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https://github.com/AsahiLinux/u-boot
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ecc8d425fd
The rest of the unmigrated CONFIG symbols in the CONFIG_SYS_PCI and CONFIG_SYS_PCIE namespace do not easily transition to Kconfig. In many cases they likely should come from the device tree instead. Move these out of CONFIG namespace and in to CFG namespace. Signed-off-by: Tom Rini <trini@konsulko.com> Reviewed-by: Simon Glass <sjg@chromium.org>
264 lines
7.4 KiB
C
264 lines
7.4 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* Copyright 2018-2019 NXP
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*
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* PCIe Gen4 driver for NXP Layerscape SoCs
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* Author: Hou Zhiqiang <Minder.Hou@gmail.com>
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*/
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#ifndef _PCIE_LAYERSCAPE_GEN4_H_
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#define _PCIE_LAYERSCAPE_GEN4_H_
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#include <pci.h>
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#include <linux/bitops.h>
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#ifndef CFG_SYS_PCI_MEMORY_SIZE
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#define CFG_SYS_PCI_MEMORY_SIZE (4 * 1024 * 1024 * 1024ULL)
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#endif
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#ifndef CFG_SYS_PCI_EP_MEMORY_BASE
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#define CFG_SYS_PCI_EP_MEMORY_BASE CONFIG_SYS_LOAD_ADDR
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#endif
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#define PCIE_PF_NUM 2
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#define PCIE_VF_NUM 32
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#define LS_G4_PF0 0
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#define LS_G4_PF1 1
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#define PF_BAR_NUM 4
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#define VF_BAR_NUM 4
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#define PCIE_BAR_SIZE (8 * 1024) /* 8K */
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#define PCIE_BAR0_SIZE PCIE_BAR_SIZE
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#define PCIE_BAR1_SIZE PCIE_BAR_SIZE
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#define PCIE_BAR2_SIZE PCIE_BAR_SIZE
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#define PCIE_BAR4_SIZE PCIE_BAR_SIZE
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#define SIZE_1T (1024 * 1024 * 1024 * 1024ULL)
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/* GPEX CSR */
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#define GPEX_CLASSCODE 0x474
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#define GPEX_CLASSCODE_SHIFT 16
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#define GPEX_CLASSCODE_MASK 0xffff
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#define GPEX_CFG_READY 0x4b0
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#define PCIE_CONFIG_READY BIT(0)
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#define GPEX_BAR_ENABLE 0x4d4
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#define GPEX_BAR_SIZE_LDW 0x4d8
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#define GPEX_BAR_SIZE_UDW 0x4dC
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#define GPEX_BAR_SELECT 0x4e0
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#define BAR_POS(bar, pf, vf_bar) \
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((bar) + (pf) * PF_BAR_NUM + (vf_bar) * PCIE_PF_NUM * PF_BAR_NUM)
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#define GPEX_SRIOV_INIT_VFS_TOTAL_VF(pf) (0x644 + (pf) * 4)
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#define TTL_VF_MASK 0xffff
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#define TTL_VF_SHIFT 16
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#define INI_VF_MASK 0xffff
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#define INI_VF_SHIFT 0
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#define GPEX_SRIOV_VF_OFFSET_STRIDE(pf) (0x704 + (pf) * 4)
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/* PAB CSR */
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#define PAB_CTRL 0x808
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#define PAB_CTRL_APIO_EN BIT(0)
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#define PAB_CTRL_PPIO_EN BIT(1)
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#define PAB_CTRL_MAX_BRST_LEN_SHIFT 4
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#define PAB_CTRL_MAX_BRST_LEN_MASK 0x3
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#define PAB_CTRL_PAGE_SEL_SHIFT 13
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#define PAB_CTRL_PAGE_SEL_MASK 0x3f
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#define PAB_CTRL_FUNC_SEL_SHIFT 19
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#define PAB_CTRL_FUNC_SEL_MASK 0x1ff
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#define PAB_RST_CTRL 0x820
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#define PAB_BR_STAT 0x80c
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/* AXI PIO Engines */
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#define PAB_AXI_PIO_CTRL(idx) (0x840 + 0x10 * (idx))
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#define APIO_EN BIT(0)
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#define MEM_WIN_EN BIT(1)
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#define IO_WIN_EN BIT(2)
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#define CFG_WIN_EN BIT(3)
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#define PAB_AXI_PIO_STAT(idx) (0x844 + 0x10 * (idx))
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#define PAB_AXI_PIO_SL_CMD_STAT(idx) (0x848 + 0x10 * (idx))
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#define PAB_AXI_PIO_SL_ADDR_STAT(idx) (0x84c + 0x10 * (idx))
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#define PAB_AXI_PIO_SL_EXT_ADDR_STAT(idx) (0xb8a0 + 0x4 * (idx))
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/* PEX PIO Engines */
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#define PAB_PEX_PIO_CTRL(idx) (0x8c0 + 0x10 * (idx))
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#define PPIO_EN BIT(0)
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#define PAB_PEX_PIO_STAT(idx) (0x8c4 + 0x10 * (idx))
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#define PAB_PEX_PIO_MT_STAT(idx) (0x8c8 + 0x10 * (idx))
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#define INDIRECT_ADDR_BNDRY 0xc00
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#define PAGE_IDX_SHIFT 10
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#define PAGE_ADDR_MASK 0x3ff
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#define OFFSET_TO_PAGE_IDX(off) \
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(((off) >> PAGE_IDX_SHIFT) & PAB_CTRL_PAGE_SEL_MASK)
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#define OFFSET_TO_PAGE_ADDR(off) \
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(((off) & PAGE_ADDR_MASK) | INDIRECT_ADDR_BNDRY)
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/* APIO WINs */
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#define PAB_AXI_AMAP_CTRL(idx) (0xba0 + 0x10 * (idx))
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#define PAB_EXT_AXI_AMAP_SIZE(idx) (0xbaf0 + 0x4 * (idx))
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#define PAB_AXI_AMAP_AXI_WIN(idx) (0xba4 + 0x10 * (idx))
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#define PAB_EXT_AXI_AMAP_AXI_WIN(idx) (0x80a0 + 0x4 * (idx))
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#define PAB_AXI_AMAP_PEX_WIN_L(idx) (0xba8 + 0x10 * (idx))
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#define PAB_AXI_AMAP_PEX_WIN_H(idx) (0xbac + 0x10 * (idx))
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#define PAB_AXI_AMAP_PCI_HDR_PARAM(idx) (0x5ba0 + 0x4 * (idx))
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#define FUNC_NUM_PCIE_MASK GENMASK(7, 0)
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#define AXI_AMAP_CTRL_EN BIT(0)
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#define AXI_AMAP_CTRL_TYPE_SHIFT 1
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#define AXI_AMAP_CTRL_TYPE_MASK 0x3
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#define AXI_AMAP_CTRL_SIZE_SHIFT 10
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#define AXI_AMAP_CTRL_SIZE_MASK 0x3fffff
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#define PAB_TARGET_BUS(x) (((x) & 0xff) << 24)
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#define PAB_TARGET_DEV(x) (((x) & 0x1f) << 19)
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#define PAB_TARGET_FUNC(x) (((x) & 0x7) << 16)
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#define PAB_AXI_TYPE_CFG 0x00
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#define PAB_AXI_TYPE_IO 0x01
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#define PAB_AXI_TYPE_MEM 0x02
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#define PAB_AXI_TYPE_ATOM 0x03
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#define PAB_WINS_NUM 256
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/* PPIO WINs RC mode */
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#define PAB_PEX_AMAP_CTRL(idx) (0x4ba0 + 0x10 * (idx))
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#define PAB_EXT_PEX_AMAP_SIZE(idx) (0xbef0 + 0x04 * (idx))
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#define PAB_PEX_AMAP_AXI_WIN(idx) (0x4ba4 + 0x10 * (idx))
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#define PAB_EXT_PEX_AMAP_AXI_WIN(idx) (0xb4a0 + 0x04 * (idx))
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#define PAB_PEX_AMAP_PEX_WIN_L(idx) (0x4ba8 + 0x10 * (idx))
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#define PAB_PEX_AMAP_PEX_WIN_H(idx) (0x4bac + 0x10 * (idx))
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#define IB_TYPE_MEM_F 0x2
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#define IB_TYPE_MEM_NF 0x3
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#define PEX_AMAP_CTRL_TYPE_SHIFT 0x1
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#define PEX_AMAP_CTRL_EN_SHIFT 0x0
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#define PEX_AMAP_CTRL_TYPE_MASK 0x3
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#define PEX_AMAP_CTRL_EN_MASK 0x1
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/* PPIO WINs EP mode */
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#define PAB_PEX_BAR_AMAP(pf, bar) \
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(0x1ba0 + 0x20 * (pf) + 4 * (bar))
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#define BAR_AMAP_EN BIT(0)
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#define PAB_EXT_PEX_BAR_AMAP(pf, bar) \
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(0x84a0 + 0x20 * (pf) + 4 * (bar))
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/* CCSR registers */
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#define PCIE_LINK_CTRL_STA 0x5c
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#define PCIE_LINK_SPEED_SHIFT 16
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#define PCIE_LINK_SPEED_MASK 0x0f
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#define PCIE_LINK_WIDTH_SHIFT 20
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#define PCIE_LINK_WIDTH_MASK 0x3f
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#define PCIE_SRIOV_CAPABILITY 0x2a0
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#define PCIE_SRIOV_VF_OFFSET_STRIDE 0x2b4
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/* LUT registers */
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#define PCIE_LUT_UDR(n) (0x800 + (n) * 8)
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#define PCIE_LUT_LDR(n) (0x804 + (n) * 8)
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#define PCIE_LUT_ENABLE BIT(31)
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#define PCIE_LUT_ENTRY_COUNT 32
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/* PF control registers */
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#define PCIE_LTSSM_STA 0x7fc
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#define LTSSM_STATE_MASK 0x7f
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#define LTSSM_PCIE_L0 0x2d /* L0 state */
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#define PCIE_SRDS_PRTCL(idx) (PCIE1 + (idx))
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#define PCIE_SYS_BASE_ADDR 0x3400000
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#define PCIE_CCSR_SIZE 0x0100000
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struct ls_pcie_g4 {
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int idx;
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struct list_head list;
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struct udevice *bus;
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struct fdt_resource ccsr_res;
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struct fdt_resource cfg_res;
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struct fdt_resource lut_res;
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struct fdt_resource pf_ctrl_res;
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void __iomem *ccsr;
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void __iomem *cfg;
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void __iomem *lut;
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void __iomem *pf_ctrl;
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bool big_endian;
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bool enabled;
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int next_lut_index;
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struct pci_controller hose;
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int stream_id_cur;
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int mode;
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int sriov_support;
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};
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extern struct list_head ls_pcie_g4_list;
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static inline void lut_writel(struct ls_pcie_g4 *pcie, unsigned int value,
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unsigned int offset)
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{
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if (pcie->big_endian)
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out_be32(pcie->lut + offset, value);
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else
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out_le32(pcie->lut + offset, value);
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}
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static inline u32 lut_readl(struct ls_pcie_g4 *pcie, unsigned int offset)
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{
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if (pcie->big_endian)
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return in_be32(pcie->lut + offset);
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else
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return in_le32(pcie->lut + offset);
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}
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static inline void ccsr_set_page(struct ls_pcie_g4 *pcie, u8 pg_idx)
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{
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u32 val;
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val = in_le32(pcie->ccsr + PAB_CTRL);
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val &= ~(PAB_CTRL_PAGE_SEL_MASK << PAB_CTRL_PAGE_SEL_SHIFT);
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val |= (pg_idx & PAB_CTRL_PAGE_SEL_MASK) << PAB_CTRL_PAGE_SEL_SHIFT;
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out_le32(pcie->ccsr + PAB_CTRL, val);
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}
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static inline unsigned int ccsr_readl(struct ls_pcie_g4 *pcie, u32 offset)
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{
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if (offset < INDIRECT_ADDR_BNDRY) {
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ccsr_set_page(pcie, 0);
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return in_le32(pcie->ccsr + offset);
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}
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ccsr_set_page(pcie, OFFSET_TO_PAGE_IDX(offset));
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return in_le32(pcie->ccsr + OFFSET_TO_PAGE_ADDR(offset));
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}
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static inline void ccsr_writel(struct ls_pcie_g4 *pcie, u32 offset, u32 value)
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{
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if (offset < INDIRECT_ADDR_BNDRY) {
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ccsr_set_page(pcie, 0);
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out_le32(pcie->ccsr + offset, value);
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} else {
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ccsr_set_page(pcie, OFFSET_TO_PAGE_IDX(offset));
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out_le32(pcie->ccsr + OFFSET_TO_PAGE_ADDR(offset), value);
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}
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}
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static inline unsigned int pf_ctrl_readl(struct ls_pcie_g4 *pcie, u32 offset)
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{
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if (pcie->big_endian)
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return in_be32(pcie->pf_ctrl + offset);
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else
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return in_le32(pcie->pf_ctrl + offset);
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}
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static inline void pf_ctrl_writel(struct ls_pcie_g4 *pcie, u32 offset,
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u32 value)
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{
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if (pcie->big_endian)
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out_be32(pcie->pf_ctrl + offset, value);
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else
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out_le32(pcie->pf_ctrl + offset, value);
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}
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#endif /* _PCIE_LAYERSCAPE_GEN4_H_ */
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