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This is another preliminary patch for USB MIDI 2.0 gadget driver. Export the currently local snd_ump_receive_ump_val(). It can be used by the gadget driver for processing the UMP data. Link: https://lore.kernel.org/r/20230621110241.4751-4-tiwai@suse.de Signed-off-by: Takashi Iwai <tiwai@suse.de>
269 lines
7.7 KiB
C
269 lines
7.7 KiB
C
/* SPDX-License-Identifier: GPL-2.0-or-later */
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/*
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* Universal MIDI Packet (UMP) Support
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*/
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#ifndef __SOUND_UMP_H
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#define __SOUND_UMP_H
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#include <sound/rawmidi.h>
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struct snd_ump_endpoint;
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struct snd_ump_block;
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struct snd_ump_ops;
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struct ump_cvt_to_ump;
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struct snd_seq_ump_ops;
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struct snd_ump_endpoint {
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struct snd_rawmidi core; /* raw UMP access */
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struct snd_ump_endpoint_info info;
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const struct snd_ump_ops *ops; /* UMP ops set by the driver */
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struct snd_rawmidi_substream *substreams[2]; /* opened substreams */
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void *private_data;
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void (*private_free)(struct snd_ump_endpoint *ump);
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/* UMP Stream message processing */
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u32 stream_wait_for; /* expected stream message status */
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bool stream_finished; /* set when message has been processed */
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bool parsed; /* UMP / FB parse finished? */
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bool no_process_stream; /* suppress UMP stream messages handling */
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wait_queue_head_t stream_wait;
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struct snd_rawmidi_file stream_rfile;
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struct list_head block_list; /* list of snd_ump_block objects */
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/* intermediate buffer for UMP input */
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u32 input_buf[4];
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int input_buf_head;
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int input_pending;
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struct mutex open_mutex;
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#if IS_ENABLED(CONFIG_SND_UMP_LEGACY_RAWMIDI)
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spinlock_t legacy_locks[2];
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struct snd_rawmidi *legacy_rmidi;
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struct snd_rawmidi_substream *legacy_substreams[2][SNDRV_UMP_MAX_GROUPS];
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/* for legacy output; need to open the actual substream unlike input */
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int legacy_out_opens;
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struct snd_rawmidi_file legacy_out_rfile;
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struct ump_cvt_to_ump *out_cvts;
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#endif
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#if IS_ENABLED(CONFIG_SND_SEQUENCER)
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struct snd_seq_device *seq_dev;
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const struct snd_seq_ump_ops *seq_ops;
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void *seq_client;
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#endif
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};
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/* ops filled by UMP drivers */
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struct snd_ump_ops {
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int (*open)(struct snd_ump_endpoint *ump, int dir);
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void (*close)(struct snd_ump_endpoint *ump, int dir);
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void (*trigger)(struct snd_ump_endpoint *ump, int dir, int up);
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void (*drain)(struct snd_ump_endpoint *ump, int dir);
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};
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/* ops filled by sequencer binding */
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struct snd_seq_ump_ops {
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void (*input_receive)(struct snd_ump_endpoint *ump,
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const u32 *data, int words);
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int (*notify_fb_change)(struct snd_ump_endpoint *ump,
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struct snd_ump_block *fb);
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int (*switch_protocol)(struct snd_ump_endpoint *ump);
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};
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struct snd_ump_block {
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struct snd_ump_block_info info;
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struct snd_ump_endpoint *ump;
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void *private_data;
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void (*private_free)(struct snd_ump_block *blk);
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struct list_head list;
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};
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#define rawmidi_to_ump(rmidi) container_of(rmidi, struct snd_ump_endpoint, core)
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int snd_ump_endpoint_new(struct snd_card *card, char *id, int device,
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int output, int input,
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struct snd_ump_endpoint **ump_ret);
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int snd_ump_parse_endpoint(struct snd_ump_endpoint *ump);
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int snd_ump_block_new(struct snd_ump_endpoint *ump, unsigned int blk,
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unsigned int direction, unsigned int first_group,
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unsigned int num_groups, struct snd_ump_block **blk_ret);
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int snd_ump_receive(struct snd_ump_endpoint *ump, const u32 *buffer, int count);
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int snd_ump_transmit(struct snd_ump_endpoint *ump, u32 *buffer, int count);
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#if IS_ENABLED(CONFIG_SND_UMP_LEGACY_RAWMIDI)
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int snd_ump_attach_legacy_rawmidi(struct snd_ump_endpoint *ump,
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char *id, int device);
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#else
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static inline int snd_ump_attach_legacy_rawmidi(struct snd_ump_endpoint *ump,
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char *id, int device)
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{
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return 0;
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}
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#endif
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int snd_ump_receive_ump_val(struct snd_ump_endpoint *ump, u32 val);
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int snd_ump_switch_protocol(struct snd_ump_endpoint *ump, unsigned int protocol);
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/*
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* Some definitions for UMP
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*/
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/* MIDI 2.0 Message Type */
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enum {
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UMP_MSG_TYPE_UTILITY = 0x00,
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UMP_MSG_TYPE_SYSTEM = 0x01,
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UMP_MSG_TYPE_MIDI1_CHANNEL_VOICE = 0x02,
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UMP_MSG_TYPE_DATA = 0x03,
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UMP_MSG_TYPE_MIDI2_CHANNEL_VOICE = 0x04,
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UMP_MSG_TYPE_EXTENDED_DATA = 0x05,
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UMP_MSG_TYPE_FLEX_DATA = 0x0d,
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UMP_MSG_TYPE_STREAM = 0x0f,
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};
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/* MIDI 2.0 SysEx / Data Status; same values for both 7-bit and 8-bit SysEx */
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enum {
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UMP_SYSEX_STATUS_SINGLE = 0,
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UMP_SYSEX_STATUS_START = 1,
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UMP_SYSEX_STATUS_CONTINUE = 2,
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UMP_SYSEX_STATUS_END = 3,
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};
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/* UMP Utility Type Status (type 0x0) */
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enum {
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UMP_UTILITY_MSG_STATUS_NOOP = 0x00,
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UMP_UTILITY_MSG_STATUS_JR_CLOCK = 0x01,
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UMP_UTILITY_MSG_STATUS_JR_TSTAMP = 0x02,
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UMP_UTILITY_MSG_STATUS_DCTPQ = 0x03,
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UMP_UTILITY_MSG_STATUS_DC = 0x04,
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};
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/* UMP Stream Message Status (type 0xf) */
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enum {
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UMP_STREAM_MSG_STATUS_EP_DISCOVERY = 0x00,
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UMP_STREAM_MSG_STATUS_EP_INFO = 0x01,
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UMP_STREAM_MSG_STATUS_DEVICE_INFO = 0x02,
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UMP_STREAM_MSG_STATUS_EP_NAME = 0x03,
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UMP_STREAM_MSG_STATUS_PRODUCT_ID = 0x04,
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UMP_STREAM_MSG_STATUS_STREAM_CFG_REQUEST = 0x05,
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UMP_STREAM_MSG_STATUS_STREAM_CFG = 0x06,
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UMP_STREAM_MSG_STATUS_FB_DISCOVERY = 0x10,
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UMP_STREAM_MSG_STATUS_FB_INFO = 0x11,
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UMP_STREAM_MSG_STATUS_FB_NAME = 0x12,
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UMP_STREAM_MSG_STATUS_START_CLIP = 0x20,
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UMP_STREAM_MSG_STATUS_END_CLIP = 0x21,
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};
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/* UMP Endpoint Discovery filter bitmap */
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enum {
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UMP_STREAM_MSG_REQUEST_EP_INFO = (1U << 0),
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UMP_STREAM_MSG_REQUEST_DEVICE_INFO = (1U << 1),
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UMP_STREAM_MSG_REQUEST_EP_NAME = (1U << 2),
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UMP_STREAM_MSG_REQUEST_PRODUCT_ID = (1U << 3),
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UMP_STREAM_MSG_REQUEST_STREAM_CFG = (1U << 4),
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};
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/* UMP Function Block Discovery filter bitmap */
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enum {
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UMP_STREAM_MSG_REQUEST_FB_INFO = (1U << 0),
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UMP_STREAM_MSG_REQUEST_FB_NAME = (1U << 1),
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};
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/* UMP Endpoint Info capability bits (used for protocol request/notify, too) */
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enum {
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UMP_STREAM_MSG_EP_INFO_CAP_TXJR = (1U << 0), /* Sending JRTS */
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UMP_STREAM_MSG_EP_INFO_CAP_RXJR = (1U << 1), /* Receiving JRTS */
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UMP_STREAM_MSG_EP_INFO_CAP_MIDI1 = (1U << 8), /* MIDI 1.0 */
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UMP_STREAM_MSG_EP_INFO_CAP_MIDI2 = (1U << 9), /* MIDI 2.0 */
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};
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/* UMP EP / FB name string format; same as SysEx string handling */
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enum {
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UMP_STREAM_MSG_FORMAT_SINGLE = 0,
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UMP_STREAM_MSG_FORMAT_START = 1,
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UMP_STREAM_MSG_FORMAT_CONTINUE = 2,
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UMP_STREAM_MSG_FORMAT_END = 3,
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};
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/*
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* Helpers for retrieving / filling bits from UMP
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*/
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/* get the message type (4bit) from a UMP packet (header) */
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static inline unsigned char ump_message_type(u32 data)
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{
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return data >> 28;
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}
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/* get the group number (0-based, 4bit) from a UMP packet (header) */
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static inline unsigned char ump_message_group(u32 data)
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{
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return (data >> 24) & 0x0f;
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}
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/* get the MIDI status code (4bit) from a UMP packet (header) */
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static inline unsigned char ump_message_status_code(u32 data)
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{
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return (data >> 20) & 0x0f;
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}
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/* get the MIDI channel number (0-based, 4bit) from a UMP packet (header) */
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static inline unsigned char ump_message_channel(u32 data)
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{
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return (data >> 16) & 0x0f;
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}
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/* get the MIDI status + channel combo byte (8bit) from a UMP packet (header) */
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static inline unsigned char ump_message_status_channel(u32 data)
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{
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return (data >> 16) & 0xff;
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}
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/* compose a UMP packet (header) from type, group and status values */
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static inline u32 ump_compose(unsigned char type, unsigned char group,
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unsigned char status, unsigned char channel)
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{
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return ((u32)type << 28) | ((u32)group << 24) | ((u32)status << 20) |
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((u32)channel << 16);
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}
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/* get SysEx message status (for both 7 and 8bits) from a UMP packet (header) */
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static inline unsigned char ump_sysex_message_status(u32 data)
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{
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return (data >> 20) & 0xf;
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}
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/* get SysEx message length (for both 7 and 8bits) from a UMP packet (header) */
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static inline unsigned char ump_sysex_message_length(u32 data)
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{
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return (data >> 16) & 0xf;
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}
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/* For Stream Messages */
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static inline unsigned char ump_stream_message_format(u32 data)
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{
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return (data >> 26) & 0x03;
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}
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static inline unsigned int ump_stream_message_status(u32 data)
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{
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return (data >> 16) & 0x3ff;
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}
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static inline u32 ump_stream_compose(unsigned char status, unsigned short form)
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{
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return (UMP_MSG_TYPE_STREAM << 28) | ((u32)form << 26) |
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((u32)status << 16);
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}
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#define ump_is_groupless_msg(type) \
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((type) == UMP_MSG_TYPE_UTILITY || (type) == UMP_MSG_TYPE_STREAM)
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#endif /* __SOUND_UMP_H */
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