Mercurial > p > roundup > code
view roundup/mlink_expr.py @ 7695:2be7a8f66ea7
fix: windows install using pip mislocates share directory
The setup code that tries to make the share install path absolute
prependeds something like:
c:\program files\python_venv
to the paths. The equivalent on linux is recognized as an absolute
path. On windows this is treated oddly. This resulted in
the share files being placed in:
c:\program files\python_venv\Lib\site-packages\program files\python_venv\share
Roundup was unable to find the files there. On windows (where the
platform starts with 'win') don't make the path absolute. This puts
share in:
c:\program files\python_venv\Lib\share
and Roundup finds them.
The translations and templates are found by the roundup-server.
The docs are also installed under the share directory. The man pages
are not installed as windows doesn't have groff to format the source
documents.
This is the second fix from issues getting Roundup running on windows
discussed on mailing list by Simon Eigeldinger.
Thread starts with:
https://sourceforge.net/p/roundup/mailman/message/41557096/
subject: Installing Roundup on Windows 2023-10-05.
| author | John Rouillard <rouilj@ieee.org> |
|---|---|
| date | Sun, 05 Nov 2023 23:01:29 -0500 |
| parents | 87af08c75695 |
| children | 741ea8a86012 |
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# # Copyright: 2010 Intevation GmbH. # 2021 Ralf Schlatterbeck, rsc@runtux.com. # # This module is Free Software under the Roundup licensing, # see the COPYING.txt file coming with Roundup. # class Binary: def __init__(self, x, y): self.x = x self.y = y def visit(self, visitor): self.x.visit(visitor) self.y.visit(visitor) class Unary: def __init__(self, x): self.x = x def generate(self, atom): return atom(self) def visit(self, visitor): self.x.visit(visitor) class Equals(Unary): def evaluate(self, v): return self.x in v def visit(self, visitor): visitor(self) class Empty(Unary): def evaluate(self, v): return not v def visit(self, visitor): visitor(self) class Not(Unary): def evaluate(self, v): return not self.x.evaluate(v) def generate(self, atom): return "NOT(%s)" % self.x.generate(atom) class Or(Binary): def evaluate(self, v): return self.x.evaluate(v) or self.y.evaluate(v) def generate(self, atom): return "(%s)OR(%s)" % ( self.x.generate(atom), self.y.generate(atom)) class And(Binary): def evaluate(self, v): return self.x.evaluate(v) and self.y.evaluate(v) def generate(self, atom): return "(%s)AND(%s)" % ( self.x.generate(atom), self.y.generate(atom)) def compile_expression(opcodes): stack = [] push, pop = stack.append, stack.pop for opcode in opcodes: if opcode == -1: push(Empty(opcode)) # noqa: E271,E701 elif opcode == -2: push(Not(pop())) # noqa: E701 elif opcode == -3: push(And(pop(), pop())) # noqa: E701 elif opcode == -4: push(Or(pop(), pop())) # noqa: E701 else: push(Equals(opcode)) # noqa: E701 return pop() class Expression: def __init__(self, v, is_link=False): try: opcodes = [int(x) for x in v] if min(opcodes) >= -1: raise ValueError() compiled = compile_expression(opcodes) if is_link: self.evaluate = lambda x: compiled.evaluate( x and [int(x)] or []) else: self.evaluate = lambda x: compiled.evaluate([int(y) for y in x]) except (ValueError, TypeError): if is_link: v = [None if x == '-1' else x for x in v] self.evaluate = lambda x: x in v elif '-1' in v: v = [x for x in v if int(x) > 0] self.evaluate = lambda x: bool(set(x) & set(v)) or not x else: self.evaluate = lambda x: bool(set(x) & set(v)) except BaseException: raise
