
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else: # proto 0 -- POP_MARK not available
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write(POP * (len(object) + 1) + get)
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write(POP * (n+1) + get)
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return
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# No recursion (including the empty-tuple case for protocol 0).
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