Introduce predicates.
Predcates are boolean functions. There will be ISA predicates and instruction predicates. The ISA predicates will be turned into member functions on the generated Flags structs.
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@@ -31,19 +31,14 @@ class Setting(object):
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self.__doc__ = doc
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# Offset of byte in settings vector containing this setting.
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self.byte_offset = None
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SettingGroup.append(self)
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self.group = SettingGroup.append(self)
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@staticmethod
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def extract_names(globs):
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def predicate_context(self):
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"""
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Given a dict mapping name -> object as returned by `globals()`, find
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all the Setting objects and set their name from the dict key. This is
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used to name a bunch of global variables in a module.
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Return the context where this setting can be evaluated as a (leaf)
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predicate.
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"""
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for name, obj in globs.iteritems():
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if isinstance(obj, Setting):
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assert obj.name is None
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obj.name = name
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return self.group
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class BoolSetting(Setting):
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@@ -116,14 +111,17 @@ class SettingGroup(object):
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opened.
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:param name: Short mnemonic name for setting group.
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:param parent: Parent settings group.
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"""
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# The currently open setting group.
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_current = None
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def __init__(self, name):
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def __init__(self, name, parent=None):
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self.name = name
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self.parent = parent
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self.settings = []
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self.predicates = []
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self.open()
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def open(self):
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@@ -149,13 +147,22 @@ class SettingGroup(object):
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.format(self, SettingGroup._current))
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SettingGroup._current = None
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if globs:
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Setting.extract_names(globs)
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from predicates import Predicate
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for name, obj in globs.iteritems():
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if isinstance(obj, Setting):
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assert obj.name is None, obj.name
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obj.name = name
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if isinstance(obj, Predicate):
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assert obj.name is None
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obj.name = name
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self.predicates.append(obj)
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@staticmethod
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def append(setting):
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assert SettingGroup._current, \
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"Open a setting group before defining settings."
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SettingGroup._current.settings.append(setting)
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g = SettingGroup._current
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assert g, "Open a setting group before defining settings."
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g.settings.append(setting)
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return g
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# Kinds of operands.
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94
meta/cretonne/predicates.py
Normal file
94
meta/cretonne/predicates.py
Normal file
@@ -0,0 +1,94 @@
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"""
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Cretonne predicates.
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A *predicate* is a function that computes a boolean result. The inputs to the
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function determine the kind of predicate:
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- An *ISA predicate* is evaluated on the current ISA settings together with the
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shared settings defined in the :py:mod:`settings` module. Once a target ISA
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has been configured, the value of all ISA predicates is known.
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- An *Instruction predicate* is evaluated on an instruction instance, so it can
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inspect all the immediate fields and type variables of the instruction.
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Instruction predicates can be evaluatd before register allocation, so they
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can not depend on specific register assignments to the value operands or
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outputs.
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Predicates can also be computed from other predicates using the `And`, `Or`,
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and `Not` combinators defined in this module.
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All predicates have a *context* which determines where they can be evaluated.
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For an ISA predicate, the context is the ISA settings group. For an instruction
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predicate, the context is the instruction format.
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"""
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def _is_parent(a, b):
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"""
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Return true if a is a parent of b, or equal to it.
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"""
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while b and a is not b:
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b = getattr(b, 'parent', None)
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return a is b
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def _descendant(a, b):
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"""
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If a is a parent of b or b is a parent of a, return the descendant of the
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two.
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If neiher is a parent of the other, return None.
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"""
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if _is_parent(a, b):
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return b
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if _is_parent(b, a):
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return a
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return None
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class Predicate(object):
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"""
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Superclass for all computed predicates.
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Leaf predicates can have other types, such as `Setting`.
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:param parts: Tuple of components in the predicate expression.
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"""
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def __init__(self, parts):
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self.name = None
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self.parts = parts
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self.context = reduce(
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_descendant,
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(p.predicate_context() for p in parts))
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assert self.context, "Incompatible predicate parts"
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def predicate_context(self):
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return self.context
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class And(Predicate):
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"""
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Computed predicate that is true if all parts are true.
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"""
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def __init__(self, *args):
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super(And, self).__init__(args)
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class Or(Predicate):
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"""
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Computed predicate that is true if any parts are true.
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"""
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def __init__(self, *args):
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super(Or, self).__init__(args)
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class Not(Predicate):
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"""
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Computed predicate that is true if its single part is false.
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"""
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def __init__(self, part):
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super(Not, self).__init__((part,))
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@@ -3,13 +3,17 @@ RISC-V settings.
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"""
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from cretonne import SettingGroup, BoolSetting
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from cretonne.predicates import And
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import cretonne.settings as shared
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from defs import isa
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isa.settings = SettingGroup('riscv')
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isa.settings = SettingGroup('riscv', parent=shared.group)
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supports_m = BoolSetting("CPU supports the 'M' extension (mul/div)")
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supports_a = BoolSetting("CPU supports the 'A' extension (atomics)")
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supports_f = BoolSetting("CPU supports the 'F' extension (float)")
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supports_d = BoolSetting("CPU supports the 'D' extension (double)")
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full_float = And(shared.enable_simd, supports_f, supports_d)
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isa.settings.close(globals())
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