soc/cores/xadc.py: Move ussysmon here
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@ -14,7 +14,43 @@ from litex.soc.interconnect.csr import *
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analog_layout = [("vauxp", 16), ("vauxn", 16), ("vp", 1), ("vn", 1)]
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class XADC(Module, AutoCSR):
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class _XADC(Module, AutoCSR):
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def expose_drp(self):
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self.drp_enable = CSRStorage() # Set to 1 to use DRP and disable auto-sampling
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self.drp_read = CSR()
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self.drp_write = CSR()
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self.drp_drdy = CSRStatus()
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self.drp_adr = CSRStorage(self.dadr_size, reset_less=True)
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self.drp_dat_w = CSRStorage(16, reset_less=True)
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self.drp_dat_r = CSRStatus(16)
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# # #
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den_pipe = Signal() # add a register to ease timing closure of den
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self.comb += [
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self.di.eq(self.drp_dat_w.storage),
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self.drp_dat_r.status.eq(self.do),
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If(self.drp_en,
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self.den.eq(den_pipe),
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self.dadr.eq(self.drp_adr.storage),
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)
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]
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self.sync += [
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self.dwe.eq(self.drp_write.re),
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self.drp_en.eq(self.drp_enable.storage),
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den_pipe.eq(self.drp_read.re | self.drp_write.re),
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If(self.drp_read.re | self.drp_write.re,
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self.drp_drdy.status.eq(0)
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).Elif(self.drdy,
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self.drp_drdy.status.eq(1)
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)
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]
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class XADC(_XADC, AutoCSR):
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dadr_size = 7
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def __init__(self, analog_pads=None):
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# Temperature
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self.temperature = CSRStatus(12, description="""Raw Temperature value from XADC.\n
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@ -112,34 +148,112 @@ class XADC(Module, AutoCSR):
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self.eos.status.eq((self.eos.status & ~self.eos.we) | eos),
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]
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def expose_drp(self):
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self.drp_enable = CSRStorage() # Set to 1 to use DRP and disable auto-sampling
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self.drp_read = CSR()
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self.drp_write = CSR()
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self.drp_drdy = CSRStatus()
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self.drp_adr = CSRStorage(7, reset_less=True)
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self.drp_dat_w = CSRStorage(16, reset_less=True)
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self.drp_dat_r = CSRStatus(16)
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class USSYSMON(_XADC, AutoCSR):
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dadr_size = 8
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def __init__(self, analog_pads=None):
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# Temperature
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self.temperature = CSRStatus(10, description="""Raw Temperature value from SYSMONE1.\n
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Temperature (°C) = ``Value`` x 503.975 / 1024 - 273.15.""")
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# Voltages
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self.vccint = CSRStatus(10, description="""Raw VCCINT value from SYSMONE1.\n
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VCCINT (V) = ``Value`` x 3 / 1024.""")
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self.vccaux = CSRStatus(10, description="""Raw VCCAUX value from SYSMONE1.\n
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VCCAUX (V) = ``Value`` x 3 / 1024.""")
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self.vccbram = CSRStatus(10, description="""Raw VCCBRAM value from SYSMONE1.\n
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VCCBRAM (V) = ``Value`` x 3 / 1024.""")
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self.vccpsintlp = CSRStatus(10, description="""Raw VCCPSINTLP value from SYSMONE1.\n
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VCCPSINTLP (V) = ``Value`` x 3 / 1024.""")
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self.vccpsintfp = CSRStatus(10, description="""Raw VCCPSINTFP value from SYSMONE1.\n
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VCCPSINTFP (V) = ``Value`` x 3 / 1024.""")
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self.vccpsaux = CSRStatus(10, description="""Raw VCCPSAUX value from SYSMONE1.\n
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VCCPSAUX (V) = ``Value`` x 3 / 1024.""")
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# End of Convertion/Sequence
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self.eoc = CSRStatus(description="End of Conversion Status, ``1``: Conversion Done.")
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self.eos = CSRStatus(description="End of Sequence Status, ``1``: Sequence Done.")
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# Alarms
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self.alarm = Signal(16)
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self.ot = Signal()
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# # #
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den_pipe = Signal() # add a register to ease timing closure of den
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busy = Signal()
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channel = Signal(self.dadr_size)
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eoc = Signal()
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eos = Signal()
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# SYSMONE1 instance ----------------------------------------------------------------------------
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self.dwe = Signal()
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self.den = Signal()
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self.drdy = Signal()
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self.dadr = Signal(self.dadr_size)
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self.di = Signal(16)
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self.do = Signal(16)
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self.drp_en = Signal()
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self.specials += Instance("SYSMONE1",
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# From ug580
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p_INIT_40=0x9000, p_INIT_41=0x2fd0, p_INIT_42=0x1000,
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p_INIT_46=0x000f, p_INIT_48=0x4701, p_INIT_49=0x000f,
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p_INIT_47=0x000f, p_INIT_4A=0x47e0, p_INIT_4B=0x0000,
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p_INIT_4C=0x0000, p_INIT_4D=0x0000,
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p_INIT_4E=0x0000, p_INIT_4F=0x0000,
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p_INIT_50=0xb5ed, p_INIT_51=0x5999,
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p_INIT_52=0xa147, p_INIT_53=0xdddd,
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p_INIT_54=0xa93a, p_INIT_55=0x5111,
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p_INIT_56=0x91eb, p_INIT_57=0xae4e,
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p_INIT_58=0x5999, p_INIT_5C=0x5111,
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o_ALM = self.alarm,
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o_OT = self.ot,
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o_BUSY = busy,
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o_CHANNEL = channel,
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o_EOC = eoc,
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o_EOS = eos,
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i_VAUXP = 0 if analog_pads is None else analog_pads.vauxp,
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i_VAUXN = 0 if analog_pads is None else analog_pads.vauxn,
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i_VP = 0 if analog_pads is None else analog_pads.vp,
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i_VN = 0 if analog_pads is None else analog_pads.vn,
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i_CONVST = 0,
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i_CONVSTCLK = 0,
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i_RESET = ResetSignal(),
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i_DCLK = ClockSignal(),
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i_DWE = self.dwe,
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i_DEN = self.den,
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o_DRDY = self.drdy,
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i_DADDR = self.dadr,
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i_DI = self.di,
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o_DO = self.do
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)
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self.comb += [
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self.di.eq(self.drp_dat_w.storage),
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self.drp_dat_r.status.eq(self.do),
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If(self.drp_en,
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self.den.eq(den_pipe),
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self.dadr.eq(self.drp_adr.storage),
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If(~self.drp_en,
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self.den.eq(eoc),
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self.dadr.eq(channel),
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)
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]
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# Channels update --------------------------------------------------------------------------
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channels = {
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0: self.temperature,
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1: self.vccint,
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2: self.vccaux,
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6: self.vccbram,
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0xd: self.vccpsintlp,
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0xe: self.vccpsintfp,
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0xf: self.vccpsaux,
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}
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self.sync += [
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self.dwe.eq(self.drp_write.re),
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self.drp_en.eq(self.drp_enable.storage),
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den_pipe.eq(self.drp_read.re | self.drp_write.re),
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If(self.drp_read.re | self.drp_write.re,
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self.drp_drdy.status.eq(0)
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).Elif(self.drdy,
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self.drp_drdy.status.eq(1)
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If(self.drdy,
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Case(channel, dict(
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(k, v.status.eq((self.do >> 6) & 0x3ff))
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for k, v in channels.items()))
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)
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]
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# End of Convertion/Sequence update --------------------------------------------------------
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self.sync += [
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self.eoc.status.eq((self.eoc.status & ~self.eoc.we) | eoc),
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self.eos.status.eq((self.eos.status & ~self.eos.we) | eos),
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]
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