forked from Minki/linux
defxx: Clean up DEFEA resource management
Reserve DEFEA resources according to actual use. There are three regions, for the ESIC ASIC's CSRs, for the discrete Burst Holdoff register, and for the PDQ ASIC's CSRs. The latter is mapped in the memory or port I/O address space depending on configuration. The two formers are hardwired and always mapped in the port I/O address space. Signed-off-by: Maciej W. Rozycki <macro@linux-mips.org> Signed-off-by: David S. Miller <davem@davemloft.net>
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6a931423c9
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4d0438e56a
@ -414,7 +414,7 @@ static void dfx_port_read_long(DFX_board_t *bp, int offset, u32 *data)
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* ================
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*
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* Overview:
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* Retrieves the address range used to access control and status
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* Retrieves the address ranges used to access control and status
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* registers.
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*
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* Returns:
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@ -422,8 +422,8 @@ static void dfx_port_read_long(DFX_board_t *bp, int offset, u32 *data)
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*
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* Arguments:
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* bdev - pointer to device information
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* bar_start - pointer to store the start address
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* bar_len - pointer to store the length of the area
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* bar_start - pointer to store the start addresses
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* bar_len - pointer to store the lengths of the areas
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*
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* Assumptions:
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* I am sure there are some.
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@ -442,8 +442,10 @@ static void dfx_get_bars(struct device *bdev,
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if (dfx_bus_pci) {
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int num = dfx_use_mmio ? 0 : 1;
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*bar_start = pci_resource_start(to_pci_dev(bdev), num);
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*bar_len = pci_resource_len(to_pci_dev(bdev), num);
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bar_start[0] = pci_resource_start(to_pci_dev(bdev), num);
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bar_len[0] = pci_resource_len(to_pci_dev(bdev), num);
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bar_start[2] = bar_start[1] = 0;
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bar_len[2] = bar_len[1] = 0;
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}
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if (dfx_bus_eisa) {
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unsigned long base_addr = to_eisa_device(bdev)->base_addr;
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@ -457,24 +459,30 @@ static void dfx_get_bars(struct device *bdev,
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bar_lo <<= 8;
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bar_lo |= inb(base_addr + PI_ESIC_K_MEM_ADD_LO_CMP_0);
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bar_lo <<= 8;
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*bar_start = bar_lo;
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bar_start[0] = bar_lo;
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bar_hi = inb(base_addr + PI_ESIC_K_MEM_ADD_HI_CMP_2);
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bar_hi <<= 8;
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bar_hi |= inb(base_addr + PI_ESIC_K_MEM_ADD_HI_CMP_1);
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bar_hi <<= 8;
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bar_hi |= inb(base_addr + PI_ESIC_K_MEM_ADD_HI_CMP_0);
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bar_hi <<= 8;
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*bar_len = ((bar_hi - bar_lo) | PI_MEM_ADD_MASK_M) + 1;
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bar_len[0] = ((bar_hi - bar_lo) | PI_MEM_ADD_MASK_M) +
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1;
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} else {
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*bar_start = base_addr;
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*bar_len = PI_ESIC_K_CSR_IO_LEN +
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PI_ESIC_K_BURST_HOLDOFF_LEN;
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bar_start[0] = base_addr;
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bar_len[0] = PI_ESIC_K_CSR_IO_LEN;
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}
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bar_start[1] = base_addr + PI_DEFEA_K_BURST_HOLDOFF;
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bar_len[1] = PI_ESIC_K_BURST_HOLDOFF_LEN;
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bar_start[2] = base_addr + PI_ESIC_K_ESIC_CSR;
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bar_len[2] = PI_ESIC_K_ESIC_CSR_LEN;
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}
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if (dfx_bus_tc) {
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*bar_start = to_tc_dev(bdev)->resource.start +
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PI_TC_K_CSR_OFFSET;
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*bar_len = PI_TC_K_CSR_LEN;
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bar_start[0] = to_tc_dev(bdev)->resource.start +
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PI_TC_K_CSR_OFFSET;
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bar_len[0] = PI_TC_K_CSR_LEN;
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bar_start[2] = bar_start[1] = 0;
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bar_len[2] = bar_len[1] = 0;
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}
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}
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@ -525,8 +533,8 @@ static int dfx_register(struct device *bdev)
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const char *print_name = dev_name(bdev);
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struct net_device *dev;
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DFX_board_t *bp; /* board pointer */
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resource_size_t bar_start = 0; /* pointer to port */
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resource_size_t bar_len = 0; /* resource length */
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resource_size_t bar_start[3]; /* pointers to ports */
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resource_size_t bar_len[3]; /* resource length */
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int alloc_size; /* total buffer size used */
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struct resource *region;
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int err = 0;
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@ -559,8 +567,8 @@ static int dfx_register(struct device *bdev)
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bp->bus_dev = bdev;
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dev_set_drvdata(bdev, dev);
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dfx_get_bars(bdev, &bar_start, &bar_len);
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if (dfx_bus_eisa && dfx_use_mmio && bar_start == 0) {
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dfx_get_bars(bdev, bar_start, bar_len);
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if (dfx_bus_eisa && dfx_use_mmio && bar_start[0] == 0) {
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pr_err("%s: Cannot use MMIO, no address set, aborting\n",
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print_name);
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pr_err("%s: Run ECU and set adapter's MMIO location\n",
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@ -572,28 +580,49 @@ static int dfx_register(struct device *bdev)
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}
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if (dfx_use_mmio)
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region = request_mem_region(bar_start, bar_len, print_name);
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region = request_mem_region(bar_start[0], bar_len[0],
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print_name);
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else
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region = request_region(bar_start, bar_len, print_name);
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region = request_region(bar_start[0], bar_len[0], print_name);
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if (!region) {
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printk(KERN_ERR "%s: Cannot reserve I/O resource "
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"0x%lx @ 0x%lx, aborting\n",
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print_name, (long)bar_len, (long)bar_start);
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pr_err("%s: Cannot reserve %s resource 0x%lx @ 0x%lx, "
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"aborting\n", dfx_use_mmio ? "MMIO" : "I/O", print_name,
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(long)bar_len[0], (long)bar_start[0]);
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err = -EBUSY;
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goto err_out_disable;
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}
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if (bar_start[1] != 0) {
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region = request_region(bar_start[1], bar_len[1], print_name);
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if (!region) {
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pr_err("%s: Cannot reserve I/O resource "
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"0x%lx @ 0x%lx, aborting\n", print_name,
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(long)bar_len[1], (long)bar_start[1]);
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err = -EBUSY;
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goto err_out_csr_region;
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}
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}
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if (bar_start[2] != 0) {
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region = request_region(bar_start[2], bar_len[2], print_name);
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if (!region) {
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pr_err("%s: Cannot reserve I/O resource "
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"0x%lx @ 0x%lx, aborting\n", print_name,
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(long)bar_len[2], (long)bar_start[2]);
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err = -EBUSY;
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goto err_out_bh_region;
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}
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}
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/* Set up I/O base address. */
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if (dfx_use_mmio) {
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bp->base.mem = ioremap_nocache(bar_start, bar_len);
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bp->base.mem = ioremap_nocache(bar_start[0], bar_len[0]);
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if (!bp->base.mem) {
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printk(KERN_ERR "%s: Cannot map MMIO\n", print_name);
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err = -ENOMEM;
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goto err_out_region;
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goto err_out_esic_region;
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}
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} else {
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bp->base.port = bar_start;
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dev->base_addr = bar_start;
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bp->base.port = bar_start[0];
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dev->base_addr = bar_start[0];
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}
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/* Initialize new device structure */
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@ -602,7 +631,7 @@ static int dfx_register(struct device *bdev)
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if (dfx_bus_pci)
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pci_set_master(to_pci_dev(bdev));
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if (dfx_driver_init(dev, print_name, bar_start) != DFX_K_SUCCESS) {
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if (dfx_driver_init(dev, print_name, bar_start[0]) != DFX_K_SUCCESS) {
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err = -ENODEV;
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goto err_out_unmap;
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}
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@ -630,11 +659,19 @@ err_out_unmap:
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if (dfx_use_mmio)
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iounmap(bp->base.mem);
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err_out_region:
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err_out_esic_region:
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if (bar_start[2] != 0)
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release_region(bar_start[2], bar_len[2]);
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err_out_bh_region:
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if (bar_start[1] != 0)
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release_region(bar_start[1], bar_len[1]);
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err_out_csr_region:
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if (dfx_use_mmio)
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release_mem_region(bar_start, bar_len);
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release_mem_region(bar_start[0], bar_len[0]);
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else
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release_region(bar_start, bar_len);
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release_region(bar_start[0], bar_len[0]);
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err_out_disable:
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if (dfx_bus_pci)
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@ -1085,8 +1122,8 @@ static int dfx_driver_init(struct net_device *dev, const char *print_name,
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board_name = "DEFEA";
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if (dfx_bus_pci)
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board_name = "DEFPA";
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pr_info("%s: %s at %saddr = 0x%llx, IRQ = %d, Hardware addr = %pMF\n",
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print_name, board_name, dfx_use_mmio ? "" : "I/O ",
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pr_info("%s: %s at %s addr = 0x%llx, IRQ = %d, Hardware addr = %pMF\n",
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print_name, board_name, dfx_use_mmio ? "MMIO" : "I/O",
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(long long)bar_start, dev->irq, dev->dev_addr);
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/*
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@ -3660,8 +3697,8 @@ static void dfx_unregister(struct device *bdev)
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int dfx_bus_pci = dev_is_pci(bdev);
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int dfx_bus_tc = DFX_BUS_TC(bdev);
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int dfx_use_mmio = DFX_MMIO || dfx_bus_tc;
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resource_size_t bar_start = 0; /* pointer to port */
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resource_size_t bar_len = 0; /* resource length */
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resource_size_t bar_start[3]; /* pointers to ports */
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resource_size_t bar_len[3]; /* resource lengths */
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int alloc_size; /* total buffer size used */
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unregister_netdev(dev);
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@ -3679,12 +3716,16 @@ static void dfx_unregister(struct device *bdev)
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dfx_bus_uninit(dev);
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dfx_get_bars(bdev, &bar_start, &bar_len);
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dfx_get_bars(bdev, bar_start, bar_len);
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if (bar_start[2] != 0)
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release_region(bar_start[2], bar_len[2]);
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if (bar_start[1] != 0)
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release_region(bar_start[1], bar_len[1]);
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if (dfx_use_mmio) {
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iounmap(bp->base.mem);
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release_mem_region(bar_start, bar_len);
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release_mem_region(bar_start[0], bar_len[0]);
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} else
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release_region(bar_start, bar_len);
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release_region(bar_start[0], bar_len[0]);
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if (dfx_bus_pci)
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pci_disable_device(to_pci_dev(bdev));
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@ -1481,9 +1481,11 @@ typedef union
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#define PI_ESIC_K_CSR_IO_LEN 0x40 /* 64 bytes */
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#define PI_ESIC_K_BURST_HOLDOFF_LEN 0x04 /* 4 bytes */
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#define PI_ESIC_K_ESIC_CSR_LEN 0x40 /* 64 bytes */
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#define PI_DEFEA_K_CSR_IO 0x000
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#define PI_DEFEA_K_BURST_HOLDOFF 0x040
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#define PI_ESIC_K_ESIC_CSR 0xC80
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#define PI_ESIC_K_SLOT_ID 0xC80
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#define PI_ESIC_K_SLOT_CNTRL 0xC84
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