16e0832faSShawn Lin // SPDX-License-Identifier: GPL-2.0
26e0832faSShawn Lin /*
36e0832faSShawn Lin  * Copyright (C) 2014 Hauke Mehrtens <hauke@hauke-m.de>
46e0832faSShawn Lin  * Copyright (C) 2015 Broadcom Corporation
56e0832faSShawn Lin  */
66e0832faSShawn Lin 
76e0832faSShawn Lin #include <linux/kernel.h>
86e0832faSShawn Lin #include <linux/pci.h>
963eab494SKrzysztof Wilczyński #include <linux/pci-ecam.h>
106e0832faSShawn Lin #include <linux/msi.h>
116e0832faSShawn Lin #include <linux/clk.h>
126e0832faSShawn Lin #include <linux/module.h>
136e0832faSShawn Lin #include <linux/mbus.h>
146e0832faSShawn Lin #include <linux/slab.h>
156e0832faSShawn Lin #include <linux/delay.h>
166e0832faSShawn Lin #include <linux/interrupt.h>
176e0832faSShawn Lin #include <linux/irqchip/arm-gic-v3.h>
186e0832faSShawn Lin #include <linux/platform_device.h>
196e0832faSShawn Lin #include <linux/of_address.h>
206e0832faSShawn Lin #include <linux/of_pci.h>
216e0832faSShawn Lin #include <linux/of_irq.h>
226e0832faSShawn Lin #include <linux/of_platform.h>
236e0832faSShawn Lin #include <linux/phy/phy.h>
246e0832faSShawn Lin 
256e0832faSShawn Lin #include "pcie-iproc.h"
266e0832faSShawn Lin 
276e0832faSShawn Lin #define EP_PERST_SOURCE_SELECT_SHIFT	2
286e0832faSShawn Lin #define EP_PERST_SOURCE_SELECT		BIT(EP_PERST_SOURCE_SELECT_SHIFT)
296e0832faSShawn Lin #define EP_MODE_SURVIVE_PERST_SHIFT	1
306e0832faSShawn Lin #define EP_MODE_SURVIVE_PERST		BIT(EP_MODE_SURVIVE_PERST_SHIFT)
316e0832faSShawn Lin #define RC_PCIE_RST_OUTPUT_SHIFT	0
326e0832faSShawn Lin #define RC_PCIE_RST_OUTPUT		BIT(RC_PCIE_RST_OUTPUT_SHIFT)
336e0832faSShawn Lin #define PAXC_RESET_MASK			0x7f
346e0832faSShawn Lin 
356e0832faSShawn Lin #define GIC_V3_CFG_SHIFT		0
366e0832faSShawn Lin #define GIC_V3_CFG			BIT(GIC_V3_CFG_SHIFT)
376e0832faSShawn Lin 
386e0832faSShawn Lin #define MSI_ENABLE_CFG_SHIFT		0
396e0832faSShawn Lin #define MSI_ENABLE_CFG			BIT(MSI_ENABLE_CFG_SHIFT)
406e0832faSShawn Lin 
416e0832faSShawn Lin #define CFG_IND_ADDR_MASK		0x00001ffc
426e0832faSShawn Lin 
436e0832faSShawn Lin #define CFG_ADDR_REG_NUM_MASK		0x00000ffc
4463eab494SKrzysztof Wilczyński #define CFG_ADDR_CFG_TYPE_1		1
456e0832faSShawn Lin 
466e0832faSShawn Lin #define SYS_RC_INTX_MASK		0xf
476e0832faSShawn Lin 
486e0832faSShawn Lin #define PCIE_PHYLINKUP_SHIFT		3
496e0832faSShawn Lin #define PCIE_PHYLINKUP			BIT(PCIE_PHYLINKUP_SHIFT)
506e0832faSShawn Lin #define PCIE_DL_ACTIVE_SHIFT		2
516e0832faSShawn Lin #define PCIE_DL_ACTIVE			BIT(PCIE_DL_ACTIVE_SHIFT)
526e0832faSShawn Lin 
536e0832faSShawn Lin #define APB_ERR_EN_SHIFT		0
546e0832faSShawn Lin #define APB_ERR_EN			BIT(APB_ERR_EN_SHIFT)
556e0832faSShawn Lin 
5673b9e4d3SSrinath Mannam #define CFG_RD_SUCCESS			0
5773b9e4d3SSrinath Mannam #define CFG_RD_UR			1
5873b9e4d3SSrinath Mannam #define CFG_RD_CRS			2
5973b9e4d3SSrinath Mannam #define CFG_RD_CA			3
606e0832faSShawn Lin #define CFG_RETRY_STATUS		0xffff0001
616e0832faSShawn Lin #define CFG_RETRY_STATUS_TIMEOUT_US	500000 /* 500 milliseconds */
626e0832faSShawn Lin 
636e0832faSShawn Lin /* derive the enum index of the outbound/inbound mapping registers */
646e0832faSShawn Lin #define MAP_REG(base_reg, index)	((base_reg) + (index) * 2)
656e0832faSShawn Lin 
666e0832faSShawn Lin /*
676e0832faSShawn Lin  * Maximum number of outbound mapping window sizes that can be supported by any
686e0832faSShawn Lin  * OARR/OMAP mapping pair
696e0832faSShawn Lin  */
706e0832faSShawn Lin #define MAX_NUM_OB_WINDOW_SIZES		4
716e0832faSShawn Lin 
726e0832faSShawn Lin #define OARR_VALID_SHIFT		0
736e0832faSShawn Lin #define OARR_VALID			BIT(OARR_VALID_SHIFT)
746e0832faSShawn Lin #define OARR_SIZE_CFG_SHIFT		1
756e0832faSShawn Lin 
766e0832faSShawn Lin /*
776e0832faSShawn Lin  * Maximum number of inbound mapping region sizes that can be supported by an
786e0832faSShawn Lin  * IARR
796e0832faSShawn Lin  */
806e0832faSShawn Lin #define MAX_NUM_IB_REGION_SIZES		9
816e0832faSShawn Lin 
826e0832faSShawn Lin #define IMAP_VALID_SHIFT		0
836e0832faSShawn Lin #define IMAP_VALID			BIT(IMAP_VALID_SHIFT)
846e0832faSShawn Lin 
853bc70825SRay Jui #define IPROC_PCI_PM_CAP		0x48
863bc70825SRay Jui #define IPROC_PCI_PM_CAP_MASK		0xffff
876e0832faSShawn Lin #define IPROC_PCI_EXP_CAP		0xac
886e0832faSShawn Lin 
896e0832faSShawn Lin #define IPROC_PCIE_REG_INVALID		0xffff
906e0832faSShawn Lin 
916e0832faSShawn Lin /**
92347269c1SKrzysztof Wilczyński  * struct iproc_pcie_ob_map - iProc PCIe outbound mapping controller-specific
93347269c1SKrzysztof Wilczyński  * parameters
946e0832faSShawn Lin  * @window_sizes: list of supported outbound mapping window sizes in MB
956e0832faSShawn Lin  * @nr_sizes: number of supported outbound mapping window sizes
966e0832faSShawn Lin  */
976e0832faSShawn Lin struct iproc_pcie_ob_map {
986e0832faSShawn Lin 	resource_size_t window_sizes[MAX_NUM_OB_WINDOW_SIZES];
996e0832faSShawn Lin 	unsigned int nr_sizes;
1006e0832faSShawn Lin };
1016e0832faSShawn Lin 
1026e0832faSShawn Lin static const struct iproc_pcie_ob_map paxb_ob_map[] = {
1036e0832faSShawn Lin 	{
1046e0832faSShawn Lin 		/* OARR0/OMAP0 */
1056e0832faSShawn Lin 		.window_sizes = { 128, 256 },
1066e0832faSShawn Lin 		.nr_sizes = 2,
1076e0832faSShawn Lin 	},
1086e0832faSShawn Lin 	{
1096e0832faSShawn Lin 		/* OARR1/OMAP1 */
1106e0832faSShawn Lin 		.window_sizes = { 128, 256 },
1116e0832faSShawn Lin 		.nr_sizes = 2,
1126e0832faSShawn Lin 	},
1136e0832faSShawn Lin };
1146e0832faSShawn Lin 
1156e0832faSShawn Lin static const struct iproc_pcie_ob_map paxb_v2_ob_map[] = {
1166e0832faSShawn Lin 	{
1176e0832faSShawn Lin 		/* OARR0/OMAP0 */
1186e0832faSShawn Lin 		.window_sizes = { 128, 256 },
1196e0832faSShawn Lin 		.nr_sizes = 2,
1206e0832faSShawn Lin 	},
1216e0832faSShawn Lin 	{
1226e0832faSShawn Lin 		/* OARR1/OMAP1 */
1236e0832faSShawn Lin 		.window_sizes = { 128, 256 },
1246e0832faSShawn Lin 		.nr_sizes = 2,
1256e0832faSShawn Lin 	},
1266e0832faSShawn Lin 	{
1276e0832faSShawn Lin 		/* OARR2/OMAP2 */
1286e0832faSShawn Lin 		.window_sizes = { 128, 256, 512, 1024 },
1296e0832faSShawn Lin 		.nr_sizes = 4,
1306e0832faSShawn Lin 	},
1316e0832faSShawn Lin 	{
1326e0832faSShawn Lin 		/* OARR3/OMAP3 */
1336e0832faSShawn Lin 		.window_sizes = { 128, 256, 512, 1024 },
1346e0832faSShawn Lin 		.nr_sizes = 4,
1356e0832faSShawn Lin 	},
1366e0832faSShawn Lin };
1376e0832faSShawn Lin 
1386e0832faSShawn Lin /**
139347269c1SKrzysztof Wilczyński  * enum iproc_pcie_ib_map_type - iProc PCIe inbound mapping type
140347269c1SKrzysztof Wilczyński  * @IPROC_PCIE_IB_MAP_MEM: DDR memory
141347269c1SKrzysztof Wilczyński  * @IPROC_PCIE_IB_MAP_IO: device I/O memory
142347269c1SKrzysztof Wilczyński  * @IPROC_PCIE_IB_MAP_INVALID: invalid or unused
1436e0832faSShawn Lin  */
1446e0832faSShawn Lin enum iproc_pcie_ib_map_type {
1456e0832faSShawn Lin 	IPROC_PCIE_IB_MAP_MEM = 0,
1466e0832faSShawn Lin 	IPROC_PCIE_IB_MAP_IO,
1476e0832faSShawn Lin 	IPROC_PCIE_IB_MAP_INVALID
1486e0832faSShawn Lin };
1496e0832faSShawn Lin 
1506e0832faSShawn Lin /**
151347269c1SKrzysztof Wilczyński  * struct iproc_pcie_ib_map - iProc PCIe inbound mapping controller-specific
152347269c1SKrzysztof Wilczyński  * parameters
1536e0832faSShawn Lin  * @type: inbound mapping region type
1546e0832faSShawn Lin  * @size_unit: inbound mapping region size unit, could be SZ_1K, SZ_1M, or
1556e0832faSShawn Lin  * SZ_1G
1566e0832faSShawn Lin  * @region_sizes: list of supported inbound mapping region sizes in KB, MB, or
157f6b6aefeSBjorn Helgaas  * GB, depending on the size unit
1586e0832faSShawn Lin  * @nr_sizes: number of supported inbound mapping region sizes
1596e0832faSShawn Lin  * @nr_windows: number of supported inbound mapping windows for the region
1606e0832faSShawn Lin  * @imap_addr_offset: register offset between the upper and lower 32-bit
1616e0832faSShawn Lin  * IMAP address registers
1626e0832faSShawn Lin  * @imap_window_offset: register offset between each IMAP window
1636e0832faSShawn Lin  */
1646e0832faSShawn Lin struct iproc_pcie_ib_map {
1656e0832faSShawn Lin 	enum iproc_pcie_ib_map_type type;
1666e0832faSShawn Lin 	unsigned int size_unit;
1676e0832faSShawn Lin 	resource_size_t region_sizes[MAX_NUM_IB_REGION_SIZES];
1686e0832faSShawn Lin 	unsigned int nr_sizes;
1696e0832faSShawn Lin 	unsigned int nr_windows;
1706e0832faSShawn Lin 	u16 imap_addr_offset;
1716e0832faSShawn Lin 	u16 imap_window_offset;
1726e0832faSShawn Lin };
1736e0832faSShawn Lin 
1746e0832faSShawn Lin static const struct iproc_pcie_ib_map paxb_v2_ib_map[] = {
1756e0832faSShawn Lin 	{
1766e0832faSShawn Lin 		/* IARR0/IMAP0 */
1776e0832faSShawn Lin 		.type = IPROC_PCIE_IB_MAP_IO,
1786e0832faSShawn Lin 		.size_unit = SZ_1K,
1796e0832faSShawn Lin 		.region_sizes = { 32 },
1806e0832faSShawn Lin 		.nr_sizes = 1,
1816e0832faSShawn Lin 		.nr_windows = 8,
1826e0832faSShawn Lin 		.imap_addr_offset = 0x40,
1836e0832faSShawn Lin 		.imap_window_offset = 0x4,
1846e0832faSShawn Lin 	},
1856e0832faSShawn Lin 	{
18689bbcaacSRoman Bacik 		/* IARR1/IMAP1 */
18789bbcaacSRoman Bacik 		.type = IPROC_PCIE_IB_MAP_MEM,
18889bbcaacSRoman Bacik 		.size_unit = SZ_1M,
18989bbcaacSRoman Bacik 		.region_sizes = { 8 },
19089bbcaacSRoman Bacik 		.nr_sizes = 1,
19189bbcaacSRoman Bacik 		.nr_windows = 8,
19289bbcaacSRoman Bacik 		.imap_addr_offset = 0x4,
19389bbcaacSRoman Bacik 		.imap_window_offset = 0x8,
19489bbcaacSRoman Bacik 
1956e0832faSShawn Lin 	},
1966e0832faSShawn Lin 	{
1976e0832faSShawn Lin 		/* IARR2/IMAP2 */
1986e0832faSShawn Lin 		.type = IPROC_PCIE_IB_MAP_MEM,
1996e0832faSShawn Lin 		.size_unit = SZ_1M,
2006e0832faSShawn Lin 		.region_sizes = { 64, 128, 256, 512, 1024, 2048, 4096, 8192,
2016e0832faSShawn Lin 				  16384 },
2026e0832faSShawn Lin 		.nr_sizes = 9,
2036e0832faSShawn Lin 		.nr_windows = 1,
2046e0832faSShawn Lin 		.imap_addr_offset = 0x4,
2056e0832faSShawn Lin 		.imap_window_offset = 0x8,
2066e0832faSShawn Lin 	},
2076e0832faSShawn Lin 	{
2086e0832faSShawn Lin 		/* IARR3/IMAP3 */
2096e0832faSShawn Lin 		.type = IPROC_PCIE_IB_MAP_MEM,
2106e0832faSShawn Lin 		.size_unit = SZ_1G,
2116e0832faSShawn Lin 		.region_sizes = { 1, 2, 4, 8, 16, 32 },
2126e0832faSShawn Lin 		.nr_sizes = 6,
2136e0832faSShawn Lin 		.nr_windows = 8,
2146e0832faSShawn Lin 		.imap_addr_offset = 0x4,
2156e0832faSShawn Lin 		.imap_window_offset = 0x8,
2166e0832faSShawn Lin 	},
2176e0832faSShawn Lin 	{
2186e0832faSShawn Lin 		/* IARR4/IMAP4 */
2196e0832faSShawn Lin 		.type = IPROC_PCIE_IB_MAP_MEM,
2206e0832faSShawn Lin 		.size_unit = SZ_1G,
2216e0832faSShawn Lin 		.region_sizes = { 32, 64, 128, 256, 512 },
2226e0832faSShawn Lin 		.nr_sizes = 5,
2236e0832faSShawn Lin 		.nr_windows = 8,
2246e0832faSShawn Lin 		.imap_addr_offset = 0x4,
2256e0832faSShawn Lin 		.imap_window_offset = 0x8,
2266e0832faSShawn Lin 	},
2276e0832faSShawn Lin };
2286e0832faSShawn Lin 
2296e0832faSShawn Lin /*
2306e0832faSShawn Lin  * iProc PCIe host registers
2316e0832faSShawn Lin  */
2326e0832faSShawn Lin enum iproc_pcie_reg {
2336e0832faSShawn Lin 	/* clock/reset signal control */
2346e0832faSShawn Lin 	IPROC_PCIE_CLK_CTRL = 0,
2356e0832faSShawn Lin 
2366e0832faSShawn Lin 	/*
2376e0832faSShawn Lin 	 * To allow MSI to be steered to an external MSI controller (e.g., ARM
2386e0832faSShawn Lin 	 * GICv3 ITS)
2396e0832faSShawn Lin 	 */
2406e0832faSShawn Lin 	IPROC_PCIE_MSI_GIC_MODE,
2416e0832faSShawn Lin 
2426e0832faSShawn Lin 	/*
2436e0832faSShawn Lin 	 * IPROC_PCIE_MSI_BASE_ADDR and IPROC_PCIE_MSI_WINDOW_SIZE define the
2446e0832faSShawn Lin 	 * window where the MSI posted writes are written, for the writes to be
2456e0832faSShawn Lin 	 * interpreted as MSI writes.
2466e0832faSShawn Lin 	 */
2476e0832faSShawn Lin 	IPROC_PCIE_MSI_BASE_ADDR,
2486e0832faSShawn Lin 	IPROC_PCIE_MSI_WINDOW_SIZE,
2496e0832faSShawn Lin 
2506e0832faSShawn Lin 	/*
2516e0832faSShawn Lin 	 * To hold the address of the register where the MSI writes are
252b2105b9fSKrzysztof Wilczyński 	 * programmed.  When ARM GICv3 ITS is used, this should be programmed
2536e0832faSShawn Lin 	 * with the address of the GITS_TRANSLATER register.
2546e0832faSShawn Lin 	 */
2556e0832faSShawn Lin 	IPROC_PCIE_MSI_ADDR_LO,
2566e0832faSShawn Lin 	IPROC_PCIE_MSI_ADDR_HI,
2576e0832faSShawn Lin 
2586e0832faSShawn Lin 	/* enable MSI */
2596e0832faSShawn Lin 	IPROC_PCIE_MSI_EN_CFG,
2606e0832faSShawn Lin 
2616e0832faSShawn Lin 	/* allow access to root complex configuration space */
2626e0832faSShawn Lin 	IPROC_PCIE_CFG_IND_ADDR,
2636e0832faSShawn Lin 	IPROC_PCIE_CFG_IND_DATA,
2646e0832faSShawn Lin 
2656e0832faSShawn Lin 	/* allow access to device configuration space */
2666e0832faSShawn Lin 	IPROC_PCIE_CFG_ADDR,
2676e0832faSShawn Lin 	IPROC_PCIE_CFG_DATA,
2686e0832faSShawn Lin 
2696e0832faSShawn Lin 	/* enable INTx */
2706e0832faSShawn Lin 	IPROC_PCIE_INTX_EN,
2716e0832faSShawn Lin 
2726e0832faSShawn Lin 	/* outbound address mapping */
2736e0832faSShawn Lin 	IPROC_PCIE_OARR0,
2746e0832faSShawn Lin 	IPROC_PCIE_OMAP0,
2756e0832faSShawn Lin 	IPROC_PCIE_OARR1,
2766e0832faSShawn Lin 	IPROC_PCIE_OMAP1,
2776e0832faSShawn Lin 	IPROC_PCIE_OARR2,
2786e0832faSShawn Lin 	IPROC_PCIE_OMAP2,
2796e0832faSShawn Lin 	IPROC_PCIE_OARR3,
2806e0832faSShawn Lin 	IPROC_PCIE_OMAP3,
2816e0832faSShawn Lin 
2826e0832faSShawn Lin 	/* inbound address mapping */
2836e0832faSShawn Lin 	IPROC_PCIE_IARR0,
2846e0832faSShawn Lin 	IPROC_PCIE_IMAP0,
2856e0832faSShawn Lin 	IPROC_PCIE_IARR1,
2866e0832faSShawn Lin 	IPROC_PCIE_IMAP1,
2876e0832faSShawn Lin 	IPROC_PCIE_IARR2,
2886e0832faSShawn Lin 	IPROC_PCIE_IMAP2,
2896e0832faSShawn Lin 	IPROC_PCIE_IARR3,
2906e0832faSShawn Lin 	IPROC_PCIE_IMAP3,
2916e0832faSShawn Lin 	IPROC_PCIE_IARR4,
2926e0832faSShawn Lin 	IPROC_PCIE_IMAP4,
2936e0832faSShawn Lin 
29473b9e4d3SSrinath Mannam 	/* config read status */
29573b9e4d3SSrinath Mannam 	IPROC_PCIE_CFG_RD_STATUS,
29673b9e4d3SSrinath Mannam 
2976e0832faSShawn Lin 	/* link status */
2986e0832faSShawn Lin 	IPROC_PCIE_LINK_STATUS,
2996e0832faSShawn Lin 
3006e0832faSShawn Lin 	/* enable APB error for unsupported requests */
3016e0832faSShawn Lin 	IPROC_PCIE_APB_ERR_EN,
3026e0832faSShawn Lin 
3036e0832faSShawn Lin 	/* total number of core registers */
3046e0832faSShawn Lin 	IPROC_PCIE_MAX_NUM_REG,
3056e0832faSShawn Lin };
3066e0832faSShawn Lin 
3076e0832faSShawn Lin /* iProc PCIe PAXB BCMA registers */
308a3ff529fSBharat Gooty static const u16 iproc_pcie_reg_paxb_bcma[IPROC_PCIE_MAX_NUM_REG] = {
3096e0832faSShawn Lin 	[IPROC_PCIE_CLK_CTRL]		= 0x000,
3106e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_ADDR]	= 0x120,
3116e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_DATA]	= 0x124,
3126e0832faSShawn Lin 	[IPROC_PCIE_CFG_ADDR]		= 0x1f8,
3136e0832faSShawn Lin 	[IPROC_PCIE_CFG_DATA]		= 0x1fc,
3146e0832faSShawn Lin 	[IPROC_PCIE_INTX_EN]		= 0x330,
3156e0832faSShawn Lin 	[IPROC_PCIE_LINK_STATUS]	= 0xf0c,
3166e0832faSShawn Lin };
3176e0832faSShawn Lin 
3186e0832faSShawn Lin /* iProc PCIe PAXB registers */
319a3ff529fSBharat Gooty static const u16 iproc_pcie_reg_paxb[IPROC_PCIE_MAX_NUM_REG] = {
3206e0832faSShawn Lin 	[IPROC_PCIE_CLK_CTRL]		= 0x000,
3216e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_ADDR]	= 0x120,
3226e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_DATA]	= 0x124,
3236e0832faSShawn Lin 	[IPROC_PCIE_CFG_ADDR]		= 0x1f8,
3246e0832faSShawn Lin 	[IPROC_PCIE_CFG_DATA]		= 0x1fc,
3256e0832faSShawn Lin 	[IPROC_PCIE_INTX_EN]		= 0x330,
3266e0832faSShawn Lin 	[IPROC_PCIE_OARR0]		= 0xd20,
3276e0832faSShawn Lin 	[IPROC_PCIE_OMAP0]		= 0xd40,
3286e0832faSShawn Lin 	[IPROC_PCIE_OARR1]		= 0xd28,
3296e0832faSShawn Lin 	[IPROC_PCIE_OMAP1]		= 0xd48,
3306e0832faSShawn Lin 	[IPROC_PCIE_LINK_STATUS]	= 0xf0c,
3316e0832faSShawn Lin 	[IPROC_PCIE_APB_ERR_EN]		= 0xf40,
3326e0832faSShawn Lin };
3336e0832faSShawn Lin 
3346e0832faSShawn Lin /* iProc PCIe PAXB v2 registers */
335a3ff529fSBharat Gooty static const u16 iproc_pcie_reg_paxb_v2[IPROC_PCIE_MAX_NUM_REG] = {
3366e0832faSShawn Lin 	[IPROC_PCIE_CLK_CTRL]		= 0x000,
3376e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_ADDR]	= 0x120,
3386e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_DATA]	= 0x124,
3396e0832faSShawn Lin 	[IPROC_PCIE_CFG_ADDR]		= 0x1f8,
3406e0832faSShawn Lin 	[IPROC_PCIE_CFG_DATA]		= 0x1fc,
3416e0832faSShawn Lin 	[IPROC_PCIE_INTX_EN]		= 0x330,
3426e0832faSShawn Lin 	[IPROC_PCIE_OARR0]		= 0xd20,
3436e0832faSShawn Lin 	[IPROC_PCIE_OMAP0]		= 0xd40,
3446e0832faSShawn Lin 	[IPROC_PCIE_OARR1]		= 0xd28,
3456e0832faSShawn Lin 	[IPROC_PCIE_OMAP1]		= 0xd48,
3466e0832faSShawn Lin 	[IPROC_PCIE_OARR2]		= 0xd60,
3476e0832faSShawn Lin 	[IPROC_PCIE_OMAP2]		= 0xd68,
3486e0832faSShawn Lin 	[IPROC_PCIE_OARR3]		= 0xdf0,
3496e0832faSShawn Lin 	[IPROC_PCIE_OMAP3]		= 0xdf8,
3506e0832faSShawn Lin 	[IPROC_PCIE_IARR0]		= 0xd00,
3516e0832faSShawn Lin 	[IPROC_PCIE_IMAP0]		= 0xc00,
35289bbcaacSRoman Bacik 	[IPROC_PCIE_IARR1]		= 0xd08,
35389bbcaacSRoman Bacik 	[IPROC_PCIE_IMAP1]		= 0xd70,
3546e0832faSShawn Lin 	[IPROC_PCIE_IARR2]		= 0xd10,
3556e0832faSShawn Lin 	[IPROC_PCIE_IMAP2]		= 0xcc0,
3566e0832faSShawn Lin 	[IPROC_PCIE_IARR3]		= 0xe00,
3576e0832faSShawn Lin 	[IPROC_PCIE_IMAP3]		= 0xe08,
3586e0832faSShawn Lin 	[IPROC_PCIE_IARR4]		= 0xe68,
3596e0832faSShawn Lin 	[IPROC_PCIE_IMAP4]		= 0xe70,
36073b9e4d3SSrinath Mannam 	[IPROC_PCIE_CFG_RD_STATUS]	= 0xee0,
3616e0832faSShawn Lin 	[IPROC_PCIE_LINK_STATUS]	= 0xf0c,
3626e0832faSShawn Lin 	[IPROC_PCIE_APB_ERR_EN]		= 0xf40,
3636e0832faSShawn Lin };
3646e0832faSShawn Lin 
3656e0832faSShawn Lin /* iProc PCIe PAXC v1 registers */
366a3ff529fSBharat Gooty static const u16 iproc_pcie_reg_paxc[IPROC_PCIE_MAX_NUM_REG] = {
3676e0832faSShawn Lin 	[IPROC_PCIE_CLK_CTRL]		= 0x000,
3686e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_ADDR]	= 0x1f0,
3696e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_DATA]	= 0x1f4,
3706e0832faSShawn Lin 	[IPROC_PCIE_CFG_ADDR]		= 0x1f8,
3716e0832faSShawn Lin 	[IPROC_PCIE_CFG_DATA]		= 0x1fc,
3726e0832faSShawn Lin };
3736e0832faSShawn Lin 
3746e0832faSShawn Lin /* iProc PCIe PAXC v2 registers */
375a3ff529fSBharat Gooty static const u16 iproc_pcie_reg_paxc_v2[IPROC_PCIE_MAX_NUM_REG] = {
3766e0832faSShawn Lin 	[IPROC_PCIE_MSI_GIC_MODE]	= 0x050,
3776e0832faSShawn Lin 	[IPROC_PCIE_MSI_BASE_ADDR]	= 0x074,
3786e0832faSShawn Lin 	[IPROC_PCIE_MSI_WINDOW_SIZE]	= 0x078,
3796e0832faSShawn Lin 	[IPROC_PCIE_MSI_ADDR_LO]	= 0x07c,
3806e0832faSShawn Lin 	[IPROC_PCIE_MSI_ADDR_HI]	= 0x080,
3816e0832faSShawn Lin 	[IPROC_PCIE_MSI_EN_CFG]		= 0x09c,
3826e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_ADDR]	= 0x1f0,
3836e0832faSShawn Lin 	[IPROC_PCIE_CFG_IND_DATA]	= 0x1f4,
3846e0832faSShawn Lin 	[IPROC_PCIE_CFG_ADDR]		= 0x1f8,
3856e0832faSShawn Lin 	[IPROC_PCIE_CFG_DATA]		= 0x1fc,
3866e0832faSShawn Lin };
3876e0832faSShawn Lin 
3883bc70825SRay Jui /*
3893bc70825SRay Jui  * List of device IDs of controllers that have corrupted capability list that
3903bc70825SRay Jui  * require SW fixup
3913bc70825SRay Jui  */
3923bc70825SRay Jui static const u16 iproc_pcie_corrupt_cap_did[] = {
3933bc70825SRay Jui 	0x16cd,
3943bc70825SRay Jui 	0x16f0,
3953bc70825SRay Jui 	0xd802,
3963bc70825SRay Jui 	0xd804
3973bc70825SRay Jui };
3983bc70825SRay Jui 
3996e0832faSShawn Lin static inline struct iproc_pcie *iproc_data(struct pci_bus *bus)
4006e0832faSShawn Lin {
4016e0832faSShawn Lin 	struct iproc_pcie *pcie = bus->sysdata;
4026e0832faSShawn Lin 	return pcie;
4036e0832faSShawn Lin }
4046e0832faSShawn Lin 
4056e0832faSShawn Lin static inline bool iproc_pcie_reg_is_invalid(u16 reg_offset)
4066e0832faSShawn Lin {
4076e0832faSShawn Lin 	return !!(reg_offset == IPROC_PCIE_REG_INVALID);
4086e0832faSShawn Lin }
4096e0832faSShawn Lin 
4106e0832faSShawn Lin static inline u16 iproc_pcie_reg_offset(struct iproc_pcie *pcie,
4116e0832faSShawn Lin 					enum iproc_pcie_reg reg)
4126e0832faSShawn Lin {
4136e0832faSShawn Lin 	return pcie->reg_offsets[reg];
4146e0832faSShawn Lin }
4156e0832faSShawn Lin 
4166e0832faSShawn Lin static inline u32 iproc_pcie_read_reg(struct iproc_pcie *pcie,
4176e0832faSShawn Lin 				      enum iproc_pcie_reg reg)
4186e0832faSShawn Lin {
4196e0832faSShawn Lin 	u16 offset = iproc_pcie_reg_offset(pcie, reg);
4206e0832faSShawn Lin 
4216e0832faSShawn Lin 	if (iproc_pcie_reg_is_invalid(offset))
4226e0832faSShawn Lin 		return 0;
4236e0832faSShawn Lin 
4246e0832faSShawn Lin 	return readl(pcie->base + offset);
4256e0832faSShawn Lin }
4266e0832faSShawn Lin 
4276e0832faSShawn Lin static inline void iproc_pcie_write_reg(struct iproc_pcie *pcie,
4286e0832faSShawn Lin 					enum iproc_pcie_reg reg, u32 val)
4296e0832faSShawn Lin {
4306e0832faSShawn Lin 	u16 offset = iproc_pcie_reg_offset(pcie, reg);
4316e0832faSShawn Lin 
4326e0832faSShawn Lin 	if (iproc_pcie_reg_is_invalid(offset))
4336e0832faSShawn Lin 		return;
4346e0832faSShawn Lin 
4356e0832faSShawn Lin 	writel(val, pcie->base + offset);
4366e0832faSShawn Lin }
4376e0832faSShawn Lin 
438347269c1SKrzysztof Wilczyński /*
4396e0832faSShawn Lin  * APB error forwarding can be disabled during access of configuration
4406e0832faSShawn Lin  * registers of the endpoint device, to prevent unsupported requests
4416e0832faSShawn Lin  * (typically seen during enumeration with multi-function devices) from
4426e0832faSShawn Lin  * triggering a system exception.
4436e0832faSShawn Lin  */
4446e0832faSShawn Lin static inline void iproc_pcie_apb_err_disable(struct pci_bus *bus,
4456e0832faSShawn Lin 					      bool disable)
4466e0832faSShawn Lin {
4476e0832faSShawn Lin 	struct iproc_pcie *pcie = iproc_data(bus);
4486e0832faSShawn Lin 	u32 val;
4496e0832faSShawn Lin 
4506e0832faSShawn Lin 	if (bus->number && pcie->has_apb_err_disable) {
4516e0832faSShawn Lin 		val = iproc_pcie_read_reg(pcie, IPROC_PCIE_APB_ERR_EN);
4526e0832faSShawn Lin 		if (disable)
4536e0832faSShawn Lin 			val &= ~APB_ERR_EN;
4546e0832faSShawn Lin 		else
4556e0832faSShawn Lin 			val |= APB_ERR_EN;
4566e0832faSShawn Lin 		iproc_pcie_write_reg(pcie, IPROC_PCIE_APB_ERR_EN, val);
4576e0832faSShawn Lin 	}
4586e0832faSShawn Lin }
4596e0832faSShawn Lin 
4606e0832faSShawn Lin static void __iomem *iproc_pcie_map_ep_cfg_reg(struct iproc_pcie *pcie,
4616e0832faSShawn Lin 					       unsigned int busno,
46263eab494SKrzysztof Wilczyński 					       unsigned int devfn,
4636e0832faSShawn Lin 					       int where)
4646e0832faSShawn Lin {
4656e0832faSShawn Lin 	u16 offset;
4666e0832faSShawn Lin 	u32 val;
4676e0832faSShawn Lin 
4686e0832faSShawn Lin 	/* EP device access */
46963eab494SKrzysztof Wilczyński 	val = ALIGN_DOWN(PCIE_ECAM_OFFSET(busno, devfn, where), 4) |
47063eab494SKrzysztof Wilczyński 		CFG_ADDR_CFG_TYPE_1;
4716e0832faSShawn Lin 
4726e0832faSShawn Lin 	iproc_pcie_write_reg(pcie, IPROC_PCIE_CFG_ADDR, val);
4736e0832faSShawn Lin 	offset = iproc_pcie_reg_offset(pcie, IPROC_PCIE_CFG_DATA);
4746e0832faSShawn Lin 
4756e0832faSShawn Lin 	if (iproc_pcie_reg_is_invalid(offset))
4766e0832faSShawn Lin 		return NULL;
4776e0832faSShawn Lin 
4786e0832faSShawn Lin 	return (pcie->base + offset);
4796e0832faSShawn Lin }
4806e0832faSShawn Lin 
48173b9e4d3SSrinath Mannam static unsigned int iproc_pcie_cfg_retry(struct iproc_pcie *pcie,
48273b9e4d3SSrinath Mannam 					 void __iomem *cfg_data_p)
4836e0832faSShawn Lin {
4846e0832faSShawn Lin 	int timeout = CFG_RETRY_STATUS_TIMEOUT_US;
4856e0832faSShawn Lin 	unsigned int data;
48673b9e4d3SSrinath Mannam 	u32 status;
4876e0832faSShawn Lin 
4886e0832faSShawn Lin 	/*
4896e0832faSShawn Lin 	 * As per PCIe spec r3.1, sec 2.3.2, CRS Software Visibility only
4906e0832faSShawn Lin 	 * affects config reads of the Vendor ID.  For config writes or any
4916e0832faSShawn Lin 	 * other config reads, the Root may automatically reissue the
4926e0832faSShawn Lin 	 * configuration request again as a new request.
4936e0832faSShawn Lin 	 *
4946e0832faSShawn Lin 	 * For config reads, this hardware returns CFG_RETRY_STATUS data
4956e0832faSShawn Lin 	 * when it receives a CRS completion, regardless of the address of
4966e0832faSShawn Lin 	 * the read or the CRS Software Visibility Enable bit.  As a
4976e0832faSShawn Lin 	 * partial workaround for this, we retry in software any read that
4986e0832faSShawn Lin 	 * returns CFG_RETRY_STATUS.
4996e0832faSShawn Lin 	 *
5006e0832faSShawn Lin 	 * Note that a non-Vendor ID config register may have a value of
5016e0832faSShawn Lin 	 * CFG_RETRY_STATUS.  If we read that, we can't distinguish it from
5026e0832faSShawn Lin 	 * a CRS completion, so we will incorrectly retry the read and
5036e0832faSShawn Lin 	 * eventually return the wrong data (0xffffffff).
5046e0832faSShawn Lin 	 */
5056e0832faSShawn Lin 	data = readl(cfg_data_p);
5066e0832faSShawn Lin 	while (data == CFG_RETRY_STATUS && timeout--) {
50773b9e4d3SSrinath Mannam 		/*
50873b9e4d3SSrinath Mannam 		 * CRS state is set in CFG_RD status register
50973b9e4d3SSrinath Mannam 		 * This will handle the case where CFG_RETRY_STATUS is
51073b9e4d3SSrinath Mannam 		 * valid config data.
51173b9e4d3SSrinath Mannam 		 */
51273b9e4d3SSrinath Mannam 		status = iproc_pcie_read_reg(pcie, IPROC_PCIE_CFG_RD_STATUS);
51373b9e4d3SSrinath Mannam 		if (status != CFG_RD_CRS)
51473b9e4d3SSrinath Mannam 			return data;
51573b9e4d3SSrinath Mannam 
5166e0832faSShawn Lin 		udelay(1);
5176e0832faSShawn Lin 		data = readl(cfg_data_p);
5186e0832faSShawn Lin 	}
5196e0832faSShawn Lin 
5206e0832faSShawn Lin 	if (data == CFG_RETRY_STATUS)
5216e0832faSShawn Lin 		data = 0xffffffff;
5226e0832faSShawn Lin 
5236e0832faSShawn Lin 	return data;
5246e0832faSShawn Lin }
5256e0832faSShawn Lin 
5263bc70825SRay Jui static void iproc_pcie_fix_cap(struct iproc_pcie *pcie, int where, u32 *val)
5273bc70825SRay Jui {
5283bc70825SRay Jui 	u32 i, dev_id;
5293bc70825SRay Jui 
5303bc70825SRay Jui 	switch (where & ~0x3) {
5313bc70825SRay Jui 	case PCI_VENDOR_ID:
5323bc70825SRay Jui 		dev_id = *val >> 16;
5333bc70825SRay Jui 
5343bc70825SRay Jui 		/*
5353bc70825SRay Jui 		 * Activate fixup for those controllers that have corrupted
5363bc70825SRay Jui 		 * capability list registers
5373bc70825SRay Jui 		 */
5383bc70825SRay Jui 		for (i = 0; i < ARRAY_SIZE(iproc_pcie_corrupt_cap_did); i++)
5393bc70825SRay Jui 			if (dev_id == iproc_pcie_corrupt_cap_did[i])
5403bc70825SRay Jui 				pcie->fix_paxc_cap = true;
5413bc70825SRay Jui 		break;
5423bc70825SRay Jui 
5433bc70825SRay Jui 	case IPROC_PCI_PM_CAP:
5443bc70825SRay Jui 		if (pcie->fix_paxc_cap) {
5453bc70825SRay Jui 			/* advertise PM, force next capability to PCIe */
5463bc70825SRay Jui 			*val &= ~IPROC_PCI_PM_CAP_MASK;
5473bc70825SRay Jui 			*val |= IPROC_PCI_EXP_CAP << 8 | PCI_CAP_ID_PM;
5483bc70825SRay Jui 		}
5493bc70825SRay Jui 		break;
5503bc70825SRay Jui 
5513bc70825SRay Jui 	case IPROC_PCI_EXP_CAP:
5523bc70825SRay Jui 		if (pcie->fix_paxc_cap) {
5533bc70825SRay Jui 			/* advertise root port, version 2, terminate here */
5543bc70825SRay Jui 			*val = (PCI_EXP_TYPE_ROOT_PORT << 4 | 2) << 16 |
5553bc70825SRay Jui 				PCI_CAP_ID_EXP;
5563bc70825SRay Jui 		}
5573bc70825SRay Jui 		break;
5583bc70825SRay Jui 
5593bc70825SRay Jui 	case IPROC_PCI_EXP_CAP + PCI_EXP_RTCTL:
5603bc70825SRay Jui 		/* Don't advertise CRS SV support */
5613bc70825SRay Jui 		*val &= ~(PCI_EXP_RTCAP_CRSVIS << 16);
5623bc70825SRay Jui 		break;
5633bc70825SRay Jui 
5643bc70825SRay Jui 	default:
5653bc70825SRay Jui 		break;
5663bc70825SRay Jui 	}
5673bc70825SRay Jui }
5683bc70825SRay Jui 
5696e0832faSShawn Lin static int iproc_pcie_config_read(struct pci_bus *bus, unsigned int devfn,
5706e0832faSShawn Lin 				  int where, int size, u32 *val)
5716e0832faSShawn Lin {
5726e0832faSShawn Lin 	struct iproc_pcie *pcie = iproc_data(bus);
5736e0832faSShawn Lin 	unsigned int busno = bus->number;
5746e0832faSShawn Lin 	void __iomem *cfg_data_p;
5756e0832faSShawn Lin 	unsigned int data;
5766e0832faSShawn Lin 	int ret;
5776e0832faSShawn Lin 
5786e0832faSShawn Lin 	/* root complex access */
5796e0832faSShawn Lin 	if (busno == 0) {
5806e0832faSShawn Lin 		ret = pci_generic_config_read32(bus, devfn, where, size, val);
5813bc70825SRay Jui 		if (ret == PCIBIOS_SUCCESSFUL)
5823bc70825SRay Jui 			iproc_pcie_fix_cap(pcie, where, val);
5836e0832faSShawn Lin 
5843bc70825SRay Jui 		return ret;
5856e0832faSShawn Lin 	}
5866e0832faSShawn Lin 
58763eab494SKrzysztof Wilczyński 	cfg_data_p = iproc_pcie_map_ep_cfg_reg(pcie, busno, devfn, where);
5886e0832faSShawn Lin 
5896e0832faSShawn Lin 	if (!cfg_data_p)
5906e0832faSShawn Lin 		return PCIBIOS_DEVICE_NOT_FOUND;
5916e0832faSShawn Lin 
59273b9e4d3SSrinath Mannam 	data = iproc_pcie_cfg_retry(pcie, cfg_data_p);
5936e0832faSShawn Lin 
5946e0832faSShawn Lin 	*val = data;
5956e0832faSShawn Lin 	if (size <= 2)
5966e0832faSShawn Lin 		*val = (data >> (8 * (where & 3))) & ((1 << (size * 8)) - 1);
5976e0832faSShawn Lin 
598f78e60a2SRay Jui 	/*
599f78e60a2SRay Jui 	 * For PAXC and PAXCv2, the total number of PFs that one can enumerate
600f78e60a2SRay Jui 	 * depends on the firmware configuration. Unfortunately, due to an ASIC
601f78e60a2SRay Jui 	 * bug, unconfigured PFs cannot be properly hidden from the root
602f78e60a2SRay Jui 	 * complex. As a result, write access to these PFs will cause bus lock
603f78e60a2SRay Jui 	 * up on the embedded processor
604f78e60a2SRay Jui 	 *
605f78e60a2SRay Jui 	 * Since all unconfigured PFs are left with an incorrect, staled device
606f78e60a2SRay Jui 	 * ID of 0x168e (PCI_DEVICE_ID_NX2_57810), we try to catch those access
607f78e60a2SRay Jui 	 * early here and reject them all
608f78e60a2SRay Jui 	 */
609f78e60a2SRay Jui #define DEVICE_ID_MASK     0xffff0000
610f78e60a2SRay Jui #define DEVICE_ID_SHIFT    16
611f78e60a2SRay Jui 	if (pcie->rej_unconfig_pf &&
612f78e60a2SRay Jui 	    (where & CFG_ADDR_REG_NUM_MASK) == PCI_VENDOR_ID)
613f78e60a2SRay Jui 		if ((*val & DEVICE_ID_MASK) ==
614f78e60a2SRay Jui 		    (PCI_DEVICE_ID_NX2_57810 << DEVICE_ID_SHIFT))
615f78e60a2SRay Jui 			return PCIBIOS_FUNC_NOT_SUPPORTED;
616f78e60a2SRay Jui 
6176e0832faSShawn Lin 	return PCIBIOS_SUCCESSFUL;
6186e0832faSShawn Lin }
6196e0832faSShawn Lin 
620347269c1SKrzysztof Wilczyński /*
6216e0832faSShawn Lin  * Note access to the configuration registers are protected at the higher layer
6226e0832faSShawn Lin  * by 'pci_lock' in drivers/pci/access.c
6236e0832faSShawn Lin  */
6246e0832faSShawn Lin static void __iomem *iproc_pcie_map_cfg_bus(struct iproc_pcie *pcie,
6256e0832faSShawn Lin 					    int busno, unsigned int devfn,
6266e0832faSShawn Lin 					    int where)
6276e0832faSShawn Lin {
6286e0832faSShawn Lin 	u16 offset;
6296e0832faSShawn Lin 
6306e0832faSShawn Lin 	/* root complex access */
6316e0832faSShawn Lin 	if (busno == 0) {
63263eab494SKrzysztof Wilczyński 		if (PCIE_ECAM_DEVFN(devfn) > 0)
6336e0832faSShawn Lin 			return NULL;
6346e0832faSShawn Lin 
6356e0832faSShawn Lin 		iproc_pcie_write_reg(pcie, IPROC_PCIE_CFG_IND_ADDR,
6366e0832faSShawn Lin 				     where & CFG_IND_ADDR_MASK);
6376e0832faSShawn Lin 		offset = iproc_pcie_reg_offset(pcie, IPROC_PCIE_CFG_IND_DATA);
6386e0832faSShawn Lin 		if (iproc_pcie_reg_is_invalid(offset))
6396e0832faSShawn Lin 			return NULL;
6406e0832faSShawn Lin 		else
6416e0832faSShawn Lin 			return (pcie->base + offset);
6426e0832faSShawn Lin 	}
6436e0832faSShawn Lin 
64463eab494SKrzysztof Wilczyński 	return iproc_pcie_map_ep_cfg_reg(pcie, busno, devfn, where);
6456e0832faSShawn Lin }
6466e0832faSShawn Lin 
6476e0832faSShawn Lin static void __iomem *iproc_pcie_bus_map_cfg_bus(struct pci_bus *bus,
6486e0832faSShawn Lin 						unsigned int devfn,
6496e0832faSShawn Lin 						int where)
6506e0832faSShawn Lin {
6516e0832faSShawn Lin 	return iproc_pcie_map_cfg_bus(iproc_data(bus), bus->number, devfn,
6526e0832faSShawn Lin 				      where);
6536e0832faSShawn Lin }
6546e0832faSShawn Lin 
6556e0832faSShawn Lin static int iproc_pci_raw_config_read32(struct iproc_pcie *pcie,
6566e0832faSShawn Lin 				       unsigned int devfn, int where,
6576e0832faSShawn Lin 				       int size, u32 *val)
6586e0832faSShawn Lin {
6596e0832faSShawn Lin 	void __iomem *addr;
6606e0832faSShawn Lin 
6616e0832faSShawn Lin 	addr = iproc_pcie_map_cfg_bus(pcie, 0, devfn, where & ~0x3);
662814dccecSNaveen Naidu 	if (!addr)
6636e0832faSShawn Lin 		return PCIBIOS_DEVICE_NOT_FOUND;
6646e0832faSShawn Lin 
6656e0832faSShawn Lin 	*val = readl(addr);
6666e0832faSShawn Lin 
6676e0832faSShawn Lin 	if (size <= 2)
6686e0832faSShawn Lin 		*val = (*val >> (8 * (where & 3))) & ((1 << (size * 8)) - 1);
6696e0832faSShawn Lin 
6706e0832faSShawn Lin 	return PCIBIOS_SUCCESSFUL;
6716e0832faSShawn Lin }
6726e0832faSShawn Lin 
6736e0832faSShawn Lin static int iproc_pci_raw_config_write32(struct iproc_pcie *pcie,
6746e0832faSShawn Lin 					unsigned int devfn, int where,
6756e0832faSShawn Lin 					int size, u32 val)
6766e0832faSShawn Lin {
6776e0832faSShawn Lin 	void __iomem *addr;
6786e0832faSShawn Lin 	u32 mask, tmp;
6796e0832faSShawn Lin 
6806e0832faSShawn Lin 	addr = iproc_pcie_map_cfg_bus(pcie, 0, devfn, where & ~0x3);
6816e0832faSShawn Lin 	if (!addr)
6826e0832faSShawn Lin 		return PCIBIOS_DEVICE_NOT_FOUND;
6836e0832faSShawn Lin 
6846e0832faSShawn Lin 	if (size == 4) {
6856e0832faSShawn Lin 		writel(val, addr);
6866e0832faSShawn Lin 		return PCIBIOS_SUCCESSFUL;
6876e0832faSShawn Lin 	}
6886e0832faSShawn Lin 
6896e0832faSShawn Lin 	mask = ~(((1 << (size * 8)) - 1) << ((where & 0x3) * 8));
6906e0832faSShawn Lin 	tmp = readl(addr) & mask;
6916e0832faSShawn Lin 	tmp |= val << ((where & 0x3) * 8);
6926e0832faSShawn Lin 	writel(tmp, addr);
6936e0832faSShawn Lin 
6946e0832faSShawn Lin 	return PCIBIOS_SUCCESSFUL;
6956e0832faSShawn Lin }
6966e0832faSShawn Lin 
6976e0832faSShawn Lin static int iproc_pcie_config_read32(struct pci_bus *bus, unsigned int devfn,
6986e0832faSShawn Lin 				    int where, int size, u32 *val)
6996e0832faSShawn Lin {
7006e0832faSShawn Lin 	int ret;
7016e0832faSShawn Lin 	struct iproc_pcie *pcie = iproc_data(bus);
7026e0832faSShawn Lin 
7036e0832faSShawn Lin 	iproc_pcie_apb_err_disable(bus, true);
704f78e60a2SRay Jui 	if (pcie->iproc_cfg_read)
7056e0832faSShawn Lin 		ret = iproc_pcie_config_read(bus, devfn, where, size, val);
7066e0832faSShawn Lin 	else
7076e0832faSShawn Lin 		ret = pci_generic_config_read32(bus, devfn, where, size, val);
7086e0832faSShawn Lin 	iproc_pcie_apb_err_disable(bus, false);
7096e0832faSShawn Lin 
7106e0832faSShawn Lin 	return ret;
7116e0832faSShawn Lin }
7126e0832faSShawn Lin 
7136e0832faSShawn Lin static int iproc_pcie_config_write32(struct pci_bus *bus, unsigned int devfn,
7146e0832faSShawn Lin 				     int where, int size, u32 val)
7156e0832faSShawn Lin {
7166e0832faSShawn Lin 	int ret;
7176e0832faSShawn Lin 
7186e0832faSShawn Lin 	iproc_pcie_apb_err_disable(bus, true);
7196e0832faSShawn Lin 	ret = pci_generic_config_write32(bus, devfn, where, size, val);
7206e0832faSShawn Lin 	iproc_pcie_apb_err_disable(bus, false);
7216e0832faSShawn Lin 
7226e0832faSShawn Lin 	return ret;
7236e0832faSShawn Lin }
7246e0832faSShawn Lin 
7256e0832faSShawn Lin static struct pci_ops iproc_pcie_ops = {
7266e0832faSShawn Lin 	.map_bus = iproc_pcie_bus_map_cfg_bus,
7276e0832faSShawn Lin 	.read = iproc_pcie_config_read32,
7286e0832faSShawn Lin 	.write = iproc_pcie_config_write32,
7296e0832faSShawn Lin };
7306e0832faSShawn Lin 
7316e0832faSShawn Lin static void iproc_pcie_perst_ctrl(struct iproc_pcie *pcie, bool assert)
7326e0832faSShawn Lin {
7336e0832faSShawn Lin 	u32 val;
7346e0832faSShawn Lin 
7356e0832faSShawn Lin 	/*
7366e0832faSShawn Lin 	 * PAXC and the internal emulated endpoint device downstream should not
7376e0832faSShawn Lin 	 * be reset.  If firmware has been loaded on the endpoint device at an
7386e0832faSShawn Lin 	 * earlier boot stage, reset here causes issues.
7396e0832faSShawn Lin 	 */
7406e0832faSShawn Lin 	if (pcie->ep_is_internal)
7416e0832faSShawn Lin 		return;
7426e0832faSShawn Lin 
7436e0832faSShawn Lin 	if (assert) {
7446e0832faSShawn Lin 		val = iproc_pcie_read_reg(pcie, IPROC_PCIE_CLK_CTRL);
7456e0832faSShawn Lin 		val &= ~EP_PERST_SOURCE_SELECT & ~EP_MODE_SURVIVE_PERST &
7466e0832faSShawn Lin 			~RC_PCIE_RST_OUTPUT;
7476e0832faSShawn Lin 		iproc_pcie_write_reg(pcie, IPROC_PCIE_CLK_CTRL, val);
7486e0832faSShawn Lin 		udelay(250);
7496e0832faSShawn Lin 	} else {
7506e0832faSShawn Lin 		val = iproc_pcie_read_reg(pcie, IPROC_PCIE_CLK_CTRL);
7516e0832faSShawn Lin 		val |= RC_PCIE_RST_OUTPUT;
7526e0832faSShawn Lin 		iproc_pcie_write_reg(pcie, IPROC_PCIE_CLK_CTRL, val);
7536e0832faSShawn Lin 		msleep(100);
7546e0832faSShawn Lin 	}
7556e0832faSShawn Lin }
7566e0832faSShawn Lin 
7576e0832faSShawn Lin int iproc_pcie_shutdown(struct iproc_pcie *pcie)
7586e0832faSShawn Lin {
7596e0832faSShawn Lin 	iproc_pcie_perst_ctrl(pcie, true);
7606e0832faSShawn Lin 	msleep(500);
7616e0832faSShawn Lin 
7626e0832faSShawn Lin 	return 0;
7636e0832faSShawn Lin }
7646e0832faSShawn Lin EXPORT_SYMBOL_GPL(iproc_pcie_shutdown);
7656e0832faSShawn Lin 
7666e0832faSShawn Lin static int iproc_pcie_check_link(struct iproc_pcie *pcie)
7676e0832faSShawn Lin {
7686e0832faSShawn Lin 	struct device *dev = pcie->dev;
7696e0832faSShawn Lin 	u32 hdr_type, link_ctrl, link_status, class, val;
7706e0832faSShawn Lin 	bool link_is_active = false;
7716e0832faSShawn Lin 
7726e0832faSShawn Lin 	/*
7736e0832faSShawn Lin 	 * PAXC connects to emulated endpoint devices directly and does not
7746e0832faSShawn Lin 	 * have a Serdes.  Therefore skip the link detection logic here.
7756e0832faSShawn Lin 	 */
7766e0832faSShawn Lin 	if (pcie->ep_is_internal)
7776e0832faSShawn Lin 		return 0;
7786e0832faSShawn Lin 
7796e0832faSShawn Lin 	val = iproc_pcie_read_reg(pcie, IPROC_PCIE_LINK_STATUS);
7806e0832faSShawn Lin 	if (!(val & PCIE_PHYLINKUP) || !(val & PCIE_DL_ACTIVE)) {
7816e0832faSShawn Lin 		dev_err(dev, "PHY or data link is INACTIVE!\n");
7826e0832faSShawn Lin 		return -ENODEV;
7836e0832faSShawn Lin 	}
7846e0832faSShawn Lin 
7856e0832faSShawn Lin 	/* make sure we are not in EP mode */
7866e0832faSShawn Lin 	iproc_pci_raw_config_read32(pcie, 0, PCI_HEADER_TYPE, 1, &hdr_type);
7876e0832faSShawn Lin 	if ((hdr_type & 0x7f) != PCI_HEADER_TYPE_BRIDGE) {
7886e0832faSShawn Lin 		dev_err(dev, "in EP mode, hdr=%#02x\n", hdr_type);
7896e0832faSShawn Lin 		return -EFAULT;
7906e0832faSShawn Lin 	}
7916e0832faSShawn Lin 
7926e0832faSShawn Lin 	/* force class to PCI_CLASS_BRIDGE_PCI (0x0604) */
7936e0832faSShawn Lin #define PCI_BRIDGE_CTRL_REG_OFFSET	0x43c
7946e0832faSShawn Lin #define PCI_CLASS_BRIDGE_MASK		0xffff00
7956e0832faSShawn Lin #define PCI_CLASS_BRIDGE_SHIFT		8
7966e0832faSShawn Lin 	iproc_pci_raw_config_read32(pcie, 0, PCI_BRIDGE_CTRL_REG_OFFSET,
7976e0832faSShawn Lin 				    4, &class);
7986e0832faSShawn Lin 	class &= ~PCI_CLASS_BRIDGE_MASK;
7996e0832faSShawn Lin 	class |= (PCI_CLASS_BRIDGE_PCI << PCI_CLASS_BRIDGE_SHIFT);
8006e0832faSShawn Lin 	iproc_pci_raw_config_write32(pcie, 0, PCI_BRIDGE_CTRL_REG_OFFSET,
8016e0832faSShawn Lin 				     4, class);
8026e0832faSShawn Lin 
8036e0832faSShawn Lin 	/* check link status to see if link is active */
8046e0832faSShawn Lin 	iproc_pci_raw_config_read32(pcie, 0, IPROC_PCI_EXP_CAP + PCI_EXP_LNKSTA,
8056e0832faSShawn Lin 				    2, &link_status);
8066e0832faSShawn Lin 	if (link_status & PCI_EXP_LNKSTA_NLW)
8076e0832faSShawn Lin 		link_is_active = true;
8086e0832faSShawn Lin 
8096e0832faSShawn Lin 	if (!link_is_active) {
8106e0832faSShawn Lin 		/* try GEN 1 link speed */
8116e0832faSShawn Lin #define PCI_TARGET_LINK_SPEED_MASK	0xf
8126e0832faSShawn Lin #define PCI_TARGET_LINK_SPEED_GEN2	0x2
8136e0832faSShawn Lin #define PCI_TARGET_LINK_SPEED_GEN1	0x1
8146e0832faSShawn Lin 		iproc_pci_raw_config_read32(pcie, 0,
8156e0832faSShawn Lin 					    IPROC_PCI_EXP_CAP + PCI_EXP_LNKCTL2,
8166e0832faSShawn Lin 					    4, &link_ctrl);
8176e0832faSShawn Lin 		if ((link_ctrl & PCI_TARGET_LINK_SPEED_MASK) ==
8186e0832faSShawn Lin 		    PCI_TARGET_LINK_SPEED_GEN2) {
8196e0832faSShawn Lin 			link_ctrl &= ~PCI_TARGET_LINK_SPEED_MASK;
8206e0832faSShawn Lin 			link_ctrl |= PCI_TARGET_LINK_SPEED_GEN1;
8216e0832faSShawn Lin 			iproc_pci_raw_config_write32(pcie, 0,
8226e0832faSShawn Lin 					IPROC_PCI_EXP_CAP + PCI_EXP_LNKCTL2,
8236e0832faSShawn Lin 					4, link_ctrl);
8246e0832faSShawn Lin 			msleep(100);
8256e0832faSShawn Lin 
8266e0832faSShawn Lin 			iproc_pci_raw_config_read32(pcie, 0,
8276e0832faSShawn Lin 					IPROC_PCI_EXP_CAP + PCI_EXP_LNKSTA,
8286e0832faSShawn Lin 					2, &link_status);
8296e0832faSShawn Lin 			if (link_status & PCI_EXP_LNKSTA_NLW)
8306e0832faSShawn Lin 				link_is_active = true;
8316e0832faSShawn Lin 		}
8326e0832faSShawn Lin 	}
8336e0832faSShawn Lin 
8346e0832faSShawn Lin 	dev_info(dev, "link: %s\n", link_is_active ? "UP" : "DOWN");
8356e0832faSShawn Lin 
8366e0832faSShawn Lin 	return link_is_active ? 0 : -ENODEV;
8376e0832faSShawn Lin }
8386e0832faSShawn Lin 
8396e0832faSShawn Lin static void iproc_pcie_enable(struct iproc_pcie *pcie)
8406e0832faSShawn Lin {
8416e0832faSShawn Lin 	iproc_pcie_write_reg(pcie, IPROC_PCIE_INTX_EN, SYS_RC_INTX_MASK);
8426e0832faSShawn Lin }
8436e0832faSShawn Lin 
8446e0832faSShawn Lin static inline bool iproc_pcie_ob_is_valid(struct iproc_pcie *pcie,
8456e0832faSShawn Lin 					  int window_idx)
8466e0832faSShawn Lin {
8476e0832faSShawn Lin 	u32 val;
8486e0832faSShawn Lin 
8496e0832faSShawn Lin 	val = iproc_pcie_read_reg(pcie, MAP_REG(IPROC_PCIE_OARR0, window_idx));
8506e0832faSShawn Lin 
8516e0832faSShawn Lin 	return !!(val & OARR_VALID);
8526e0832faSShawn Lin }
8536e0832faSShawn Lin 
8546e0832faSShawn Lin static inline int iproc_pcie_ob_write(struct iproc_pcie *pcie, int window_idx,
8556e0832faSShawn Lin 				      int size_idx, u64 axi_addr, u64 pci_addr)
8566e0832faSShawn Lin {
8576e0832faSShawn Lin 	struct device *dev = pcie->dev;
8586e0832faSShawn Lin 	u16 oarr_offset, omap_offset;
8596e0832faSShawn Lin 
8606e0832faSShawn Lin 	/*
8616e0832faSShawn Lin 	 * Derive the OARR/OMAP offset from the first pair (OARR0/OMAP0) based
8626e0832faSShawn Lin 	 * on window index.
8636e0832faSShawn Lin 	 */
8646e0832faSShawn Lin 	oarr_offset = iproc_pcie_reg_offset(pcie, MAP_REG(IPROC_PCIE_OARR0,
8656e0832faSShawn Lin 							  window_idx));
8666e0832faSShawn Lin 	omap_offset = iproc_pcie_reg_offset(pcie, MAP_REG(IPROC_PCIE_OMAP0,
8676e0832faSShawn Lin 							  window_idx));
8686e0832faSShawn Lin 	if (iproc_pcie_reg_is_invalid(oarr_offset) ||
8696e0832faSShawn Lin 	    iproc_pcie_reg_is_invalid(omap_offset))
8706e0832faSShawn Lin 		return -EINVAL;
8716e0832faSShawn Lin 
8726e0832faSShawn Lin 	/*
8736e0832faSShawn Lin 	 * Program the OARR registers.  The upper 32-bit OARR register is
8746e0832faSShawn Lin 	 * always right after the lower 32-bit OARR register.
8756e0832faSShawn Lin 	 */
8766e0832faSShawn Lin 	writel(lower_32_bits(axi_addr) | (size_idx << OARR_SIZE_CFG_SHIFT) |
8776e0832faSShawn Lin 	       OARR_VALID, pcie->base + oarr_offset);
8786e0832faSShawn Lin 	writel(upper_32_bits(axi_addr), pcie->base + oarr_offset + 4);
8796e0832faSShawn Lin 
8806e0832faSShawn Lin 	/* now program the OMAP registers */
8816e0832faSShawn Lin 	writel(lower_32_bits(pci_addr), pcie->base + omap_offset);
8826e0832faSShawn Lin 	writel(upper_32_bits(pci_addr), pcie->base + omap_offset + 4);
8836e0832faSShawn Lin 
8840043d4aeSRay Jui 	dev_dbg(dev, "ob window [%d]: offset 0x%x axi %pap pci %pap\n",
8856e0832faSShawn Lin 		window_idx, oarr_offset, &axi_addr, &pci_addr);
8860043d4aeSRay Jui 	dev_dbg(dev, "oarr lo 0x%x oarr hi 0x%x\n",
8876e0832faSShawn Lin 		readl(pcie->base + oarr_offset),
8886e0832faSShawn Lin 		readl(pcie->base + oarr_offset + 4));
8890043d4aeSRay Jui 	dev_dbg(dev, "omap lo 0x%x omap hi 0x%x\n",
8906e0832faSShawn Lin 		readl(pcie->base + omap_offset),
8916e0832faSShawn Lin 		readl(pcie->base + omap_offset + 4));
8926e0832faSShawn Lin 
8936e0832faSShawn Lin 	return 0;
8946e0832faSShawn Lin }
8956e0832faSShawn Lin 
896347269c1SKrzysztof Wilczyński /*
8976e0832faSShawn Lin  * Some iProc SoCs require the SW to configure the outbound address mapping
8986e0832faSShawn Lin  *
8996e0832faSShawn Lin  * Outbound address translation:
9006e0832faSShawn Lin  *
9016e0832faSShawn Lin  * iproc_pcie_address = axi_address - axi_offset
9026e0832faSShawn Lin  * OARR = iproc_pcie_address
9036e0832faSShawn Lin  * OMAP = pci_addr
9046e0832faSShawn Lin  *
9056e0832faSShawn Lin  * axi_addr -> iproc_pcie_address -> OARR -> OMAP -> pci_address
9066e0832faSShawn Lin  */
9076e0832faSShawn Lin static int iproc_pcie_setup_ob(struct iproc_pcie *pcie, u64 axi_addr,
9086e0832faSShawn Lin 			       u64 pci_addr, resource_size_t size)
9096e0832faSShawn Lin {
9106e0832faSShawn Lin 	struct iproc_pcie_ob *ob = &pcie->ob;
9116e0832faSShawn Lin 	struct device *dev = pcie->dev;
9126e0832faSShawn Lin 	int ret = -EINVAL, window_idx, size_idx;
9136e0832faSShawn Lin 
9146e0832faSShawn Lin 	if (axi_addr < ob->axi_offset) {
9156e0832faSShawn Lin 		dev_err(dev, "axi address %pap less than offset %pap\n",
9166e0832faSShawn Lin 			&axi_addr, &ob->axi_offset);
9176e0832faSShawn Lin 		return -EINVAL;
9186e0832faSShawn Lin 	}
9196e0832faSShawn Lin 
9206e0832faSShawn Lin 	/*
9216e0832faSShawn Lin 	 * Translate the AXI address to the internal address used by the iProc
9226e0832faSShawn Lin 	 * PCIe core before programming the OARR
9236e0832faSShawn Lin 	 */
9246e0832faSShawn Lin 	axi_addr -= ob->axi_offset;
9256e0832faSShawn Lin 
9266e0832faSShawn Lin 	/* iterate through all OARR/OMAP mapping windows */
9276e0832faSShawn Lin 	for (window_idx = ob->nr_windows - 1; window_idx >= 0; window_idx--) {
9286e0832faSShawn Lin 		const struct iproc_pcie_ob_map *ob_map =
9296e0832faSShawn Lin 			&pcie->ob_map[window_idx];
9306e0832faSShawn Lin 
9316e0832faSShawn Lin 		/*
9326e0832faSShawn Lin 		 * If current outbound window is already in use, move on to the
9336e0832faSShawn Lin 		 * next one.
9346e0832faSShawn Lin 		 */
9356e0832faSShawn Lin 		if (iproc_pcie_ob_is_valid(pcie, window_idx))
9366e0832faSShawn Lin 			continue;
9376e0832faSShawn Lin 
9386e0832faSShawn Lin 		/*
9396e0832faSShawn Lin 		 * Iterate through all supported window sizes within the
9406e0832faSShawn Lin 		 * OARR/OMAP pair to find a match.  Go through the window sizes
9416e0832faSShawn Lin 		 * in a descending order.
9426e0832faSShawn Lin 		 */
9436e0832faSShawn Lin 		for (size_idx = ob_map->nr_sizes - 1; size_idx >= 0;
9446e0832faSShawn Lin 		     size_idx--) {
9456e0832faSShawn Lin 			resource_size_t window_size =
9466e0832faSShawn Lin 				ob_map->window_sizes[size_idx] * SZ_1M;
9476e0832faSShawn Lin 
948ea2df11fSSrinath Mannam 			/*
949ea2df11fSSrinath Mannam 			 * Keep iterating until we reach the last window and
950ea2df11fSSrinath Mannam 			 * with the minimal window size at index zero. In this
951ea2df11fSSrinath Mannam 			 * case, we take a compromise by mapping it using the
952ea2df11fSSrinath Mannam 			 * minimum window size that can be supported
953ea2df11fSSrinath Mannam 			 */
954ea2df11fSSrinath Mannam 			if (size < window_size) {
955ea2df11fSSrinath Mannam 				if (size_idx > 0 || window_idx > 0)
9566e0832faSShawn Lin 					continue;
9576e0832faSShawn Lin 
958ea2df11fSSrinath Mannam 				/*
959ea2df11fSSrinath Mannam 				 * For the corner case of reaching the minimal
960ea2df11fSSrinath Mannam 				 * window size that can be supported on the
961ea2df11fSSrinath Mannam 				 * last window
962ea2df11fSSrinath Mannam 				 */
963ea2df11fSSrinath Mannam 				axi_addr = ALIGN_DOWN(axi_addr, window_size);
964ea2df11fSSrinath Mannam 				pci_addr = ALIGN_DOWN(pci_addr, window_size);
965ea2df11fSSrinath Mannam 				size = window_size;
966ea2df11fSSrinath Mannam 			}
967ea2df11fSSrinath Mannam 
9686e0832faSShawn Lin 			if (!IS_ALIGNED(axi_addr, window_size) ||
9696e0832faSShawn Lin 			    !IS_ALIGNED(pci_addr, window_size)) {
9706e0832faSShawn Lin 				dev_err(dev,
9716e0832faSShawn Lin 					"axi %pap or pci %pap not aligned\n",
9726e0832faSShawn Lin 					&axi_addr, &pci_addr);
9736e0832faSShawn Lin 				return -EINVAL;
9746e0832faSShawn Lin 			}
9756e0832faSShawn Lin 
9766e0832faSShawn Lin 			/*
9776e0832faSShawn Lin 			 * Match found!  Program both OARR and OMAP and mark
9786e0832faSShawn Lin 			 * them as a valid entry.
9796e0832faSShawn Lin 			 */
9806e0832faSShawn Lin 			ret = iproc_pcie_ob_write(pcie, window_idx, size_idx,
9816e0832faSShawn Lin 						  axi_addr, pci_addr);
9826e0832faSShawn Lin 			if (ret)
9836e0832faSShawn Lin 				goto err_ob;
9846e0832faSShawn Lin 
9856e0832faSShawn Lin 			size -= window_size;
9866e0832faSShawn Lin 			if (size == 0)
9876e0832faSShawn Lin 				return 0;
9886e0832faSShawn Lin 
9896e0832faSShawn Lin 			/*
9906e0832faSShawn Lin 			 * If we are here, we are done with the current window,
9916e0832faSShawn Lin 			 * but not yet finished all mappings.  Need to move on
9926e0832faSShawn Lin 			 * to the next window.
9936e0832faSShawn Lin 			 */
9946e0832faSShawn Lin 			axi_addr += window_size;
9956e0832faSShawn Lin 			pci_addr += window_size;
9966e0832faSShawn Lin 			break;
9976e0832faSShawn Lin 		}
9986e0832faSShawn Lin 	}
9996e0832faSShawn Lin 
10006e0832faSShawn Lin err_ob:
10016e0832faSShawn Lin 	dev_err(dev, "unable to configure outbound mapping\n");
10026e0832faSShawn Lin 	dev_err(dev,
10036e0832faSShawn Lin 		"axi %pap, axi offset %pap, pci %pap, res size %pap\n",
10046e0832faSShawn Lin 		&axi_addr, &ob->axi_offset, &pci_addr, &size);
10056e0832faSShawn Lin 
10066e0832faSShawn Lin 	return ret;
10076e0832faSShawn Lin }
10086e0832faSShawn Lin 
10096e0832faSShawn Lin static int iproc_pcie_map_ranges(struct iproc_pcie *pcie,
10106e0832faSShawn Lin 				 struct list_head *resources)
10116e0832faSShawn Lin {
10126e0832faSShawn Lin 	struct device *dev = pcie->dev;
10136e0832faSShawn Lin 	struct resource_entry *window;
10146e0832faSShawn Lin 	int ret;
10156e0832faSShawn Lin 
10166e0832faSShawn Lin 	resource_list_for_each_entry(window, resources) {
10176e0832faSShawn Lin 		struct resource *res = window->res;
10186e0832faSShawn Lin 		u64 res_type = resource_type(res);
10196e0832faSShawn Lin 
10206e0832faSShawn Lin 		switch (res_type) {
10216e0832faSShawn Lin 		case IORESOURCE_IO:
10226e0832faSShawn Lin 		case IORESOURCE_BUS:
10236e0832faSShawn Lin 			break;
10246e0832faSShawn Lin 		case IORESOURCE_MEM:
10256e0832faSShawn Lin 			ret = iproc_pcie_setup_ob(pcie, res->start,
10266e0832faSShawn Lin 						  res->start - window->offset,
10276e0832faSShawn Lin 						  resource_size(res));
10286e0832faSShawn Lin 			if (ret)
10296e0832faSShawn Lin 				return ret;
10306e0832faSShawn Lin 			break;
10316e0832faSShawn Lin 		default:
10326e0832faSShawn Lin 			dev_err(dev, "invalid resource %pR\n", res);
10336e0832faSShawn Lin 			return -EINVAL;
10346e0832faSShawn Lin 		}
10356e0832faSShawn Lin 	}
10366e0832faSShawn Lin 
10376e0832faSShawn Lin 	return 0;
10386e0832faSShawn Lin }
10396e0832faSShawn Lin 
10406e0832faSShawn Lin static inline bool iproc_pcie_ib_is_in_use(struct iproc_pcie *pcie,
10416e0832faSShawn Lin 					   int region_idx)
10426e0832faSShawn Lin {
10436e0832faSShawn Lin 	const struct iproc_pcie_ib_map *ib_map = &pcie->ib_map[region_idx];
10446e0832faSShawn Lin 	u32 val;
10456e0832faSShawn Lin 
10466e0832faSShawn Lin 	val = iproc_pcie_read_reg(pcie, MAP_REG(IPROC_PCIE_IARR0, region_idx));
10476e0832faSShawn Lin 
10486e0832faSShawn Lin 	return !!(val & (BIT(ib_map->nr_sizes) - 1));
10496e0832faSShawn Lin }
10506e0832faSShawn Lin 
10516e0832faSShawn Lin static inline bool iproc_pcie_ib_check_type(const struct iproc_pcie_ib_map *ib_map,
10526e0832faSShawn Lin 					    enum iproc_pcie_ib_map_type type)
10536e0832faSShawn Lin {
10546e0832faSShawn Lin 	return !!(ib_map->type == type);
10556e0832faSShawn Lin }
10566e0832faSShawn Lin 
10576e0832faSShawn Lin static int iproc_pcie_ib_write(struct iproc_pcie *pcie, int region_idx,
10586e0832faSShawn Lin 			       int size_idx, int nr_windows, u64 axi_addr,
10596e0832faSShawn Lin 			       u64 pci_addr, resource_size_t size)
10606e0832faSShawn Lin {
10616e0832faSShawn Lin 	struct device *dev = pcie->dev;
10626e0832faSShawn Lin 	const struct iproc_pcie_ib_map *ib_map = &pcie->ib_map[region_idx];
10636e0832faSShawn Lin 	u16 iarr_offset, imap_offset;
10646e0832faSShawn Lin 	u32 val;
10656e0832faSShawn Lin 	int window_idx;
10666e0832faSShawn Lin 
10676e0832faSShawn Lin 	iarr_offset = iproc_pcie_reg_offset(pcie,
10686e0832faSShawn Lin 				MAP_REG(IPROC_PCIE_IARR0, region_idx));
10696e0832faSShawn Lin 	imap_offset = iproc_pcie_reg_offset(pcie,
10706e0832faSShawn Lin 				MAP_REG(IPROC_PCIE_IMAP0, region_idx));
10716e0832faSShawn Lin 	if (iproc_pcie_reg_is_invalid(iarr_offset) ||
10726e0832faSShawn Lin 	    iproc_pcie_reg_is_invalid(imap_offset))
10736e0832faSShawn Lin 		return -EINVAL;
10746e0832faSShawn Lin 
10750043d4aeSRay Jui 	dev_dbg(dev, "ib region [%d]: offset 0x%x axi %pap pci %pap\n",
10766e0832faSShawn Lin 		region_idx, iarr_offset, &axi_addr, &pci_addr);
10776e0832faSShawn Lin 
10786e0832faSShawn Lin 	/*
10796e0832faSShawn Lin 	 * Program the IARR registers.  The upper 32-bit IARR register is
10806e0832faSShawn Lin 	 * always right after the lower 32-bit IARR register.
10816e0832faSShawn Lin 	 */
10826e0832faSShawn Lin 	writel(lower_32_bits(pci_addr) | BIT(size_idx),
10836e0832faSShawn Lin 	       pcie->base + iarr_offset);
10846e0832faSShawn Lin 	writel(upper_32_bits(pci_addr), pcie->base + iarr_offset + 4);
10856e0832faSShawn Lin 
10860043d4aeSRay Jui 	dev_dbg(dev, "iarr lo 0x%x iarr hi 0x%x\n",
10876e0832faSShawn Lin 		readl(pcie->base + iarr_offset),
10886e0832faSShawn Lin 		readl(pcie->base + iarr_offset + 4));
10896e0832faSShawn Lin 
10906e0832faSShawn Lin 	/*
10916e0832faSShawn Lin 	 * Now program the IMAP registers.  Each IARR region may have one or
10926e0832faSShawn Lin 	 * more IMAP windows.
10936e0832faSShawn Lin 	 */
10946e0832faSShawn Lin 	size >>= ilog2(nr_windows);
10956e0832faSShawn Lin 	for (window_idx = 0; window_idx < nr_windows; window_idx++) {
10966e0832faSShawn Lin 		val = readl(pcie->base + imap_offset);
10976e0832faSShawn Lin 		val |= lower_32_bits(axi_addr) | IMAP_VALID;
10986e0832faSShawn Lin 		writel(val, pcie->base + imap_offset);
10996e0832faSShawn Lin 		writel(upper_32_bits(axi_addr),
11006e0832faSShawn Lin 		       pcie->base + imap_offset + ib_map->imap_addr_offset);
11016e0832faSShawn Lin 
11020043d4aeSRay Jui 		dev_dbg(dev, "imap window [%d] lo 0x%x hi 0x%x\n",
11036e0832faSShawn Lin 			window_idx, readl(pcie->base + imap_offset),
11046e0832faSShawn Lin 			readl(pcie->base + imap_offset +
11056e0832faSShawn Lin 			      ib_map->imap_addr_offset));
11066e0832faSShawn Lin 
11076e0832faSShawn Lin 		imap_offset += ib_map->imap_window_offset;
11086e0832faSShawn Lin 		axi_addr += size;
11096e0832faSShawn Lin 	}
11106e0832faSShawn Lin 
11116e0832faSShawn Lin 	return 0;
11126e0832faSShawn Lin }
11136e0832faSShawn Lin 
11146e0832faSShawn Lin static int iproc_pcie_setup_ib(struct iproc_pcie *pcie,
1115b9ae59b3SRob Herring 			       struct resource_entry *entry,
11166e0832faSShawn Lin 			       enum iproc_pcie_ib_map_type type)
11176e0832faSShawn Lin {
11186e0832faSShawn Lin 	struct device *dev = pcie->dev;
11196e0832faSShawn Lin 	struct iproc_pcie_ib *ib = &pcie->ib;
11206e0832faSShawn Lin 	int ret;
11216e0832faSShawn Lin 	unsigned int region_idx, size_idx;
1122b9ae59b3SRob Herring 	u64 axi_addr = entry->res->start;
1123b9ae59b3SRob Herring 	u64 pci_addr = entry->res->start - entry->offset;
1124b9ae59b3SRob Herring 	resource_size_t size = resource_size(entry->res);
11256e0832faSShawn Lin 
11266e0832faSShawn Lin 	/* iterate through all IARR mapping regions */
11276e0832faSShawn Lin 	for (region_idx = 0; region_idx < ib->nr_regions; region_idx++) {
11286e0832faSShawn Lin 		const struct iproc_pcie_ib_map *ib_map =
11296e0832faSShawn Lin 			&pcie->ib_map[region_idx];
11306e0832faSShawn Lin 
11316e0832faSShawn Lin 		/*
11326e0832faSShawn Lin 		 * If current inbound region is already in use or not a
11336e0832faSShawn Lin 		 * compatible type, move on to the next.
11346e0832faSShawn Lin 		 */
11356e0832faSShawn Lin 		if (iproc_pcie_ib_is_in_use(pcie, region_idx) ||
11366e0832faSShawn Lin 		    !iproc_pcie_ib_check_type(ib_map, type))
11376e0832faSShawn Lin 			continue;
11386e0832faSShawn Lin 
11396e0832faSShawn Lin 		/* iterate through all supported region sizes to find a match */
11406e0832faSShawn Lin 		for (size_idx = 0; size_idx < ib_map->nr_sizes; size_idx++) {
11416e0832faSShawn Lin 			resource_size_t region_size =
11426e0832faSShawn Lin 			ib_map->region_sizes[size_idx] * ib_map->size_unit;
11436e0832faSShawn Lin 
11446e0832faSShawn Lin 			if (size != region_size)
11456e0832faSShawn Lin 				continue;
11466e0832faSShawn Lin 
11476e0832faSShawn Lin 			if (!IS_ALIGNED(axi_addr, region_size) ||
11486e0832faSShawn Lin 			    !IS_ALIGNED(pci_addr, region_size)) {
11496e0832faSShawn Lin 				dev_err(dev,
11506e0832faSShawn Lin 					"axi %pap or pci %pap not aligned\n",
11516e0832faSShawn Lin 					&axi_addr, &pci_addr);
11526e0832faSShawn Lin 				return -EINVAL;
11536e0832faSShawn Lin 			}
11546e0832faSShawn Lin 
11556e0832faSShawn Lin 			/* Match found!  Program IARR and all IMAP windows. */
11566e0832faSShawn Lin 			ret = iproc_pcie_ib_write(pcie, region_idx, size_idx,
11576e0832faSShawn Lin 						  ib_map->nr_windows, axi_addr,
11586e0832faSShawn Lin 						  pci_addr, size);
11596e0832faSShawn Lin 			if (ret)
11606e0832faSShawn Lin 				goto err_ib;
11616e0832faSShawn Lin 			else
11626e0832faSShawn Lin 				return 0;
11636e0832faSShawn Lin 
11646e0832faSShawn Lin 		}
11656e0832faSShawn Lin 	}
11666e0832faSShawn Lin 	ret = -EINVAL;
11676e0832faSShawn Lin 
11686e0832faSShawn Lin err_ib:
11696e0832faSShawn Lin 	dev_err(dev, "unable to configure inbound mapping\n");
11706e0832faSShawn Lin 	dev_err(dev, "axi %pap, pci %pap, res size %pap\n",
11716e0832faSShawn Lin 		&axi_addr, &pci_addr, &size);
11726e0832faSShawn Lin 
11736e0832faSShawn Lin 	return ret;
11746e0832faSShawn Lin }
11756e0832faSShawn Lin 
11766e0832faSShawn Lin static int iproc_pcie_map_dma_ranges(struct iproc_pcie *pcie)
11776e0832faSShawn Lin {
117890199c95SSrinath Mannam 	struct pci_host_bridge *host = pci_host_bridge_from_priv(pcie);
1179b9ae59b3SRob Herring 	struct resource_entry *entry;
1180b9ae59b3SRob Herring 	int ret = 0;
11816e0832faSShawn Lin 
1182b9ae59b3SRob Herring 	resource_list_for_each_entry(entry, &host->dma_ranges) {
11836e0832faSShawn Lin 		/* Each range entry corresponds to an inbound mapping region */
1184b9ae59b3SRob Herring 		ret = iproc_pcie_setup_ib(pcie, entry, IPROC_PCIE_IB_MAP_MEM);
11856e0832faSShawn Lin 		if (ret)
1186b9ae59b3SRob Herring 			break;
11876e0832faSShawn Lin 	}
11886e0832faSShawn Lin 
118990199c95SSrinath Mannam 	return ret;
11906e0832faSShawn Lin }
11916e0832faSShawn Lin 
11929415743eSAbhishek Shah static void iproc_pcie_invalidate_mapping(struct iproc_pcie *pcie)
11939415743eSAbhishek Shah {
11949415743eSAbhishek Shah 	struct iproc_pcie_ib *ib = &pcie->ib;
11959415743eSAbhishek Shah 	struct iproc_pcie_ob *ob = &pcie->ob;
11969415743eSAbhishek Shah 	int idx;
11979415743eSAbhishek Shah 
11989415743eSAbhishek Shah 	if (pcie->ep_is_internal)
11999415743eSAbhishek Shah 		return;
12009415743eSAbhishek Shah 
12019415743eSAbhishek Shah 	if (pcie->need_ob_cfg) {
12029415743eSAbhishek Shah 		/* iterate through all OARR mapping regions */
12039415743eSAbhishek Shah 		for (idx = ob->nr_windows - 1; idx >= 0; idx--) {
12049415743eSAbhishek Shah 			iproc_pcie_write_reg(pcie,
12059415743eSAbhishek Shah 					     MAP_REG(IPROC_PCIE_OARR0, idx), 0);
12069415743eSAbhishek Shah 		}
12079415743eSAbhishek Shah 	}
12089415743eSAbhishek Shah 
12099415743eSAbhishek Shah 	if (pcie->need_ib_cfg) {
12109415743eSAbhishek Shah 		/* iterate through all IARR mapping regions */
12119415743eSAbhishek Shah 		for (idx = 0; idx < ib->nr_regions; idx++) {
12129415743eSAbhishek Shah 			iproc_pcie_write_reg(pcie,
12139415743eSAbhishek Shah 					     MAP_REG(IPROC_PCIE_IARR0, idx), 0);
12149415743eSAbhishek Shah 		}
12159415743eSAbhishek Shah 	}
12169415743eSAbhishek Shah }
12179415743eSAbhishek Shah 
12186e0832faSShawn Lin static int iproce_pcie_get_msi(struct iproc_pcie *pcie,
12196e0832faSShawn Lin 			       struct device_node *msi_node,
12206e0832faSShawn Lin 			       u64 *msi_addr)
12216e0832faSShawn Lin {
12226e0832faSShawn Lin 	struct device *dev = pcie->dev;
12236e0832faSShawn Lin 	int ret;
12246e0832faSShawn Lin 	struct resource res;
12256e0832faSShawn Lin 
12266e0832faSShawn Lin 	/*
12276e0832faSShawn Lin 	 * Check if 'msi-map' points to ARM GICv3 ITS, which is the only
12286e0832faSShawn Lin 	 * supported external MSI controller that requires steering.
12296e0832faSShawn Lin 	 */
12306e0832faSShawn Lin 	if (!of_device_is_compatible(msi_node, "arm,gic-v3-its")) {
12316e0832faSShawn Lin 		dev_err(dev, "unable to find compatible MSI controller\n");
12326e0832faSShawn Lin 		return -ENODEV;
12336e0832faSShawn Lin 	}
12346e0832faSShawn Lin 
12356e0832faSShawn Lin 	/* derive GITS_TRANSLATER address from GICv3 */
12366e0832faSShawn Lin 	ret = of_address_to_resource(msi_node, 0, &res);
12376e0832faSShawn Lin 	if (ret < 0) {
12386e0832faSShawn Lin 		dev_err(dev, "unable to obtain MSI controller resources\n");
12396e0832faSShawn Lin 		return ret;
12406e0832faSShawn Lin 	}
12416e0832faSShawn Lin 
12426e0832faSShawn Lin 	*msi_addr = res.start + GITS_TRANSLATER;
12436e0832faSShawn Lin 	return 0;
12446e0832faSShawn Lin }
12456e0832faSShawn Lin 
12466e0832faSShawn Lin static int iproc_pcie_paxb_v2_msi_steer(struct iproc_pcie *pcie, u64 msi_addr)
12476e0832faSShawn Lin {
12486e0832faSShawn Lin 	int ret;
1249b9ae59b3SRob Herring 	struct resource_entry entry;
12506e0832faSShawn Lin 
1251b9ae59b3SRob Herring 	memset(&entry, 0, sizeof(entry));
1252b9ae59b3SRob Herring 	entry.res = &entry.__res;
12536e0832faSShawn Lin 
1254b9ae59b3SRob Herring 	msi_addr &= ~(SZ_32K - 1);
1255b9ae59b3SRob Herring 	entry.res->start = msi_addr;
1256b9ae59b3SRob Herring 	entry.res->end = msi_addr + SZ_32K - 1;
1257b9ae59b3SRob Herring 
1258b9ae59b3SRob Herring 	ret = iproc_pcie_setup_ib(pcie, &entry, IPROC_PCIE_IB_MAP_IO);
12596e0832faSShawn Lin 	return ret;
12606e0832faSShawn Lin }
12616e0832faSShawn Lin 
12621e5748c2SRay Jui static void iproc_pcie_paxc_v2_msi_steer(struct iproc_pcie *pcie, u64 msi_addr,
12631e5748c2SRay Jui 					 bool enable)
12646e0832faSShawn Lin {
12656e0832faSShawn Lin 	u32 val;
12666e0832faSShawn Lin 
12671e5748c2SRay Jui 	if (!enable) {
12681e5748c2SRay Jui 		/*
12691e5748c2SRay Jui 		 * Disable PAXC MSI steering. All write transfers will be
12701e5748c2SRay Jui 		 * treated as non-MSI transfers
12711e5748c2SRay Jui 		 */
12721e5748c2SRay Jui 		val = iproc_pcie_read_reg(pcie, IPROC_PCIE_MSI_EN_CFG);
12731e5748c2SRay Jui 		val &= ~MSI_ENABLE_CFG;
12741e5748c2SRay Jui 		iproc_pcie_write_reg(pcie, IPROC_PCIE_MSI_EN_CFG, val);
12751e5748c2SRay Jui 		return;
12761e5748c2SRay Jui 	}
12771e5748c2SRay Jui 
12786e0832faSShawn Lin 	/*
12796e0832faSShawn Lin 	 * Program bits [43:13] of address of GITS_TRANSLATER register into
12806e0832faSShawn Lin 	 * bits [30:0] of the MSI base address register.  In fact, in all iProc
12816e0832faSShawn Lin 	 * based SoCs, all I/O register bases are well below the 32-bit
12826e0832faSShawn Lin 	 * boundary, so we can safely assume bits [43:32] are always zeros.
12836e0832faSShawn Lin 	 */
12846e0832faSShawn Lin 	iproc_pcie_write_reg(pcie, IPROC_PCIE_MSI_BASE_ADDR,
12856e0832faSShawn Lin 			     (u32)(msi_addr >> 13));
12866e0832faSShawn Lin 
12876e0832faSShawn Lin 	/* use a default 8K window size */
12886e0832faSShawn Lin 	iproc_pcie_write_reg(pcie, IPROC_PCIE_MSI_WINDOW_SIZE, 0);
12896e0832faSShawn Lin 
12906e0832faSShawn Lin 	/* steering MSI to GICv3 ITS */
12916e0832faSShawn Lin 	val = iproc_pcie_read_reg(pcie, IPROC_PCIE_MSI_GIC_MODE);
12926e0832faSShawn Lin 	val |= GIC_V3_CFG;
12936e0832faSShawn Lin 	iproc_pcie_write_reg(pcie, IPROC_PCIE_MSI_GIC_MODE, val);
12946e0832faSShawn Lin 
12956e0832faSShawn Lin 	/*
12966e0832faSShawn Lin 	 * Program bits [43:2] of address of GITS_TRANSLATER register into the
12976e0832faSShawn Lin 	 * iProc MSI address registers.
12986e0832faSShawn Lin 	 */
12996e0832faSShawn Lin 	msi_addr >>= 2;
13006e0832faSShawn Lin 	iproc_pcie_write_reg(pcie, IPROC_PCIE_MSI_ADDR_HI,
13016e0832faSShawn Lin 			     upper_32_bits(msi_addr));
13026e0832faSShawn Lin 	iproc_pcie_write_reg(pcie, IPROC_PCIE_MSI_ADDR_LO,
13036e0832faSShawn Lin 			     lower_32_bits(msi_addr));
13046e0832faSShawn Lin 
13056e0832faSShawn Lin 	/* enable MSI */
13066e0832faSShawn Lin 	val = iproc_pcie_read_reg(pcie, IPROC_PCIE_MSI_EN_CFG);
13076e0832faSShawn Lin 	val |= MSI_ENABLE_CFG;
13086e0832faSShawn Lin 	iproc_pcie_write_reg(pcie, IPROC_PCIE_MSI_EN_CFG, val);
13096e0832faSShawn Lin }
13106e0832faSShawn Lin 
13116e0832faSShawn Lin static int iproc_pcie_msi_steer(struct iproc_pcie *pcie,
13126e0832faSShawn Lin 				struct device_node *msi_node)
13136e0832faSShawn Lin {
13146e0832faSShawn Lin 	struct device *dev = pcie->dev;
13156e0832faSShawn Lin 	int ret;
13166e0832faSShawn Lin 	u64 msi_addr;
13176e0832faSShawn Lin 
13186e0832faSShawn Lin 	ret = iproce_pcie_get_msi(pcie, msi_node, &msi_addr);
13196e0832faSShawn Lin 	if (ret < 0) {
13206e0832faSShawn Lin 		dev_err(dev, "msi steering failed\n");
13216e0832faSShawn Lin 		return ret;
13226e0832faSShawn Lin 	}
13236e0832faSShawn Lin 
13246e0832faSShawn Lin 	switch (pcie->type) {
13256e0832faSShawn Lin 	case IPROC_PCIE_PAXB_V2:
13266e0832faSShawn Lin 		ret = iproc_pcie_paxb_v2_msi_steer(pcie, msi_addr);
13276e0832faSShawn Lin 		if (ret)
13286e0832faSShawn Lin 			return ret;
13296e0832faSShawn Lin 		break;
13306e0832faSShawn Lin 	case IPROC_PCIE_PAXC_V2:
13311e5748c2SRay Jui 		iproc_pcie_paxc_v2_msi_steer(pcie, msi_addr, true);
13326e0832faSShawn Lin 		break;
13336e0832faSShawn Lin 	default:
13346e0832faSShawn Lin 		return -EINVAL;
13356e0832faSShawn Lin 	}
13366e0832faSShawn Lin 
13376e0832faSShawn Lin 	return 0;
13386e0832faSShawn Lin }
13396e0832faSShawn Lin 
13406e0832faSShawn Lin static int iproc_pcie_msi_enable(struct iproc_pcie *pcie)
13416e0832faSShawn Lin {
13426e0832faSShawn Lin 	struct device_node *msi_node;
13436e0832faSShawn Lin 	int ret;
13446e0832faSShawn Lin 
13456e0832faSShawn Lin 	/*
13466e0832faSShawn Lin 	 * Either the "msi-parent" or the "msi-map" phandle needs to exist
13476e0832faSShawn Lin 	 * for us to obtain the MSI node.
13486e0832faSShawn Lin 	 */
13496e0832faSShawn Lin 
13506e0832faSShawn Lin 	msi_node = of_parse_phandle(pcie->dev->of_node, "msi-parent", 0);
13516e0832faSShawn Lin 	if (!msi_node) {
13526e0832faSShawn Lin 		const __be32 *msi_map = NULL;
13536e0832faSShawn Lin 		int len;
13546e0832faSShawn Lin 		u32 phandle;
13556e0832faSShawn Lin 
13566e0832faSShawn Lin 		msi_map = of_get_property(pcie->dev->of_node, "msi-map", &len);
13576e0832faSShawn Lin 		if (!msi_map)
13586e0832faSShawn Lin 			return -ENODEV;
13596e0832faSShawn Lin 
13606e0832faSShawn Lin 		phandle = be32_to_cpup(msi_map + 1);
13616e0832faSShawn Lin 		msi_node = of_find_node_by_phandle(phandle);
13626e0832faSShawn Lin 		if (!msi_node)
13636e0832faSShawn Lin 			return -ENODEV;
13646e0832faSShawn Lin 	}
13656e0832faSShawn Lin 
13666e0832faSShawn Lin 	/*
13676e0832faSShawn Lin 	 * Certain revisions of the iProc PCIe controller require additional
13686e0832faSShawn Lin 	 * configurations to steer the MSI writes towards an external MSI
13696e0832faSShawn Lin 	 * controller.
13706e0832faSShawn Lin 	 */
13716e0832faSShawn Lin 	if (pcie->need_msi_steer) {
13726e0832faSShawn Lin 		ret = iproc_pcie_msi_steer(pcie, msi_node);
13736e0832faSShawn Lin 		if (ret)
13748956388dSWen Yang 			goto out_put_node;
13756e0832faSShawn Lin 	}
13766e0832faSShawn Lin 
13776e0832faSShawn Lin 	/*
13786e0832faSShawn Lin 	 * If another MSI controller is being used, the call below should fail
13796e0832faSShawn Lin 	 * but that is okay
13806e0832faSShawn Lin 	 */
13818956388dSWen Yang 	ret = iproc_msi_init(pcie, msi_node);
13828956388dSWen Yang 
13838956388dSWen Yang out_put_node:
13848956388dSWen Yang 	of_node_put(msi_node);
13858956388dSWen Yang 	return ret;
13866e0832faSShawn Lin }
13876e0832faSShawn Lin 
13886e0832faSShawn Lin static void iproc_pcie_msi_disable(struct iproc_pcie *pcie)
13896e0832faSShawn Lin {
13906e0832faSShawn Lin 	iproc_msi_exit(pcie);
13916e0832faSShawn Lin }
13926e0832faSShawn Lin 
13936e0832faSShawn Lin static int iproc_pcie_rev_init(struct iproc_pcie *pcie)
13946e0832faSShawn Lin {
13956e0832faSShawn Lin 	struct device *dev = pcie->dev;
13966e0832faSShawn Lin 	unsigned int reg_idx;
13976e0832faSShawn Lin 	const u16 *regs;
13986e0832faSShawn Lin 
13996e0832faSShawn Lin 	switch (pcie->type) {
14006e0832faSShawn Lin 	case IPROC_PCIE_PAXB_BCMA:
14016e0832faSShawn Lin 		regs = iproc_pcie_reg_paxb_bcma;
14026e0832faSShawn Lin 		break;
14036e0832faSShawn Lin 	case IPROC_PCIE_PAXB:
14046e0832faSShawn Lin 		regs = iproc_pcie_reg_paxb;
14056e0832faSShawn Lin 		pcie->has_apb_err_disable = true;
14066e0832faSShawn Lin 		if (pcie->need_ob_cfg) {
14076e0832faSShawn Lin 			pcie->ob_map = paxb_ob_map;
14086e0832faSShawn Lin 			pcie->ob.nr_windows = ARRAY_SIZE(paxb_ob_map);
14096e0832faSShawn Lin 		}
14106e0832faSShawn Lin 		break;
14116e0832faSShawn Lin 	case IPROC_PCIE_PAXB_V2:
14126e0832faSShawn Lin 		regs = iproc_pcie_reg_paxb_v2;
14138cff9954SSrinath Mannam 		pcie->iproc_cfg_read = true;
14146e0832faSShawn Lin 		pcie->has_apb_err_disable = true;
14156e0832faSShawn Lin 		if (pcie->need_ob_cfg) {
14166e0832faSShawn Lin 			pcie->ob_map = paxb_v2_ob_map;
14176e0832faSShawn Lin 			pcie->ob.nr_windows = ARRAY_SIZE(paxb_v2_ob_map);
14186e0832faSShawn Lin 		}
14196e0832faSShawn Lin 		pcie->ib.nr_regions = ARRAY_SIZE(paxb_v2_ib_map);
14206e0832faSShawn Lin 		pcie->ib_map = paxb_v2_ib_map;
14216e0832faSShawn Lin 		pcie->need_msi_steer = true;
14226e0832faSShawn Lin 		dev_warn(dev, "reads of config registers that contain %#x return incorrect data\n",
14236e0832faSShawn Lin 			 CFG_RETRY_STATUS);
14246e0832faSShawn Lin 		break;
14256e0832faSShawn Lin 	case IPROC_PCIE_PAXC:
14266e0832faSShawn Lin 		regs = iproc_pcie_reg_paxc;
14276e0832faSShawn Lin 		pcie->ep_is_internal = true;
1428f78e60a2SRay Jui 		pcie->iproc_cfg_read = true;
1429f78e60a2SRay Jui 		pcie->rej_unconfig_pf = true;
14306e0832faSShawn Lin 		break;
14316e0832faSShawn Lin 	case IPROC_PCIE_PAXC_V2:
14326e0832faSShawn Lin 		regs = iproc_pcie_reg_paxc_v2;
14336e0832faSShawn Lin 		pcie->ep_is_internal = true;
1434f78e60a2SRay Jui 		pcie->iproc_cfg_read = true;
1435f78e60a2SRay Jui 		pcie->rej_unconfig_pf = true;
14366e0832faSShawn Lin 		pcie->need_msi_steer = true;
14376e0832faSShawn Lin 		break;
14386e0832faSShawn Lin 	default:
14396e0832faSShawn Lin 		dev_err(dev, "incompatible iProc PCIe interface\n");
14406e0832faSShawn Lin 		return -EINVAL;
14416e0832faSShawn Lin 	}
14426e0832faSShawn Lin 
14436e0832faSShawn Lin 	pcie->reg_offsets = devm_kcalloc(dev, IPROC_PCIE_MAX_NUM_REG,
14446e0832faSShawn Lin 					 sizeof(*pcie->reg_offsets),
14456e0832faSShawn Lin 					 GFP_KERNEL);
14466e0832faSShawn Lin 	if (!pcie->reg_offsets)
14476e0832faSShawn Lin 		return -ENOMEM;
14486e0832faSShawn Lin 
14496e0832faSShawn Lin 	/* go through the register table and populate all valid registers */
14506e0832faSShawn Lin 	pcie->reg_offsets[0] = (pcie->type == IPROC_PCIE_PAXC_V2) ?
14516e0832faSShawn Lin 		IPROC_PCIE_REG_INVALID : regs[0];
14526e0832faSShawn Lin 	for (reg_idx = 1; reg_idx < IPROC_PCIE_MAX_NUM_REG; reg_idx++)
14536e0832faSShawn Lin 		pcie->reg_offsets[reg_idx] = regs[reg_idx] ?
14546e0832faSShawn Lin 			regs[reg_idx] : IPROC_PCIE_REG_INVALID;
14556e0832faSShawn Lin 
14566e0832faSShawn Lin 	return 0;
14576e0832faSShawn Lin }
14586e0832faSShawn Lin 
14596e0832faSShawn Lin int iproc_pcie_setup(struct iproc_pcie *pcie, struct list_head *res)
14606e0832faSShawn Lin {
14616e0832faSShawn Lin 	struct device *dev;
14626e0832faSShawn Lin 	int ret;
14637698c0f1SSrinath Mannam 	struct pci_dev *pdev;
14646e0832faSShawn Lin 	struct pci_host_bridge *host = pci_host_bridge_from_priv(pcie);
14656e0832faSShawn Lin 
14666e0832faSShawn Lin 	dev = pcie->dev;
14676e0832faSShawn Lin 
14686e0832faSShawn Lin 	ret = iproc_pcie_rev_init(pcie);
14696e0832faSShawn Lin 	if (ret) {
14706e0832faSShawn Lin 		dev_err(dev, "unable to initialize controller parameters\n");
14716e0832faSShawn Lin 		return ret;
14726e0832faSShawn Lin 	}
14736e0832faSShawn Lin 
14746e0832faSShawn Lin 	ret = phy_init(pcie->phy);
14756e0832faSShawn Lin 	if (ret) {
14766e0832faSShawn Lin 		dev_err(dev, "unable to initialize PCIe PHY\n");
14776e0832faSShawn Lin 		return ret;
14786e0832faSShawn Lin 	}
14796e0832faSShawn Lin 
14806e0832faSShawn Lin 	ret = phy_power_on(pcie->phy);
14816e0832faSShawn Lin 	if (ret) {
14826e0832faSShawn Lin 		dev_err(dev, "unable to power on PCIe PHY\n");
14836e0832faSShawn Lin 		goto err_exit_phy;
14846e0832faSShawn Lin 	}
14856e0832faSShawn Lin 
14866e0832faSShawn Lin 	iproc_pcie_perst_ctrl(pcie, true);
14876e0832faSShawn Lin 	iproc_pcie_perst_ctrl(pcie, false);
14886e0832faSShawn Lin 
14899415743eSAbhishek Shah 	iproc_pcie_invalidate_mapping(pcie);
14909415743eSAbhishek Shah 
14916e0832faSShawn Lin 	if (pcie->need_ob_cfg) {
14926e0832faSShawn Lin 		ret = iproc_pcie_map_ranges(pcie, res);
14936e0832faSShawn Lin 		if (ret) {
14946e0832faSShawn Lin 			dev_err(dev, "map failed\n");
14956e0832faSShawn Lin 			goto err_power_off_phy;
14966e0832faSShawn Lin 		}
14976e0832faSShawn Lin 	}
14986e0832faSShawn Lin 
14996e0832faSShawn Lin 	if (pcie->need_ib_cfg) {
15006e0832faSShawn Lin 		ret = iproc_pcie_map_dma_ranges(pcie);
15016e0832faSShawn Lin 		if (ret && ret != -ENOENT)
15026e0832faSShawn Lin 			goto err_power_off_phy;
15036e0832faSShawn Lin 	}
15046e0832faSShawn Lin 
15056e0832faSShawn Lin 	ret = iproc_pcie_check_link(pcie);
15066e0832faSShawn Lin 	if (ret) {
15076e0832faSShawn Lin 		dev_err(dev, "no PCIe EP device detected\n");
15086e0832faSShawn Lin 		goto err_power_off_phy;
15096e0832faSShawn Lin 	}
15106e0832faSShawn Lin 
15116e0832faSShawn Lin 	iproc_pcie_enable(pcie);
15126e0832faSShawn Lin 
15136e0832faSShawn Lin 	if (IS_ENABLED(CONFIG_PCI_MSI))
15146e0832faSShawn Lin 		if (iproc_pcie_msi_enable(pcie))
15156e0832faSShawn Lin 			dev_info(dev, "not using iProc MSI\n");
15166e0832faSShawn Lin 
15176e0832faSShawn Lin 	host->ops = &iproc_pcie_ops;
15186e0832faSShawn Lin 	host->sysdata = pcie;
15196e0832faSShawn Lin 	host->map_irq = pcie->map_irq;
15206e0832faSShawn Lin 
152181ce3cf4SRob Herring 	ret = pci_host_probe(host);
15226e0832faSShawn Lin 	if (ret < 0) {
15236e0832faSShawn Lin 		dev_err(dev, "failed to scan host: %d\n", ret);
15246e0832faSShawn Lin 		goto err_power_off_phy;
15256e0832faSShawn Lin 	}
15266e0832faSShawn Lin 
15277698c0f1SSrinath Mannam 	for_each_pci_bridge(pdev, host->bus) {
15287698c0f1SSrinath Mannam 		if (pci_pcie_type(pdev) == PCI_EXP_TYPE_ROOT_PORT)
15297698c0f1SSrinath Mannam 			pcie_print_link_status(pdev);
15307698c0f1SSrinath Mannam 	}
15317698c0f1SSrinath Mannam 
15326e0832faSShawn Lin 	return 0;
15336e0832faSShawn Lin 
15346e0832faSShawn Lin err_power_off_phy:
15356e0832faSShawn Lin 	phy_power_off(pcie->phy);
15366e0832faSShawn Lin err_exit_phy:
15376e0832faSShawn Lin 	phy_exit(pcie->phy);
15386e0832faSShawn Lin 	return ret;
15396e0832faSShawn Lin }
15406e0832faSShawn Lin EXPORT_SYMBOL(iproc_pcie_setup);
15416e0832faSShawn Lin 
15426e0832faSShawn Lin int iproc_pcie_remove(struct iproc_pcie *pcie)
15436e0832faSShawn Lin {
154481ce3cf4SRob Herring 	struct pci_host_bridge *host = pci_host_bridge_from_priv(pcie);
154581ce3cf4SRob Herring 
154681ce3cf4SRob Herring 	pci_stop_root_bus(host->bus);
154781ce3cf4SRob Herring 	pci_remove_root_bus(host->bus);
15486e0832faSShawn Lin 
15496e0832faSShawn Lin 	iproc_pcie_msi_disable(pcie);
15506e0832faSShawn Lin 
15516e0832faSShawn Lin 	phy_power_off(pcie->phy);
15526e0832faSShawn Lin 	phy_exit(pcie->phy);
15536e0832faSShawn Lin 
15546e0832faSShawn Lin 	return 0;
15556e0832faSShawn Lin }
15566e0832faSShawn Lin EXPORT_SYMBOL(iproc_pcie_remove);
15576e0832faSShawn Lin 
15581e5748c2SRay Jui /*
15591e5748c2SRay Jui  * The MSI parsing logic in certain revisions of Broadcom PAXC based root
15601e5748c2SRay Jui  * complex does not work and needs to be disabled
15611e5748c2SRay Jui  */
15621e5748c2SRay Jui static void quirk_paxc_disable_msi_parsing(struct pci_dev *pdev)
15631e5748c2SRay Jui {
15641e5748c2SRay Jui 	struct iproc_pcie *pcie = iproc_data(pdev->bus);
15651e5748c2SRay Jui 
15661e5748c2SRay Jui 	if (pdev->hdr_type == PCI_HEADER_TYPE_BRIDGE)
15671e5748c2SRay Jui 		iproc_pcie_paxc_v2_msi_steer(pcie, 0, false);
15681e5748c2SRay Jui }
15691e5748c2SRay Jui DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_BROADCOM, 0x16f0,
15701e5748c2SRay Jui 			quirk_paxc_disable_msi_parsing);
15711e5748c2SRay Jui DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_BROADCOM, 0xd802,
15721e5748c2SRay Jui 			quirk_paxc_disable_msi_parsing);
15731e5748c2SRay Jui DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_BROADCOM, 0xd804,
15741e5748c2SRay Jui 			quirk_paxc_disable_msi_parsing);
15751e5748c2SRay Jui 
1576574f2903SWei Liu static void quirk_paxc_bridge(struct pci_dev *pdev)
1577574f2903SWei Liu {
1578574f2903SWei Liu 	/*
1579574f2903SWei Liu 	 * The PCI config space is shared with the PAXC root port and the first
1580574f2903SWei Liu 	 * Ethernet device.  So, we need to workaround this by telling the PCI
1581574f2903SWei Liu 	 * code that the bridge is not an Ethernet device.
1582574f2903SWei Liu 	 */
1583574f2903SWei Liu 	if (pdev->hdr_type == PCI_HEADER_TYPE_BRIDGE)
1584*904b10fbSPali Rohár 		pdev->class = PCI_CLASS_BRIDGE_PCI_NORMAL;
1585574f2903SWei Liu 
1586574f2903SWei Liu 	/*
1587574f2903SWei Liu 	 * MPSS is not being set properly (as it is currently 0).  This is
1588574f2903SWei Liu 	 * because that area of the PCI config space is hard coded to zero, and
1589574f2903SWei Liu 	 * is not modifiable by firmware.  Set this to 2 (e.g., 512 byte MPS)
1590574f2903SWei Liu 	 * so that the MPS can be set to the real max value.
1591574f2903SWei Liu 	 */
1592574f2903SWei Liu 	pdev->pcie_mpss = 2;
1593574f2903SWei Liu }
1594574f2903SWei Liu DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_BROADCOM, 0x16cd, quirk_paxc_bridge);
1595574f2903SWei Liu DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_BROADCOM, 0x16f0, quirk_paxc_bridge);
1596574f2903SWei Liu DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_BROADCOM, 0xd750, quirk_paxc_bridge);
1597574f2903SWei Liu DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_BROADCOM, 0xd802, quirk_paxc_bridge);
1598574f2903SWei Liu DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_BROADCOM, 0xd804, quirk_paxc_bridge);
1599574f2903SWei Liu 
16006e0832faSShawn Lin MODULE_AUTHOR("Ray Jui <rjui@broadcom.com>");
16016e0832faSShawn Lin MODULE_DESCRIPTION("Broadcom iPROC PCIe common driver");
16026e0832faSShawn Lin MODULE_LICENSE("GPL v2");
1603