e45f467610
Propagate copy_to/from_user() errors back through callers. Signed-off-by: Jeff Garzik <jeff@garzik.org> Signed-off-by: Andrew Morton <akpm@osdl.org> Signed-off-by: Linus Torvalds <torvalds@osdl.org>
384 lines
9.5 KiB
C
384 lines
9.5 KiB
C
/*
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**********************************************************************
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* cardwi.c - PCM input HAL for emu10k1 driver
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* Copyright 1999, 2000 Creative Labs, Inc.
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*
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**********************************************************************
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*
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* Date Author Summary of changes
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* ---- ------ ------------------
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* October 20, 1999 Bertrand Lee base code release
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*
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**********************************************************************
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of
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* the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public
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* License along with this program; if not, write to the Free
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* Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139,
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* USA.
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*
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**********************************************************************
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*/
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#include <linux/poll.h>
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#include "hwaccess.h"
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#include "timer.h"
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#include "recmgr.h"
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#include "audio.h"
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#include "cardwi.h"
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/**
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* query_format - returns a valid sound format
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*
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* This function will return a valid sound format as close
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* to the requested one as possible.
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*/
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static void query_format(int recsrc, struct wave_format *wave_fmt)
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{
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switch (recsrc) {
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case WAVERECORD_AC97:
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if ((wave_fmt->channels != 1) && (wave_fmt->channels != 2))
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wave_fmt->channels = 2;
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if (wave_fmt->samplingrate >= (0xBB80 + 0xAC44) / 2)
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wave_fmt->samplingrate = 0xBB80;
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else if (wave_fmt->samplingrate >= (0xAC44 + 0x7D00) / 2)
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wave_fmt->samplingrate = 0xAC44;
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else if (wave_fmt->samplingrate >= (0x7D00 + 0x5DC0) / 2)
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wave_fmt->samplingrate = 0x7D00;
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else if (wave_fmt->samplingrate >= (0x5DC0 + 0x5622) / 2)
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wave_fmt->samplingrate = 0x5DC0;
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else if (wave_fmt->samplingrate >= (0x5622 + 0x3E80) / 2)
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wave_fmt->samplingrate = 0x5622;
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else if (wave_fmt->samplingrate >= (0x3E80 + 0x2B11) / 2)
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wave_fmt->samplingrate = 0x3E80;
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else if (wave_fmt->samplingrate >= (0x2B11 + 0x1F40) / 2)
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wave_fmt->samplingrate = 0x2B11;
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else
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wave_fmt->samplingrate = 0x1F40;
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switch (wave_fmt->id) {
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case AFMT_S16_LE:
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wave_fmt->bitsperchannel = 16;
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break;
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case AFMT_U8:
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wave_fmt->bitsperchannel = 8;
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break;
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default:
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wave_fmt->id = AFMT_S16_LE;
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wave_fmt->bitsperchannel = 16;
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break;
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}
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break;
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/* these can't be changed from the original values */
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case WAVERECORD_MIC:
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case WAVERECORD_FX:
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break;
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default:
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BUG();
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break;
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}
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wave_fmt->bytesperchannel = wave_fmt->bitsperchannel >> 3;
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wave_fmt->bytespersample = wave_fmt->channels * wave_fmt->bytesperchannel;
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wave_fmt->bytespersec = wave_fmt->bytespersample * wave_fmt->samplingrate;
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wave_fmt->bytespervoicesample = wave_fmt->bytespersample;
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}
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static int alloc_buffer(struct emu10k1_card *card, struct wavein_buffer *buffer)
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{
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buffer->addr = pci_alloc_consistent(card->pci_dev, buffer->size * buffer->cov,
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&buffer->dma_handle);
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if (buffer->addr == NULL)
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return -1;
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return 0;
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}
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static void free_buffer(struct emu10k1_card *card, struct wavein_buffer *buffer)
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{
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if (buffer->addr != NULL)
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pci_free_consistent(card->pci_dev, buffer->size * buffer->cov,
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buffer->addr, buffer->dma_handle);
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}
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int emu10k1_wavein_open(struct emu10k1_wavedevice *wave_dev)
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{
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struct emu10k1_card *card = wave_dev->card;
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struct wiinst *wiinst = wave_dev->wiinst;
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struct wiinst **wiinst_tmp = NULL;
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u16 delay;
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unsigned long flags;
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DPF(2, "emu10k1_wavein_open()\n");
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switch (wiinst->recsrc) {
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case WAVERECORD_AC97:
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wiinst_tmp = &card->wavein.ac97;
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break;
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case WAVERECORD_MIC:
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wiinst_tmp = &card->wavein.mic;
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break;
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case WAVERECORD_FX:
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wiinst_tmp = &card->wavein.fx;
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break;
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default:
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BUG();
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break;
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}
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spin_lock_irqsave(&card->lock, flags);
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if (*wiinst_tmp != NULL) {
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spin_unlock_irqrestore(&card->lock, flags);
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return -1;
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}
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*wiinst_tmp = wiinst;
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spin_unlock_irqrestore(&card->lock, flags);
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/* handle 8 bit recording */
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if (wiinst->format.bytesperchannel == 1) {
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if (wiinst->buffer.size > 0x8000) {
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wiinst->buffer.size = 0x8000;
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wiinst->buffer.sizeregval = 0x1f;
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} else
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wiinst->buffer.sizeregval += 4;
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wiinst->buffer.cov = 2;
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} else
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wiinst->buffer.cov = 1;
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if (alloc_buffer(card, &wiinst->buffer) < 0) {
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ERROR();
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return -1;
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}
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emu10k1_set_record_src(card, wiinst);
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emu10k1_reset_record(card, &wiinst->buffer);
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wiinst->buffer.hw_pos = 0;
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wiinst->buffer.pos = 0;
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wiinst->buffer.bytestocopy = 0;
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delay = (48000 * wiinst->buffer.fragment_size) / wiinst->format.bytespersec;
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emu10k1_timer_install(card, &wiinst->timer, delay / 2);
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wiinst->state = WAVE_STATE_OPEN;
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return 0;
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}
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void emu10k1_wavein_close(struct emu10k1_wavedevice *wave_dev)
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{
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struct emu10k1_card *card = wave_dev->card;
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struct wiinst *wiinst = wave_dev->wiinst;
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unsigned long flags;
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DPF(2, "emu10k1_wavein_close()\n");
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emu10k1_wavein_stop(wave_dev);
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emu10k1_timer_uninstall(card, &wiinst->timer);
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free_buffer(card, &wiinst->buffer);
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spin_lock_irqsave(&card->lock, flags);
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switch (wave_dev->wiinst->recsrc) {
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case WAVERECORD_AC97:
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card->wavein.ac97 = NULL;
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break;
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case WAVERECORD_MIC:
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card->wavein.mic = NULL;
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break;
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case WAVERECORD_FX:
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card->wavein.fx = NULL;
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break;
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default:
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BUG();
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break;
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}
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spin_unlock_irqrestore(&card->lock, flags);
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wiinst->state = WAVE_STATE_CLOSED;
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}
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void emu10k1_wavein_start(struct emu10k1_wavedevice *wave_dev)
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{
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struct emu10k1_card *card = wave_dev->card;
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struct wiinst *wiinst = wave_dev->wiinst;
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DPF(2, "emu10k1_wavein_start()\n");
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emu10k1_start_record(card, &wiinst->buffer);
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emu10k1_timer_enable(wave_dev->card, &wiinst->timer);
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wiinst->state |= WAVE_STATE_STARTED;
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}
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void emu10k1_wavein_stop(struct emu10k1_wavedevice *wave_dev)
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{
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struct emu10k1_card *card = wave_dev->card;
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struct wiinst *wiinst = wave_dev->wiinst;
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DPF(2, "emu10k1_wavein_stop()\n");
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if (!(wiinst->state & WAVE_STATE_STARTED))
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return;
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emu10k1_timer_disable(card, &wiinst->timer);
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emu10k1_stop_record(card, &wiinst->buffer);
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wiinst->state &= ~WAVE_STATE_STARTED;
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}
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int emu10k1_wavein_setformat(struct emu10k1_wavedevice *wave_dev, struct wave_format *format)
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{
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struct emu10k1_card *card = wave_dev->card;
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struct wiinst *wiinst = wave_dev->wiinst;
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u16 delay;
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DPF(2, "emu10k1_wavein_setformat()\n");
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if (wiinst->state & WAVE_STATE_STARTED)
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return -1;
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query_format(wiinst->recsrc, format);
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if ((wiinst->format.samplingrate != format->samplingrate)
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|| (wiinst->format.bitsperchannel != format->bitsperchannel)
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|| (wiinst->format.channels != format->channels)) {
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wiinst->format = *format;
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if (wiinst->state == WAVE_STATE_CLOSED)
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return 0;
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wiinst->buffer.size *= wiinst->buffer.cov;
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if (wiinst->format.bytesperchannel == 1) {
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wiinst->buffer.cov = 2;
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wiinst->buffer.size /= wiinst->buffer.cov;
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} else
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wiinst->buffer.cov = 1;
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emu10k1_timer_uninstall(card, &wiinst->timer);
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delay = (48000 * wiinst->buffer.fragment_size) / wiinst->format.bytespersec;
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emu10k1_timer_install(card, &wiinst->timer, delay / 2);
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}
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return 0;
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}
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void emu10k1_wavein_getxfersize(struct wiinst *wiinst, u32 * size)
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{
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struct wavein_buffer *buffer = &wiinst->buffer;
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*size = buffer->bytestocopy;
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if (wiinst->mmapped)
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return;
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if (*size > buffer->size) {
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*size = buffer->size;
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buffer->pos = buffer->hw_pos;
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buffer->bytestocopy = buffer->size;
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DPF(1, "buffer overrun\n");
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}
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}
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static int copy_block(u8 __user *dst, u8 * src, u32 str, u32 len, u8 cov)
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{
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if (cov == 1) {
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if (__copy_to_user(dst, src + str, len))
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return -EFAULT;
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} else {
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u8 byte;
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u32 i;
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src += 1 + 2 * str;
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for (i = 0; i < len; i++) {
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byte = src[2 * i] ^ 0x80;
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if (__copy_to_user(dst + i, &byte, 1))
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return -EFAULT;
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}
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}
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return 0;
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}
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int emu10k1_wavein_xferdata(struct wiinst *wiinst, u8 __user *data, u32 * size)
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{
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struct wavein_buffer *buffer = &wiinst->buffer;
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u32 sizetocopy, sizetocopy_now, start;
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unsigned long flags;
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int ret;
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sizetocopy = min_t(u32, buffer->size, *size);
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*size = sizetocopy;
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if (!sizetocopy)
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return 0;
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spin_lock_irqsave(&wiinst->lock, flags);
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start = buffer->pos;
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buffer->pos += sizetocopy;
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buffer->pos %= buffer->size;
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buffer->bytestocopy -= sizetocopy;
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sizetocopy_now = buffer->size - start;
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spin_unlock_irqrestore(&wiinst->lock, flags);
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if (sizetocopy > sizetocopy_now) {
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sizetocopy -= sizetocopy_now;
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ret = copy_block(data, buffer->addr, start, sizetocopy_now,
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buffer->cov);
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if (ret == 0)
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ret = copy_block(data + sizetocopy_now, buffer->addr, 0,
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sizetocopy, buffer->cov);
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} else {
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ret = copy_block(data, buffer->addr, start, sizetocopy,
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buffer->cov);
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}
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return ret;
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}
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void emu10k1_wavein_update(struct emu10k1_card *card, struct wiinst *wiinst)
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{
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u32 hw_pos;
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u32 diff;
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/* There is no actual start yet */
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if (!(wiinst->state & WAVE_STATE_STARTED)) {
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hw_pos = wiinst->buffer.hw_pos;
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} else {
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/* hw_pos in byte units */
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hw_pos = sblive_readptr(card, wiinst->buffer.idxreg, 0) / wiinst->buffer.cov;
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}
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diff = (wiinst->buffer.size + hw_pos - wiinst->buffer.hw_pos) % wiinst->buffer.size;
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wiinst->total_recorded += diff;
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wiinst->buffer.bytestocopy += diff;
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wiinst->buffer.hw_pos = hw_pos;
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}
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