2019-05-30 07:57:59 +08:00
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// SPDX-License-Identifier: GPL-2.0-only
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2014-04-25 21:45:02 +08:00
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/*
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* fireworks_stream.c - a part of driver for Fireworks based devices
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*
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* Copyright (c) 2013-2014 Takashi Sakamoto
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*/
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#include "./fireworks.h"
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#define CALLBACK_TIMEOUT 100
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2019-08-04 14:21:24 +08:00
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static int init_stream(struct snd_efw *efw, struct amdtp_stream *stream)
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2014-04-25 21:45:02 +08:00
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{
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struct cmp_connection *conn;
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enum cmp_direction c_dir;
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enum amdtp_stream_direction s_dir;
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int err;
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if (stream == &efw->tx_stream) {
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conn = &efw->out_conn;
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c_dir = CMP_OUTPUT;
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s_dir = AMDTP_IN_STREAM;
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} else {
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conn = &efw->in_conn;
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c_dir = CMP_INPUT;
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s_dir = AMDTP_OUT_STREAM;
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}
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err = cmp_connection_init(conn, efw->unit, c_dir, 0);
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if (err < 0)
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2019-08-04 14:21:24 +08:00
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return err;
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2014-04-25 21:45:02 +08:00
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2015-09-19 10:21:55 +08:00
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err = amdtp_am824_init(stream, efw->unit, s_dir, CIP_BLOCKING);
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2014-04-25 21:45:02 +08:00
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if (err < 0) {
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amdtp_stream_destroy(stream);
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cmp_connection_destroy(conn);
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2019-08-04 14:21:24 +08:00
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return err;
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}
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if (stream == &efw->tx_stream) {
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// Fireworks transmits NODATA packets with TAG0.
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efw->tx_stream.flags |= CIP_EMPTY_WITH_TAG0;
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// Fireworks has its own meaning for dbc.
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efw->tx_stream.flags |= CIP_DBC_IS_END_EVENT;
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// Fireworks reset dbc at bus reset.
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efw->tx_stream.flags |= CIP_SKIP_DBC_ZERO_CHECK;
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// But Recent firmwares starts packets with non-zero dbc.
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// Driver version 5.7.6 installs firmware version 5.7.3.
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if (efw->is_fireworks3 &&
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(efw->firmware_version == 0x5070000 ||
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efw->firmware_version == 0x5070300 ||
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efw->firmware_version == 0x5080000))
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efw->tx_stream.flags |= CIP_UNALIGHED_DBC;
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// AudioFire9 always reports wrong dbs.
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if (efw->is_af9)
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efw->tx_stream.flags |= CIP_WRONG_DBS;
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// Firmware version 5.5 reports fixed interval for dbc.
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if (efw->firmware_version == 0x5050000)
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efw->tx_stream.ctx_data.tx.dbc_interval = 8;
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2014-04-25 21:45:02 +08:00
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}
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2019-08-04 14:21:24 +08:00
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2014-04-25 21:45:02 +08:00
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return err;
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}
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static void
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stop_stream(struct snd_efw *efw, struct amdtp_stream *stream)
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{
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amdtp_stream_stop(stream);
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if (stream == &efw->tx_stream)
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cmp_connection_break(&efw->out_conn);
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else
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cmp_connection_break(&efw->in_conn);
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}
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2019-06-12 16:44:12 +08:00
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static int start_stream(struct snd_efw *efw, struct amdtp_stream *stream,
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unsigned int rate)
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2014-04-25 21:45:02 +08:00
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{
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struct cmp_connection *conn;
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int err;
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2019-06-12 16:44:12 +08:00
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if (stream == &efw->tx_stream)
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2014-04-25 21:45:02 +08:00
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conn = &efw->out_conn;
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2019-06-12 16:44:12 +08:00
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else
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2014-04-25 21:45:02 +08:00
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conn = &efw->in_conn;
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2019-06-12 16:44:12 +08:00
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// Establish connection via CMP.
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2019-06-15 17:11:01 +08:00
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err = cmp_connection_establish(conn);
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2014-04-25 21:45:02 +08:00
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if (err < 0)
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2019-06-12 16:44:12 +08:00
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return err;
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2014-04-25 21:45:02 +08:00
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2019-06-12 16:44:12 +08:00
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// Start amdtp stream.
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err = amdtp_stream_start(stream, conn->resources.channel, conn->speed);
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2014-04-25 21:45:02 +08:00
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if (err < 0) {
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2019-06-12 16:44:12 +08:00
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cmp_connection_break(conn);
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return err;
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2014-04-25 21:45:02 +08:00
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}
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2019-06-12 16:44:12 +08:00
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// Wait first callback.
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2014-04-25 21:45:02 +08:00
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if (!amdtp_stream_wait_callback(stream, CALLBACK_TIMEOUT)) {
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2019-06-12 16:44:12 +08:00
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amdtp_stream_stop(stream);
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cmp_connection_break(conn);
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return -ETIMEDOUT;
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2014-04-25 21:45:02 +08:00
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}
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2019-06-12 16:44:12 +08:00
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return 0;
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2014-04-25 21:45:02 +08:00
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}
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2019-08-04 14:21:24 +08:00
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// This function should be called before starting the stream or after stopping
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// the streams.
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static void destroy_stream(struct snd_efw *efw, struct amdtp_stream *stream)
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2014-04-25 21:45:02 +08:00
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{
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2019-08-04 14:21:24 +08:00
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amdtp_stream_destroy(stream);
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2014-04-25 21:45:02 +08:00
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if (stream == &efw->tx_stream)
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2019-08-04 14:21:24 +08:00
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cmp_connection_destroy(&efw->out_conn);
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2014-04-25 21:45:02 +08:00
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else
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2019-08-04 14:21:24 +08:00
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cmp_connection_destroy(&efw->in_conn);
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2014-04-25 21:45:02 +08:00
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}
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static int
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check_connection_used_by_others(struct snd_efw *efw, struct amdtp_stream *s)
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{
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struct cmp_connection *conn;
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bool used;
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int err;
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if (s == &efw->tx_stream)
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conn = &efw->out_conn;
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else
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conn = &efw->in_conn;
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err = cmp_connection_check_used(conn, &used);
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if ((err >= 0) && used && !amdtp_stream_running(s)) {
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dev_err(&efw->unit->device,
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"Connection established by others: %cPCR[%d]\n",
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(conn->direction == CMP_OUTPUT) ? 'o' : 'i',
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conn->pcr_index);
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err = -EBUSY;
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}
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return err;
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}
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int snd_efw_stream_init_duplex(struct snd_efw *efw)
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{
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int err;
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err = init_stream(efw, &efw->tx_stream);
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if (err < 0)
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2019-08-04 14:21:24 +08:00
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return err;
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2014-04-25 21:45:02 +08:00
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err = init_stream(efw, &efw->rx_stream);
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if (err < 0) {
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destroy_stream(efw, &efw->tx_stream);
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2019-08-04 14:21:24 +08:00
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return err;
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2014-04-25 21:45:02 +08:00
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}
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2019-08-04 14:21:24 +08:00
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// set IEC61883 compliant mode (actually not fully compliant...).
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2014-04-25 21:45:02 +08:00
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err = snd_efw_command_set_tx_mode(efw, SND_EFW_TRANSPORT_MODE_IEC61883);
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if (err < 0) {
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destroy_stream(efw, &efw->tx_stream);
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destroy_stream(efw, &efw->rx_stream);
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}
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2019-08-04 14:21:24 +08:00
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2014-04-25 21:45:02 +08:00
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return err;
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}
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2019-06-12 16:44:12 +08:00
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static int keep_resources(struct snd_efw *efw, struct amdtp_stream *stream,
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unsigned int rate, unsigned int mode)
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{
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unsigned int pcm_channels;
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unsigned int midi_ports;
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2019-06-15 17:11:01 +08:00
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struct cmp_connection *conn;
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int err;
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2019-06-12 16:44:12 +08:00
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if (stream == &efw->tx_stream) {
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pcm_channels = efw->pcm_capture_channels[mode];
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midi_ports = efw->midi_out_ports;
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2019-06-15 17:11:01 +08:00
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conn = &efw->out_conn;
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2019-06-12 16:44:12 +08:00
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} else {
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pcm_channels = efw->pcm_playback_channels[mode];
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midi_ports = efw->midi_in_ports;
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2019-06-15 17:11:01 +08:00
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conn = &efw->in_conn;
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2019-06-12 16:44:12 +08:00
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}
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2019-06-15 17:11:01 +08:00
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err = amdtp_am824_set_parameters(stream, rate, pcm_channels,
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midi_ports, false);
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if (err < 0)
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return err;
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return cmp_connection_reserve(conn, amdtp_stream_get_max_payload(stream));
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2019-06-12 16:44:12 +08:00
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}
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2019-06-12 16:44:11 +08:00
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int snd_efw_stream_reserve_duplex(struct snd_efw *efw, unsigned int rate)
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2014-04-25 21:45:02 +08:00
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{
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unsigned int curr_rate;
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2019-06-12 16:44:11 +08:00
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int err;
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2014-04-25 21:45:02 +08:00
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2019-06-12 16:44:11 +08:00
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// Considering JACK/FFADO streaming:
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// TODO: This can be removed hwdep functionality becomes popular.
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ALSA: fireworks: drop reuse of incoming packet parameter for ougoing packet parameter
On Fireworks board module of Echo Audio, TSB43Cx43A (IceLynx Micro, iCEM)
is used to process payload of isochronous packets. There's an public
document of this chip[1]. This document is for firmware programmers to
transfer/receive AMDTP with IEC60958 data format, however in clause 2.5,
2.6 and 2.7, we can see system design to utilize the sequence of value in
SYT field of CIP header. In clause 2.3, we can see the specification of
Audio Master Clock (MCLK) from iCEM.
Well, this clock is actually not used for sampling clock. This can be
confirmed when corresponding driver transfer random value as the sequence
of SYT field. Even if in this case, the unit generates proper sound.
Additionally, in unique command set for this board module, the format
of CIP is changed; for IEC 61883-6 mode which we use, and for Windows
Operating System. In the latter mode, the whole 32 bit field in second CIP
header from Windows driver is used to represent counter of packets (NO-DATA
code is still used for packets without data blocks). If the master clock
was physically used by DSP on the board module, the Windows driver must
have transferred correct sequence of SYT field.
Furthermore, as long as seeing capacities of AudioFire2, AudioFire4,
AudioFire8, AudioFirePre8 and AudioFire12, these models don't support
SYT-Match clock source.
Summary, we have no need to relate incoming/outgoing packets. This commit
drops reusing SYT sequence of incoming packets for outgoing packets.
[1] Using TSB43Cx43A: S/PDIF over 1394 (2003, Texus Instruments
Incorporated)
http://www.ti.com/analog/docs/litabsmultiplefilelist.tsp?literatureNumber=slla148&docCategoryId=1&familyId=361
Signed-off-by: Takashi Sakamoto <o-takashi@sakamocchi.jp>
Signed-off-by: Takashi Iwai <tiwai@suse.de>
2016-05-09 22:15:51 +08:00
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err = check_connection_used_by_others(efw, &efw->rx_stream);
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2014-04-25 21:45:02 +08:00
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if (err < 0)
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2019-06-12 16:44:11 +08:00
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return err;
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2014-04-25 21:45:02 +08:00
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2019-06-12 16:44:11 +08:00
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// stop streams if rate is different.
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2014-04-25 21:45:02 +08:00
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err = snd_efw_command_get_sampling_rate(efw, &curr_rate);
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if (err < 0)
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2019-06-12 16:44:11 +08:00
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return err;
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2014-04-25 21:45:02 +08:00
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if (rate == 0)
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rate = curr_rate;
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2019-06-12 16:44:11 +08:00
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if (rate != curr_rate) {
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ALSA: fireworks: drop reuse of incoming packet parameter for ougoing packet parameter
On Fireworks board module of Echo Audio, TSB43Cx43A (IceLynx Micro, iCEM)
is used to process payload of isochronous packets. There's an public
document of this chip[1]. This document is for firmware programmers to
transfer/receive AMDTP with IEC60958 data format, however in clause 2.5,
2.6 and 2.7, we can see system design to utilize the sequence of value in
SYT field of CIP header. In clause 2.3, we can see the specification of
Audio Master Clock (MCLK) from iCEM.
Well, this clock is actually not used for sampling clock. This can be
confirmed when corresponding driver transfer random value as the sequence
of SYT field. Even if in this case, the unit generates proper sound.
Additionally, in unique command set for this board module, the format
of CIP is changed; for IEC 61883-6 mode which we use, and for Windows
Operating System. In the latter mode, the whole 32 bit field in second CIP
header from Windows driver is used to represent counter of packets (NO-DATA
code is still used for packets without data blocks). If the master clock
was physically used by DSP on the board module, the Windows driver must
have transferred correct sequence of SYT field.
Furthermore, as long as seeing capacities of AudioFire2, AudioFire4,
AudioFire8, AudioFirePre8 and AudioFire12, these models don't support
SYT-Match clock source.
Summary, we have no need to relate incoming/outgoing packets. This commit
drops reusing SYT sequence of incoming packets for outgoing packets.
[1] Using TSB43Cx43A: S/PDIF over 1394 (2003, Texus Instruments
Incorporated)
http://www.ti.com/analog/docs/litabsmultiplefilelist.tsp?literatureNumber=slla148&docCategoryId=1&familyId=361
Signed-off-by: Takashi Sakamoto <o-takashi@sakamocchi.jp>
Signed-off-by: Takashi Iwai <tiwai@suse.de>
2016-05-09 22:15:51 +08:00
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stop_stream(efw, &efw->tx_stream);
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stop_stream(efw, &efw->rx_stream);
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2019-06-18 21:26:21 +08:00
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cmp_connection_release(&efw->out_conn);
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cmp_connection_release(&efw->in_conn);
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2014-04-25 21:45:02 +08:00
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}
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2019-06-12 16:44:11 +08:00
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if (efw->substreams_counter == 0 || rate != curr_rate) {
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2019-06-12 16:44:12 +08:00
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unsigned int mode;
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2014-04-25 21:45:02 +08:00
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err = snd_efw_command_set_sampling_rate(efw, rate);
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if (err < 0)
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2019-06-12 16:44:11 +08:00
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return err;
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2019-06-12 16:44:12 +08:00
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err = snd_efw_get_multiplier_mode(rate, &mode);
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if (err < 0)
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return err;
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err = keep_resources(efw, &efw->tx_stream, rate, mode);
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if (err < 0)
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return err;
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err = keep_resources(efw, &efw->rx_stream, rate, mode);
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2019-06-15 17:11:01 +08:00
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if (err < 0) {
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cmp_connection_release(&efw->in_conn);
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2019-06-12 16:44:12 +08:00
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return err;
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2019-06-15 17:11:01 +08:00
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}
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2019-06-12 16:44:11 +08:00
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}
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return 0;
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}
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int snd_efw_stream_start_duplex(struct snd_efw *efw)
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{
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unsigned int rate;
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int err = 0;
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// Need no substreams.
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if (efw->substreams_counter == 0)
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return -EIO;
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err = snd_efw_command_get_sampling_rate(efw, &rate);
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if (err < 0)
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return err;
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2014-04-25 21:45:02 +08:00
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2019-06-12 16:44:11 +08:00
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if (amdtp_streaming_error(&efw->rx_stream) ||
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amdtp_streaming_error(&efw->tx_stream)) {
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stop_stream(efw, &efw->rx_stream);
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stop_stream(efw, &efw->tx_stream);
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}
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/* master should be always running */
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if (!amdtp_stream_running(&efw->rx_stream)) {
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ALSA: fireworks: drop reuse of incoming packet parameter for ougoing packet parameter
On Fireworks board module of Echo Audio, TSB43Cx43A (IceLynx Micro, iCEM)
is used to process payload of isochronous packets. There's an public
document of this chip[1]. This document is for firmware programmers to
transfer/receive AMDTP with IEC60958 data format, however in clause 2.5,
2.6 and 2.7, we can see system design to utilize the sequence of value in
SYT field of CIP header. In clause 2.3, we can see the specification of
Audio Master Clock (MCLK) from iCEM.
Well, this clock is actually not used for sampling clock. This can be
confirmed when corresponding driver transfer random value as the sequence
of SYT field. Even if in this case, the unit generates proper sound.
Additionally, in unique command set for this board module, the format
of CIP is changed; for IEC 61883-6 mode which we use, and for Windows
Operating System. In the latter mode, the whole 32 bit field in second CIP
header from Windows driver is used to represent counter of packets (NO-DATA
code is still used for packets without data blocks). If the master clock
was physically used by DSP on the board module, the Windows driver must
have transferred correct sequence of SYT field.
Furthermore, as long as seeing capacities of AudioFire2, AudioFire4,
AudioFire8, AudioFirePre8 and AudioFire12, these models don't support
SYT-Match clock source.
Summary, we have no need to relate incoming/outgoing packets. This commit
drops reusing SYT sequence of incoming packets for outgoing packets.
[1] Using TSB43Cx43A: S/PDIF over 1394 (2003, Texus Instruments
Incorporated)
http://www.ti.com/analog/docs/litabsmultiplefilelist.tsp?literatureNumber=slla148&docCategoryId=1&familyId=361
Signed-off-by: Takashi Sakamoto <o-takashi@sakamocchi.jp>
Signed-off-by: Takashi Iwai <tiwai@suse.de>
2016-05-09 22:15:51 +08:00
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err = start_stream(efw, &efw->rx_stream, rate);
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2014-04-25 21:45:02 +08:00
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if (err < 0) {
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dev_err(&efw->unit->device,
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"fail to start AMDTP master stream:%d\n", err);
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2019-06-12 16:44:11 +08:00
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goto error;
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2014-04-25 21:45:02 +08:00
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}
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}
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2019-06-12 16:44:08 +08:00
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if (!amdtp_stream_running(&efw->tx_stream)) {
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ALSA: fireworks: drop reuse of incoming packet parameter for ougoing packet parameter
On Fireworks board module of Echo Audio, TSB43Cx43A (IceLynx Micro, iCEM)
is used to process payload of isochronous packets. There's an public
document of this chip[1]. This document is for firmware programmers to
transfer/receive AMDTP with IEC60958 data format, however in clause 2.5,
2.6 and 2.7, we can see system design to utilize the sequence of value in
SYT field of CIP header. In clause 2.3, we can see the specification of
Audio Master Clock (MCLK) from iCEM.
Well, this clock is actually not used for sampling clock. This can be
confirmed when corresponding driver transfer random value as the sequence
of SYT field. Even if in this case, the unit generates proper sound.
Additionally, in unique command set for this board module, the format
of CIP is changed; for IEC 61883-6 mode which we use, and for Windows
Operating System. In the latter mode, the whole 32 bit field in second CIP
header from Windows driver is used to represent counter of packets (NO-DATA
code is still used for packets without data blocks). If the master clock
was physically used by DSP on the board module, the Windows driver must
have transferred correct sequence of SYT field.
Furthermore, as long as seeing capacities of AudioFire2, AudioFire4,
AudioFire8, AudioFirePre8 and AudioFire12, these models don't support
SYT-Match clock source.
Summary, we have no need to relate incoming/outgoing packets. This commit
drops reusing SYT sequence of incoming packets for outgoing packets.
[1] Using TSB43Cx43A: S/PDIF over 1394 (2003, Texus Instruments
Incorporated)
http://www.ti.com/analog/docs/litabsmultiplefilelist.tsp?literatureNumber=slla148&docCategoryId=1&familyId=361
Signed-off-by: Takashi Sakamoto <o-takashi@sakamocchi.jp>
Signed-off-by: Takashi Iwai <tiwai@suse.de>
2016-05-09 22:15:51 +08:00
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err = start_stream(efw, &efw->tx_stream, rate);
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2014-04-25 21:45:02 +08:00
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if (err < 0) {
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dev_err(&efw->unit->device,
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"fail to start AMDTP slave stream:%d\n", err);
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2019-06-12 16:44:11 +08:00
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goto error;
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2014-04-25 21:45:02 +08:00
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}
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}
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2019-06-12 16:44:11 +08:00
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return 0;
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error:
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stop_stream(efw, &efw->rx_stream);
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stop_stream(efw, &efw->tx_stream);
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2014-04-25 21:45:02 +08:00
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return err;
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}
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void snd_efw_stream_stop_duplex(struct snd_efw *efw)
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{
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2019-06-12 16:44:08 +08:00
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if (efw->substreams_counter == 0) {
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ALSA: fireworks: drop reuse of incoming packet parameter for ougoing packet parameter
On Fireworks board module of Echo Audio, TSB43Cx43A (IceLynx Micro, iCEM)
is used to process payload of isochronous packets. There's an public
document of this chip[1]. This document is for firmware programmers to
transfer/receive AMDTP with IEC60958 data format, however in clause 2.5,
2.6 and 2.7, we can see system design to utilize the sequence of value in
SYT field of CIP header. In clause 2.3, we can see the specification of
Audio Master Clock (MCLK) from iCEM.
Well, this clock is actually not used for sampling clock. This can be
confirmed when corresponding driver transfer random value as the sequence
of SYT field. Even if in this case, the unit generates proper sound.
Additionally, in unique command set for this board module, the format
of CIP is changed; for IEC 61883-6 mode which we use, and for Windows
Operating System. In the latter mode, the whole 32 bit field in second CIP
header from Windows driver is used to represent counter of packets (NO-DATA
code is still used for packets without data blocks). If the master clock
was physically used by DSP on the board module, the Windows driver must
have transferred correct sequence of SYT field.
Furthermore, as long as seeing capacities of AudioFire2, AudioFire4,
AudioFire8, AudioFirePre8 and AudioFire12, these models don't support
SYT-Match clock source.
Summary, we have no need to relate incoming/outgoing packets. This commit
drops reusing SYT sequence of incoming packets for outgoing packets.
[1] Using TSB43Cx43A: S/PDIF over 1394 (2003, Texus Instruments
Incorporated)
http://www.ti.com/analog/docs/litabsmultiplefilelist.tsp?literatureNumber=slla148&docCategoryId=1&familyId=361
Signed-off-by: Takashi Sakamoto <o-takashi@sakamocchi.jp>
Signed-off-by: Takashi Iwai <tiwai@suse.de>
2016-05-09 22:15:51 +08:00
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stop_stream(efw, &efw->tx_stream);
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2019-06-12 16:44:08 +08:00
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stop_stream(efw, &efw->rx_stream);
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2019-06-15 17:11:01 +08:00
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cmp_connection_release(&efw->out_conn);
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cmp_connection_release(&efw->in_conn);
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2014-04-25 21:45:02 +08:00
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}
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}
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void snd_efw_stream_update_duplex(struct snd_efw *efw)
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{
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2019-08-04 14:21:25 +08:00
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stop_stream(efw, &efw->rx_stream);
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stop_stream(efw, &efw->tx_stream);
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amdtp_stream_pcm_abort(&efw->rx_stream);
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amdtp_stream_pcm_abort(&efw->tx_stream);
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2014-04-25 21:45:02 +08:00
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}
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void snd_efw_stream_destroy_duplex(struct snd_efw *efw)
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{
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destroy_stream(efw, &efw->rx_stream);
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destroy_stream(efw, &efw->tx_stream);
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}
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2014-04-25 21:45:12 +08:00
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void snd_efw_stream_lock_changed(struct snd_efw *efw)
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{
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efw->dev_lock_changed = true;
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wake_up(&efw->hwdep_wait);
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}
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int snd_efw_stream_lock_try(struct snd_efw *efw)
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{
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int err;
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spin_lock_irq(&efw->lock);
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/* user land lock this */
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if (efw->dev_lock_count < 0) {
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err = -EBUSY;
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goto end;
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}
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/* this is the first time */
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if (efw->dev_lock_count++ == 0)
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snd_efw_stream_lock_changed(efw);
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err = 0;
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end:
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spin_unlock_irq(&efw->lock);
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return err;
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}
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void snd_efw_stream_lock_release(struct snd_efw *efw)
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{
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spin_lock_irq(&efw->lock);
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if (WARN_ON(efw->dev_lock_count <= 0))
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goto end;
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if (--efw->dev_lock_count == 0)
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snd_efw_stream_lock_changed(efw);
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end:
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spin_unlock_irq(&efw->lock);
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}
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