picadae/control/app/picadae_shell.py

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##| Copyright: (C) 2018-2020 Kevin Larke <contact AT larke DOT org>
##| License: GNU GPL version 3.0 or above. See the accompanying LICENSE file.
import os,sys,argparse,yaml,types,select,serial,logging,time
from picadae_api import Picadae
from picadae_api import Result
class PicadaeShell:
def __init__( self, cfg ):
self.p = None
self.parseD = {
'q':{ "func":None, "minN":0, "maxN":0, "help":"quit"},
'?':{ "func":"_help", "minN":0, "maxN":0, "help":"Print usage text."},
'w':{ "func":"_write", "minN":-1, "maxN":-1,"help":"write <i2c_addr> <reg_addr> <data0> ... <dataN>"},
'r':{ "func":"_read", "minN":4, "maxN":4, "help":"read <i2c_addr> <src> <reg_addr> <byteN> src: 0=reg_array 1=vel_table 2=eeprom"},
'v':{ "func":"note_on_vel", "minN":2, "maxN":2, "help":"note-on <pitch> <vel>"},
'u':{ "func":"note_on_us", "minN":2, "maxN":3, "help":"note-on <pitch> <usec> <prescale> (1=1, 2=8 .5us, 3=64 4us,(4)=256 16us, 5=1024 64us)"},
'o':{ "func":"note_off", "minN":1, "maxN":1, "help":"note-off <pitch>"},
'T':{ "func":"set_vel_map", "minN":3, "maxN":3, "help":"table <pitch> <vel> <usec>"},
't':{ "func":"get_vel_map", "minN":2, "maxN":2, "help":"table <pitch> <vel>"},
'D':{ "func":"set_pwm_duty", "minN":2, "maxN":4, "help":"duty <pitch> <percent> {<hz> {<div>}} " },
'd':{ "func":"get_pwm_duty", "minN":1, "maxN":1, "help":"duty <pitch>"},
'H':{ "func":"set_hold_delay", "minN":2, "maxN":2, "help":"hold delay <pitch> <usec>"},
'h':{ "func":"get_hold_delay", "minN":1, "maxN":1, "help":"hold delay <pitch>"},
'F':{ "func":"set_pwm_freq", "minN":2, "maxN":2, "help":"pwm freq <pitch> <hz> 254=~123Hz"},
'f':{ "func":"get_pwm_freq", "minN":1, "maxN":1, "help":"pwm freq <pitch>"},
'I':{ "func":"set_pwm_div", "minN":2, "maxN":2, "help":"pwm div <pitch> <div> div:2=2,3=4,4=8,(5)=16 1us,6=32,7=64,8=128,9=256,10=512 32us, 11=1024,12=2048,13=4096,14=8192,15=16384"},
'i':{ "func":"get_pwm_div", "minN":1, "maxN":1, "help":"pwm div <pitch>"},
'W':{ "func":"write_table", "minN":1, "maxN":1, "help":"write_table <pitch>"},
'N':{ "func":"make_note", "minN":3, "maxN":3, "help":"note <pitch> <atkUs> <durMs>"},
'S':{ "func":"make_seq", "minN":5, "maxN":5, "help":"seq <pitch> <atkUs> <durMs> <deltaUs> <note_count>"},
'L':{ "func":"set_log_level", "minN":1, "maxN":1, "help":"log <level> (0-1)."}
}
def _help( self, _=None ):
for k,d in self.parseD.items():
s = "{} = {}".format( k, d['help'] )
print(s)
return Result()
def _write( self, argL ):
return self.p.write(argL[0], argL[1], argL[2:])
def _read( self, i2c_addr, src_id, reg_addr, byteN ):
return self.p.block_on_picadae_read(i2c_addr, src_id, reg_addr, byteN)
def _syntaxError( self, msg ):
print("Syntax Error: " + msg )
return Result()
def _exec_cmd( self, tokL ):
result = Result()
if len(tokL) <= 0:
return None
opcode = tokL[0]
if opcode not in self.parseD:
return self._syntaxError("Unknown opcode: '{}'.".format(opcode))
d = self.parseD[ opcode ]
func_name = d['func']
func = None
# find the function associated with this command
if hasattr(self, func_name ):
func = getattr(self, func_name )
elif hasattr(self.p, func_name ):
func = getattr(self.p, func_name )
else:
return self._syntaxError("Exec function not found: '{}'.".format(func_name))
try:
# convert the parameter list into integers
argL = [ int(tokL[i]) for i in range(1,len(tokL)) ]
except:
return self._syntaxError("Unable to create integer arguments.")
# validate the count of command args
if d['minN'] != -1 and (d['minN'] > len(argL) or len(argL) > d['maxN']):
return self._syntaxError("Argument count mismatch. {} is out of range:{} to {}".format(len(argL),d['minN'],d['maxN']))
# call the command function
result = func(*argL)
return result
def run( self ):
# create the API object
self.p = Picadae( cfg.key_mapL, cfg.i2c_base_addr, cfg.serial_dev, cfg.serial_baud, cfg.prescaler_usec )
# wait for the letter 'a' to come back from the serial port
result = self.p.wait_for_serial_sync(timeoutMs=cfg.serial_sync_timeout_ms)
if not result:
print("Serial port sync failed.")
else:
print(result.value)
print("'q'=quit '?'=help")
time_out_secs = 1
while True:
# wait for keyboard activity
i, o, e = select.select( [sys.stdin], [], [], time_out_secs )
if (i):
# read the command
s = sys.stdin.readline().strip()
# tokenize the command
tokL = s.split(' ')
# if this is the 'quit' command
if tokL[0] == 'q':
break
# execute the command
result = self._exec_cmd( tokL )
if result.value:
print(result.value)
self.p.close()
def parse_args():
"""Parse the command line arguments."""
descStr = """Picadae auto-calibrate."""
logL = ['debug','info','warning','error','critical']
ap = argparse.ArgumentParser(description=descStr)
ap.add_argument("-s","--setup", default="picadae_cmd.yml", help="YAML configuration file.")
ap.add_argument("-c","--cmd", nargs="*", help="Give a command as multiple tokens")
ap.add_argument("-r","--run", help="Run a named command list from the setup file.")
ap.add_argument("-l","--log_level",choices=logL, default="warning", help="Set logging level: debug,info,warning,error,critical. Default:warning")
return ap.parse_args()
def parse_yaml_cfg( fn ):
"""Parse the YAML configuration file."""
cfg = None
with open(fn,"r") as f:
cfgD = yaml.load(f, Loader=yaml.FullLoader)
cfg = types.SimpleNamespace(**cfgD['picadae_cmd'])
return cfg
if __name__ == "__main__":
args = parse_args()
cfg = parse_yaml_cfg( args.setup )
app = PicadaeShell(cfg)
app.run()