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Clemens Ladisch31ef9132011-03-15 07:53:21 +01001/*
2 * miscellaneous helper functions
3 *
4 * Copyright (c) Clemens Ladisch <clemens@ladisch.de>
5 * Licensed under the terms of the GNU General Public License, version 2.
6 */
7
8#include <linux/delay.h>
9#include <linux/device.h>
10#include <linux/firewire.h>
11#include <linux/module.h>
Takashi Sakamoto585d7cb2015-10-09 08:10:25 +090012#include <linux/slab.h>
Clemens Ladisch31ef9132011-03-15 07:53:21 +010013#include "lib.h"
14
Clemens Ladisch1b704852011-09-04 22:17:38 +020015#define ERROR_RETRY_DELAY_MS 20
Clemens Ladisch31ef9132011-03-15 07:53:21 +010016
17/**
Clemens Ladisch31ef9132011-03-15 07:53:21 +010018 * snd_fw_transaction - send a request and wait for its completion
19 * @unit: the driver's unit on the target device
20 * @tcode: the transaction code
21 * @offset: the address in the target's address space
22 * @buffer: input/output data
23 * @length: length of @buffer
Clemens Ladisch1b704852011-09-04 22:17:38 +020024 * @flags: use %FW_FIXED_GENERATION and add the generation value to attempt the
25 * request only in that generation; use %FW_QUIET to suppress error
26 * messages
Clemens Ladisch31ef9132011-03-15 07:53:21 +010027 *
28 * Submits an asynchronous request to the target device, and waits for the
29 * response. The node ID and the current generation are derived from @unit.
30 * On a bus reset or an error, the transaction is retried a few times.
31 * Returns zero on success, or a negative error code.
32 */
33int snd_fw_transaction(struct fw_unit *unit, int tcode,
Clemens Ladisch1b704852011-09-04 22:17:38 +020034 u64 offset, void *buffer, size_t length,
35 unsigned int flags)
Clemens Ladisch31ef9132011-03-15 07:53:21 +010036{
37 struct fw_device *device = fw_parent_device(unit);
38 int generation, rcode, tries = 0;
39
Clemens Ladisch1b704852011-09-04 22:17:38 +020040 generation = flags & FW_GENERATION_MASK;
Clemens Ladisch31ef9132011-03-15 07:53:21 +010041 for (;;) {
Clemens Ladisch1b704852011-09-04 22:17:38 +020042 if (!(flags & FW_FIXED_GENERATION)) {
43 generation = device->generation;
44 smp_rmb(); /* node_id vs. generation */
45 }
Clemens Ladisch31ef9132011-03-15 07:53:21 +010046 rcode = fw_run_transaction(device->card, tcode,
47 device->node_id, generation,
48 device->max_speed, offset,
49 buffer, length);
50
51 if (rcode == RCODE_COMPLETE)
52 return 0;
53
Clemens Ladisch1b704852011-09-04 22:17:38 +020054 if (rcode == RCODE_GENERATION && (flags & FW_FIXED_GENERATION))
55 return -EAGAIN;
56
Clemens Ladisch31ef9132011-03-15 07:53:21 +010057 if (rcode_is_permanent_error(rcode) || ++tries >= 3) {
Clemens Ladisch1b704852011-09-04 22:17:38 +020058 if (!(flags & FW_QUIET))
59 dev_err(&unit->device,
60 "transaction failed: %s\n",
61 fw_rcode_string(rcode));
Clemens Ladisch31ef9132011-03-15 07:53:21 +010062 return -EIO;
63 }
64
65 msleep(ERROR_RETRY_DELAY_MS);
66 }
67}
68EXPORT_SYMBOL(snd_fw_transaction);
69
Takashi Sakamoto585d7cb2015-10-09 08:10:25 +090070static void async_midi_port_callback(struct fw_card *card, int rcode,
71 void *data, size_t length,
72 void *callback_data)
73{
74 struct snd_fw_async_midi_port *port = callback_data;
75 struct snd_rawmidi_substream *substream = ACCESS_ONCE(port->substream);
76
77 if (rcode == RCODE_COMPLETE && substream != NULL)
78 snd_rawmidi_transmit_ack(substream, port->consume_bytes);
Takashi Sakamotod3ef9cb2015-10-09 08:10:26 +090079
80 port->idling = true;
Takashi Sakamoto585d7cb2015-10-09 08:10:25 +090081}
82
83static void midi_port_work(struct work_struct *work)
84{
85 struct snd_fw_async_midi_port *port =
86 container_of(work, struct snd_fw_async_midi_port, work);
87 struct snd_rawmidi_substream *substream = ACCESS_ONCE(port->substream);
88 int generation;
89 int type;
90
Takashi Sakamotod3ef9cb2015-10-09 08:10:26 +090091 /* Under transacting. */
92 if (!port->idling)
93 return;
94
Takashi Sakamoto585d7cb2015-10-09 08:10:25 +090095 /* Nothing to do. */
96 if (substream == NULL || snd_rawmidi_transmit_empty(substream))
97 return;
98
99 /*
100 * Fill the buffer. The callee must use snd_rawmidi_transmit_peek().
101 * Later, snd_rawmidi_transmit_ack() is called.
102 */
103 memset(port->buf, 0, port->len);
104 port->consume_bytes = port->fill(substream, port->buf);
105 if (port->consume_bytes <= 0) {
106 /* Do it in next chance, immediately. */
107 if (port->consume_bytes == 0)
108 schedule_work(&port->work);
109 return;
110 }
111
112 /* Calculate type of transaction. */
113 if (port->len == 4)
114 type = TCODE_WRITE_QUADLET_REQUEST;
115 else
116 type = TCODE_WRITE_BLOCK_REQUEST;
117
118 /* Start this transaction. */
Takashi Sakamotod3ef9cb2015-10-09 08:10:26 +0900119 port->idling = false;
120
Takashi Sakamoto585d7cb2015-10-09 08:10:25 +0900121 /*
122 * In Linux FireWire core, when generation is updated with memory
123 * barrier, node id has already been updated. In this module, After
124 * this smp_rmb(), load/store instructions to memory are completed.
125 * Thus, both of generation and node id are available with recent
126 * values. This is a light-serialization solution to handle bus reset
127 * events on IEEE 1394 bus.
128 */
129 generation = port->parent->generation;
130 smp_rmb();
131
132 fw_send_request(port->parent->card, &port->transaction, type,
133 port->parent->node_id, generation,
134 port->parent->max_speed, port->addr,
135 port->buf, port->len, async_midi_port_callback,
136 port);
137}
138
139/**
140 * snd_fw_async_midi_port_init - initialize asynchronous MIDI port structure
141 * @port: the asynchronous MIDI port to initialize
142 * @unit: the target of the asynchronous transaction
143 * @addr: the address to which transactions are transferred
144 * @len: the length of transaction
145 * @fill: the callback function to fill given buffer, and returns the
146 * number of consumed bytes for MIDI message.
147 *
148 */
149int snd_fw_async_midi_port_init(struct snd_fw_async_midi_port *port,
150 struct fw_unit *unit, u64 addr, unsigned int len,
151 snd_fw_async_midi_port_fill fill)
152{
153 port->len = DIV_ROUND_UP(len, 4) * 4;
154 port->buf = kzalloc(port->len, GFP_KERNEL);
155 if (port->buf == NULL)
156 return -ENOMEM;
157
158 port->parent = fw_parent_device(unit);
159 port->addr = addr;
160 port->fill = fill;
Takashi Sakamotod3ef9cb2015-10-09 08:10:26 +0900161 port->idling = true;
Takashi Sakamoto585d7cb2015-10-09 08:10:25 +0900162
163 INIT_WORK(&port->work, midi_port_work);
164
165 return 0;
166}
167EXPORT_SYMBOL(snd_fw_async_midi_port_init);
168
169/**
170 * snd_fw_async_midi_port_destroy - free asynchronous MIDI port structure
171 * @port: the asynchronous MIDI port structure
172 */
173void snd_fw_async_midi_port_destroy(struct snd_fw_async_midi_port *port)
174{
175 snd_fw_async_midi_port_finish(port);
176 cancel_work_sync(&port->work);
177 kfree(port->buf);
178}
179EXPORT_SYMBOL(snd_fw_async_midi_port_destroy);
180
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100181MODULE_DESCRIPTION("FireWire audio helper functions");
182MODULE_AUTHOR("Clemens Ladisch <clemens@ladisch.de>");
183MODULE_LICENSE("GPL v2");