mirror of
https://github.com/jonathanhogg/scopething
synced 2025-07-14 11:12:09 +01:00
Checkpoint of work in progress
This commit is contained in:
BIN
VM registers.xlsx
Normal file
BIN
VM registers.xlsx
Normal file
Binary file not shown.
6
scope.py
6
scope.py
@ -5,9 +5,7 @@ from streams import SerialStream
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class Scope(object):
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class Scope(object):
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def __init__(self, stream=None):
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def __init__(self, stream):
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if stream is None:
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stream = SerialStream()
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self._stream = stream
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self._stream = stream
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async def reset(self):
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async def reset(self):
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@ -23,7 +21,7 @@ class Scope(object):
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async def main():
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async def main():
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s = Scope()
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s = Scope(SerialStream())
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await s.reset()
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await s.reset()
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print(await s.get_revision())
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print(await s.get_revision())
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31
streams.py
31
streams.py
@ -1,18 +1,29 @@
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import asyncio
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import asyncio
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import glob
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import os
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import serial
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import serial
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import serial.tools.list_ports
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class SerialStream(object):
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class SerialStream:
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def __init__(self, device=None, loop=None, **kwargs):
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@staticmethod
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if device is None:
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def available_ports():
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device = (glob.glob('/dev/tty.usb*') + glob.glob('/dev/ttyUSB*'))[0]
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return [port.device for port in serial.tools.list_ports.comports()]
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self._connection = serial.Serial(device, timeout=0, write_timeout=0, **kwargs)
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def __init__(self, port=-1, loop=None, **kwargs):
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self._device = self.available_ports()[port]
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self._connection = serial.Serial(self._device, timeout=0, write_timeout=0, **kwargs)
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self._loop = loop if loop is not None else asyncio.get_event_loop()
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self._loop = loop if loop is not None else asyncio.get_event_loop()
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self._input_buffer = b''
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self._input_buffer = b''
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def __repr__(self):
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return '<{}:{}>'.format(self.__class__.__name__, self._device)
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def close(self):
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self._connection.close()
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self._connection = None
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async def write(self, data):
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async def write(self, data):
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while data:
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while data:
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n = await self._write(data)
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n = await self._write(data)
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@ -24,7 +35,9 @@ class SerialStream(object):
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return future
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return future
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def _feed_data(self, data, future):
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def _feed_data(self, data, future):
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future.set_result(self._connection.write(data))
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n = self._connection.write(data)
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print('<write: {}>'.format(repr(data[:n])))
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future.set_result(n)
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self._loop.remove_writer(self._connection)
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self._loop.remove_writer(self._connection)
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async def read(self, n=None):
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async def read(self, n=None):
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@ -62,7 +75,9 @@ class SerialStream(object):
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return future
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return future
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def _handle_data(self, n, future):
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def _handle_data(self, n, future):
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future.set_result(self._connection.read(n if n is not None else self._connection.in_waiting))
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data = self._connection.read(n if n is not None else self._connection.in_waiting)
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print('<read: {}>'.format(repr(data)))
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future.set_result(data)
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self._loop.remove_reader(self._connection)
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self._loop.remove_reader(self._connection)
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252
vm.py
Normal file
252
vm.py
Normal file
@ -0,0 +1,252 @@
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import asyncio
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import numpy as np
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import struct
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class VirtualMachine:
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class Transaction:
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def __init__(self, vm):
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self._vm = vm
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def append(self, cmd):
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self._data += cmd
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async def __aenter__(self):
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self._data = b''
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self._vm._transactions.append(self)
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return self
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async def __aexit__(self, exc_type, exc_value, traceback):
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self._vm._transactions.pop()
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if exc_type is None:
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await self._vm.issue(self._data)
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return False
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Registers = {
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"vrTriggerLogic": (1, 0x05, '''Trigger Logic, one bit per channel (0 => Low, 1 => High)''', 'uint'),
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"vrTriggerMask": (1, 0x06, '''Trigger Mask, one bit per channel (0 => Don’t Care, 1 => Active)''', 'uint'),
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"vrSpockOption": (1, 0x07, '''Spock Option Register (see bit definition table for details)''', 'uint'),
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"vrSampleAddress": (3, 0x08, '''Sample address (write) 24 bit''', 'uint'),
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"vrSampleCounter": (3, 0x0b, '''Sample address (read) 24 bit''', 'uint'),
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"vrTriggerIntro": (2, 0x32, '''Edge trigger intro filter counter (samples/2)''', 'uint'),
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"vrTriggerOutro": (2, 0x34, '''Edge trigger outro filter counter (samples/2)''', 'uint'),
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"vrTriggerValue": (2, 0x44, '''Digital (comparator) trigger (signed)''', 'int'),
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"vrTriggerTime": (4, 0x40, '''Stopwatch trigger time (ticks)''', 'uint'),
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"vrClockTicks": (2, 0x2e, '''Master Sample (clock) period (ticks)''', 'uint'),
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"vrClockScale": (2, 0x14, '''Clock divide by N (low byte)''', 'uint'),
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"vrTraceOption": (1, 0x20, '''Trace Mode Option bits''', 'uint'),
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"vrTraceMode": (1, 0x21, '''Trace Mode (see Trace Mode Table)''', 'uint'),
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"vrTraceIntro": (2, 0x26, '''Pre-trigger capture count (samples)''', 'uint'),
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"vrTraceDelay": (4, 0x22, '''Delay period (uS)''', 'uint'),
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"vrTraceOutro": (2, 0x2a, '''Post-trigger capture count (samples)''', 'uint'),
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"vrTimeout": (2, 0x2c, '''Auto trace timeout (auto-ticks)''', 'uint'),
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"vrPrelude": (2, 0x3a, '''Buffer prefill value''', 'uint'),
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"vrBufferMode": (1, 0x31, '''Buffer mode''', 'uint'),
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"vrDumpMode": (1, 0x1e, '''Dump mode''', 'uint'),
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"vrDumpChan": (1, 0x30, '''Dump (buffer) Channel (0..127,128..254,255)''', 'uint'),
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"vrDumpSend": (2, 0x18, '''Dump send (samples)''', 'uint'),
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"vrDumpSkip": (2, 0x1a, '''Dump skip (samples)''', 'uint'),
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"vrDumpCount": (2, 0x1c, '''Dump size (samples)''', 'uint'),
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"vrDumpRepeat": (2, 0x16, '''Dump repeat (iterations)''', 'uint'),
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"vrStreamIdent": (1, 0x36, '''Stream data token''', 'uint'),
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"vrStampIdent": (1, 0x3c, '''Timestamp token''', 'uint'),
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"vrAnalogEnable": (1, 0x37, '''Analog channel enable (bitmap)''', 'uint'),
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"vrDigitalEnable": (1, 0x38, '''Digital channel enable (bitmap)''', 'uint'),
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"vrSnoopEnable": (1, 0x39, '''Frequency (snoop) channel enable (bitmap)''', 'uint'),
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"vpCmd": (1, 0x46, '''Command Vector''', 'uint'),
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"vpMode": (1, 0x47, '''Operation Mode (per command)''', 'uint'),
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"vpOption": (2, 0x48, '''Command Option (bits fields per command)''', 'uint'),
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"vpSize": (2, 0x4a, '''Operation (unit/block) size''', 'uint'),
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"vpIndex": (2, 0x4c, '''Operation index (eg, P Memory Page)''', 'uint'),
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"vpAddress": (2, 0x4e, '''General purpose address''', 'uint'),
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"vpClock": (2, 0x50, '''Sample (clock) period (ticks)''', 'uint'),
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"vpModulo": (2, 0x52, '''Modulo Size (generic)''', 'uint'),
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"vpLevel": (2, 0x54, '''Output (analog) attenuation (unsigned)''', 'uint'),
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"vpOffset": (2, 0x56, '''Output (analog) offset (signed)''', 'int'),
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"vpMask": (2, 0x58, '''Translate source modulo mask''', 'uint'),
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"vpRatio": (4, 0x5a, '''Translate command ratio (phase step)''', 'uint'),
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"vpMark": (2, 0x5e, '''Mark count/phase (ticks/step)''', 'uint'),
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"vpSpace": (2, 0x60, '''Space count/phase (ticks/step)''', 'uint'),
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"vpRise": (2, 0x82, '''Rising edge clock (channel 1) phase (ticks)''', 'uint'),
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"vpFall": (2, 0x84, '''Falling edge clock (channel 1) phase (ticks)''', 'uint'),
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"vpControl": (1, 0x86, '''Clock Control Register (channel 1)''', 'uint'),
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"vpRise2": (2, 0x88, '''Rising edge clock (channel 2) phase (ticks)''', 'uint'),
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"vpFall2": (2, 0x8a, '''Falling edge clock (channel 2) phase (ticks)''', 'uint'),
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"vpControl2": (1, 0x8c, '''Clock Control Register (channel 2)''', 'uint'),
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"vpRise3": (2, 0x8e, '''Rising edge clock (channel 3) phase (ticks)''', 'uint'),
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"vpFall3": (2, 0x90, '''Falling edge clock (channel 3) phase (ticks)''', 'uint'),
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"vpControl3": (1, 0x92, '''Clock Control Register (channel 3)''', 'uint'),
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"vrEepromData": (1, 0x10, '''EE Data Register''', 'uint'),
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"vrEepromAddress": (1, 0x11, '''EE Address Register''', 'uint'),
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"vrConverterLo": (2, 0x64, '''VRB ADC Range Bottom (D Trace Mode)''', 'uint'),
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"vrConverterHi": (2, 0x66, '''VRB ADC Range Top (D Trace Mode)''', 'uint'),
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"vrTriggerLevel": (2, 0x68, '''Trigger Level (comparator, unsigned)''', 'uint'),
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"vrLogicControl": (1, 0x74, '''Logic Control''', 'uint'),
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"vrRest": (2, 0x78, '''DAC (rest) level''', 'uint'),
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"vrKitchenSinkA": (1, 0x7b, '''Kitchen Sink Register A''', 'uint'),
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"vrKitchenSinkB": (1, 0x7c, '''Kitchen Sink Register B''', 'uint'),
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}
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def __init__(self, stream):
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self._stream = stream
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self._transactions = []
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def new_transaction(self):
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return self.Transaction(self)
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async def issue(self, cmd):
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|
if isinstance(cmd, str):
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cmd = cmd.encode('ascii')
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|
if not self._transactions:
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|
await self._stream.write(cmd)
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await self._stream.readuntil(cmd)
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|
else:
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|
self._transactions[-1].append(cmd)
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async def read_reply(self):
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|
return (await self.read_replies(1))[0]
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async def read_replies(self, n):
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|
await self._stream.readuntil(b'\r')
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|
replies = []
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for i in range(n):
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|
replies.append((await self._stream.readuntil(b'\r'))[:-1])
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|
return replies
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|
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async def reset(self):
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|
await self._stream.write(b'!')
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|
await self._stream.readuntil(b'!')
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|
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async def set_register(self, name, value):
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|
width, base, desc, dtype = self.Registers[name]
|
||||||
|
bs = struct.pack('<i' if dtype == 'int' else '<I', value)
|
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|
cmd = '{:02x}@'.format(base) + 'z'.join('{:02x}'.format(bs[i]) for i in range(width)) + 's'
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|
await self.issue(cmd)
|
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|
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|
async def set_registers(self, **kwargs):
|
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|
async with self.new_transaction():
|
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|
for name, value in kwargs.items():
|
||||||
|
await self.set_register(name, value)
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|
||||||
|
async def get_register(self, name):
|
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|
width, base, desc, dtype = self.Registers[name]
|
||||||
|
await self.issue('{:02x}@p'.format(base))
|
||||||
|
bs = []
|
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|
for i in range(width):
|
||||||
|
bs.append(int(await self.read_reply(), 16))
|
||||||
|
if i < width-1:
|
||||||
|
await self.issue(b'np')
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||||||
|
for i in range(4 - width):
|
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|
bs.append(0)
|
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|
value = struct.unpack('<i' if dtype == 'int' else '<I', bytes(bs))[0]
|
||||||
|
return value
|
||||||
|
|
||||||
|
async def get_revision(self):
|
||||||
|
await self.issue(b'?')
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||||||
|
return await self.read_reply()
|
||||||
|
|
||||||
|
async def capture_spock_registers(self):
|
||||||
|
await self.issue(b'<')
|
||||||
|
|
||||||
|
async def program_spock_registers(self):
|
||||||
|
await self.issue(b'>')
|
||||||
|
|
||||||
|
async def configure_device_hardware(self):
|
||||||
|
await self.issue(b'U')
|
||||||
|
|
||||||
|
async def streaming_trace(self):
|
||||||
|
await self.issue(b'T')
|
||||||
|
|
||||||
|
async def triggered_trace(self):
|
||||||
|
await self.issue(b'D')
|
||||||
|
|
||||||
|
async def cancel_trace(self):
|
||||||
|
await self.issue(b'K')
|
||||||
|
|
||||||
|
async def sample_dump_csv(self):
|
||||||
|
await self.issue(b'S')
|
||||||
|
|
||||||
|
async def analog_dump_binary(self):
|
||||||
|
await self.issue(b'S')
|
||||||
|
|
||||||
|
async def read_wavetable(self, size=1024, address=0):
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vpSize=size, vpAddress=address)
|
||||||
|
await self.issue(b'R')
|
||||||
|
return await self._stream.readexactly(size)
|
||||||
|
|
||||||
|
async def write_wavetable(self, data, address=0):
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vpSize=1, vpAddress=address)
|
||||||
|
for byte in data:
|
||||||
|
await self.issue('{:02x}W'.format(byte))
|
||||||
|
|
||||||
|
async def synthesize_wavetable(self, mode='sine', ratio=0.5):
|
||||||
|
mode = {'sine': 0, 'sawtooth': 1, 'exponential': 2, 'square': 3}[mode.lower()]
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vpCmd=0, vpMode=mode, vpRatio=int(max(0, min(ratio, 1))*65535))
|
||||||
|
await self.issue(b'Y')
|
||||||
|
|
||||||
|
async def translate_wavetable(self, ratio, level=1, offset=0, size=0, index=0, address=0):
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vpCmd=0, vpMode=0, vpLevel=int(65535*level), vpOffset=int(65535*offset), vpRatio=ratio,
|
||||||
|
vpSize=size, vpIndex=index, vpAddress=address)
|
||||||
|
await self.issue(b'X')
|
||||||
|
|
||||||
|
async def stop_waveform_generator(self):
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vpCmd=1, vpMode=0)
|
||||||
|
await self.issue(b'Z')
|
||||||
|
|
||||||
|
async def start_waveform_generator(self, clock, modulo, mark, space, rest, option):
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vpCmd=2, vpMode=0, vpClock=clock, vpModulo=modulo,
|
||||||
|
vpMark=mark, vpSpace=space, vrRest=rest, vpOption=option)
|
||||||
|
await self.issue(b'Z')
|
||||||
|
|
||||||
|
async def start_clock_generator(self):
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vpCmd=3, vpMode=0)
|
||||||
|
await self.issue(b'Z')
|
||||||
|
|
||||||
|
async def read_eeprom(self, address):
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vrEepromAddress=address)
|
||||||
|
await self.issue(b'r')
|
||||||
|
return int(await self.read_reply(), 16)
|
||||||
|
|
||||||
|
async def write_eeprom(self, address, data):
|
||||||
|
async with self.new_transaction():
|
||||||
|
await self.set_registers(vrEepromAddress=address, vrEepromData=data)
|
||||||
|
await self.issue(b'w')
|
||||||
|
return int(await self.read_reply(), 16)
|
||||||
|
|
||||||
|
|
||||||
|
async def main():
|
||||||
|
from streams import SerialStream
|
||||||
|
vm = VirtualMachine(SerialStream())
|
||||||
|
await vm.reset()
|
||||||
|
print(await vm.get_revision())
|
||||||
|
print(await vm.get_register('vrConverterLo'))
|
||||||
|
print(await vm.get_register('vrTriggerLevel'))
|
||||||
|
print(await vm.get_register('vrConverterHi'))
|
||||||
|
await vm.set_register('vrTriggerLevel', 15000)
|
||||||
|
print(await vm.get_register('vrTriggerLevel'))
|
||||||
|
n = await vm.read_eeprom(0)
|
||||||
|
print(n)
|
||||||
|
print(await vm.write_eeprom(0, n+1))
|
||||||
|
print(await vm.read_eeprom(0))
|
||||||
|
async with vm.new_transaction():
|
||||||
|
await vm.set_registers(vrKitchenSinkB=0x40)
|
||||||
|
await vm.configure_device_hardware()
|
||||||
|
await vm.synthesize_wavetable('sawtooth')
|
||||||
|
#data = await vm.read_wavetable()
|
||||||
|
#global array
|
||||||
|
#array = np.ndarray(buffer=data, shape=(len(data),), dtype='uint8')
|
||||||
|
#print(array)
|
||||||
|
await vm.translate_wavetable(671088)
|
||||||
|
await vm.start_waveform_generator(clock=40, modulo=1000, mark=10, space=1, rest=0x7f00, option=0x8004)
|
||||||
|
|
||||||
|
if __name__ == '__main__':
|
||||||
|
asyncio.get_event_loop().run_until_complete(main())
|
||||||
|
|
Reference in New Issue
Block a user