2 * Driver for the Korg 1212 IO PCI card
4 * Copyright (c) 2001 Haroldo Gamal <gamal@alternex.com.br>
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 #include <sound/driver.h>
23 #include <linux/delay.h>
24 #include <linux/init.h>
25 #include <linux/interrupt.h>
26 #include <linux/pci.h>
27 #include <linux/slab.h>
28 #include <linux/wait.h>
29 #include <linux/moduleparam.h>
31 #include <sound/core.h>
32 #include <sound/info.h>
33 #include <sound/control.h>
34 #include <sound/pcm.h>
35 #include <sound/pcm_params.h>
36 #include <sound/initval.h>
40 // ----------------------------------------------------------------------------
42 // ----------------------------------------------------------------------------
43 #define K1212_DEBUG_LEVEL 0
44 #if K1212_DEBUG_LEVEL > 0
45 #define K1212_DEBUG_PRINTK(fmt,args...) printk(KERN_DEBUG fmt,##args)
47 #define K1212_DEBUG_PRINTK(fmt,...)
49 #if K1212_DEBUG_LEVEL > 1
50 #define K1212_DEBUG_PRINTK_VERBOSE(fmt,args...) printk(KERN_DEBUG fmt,##args)
52 #define K1212_DEBUG_PRINTK_VERBOSE(fmt,...)
55 // ----------------------------------------------------------------------------
56 // Record/Play Buffer Allocation Method. If K1212_LARGEALLOC is defined all
57 // buffers are alocated as a large piece inside KorgSharedBuffer.
58 // ----------------------------------------------------------------------------
59 //#define K1212_LARGEALLOC 1
61 // ----------------------------------------------------------------------------
62 // Valid states of the Korg 1212 I/O card.
63 // ----------------------------------------------------------------------------
65 K1212_STATE_NONEXISTENT
, // there is no card here
66 K1212_STATE_UNINITIALIZED
, // the card is awaiting DSP download
67 K1212_STATE_DSP_IN_PROCESS
, // the card is currently downloading its DSP code
68 K1212_STATE_DSP_COMPLETE
, // the card has finished the DSP download
69 K1212_STATE_READY
, // the card can be opened by an application. Any application
70 // requests prior to this state should fail. Only an open
71 // request can be made at this state.
72 K1212_STATE_OPEN
, // an application has opened the card
73 K1212_STATE_SETUP
, // the card has been setup for play
74 K1212_STATE_PLAYING
, // the card is playing
75 K1212_STATE_MONITOR
, // the card is in the monitor mode
76 K1212_STATE_CALIBRATING
, // the card is currently calibrating
77 K1212_STATE_ERRORSTOP
, // the card has stopped itself because of an error and we
78 // are in the process of cleaning things up.
79 K1212_STATE_MAX_STATE
// state values of this and beyond are invalid
82 // ----------------------------------------------------------------------------
83 // The following enumeration defines the constants written to the card's
84 // host-to-card doorbell to initiate a command.
85 // ----------------------------------------------------------------------------
86 enum korg1212_dbcnst
{
87 K1212_DB_RequestForData
= 0, // sent by the card to request a buffer fill.
88 K1212_DB_TriggerPlay
= 1, // starts playback/record on the card.
89 K1212_DB_SelectPlayMode
= 2, // select monitor, playback setup, or stop.
90 K1212_DB_ConfigureBufferMemory
= 3, // tells card where the host audio buffers are.
91 K1212_DB_RequestAdatTimecode
= 4, // asks the card for the latest ADAT timecode value.
92 K1212_DB_SetClockSourceRate
= 5, // sets the clock source and rate for the card.
93 K1212_DB_ConfigureMiscMemory
= 6, // tells card where other buffers are.
94 K1212_DB_TriggerFromAdat
= 7, // tells card to trigger from Adat at a specific
96 K1212_DB_DMAERROR
= 0x80, // DMA Error - the PCI bus is congestioned.
97 K1212_DB_CARDSTOPPED
= 0x81, // Card has stopped by user request.
98 K1212_DB_RebootCard
= 0xA0, // instructs the card to reboot.
99 K1212_DB_BootFromDSPPage4
= 0xA4, // instructs the card to boot from the DSP microcode
100 // on page 4 (local page to card).
101 K1212_DB_DSPDownloadDone
= 0xAE, // sent by the card to indicate the download has
103 K1212_DB_StartDSPDownload
= 0xAF // tells the card to download its DSP firmware.
107 // ----------------------------------------------------------------------------
108 // The following enumeration defines return codes
109 // to the Korg 1212 I/O driver.
110 // ----------------------------------------------------------------------------
111 enum snd_korg1212rc
{
112 K1212_CMDRET_Success
= 0, // command was successfully placed
113 K1212_CMDRET_DIOCFailure
, // the DeviceIoControl call failed
114 K1212_CMDRET_PMFailure
, // the protected mode call failed
115 K1212_CMDRET_FailUnspecified
, // unspecified failure
116 K1212_CMDRET_FailBadState
, // the specified command can not be given in
117 // the card's current state. (or the wave device's
119 K1212_CMDRET_CardUninitialized
, // the card is uninitialized and cannot be used
120 K1212_CMDRET_BadIndex
, // an out of range card index was specified
121 K1212_CMDRET_BadHandle
, // an invalid card handle was specified
122 K1212_CMDRET_NoFillRoutine
, // a play request has been made before a fill routine set
123 K1212_CMDRET_FillRoutineInUse
, // can't set a new fill routine while one is in use
124 K1212_CMDRET_NoAckFromCard
, // the card never acknowledged a command
125 K1212_CMDRET_BadParams
, // bad parameters were provided by the caller
127 K1212_CMDRET_BadDevice
, // the specified wave device was out of range
128 K1212_CMDRET_BadFormat
// the specified wave format is unsupported
131 // ----------------------------------------------------------------------------
132 // The following enumeration defines the constants used to select the play
133 // mode for the card in the SelectPlayMode command.
134 // ----------------------------------------------------------------------------
135 enum PlayModeSelector
{
136 K1212_MODE_SetupPlay
= 0x00000001, // provides card with pre-play information
137 K1212_MODE_MonitorOn
= 0x00000002, // tells card to turn on monitor mode
138 K1212_MODE_MonitorOff
= 0x00000004, // tells card to turn off monitor mode
139 K1212_MODE_StopPlay
= 0x00000008 // stops playback on the card
142 // ----------------------------------------------------------------------------
143 // The following enumeration defines the constants used to select the monitor
144 // mode for the card in the SetMonitorMode command.
145 // ----------------------------------------------------------------------------
146 enum MonitorModeSelector
{
147 K1212_MONMODE_Off
= 0, // tells card to turn off monitor mode
148 K1212_MONMODE_On
// tells card to turn on monitor mode
151 #define MAILBOX0_OFFSET 0x40 // location of mailbox 0 relative to base address
152 #define MAILBOX1_OFFSET 0x44 // location of mailbox 1 relative to base address
153 #define MAILBOX2_OFFSET 0x48 // location of mailbox 2 relative to base address
154 #define MAILBOX3_OFFSET 0x4c // location of mailbox 3 relative to base address
155 #define OUT_DOORBELL_OFFSET 0x60 // location of PCI to local doorbell
156 #define IN_DOORBELL_OFFSET 0x64 // location of local to PCI doorbell
157 #define STATUS_REG_OFFSET 0x68 // location of interrupt control/status register
158 #define PCI_CONTROL_OFFSET 0x6c // location of the EEPROM, PCI, User I/O, init control
160 #define SENS_CONTROL_OFFSET 0x6e // location of the input sensitivity setting register.
161 // this is the upper word of the PCI control reg.
162 #define DEV_VEND_ID_OFFSET 0x70 // location of the device and vendor ID register
164 #define COMMAND_ACK_DELAY 13 // number of RTC ticks to wait for an acknowledgement
165 // from the card after sending a command.
166 #define INTERCOMMAND_DELAY 40
167 #define MAX_COMMAND_RETRIES 5 // maximum number of times the driver will attempt
168 // to send a command before giving up.
169 #define COMMAND_ACK_MASK 0x8000 // the MSB is set in the command acknowledgment from
171 #define DOORBELL_VAL_MASK 0x00FF // the doorbell value is one byte
173 #define CARD_BOOT_DELAY_IN_MS 10
174 #define CARD_BOOT_TIMEOUT 10
175 #define DSP_BOOT_DELAY_IN_MS 200
177 #define kNumBuffers 8
178 #define k1212MaxCards 4
179 #define k1212NumWaveDevices 6
180 #define k16BitChannels 10
181 #define k32BitChannels 2
182 #define kAudioChannels (k16BitChannels + k32BitChannels)
183 #define kPlayBufferFrames 1024
185 #define K1212_ANALOG_CHANNELS 2
186 #define K1212_SPDIF_CHANNELS 2
187 #define K1212_ADAT_CHANNELS 8
188 #define K1212_CHANNELS (K1212_ADAT_CHANNELS + K1212_ANALOG_CHANNELS)
189 #define K1212_MIN_CHANNELS 1
190 #define K1212_MAX_CHANNELS K1212_CHANNELS
191 #define K1212_FRAME_SIZE (sizeof(struct KorgAudioFrame))
192 #define K1212_MAX_SAMPLES (kPlayBufferFrames*kNumBuffers)
193 #define K1212_PERIODS (kNumBuffers)
194 #define K1212_PERIOD_BYTES (K1212_FRAME_SIZE*kPlayBufferFrames)
195 #define K1212_BUF_SIZE (K1212_PERIOD_BYTES*kNumBuffers)
196 #define K1212_ANALOG_BUF_SIZE (K1212_ANALOG_CHANNELS * 2 * kPlayBufferFrames * kNumBuffers)
197 #define K1212_SPDIF_BUF_SIZE (K1212_SPDIF_CHANNELS * 3 * kPlayBufferFrames * kNumBuffers)
198 #define K1212_ADAT_BUF_SIZE (K1212_ADAT_CHANNELS * 2 * kPlayBufferFrames * kNumBuffers)
199 #define K1212_MAX_BUF_SIZE (K1212_ANALOG_BUF_SIZE + K1212_ADAT_BUF_SIZE)
201 #define k1212MinADCSens 0x7f
202 #define k1212MaxADCSens 0x00
203 #define k1212MaxVolume 0x7fff
204 #define k1212MaxWaveVolume 0xffff
205 #define k1212MinVolume 0x0000
206 #define k1212MaxVolInverted 0x8000
208 // -----------------------------------------------------------------
209 // the following bits are used for controlling interrupts in the
210 // interrupt control/status reg
211 // -----------------------------------------------------------------
212 #define PCI_INT_ENABLE_BIT 0x00000100
213 #define PCI_DOORBELL_INT_ENABLE_BIT 0x00000200
214 #define LOCAL_INT_ENABLE_BIT 0x00010000
215 #define LOCAL_DOORBELL_INT_ENABLE_BIT 0x00020000
216 #define LOCAL_DMA1_INT_ENABLE_BIT 0x00080000
218 // -----------------------------------------------------------------
219 // the following bits are defined for the PCI command register
220 // -----------------------------------------------------------------
221 #define PCI_CMD_MEM_SPACE_ENABLE_BIT 0x0002
222 #define PCI_CMD_IO_SPACE_ENABLE_BIT 0x0001
223 #define PCI_CMD_BUS_MASTER_ENABLE_BIT 0x0004
225 // -----------------------------------------------------------------
226 // the following bits are defined for the PCI status register
227 // -----------------------------------------------------------------
228 #define PCI_STAT_PARITY_ERROR_BIT 0x8000
229 #define PCI_STAT_SYSTEM_ERROR_BIT 0x4000
230 #define PCI_STAT_MASTER_ABORT_RCVD_BIT 0x2000
231 #define PCI_STAT_TARGET_ABORT_RCVD_BIT 0x1000
232 #define PCI_STAT_TARGET_ABORT_SENT_BIT 0x0800
234 // ------------------------------------------------------------------------
235 // the following constants are used in setting the 1212 I/O card's input
237 // ------------------------------------------------------------------------
238 #define SET_SENS_LOCALINIT_BITPOS 15
239 #define SET_SENS_DATA_BITPOS 10
240 #define SET_SENS_CLOCK_BITPOS 8
241 #define SET_SENS_LOADSHIFT_BITPOS 0
243 #define SET_SENS_LEFTCHANID 0x00
244 #define SET_SENS_RIGHTCHANID 0x01
246 #define K1212SENSUPDATE_DELAY_IN_MS 50
248 // --------------------------------------------------------------------------
251 // This function waits the specified number of real time clock ticks.
252 // According to the DDK, each tick is ~0.8 microseconds.
253 // The defines following the function declaration can be used for the
254 // numTicksToWait parameter.
255 // --------------------------------------------------------------------------
256 #define ONE_RTC_TICK 1
257 #define SENSCLKPULSE_WIDTH 4
258 #define LOADSHIFT_DELAY 4
259 #define INTERCOMMAND_DELAY 40
260 #define STOPCARD_DELAY 300 // max # RTC ticks for the card to stop once we write
261 // the command register. (could be up to 180 us)
262 #define COMMAND_ACK_DELAY 13 // number of RTC ticks to wait for an acknowledgement
263 // from the card after sending a command.
265 #include "korg1212-firmware.h"
267 enum ClockSourceIndex
{
268 K1212_CLKIDX_AdatAt44_1K
= 0, // selects source as ADAT at 44.1 kHz
269 K1212_CLKIDX_AdatAt48K
, // selects source as ADAT at 48 kHz
270 K1212_CLKIDX_WordAt44_1K
, // selects source as S/PDIF at 44.1 kHz
271 K1212_CLKIDX_WordAt48K
, // selects source as S/PDIF at 48 kHz
272 K1212_CLKIDX_LocalAt44_1K
, // selects source as local clock at 44.1 kHz
273 K1212_CLKIDX_LocalAt48K
, // selects source as local clock at 48 kHz
274 K1212_CLKIDX_Invalid
// used to check validity of the index
277 enum ClockSourceType
{
278 K1212_CLKIDX_Adat
= 0, // selects source as ADAT
279 K1212_CLKIDX_Word
, // selects source as S/PDIF
280 K1212_CLKIDX_Local
// selects source as local clock
283 struct KorgAudioFrame
{
284 u16 frameData16
[k16BitChannels
]; /* channels 0-9 use 16 bit samples */
285 u32 frameData32
[k32BitChannels
]; /* channels 10-11 use 32 bits - only 20 are sent across S/PDIF */
286 u32 timeCodeVal
; /* holds the ADAT timecode value */
289 struct KorgAudioBuffer
{
290 struct KorgAudioFrame bufferData
[kPlayBufferFrames
]; /* buffer definition */
293 struct KorgSharedBuffer
{
294 #ifdef K1212_LARGEALLOC
295 struct KorgAudioBuffer playDataBufs
[kNumBuffers
];
296 struct KorgAudioBuffer recordDataBufs
[kNumBuffers
];
298 short volumeData
[kAudioChannels
];
300 u16 routeData
[kAudioChannels
];
301 u32 AdatTimeCode
; // ADAT timecode value
307 unsigned int leftChanVal
:8;
308 unsigned int leftChanId
:8;
314 unsigned int rightChanVal
:8;
315 unsigned int rightChanId
:8;
321 struct snd_korg1212
{
322 struct snd_card
*card
;
328 struct semaphore open_mutex
;
330 struct timer_list timer
; /* timer callback for checking ack of stop request */
331 int stop_pending_cnt
; /* counter for stop pending check */
333 wait_queue_head_t wait
;
336 unsigned long ioport
;
337 unsigned long iomem2
;
338 unsigned long irqcount
;
340 void __iomem
*iobase
;
342 struct snd_dma_buffer dma_dsp
;
343 struct snd_dma_buffer dma_play
;
344 struct snd_dma_buffer dma_rec
;
345 struct snd_dma_buffer dma_shared
;
351 struct KorgAudioBuffer
* playDataBufsPtr
;
352 struct KorgAudioBuffer
* recordDataBufsPtr
;
354 struct KorgSharedBuffer
* sharedBufferPtr
;
358 unsigned long sharedBufferPhy
;
363 u32 __iomem
* statusRegPtr
; // address of the interrupt status/control register
364 u32 __iomem
* outDoorbellPtr
; // address of the host->card doorbell register
365 u32 __iomem
* inDoorbellPtr
; // address of the card->host doorbell register
366 u32 __iomem
* mailbox0Ptr
; // address of mailbox 0 on the card
367 u32 __iomem
* mailbox1Ptr
; // address of mailbox 1 on the card
368 u32 __iomem
* mailbox2Ptr
; // address of mailbox 2 on the card
369 u32 __iomem
* mailbox3Ptr
; // address of mailbox 3 on the card
370 u32 __iomem
* controlRegPtr
; // address of the EEPROM, PCI, I/O, Init ctrl reg
371 u16 __iomem
* sensRegPtr
; // address of the sensitivity setting register
372 u32 __iomem
* idRegPtr
; // address of the device and vendor ID registers
378 struct snd_pcm_substream
*playback_substream
;
379 struct snd_pcm_substream
*capture_substream
;
384 enum CardState cardState
;
386 int idleMonitorOn
; // indicates whether the card is in idle monitor mode.
387 u32 cmdRetryCount
; // tracks how many times we have retried sending to the card.
389 enum ClockSourceIndex clkSrcRate
; // sample rate and clock source
391 enum ClockSourceType clkSource
; // clock source
392 int clkRate
; // clock rate
394 int volumePhase
[kAudioChannels
];
396 u16 leftADCInSens
; // ADC left channel input sensitivity
397 u16 rightADCInSens
; // ADC right channel input sensitivity
399 int opencnt
; // Open/Close count
400 int setcnt
; // SetupForPlay count
401 int playcnt
; // TriggerPlay count
402 int errorcnt
; // Error Count
403 unsigned long totalerrorcnt
; // Total Error Count
406 int dsp_stop_is_processed
;
410 MODULE_DESCRIPTION("korg1212");
411 MODULE_LICENSE("GPL");
412 MODULE_SUPPORTED_DEVICE("{{KORG,korg1212}}");
414 static int index
[SNDRV_CARDS
] = SNDRV_DEFAULT_IDX
; /* Index 0-MAX */
415 static char *id
[SNDRV_CARDS
] = SNDRV_DEFAULT_STR
; /* ID for this card */
416 static int enable
[SNDRV_CARDS
] = SNDRV_DEFAULT_ENABLE
; /* Enable this card */
418 module_param_array(index
, int, NULL
, 0444);
419 MODULE_PARM_DESC(index
, "Index value for Korg 1212 soundcard.");
420 module_param_array(id
, charp
, NULL
, 0444);
421 MODULE_PARM_DESC(id
, "ID string for Korg 1212 soundcard.");
422 module_param_array(enable
, bool, NULL
, 0444);
423 MODULE_PARM_DESC(enable
, "Enable Korg 1212 soundcard.");
424 MODULE_AUTHOR("Haroldo Gamal <gamal@alternex.com.br>");
426 static struct pci_device_id snd_korg1212_ids
[] = {
430 .subvendor
= PCI_ANY_ID
,
431 .subdevice
= PCI_ANY_ID
,
436 MODULE_DEVICE_TABLE(pci
, snd_korg1212_ids
);
438 static char *stateName
[] = {
441 "DSP download in process",
442 "DSP download complete",
452 static char *clockSourceTypeName
[] = { "ADAT", "S/PDIF", "local" };
454 static char *clockSourceName
[] = {
457 "S/PDIF at 44.1 kHz",
459 "local clock at 44.1 kHz",
460 "local clock at 48 kHz"
463 static char *channelName
[] = {
478 static u16 ClockSourceSelector
[] = {
479 0x8000, // selects source as ADAT at 44.1 kHz
480 0x0000, // selects source as ADAT at 48 kHz
481 0x8001, // selects source as S/PDIF at 44.1 kHz
482 0x0001, // selects source as S/PDIF at 48 kHz
483 0x8002, // selects source as local clock at 44.1 kHz
484 0x0002 // selects source as local clock at 48 kHz
487 union swap_u32
{ unsigned char c
[4]; u32 i
; };
489 #ifdef SNDRV_BIG_ENDIAN
490 static u32
LowerWordSwap(u32 swappee
)
492 static u32
UpperWordSwap(u32 swappee
)
495 union swap_u32 retVal
, swapper
;
498 retVal
.c
[2] = swapper
.c
[3];
499 retVal
.c
[3] = swapper
.c
[2];
500 retVal
.c
[1] = swapper
.c
[1];
501 retVal
.c
[0] = swapper
.c
[0];
506 #ifdef SNDRV_BIG_ENDIAN
507 static u32
UpperWordSwap(u32 swappee
)
509 static u32
LowerWordSwap(u32 swappee
)
512 union swap_u32 retVal
, swapper
;
515 retVal
.c
[2] = swapper
.c
[2];
516 retVal
.c
[3] = swapper
.c
[3];
517 retVal
.c
[1] = swapper
.c
[0];
518 retVal
.c
[0] = swapper
.c
[1];
523 #define SetBitInWord(theWord,bitPosition) (*theWord) |= (0x0001 << bitPosition)
524 #define SetBitInDWord(theWord,bitPosition) (*theWord) |= (0x00000001 << bitPosition)
525 #define ClearBitInWord(theWord,bitPosition) (*theWord) &= ~(0x0001 << bitPosition)
526 #define ClearBitInDWord(theWord,bitPosition) (*theWord) &= ~(0x00000001 << bitPosition)
528 static int snd_korg1212_Send1212Command(struct snd_korg1212
*korg1212
,
529 enum korg1212_dbcnst doorbellVal
,
530 u32 mailBox0Val
, u32 mailBox1Val
,
531 u32 mailBox2Val
, u32 mailBox3Val
)
535 int rc
= K1212_CMDRET_Success
;
537 if (!korg1212
->outDoorbellPtr
) {
538 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: CardUninitialized\n");
539 return K1212_CMDRET_CardUninitialized
;
542 K1212_DEBUG_PRINTK("K1212_DEBUG: Card <- 0x%08x 0x%08x [%s]\n",
543 doorbellVal
, mailBox0Val
, stateName
[korg1212
->cardState
]);
544 for (retryCount
= 0; retryCount
< MAX_COMMAND_RETRIES
; retryCount
++) {
545 writel(mailBox3Val
, korg1212
->mailbox3Ptr
);
546 writel(mailBox2Val
, korg1212
->mailbox2Ptr
);
547 writel(mailBox1Val
, korg1212
->mailbox1Ptr
);
548 writel(mailBox0Val
, korg1212
->mailbox0Ptr
);
549 writel(doorbellVal
, korg1212
->outDoorbellPtr
); // interrupt the card
551 // --------------------------------------------------------------
552 // the reboot command will not give an acknowledgement.
553 // --------------------------------------------------------------
554 if ( doorbellVal
== K1212_DB_RebootCard
||
555 doorbellVal
== K1212_DB_BootFromDSPPage4
||
556 doorbellVal
== K1212_DB_StartDSPDownload
) {
557 rc
= K1212_CMDRET_Success
;
561 // --------------------------------------------------------------
562 // See if the card acknowledged the command. Wait a bit, then
563 // read in the low word of mailbox3. If the MSB is set and the
564 // low byte is equal to the doorbell value, then it ack'd.
565 // --------------------------------------------------------------
566 udelay(COMMAND_ACK_DELAY
);
567 mailBox3Lo
= readl(korg1212
->mailbox3Ptr
);
568 if (mailBox3Lo
& COMMAND_ACK_MASK
) {
569 if ((mailBox3Lo
& DOORBELL_VAL_MASK
) == (doorbellVal
& DOORBELL_VAL_MASK
)) {
570 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: Card <- Success\n");
571 rc
= K1212_CMDRET_Success
;
576 korg1212
->cmdRetryCount
+= retryCount
;
578 if (retryCount
>= MAX_COMMAND_RETRIES
) {
579 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: Card <- NoAckFromCard\n");
580 rc
= K1212_CMDRET_NoAckFromCard
;
586 /* spinlock already held */
587 static void snd_korg1212_SendStop(struct snd_korg1212
*korg1212
)
589 if (! korg1212
->stop_pending_cnt
) {
590 korg1212
->sharedBufferPtr
->cardCommand
= 0xffffffff;
591 /* program the timer */
592 korg1212
->stop_pending_cnt
= HZ
;
593 korg1212
->timer
.expires
= jiffies
+ 1;
594 add_timer(&korg1212
->timer
);
598 static void snd_korg1212_SendStopAndWait(struct snd_korg1212
*korg1212
)
601 spin_lock_irqsave(&korg1212
->lock
, flags
);
602 korg1212
->dsp_stop_is_processed
= 0;
603 snd_korg1212_SendStop(korg1212
);
604 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
605 wait_event_timeout(korg1212
->wait
, korg1212
->dsp_stop_is_processed
, (HZ
* 3) / 2);
608 /* timer callback for checking the ack of stop request */
609 static void snd_korg1212_timer_func(unsigned long data
)
611 struct snd_korg1212
*korg1212
= (struct snd_korg1212
*) data
;
614 spin_lock_irqsave(&korg1212
->lock
, flags
);
615 if (korg1212
->sharedBufferPtr
->cardCommand
== 0) {
617 korg1212
->stop_pending_cnt
= 0;
618 korg1212
->dsp_stop_is_processed
= 1;
619 wake_up(&korg1212
->wait
);
620 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: Stop ack'ed [%s]\n",
621 stateName
[korg1212
->cardState
]);
623 if (--korg1212
->stop_pending_cnt
> 0) {
624 /* reprogram timer */
625 korg1212
->timer
.expires
= jiffies
+ 1;
626 add_timer(&korg1212
->timer
);
628 snd_printd("korg1212_timer_func timeout\n");
629 korg1212
->sharedBufferPtr
->cardCommand
= 0;
630 korg1212
->dsp_stop_is_processed
= 1;
631 wake_up(&korg1212
->wait
);
632 K1212_DEBUG_PRINTK("K1212_DEBUG: Stop timeout [%s]\n",
633 stateName
[korg1212
->cardState
]);
636 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
639 static int snd_korg1212_TurnOnIdleMonitor(struct snd_korg1212
*korg1212
)
644 udelay(INTERCOMMAND_DELAY
);
645 spin_lock_irqsave(&korg1212
->lock
, flags
);
646 korg1212
->idleMonitorOn
= 1;
647 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_SelectPlayMode
,
648 K1212_MODE_MonitorOn
, 0, 0, 0);
649 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
653 static void snd_korg1212_TurnOffIdleMonitor(struct snd_korg1212
*korg1212
)
655 if (korg1212
->idleMonitorOn
) {
656 snd_korg1212_SendStopAndWait(korg1212
);
657 korg1212
->idleMonitorOn
= 0;
661 static inline void snd_korg1212_setCardState(struct snd_korg1212
* korg1212
, enum CardState csState
)
663 korg1212
->cardState
= csState
;
666 static int snd_korg1212_OpenCard(struct snd_korg1212
* korg1212
)
668 K1212_DEBUG_PRINTK("K1212_DEBUG: OpenCard [%s] %d\n",
669 stateName
[korg1212
->cardState
], korg1212
->opencnt
);
670 down(&korg1212
->open_mutex
);
671 if (korg1212
->opencnt
++ == 0) {
672 snd_korg1212_TurnOffIdleMonitor(korg1212
);
673 snd_korg1212_setCardState(korg1212
, K1212_STATE_OPEN
);
676 up(&korg1212
->open_mutex
);
680 static int snd_korg1212_CloseCard(struct snd_korg1212
* korg1212
)
682 K1212_DEBUG_PRINTK("K1212_DEBUG: CloseCard [%s] %d\n",
683 stateName
[korg1212
->cardState
], korg1212
->opencnt
);
685 down(&korg1212
->open_mutex
);
686 if (--(korg1212
->opencnt
)) {
687 up(&korg1212
->open_mutex
);
691 if (korg1212
->cardState
== K1212_STATE_SETUP
) {
692 int rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_SelectPlayMode
,
693 K1212_MODE_StopPlay
, 0, 0, 0);
695 K1212_DEBUG_PRINTK("K1212_DEBUG: CloseCard - RC = %d [%s]\n",
696 rc
, stateName
[korg1212
->cardState
]);
697 if (rc
!= K1212_CMDRET_Success
) {
698 up(&korg1212
->open_mutex
);
701 } else if (korg1212
->cardState
> K1212_STATE_SETUP
) {
702 snd_korg1212_SendStopAndWait(korg1212
);
705 if (korg1212
->cardState
> K1212_STATE_READY
) {
706 snd_korg1212_TurnOnIdleMonitor(korg1212
);
707 snd_korg1212_setCardState(korg1212
, K1212_STATE_READY
);
710 up(&korg1212
->open_mutex
);
714 /* spinlock already held */
715 static int snd_korg1212_SetupForPlay(struct snd_korg1212
* korg1212
)
719 K1212_DEBUG_PRINTK("K1212_DEBUG: SetupForPlay [%s] %d\n",
720 stateName
[korg1212
->cardState
], korg1212
->setcnt
);
722 if (korg1212
->setcnt
++)
725 snd_korg1212_setCardState(korg1212
, K1212_STATE_SETUP
);
726 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_SelectPlayMode
,
727 K1212_MODE_SetupPlay
, 0, 0, 0);
729 K1212_DEBUG_PRINTK("K1212_DEBUG: SetupForPlay - RC = %d [%s]\n",
730 rc
, stateName
[korg1212
->cardState
]);
731 if (rc
!= K1212_CMDRET_Success
) {
737 /* spinlock already held */
738 static int snd_korg1212_TriggerPlay(struct snd_korg1212
* korg1212
)
742 K1212_DEBUG_PRINTK("K1212_DEBUG: TriggerPlay [%s] %d\n",
743 stateName
[korg1212
->cardState
], korg1212
->playcnt
);
745 if (korg1212
->playcnt
++)
748 snd_korg1212_setCardState(korg1212
, K1212_STATE_PLAYING
);
749 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_TriggerPlay
, 0, 0, 0, 0);
751 K1212_DEBUG_PRINTK("K1212_DEBUG: TriggerPlay - RC = %d [%s]\n",
752 rc
, stateName
[korg1212
->cardState
]);
753 if (rc
!= K1212_CMDRET_Success
) {
759 /* spinlock already held */
760 static int snd_korg1212_StopPlay(struct snd_korg1212
* korg1212
)
762 K1212_DEBUG_PRINTK("K1212_DEBUG: StopPlay [%s] %d\n",
763 stateName
[korg1212
->cardState
], korg1212
->playcnt
);
765 if (--(korg1212
->playcnt
))
768 korg1212
->setcnt
= 0;
770 if (korg1212
->cardState
!= K1212_STATE_ERRORSTOP
)
771 snd_korg1212_SendStop(korg1212
);
773 snd_korg1212_setCardState(korg1212
, K1212_STATE_OPEN
);
777 static void snd_korg1212_EnableCardInterrupts(struct snd_korg1212
* korg1212
)
779 writel(PCI_INT_ENABLE_BIT
|
780 PCI_DOORBELL_INT_ENABLE_BIT
|
781 LOCAL_INT_ENABLE_BIT
|
782 LOCAL_DOORBELL_INT_ENABLE_BIT
|
783 LOCAL_DMA1_INT_ENABLE_BIT
,
784 korg1212
->statusRegPtr
);
789 static int snd_korg1212_SetMonitorMode(struct snd_korg1212
*korg1212
,
790 enum MonitorModeSelector mode
)
792 K1212_DEBUG_PRINTK("K1212_DEBUG: SetMonitorMode [%s]\n",
793 stateName
[korg1212
->cardState
]);
796 case K1212_MONMODE_Off
:
797 if (korg1212
->cardState
!= K1212_STATE_MONITOR
)
800 snd_korg1212_SendStopAndWait(korg1212
);
801 snd_korg1212_setCardState(korg1212
, K1212_STATE_OPEN
);
805 case K1212_MONMODE_On
:
806 if (korg1212
->cardState
!= K1212_STATE_OPEN
)
810 snd_korg1212_setCardState(korg1212
, K1212_STATE_MONITOR
);
811 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_SelectPlayMode
,
812 K1212_MODE_MonitorOn
, 0, 0, 0);
813 if (rc
!= K1212_CMDRET_Success
)
825 #endif /* not used */
827 static inline int snd_korg1212_use_is_exclusive(struct snd_korg1212
*korg1212
)
829 if (korg1212
->playback_pid
!= korg1212
->capture_pid
&&
830 korg1212
->playback_pid
>= 0 && korg1212
->capture_pid
>= 0)
836 static int snd_korg1212_SetRate(struct snd_korg1212
*korg1212
, int rate
)
838 static enum ClockSourceIndex s44
[] = {
839 K1212_CLKIDX_AdatAt44_1K
,
840 K1212_CLKIDX_WordAt44_1K
,
841 K1212_CLKIDX_LocalAt44_1K
843 static enum ClockSourceIndex s48
[] = {
844 K1212_CLKIDX_AdatAt48K
,
845 K1212_CLKIDX_WordAt48K
,
846 K1212_CLKIDX_LocalAt48K
850 if (!snd_korg1212_use_is_exclusive (korg1212
))
855 parm
= s44
[korg1212
->clkSource
];
859 parm
= s48
[korg1212
->clkSource
];
866 korg1212
->clkSrcRate
= parm
;
867 korg1212
->clkRate
= rate
;
869 udelay(INTERCOMMAND_DELAY
);
870 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_SetClockSourceRate
,
871 ClockSourceSelector
[korg1212
->clkSrcRate
],
874 K1212_DEBUG_PRINTK("K1212_DEBUG: Set Clock Source Selector - RC = %d [%s]\n",
875 rc
, stateName
[korg1212
->cardState
]);
880 static int snd_korg1212_SetClockSource(struct snd_korg1212
*korg1212
, int source
)
883 if (source
< 0 || source
> 2)
886 korg1212
->clkSource
= source
;
888 snd_korg1212_SetRate(korg1212
, korg1212
->clkRate
);
893 static void snd_korg1212_DisableCardInterrupts(struct snd_korg1212
*korg1212
)
895 writel(0, korg1212
->statusRegPtr
);
898 static int snd_korg1212_WriteADCSensitivity(struct snd_korg1212
*korg1212
)
900 struct SensBits sensVals
;
905 u16 controlValue
; // this keeps the current value to be written to
906 // the card's eeprom control register.
910 K1212_DEBUG_PRINTK("K1212_DEBUG: WriteADCSensivity [%s]\n",
911 stateName
[korg1212
->cardState
]);
913 // ----------------------------------------------------------------------------
914 // initialize things. The local init bit is always set when writing to the
915 // card's control register.
916 // ----------------------------------------------------------------------------
918 SetBitInWord(&controlValue
, SET_SENS_LOCALINIT_BITPOS
); // init the control value
920 // ----------------------------------------------------------------------------
921 // make sure the card is not in monitor mode when we do this update.
922 // ----------------------------------------------------------------------------
923 if (korg1212
->cardState
== K1212_STATE_MONITOR
|| korg1212
->idleMonitorOn
) {
925 snd_korg1212_SendStopAndWait(korg1212
);
929 spin_lock_irqsave(&korg1212
->lock
, flags
);
931 // ----------------------------------------------------------------------------
932 // we are about to send new values to the card, so clear the new values queued
933 // flag. Also, clear out mailbox 3, so we don't lockup.
934 // ----------------------------------------------------------------------------
935 writel(0, korg1212
->mailbox3Ptr
);
936 udelay(LOADSHIFT_DELAY
);
938 // ----------------------------------------------------------------------------
939 // determine whether we are running a 48K or 44.1K clock. This info is used
940 // later when setting the SPDIF FF after the volume has been shifted in.
941 // ----------------------------------------------------------------------------
942 switch (korg1212
->clkSrcRate
) {
943 case K1212_CLKIDX_AdatAt44_1K
:
944 case K1212_CLKIDX_WordAt44_1K
:
945 case K1212_CLKIDX_LocalAt44_1K
:
949 case K1212_CLKIDX_WordAt48K
:
950 case K1212_CLKIDX_AdatAt48K
:
951 case K1212_CLKIDX_LocalAt48K
:
957 // ----------------------------------------------------------------------------
958 // start the update. Setup the bit structure and then shift the bits.
959 // ----------------------------------------------------------------------------
960 sensVals
.l
.v
.leftChanId
= SET_SENS_LEFTCHANID
;
961 sensVals
.r
.v
.rightChanId
= SET_SENS_RIGHTCHANID
;
962 sensVals
.l
.v
.leftChanVal
= korg1212
->leftADCInSens
;
963 sensVals
.r
.v
.rightChanVal
= korg1212
->rightADCInSens
;
965 // ----------------------------------------------------------------------------
966 // now start shifting the bits in. Start with the left channel then the right.
967 // ----------------------------------------------------------------------------
968 for (channel
= 0; channel
< 2; channel
++) {
970 // ----------------------------------------------------------------------------
971 // Bring the load/shift line low, then wait - the spec says >150ns from load/
972 // shift low to the first rising edge of the clock.
973 // ----------------------------------------------------------------------------
974 ClearBitInWord(&controlValue
, SET_SENS_LOADSHIFT_BITPOS
);
975 ClearBitInWord(&controlValue
, SET_SENS_DATA_BITPOS
);
976 writew(controlValue
, korg1212
->sensRegPtr
); // load/shift goes low
977 udelay(LOADSHIFT_DELAY
);
979 for (bitPosition
= 15; bitPosition
>= 0; bitPosition
--) { // for all the bits
981 if (sensVals
.l
.leftSensBits
& (0x0001 << bitPosition
))
982 SetBitInWord(&controlValue
, SET_SENS_DATA_BITPOS
); // data bit set high
984 ClearBitInWord(&controlValue
, SET_SENS_DATA_BITPOS
); // data bit set low
986 if (sensVals
.r
.rightSensBits
& (0x0001 << bitPosition
))
987 SetBitInWord(&controlValue
, SET_SENS_DATA_BITPOS
); // data bit set high
989 ClearBitInWord(&controlValue
, SET_SENS_DATA_BITPOS
); // data bit set low
992 ClearBitInWord(&controlValue
, SET_SENS_CLOCK_BITPOS
);
993 writew(controlValue
, korg1212
->sensRegPtr
); // clock goes low
994 udelay(SENSCLKPULSE_WIDTH
);
995 SetBitInWord(&controlValue
, SET_SENS_CLOCK_BITPOS
);
996 writew(controlValue
, korg1212
->sensRegPtr
); // clock goes high
997 udelay(SENSCLKPULSE_WIDTH
);
1000 // ----------------------------------------------------------------------------
1001 // finish up SPDIF for left. Bring the load/shift line high, then write a one
1002 // bit if the clock rate is 48K otherwise write 0.
1003 // ----------------------------------------------------------------------------
1004 ClearBitInWord(&controlValue
, SET_SENS_DATA_BITPOS
);
1005 ClearBitInWord(&controlValue
, SET_SENS_CLOCK_BITPOS
);
1006 SetBitInWord(&controlValue
, SET_SENS_LOADSHIFT_BITPOS
);
1007 writew(controlValue
, korg1212
->sensRegPtr
); // load shift goes high - clk low
1008 udelay(SENSCLKPULSE_WIDTH
);
1011 SetBitInWord(&controlValue
, SET_SENS_DATA_BITPOS
);
1013 writew(controlValue
, korg1212
->sensRegPtr
); // set/clear data bit
1014 udelay(ONE_RTC_TICK
);
1015 SetBitInWord(&controlValue
, SET_SENS_CLOCK_BITPOS
);
1016 writew(controlValue
, korg1212
->sensRegPtr
); // clock goes high
1017 udelay(SENSCLKPULSE_WIDTH
);
1018 ClearBitInWord(&controlValue
, SET_SENS_CLOCK_BITPOS
);
1019 writew(controlValue
, korg1212
->sensRegPtr
); // clock goes low
1020 udelay(SENSCLKPULSE_WIDTH
);
1023 // ----------------------------------------------------------------------------
1024 // The update is complete. Set a timeout. This is the inter-update delay.
1025 // Also, if the card was in monitor mode, restore it.
1026 // ----------------------------------------------------------------------------
1027 for (count
= 0; count
< 10; count
++)
1028 udelay(SENSCLKPULSE_WIDTH
);
1031 int rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_SelectPlayMode
,
1032 K1212_MODE_MonitorOn
, 0, 0, 0);
1034 K1212_DEBUG_PRINTK("K1212_DEBUG: WriteADCSensivity - RC = %d [%s]\n",
1035 rc
, stateName
[korg1212
->cardState
]);
1038 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1043 static void snd_korg1212_OnDSPDownloadComplete(struct snd_korg1212
*korg1212
)
1047 K1212_DEBUG_PRINTK("K1212_DEBUG: DSP download is complete. [%s]\n",
1048 stateName
[korg1212
->cardState
]);
1050 // ----------------------------------------------------
1051 // tell the card to boot
1052 // ----------------------------------------------------
1053 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_BootFromDSPPage4
, 0, 0, 0, 0);
1056 K1212_DEBUG_PRINTK("K1212_DEBUG: Boot from Page 4 - RC = %d [%s]\n",
1057 rc
, stateName
[korg1212
->cardState
]);
1058 msleep(DSP_BOOT_DELAY_IN_MS
);
1060 // --------------------------------------------------------------------------------
1061 // Let the card know where all the buffers are.
1062 // --------------------------------------------------------------------------------
1063 rc
= snd_korg1212_Send1212Command(korg1212
,
1064 K1212_DB_ConfigureBufferMemory
,
1065 LowerWordSwap(korg1212
->PlayDataPhy
),
1066 LowerWordSwap(korg1212
->RecDataPhy
),
1067 ((kNumBuffers
* kPlayBufferFrames
) / 2), // size given to the card
1068 // is based on 2 buffers
1073 K1212_DEBUG_PRINTK("K1212_DEBUG: Configure Buffer Memory - RC = %d [%s]\n",
1074 rc
, stateName
[korg1212
->cardState
]);
1076 udelay(INTERCOMMAND_DELAY
);
1078 rc
= snd_korg1212_Send1212Command(korg1212
,
1079 K1212_DB_ConfigureMiscMemory
,
1080 LowerWordSwap(korg1212
->VolumeTablePhy
),
1081 LowerWordSwap(korg1212
->RoutingTablePhy
),
1082 LowerWordSwap(korg1212
->AdatTimeCodePhy
),
1087 K1212_DEBUG_PRINTK("K1212_DEBUG: Configure Misc Memory - RC = %d [%s]\n",
1088 rc
, stateName
[korg1212
->cardState
]);
1090 // --------------------------------------------------------------------------------
1091 // Initialize the routing and volume tables, then update the card's state.
1092 // --------------------------------------------------------------------------------
1093 udelay(INTERCOMMAND_DELAY
);
1095 for (channel
= 0; channel
< kAudioChannels
; channel
++) {
1096 korg1212
->sharedBufferPtr
->volumeData
[channel
] = k1212MaxVolume
;
1097 //korg1212->sharedBufferPtr->routeData[channel] = channel;
1098 korg1212
->sharedBufferPtr
->routeData
[channel
] = 8 + (channel
& 1);
1101 snd_korg1212_WriteADCSensitivity(korg1212
);
1103 udelay(INTERCOMMAND_DELAY
);
1104 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_SetClockSourceRate
,
1105 ClockSourceSelector
[korg1212
->clkSrcRate
],
1108 K1212_DEBUG_PRINTK("K1212_DEBUG: Set Clock Source Selector - RC = %d [%s]\n",
1109 rc
, stateName
[korg1212
->cardState
]);
1111 rc
= snd_korg1212_TurnOnIdleMonitor(korg1212
);
1112 snd_korg1212_setCardState(korg1212
, K1212_STATE_READY
);
1115 K1212_DEBUG_PRINTK("K1212_DEBUG: Set Monitor On - RC = %d [%s]\n",
1116 rc
, stateName
[korg1212
->cardState
]);
1118 snd_korg1212_setCardState(korg1212
, K1212_STATE_DSP_COMPLETE
);
1121 static irqreturn_t
snd_korg1212_interrupt(int irq
, void *dev_id
, struct pt_regs
*regs
)
1124 struct snd_korg1212
*korg1212
= dev_id
;
1126 if(irq
!= korg1212
->irq
)
1129 doorbellValue
= readl(korg1212
->inDoorbellPtr
);
1134 spin_lock(&korg1212
->lock
);
1136 writel(doorbellValue
, korg1212
->inDoorbellPtr
);
1138 korg1212
->irqcount
++;
1143 switch (doorbellValue
) {
1144 case K1212_DB_DSPDownloadDone
:
1145 K1212_DEBUG_PRINTK("K1212_DEBUG: IRQ DNLD count - %ld, %x, [%s].\n",
1146 korg1212
->irqcount
, doorbellValue
,
1147 stateName
[korg1212
->cardState
]);
1148 if (korg1212
->cardState
== K1212_STATE_DSP_IN_PROCESS
) {
1149 korg1212
->dsp_is_loaded
= 1;
1150 wake_up(&korg1212
->wait
);
1154 // ------------------------------------------------------------------------
1155 // an error occurred - stop the card
1156 // ------------------------------------------------------------------------
1157 case K1212_DB_DMAERROR
:
1158 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: IRQ DMAE count - %ld, %x, [%s].\n",
1159 korg1212
->irqcount
, doorbellValue
,
1160 stateName
[korg1212
->cardState
]);
1161 snd_printk(KERN_ERR
"korg1212: DMA Error\n");
1162 korg1212
->errorcnt
++;
1163 korg1212
->totalerrorcnt
++;
1164 korg1212
->sharedBufferPtr
->cardCommand
= 0;
1165 snd_korg1212_setCardState(korg1212
, K1212_STATE_ERRORSTOP
);
1168 // ------------------------------------------------------------------------
1169 // the card has stopped by our request. Clear the command word and signal
1170 // the semaphore in case someone is waiting for this.
1171 // ------------------------------------------------------------------------
1172 case K1212_DB_CARDSTOPPED
:
1173 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: IRQ CSTP count - %ld, %x, [%s].\n",
1174 korg1212
->irqcount
, doorbellValue
,
1175 stateName
[korg1212
->cardState
]);
1176 korg1212
->sharedBufferPtr
->cardCommand
= 0;
1180 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: IRQ DFLT count - %ld, %x, cpos=%d [%s].\n",
1181 korg1212
->irqcount
, doorbellValue
,
1182 korg1212
->currentBuffer
, stateName
[korg1212
->cardState
]);
1183 if ((korg1212
->cardState
> K1212_STATE_SETUP
) || korg1212
->idleMonitorOn
) {
1184 korg1212
->currentBuffer
++;
1186 if (korg1212
->currentBuffer
>= kNumBuffers
)
1187 korg1212
->currentBuffer
= 0;
1189 if (!korg1212
->running
)
1192 if (korg1212
->capture_substream
) {
1193 spin_unlock(&korg1212
->lock
);
1194 snd_pcm_period_elapsed(korg1212
->capture_substream
);
1195 spin_lock(&korg1212
->lock
);
1198 if (korg1212
->playback_substream
) {
1199 spin_unlock(&korg1212
->lock
);
1200 snd_pcm_period_elapsed(korg1212
->playback_substream
);
1201 spin_lock(&korg1212
->lock
);
1209 spin_unlock(&korg1212
->lock
);
1214 static int snd_korg1212_downloadDSPCode(struct snd_korg1212
*korg1212
)
1218 K1212_DEBUG_PRINTK("K1212_DEBUG: DSP download is starting... [%s]\n",
1219 stateName
[korg1212
->cardState
]);
1221 // ---------------------------------------------------------------
1222 // verify the state of the card before proceeding.
1223 // ---------------------------------------------------------------
1224 if (korg1212
->cardState
>= K1212_STATE_DSP_IN_PROCESS
)
1227 snd_korg1212_setCardState(korg1212
, K1212_STATE_DSP_IN_PROCESS
);
1229 memcpy(korg1212
->dma_dsp
.area
, dspCode
, korg1212
->dspCodeSize
);
1231 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_StartDSPDownload
,
1232 UpperWordSwap(korg1212
->dma_dsp
.addr
),
1235 K1212_DEBUG_PRINTK("K1212_DEBUG: Start DSP Download RC = %d [%s]\n",
1236 rc
, stateName
[korg1212
->cardState
]);
1238 korg1212
->dsp_is_loaded
= 0;
1239 wait_event_timeout(korg1212
->wait
, korg1212
->dsp_is_loaded
, HZ
* CARD_BOOT_TIMEOUT
);
1240 if (! korg1212
->dsp_is_loaded
)
1241 return -EBUSY
; /* timeout */
1243 snd_korg1212_OnDSPDownloadComplete(korg1212
);
1248 static struct snd_pcm_hardware snd_korg1212_playback_info
=
1250 .info
= (SNDRV_PCM_INFO_MMAP
|
1251 SNDRV_PCM_INFO_MMAP_VALID
|
1252 SNDRV_PCM_INFO_INTERLEAVED
),
1253 .formats
= SNDRV_PCM_FMTBIT_S16_LE
,
1254 .rates
= (SNDRV_PCM_RATE_44100
|
1255 SNDRV_PCM_RATE_48000
),
1258 .channels_min
= K1212_MIN_CHANNELS
,
1259 .channels_max
= K1212_MAX_CHANNELS
,
1260 .buffer_bytes_max
= K1212_MAX_BUF_SIZE
,
1261 .period_bytes_min
= K1212_MIN_CHANNELS
* 2 * kPlayBufferFrames
,
1262 .period_bytes_max
= K1212_MAX_CHANNELS
* 2 * kPlayBufferFrames
,
1263 .periods_min
= K1212_PERIODS
,
1264 .periods_max
= K1212_PERIODS
,
1268 static struct snd_pcm_hardware snd_korg1212_capture_info
=
1270 .info
= (SNDRV_PCM_INFO_MMAP
|
1271 SNDRV_PCM_INFO_MMAP_VALID
|
1272 SNDRV_PCM_INFO_INTERLEAVED
),
1273 .formats
= SNDRV_PCM_FMTBIT_S16_LE
,
1274 .rates
= (SNDRV_PCM_RATE_44100
|
1275 SNDRV_PCM_RATE_48000
),
1278 .channels_min
= K1212_MIN_CHANNELS
,
1279 .channels_max
= K1212_MAX_CHANNELS
,
1280 .buffer_bytes_max
= K1212_MAX_BUF_SIZE
,
1281 .period_bytes_min
= K1212_MIN_CHANNELS
* 2 * kPlayBufferFrames
,
1282 .period_bytes_max
= K1212_MAX_CHANNELS
* 2 * kPlayBufferFrames
,
1283 .periods_min
= K1212_PERIODS
,
1284 .periods_max
= K1212_PERIODS
,
1288 static int snd_korg1212_silence(struct snd_korg1212
*korg1212
, int pos
, int count
, int offset
, int size
)
1290 struct KorgAudioFrame
* dst
= korg1212
->playDataBufsPtr
[0].bufferData
+ pos
;
1293 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_silence pos=%d offset=%d size=%d count=%d\n",
1294 pos
, offset
, size
, count
);
1295 snd_assert(pos
+ count
<= K1212_MAX_SAMPLES
, return -EINVAL
);
1297 for (i
=0; i
< count
; i
++) {
1298 #if K1212_DEBUG_LEVEL > 0
1299 if ( (void *) dst
< (void *) korg1212
->playDataBufsPtr
||
1300 (void *) dst
> (void *) korg1212
->playDataBufsPtr
[8].bufferData
) {
1301 printk(KERN_DEBUG
"K1212_DEBUG: snd_korg1212_silence KERNEL EFAULT dst=%p iter=%d\n",
1306 memset((void*) dst
+ offset
, 0, size
);
1313 static int snd_korg1212_copy_to(struct snd_korg1212
*korg1212
, void __user
*dst
, int pos
, int count
, int offset
, int size
)
1315 struct KorgAudioFrame
* src
= korg1212
->recordDataBufsPtr
[0].bufferData
+ pos
;
1318 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_copy_to pos=%d offset=%d size=%d\n",
1320 snd_assert(pos
+ count
<= K1212_MAX_SAMPLES
, return -EINVAL
);
1322 for (i
=0; i
< count
; i
++) {
1323 #if K1212_DEBUG_LEVEL > 0
1324 if ( (void *) src
< (void *) korg1212
->recordDataBufsPtr
||
1325 (void *) src
> (void *) korg1212
->recordDataBufsPtr
[8].bufferData
) {
1326 printk(KERN_DEBUG
"K1212_DEBUG: snd_korg1212_copy_to KERNEL EFAULT, src=%p dst=%p iter=%d\n", src
, dst
, i
);
1330 rc
= copy_to_user(dst
+ offset
, src
, size
);
1332 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_copy_to USER EFAULT src=%p dst=%p iter=%d\n", src
, dst
, i
);
1342 static int snd_korg1212_copy_from(struct snd_korg1212
*korg1212
, void __user
*src
, int pos
, int count
, int offset
, int size
)
1344 struct KorgAudioFrame
* dst
= korg1212
->playDataBufsPtr
[0].bufferData
+ pos
;
1347 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_copy_from pos=%d offset=%d size=%d count=%d\n",
1348 pos
, offset
, size
, count
);
1350 snd_assert(pos
+ count
<= K1212_MAX_SAMPLES
, return -EINVAL
);
1352 for (i
=0; i
< count
; i
++) {
1353 #if K1212_DEBUG_LEVEL > 0
1354 if ( (void *) dst
< (void *) korg1212
->playDataBufsPtr
||
1355 (void *) dst
> (void *) korg1212
->playDataBufsPtr
[8].bufferData
) {
1356 printk(KERN_DEBUG
"K1212_DEBUG: snd_korg1212_copy_from KERNEL EFAULT, src=%p dst=%p iter=%d\n", src
, dst
, i
);
1360 rc
= copy_from_user((void*) dst
+ offset
, src
, size
);
1362 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_copy_from USER EFAULT src=%p dst=%p iter=%d\n", src
, dst
, i
);
1372 static void snd_korg1212_free_pcm(struct snd_pcm
*pcm
)
1374 struct snd_korg1212
*korg1212
= pcm
->private_data
;
1376 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_free_pcm [%s]\n",
1377 stateName
[korg1212
->cardState
]);
1379 korg1212
->pcm
= NULL
;
1382 static int snd_korg1212_playback_open(struct snd_pcm_substream
*substream
)
1384 unsigned long flags
;
1385 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1386 struct snd_pcm_runtime
*runtime
= substream
->runtime
;
1388 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_playback_open [%s]\n",
1389 stateName
[korg1212
->cardState
]);
1391 snd_pcm_set_sync(substream
); // ???
1393 snd_korg1212_OpenCard(korg1212
);
1395 runtime
->hw
= snd_korg1212_playback_info
;
1396 snd_pcm_set_runtime_buffer(substream
, &korg1212
->dma_play
);
1398 spin_lock_irqsave(&korg1212
->lock
, flags
);
1400 korg1212
->playback_substream
= substream
;
1401 korg1212
->playback_pid
= current
->pid
;
1402 korg1212
->periodsize
= K1212_PERIODS
;
1403 korg1212
->channels
= K1212_CHANNELS
;
1404 korg1212
->errorcnt
= 0;
1406 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1408 snd_pcm_hw_constraint_minmax(runtime
, SNDRV_PCM_HW_PARAM_PERIOD_SIZE
, kPlayBufferFrames
, kPlayBufferFrames
);
1413 static int snd_korg1212_capture_open(struct snd_pcm_substream
*substream
)
1415 unsigned long flags
;
1416 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1417 struct snd_pcm_runtime
*runtime
= substream
->runtime
;
1419 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_capture_open [%s]\n",
1420 stateName
[korg1212
->cardState
]);
1422 snd_pcm_set_sync(substream
);
1424 snd_korg1212_OpenCard(korg1212
);
1426 runtime
->hw
= snd_korg1212_capture_info
;
1427 snd_pcm_set_runtime_buffer(substream
, &korg1212
->dma_rec
);
1429 spin_lock_irqsave(&korg1212
->lock
, flags
);
1431 korg1212
->capture_substream
= substream
;
1432 korg1212
->capture_pid
= current
->pid
;
1433 korg1212
->periodsize
= K1212_PERIODS
;
1434 korg1212
->channels
= K1212_CHANNELS
;
1436 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1438 snd_pcm_hw_constraint_minmax(runtime
, SNDRV_PCM_HW_PARAM_PERIOD_SIZE
,
1439 kPlayBufferFrames
, kPlayBufferFrames
);
1443 static int snd_korg1212_playback_close(struct snd_pcm_substream
*substream
)
1445 unsigned long flags
;
1446 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1448 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_playback_close [%s]\n",
1449 stateName
[korg1212
->cardState
]);
1451 snd_korg1212_silence(korg1212
, 0, K1212_MAX_SAMPLES
, 0, korg1212
->channels
* 2);
1453 spin_lock_irqsave(&korg1212
->lock
, flags
);
1455 korg1212
->playback_pid
= -1;
1456 korg1212
->playback_substream
= NULL
;
1457 korg1212
->periodsize
= 0;
1459 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1461 snd_korg1212_CloseCard(korg1212
);
1465 static int snd_korg1212_capture_close(struct snd_pcm_substream
*substream
)
1467 unsigned long flags
;
1468 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1470 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_capture_close [%s]\n",
1471 stateName
[korg1212
->cardState
]);
1473 spin_lock_irqsave(&korg1212
->lock
, flags
);
1475 korg1212
->capture_pid
= -1;
1476 korg1212
->capture_substream
= NULL
;
1477 korg1212
->periodsize
= 0;
1479 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1481 snd_korg1212_CloseCard(korg1212
);
1485 static int snd_korg1212_ioctl(struct snd_pcm_substream
*substream
,
1486 unsigned int cmd
, void *arg
)
1488 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_ioctl: cmd=%d\n", cmd
);
1490 if (cmd
== SNDRV_PCM_IOCTL1_CHANNEL_INFO
) {
1491 struct snd_pcm_channel_info
*info
= arg
;
1493 info
->first
= info
->channel
* 16;
1495 K1212_DEBUG_PRINTK("K1212_DEBUG: channel_info %d:, offset=%ld, first=%d, step=%d\n", info
->channel
, info
->offset
, info
->first
, info
->step
);
1499 return snd_pcm_lib_ioctl(substream
, cmd
, arg
);
1502 static int snd_korg1212_hw_params(struct snd_pcm_substream
*substream
,
1503 struct snd_pcm_hw_params
*params
)
1505 unsigned long flags
;
1506 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1511 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_hw_params [%s]\n",
1512 stateName
[korg1212
->cardState
]);
1514 spin_lock_irqsave(&korg1212
->lock
, flags
);
1516 if (substream
->pstr
->stream
== SNDRV_PCM_STREAM_PLAYBACK
) {
1517 this_pid
= korg1212
->playback_pid
;
1518 other_pid
= korg1212
->capture_pid
;
1520 this_pid
= korg1212
->capture_pid
;
1521 other_pid
= korg1212
->playback_pid
;
1524 if ((other_pid
> 0) && (this_pid
!= other_pid
)) {
1526 /* The other stream is open, and not by the same
1527 task as this one. Make sure that the parameters
1528 that matter are the same.
1531 if ((int)params_rate(params
) != korg1212
->clkRate
) {
1532 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1533 _snd_pcm_hw_param_setempty(params
, SNDRV_PCM_HW_PARAM_RATE
);
1537 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1541 if ((err
= snd_korg1212_SetRate(korg1212
, params_rate(params
))) < 0) {
1542 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1546 korg1212
->channels
= params_channels(params
);
1547 korg1212
->periodsize
= K1212_PERIOD_BYTES
;
1549 spin_unlock_irqrestore(&korg1212
->lock
, flags
);
1554 static int snd_korg1212_prepare(struct snd_pcm_substream
*substream
)
1556 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1559 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_prepare [%s]\n",
1560 stateName
[korg1212
->cardState
]);
1562 spin_lock_irq(&korg1212
->lock
);
1564 /* FIXME: we should wait for ack! */
1565 if (korg1212
->stop_pending_cnt
> 0) {
1566 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_prepare - Stop is pending... [%s]\n",
1567 stateName
[korg1212
->cardState
]);
1568 spin_unlock_irq(&korg1212
->lock
);
1571 korg1212->sharedBufferPtr->cardCommand = 0;
1572 del_timer(&korg1212->timer);
1573 korg1212->stop_pending_cnt = 0;
1577 rc
= snd_korg1212_SetupForPlay(korg1212
);
1579 korg1212
->currentBuffer
= 0;
1581 spin_unlock_irq(&korg1212
->lock
);
1583 return rc
? -EINVAL
: 0;
1586 static int snd_korg1212_trigger(struct snd_pcm_substream
*substream
,
1589 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1592 K1212_DEBUG_PRINTK("K1212_DEBUG: snd_korg1212_trigger [%s] cmd=%d\n",
1593 stateName
[korg1212
->cardState
], cmd
);
1595 spin_lock(&korg1212
->lock
);
1597 case SNDRV_PCM_TRIGGER_START
:
1599 if (korg1212->running) {
1600 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_trigger: Already running?\n");
1604 korg1212
->running
++;
1605 rc
= snd_korg1212_TriggerPlay(korg1212
);
1608 case SNDRV_PCM_TRIGGER_STOP
:
1610 if (!korg1212->running) {
1611 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_trigger: Already stopped?\n");
1615 korg1212
->running
--;
1616 rc
= snd_korg1212_StopPlay(korg1212
);
1623 spin_unlock(&korg1212
->lock
);
1624 return rc
? -EINVAL
: 0;
1627 static snd_pcm_uframes_t
snd_korg1212_playback_pointer(struct snd_pcm_substream
*substream
)
1629 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1630 snd_pcm_uframes_t pos
;
1632 pos
= korg1212
->currentBuffer
* kPlayBufferFrames
;
1634 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_playback_pointer [%s] %ld\n",
1635 stateName
[korg1212
->cardState
], pos
);
1640 static snd_pcm_uframes_t
snd_korg1212_capture_pointer(struct snd_pcm_substream
*substream
)
1642 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1643 snd_pcm_uframes_t pos
;
1645 pos
= korg1212
->currentBuffer
* kPlayBufferFrames
;
1647 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_capture_pointer [%s] %ld\n",
1648 stateName
[korg1212
->cardState
], pos
);
1653 static int snd_korg1212_playback_copy(struct snd_pcm_substream
*substream
,
1654 int channel
, /* not used (interleaved data) */
1655 snd_pcm_uframes_t pos
,
1657 snd_pcm_uframes_t count
)
1659 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1661 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_playback_copy [%s] %ld %ld\n",
1662 stateName
[korg1212
->cardState
], pos
, count
);
1664 return snd_korg1212_copy_from(korg1212
, src
, pos
, count
, 0, korg1212
->channels
* 2);
1668 static int snd_korg1212_playback_silence(struct snd_pcm_substream
*substream
,
1669 int channel
, /* not used (interleaved data) */
1670 snd_pcm_uframes_t pos
,
1671 snd_pcm_uframes_t count
)
1673 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1675 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_playback_silence [%s]\n",
1676 stateName
[korg1212
->cardState
]);
1678 return snd_korg1212_silence(korg1212
, pos
, count
, 0, korg1212
->channels
* 2);
1681 static int snd_korg1212_capture_copy(struct snd_pcm_substream
*substream
,
1682 int channel
, /* not used (interleaved data) */
1683 snd_pcm_uframes_t pos
,
1685 snd_pcm_uframes_t count
)
1687 struct snd_korg1212
*korg1212
= snd_pcm_substream_chip(substream
);
1689 K1212_DEBUG_PRINTK_VERBOSE("K1212_DEBUG: snd_korg1212_capture_copy [%s] %ld %ld\n",
1690 stateName
[korg1212
->cardState
], pos
, count
);
1692 return snd_korg1212_copy_to(korg1212
, dst
, pos
, count
, 0, korg1212
->channels
* 2);
1695 static struct snd_pcm_ops snd_korg1212_playback_ops
= {
1696 .open
= snd_korg1212_playback_open
,
1697 .close
= snd_korg1212_playback_close
,
1698 .ioctl
= snd_korg1212_ioctl
,
1699 .hw_params
= snd_korg1212_hw_params
,
1700 .prepare
= snd_korg1212_prepare
,
1701 .trigger
= snd_korg1212_trigger
,
1702 .pointer
= snd_korg1212_playback_pointer
,
1703 .copy
= snd_korg1212_playback_copy
,
1704 .silence
= snd_korg1212_playback_silence
,
1707 static struct snd_pcm_ops snd_korg1212_capture_ops
= {
1708 .open
= snd_korg1212_capture_open
,
1709 .close
= snd_korg1212_capture_close
,
1710 .ioctl
= snd_korg1212_ioctl
,
1711 .hw_params
= snd_korg1212_hw_params
,
1712 .prepare
= snd_korg1212_prepare
,
1713 .trigger
= snd_korg1212_trigger
,
1714 .pointer
= snd_korg1212_capture_pointer
,
1715 .copy
= snd_korg1212_capture_copy
,
1722 static int snd_korg1212_control_phase_info(struct snd_kcontrol
*kcontrol
,
1723 struct snd_ctl_elem_info
*uinfo
)
1725 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_BOOLEAN
;
1726 uinfo
->count
= (kcontrol
->private_value
>= 8) ? 2 : 1;
1730 static int snd_korg1212_control_phase_get(struct snd_kcontrol
*kcontrol
,
1731 struct snd_ctl_elem_value
*u
)
1733 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1734 int i
= kcontrol
->private_value
;
1736 spin_lock_irq(&korg1212
->lock
);
1738 u
->value
.integer
.value
[0] = korg1212
->volumePhase
[i
];
1741 u
->value
.integer
.value
[1] = korg1212
->volumePhase
[i
+1];
1743 spin_unlock_irq(&korg1212
->lock
);
1748 static int snd_korg1212_control_phase_put(struct snd_kcontrol
*kcontrol
,
1749 struct snd_ctl_elem_value
*u
)
1751 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1755 spin_lock_irq(&korg1212
->lock
);
1757 i
= kcontrol
->private_value
;
1759 korg1212
->volumePhase
[i
] = u
->value
.integer
.value
[0];
1761 val
= korg1212
->sharedBufferPtr
->volumeData
[kcontrol
->private_value
];
1763 if ((u
->value
.integer
.value
[0] > 0) != (val
< 0)) {
1764 val
= abs(val
) * (korg1212
->volumePhase
[i
] > 0 ? -1 : 1);
1765 korg1212
->sharedBufferPtr
->volumeData
[i
] = val
;
1770 korg1212
->volumePhase
[i
+1] = u
->value
.integer
.value
[1];
1772 val
= korg1212
->sharedBufferPtr
->volumeData
[kcontrol
->private_value
+1];
1774 if ((u
->value
.integer
.value
[1] > 0) != (val
< 0)) {
1775 val
= abs(val
) * (korg1212
->volumePhase
[i
+1] > 0 ? -1 : 1);
1776 korg1212
->sharedBufferPtr
->volumeData
[i
+1] = val
;
1781 spin_unlock_irq(&korg1212
->lock
);
1786 static int snd_korg1212_control_volume_info(struct snd_kcontrol
*kcontrol
,
1787 struct snd_ctl_elem_info
*uinfo
)
1789 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_INTEGER
;
1790 uinfo
->count
= (kcontrol
->private_value
>= 8) ? 2 : 1;
1791 uinfo
->value
.integer
.min
= k1212MinVolume
;
1792 uinfo
->value
.integer
.max
= k1212MaxVolume
;
1796 static int snd_korg1212_control_volume_get(struct snd_kcontrol
*kcontrol
,
1797 struct snd_ctl_elem_value
*u
)
1799 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1802 spin_lock_irq(&korg1212
->lock
);
1804 i
= kcontrol
->private_value
;
1805 u
->value
.integer
.value
[0] = abs(korg1212
->sharedBufferPtr
->volumeData
[i
]);
1808 u
->value
.integer
.value
[1] = abs(korg1212
->sharedBufferPtr
->volumeData
[i
+1]);
1810 spin_unlock_irq(&korg1212
->lock
);
1815 static int snd_korg1212_control_volume_put(struct snd_kcontrol
*kcontrol
,
1816 struct snd_ctl_elem_value
*u
)
1818 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1823 spin_lock_irq(&korg1212
->lock
);
1825 i
= kcontrol
->private_value
;
1827 if (u
->value
.integer
.value
[0] != abs(korg1212
->sharedBufferPtr
->volumeData
[i
])) {
1828 val
= korg1212
->volumePhase
[i
] > 0 ? -1 : 1;
1829 val
*= u
->value
.integer
.value
[0];
1830 korg1212
->sharedBufferPtr
->volumeData
[i
] = val
;
1835 if (u
->value
.integer
.value
[1] != abs(korg1212
->sharedBufferPtr
->volumeData
[i
+1])) {
1836 val
= korg1212
->volumePhase
[i
+1] > 0 ? -1 : 1;
1837 val
*= u
->value
.integer
.value
[1];
1838 korg1212
->sharedBufferPtr
->volumeData
[i
+1] = val
;
1843 spin_unlock_irq(&korg1212
->lock
);
1848 static int snd_korg1212_control_route_info(struct snd_kcontrol
*kcontrol
,
1849 struct snd_ctl_elem_info
*uinfo
)
1851 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_ENUMERATED
;
1852 uinfo
->count
= (kcontrol
->private_value
>= 8) ? 2 : 1;
1853 uinfo
->value
.enumerated
.items
= kAudioChannels
;
1854 if (uinfo
->value
.enumerated
.item
> kAudioChannels
-1) {
1855 uinfo
->value
.enumerated
.item
= kAudioChannels
-1;
1857 strcpy(uinfo
->value
.enumerated
.name
, channelName
[uinfo
->value
.enumerated
.item
]);
1861 static int snd_korg1212_control_route_get(struct snd_kcontrol
*kcontrol
,
1862 struct snd_ctl_elem_value
*u
)
1864 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1867 spin_lock_irq(&korg1212
->lock
);
1869 i
= kcontrol
->private_value
;
1870 u
->value
.enumerated
.item
[0] = korg1212
->sharedBufferPtr
->routeData
[i
];
1873 u
->value
.enumerated
.item
[1] = korg1212
->sharedBufferPtr
->routeData
[i
+1];
1875 spin_unlock_irq(&korg1212
->lock
);
1880 static int snd_korg1212_control_route_put(struct snd_kcontrol
*kcontrol
,
1881 struct snd_ctl_elem_value
*u
)
1883 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1886 spin_lock_irq(&korg1212
->lock
);
1888 i
= kcontrol
->private_value
;
1890 if (u
->value
.enumerated
.item
[0] != (unsigned) korg1212
->sharedBufferPtr
->volumeData
[i
]) {
1891 korg1212
->sharedBufferPtr
->routeData
[i
] = u
->value
.enumerated
.item
[0];
1896 if (u
->value
.enumerated
.item
[1] != (unsigned) korg1212
->sharedBufferPtr
->volumeData
[i
+1]) {
1897 korg1212
->sharedBufferPtr
->routeData
[i
+1] = u
->value
.enumerated
.item
[1];
1902 spin_unlock_irq(&korg1212
->lock
);
1907 static int snd_korg1212_control_info(struct snd_kcontrol
*kcontrol
,
1908 struct snd_ctl_elem_info
*uinfo
)
1910 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_INTEGER
;
1912 uinfo
->value
.integer
.min
= k1212MaxADCSens
;
1913 uinfo
->value
.integer
.max
= k1212MinADCSens
;
1917 static int snd_korg1212_control_get(struct snd_kcontrol
*kcontrol
,
1918 struct snd_ctl_elem_value
*u
)
1920 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1922 spin_lock_irq(&korg1212
->lock
);
1924 u
->value
.integer
.value
[0] = korg1212
->leftADCInSens
;
1925 u
->value
.integer
.value
[1] = korg1212
->rightADCInSens
;
1927 spin_unlock_irq(&korg1212
->lock
);
1932 static int snd_korg1212_control_put(struct snd_kcontrol
*kcontrol
,
1933 struct snd_ctl_elem_value
*u
)
1935 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1938 spin_lock_irq(&korg1212
->lock
);
1940 if (u
->value
.integer
.value
[0] != korg1212
->leftADCInSens
) {
1941 korg1212
->leftADCInSens
= u
->value
.integer
.value
[0];
1944 if (u
->value
.integer
.value
[1] != korg1212
->rightADCInSens
) {
1945 korg1212
->rightADCInSens
= u
->value
.integer
.value
[1];
1949 spin_unlock_irq(&korg1212
->lock
);
1952 snd_korg1212_WriteADCSensitivity(korg1212
);
1957 static int snd_korg1212_control_sync_info(struct snd_kcontrol
*kcontrol
,
1958 struct snd_ctl_elem_info
*uinfo
)
1960 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_ENUMERATED
;
1962 uinfo
->value
.enumerated
.items
= 3;
1963 if (uinfo
->value
.enumerated
.item
> 2) {
1964 uinfo
->value
.enumerated
.item
= 2;
1966 strcpy(uinfo
->value
.enumerated
.name
, clockSourceTypeName
[uinfo
->value
.enumerated
.item
]);
1970 static int snd_korg1212_control_sync_get(struct snd_kcontrol
*kcontrol
,
1971 struct snd_ctl_elem_value
*ucontrol
)
1973 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1975 spin_lock_irq(&korg1212
->lock
);
1977 ucontrol
->value
.enumerated
.item
[0] = korg1212
->clkSource
;
1979 spin_unlock_irq(&korg1212
->lock
);
1983 static int snd_korg1212_control_sync_put(struct snd_kcontrol
*kcontrol
,
1984 struct snd_ctl_elem_value
*ucontrol
)
1986 struct snd_korg1212
*korg1212
= snd_kcontrol_chip(kcontrol
);
1990 val
= ucontrol
->value
.enumerated
.item
[0] % 3;
1991 spin_lock_irq(&korg1212
->lock
);
1992 change
= val
!= korg1212
->clkSource
;
1993 snd_korg1212_SetClockSource(korg1212
, val
);
1994 spin_unlock_irq(&korg1212
->lock
);
1998 #define MON_MIXER(ord,c_name) \
2000 .access = SNDRV_CTL_ELEM_ACCESS_READ | SNDRV_CTL_ELEM_ACCESS_WRITE, \
2001 .iface = SNDRV_CTL_ELEM_IFACE_MIXER, \
2002 .name = c_name " Monitor Volume", \
2003 .info = snd_korg1212_control_volume_info, \
2004 .get = snd_korg1212_control_volume_get, \
2005 .put = snd_korg1212_control_volume_put, \
2006 .private_value = ord, \
2009 .access = SNDRV_CTL_ELEM_ACCESS_READ | SNDRV_CTL_ELEM_ACCESS_WRITE, \
2010 .iface = SNDRV_CTL_ELEM_IFACE_MIXER, \
2011 .name = c_name " Monitor Route", \
2012 .info = snd_korg1212_control_route_info, \
2013 .get = snd_korg1212_control_route_get, \
2014 .put = snd_korg1212_control_route_put, \
2015 .private_value = ord, \
2018 .access = SNDRV_CTL_ELEM_ACCESS_READ | SNDRV_CTL_ELEM_ACCESS_WRITE, \
2019 .iface = SNDRV_CTL_ELEM_IFACE_MIXER, \
2020 .name = c_name " Monitor Phase Invert", \
2021 .info = snd_korg1212_control_phase_info, \
2022 .get = snd_korg1212_control_phase_get, \
2023 .put = snd_korg1212_control_phase_put, \
2024 .private_value = ord, \
2027 static struct snd_kcontrol_new snd_korg1212_controls
[] = {
2028 MON_MIXER(8, "Analog"),
2029 MON_MIXER(10, "SPDIF"),
2030 MON_MIXER(0, "ADAT-1"), MON_MIXER(1, "ADAT-2"), MON_MIXER(2, "ADAT-3"), MON_MIXER(3, "ADAT-4"),
2031 MON_MIXER(4, "ADAT-5"), MON_MIXER(5, "ADAT-6"), MON_MIXER(6, "ADAT-7"), MON_MIXER(7, "ADAT-8"),
2033 .access
= SNDRV_CTL_ELEM_ACCESS_READ
| SNDRV_CTL_ELEM_ACCESS_WRITE
,
2034 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
2035 .name
= "Sync Source",
2036 .info
= snd_korg1212_control_sync_info
,
2037 .get
= snd_korg1212_control_sync_get
,
2038 .put
= snd_korg1212_control_sync_put
,
2041 .access
= SNDRV_CTL_ELEM_ACCESS_READ
| SNDRV_CTL_ELEM_ACCESS_WRITE
,
2042 .iface
= SNDRV_CTL_ELEM_IFACE_MIXER
,
2043 .name
= "ADC Attenuation",
2044 .info
= snd_korg1212_control_info
,
2045 .get
= snd_korg1212_control_get
,
2046 .put
= snd_korg1212_control_put
,
2054 static void snd_korg1212_proc_read(struct snd_info_entry
*entry
,
2055 struct snd_info_buffer
*buffer
)
2058 struct snd_korg1212
*korg1212
= entry
->private_data
;
2060 snd_iprintf(buffer
, korg1212
->card
->longname
);
2061 snd_iprintf(buffer
, " (index #%d)\n", korg1212
->card
->number
+ 1);
2062 snd_iprintf(buffer
, "\nGeneral settings\n");
2063 snd_iprintf(buffer
, " period size: %Zd bytes\n", K1212_PERIOD_BYTES
);
2064 snd_iprintf(buffer
, " clock mode: %s\n", clockSourceName
[korg1212
->clkSrcRate
] );
2065 snd_iprintf(buffer
, " left ADC Sens: %d\n", korg1212
->leftADCInSens
);
2066 snd_iprintf(buffer
, " right ADC Sens: %d\n", korg1212
->rightADCInSens
);
2067 snd_iprintf(buffer
, " Volume Info:\n");
2068 for (n
=0; n
<kAudioChannels
; n
++)
2069 snd_iprintf(buffer
, " Channel %d: %s -> %s [%d]\n", n
,
2071 channelName
[korg1212
->sharedBufferPtr
->routeData
[n
]],
2072 korg1212
->sharedBufferPtr
->volumeData
[n
]);
2073 snd_iprintf(buffer
, "\nGeneral status\n");
2074 snd_iprintf(buffer
, " ADAT Time Code: %d\n", korg1212
->sharedBufferPtr
->AdatTimeCode
);
2075 snd_iprintf(buffer
, " Card State: %s\n", stateName
[korg1212
->cardState
]);
2076 snd_iprintf(buffer
, "Idle mon. State: %d\n", korg1212
->idleMonitorOn
);
2077 snd_iprintf(buffer
, "Cmd retry count: %d\n", korg1212
->cmdRetryCount
);
2078 snd_iprintf(buffer
, " Irq count: %ld\n", korg1212
->irqcount
);
2079 snd_iprintf(buffer
, " Error count: %ld\n", korg1212
->totalerrorcnt
);
2082 static void __devinit
snd_korg1212_proc_init(struct snd_korg1212
*korg1212
)
2084 struct snd_info_entry
*entry
;
2086 if (! snd_card_proc_new(korg1212
->card
, "korg1212", &entry
))
2087 snd_info_set_text_ops(entry
, korg1212
, 1024, snd_korg1212_proc_read
);
2091 snd_korg1212_free(struct snd_korg1212
*korg1212
)
2093 snd_korg1212_TurnOffIdleMonitor(korg1212
);
2095 if (korg1212
->irq
>= 0) {
2096 synchronize_irq(korg1212
->irq
);
2097 snd_korg1212_DisableCardInterrupts(korg1212
);
2098 free_irq(korg1212
->irq
, korg1212
);
2102 if (korg1212
->iobase
!= NULL
) {
2103 iounmap(korg1212
->iobase
);
2104 korg1212
->iobase
= NULL
;
2107 pci_release_regions(korg1212
->pci
);
2109 // ----------------------------------------------------
2110 // free up memory resources used for the DSP download.
2111 // ----------------------------------------------------
2112 if (korg1212
->dma_dsp
.area
) {
2113 snd_dma_free_pages(&korg1212
->dma_dsp
);
2114 korg1212
->dma_dsp
.area
= NULL
;
2117 #ifndef K1212_LARGEALLOC
2119 // ------------------------------------------------------
2120 // free up memory resources used for the Play/Rec Buffers
2121 // ------------------------------------------------------
2122 if (korg1212
->dma_play
.area
) {
2123 snd_dma_free_pages(&korg1212
->dma_play
);
2124 korg1212
->dma_play
.area
= NULL
;
2127 if (korg1212
->dma_rec
.area
) {
2128 snd_dma_free_pages(&korg1212
->dma_rec
);
2129 korg1212
->dma_rec
.area
= NULL
;
2134 // ----------------------------------------------------
2135 // free up memory resources used for the Shared Buffers
2136 // ----------------------------------------------------
2137 if (korg1212
->dma_shared
.area
) {
2138 snd_dma_free_pages(&korg1212
->dma_shared
);
2139 korg1212
->dma_shared
.area
= NULL
;
2142 pci_disable_device(korg1212
->pci
);
2147 static int snd_korg1212_dev_free(struct snd_device
*device
)
2149 struct snd_korg1212
*korg1212
= device
->device_data
;
2150 K1212_DEBUG_PRINTK("K1212_DEBUG: Freeing device\n");
2151 return snd_korg1212_free(korg1212
);
2154 static int __devinit
snd_korg1212_create(struct snd_card
*card
, struct pci_dev
*pci
,
2155 struct snd_korg1212
** rchip
)
2160 unsigned ioport_size
, iomem_size
, iomem2_size
;
2161 struct snd_korg1212
* korg1212
;
2163 static struct snd_device_ops ops
= {
2164 .dev_free
= snd_korg1212_dev_free
,
2168 if ((err
= pci_enable_device(pci
)) < 0)
2171 korg1212
= kzalloc(sizeof(*korg1212
), GFP_KERNEL
);
2172 if (korg1212
== NULL
) {
2173 pci_disable_device(pci
);
2177 korg1212
->card
= card
;
2178 korg1212
->pci
= pci
;
2180 init_waitqueue_head(&korg1212
->wait
);
2181 spin_lock_init(&korg1212
->lock
);
2182 init_MUTEX(&korg1212
->open_mutex
);
2183 init_timer(&korg1212
->timer
);
2184 korg1212
->timer
.function
= snd_korg1212_timer_func
;
2185 korg1212
->timer
.data
= (unsigned long)korg1212
;
2188 korg1212
->clkSource
= K1212_CLKIDX_Local
;
2189 korg1212
->clkRate
= 44100;
2190 korg1212
->inIRQ
= 0;
2191 korg1212
->running
= 0;
2192 korg1212
->opencnt
= 0;
2193 korg1212
->playcnt
= 0;
2194 korg1212
->setcnt
= 0;
2195 korg1212
->totalerrorcnt
= 0;
2196 korg1212
->playback_pid
= -1;
2197 korg1212
->capture_pid
= -1;
2198 snd_korg1212_setCardState(korg1212
, K1212_STATE_UNINITIALIZED
);
2199 korg1212
->idleMonitorOn
= 0;
2200 korg1212
->clkSrcRate
= K1212_CLKIDX_LocalAt44_1K
;
2201 korg1212
->leftADCInSens
= k1212MaxADCSens
;
2202 korg1212
->rightADCInSens
= k1212MaxADCSens
;
2204 for (i
=0; i
<kAudioChannels
; i
++)
2205 korg1212
->volumePhase
[i
] = 0;
2207 if ((err
= pci_request_regions(pci
, "korg1212")) < 0) {
2209 pci_disable_device(pci
);
2213 korg1212
->iomem
= pci_resource_start(korg1212
->pci
, 0);
2214 korg1212
->ioport
= pci_resource_start(korg1212
->pci
, 1);
2215 korg1212
->iomem2
= pci_resource_start(korg1212
->pci
, 2);
2217 iomem_size
= pci_resource_len(korg1212
->pci
, 0);
2218 ioport_size
= pci_resource_len(korg1212
->pci
, 1);
2219 iomem2_size
= pci_resource_len(korg1212
->pci
, 2);
2221 K1212_DEBUG_PRINTK("K1212_DEBUG: resources:\n"
2222 " iomem = 0x%lx (%d)\n"
2223 " ioport = 0x%lx (%d)\n"
2224 " iomem = 0x%lx (%d)\n"
2226 korg1212
->iomem
, iomem_size
,
2227 korg1212
->ioport
, ioport_size
,
2228 korg1212
->iomem2
, iomem2_size
,
2229 stateName
[korg1212
->cardState
]);
2231 if ((korg1212
->iobase
= ioremap(korg1212
->iomem
, iomem_size
)) == NULL
) {
2232 snd_printk(KERN_ERR
"korg1212: unable to remap memory region 0x%lx-0x%lx\n", korg1212
->iomem
,
2233 korg1212
->iomem
+ iomem_size
- 1);
2234 snd_korg1212_free(korg1212
);
2238 err
= request_irq(pci
->irq
, snd_korg1212_interrupt
,
2239 SA_INTERRUPT
|SA_SHIRQ
,
2240 "korg1212", korg1212
);
2243 snd_printk(KERN_ERR
"korg1212: unable to grab IRQ %d\n", pci
->irq
);
2244 snd_korg1212_free(korg1212
);
2248 korg1212
->irq
= pci
->irq
;
2250 pci_set_master(korg1212
->pci
);
2252 korg1212
->statusRegPtr
= (u32 __iomem
*) (korg1212
->iobase
+ STATUS_REG_OFFSET
);
2253 korg1212
->outDoorbellPtr
= (u32 __iomem
*) (korg1212
->iobase
+ OUT_DOORBELL_OFFSET
);
2254 korg1212
->inDoorbellPtr
= (u32 __iomem
*) (korg1212
->iobase
+ IN_DOORBELL_OFFSET
);
2255 korg1212
->mailbox0Ptr
= (u32 __iomem
*) (korg1212
->iobase
+ MAILBOX0_OFFSET
);
2256 korg1212
->mailbox1Ptr
= (u32 __iomem
*) (korg1212
->iobase
+ MAILBOX1_OFFSET
);
2257 korg1212
->mailbox2Ptr
= (u32 __iomem
*) (korg1212
->iobase
+ MAILBOX2_OFFSET
);
2258 korg1212
->mailbox3Ptr
= (u32 __iomem
*) (korg1212
->iobase
+ MAILBOX3_OFFSET
);
2259 korg1212
->controlRegPtr
= (u32 __iomem
*) (korg1212
->iobase
+ PCI_CONTROL_OFFSET
);
2260 korg1212
->sensRegPtr
= (u16 __iomem
*) (korg1212
->iobase
+ SENS_CONTROL_OFFSET
);
2261 korg1212
->idRegPtr
= (u32 __iomem
*) (korg1212
->iobase
+ DEV_VEND_ID_OFFSET
);
2263 K1212_DEBUG_PRINTK("K1212_DEBUG: card registers:\n"
2264 " Status register = 0x%p\n"
2265 " OutDoorbell = 0x%p\n"
2266 " InDoorbell = 0x%p\n"
2267 " Mailbox0 = 0x%p\n"
2268 " Mailbox1 = 0x%p\n"
2269 " Mailbox2 = 0x%p\n"
2270 " Mailbox3 = 0x%p\n"
2271 " ControlReg = 0x%p\n"
2275 korg1212
->statusRegPtr
,
2276 korg1212
->outDoorbellPtr
,
2277 korg1212
->inDoorbellPtr
,
2278 korg1212
->mailbox0Ptr
,
2279 korg1212
->mailbox1Ptr
,
2280 korg1212
->mailbox2Ptr
,
2281 korg1212
->mailbox3Ptr
,
2282 korg1212
->controlRegPtr
,
2283 korg1212
->sensRegPtr
,
2285 stateName
[korg1212
->cardState
]);
2287 if (snd_dma_alloc_pages(SNDRV_DMA_TYPE_DEV
, snd_dma_pci_data(pci
),
2288 sizeof(struct KorgSharedBuffer
), &korg1212
->dma_shared
) < 0) {
2289 snd_printk(KERN_ERR
"korg1212: can not allocate shared buffer memory (%Zd bytes)\n", sizeof(struct KorgSharedBuffer
));
2290 snd_korg1212_free(korg1212
);
2293 korg1212
->sharedBufferPtr
= (struct KorgSharedBuffer
*)korg1212
->dma_shared
.area
;
2294 korg1212
->sharedBufferPhy
= korg1212
->dma_shared
.addr
;
2296 K1212_DEBUG_PRINTK("K1212_DEBUG: Shared Buffer Area = 0x%p (0x%08lx), %d bytes\n", korg1212
->sharedBufferPtr
, korg1212
->sharedBufferPhy
, sizeof(struct KorgSharedBuffer
));
2298 #ifndef K1212_LARGEALLOC
2300 korg1212
->DataBufsSize
= sizeof(struct KorgAudioBuffer
) * kNumBuffers
;
2302 if (snd_dma_alloc_pages(SNDRV_DMA_TYPE_DEV
, snd_dma_pci_data(pci
),
2303 korg1212
->DataBufsSize
, &korg1212
->dma_play
) < 0) {
2304 snd_printk(KERN_ERR
"korg1212: can not allocate play data buffer memory (%d bytes)\n", korg1212
->DataBufsSize
);
2305 snd_korg1212_free(korg1212
);
2308 korg1212
->playDataBufsPtr
= (struct KorgAudioBuffer
*)korg1212
->dma_play
.area
;
2309 korg1212
->PlayDataPhy
= korg1212
->dma_play
.addr
;
2311 K1212_DEBUG_PRINTK("K1212_DEBUG: Play Data Area = 0x%p (0x%08x), %d bytes\n",
2312 korg1212
->playDataBufsPtr
, korg1212
->PlayDataPhy
, korg1212
->DataBufsSize
);
2314 if (snd_dma_alloc_pages(SNDRV_DMA_TYPE_DEV
, snd_dma_pci_data(pci
),
2315 korg1212
->DataBufsSize
, &korg1212
->dma_rec
) < 0) {
2316 snd_printk(KERN_ERR
"korg1212: can not allocate record data buffer memory (%d bytes)\n", korg1212
->DataBufsSize
);
2317 snd_korg1212_free(korg1212
);
2320 korg1212
->recordDataBufsPtr
= (struct KorgAudioBuffer
*)korg1212
->dma_rec
.area
;
2321 korg1212
->RecDataPhy
= korg1212
->dma_rec
.addr
;
2323 K1212_DEBUG_PRINTK("K1212_DEBUG: Record Data Area = 0x%p (0x%08x), %d bytes\n",
2324 korg1212
->recordDataBufsPtr
, korg1212
->RecDataPhy
, korg1212
->DataBufsSize
);
2326 #else // K1212_LARGEALLOC
2328 korg1212
->recordDataBufsPtr
= korg1212
->sharedBufferPtr
->recordDataBufs
;
2329 korg1212
->playDataBufsPtr
= korg1212
->sharedBufferPtr
->playDataBufs
;
2330 korg1212
->PlayDataPhy
= (u32
) &((struct KorgSharedBuffer
*) korg1212
->sharedBufferPhy
)->playDataBufs
;
2331 korg1212
->RecDataPhy
= (u32
) &((struct KorgSharedBuffer
*) korg1212
->sharedBufferPhy
)->recordDataBufs
;
2333 #endif // K1212_LARGEALLOC
2335 korg1212
->dspCodeSize
= sizeof (dspCode
);
2337 korg1212
->VolumeTablePhy
= korg1212
->sharedBufferPhy
+
2338 offsetof(struct KorgSharedBuffer
, volumeData
);
2339 korg1212
->RoutingTablePhy
= korg1212
->sharedBufferPhy
+
2340 offsetof(struct KorgSharedBuffer
, routeData
);
2341 korg1212
->AdatTimeCodePhy
= korg1212
->sharedBufferPhy
+
2342 offsetof(struct KorgSharedBuffer
, AdatTimeCode
);
2344 if (snd_dma_alloc_pages(SNDRV_DMA_TYPE_DEV
, snd_dma_pci_data(pci
),
2345 korg1212
->dspCodeSize
, &korg1212
->dma_dsp
) < 0) {
2346 snd_printk(KERN_ERR
"korg1212: can not allocate dsp code memory (%d bytes)\n", korg1212
->dspCodeSize
);
2347 snd_korg1212_free(korg1212
);
2351 K1212_DEBUG_PRINTK("K1212_DEBUG: DSP Code area = 0x%p (0x%08x) %d bytes [%s]\n",
2352 korg1212
->dma_dsp
.area
, korg1212
->dma_dsp
.addr
, korg1212
->dspCodeSize
,
2353 stateName
[korg1212
->cardState
]);
2355 rc
= snd_korg1212_Send1212Command(korg1212
, K1212_DB_RebootCard
, 0, 0, 0, 0);
2358 K1212_DEBUG_PRINTK("K1212_DEBUG: Reboot Card - RC = %d [%s]\n", rc
, stateName
[korg1212
->cardState
]);
2360 if ((err
= snd_device_new(card
, SNDRV_DEV_LOWLEVEL
, korg1212
, &ops
)) < 0) {
2361 snd_korg1212_free(korg1212
);
2365 snd_korg1212_EnableCardInterrupts(korg1212
);
2367 mdelay(CARD_BOOT_DELAY_IN_MS
);
2369 if (snd_korg1212_downloadDSPCode(korg1212
))
2372 K1212_DEBUG_PRINTK("korg1212: dspMemPhy = %08x U[%08x], "
2373 "PlayDataPhy = %08x L[%08x]\n"
2374 "korg1212: RecDataPhy = %08x L[%08x], "
2375 "VolumeTablePhy = %08x L[%08x]\n"
2376 "korg1212: RoutingTablePhy = %08x L[%08x], "
2377 "AdatTimeCodePhy = %08x L[%08x]\n",
2378 (int)korg1212
->dma_dsp
.addr
, UpperWordSwap(korg1212
->dma_dsp
.addr
),
2379 korg1212
->PlayDataPhy
, LowerWordSwap(korg1212
->PlayDataPhy
),
2380 korg1212
->RecDataPhy
, LowerWordSwap(korg1212
->RecDataPhy
),
2381 korg1212
->VolumeTablePhy
, LowerWordSwap(korg1212
->VolumeTablePhy
),
2382 korg1212
->RoutingTablePhy
, LowerWordSwap(korg1212
->RoutingTablePhy
),
2383 korg1212
->AdatTimeCodePhy
, LowerWordSwap(korg1212
->AdatTimeCodePhy
));
2385 if ((err
= snd_pcm_new(korg1212
->card
, "korg1212", 0, 1, 1, &korg1212
->pcm
)) < 0)
2388 korg1212
->pcm
->private_data
= korg1212
;
2389 korg1212
->pcm
->private_free
= snd_korg1212_free_pcm
;
2390 strcpy(korg1212
->pcm
->name
, "korg1212");
2392 snd_pcm_set_ops(korg1212
->pcm
, SNDRV_PCM_STREAM_PLAYBACK
, &snd_korg1212_playback_ops
);
2394 snd_pcm_set_ops(korg1212
->pcm
, SNDRV_PCM_STREAM_CAPTURE
, &snd_korg1212_capture_ops
);
2396 korg1212
->pcm
->info_flags
= SNDRV_PCM_INFO_JOINT_DUPLEX
;
2398 for (i
= 0; i
< ARRAY_SIZE(snd_korg1212_controls
); i
++) {
2399 err
= snd_ctl_add(korg1212
->card
, snd_ctl_new1(&snd_korg1212_controls
[i
], korg1212
));
2404 snd_korg1212_proc_init(korg1212
);
2406 snd_card_set_dev(card
, &pci
->dev
);
2414 * Card initialisation
2417 static int __devinit
2418 snd_korg1212_probe(struct pci_dev
*pci
,
2419 const struct pci_device_id
*pci_id
)
2422 struct snd_korg1212
*korg1212
;
2423 struct snd_card
*card
;
2426 if (dev
>= SNDRV_CARDS
) {
2433 card
= snd_card_new(index
[dev
], id
[dev
], THIS_MODULE
, 0);
2437 if ((err
= snd_korg1212_create(card
, pci
, &korg1212
)) < 0) {
2438 snd_card_free(card
);
2442 strcpy(card
->driver
, "korg1212");
2443 strcpy(card
->shortname
, "korg1212");
2444 sprintf(card
->longname
, "%s at 0x%lx, irq %d", card
->shortname
,
2445 korg1212
->iomem
, korg1212
->irq
);
2447 K1212_DEBUG_PRINTK("K1212_DEBUG: %s\n", card
->longname
);
2449 if ((err
= snd_card_register(card
)) < 0) {
2450 snd_card_free(card
);
2453 pci_set_drvdata(pci
, card
);
2458 static void __devexit
snd_korg1212_remove(struct pci_dev
*pci
)
2460 snd_card_free(pci_get_drvdata(pci
));
2461 pci_set_drvdata(pci
, NULL
);
2464 static struct pci_driver driver
= {
2466 .id_table
= snd_korg1212_ids
,
2467 .probe
= snd_korg1212_probe
,
2468 .remove
= __devexit_p(snd_korg1212_remove
),
2471 static int __init
alsa_card_korg1212_init(void)
2473 return pci_register_driver(&driver
);
2476 static void __exit
alsa_card_korg1212_exit(void)
2478 pci_unregister_driver(&driver
);
2481 module_init(alsa_card_korg1212_init
)
2482 module_exit(alsa_card_korg1212_exit
)