177 lines
5.5 KiB
Python
177 lines
5.5 KiB
Python
from migen.fhdl.std import *
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from migen.fhdl.tracer import get_obj_var_name
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from migen.genlib.misc import optree
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(DIR_NONE, DIR_S_TO_M, DIR_M_TO_S) = range(3)
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# Possible layout elements:
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# 1. (name, size)
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# 2. (name, size, direction)
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# 3. (name, sublayout)
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# size can be an int, or a (int, bool) tuple for signed numbers
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# sublayout must be a list
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def set_layout_parameters(layout, **layout_dict):
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def resolve(p):
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if isinstance(p, str):
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try:
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return layout_dict[p]
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except KeyError:
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return p
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else:
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return p
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r = []
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for f in layout:
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if isinstance(f[1], (int, tuple, str)): # cases 1/2
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if len(f) == 3:
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r.append((f[0], resolve(f[1]), f[2]))
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else:
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r.append((f[0], resolve(f[1])))
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elif isinstance(f[1], list): # case 3
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r.append((f[0], set_layout_parameters(f[1], **layout_dict)))
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else:
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raise TypeError
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return r
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def layout_len(layout):
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r = 0
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for f in layout:
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if isinstance(f[1], (int, tuple)): # cases 1/2
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if len(f) == 3:
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fname, fsize, fdirection = f
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else:
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fname, fsize = f
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elif isinstance(f[1], list): # case 3
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fname, fsublayout = f
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fsize = layout_len(fsublayout)
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else:
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raise TypeError
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if isinstance(fsize, tuple):
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r += fsize[0]
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else:
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r += fsize
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return r
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def layout_get(layout, name):
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for f in layout:
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if f[0] == name:
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return f
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raise KeyError(name)
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def layout_partial(layout, *elements):
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r = []
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for path in elements:
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path_s = path.split("/")
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last = path_s.pop()
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copy_ref = layout
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insert_ref = r
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for hop in path_s:
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name, copy_ref = layout_get(copy_ref, hop)
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try:
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name, insert_ref = layout_get(insert_ref, hop)
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except KeyError:
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new_insert_ref = []
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insert_ref.append((hop, new_insert_ref))
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insert_ref = new_insert_ref
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insert_ref.append(layout_get(copy_ref, last))
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return r
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class Record:
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def __init__(self, layout, name=None):
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self.name = get_obj_var_name(name, "")
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self.layout = layout
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if self.name:
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prefix = self.name + "_"
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else:
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prefix = ""
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for f in self.layout:
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if isinstance(f[1], (int, tuple)): # cases 1/2
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if(len(f) == 3):
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fname, fsize, fdirection = f
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else:
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fname, fsize = f
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finst = Signal(fsize, name=prefix + fname)
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elif isinstance(f[1], list): # case 3
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fname, fsublayout = f
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finst = Record(fsublayout, prefix + fname)
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else:
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raise TypeError
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setattr(self, fname, finst)
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def eq(self, other):
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return [getattr(self, f[0]).eq(getattr(other, f[0]))
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for f in self.layout if hasattr(other, f[0])]
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def iter_flat(self):
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for f in self.layout:
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e = getattr(self, f[0])
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if isinstance(e, Signal):
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if len(f) == 3:
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yield e, f[2]
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else:
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yield e, DIR_NONE
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elif isinstance(e, Record):
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yield from e.iter_flat()
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else:
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raise TypeError
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def flatten(self):
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return [signal for signal, direction in self.iter_flat()]
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def raw_bits(self):
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return Cat(*self.flatten())
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def connect(self, *slaves, leave_out=set()):
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if isinstance(leave_out, str):
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leave_out = {leave_out}
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r = []
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for f in self.layout:
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field = f[0]
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if field not in leave_out:
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self_e = getattr(self, field)
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if isinstance(self_e, Signal):
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direction = f[2]
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if direction == DIR_M_TO_S:
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r += [getattr(slave, field).eq(self_e) for slave in slaves]
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elif direction == DIR_S_TO_M:
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r.append(self_e.eq(optree("|", [getattr(slave, field) for slave in slaves])))
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else:
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raise TypeError
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else:
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for slave in slaves:
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r += self_e.connect(getattr(slave, field), leave_out=leave_out)
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return r
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def connect_flat(self, *slaves):
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r = []
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iter_slaves = [slave.iter_flat() for slave in slaves]
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for m_signal, m_direction in self.iter_flat():
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if m_direction == DIR_M_TO_S:
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for iter_slave in iter_slaves:
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s_signal, s_direction = next(iter_slave)
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assert(s_direction == DIR_M_TO_S)
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r.append(s_signal.eq(m_signal))
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elif m_direction == DIR_S_TO_M:
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s_signals = []
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for iter_slave in iter_slaves:
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s_signal, s_direction = next(iter_slave)
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assert(s_direction == DIR_S_TO_M)
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s_signals.append(s_signal)
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r.append(m_signal.eq(optree("|", s_signals)))
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else:
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raise TypeError
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return r
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def __len__(self):
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return layout_len(self.layout)
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def __repr__(self):
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return "<Record " + ":".join(f[0] for f in self.layout) + " at " + hex(id(self)) + ">"
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