145 lines
4.2 KiB
Python
145 lines
4.2 KiB
Python
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import math
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from misoclib.com.litepcie.common import *
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from misoclib.com.litepcie.core.packet.common import *
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from misoclib.com.litepcie.test.common import *
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def print_chipset(s):
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print_with_prefix(s, "[PHY] ")
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# PHY Layer model
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class PHYPacket():
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def __init__(self, dat=[], be=[]):
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self.dat = dat
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self.be = be
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self.start = 1
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self.done = 0
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class PHYSource(Module):
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def __init__(self, dw):
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self.source = Source(phy_layout(dw))
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###
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self.packets = []
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self.packet = PHYPacket()
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self.packet.done = 1
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def send(self, packet):
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self.packets.append(packet)
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def send_blocking(self, packet):
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self.send(packet)
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while packet.done == 0:
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yield
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def do_simulation(self, selfp):
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if len(self.packets) and self.packet.done:
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self.packet = self.packets.pop(0)
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if self.packet.start and not self.packet.done:
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selfp.source.stb = 1
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selfp.source.sop = 1
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selfp.source.dat = self.packet.dat.pop(0)
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selfp.source.be = self.packet.be.pop(0)
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self.packet.start = 0
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elif selfp.source.stb == 1 and selfp.source.ack == 1:
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selfp.source.sop = 0
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selfp.source.eop = (len(self.packet.dat) == 1)
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if len(self.packet.dat) > 0:
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selfp.source.stb = 1
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selfp.source.dat = self.packet.dat.pop(0)
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selfp.source.be = self.packet.be.pop(0)
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else:
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self.packet.done = 1
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selfp.source.stb = 0
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class PHYSink(Module):
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def __init__(self, dw):
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self.sink = Sink(phy_layout(dw))
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###
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self.packet = PHYPacket()
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def receive(self):
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self.packet.done = 0
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while self.packet.done == 0:
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yield
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def do_simulation(self, selfp):
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self.packet.done = 0
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selfp.sink.ack = 1
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if selfp.sink.stb == 1 and selfp.sink.sop == 1:
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self.packet.start = 1
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self.packet.dat = [selfp.sink.dat]
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self.packet.be = [selfp.sink.be]
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elif selfp.sink.stb:
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self.packet.start = 0
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self.packet.dat.append(selfp.sink.dat)
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self.packet.be.append(selfp.sink.be)
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if (selfp.sink.stb == 1 and selfp.sink.eop == 1):
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self.packet.done = 1
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class PHY(Module):
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def __init__(self, dw, id, bar0_size, debug):
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self.dw = dw
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self.id = id
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self.bar0_size = bar0_size
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self.bar0_mask = get_bar_mask(bar0_size)
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self.max_request_size = 512
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self.max_payload_size = 128
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self.submodules.phy_source = PHYSource(dw)
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self.submodules.phy_sink = PHYSink(dw)
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self.source = self.phy_source.source
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self.sink = self.phy_sink.sink
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def dwords2packet(self, dwords):
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ratio = self.dw//32
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length = math.ceil(len(dwords)/ratio)
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dat = [0]*length
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be = [0]*length
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for n in range(length):
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for i in reversed(range(ratio)):
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dat[n] = dat[n] << 32
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be[n] = be[n] << 4
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try:
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dat[n] |= dwords[2*n+i]
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be[n] |= 0xF
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except:
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pass
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return dat, be
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def send(self, dwords):
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dat, be = self.dwords2packet(dwords)
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packet = PHYPacket(dat, be)
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self.phy_source.send(packet)
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def send_blocking(self, dwords):
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dat, be = self.dwords2packet(dwords)
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packet = PHYPacket(dat, be)
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yield from self.phy_source.send_blocking(packet)
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def packet2dwords(self, p_dat, p_be):
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ratio = self.dw//32
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dwords = []
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for dat, be in zip(p_dat, p_be):
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for i in range(ratio):
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dword_be = (be >> (4*i)) & 0xf
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dword_dat = (dat >> (32*i)) & 0xffffffff
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if dword_be == 0xf:
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dwords.append(dword_dat)
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return dwords
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def receive(self):
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if self.phy_sink.packet.done:
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self.phy_sink.packet.done = 0
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return self.packet2dwords(self.phy_sink.packet.dat, self.phy_sink.packet.be)
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else:
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return None
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