316 lines
9.4 KiB
C
316 lines
9.4 KiB
C
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/*
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* Driver for the NXP SAA7164 PCIe bridge
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*
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* Copyright (c) 2010-2015 Steven Toth <stoth@kernellabs.com>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (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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*
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* GNU General Public License for more details.
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*/
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#include <linux/slab.h>
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#include "saa7164.h"
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/* The PCI address space for buffer handling looks like this:
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*
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* +-u32 wide-------------+
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* | +
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* +-u64 wide------------------------------------+
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* + +
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* +----------------------+
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* | CurrentBufferPtr + Pointer to current PCI buffer >-+
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* +----------------------+ |
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* | Unused + |
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* +----------------------+ |
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* | Pitch + = 188 (bytes) |
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* +----------------------+ |
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* | PCI buffer size + = pitch * number of lines (312) |
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* +----------------------+ |
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* |0| Buf0 Write Offset + |
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* +----------------------+ v
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* |1| Buf1 Write Offset + |
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* +----------------------+ |
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* |2| Buf2 Write Offset + |
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* +----------------------+ |
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* |3| Buf3 Write Offset + |
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* +----------------------+ |
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* ... More write offsets |
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* +---------------------------------------------+ |
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* +0| set of ptrs to PCI pagetables + |
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* +---------------------------------------------+ |
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* +1| set of ptrs to PCI pagetables + <--------+
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* +---------------------------------------------+
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* +2| set of ptrs to PCI pagetables +
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* +---------------------------------------------+
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* +3| set of ptrs to PCI pagetables + >--+
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* +---------------------------------------------+ |
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* ... More buffer pointers | +----------------+
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* +->| pt[0] TS data |
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* | +----------------+
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* |
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* | +----------------+
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* +->| pt[1] TS data |
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* | +----------------+
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* | etc
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*/
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void saa7164_buffer_display(struct saa7164_buffer *buf)
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{
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struct saa7164_dev *dev = buf->port->dev;
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int i;
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dprintk(DBGLVL_BUF, "%s() buffer @ 0x%p nr=%d\n",
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__func__, buf, buf->idx);
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dprintk(DBGLVL_BUF, " pci_cpu @ 0x%p dma @ 0x%08llx len = 0x%x\n",
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buf->cpu, (long long)buf->dma, buf->pci_size);
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dprintk(DBGLVL_BUF, " pt_cpu @ 0x%p pt_dma @ 0x%08llx len = 0x%x\n",
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buf->pt_cpu, (long long)buf->pt_dma, buf->pt_size);
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/* Format the Page Table Entries to point into the data buffer */
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for (i = 0 ; i < SAA7164_PT_ENTRIES; i++) {
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dprintk(DBGLVL_BUF, " pt[%02d] = 0x%p -> 0x%llx\n",
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i, buf->pt_cpu, (u64)*(buf->pt_cpu));
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}
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}
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/* Allocate a new buffer structure and associated PCI space in bytes.
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* len must be a multiple of sizeof(u64)
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*/
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struct saa7164_buffer *saa7164_buffer_alloc(struct saa7164_port *port,
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u32 len)
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{
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struct tmHWStreamParameters *params = &port->hw_streamingparams;
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struct saa7164_buffer *buf = NULL;
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struct saa7164_dev *dev = port->dev;
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int i;
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if ((len == 0) || (len >= 65536) || (len % sizeof(u64))) {
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log_warn("%s() SAA_ERR_BAD_PARAMETER\n", __func__);
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goto ret;
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}
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buf = kzalloc(sizeof(*buf), GFP_KERNEL);
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if (!buf)
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goto ret;
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buf->idx = -1;
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buf->port = port;
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buf->flags = SAA7164_BUFFER_FREE;
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buf->pos = 0;
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buf->actual_size = params->pitch * params->numberoflines;
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buf->crc = 0;
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/* TODO: arg len is being ignored */
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buf->pci_size = SAA7164_PT_ENTRIES * 0x1000;
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buf->pt_size = (SAA7164_PT_ENTRIES * sizeof(u64)) + 0x1000;
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/* Allocate contiguous memory */
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buf->cpu = pci_alloc_consistent(port->dev->pci, buf->pci_size,
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&buf->dma);
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if (!buf->cpu)
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goto fail1;
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buf->pt_cpu = pci_alloc_consistent(port->dev->pci, buf->pt_size,
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&buf->pt_dma);
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if (!buf->pt_cpu)
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goto fail2;
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/* init the buffers to a known pattern, easier during debugging */
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memset(buf->cpu, 0xff, buf->pci_size);
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buf->crc = crc32(0, buf->cpu, buf->actual_size);
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memset(buf->pt_cpu, 0xff, buf->pt_size);
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dprintk(DBGLVL_BUF, "%s() allocated buffer @ 0x%p (%d pageptrs)\n",
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__func__, buf, params->numpagetables);
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dprintk(DBGLVL_BUF, " pci_cpu @ 0x%p dma @ 0x%08lx len = 0x%x\n",
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buf->cpu, (long)buf->dma, buf->pci_size);
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dprintk(DBGLVL_BUF, " pt_cpu @ 0x%p pt_dma @ 0x%08lx len = 0x%x\n",
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buf->pt_cpu, (long)buf->pt_dma, buf->pt_size);
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/* Format the Page Table Entries to point into the data buffer */
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for (i = 0 ; i < params->numpagetables; i++) {
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*(buf->pt_cpu + i) = buf->dma + (i * 0x1000); /* TODO */
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dprintk(DBGLVL_BUF, " pt[%02d] = 0x%p -> 0x%llx\n",
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i, buf->pt_cpu, (u64)*(buf->pt_cpu));
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}
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goto ret;
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fail2:
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pci_free_consistent(port->dev->pci, buf->pci_size, buf->cpu, buf->dma);
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fail1:
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kfree(buf);
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buf = NULL;
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ret:
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return buf;
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}
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int saa7164_buffer_dealloc(struct saa7164_buffer *buf)
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{
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struct saa7164_dev *dev;
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if (!buf || !buf->port)
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return SAA_ERR_BAD_PARAMETER;
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dev = buf->port->dev;
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dprintk(DBGLVL_BUF, "%s() deallocating buffer @ 0x%p\n",
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__func__, buf);
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if (buf->flags != SAA7164_BUFFER_FREE)
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log_warn(" freeing a non-free buffer\n");
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pci_free_consistent(dev->pci, buf->pci_size, buf->cpu, buf->dma);
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pci_free_consistent(dev->pci, buf->pt_size, buf->pt_cpu, buf->pt_dma);
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kfree(buf);
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return SAA_OK;
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}
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int saa7164_buffer_zero_offsets(struct saa7164_port *port, int i)
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{
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struct saa7164_dev *dev = port->dev;
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if ((i < 0) || (i >= port->hwcfg.buffercount))
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return -EINVAL;
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dprintk(DBGLVL_BUF, "%s(idx = %d)\n", __func__, i);
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saa7164_writel(port->bufoffset + (sizeof(u32) * i), 0);
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return 0;
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}
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/* Write a buffer into the hardware */
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int saa7164_buffer_activate(struct saa7164_buffer *buf, int i)
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{
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struct saa7164_port *port = buf->port;
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struct saa7164_dev *dev = port->dev;
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if ((i < 0) || (i >= port->hwcfg.buffercount))
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return -EINVAL;
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dprintk(DBGLVL_BUF, "%s(idx = %d)\n", __func__, i);
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buf->idx = i; /* Note of which buffer list index position we occupy */
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buf->flags = SAA7164_BUFFER_BUSY;
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buf->pos = 0;
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/* TODO: Review this in light of 32v64 assignments */
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saa7164_writel(port->bufoffset + (sizeof(u32) * i), 0);
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saa7164_writel(port->bufptr32h + ((sizeof(u32) * 2) * i), buf->pt_dma);
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saa7164_writel(port->bufptr32l + ((sizeof(u32) * 2) * i), 0);
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dprintk(DBGLVL_BUF, " buf[%d] offset 0x%llx (0x%x) buf 0x%llx/%llx (0x%x/%x) nr=%d\n",
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buf->idx,
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(u64)port->bufoffset + (i * sizeof(u32)),
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saa7164_readl(port->bufoffset + (sizeof(u32) * i)),
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(u64)port->bufptr32h + ((sizeof(u32) * 2) * i),
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(u64)port->bufptr32l + ((sizeof(u32) * 2) * i),
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saa7164_readl(port->bufptr32h + ((sizeof(u32) * i) * 2)),
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saa7164_readl(port->bufptr32l + ((sizeof(u32) * i) * 2)),
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buf->idx);
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return 0;
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}
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int saa7164_buffer_cfg_port(struct saa7164_port *port)
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{
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struct tmHWStreamParameters *params = &port->hw_streamingparams;
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struct saa7164_dev *dev = port->dev;
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struct saa7164_buffer *buf;
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struct list_head *c, *n;
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int i = 0;
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dprintk(DBGLVL_BUF, "%s(port=%d)\n", __func__, port->nr);
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saa7164_writel(port->bufcounter, 0);
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saa7164_writel(port->pitch, params->pitch);
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saa7164_writel(port->bufsize, params->pitch * params->numberoflines);
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dprintk(DBGLVL_BUF, " configured:\n");
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dprintk(DBGLVL_BUF, " lmmio 0x%p\n", dev->lmmio);
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dprintk(DBGLVL_BUF, " bufcounter 0x%x = 0x%x\n", port->bufcounter,
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saa7164_readl(port->bufcounter));
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dprintk(DBGLVL_BUF, " pitch 0x%x = %d\n", port->pitch,
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saa7164_readl(port->pitch));
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dprintk(DBGLVL_BUF, " bufsize 0x%x = %d\n", port->bufsize,
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saa7164_readl(port->bufsize));
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dprintk(DBGLVL_BUF, " buffercount = %d\n", port->hwcfg.buffercount);
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dprintk(DBGLVL_BUF, " bufoffset = 0x%x\n", port->bufoffset);
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dprintk(DBGLVL_BUF, " bufptr32h = 0x%x\n", port->bufptr32h);
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dprintk(DBGLVL_BUF, " bufptr32l = 0x%x\n", port->bufptr32l);
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/* Poke the buffers and offsets into PCI space */
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mutex_lock(&port->dmaqueue_lock);
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list_for_each_safe(c, n, &port->dmaqueue.list) {
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buf = list_entry(c, struct saa7164_buffer, list);
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if (buf->flags != SAA7164_BUFFER_FREE)
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BUG();
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/* Place the buffer in the h/w queue */
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saa7164_buffer_activate(buf, i);
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/* Don't exceed the device maximum # bufs */
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if (i++ > port->hwcfg.buffercount)
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BUG();
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}
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mutex_unlock(&port->dmaqueue_lock);
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return 0;
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}
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struct saa7164_user_buffer *saa7164_buffer_alloc_user(struct saa7164_dev *dev,
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u32 len)
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{
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struct saa7164_user_buffer *buf;
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buf = kzalloc(sizeof(*buf), GFP_KERNEL);
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if (!buf)
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return NULL;
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buf->data = kzalloc(len, GFP_KERNEL);
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if (!buf->data) {
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kfree(buf);
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return NULL;
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}
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buf->actual_size = len;
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buf->pos = 0;
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buf->crc = 0;
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dprintk(DBGLVL_BUF, "%s() allocated user buffer @ 0x%p\n",
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__func__, buf);
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return buf;
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}
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void saa7164_buffer_dealloc_user(struct saa7164_user_buffer *buf)
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{
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if (!buf)
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return;
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kfree(buf->data);
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buf->data = NULL;
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kfree(buf);
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}
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