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Add a new filter bitmap for UMP groups for reducing the unnecessary read/write when the client is connected to UMP EP seq port. The new group_filter field contains the bitmap for the groups, i.e. when the bit is set, the corresponding group is filtered out and the messages to that group won't be delivered. The filter bitmap consists of each bit of 1-based UMP Group number. The bit 0 is reserved for the future use. Reviewed-by: Jaroslav Kysela <perex@perex.cz> Link: https://lore.kernel.org/r/20230523075358.9672-37-tiwai@suse.de Signed-off-by: Takashi Iwai <tiwai@suse.de>
117 lines
2.9 KiB
C
117 lines
2.9 KiB
C
/* SPDX-License-Identifier: GPL-2.0-or-later */
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/*
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* ALSA sequencer Client Manager
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* Copyright (c) 1998-1999 by Frank van de Pol <fvdpol@coil.demon.nl>
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*/
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#ifndef __SND_SEQ_CLIENTMGR_H
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#define __SND_SEQ_CLIENTMGR_H
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#include <sound/seq_kernel.h>
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#include <linux/bitops.h>
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#include "seq_fifo.h"
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#include "seq_ports.h"
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#include "seq_lock.h"
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/* client manager */
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struct snd_seq_user_client {
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struct file *file; /* file struct of client */
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/* ... */
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struct pid *owner;
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/* fifo */
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struct snd_seq_fifo *fifo; /* queue for incoming events */
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int fifo_pool_size;
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};
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struct snd_seq_kernel_client {
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/* ... */
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struct snd_card *card;
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};
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struct snd_seq_client {
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snd_seq_client_type_t type;
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unsigned int accept_input: 1,
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accept_output: 1;
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unsigned int midi_version;
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unsigned int user_pversion;
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char name[64]; /* client name */
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int number; /* client number */
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unsigned int filter; /* filter flags */
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DECLARE_BITMAP(event_filter, 256);
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unsigned short group_filter;
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snd_use_lock_t use_lock;
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int event_lost;
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/* ports */
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int num_ports; /* number of ports */
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struct list_head ports_list_head;
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rwlock_t ports_lock;
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struct mutex ports_mutex;
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struct mutex ioctl_mutex;
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int convert32; /* convert 32->64bit */
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int ump_endpoint_port;
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/* output pool */
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struct snd_seq_pool *pool; /* memory pool for this client */
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union {
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struct snd_seq_user_client user;
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struct snd_seq_kernel_client kernel;
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} data;
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/* for UMP */
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void **ump_info;
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};
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/* usage statistics */
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struct snd_seq_usage {
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int cur;
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int peak;
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};
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int client_init_data(void);
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int snd_sequencer_device_init(void);
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void snd_sequencer_device_done(void);
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/* get locked pointer to client */
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struct snd_seq_client *snd_seq_client_use_ptr(int clientid);
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/* unlock pointer to client */
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#define snd_seq_client_unlock(client) snd_use_lock_free(&(client)->use_lock)
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/* dispatch event to client(s) */
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int snd_seq_dispatch_event(struct snd_seq_event_cell *cell, int atomic, int hop);
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int snd_seq_kernel_client_write_poll(int clientid, struct file *file, poll_table *wait);
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int snd_seq_client_notify_subscription(int client, int port,
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struct snd_seq_port_subscribe *info, int evtype);
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int __snd_seq_deliver_single_event(struct snd_seq_client *dest,
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struct snd_seq_client_port *dest_port,
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struct snd_seq_event *event,
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int atomic, int hop);
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/* only for OSS sequencer */
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bool snd_seq_client_ioctl_lock(int clientid);
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void snd_seq_client_ioctl_unlock(int clientid);
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extern int seq_client_load[15];
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/* for internal use between kernel sequencer clients */
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struct snd_seq_client *snd_seq_kernel_client_get(int client);
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void snd_seq_kernel_client_put(struct snd_seq_client *cptr);
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static inline bool snd_seq_client_is_ump(struct snd_seq_client *c)
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{
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return c->midi_version != SNDRV_SEQ_CLIENT_LEGACY_MIDI;
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}
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static inline bool snd_seq_client_is_midi2(struct snd_seq_client *c)
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{
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return c->midi_version == SNDRV_SEQ_CLIENT_UMP_MIDI_2_0;
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}
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#endif
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