mirror of
https://github.com/edk2-porting/linux-next.git
synced 2024-12-21 19:53:59 +08:00
19af57b46d
This commit adds a file and move some codes related to hwdep functionality. This interface is designed for mixer/control application. By using hwdep interface, the application can get information about firewire node, can lock/unlock kernel streaming and can get notification at starting/stopping kernel streaming. Additionally, this interface give a way to read Dice notification. Signed-off-by: Takashi Sakamoto <o-takashi@sakamocchi.jp> Signed-off-by: Takashi Iwai <tiwai@suse.de>
605 lines
16 KiB
C
605 lines
16 KiB
C
/*
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* TC Applied Technologies Digital Interface Communications Engine driver
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*
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* Copyright (c) Clemens Ladisch <clemens@ladisch.de>
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* Licensed under the terms of the GNU General Public License, version 2.
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*/
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#include "dice.h"
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MODULE_DESCRIPTION("DICE driver");
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MODULE_AUTHOR("Clemens Ladisch <clemens@ladisch.de>");
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MODULE_LICENSE("GPL v2");
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static int dice_proc_read_mem(struct snd_dice *dice, void *buffer,
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unsigned int offset_q, unsigned int quadlets)
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{
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unsigned int i;
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int err;
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err = snd_fw_transaction(dice->unit, TCODE_READ_BLOCK_REQUEST,
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DICE_PRIVATE_SPACE + 4 * offset_q,
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buffer, 4 * quadlets, 0);
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if (err < 0)
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return err;
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for (i = 0; i < quadlets; ++i)
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be32_to_cpus(&((u32 *)buffer)[i]);
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return 0;
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}
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static const char *str_from_array(const char *const strs[], unsigned int count,
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unsigned int i)
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{
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if (i < count)
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return strs[i];
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return "(unknown)";
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}
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static void dice_proc_fixup_string(char *s, unsigned int size)
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{
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unsigned int i;
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for (i = 0; i < size; i += 4)
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cpu_to_le32s((u32 *)(s + i));
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for (i = 0; i < size - 2; ++i) {
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if (s[i] == '\0')
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return;
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if (s[i] == '\\' && s[i + 1] == '\\') {
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s[i + 2] = '\0';
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return;
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}
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}
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s[size - 1] = '\0';
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}
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static void dice_proc_read(struct snd_info_entry *entry,
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struct snd_info_buffer *buffer)
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{
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static const char *const section_names[5] = {
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"global", "tx", "rx", "ext_sync", "unused2"
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};
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static const char *const clock_sources[] = {
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"aes1", "aes2", "aes3", "aes4", "aes", "adat", "tdif",
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"wc", "arx1", "arx2", "arx3", "arx4", "internal"
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};
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static const char *const rates[] = {
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"32000", "44100", "48000", "88200", "96000", "176400", "192000",
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"any low", "any mid", "any high", "none"
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};
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struct snd_dice *dice = entry->private_data;
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u32 sections[ARRAY_SIZE(section_names) * 2];
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struct {
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u32 number;
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u32 size;
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} tx_rx_header;
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union {
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struct {
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u32 owner_hi, owner_lo;
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u32 notification;
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char nick_name[NICK_NAME_SIZE];
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u32 clock_select;
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u32 enable;
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u32 status;
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u32 extended_status;
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u32 sample_rate;
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u32 version;
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u32 clock_caps;
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char clock_source_names[CLOCK_SOURCE_NAMES_SIZE];
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} global;
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struct {
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u32 iso;
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u32 number_audio;
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u32 number_midi;
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u32 speed;
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char names[TX_NAMES_SIZE];
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u32 ac3_caps;
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u32 ac3_enable;
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} tx;
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struct {
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u32 iso;
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u32 seq_start;
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u32 number_audio;
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u32 number_midi;
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char names[RX_NAMES_SIZE];
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u32 ac3_caps;
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u32 ac3_enable;
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} rx;
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struct {
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u32 clock_source;
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u32 locked;
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u32 rate;
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u32 adat_user_data;
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} ext_sync;
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} buf;
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unsigned int quadlets, stream, i;
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if (dice_proc_read_mem(dice, sections, 0, ARRAY_SIZE(sections)) < 0)
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return;
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snd_iprintf(buffer, "sections:\n");
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for (i = 0; i < ARRAY_SIZE(section_names); ++i)
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snd_iprintf(buffer, " %s: offset %u, size %u\n",
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section_names[i],
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sections[i * 2], sections[i * 2 + 1]);
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quadlets = min_t(u32, sections[1], sizeof(buf.global) / 4);
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if (dice_proc_read_mem(dice, &buf.global, sections[0], quadlets) < 0)
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return;
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snd_iprintf(buffer, "global:\n");
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snd_iprintf(buffer, " owner: %04x:%04x%08x\n",
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buf.global.owner_hi >> 16,
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buf.global.owner_hi & 0xffff, buf.global.owner_lo);
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snd_iprintf(buffer, " notification: %08x\n", buf.global.notification);
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dice_proc_fixup_string(buf.global.nick_name, NICK_NAME_SIZE);
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snd_iprintf(buffer, " nick name: %s\n", buf.global.nick_name);
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snd_iprintf(buffer, " clock select: %s %s\n",
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str_from_array(clock_sources, ARRAY_SIZE(clock_sources),
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buf.global.clock_select & CLOCK_SOURCE_MASK),
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str_from_array(rates, ARRAY_SIZE(rates),
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(buf.global.clock_select & CLOCK_RATE_MASK)
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>> CLOCK_RATE_SHIFT));
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snd_iprintf(buffer, " enable: %u\n", buf.global.enable);
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snd_iprintf(buffer, " status: %slocked %s\n",
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buf.global.status & STATUS_SOURCE_LOCKED ? "" : "un",
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str_from_array(rates, ARRAY_SIZE(rates),
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(buf.global.status &
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STATUS_NOMINAL_RATE_MASK)
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>> CLOCK_RATE_SHIFT));
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snd_iprintf(buffer, " ext status: %08x\n", buf.global.extended_status);
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snd_iprintf(buffer, " sample rate: %u\n", buf.global.sample_rate);
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snd_iprintf(buffer, " version: %u.%u.%u.%u\n",
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(buf.global.version >> 24) & 0xff,
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(buf.global.version >> 16) & 0xff,
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(buf.global.version >> 8) & 0xff,
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(buf.global.version >> 0) & 0xff);
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if (quadlets >= 90) {
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snd_iprintf(buffer, " clock caps:");
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for (i = 0; i <= 6; ++i)
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if (buf.global.clock_caps & (1 << i))
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snd_iprintf(buffer, " %s", rates[i]);
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for (i = 0; i <= 12; ++i)
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if (buf.global.clock_caps & (1 << (16 + i)))
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snd_iprintf(buffer, " %s", clock_sources[i]);
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snd_iprintf(buffer, "\n");
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dice_proc_fixup_string(buf.global.clock_source_names,
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CLOCK_SOURCE_NAMES_SIZE);
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snd_iprintf(buffer, " clock source names: %s\n",
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buf.global.clock_source_names);
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}
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if (dice_proc_read_mem(dice, &tx_rx_header, sections[2], 2) < 0)
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return;
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quadlets = min_t(u32, tx_rx_header.size, sizeof(buf.tx) / 4);
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for (stream = 0; stream < tx_rx_header.number; ++stream) {
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if (dice_proc_read_mem(dice, &buf.tx, sections[2] + 2 +
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stream * tx_rx_header.size,
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quadlets) < 0)
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break;
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snd_iprintf(buffer, "tx %u:\n", stream);
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snd_iprintf(buffer, " iso channel: %d\n", (int)buf.tx.iso);
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snd_iprintf(buffer, " audio channels: %u\n",
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buf.tx.number_audio);
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snd_iprintf(buffer, " midi ports: %u\n", buf.tx.number_midi);
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snd_iprintf(buffer, " speed: S%u\n", 100u << buf.tx.speed);
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if (quadlets >= 68) {
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dice_proc_fixup_string(buf.tx.names, TX_NAMES_SIZE);
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snd_iprintf(buffer, " names: %s\n", buf.tx.names);
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}
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if (quadlets >= 70) {
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snd_iprintf(buffer, " ac3 caps: %08x\n",
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buf.tx.ac3_caps);
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snd_iprintf(buffer, " ac3 enable: %08x\n",
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buf.tx.ac3_enable);
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}
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}
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if (dice_proc_read_mem(dice, &tx_rx_header, sections[4], 2) < 0)
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return;
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quadlets = min_t(u32, tx_rx_header.size, sizeof(buf.rx) / 4);
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for (stream = 0; stream < tx_rx_header.number; ++stream) {
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if (dice_proc_read_mem(dice, &buf.rx, sections[4] + 2 +
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stream * tx_rx_header.size,
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quadlets) < 0)
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break;
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snd_iprintf(buffer, "rx %u:\n", stream);
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snd_iprintf(buffer, " iso channel: %d\n", (int)buf.rx.iso);
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snd_iprintf(buffer, " sequence start: %u\n", buf.rx.seq_start);
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snd_iprintf(buffer, " audio channels: %u\n",
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buf.rx.number_audio);
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snd_iprintf(buffer, " midi ports: %u\n", buf.rx.number_midi);
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if (quadlets >= 68) {
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dice_proc_fixup_string(buf.rx.names, RX_NAMES_SIZE);
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snd_iprintf(buffer, " names: %s\n", buf.rx.names);
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}
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if (quadlets >= 70) {
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snd_iprintf(buffer, " ac3 caps: %08x\n",
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buf.rx.ac3_caps);
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snd_iprintf(buffer, " ac3 enable: %08x\n",
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buf.rx.ac3_enable);
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}
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}
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quadlets = min_t(u32, sections[7], sizeof(buf.ext_sync) / 4);
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if (quadlets >= 4) {
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if (dice_proc_read_mem(dice, &buf.ext_sync,
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sections[6], 4) < 0)
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return;
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snd_iprintf(buffer, "ext status:\n");
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snd_iprintf(buffer, " clock source: %s\n",
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str_from_array(clock_sources,
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ARRAY_SIZE(clock_sources),
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buf.ext_sync.clock_source));
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snd_iprintf(buffer, " locked: %u\n", buf.ext_sync.locked);
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snd_iprintf(buffer, " rate: %s\n",
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str_from_array(rates, ARRAY_SIZE(rates),
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buf.ext_sync.rate));
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snd_iprintf(buffer, " adat user data: ");
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if (buf.ext_sync.adat_user_data & ADAT_USER_DATA_NO_DATA)
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snd_iprintf(buffer, "-\n");
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else
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snd_iprintf(buffer, "%x\n",
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buf.ext_sync.adat_user_data);
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}
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}
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static void dice_create_proc(struct snd_dice *dice)
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{
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struct snd_info_entry *entry;
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if (!snd_card_proc_new(dice->card, "dice", &entry))
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snd_info_set_text_ops(entry, dice, dice_proc_read);
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}
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#define OUI_WEISS 0x001c6a
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#define DICE_CATEGORY_ID 0x04
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#define WEISS_CATEGORY_ID 0x00
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static int dice_interface_check(struct fw_unit *unit)
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{
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static const int min_values[10] = {
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10, 0x64 / 4,
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10, 0x18 / 4,
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10, 0x18 / 4,
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0, 0,
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0, 0,
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};
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struct fw_device *device = fw_parent_device(unit);
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struct fw_csr_iterator it;
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int key, val, vendor = -1, model = -1, err;
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unsigned int category, i;
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__be32 *pointers, value;
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__be32 tx_data[4];
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__be32 version;
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pointers = kmalloc_array(ARRAY_SIZE(min_values), sizeof(__be32),
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GFP_KERNEL);
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if (pointers == NULL)
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return -ENOMEM;
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/*
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* Check that GUID and unit directory are constructed according to DICE
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* rules, i.e., that the specifier ID is the GUID's OUI, and that the
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* GUID chip ID consists of the 8-bit category ID, the 10-bit product
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* ID, and a 22-bit serial number.
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*/
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fw_csr_iterator_init(&it, unit->directory);
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while (fw_csr_iterator_next(&it, &key, &val)) {
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switch (key) {
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case CSR_SPECIFIER_ID:
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vendor = val;
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break;
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case CSR_MODEL:
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model = val;
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break;
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}
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}
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if (vendor == OUI_WEISS)
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category = WEISS_CATEGORY_ID;
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else
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category = DICE_CATEGORY_ID;
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if (device->config_rom[3] != ((vendor << 8) | category) ||
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device->config_rom[4] >> 22 != model) {
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err = -ENODEV;
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goto end;
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}
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/*
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* Check that the sub address spaces exist and are located inside the
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* private address space. The minimum values are chosen so that all
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* minimally required registers are included.
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*/
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err = snd_fw_transaction(unit, TCODE_READ_BLOCK_REQUEST,
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DICE_PRIVATE_SPACE, pointers,
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sizeof(__be32) * ARRAY_SIZE(min_values), 0);
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if (err < 0) {
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err = -ENODEV;
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goto end;
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}
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for (i = 0; i < ARRAY_SIZE(min_values); ++i) {
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value = be32_to_cpu(pointers[i]);
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if (value < min_values[i] || value >= 0x40000) {
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err = -ENODEV;
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goto end;
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}
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}
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/* We support playback only. Let capture devices be handled by FFADO. */
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err = snd_fw_transaction(unit, TCODE_READ_BLOCK_REQUEST,
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DICE_PRIVATE_SPACE +
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be32_to_cpu(pointers[2]) * 4,
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tx_data, sizeof(tx_data), 0);
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if (err < 0 || (tx_data[0] && tx_data[3])) {
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err = -ENODEV;
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goto end;
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}
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/*
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* Check that the implemented DICE driver specification major version
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* number matches.
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*/
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err = snd_fw_transaction(unit, TCODE_READ_QUADLET_REQUEST,
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DICE_PRIVATE_SPACE +
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be32_to_cpu(pointers[0]) * 4 + GLOBAL_VERSION,
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&version, 4, 0);
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if (err < 0) {
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err = -ENODEV;
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goto end;
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}
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if ((version & cpu_to_be32(0xff000000)) != cpu_to_be32(0x01000000)) {
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dev_err(&unit->device,
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"unknown DICE version: 0x%08x\n", be32_to_cpu(version));
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err = -ENODEV;
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goto end;
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}
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end:
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return err;
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}
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static int highest_supported_mode_rate(struct snd_dice *dice,
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unsigned int mode, unsigned int *rate)
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{
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unsigned int i, m;
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for (i = ARRAY_SIZE(snd_dice_rates); i > 0; i--) {
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*rate = snd_dice_rates[i - 1];
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if (snd_dice_stream_get_rate_mode(dice, *rate, &m) < 0)
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continue;
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if (mode == m)
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break;
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}
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if (i == 0)
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return -EINVAL;
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return 0;
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}
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static int dice_read_mode_params(struct snd_dice *dice, unsigned int mode)
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{
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__be32 values[2];
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unsigned int rate;
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int err;
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if (highest_supported_mode_rate(dice, mode, &rate) < 0) {
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dice->rx_channels[mode] = 0;
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dice->rx_midi_ports[mode] = 0;
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return 0;
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}
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err = snd_dice_transaction_set_rate(dice, rate);
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if (err < 0)
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return err;
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err = snd_dice_transaction_read_rx(dice, RX_NUMBER_AUDIO,
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values, sizeof(values));
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if (err < 0)
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return err;
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dice->rx_channels[mode] = be32_to_cpu(values[0]);
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dice->rx_midi_ports[mode] = be32_to_cpu(values[1]);
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return 0;
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}
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static int dice_read_params(struct snd_dice *dice)
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{
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__be32 value;
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int mode, err;
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/* some very old firmwares don't tell about their clock support */
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if (dice->clock_caps > 0) {
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err = snd_dice_transaction_read_global(dice,
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GLOBAL_CLOCK_CAPABILITIES,
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&value, 4);
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if (err < 0)
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return err;
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dice->clock_caps = be32_to_cpu(value);
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} else {
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/* this should be supported by any device */
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dice->clock_caps = CLOCK_CAP_RATE_44100 |
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CLOCK_CAP_RATE_48000 |
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CLOCK_CAP_SOURCE_ARX1 |
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CLOCK_CAP_SOURCE_INTERNAL;
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}
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for (mode = 2; mode >= 0; --mode) {
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err = dice_read_mode_params(dice, mode);
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if (err < 0)
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return err;
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}
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return 0;
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}
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static void dice_card_strings(struct snd_dice *dice)
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{
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struct snd_card *card = dice->card;
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struct fw_device *dev = fw_parent_device(dice->unit);
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char vendor[32], model[32];
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unsigned int i;
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int err;
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strcpy(card->driver, "DICE");
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strcpy(card->shortname, "DICE");
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BUILD_BUG_ON(NICK_NAME_SIZE < sizeof(card->shortname));
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err = snd_dice_transaction_read_global(dice, GLOBAL_NICK_NAME,
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card->shortname,
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sizeof(card->shortname));
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if (err >= 0) {
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/* DICE strings are returned in "always-wrong" endianness */
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BUILD_BUG_ON(sizeof(card->shortname) % 4 != 0);
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for (i = 0; i < sizeof(card->shortname); i += 4)
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swab32s((u32 *)&card->shortname[i]);
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card->shortname[sizeof(card->shortname) - 1] = '\0';
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}
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strcpy(vendor, "?");
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fw_csr_string(dev->config_rom + 5, CSR_VENDOR, vendor, sizeof(vendor));
|
|
strcpy(model, "?");
|
|
fw_csr_string(dice->unit->directory, CSR_MODEL, model, sizeof(model));
|
|
snprintf(card->longname, sizeof(card->longname),
|
|
"%s %s (serial %u) at %s, S%d",
|
|
vendor, model, dev->config_rom[4] & 0x3fffff,
|
|
dev_name(&dice->unit->device), 100 << dev->max_speed);
|
|
|
|
strcpy(card->mixername, "DICE");
|
|
}
|
|
|
|
static void dice_card_free(struct snd_card *card)
|
|
{
|
|
struct snd_dice *dice = card->private_data;
|
|
|
|
snd_dice_transaction_destroy(dice);
|
|
mutex_destroy(&dice->mutex);
|
|
}
|
|
|
|
static int dice_probe(struct fw_unit *unit, const struct ieee1394_device_id *id)
|
|
{
|
|
struct snd_card *card;
|
|
struct snd_dice *dice;
|
|
int err;
|
|
|
|
err = dice_interface_check(unit);
|
|
if (err < 0)
|
|
goto end;
|
|
|
|
err = snd_card_new(&unit->device, -1, NULL, THIS_MODULE,
|
|
sizeof(*dice), &card);
|
|
if (err < 0)
|
|
goto end;
|
|
|
|
dice = card->private_data;
|
|
dice->card = card;
|
|
dice->unit = unit;
|
|
card->private_free = dice_card_free;
|
|
|
|
spin_lock_init(&dice->lock);
|
|
mutex_init(&dice->mutex);
|
|
init_completion(&dice->clock_accepted);
|
|
init_waitqueue_head(&dice->hwdep_wait);
|
|
|
|
err = snd_dice_transaction_init(dice);
|
|
if (err < 0)
|
|
goto error;
|
|
|
|
err = dice_read_params(dice);
|
|
if (err < 0)
|
|
goto error;
|
|
|
|
dice_card_strings(dice);
|
|
|
|
err = snd_dice_create_pcm(dice);
|
|
if (err < 0)
|
|
goto error;
|
|
|
|
err = snd_dice_create_hwdep(dice);
|
|
if (err < 0)
|
|
goto error;
|
|
|
|
dice_create_proc(dice);
|
|
|
|
err = snd_dice_stream_init(dice);
|
|
if (err < 0)
|
|
goto error;
|
|
|
|
err = snd_card_register(card);
|
|
if (err < 0) {
|
|
snd_dice_stream_destroy(dice);
|
|
goto error;
|
|
}
|
|
|
|
dev_set_drvdata(&unit->device, dice);
|
|
end:
|
|
return err;
|
|
error:
|
|
snd_card_free(card);
|
|
return err;
|
|
}
|
|
|
|
static void dice_remove(struct fw_unit *unit)
|
|
{
|
|
struct snd_dice *dice = dev_get_drvdata(&unit->device);
|
|
|
|
snd_card_disconnect(dice->card);
|
|
|
|
mutex_lock(&dice->mutex);
|
|
|
|
snd_dice_stream_destroy(dice);
|
|
|
|
mutex_unlock(&dice->mutex);
|
|
|
|
snd_card_free_when_closed(dice->card);
|
|
}
|
|
|
|
static void dice_bus_reset(struct fw_unit *unit)
|
|
{
|
|
struct snd_dice *dice = dev_get_drvdata(&unit->device);
|
|
|
|
/* The handler address register becomes initialized. */
|
|
snd_dice_transaction_reinit(dice);
|
|
|
|
mutex_lock(&dice->mutex);
|
|
snd_dice_stream_update(dice);
|
|
mutex_unlock(&dice->mutex);
|
|
}
|
|
|
|
#define DICE_INTERFACE 0x000001
|
|
|
|
static const struct ieee1394_device_id dice_id_table[] = {
|
|
{
|
|
.match_flags = IEEE1394_MATCH_VERSION,
|
|
.version = DICE_INTERFACE,
|
|
},
|
|
{ }
|
|
};
|
|
MODULE_DEVICE_TABLE(ieee1394, dice_id_table);
|
|
|
|
static struct fw_driver dice_driver = {
|
|
.driver = {
|
|
.owner = THIS_MODULE,
|
|
.name = KBUILD_MODNAME,
|
|
.bus = &fw_bus_type,
|
|
},
|
|
.probe = dice_probe,
|
|
.update = dice_bus_reset,
|
|
.remove = dice_remove,
|
|
.id_table = dice_id_table,
|
|
};
|
|
|
|
static int __init alsa_dice_init(void)
|
|
{
|
|
return driver_register(&dice_driver.driver);
|
|
}
|
|
|
|
static void __exit alsa_dice_exit(void)
|
|
{
|
|
driver_unregister(&dice_driver.driver);
|
|
}
|
|
|
|
module_init(alsa_dice_init);
|
|
module_exit(alsa_dice_exit);
|