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fore200e: store a struct device in struct fore200e
This can be used much better than the untyped void pointer containing either a PCI or platform device. Signed-off-by: Christoph Hellwig <hch@lst.de> Signed-off-by: David S. Miller <davem@davemloft.net>
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0efe552389
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@ -432,7 +432,7 @@ static void fore200e_pca_write(u32 val, volatile u32 __iomem *addr)
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static u32
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fore200e_pca_dma_map(struct fore200e* fore200e, void* virt_addr, int size, int direction)
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{
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u32 dma_addr = dma_map_single(&((struct pci_dev *) fore200e->bus_dev)->dev, virt_addr, size, direction);
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u32 dma_addr = dma_map_single(fore200e->dev, virt_addr, size, direction);
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DPRINTK(3, "PCI DVMA mapping: virt_addr = 0x%p, size = %d, direction = %d, --> dma_addr = 0x%08x\n",
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virt_addr, size, direction, dma_addr);
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@ -447,7 +447,7 @@ fore200e_pca_dma_unmap(struct fore200e* fore200e, u32 dma_addr, int size, int di
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DPRINTK(3, "PCI DVMA unmapping: dma_addr = 0x%08x, size = %d, direction = %d\n",
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dma_addr, size, direction);
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dma_unmap_single(&((struct pci_dev *) fore200e->bus_dev)->dev, dma_addr, size, direction);
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dma_unmap_single(fore200e->dev, dma_addr, size, direction);
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}
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@ -456,7 +456,7 @@ fore200e_pca_dma_sync_for_cpu(struct fore200e* fore200e, u32 dma_addr, int size,
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{
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DPRINTK(3, "PCI DVMA sync: dma_addr = 0x%08x, size = %d, direction = %d\n", dma_addr, size, direction);
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dma_sync_single_for_cpu(&((struct pci_dev *) fore200e->bus_dev)->dev, dma_addr, size, direction);
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dma_sync_single_for_cpu(fore200e->dev, dma_addr, size, direction);
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}
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static void
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@ -464,7 +464,7 @@ fore200e_pca_dma_sync_for_device(struct fore200e* fore200e, u32 dma_addr, int si
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{
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DPRINTK(3, "PCI DVMA sync: dma_addr = 0x%08x, size = %d, direction = %d\n", dma_addr, size, direction);
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dma_sync_single_for_device(&((struct pci_dev *) fore200e->bus_dev)->dev, dma_addr, size, direction);
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dma_sync_single_for_device(fore200e->dev, dma_addr, size, direction);
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}
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@ -477,7 +477,7 @@ fore200e_pca_dma_chunk_alloc(struct fore200e* fore200e, struct chunk* chunk,
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{
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/* returned chunks are page-aligned */
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chunk->alloc_size = size * nbr;
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chunk->alloc_addr = dma_alloc_coherent(&((struct pci_dev *) fore200e->bus_dev)->dev,
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chunk->alloc_addr = dma_alloc_coherent(fore200e->dev,
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chunk->alloc_size,
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&chunk->dma_addr,
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GFP_KERNEL);
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@ -496,7 +496,7 @@ fore200e_pca_dma_chunk_alloc(struct fore200e* fore200e, struct chunk* chunk,
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static void
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fore200e_pca_dma_chunk_free(struct fore200e* fore200e, struct chunk* chunk)
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{
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dma_free_coherent(&((struct pci_dev *) fore200e->bus_dev)->dev,
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dma_free_coherent(fore200e->dev,
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chunk->alloc_size,
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chunk->alloc_addr,
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chunk->dma_addr);
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@ -570,7 +570,7 @@ fore200e_pca_unmap(struct fore200e* fore200e)
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static int fore200e_pca_configure(struct fore200e *fore200e)
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{
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struct pci_dev* pci_dev = (struct pci_dev*)fore200e->bus_dev;
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struct pci_dev *pci_dev = to_pci_dev(fore200e->dev);
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u8 master_ctrl, latency;
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DPRINTK(2, "device %s being configured\n", fore200e->name);
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@ -657,7 +657,7 @@ fore200e_pca_prom_read(struct fore200e* fore200e, struct prom_data* prom)
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static int
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fore200e_pca_proc_read(struct fore200e* fore200e, char *page)
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{
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struct pci_dev* pci_dev = (struct pci_dev*)fore200e->bus_dev;
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struct pci_dev *pci_dev = to_pci_dev(fore200e->dev);
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return sprintf(page, " PCI bus/slot/function:\t%d/%d/%d\n",
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pci_dev->bus->number, PCI_SLOT(pci_dev->devfn), PCI_FUNC(pci_dev->devfn));
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@ -702,10 +702,9 @@ static void fore200e_sba_write(u32 val, volatile u32 __iomem *addr)
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static u32 fore200e_sba_dma_map(struct fore200e *fore200e, void* virt_addr, int size, int direction)
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{
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struct platform_device *op = fore200e->bus_dev;
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u32 dma_addr;
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dma_addr = dma_map_single(&op->dev, virt_addr, size, direction);
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dma_addr = dma_map_single(fore200e->dev, virt_addr, size, direction);
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DPRINTK(3, "SBUS DVMA mapping: virt_addr = 0x%p, size = %d, direction = %d --> dma_addr = 0x%08x\n",
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virt_addr, size, direction, dma_addr);
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@ -715,30 +714,24 @@ static u32 fore200e_sba_dma_map(struct fore200e *fore200e, void* virt_addr, int
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static void fore200e_sba_dma_unmap(struct fore200e *fore200e, u32 dma_addr, int size, int direction)
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{
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struct platform_device *op = fore200e->bus_dev;
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DPRINTK(3, "SBUS DVMA unmapping: dma_addr = 0x%08x, size = %d, direction = %d,\n",
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dma_addr, size, direction);
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dma_unmap_single(&op->dev, dma_addr, size, direction);
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dma_unmap_single(fore200e->dev, dma_addr, size, direction);
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}
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static void fore200e_sba_dma_sync_for_cpu(struct fore200e *fore200e, u32 dma_addr, int size, int direction)
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{
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struct platform_device *op = fore200e->bus_dev;
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DPRINTK(3, "SBUS DVMA sync: dma_addr = 0x%08x, size = %d, direction = %d\n", dma_addr, size, direction);
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dma_sync_single_for_cpu(&op->dev, dma_addr, size, direction);
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dma_sync_single_for_cpu(fore200e->dev, dma_addr, size, direction);
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}
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static void fore200e_sba_dma_sync_for_device(struct fore200e *fore200e, u32 dma_addr, int size, int direction)
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{
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struct platform_device *op = fore200e->bus_dev;
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DPRINTK(3, "SBUS DVMA sync: dma_addr = 0x%08x, size = %d, direction = %d\n", dma_addr, size, direction);
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dma_sync_single_for_device(&op->dev, dma_addr, size, direction);
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dma_sync_single_for_device(fore200e->dev, dma_addr, size, direction);
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}
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/* Allocate a DVMA consistent chunk of memory intended to act as a communication mechanism
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@ -747,12 +740,10 @@ static void fore200e_sba_dma_sync_for_device(struct fore200e *fore200e, u32 dma_
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static int fore200e_sba_dma_chunk_alloc(struct fore200e *fore200e, struct chunk *chunk,
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int size, int nbr, int alignment)
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{
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struct platform_device *op = fore200e->bus_dev;
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chunk->alloc_size = chunk->align_size = size * nbr;
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/* returned chunks are page-aligned */
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chunk->alloc_addr = dma_alloc_coherent(&op->dev, chunk->alloc_size,
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chunk->alloc_addr = dma_alloc_coherent(fore200e->dev, chunk->alloc_size,
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&chunk->dma_addr, GFP_ATOMIC);
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if ((chunk->alloc_addr == NULL) || (chunk->dma_addr == 0))
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@ -766,9 +757,7 @@ static int fore200e_sba_dma_chunk_alloc(struct fore200e *fore200e, struct chunk
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/* free a DVMA consistent chunk of memory */
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static void fore200e_sba_dma_chunk_free(struct fore200e *fore200e, struct chunk *chunk)
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{
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struct platform_device *op = fore200e->bus_dev;
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dma_free_coherent(&op->dev, chunk->alloc_size,
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dma_free_coherent(fore200e->dev, chunk->alloc_size,
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chunk->alloc_addr, chunk->dma_addr);
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}
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@ -798,7 +787,7 @@ static void fore200e_sba_reset(struct fore200e *fore200e)
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static int __init fore200e_sba_map(struct fore200e *fore200e)
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{
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struct platform_device *op = fore200e->bus_dev;
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struct platform_device *op = to_platform_device(fore200e->dev);
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unsigned int bursts;
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/* gain access to the SBA specific registers */
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@ -828,7 +817,7 @@ static int __init fore200e_sba_map(struct fore200e *fore200e)
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static void fore200e_sba_unmap(struct fore200e *fore200e)
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{
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struct platform_device *op = fore200e->bus_dev;
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struct platform_device *op = to_platform_device(fore200e->dev);
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of_iounmap(&op->resource[0], fore200e->regs.sba.hcr, SBA200E_HCR_LENGTH);
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of_iounmap(&op->resource[1], fore200e->regs.sba.bsr, SBA200E_BSR_LENGTH);
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@ -844,7 +833,7 @@ static int __init fore200e_sba_configure(struct fore200e *fore200e)
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static int __init fore200e_sba_prom_read(struct fore200e *fore200e, struct prom_data *prom)
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{
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struct platform_device *op = fore200e->bus_dev;
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struct platform_device *op = to_platform_device(fore200e->dev);
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const u8 *prop;
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int len;
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@ -868,7 +857,7 @@ static int __init fore200e_sba_prom_read(struct fore200e *fore200e, struct prom_
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static int fore200e_sba_proc_read(struct fore200e *fore200e, char *page)
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{
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struct platform_device *op = fore200e->bus_dev;
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struct platform_device *op = to_platform_device(fore200e->dev);
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const struct linux_prom_registers *regs;
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regs = of_get_property(op->dev.of_node, "reg", NULL);
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@ -2532,25 +2521,15 @@ static void fore200e_monitor_puts(struct fore200e *fore200e, char *str)
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static int fore200e_load_and_start_fw(struct fore200e *fore200e)
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{
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const struct firmware *firmware;
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struct device *device;
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const struct fw_header *fw_header;
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const __le32 *fw_data;
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u32 fw_size;
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u32 __iomem *load_addr;
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char buf[48];
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int err = -ENODEV;
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if (strcmp(fore200e->bus->model_name, "PCA-200E") == 0)
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device = &((struct pci_dev *) fore200e->bus_dev)->dev;
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#ifdef CONFIG_SBUS
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else if (strcmp(fore200e->bus->model_name, "SBA-200E") == 0)
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device = &((struct platform_device *) fore200e->bus_dev)->dev;
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#endif
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else
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return err;
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int err;
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sprintf(buf, "%s%s", fore200e->bus->proc_name, FW_EXT);
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if ((err = request_firmware(&firmware, buf, device)) < 0) {
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if ((err = request_firmware(&firmware, buf, fore200e->dev)) < 0) {
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printk(FORE200E "problem loading firmware image %s\n", fore200e->bus->model_name);
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return err;
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}
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@ -2689,7 +2668,7 @@ static int fore200e_sba_probe(struct platform_device *op)
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return -ENOMEM;
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fore200e->bus = &fore200e_sbus_ops;
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fore200e->bus_dev = op;
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fore200e->dev = &op->dev;
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fore200e->irq = op->archdata.irqs[0];
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fore200e->phys_base = op->resource[0].start;
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@ -2761,7 +2740,7 @@ static int fore200e_pca_detect(struct pci_dev *pci_dev,
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}
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fore200e->bus = &fore200e_pci_ops;
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fore200e->bus_dev = pci_dev;
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fore200e->dev = &pci_dev->dev;
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fore200e->irq = pci_dev->irq;
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fore200e->phys_base = pci_resource_start(pci_dev, 0);
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@ -844,7 +844,7 @@ typedef struct fore200e {
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enum fore200e_state state; /* device state */
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char name[16]; /* device name */
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void* bus_dev; /* bus-specific kernel data */
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struct device *dev;
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int irq; /* irq number */
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unsigned long phys_base; /* physical base address */
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void __iomem * virt_base; /* virtual base address */
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