]> sigrok.org Git - libsigrokdecode.git/blame - decoders/midi/pd.py
Drop obsolete report() method.
[libsigrokdecode.git] / decoders / midi / pd.py
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1##
2## This file is part of the libsigrokdecode project.
3##
4## Copyright (C) 2013 Uwe Hermann <uwe@hermann-uwe.de>
5##
6## This program is free software; you can redistribute it and/or modify
7## it under the terms of the GNU General Public License as published by
8## the Free Software Foundation; either version 2 of the License, or
9## (at your option) any later version.
10##
11## This program is distributed in the hope that it will be useful,
12## but WITHOUT ANY WARRANTY; without even the implied warranty of
13## MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14## GNU General Public License for more details.
15##
16## You should have received a copy of the GNU General Public License
17## along with this program; if not, write to the Free Software
18## Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
19##
20
21# MIDI protocol decoder
22
23import sigrokdecode as srd
24from .lists import *
25
26RX = 0
27TX = 1
28
29class Decoder(srd.Decoder):
30 api_version = 1
31 id = 'midi'
32 name = 'MIDI'
33 longname = 'Musical Instrument Digital Interface'
34 desc = 'Musical Instrument Digital Interface (MIDI) protocol.'
35 license = 'gplv2+'
36 inputs = ['uart']
37 outputs = ['midi']
38 probes = []
39 optional_probes = []
40 options = {}
41 annotations = [
42 ['Text (verbose)', 'Human-readable text (verbose)'],
43 # ['Text', 'Human-readable text'],
44 ]
45
46 def __init__(self, **kwargs):
47 self.cmd = []
48 self.state = 'IDLE'
49 self.ss = None
50 self.es = None
51 self.ss_block = None
52 self.es_block = None
53
8915b346 54 def start(self):
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55 # self.out_proto = self.register(srd.OUTPUT_PYTHON)
56 self.out_ann = self.register(srd.OUTPUT_ANN)
17f5df4f 57
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58 def putx(self, data):
59 self.put(self.ss_block, self.es_block, self.out_ann, data)
60
61 def handle_channel_msg_0x80(self):
62 # Note off: 8n kk vv
63 # n = channel, kk = note, vv = velocity
64 c = self.cmd
65 if len(c) < 3:
66 return
67 self.es_block = self.es
68 msg, chan, note, velocity = c[0] & 0xf0, (c[0] & 0x0f) + 1, c[1], c[2]
69 self.putx([0, ['Channel %d: %s (note = %d, velocity = %d)' % \
70 (chan, status_bytes[msg], note, velocity)]])
71 self.cmd, self.state = [], 'IDLE'
72
73 def handle_channel_msg_0x90(self):
74 # Note on: 9n kk vv
75 # n = channel, kk = note, vv = velocity
76 # If velocity == 0 that actually means 'note off', though.
77 c = self.cmd
78 if len(c) < 3:
79 return
80 self.es_block = self.ss
81 msg, chan, note, velocity = c[0] & 0xf0, (c[0] & 0x0f) + 1, c[1], c[2]
82 s = 'note off' if (velocity == 0) else status_bytes[msg]
83 self.putx([0, ['Channel %d: %s (note = %d, velocity = %d)' % \
84 (chan, s, note, velocity)]])
85 self.cmd, self.state = [], 'IDLE'
86
87 def handle_channel_msg_0xa0(self):
88 # Polyphonic key pressure / aftertouch: An kk vv
89 # n = channel, kk = polyphonic key pressure, vv = pressure value
90 pass # TODO
91
92 def handle_controller_0x44(self):
93 # Legato footswitch: Bn 44 vv
94 # n = channel, vv = value (<= 0x3f: normal, > 0x3f: legato)
95 chan, vv = (self.cmd[0] & 0x0f) + 1, self.cmd[2]
96 t = 'normal' if vv <= 0x3f else 'legato'
97 self.putx([0, ['Channel %d: control function \'%s\' = %s' % \
98 (chan, control_functions[0x44], t)]])
99
100 def handle_controller_0x54(self):
101 # Portamento control (PTC): Bn 54 kk
102 # n = channel, kk = source note for pitch reference
103 chan, kk = (self.cmd[0] & 0x0f) + 1, self.cmd[2]
104 self.putx([0, ['Channel %d: control function \'%s\' (source note ' \
105 '= %d)' % (chan, control_functions[0x54], kk)]])
106
107 def handle_controller_generic(self):
108 c = self.cmd
109 chan, fn, param = (c[0] & 0x0f) + 1, c[1], c[2]
110 ctrl_fn = control_functions.get(fn, 'undefined')
111 self.putx([0, ['Channel %d: control change to function \'%s\' ' \
112 '(param = 0x%02x)' % (chan, ctrl_fn, param)]])
113
114 def handle_channel_msg_0xb0(self):
115 # Control change (or channel mode messages): Bn cc vv
116 # n = channel, cc = control number (0 - 119), vv = control value
117 c = self.cmd
118 if (len(c) >= 2) and (c[1] in range(0x78, 0x7f + 1)):
119 # This is not a control change, but rather a channel mode message.
120 # TODO: Handle channel mode messages.
121 return
122 if len(c) < 3:
123 return
124 self.es_block = self.es
125 handle_ctrl = getattr(self, 'handle_controller_0x%02x' % c[1],
126 self.handle_controller_generic)
127 handle_ctrl()
128 self.cmd, self.state = [], 'IDLE'
129
130 def handle_channel_msg_0xc0(self):
131 # Program change: Cn pp
132 # n = channel, pp = program number (0 - 127)
133 pass # TODO
134
135 def handle_channel_msg_0xd0(self):
136 # Channel pressure / aftertouch: Dn vv
137 # n = channel, vv = pressure value
138 pass # TODO
139
140 def handle_channel_msg_0xe0(self):
141 # Pitch bend change: En ll mm
142 # n = channel, ll = pitch bend change LSB, mm = pitch bend change MSB
143 pass # TODO
144
145 def handle_channel_msg_generic(self):
146 msg_type = self.cmd[0] & 0xf0
147 self.putx([0, ['Unknown channel message type: 0x%02x' % msg_type]])
148 # TODO: Handle properly.
149
150 def handle_channel_msg(self, newbyte):
151 self.cmd.append(newbyte)
152 msg_type = self.cmd[0] & 0xf0
153 handle_msg = getattr(self, 'handle_channel_msg_0x%02x' % msg_type,
154 self.handle_channel_msg_generic)
155 handle_msg()
156
157 def handle_sysex_msg(self, newbyte):
158 # SysEx message: 1 status byte, x data bytes, EOX byte
159 self.cmd.append(newbyte)
160 if newbyte != 0xf7: # EOX
161 return
162 self.es_block = self.es
163 # TODO: Get message ID, vendor ID, message contents, etc.
164 self.putx([0, ['SysEx message']])
165 self.cmd, self.state = [], 'IDLE'
166
167 def handle_syscommon_msg(self, newbyte):
168 pass # TODO
169
170 def handle_sysrealtime_msg(self, newbyte):
171 # System realtime message: 0b11111ttt (t = message type)
172 self.es_block = self.ss
173 self.putx([0, ['System realtime message: %s' % status_bytes[newbyte]]])
174 self.cmd, self.state = [], 'IDLE'
175
176 def decode(self, ss, es, data):
177 ptype, rxtx, pdata = data
178
179 # For now, ignore all UART packets except the actual data packets.
180 if ptype != 'DATA':
181 return
182
183 self.ss, self.es = ss, es
184
185 # Short MIDI overview:
186 # - Status bytes are 0x80-0xff, data bytes are 0x00-0x7f.
187 # - Most messages: 1 status byte, 1-2 data bytes.
188 # - Real-time system messages: always 1 byte.
189 # - SysEx messages: 1 status byte, n data bytes, EOX byte.
190
191 # State machine.
192 if self.state == 'IDLE':
193 # Wait until we see a status byte (bit 7 must be set).
194 if pdata < 0x80:
195 return # TODO: How to handle? Ignore?
196 # This is a status byte, remember the start sample.
197 self.ss_block = ss
198 if pdata in range(0x80, 0xef + 1):
199 self.state = 'HANDLE CHANNEL MSG'
200 elif pdata == 0xf0:
201 self.state = 'HANDLE SYSEX MSG'
202 elif pdata in range(0xf1, 0xf7 + 1):
203 self.state = 'HANDLE SYSCOMMON MSG'
204 elif pdata in range(0xf8, 0xff + 1):
205 self.state = 'HANDLE SYSREALTIME MSG'
206
207 # Yes, this is intentionally _not_ an 'elif' here.
208 if self.state == 'HANDLE CHANNEL MSG':
209 self.handle_channel_msg(pdata)
210 elif self.state == 'HANDLE SYSEX MSG':
211 self.handle_sysex_msg(pdata)
212 elif self.state == 'HANDLE SYSCOMMON MSG':
213 self.handle_syscommon_msg(pdata)
214 elif self.state == 'HANDLE SYSREALTIME MSG':
215 self.handle_sysrealtime_msg(pdata)
216 else:
217 raise Exception('Invalid state: %s' % self.state)
218