mila: test rle
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a880862628
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69009c8405
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@ -23,6 +23,12 @@ class MiLaCtrl():
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mila_trigger_sum_prog_adr_write(self.bus, adr)
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mila_trigger_sum_prog_adr_write(self.bus, adr)
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mila_trigger_sum_prog_dat_write(self.bus, dat)
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mila_trigger_sum_prog_dat_write(self.bus, dat)
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mila_trigger_sum_prog_we_write(self.bus, 1)
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mila_trigger_sum_prog_we_write(self.bus, 1)
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def enable_rle(self):
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mila_rle_enable_write(self.bus, 1)
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def disable_rle(self):
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mila_rle_enable_write(self.bus, 0)
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def is_done(self):
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def is_done(self):
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return mila_recorder_done_read(self.bus)
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return mila_recorder_done_read(self.bus)
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@ -46,6 +52,7 @@ trig_w = 16
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dat_w = 16
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dat_w = 16
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rec_length = 512
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rec_length = 512
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rec_offset = 0
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rec_offset = 0
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rle = True
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#==============================================================================
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#==============================================================================
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# T E S T M I L A
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# T E S T M I L A
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@ -72,6 +79,8 @@ def capture():
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print("Capturing ...")
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print("Capturing ...")
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print("----------------------")
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print("----------------------")
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if rle:
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mila.enable_rle()
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mila.prog_term(0x0000, 0xFFFF)
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mila.prog_term(0x0000, 0xFFFF)
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capture()
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capture()
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@ -82,6 +91,9 @@ mila_layout = [
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("cnt", 8),
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("cnt", 8),
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]
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]
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if rle:
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dat_vcd = dat_vcd.decode_rle()
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myvcd = Vcd()
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myvcd = Vcd()
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myvcd.add_from_layout(mila_layout, dat_vcd)
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myvcd.add_from_layout(mila_layout, dat_vcd)
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myvcd.write("test_mila.vcd")
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myvcd.write("test_mila.vcd")
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@ -55,7 +55,7 @@ class SoC(Module):
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# MiLa
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# MiLa
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term = Term(mila_width)
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term = Term(mila_width)
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self.submodules.mila = MiLa(mila_width, mila_depth, [term])
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self.submodules.mila = MiLa(mila_width, mila_depth, [term], rle=True)
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# Uart2Csr
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# Uart2Csr
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self.submodules.uart2csr = uart2csr.Uart2Csr(clk_freq, 115200)
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self.submodules.uart2csr = uart2csr.Uart2Csr(clk_freq, 115200)
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@ -72,7 +72,7 @@ class SoC(Module):
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self.led = Cat(*[platform.request("user_led", i) for i in range(8)])
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self.led = Cat(*[platform.request("user_led", i) for i in range(8)])
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# Misc
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# Misc
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self.cnt = Signal(9)
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self.cnt = Signal(16)
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self.submodules.freqgen = FreqGen(clk_freq, 500*KHz)
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self.submodules.freqgen = FreqGen(clk_freq, 500*KHz)
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self.submodules.eventgen_rising = EventGen(RISING_EDGE, clk_freq, 100*ns)
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self.submodules.eventgen_rising = EventGen(RISING_EDGE, clk_freq, 100*ns)
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self.submodules.eventgen_falling = EventGen(FALLING_EDGE, clk_freq, 100*ns)
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self.submodules.eventgen_falling = EventGen(FALLING_EDGE, clk_freq, 100*ns)
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@ -103,7 +103,7 @@ class SoC(Module):
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self.freqgen.o,
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self.freqgen.o,
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self.eventgen_rising.o,
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self.eventgen_rising.o,
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self.eventgen_falling.o,
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self.eventgen_falling.o,
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self.cnt)
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self.cnt[8:12])
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)
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)
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]
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]
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self.sync += self.cnt.eq(self.cnt+1)
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self.sync += self.cnt.eq(self.cnt+1)
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@ -5,30 +5,46 @@ from migen.bus import csr
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from migen.bank import description, csrgen
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from migen.bank import description, csrgen
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from migen.bank.description import *
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from migen.bank.description import *
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from miscope.std import *
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from miscope.trigger import Trigger
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from miscope.trigger import Trigger
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from miscope.storage import Recorder
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from miscope.storage import RunLengthEncoder, Recorder
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class MiLa(Module, AutoCSR):
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class MiLa(Module, AutoCSR):
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def __init__(self, width, depth, ports):
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def __init__(self, width, depth, ports, rle=False):
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self.width = width
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self.width = width
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self.sink = rec_dat(width)
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trigger = Trigger(width, ports)
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trigger = Trigger(width, ports)
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recorder = Recorder(width, depth)
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recorder = Recorder(width, depth)
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self.submodules.trigger = trigger
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self.submodules.trigger = trigger
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self.submodules.recorder = recorder
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self.submodules.recorder = recorder
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self.sink = trigger.sink
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self.comb +=[
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self.comb += [
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recorder.sink.stb.eq(trigger.source.stb),
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trigger.sink.stb.eq(self.sink.stb),
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recorder.sink.hit.eq(trigger.source.hit),
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trigger.sink.dat.eq(self.sink.dat),
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trigger.source.ack.eq(recorder.sink.ack)
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recorder.trig_sink.stb.eq(trigger.source.stb),
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recorder.trig_sink.hit.eq(trigger.source.hit),
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trigger.source.ack.eq(recorder.trig_sink.ack),
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self.sink.ack.eq(1), #FIXME
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]
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]
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# Todo; Insert configurable delay to support pipelined
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if rle:
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# triggers elements
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self.submodules.rle = RunLengthEncoder(width, 1024)
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self.comb +=[
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self.comb +=[
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recorder.sink.dat.eq(self.sink.dat),
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self.rle.sink.stb.eq(self.sink.stb),
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]
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self.rle.sink.dat.eq(self.sink.dat),
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recorder.dat_sink.stb.eq(self.rle.source.stb),
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recorder.dat_sink.dat.eq(self.rle.source.dat),
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]
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else:
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self.comb +=[
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recorder.dat_sink.stb.eq(self.sink.stb),
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recorder.dat_sink.dat.eq(self.sink.dat),
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]
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@ -50,7 +50,7 @@ class VcdDat(list):
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for d in self:
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for d in self:
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if rle_bit[i]:
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if rle_bit[i]:
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if len(dat) >= 1:
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if len(dat) >= 1:
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# FIX ME... why is rle_dat in reverse orderd...
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# FIX ME... why is rle_dat in reverse order...
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for j in range(int(dec2bin(rle_dat[i])[::-1],2)):
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for j in range(int(dec2bin(rle_dat[i])[::-1],2)):
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dat.append(last)
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dat.append(last)
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else:
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else:
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@ -9,7 +9,7 @@ from migen.genlib.fifo import SyncFIFO
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from miscope.std import *
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from miscope.std import *
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class RunLenghEncoder(Module, AutoCSR):
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class RunLengthEncoder(Module, AutoCSR):
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def __init__(self, width, length):
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def __init__(self, width, length):
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self.width = width
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self.width = width
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self.length = length
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self.length = length
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@ -30,26 +30,28 @@ class RunLenghEncoder(Module, AutoCSR):
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dat_i_d = Signal(width)
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dat_i_d = Signal(width)
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self.sync += [
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self.sync += [
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dat_i_d.eq(dat_i),
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If(stb_i,
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stb_i_d.eq(stb_i)
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dat_i_d.eq(dat_i),
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stb_i_d.eq(stb_i)
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)
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]
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]
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# Detect change
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# Detect change
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change = Signal()
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change = Signal()
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comb = [diff.eq(stb_i & (~enable | (dat_i_d != dat_i)))]
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self.comb += [change.eq(stb_i & (~enable | (dat_i_d != dat_i)))]
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change_d = Signal()
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change_d = Signal()
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change_rising = Signal()
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change_rising = Signal()
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self.sync += change_d.eq(change)
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self.sync += If(stb_i, change_d.eq(change))
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self.comb += change_rising.eq(change & ~change_d)
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self.comb += change_rising.eq(stb_i & (change & ~change_d))
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# Generate RLE word
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# Generate RLE word
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rle_cnt = Signal(max=length)
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rle_cnt = Signal(max=length)
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rle_max = Signal()
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rle_max = Signal()
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comb +=[If(rle_cnt == length, rle_max.eq(enable))]
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self.comb +=[If(rle_cnt == length, rle_max.eq(enable))]
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sync +=[
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self.sync +=[
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If(change | rle_max,
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If(change | rle_max,
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rle_cnt.eq(0)
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rle_cnt.eq(0)
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).Else(
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).Else(
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@ -62,7 +64,7 @@ class RunLenghEncoder(Module, AutoCSR):
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dat_o = self.source.dat
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dat_o = self.source.dat
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ack_o = self.source.ack
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ack_o = self.source.ack
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comb +=[
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self.comb +=[
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If(change_rising & ~rle_max,
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If(change_rising & ~rle_max,
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stb_o.eq(1),
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stb_o.eq(1),
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dat_o[width-1].eq(1),
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dat_o[width-1].eq(1),
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@ -80,7 +82,8 @@ class Recorder(Module, AutoCSR):
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def __init__(self, width, depth):
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def __init__(self, width, depth):
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self.width = width
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self.width = width
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self.sink = rec_dat_hit(width)
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self.trig_sink = rec_hit()
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self.dat_sink = rec_dat(width)
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self._r_trigger = CSR()
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self._r_trigger = CSR()
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self._r_length = CSRStorage(bits_for(depth))
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self._r_length = CSRStorage(bits_for(depth))
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@ -107,9 +110,9 @@ class Recorder(Module, AutoCSR):
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# Fifo must always be pulled by software between
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# Fifo must always be pulled by software between
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# acquisition (Todo: add a flush funtionnality)
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# acquisition (Todo: add a flush funtionnality)
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self.comb +=[
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self.comb +=[
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fifo.we.eq(self.sink.stb & ~done),
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fifo.we.eq(self.dat_sink.stb & ~done),
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fifo.din.eq(self.sink.dat),
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fifo.din.eq(self.dat_sink.dat),
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self.sink.ack.eq(1)
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self.dat_sink.ack.eq(fifo.writable)
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]
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]
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# Done, Ongoing:
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# Done, Ongoing:
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@ -132,8 +135,9 @@ class Recorder(Module, AutoCSR):
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If(self._r_trigger.re & self._r_trigger.r, done.eq(0)
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If(self._r_trigger.re & self._r_trigger.r, done.eq(0)
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).Elif(cnt==length, done.eq(1)),
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).Elif(cnt==length, done.eq(1)),
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If(self.sink.stb & self.sink.hit & ~done, ongoing.eq(1)
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If(self.trig_sink.stb & self.trig_sink.hit & ~done, ongoing.eq(1)
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).Elif(done, ongoing.eq(0)),
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).Elif(done, ongoing.eq(0)),
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self.trig_sink.ack.eq(1)
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]
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]
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# fifo ack & csr connection
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# fifo ack & csr connection
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@ -18,7 +18,7 @@ class Term(Module, AutoCSR):
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self._r_trig = CSRStorage(width)
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self._r_trig = CSRStorage(width)
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self._r_mask = CSRStorage(width)
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self._r_mask = CSRStorage(width)
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###
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###
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trig = self._r_trig.storage
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trig = self._r_trig.storage
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mask = self._r_mask.storage
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mask = self._r_mask.storage
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@ -0,0 +1,49 @@
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from migen.fhdl.std import *
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from migen.fhdl import verilog
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from migen.sim.generic import Simulator, TopLevel
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from migen.sim.icarus import Runner
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from miscope.storage import RunLengthEncoder
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rle_test_seq = iter(
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[ 0x00AA,
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0x00AB,
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0x00AC,
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0x00AC,
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0x00AC,
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0x00AC,
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0x00AD,
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0x00AE,
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0x00AE,
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0x00AE,
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0x00AE,
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0x00AE,
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0x00AE,
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0x00AE,
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0x00AE
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]*10
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)
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class TB(Module):
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def __init__(self):
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# Rle
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self.submodules.rle = RunLengthEncoder(16, 32)
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def do_simulation(self, s):
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s.wr(self.rle._r_enable.storage, 1)
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s.wr(self.rle.sink.stb, 1)
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try:
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s.wr(self.rle.sink.dat, next(rle_test_seq))
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except:
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pass
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def main():
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tb = TB()
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sim = Simulator(tb, TopLevel("tb_rle.vcd"))
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sim.run(2000)
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print("Sim Done")
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input()
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main()
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