Copyright Echo Digital Audio Corporation (c) 1998 - 2004 All rights reserved www.echoaudio.com
This file is part of Echo Digital Audio's generic driver library.
Echo Digital Audio's generic driver library is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation.
This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details.
You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
/* Send a buffer full of MIDI data to the DSP
Returns how many actually written or < 0 on error */ staticint write_midi(struct echoaudio *chip, u8 *data, int bytes)
{ if (snd_BUG_ON(bytes <= 0 || bytes >= MIDI_OUT_BUFFER_SIZE)) return -EINVAL;
if (wait_handshake(chip)) return -EIO;
/* HF4 indicates that it is safe to write MIDI output data */ if (! (get_dsp_register(chip, CHI32_STATUS_REG) & CHI32_STATUS_REG_HF4)) return 0;
/* Run the state machine for MIDI input data MIDI time code sync isn't supported by this code right now, but you still need this state machine to parse the incoming MIDI data stream. Every time the DSP sees a 0xF1 byte come in, it adds the DSP sample position to the MIDI data stream. The DSP sample position is represented as a 32 bit unsigned value, with the high 16 bits first, followed by the low 16 bits. Since these aren't
real MIDI bytes, the following logic is needed to skip them. */ staticinlineint mtc_process_data(struct echoaudio *chip, short midi_byte)
{ switch (chip->mtc_state) { case MIDI_IN_STATE_NORMAL: if (midi_byte == 0xF1)
chip->mtc_state = MIDI_IN_STATE_TS_HIGH; break; case MIDI_IN_STATE_TS_HIGH:
chip->mtc_state = MIDI_IN_STATE_TS_LOW; return MIDI_IN_SKIP_DATA; break; case MIDI_IN_STATE_TS_LOW:
chip->mtc_state = MIDI_IN_STATE_F1_DATA; return MIDI_IN_SKIP_DATA; break; case MIDI_IN_STATE_F1_DATA:
chip->mtc_state = MIDI_IN_STATE_NORMAL; break;
} return 0;
}
/* This function is called from the IRQ handler and it reads the midi data
from the DSP's buffer. It returns the number of bytes received. */ staticint midi_service_irq(struct echoaudio *chip)
{ shortint count, midi_byte, i, received;
/* The count is at index 0, followed by actual data */
count = le16_to_cpu(chip->comm_page->midi_input[0]);
if (snd_BUG_ON(count >= MIDI_IN_BUFFER_SIZE)) return 0;
/* Get the MIDI data from the comm page */
received = 0; for (i = 1; i <= count; i++) { /* Get the MIDI byte */
midi_byte = le16_to_cpu(chip->comm_page->midi_input[i]);
/* Parse the incoming MIDI stream. The incoming MIDI data consists of MIDI bytes and timestamps for the MIDI time code 0xF1 bytes. mtc_process_data() is a little state machine that parses the stream. If you get MIDI_IN_SKIP_DATA back, then this is a timestamp byte, not a MIDI byte, so don't store it
in the MIDI input buffer. */ if (mtc_process_data(chip, midi_byte) == MIDI_IN_SKIP_DATA) continue;
/* No interrupts are involved: we have to check at regular intervals
if the card's output buffer has room for new data. */
sent = 0;
spin_lock_irqsave(&chip->lock, flags);
chip->midi_full = 0; if (!snd_rawmidi_transmit_empty(chip->midi_out)) {
bytes = snd_rawmidi_transmit_peek(chip->midi_out, buf,
MIDI_OUT_BUFFER_SIZE - 1);
dev_dbg(chip->card->dev, "Try to send %d bytes...\n", bytes);
sent = write_midi(chip, buf, bytes); if (sent < 0) {
dev_err(chip->card->dev, "write_midi() error %d\n", sent); /* retry later */
sent = 9000;
chip->midi_full = 1;
} elseif (sent > 0) {
dev_dbg(chip->card->dev, "%d bytes sent\n", sent);
snd_rawmidi_transmit_ack(chip->midi_out, sent);
} else { /* Buffer is full. DSP's internal buffer is 64 (128 ?)
bytes long. Let's wait until half of them are sent */
dev_dbg(chip->card->dev, "Full\n");
sent = 32;
chip->midi_full = 1;
}
}
/* We restart the timer only if there is some data left to send */ if (!snd_rawmidi_transmit_empty(chip->midi_out) && chip->tinuse) { /* The timer will expire slightly after the data has been
sent */
time = (sent << 3) / 25 + 1; /* 8/25=0.32ms to send a byte */
mod_timer(&chip->timer, jiffies + (time * HZ + 999) / 1000);
dev_dbg(chip->card->dev, "Timer armed(%d)\n", ((time * HZ + 999) / 1000));
}
spin_unlock_irqrestore(&chip->lock, flags);
}
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