xref: /openbmc/linux/drivers/ata/sata_mv.c (revision 46c5784c8fa736c2bb42fe681189b86e99abdc2e)
1c6fd2807SJeff Garzik /*
2c6fd2807SJeff Garzik  * sata_mv.c - Marvell SATA support
3c6fd2807SJeff Garzik  *
4e12bef50SMark Lord  * Copyright 2008: Marvell Corporation, all rights reserved.
5c6fd2807SJeff Garzik  * Copyright 2005: EMC Corporation, all rights reserved.
6c6fd2807SJeff Garzik  * Copyright 2005 Red Hat, Inc.  All rights reserved.
7c6fd2807SJeff Garzik  *
8c6fd2807SJeff Garzik  * Please ALWAYS copy linux-ide@vger.kernel.org on emails.
9c6fd2807SJeff Garzik  *
10c6fd2807SJeff Garzik  * This program is free software; you can redistribute it and/or modify
11c6fd2807SJeff Garzik  * it under the terms of the GNU General Public License as published by
12c6fd2807SJeff Garzik  * the Free Software Foundation; version 2 of the License.
13c6fd2807SJeff Garzik  *
14c6fd2807SJeff Garzik  * This program is distributed in the hope that it will be useful,
15c6fd2807SJeff Garzik  * but WITHOUT ANY WARRANTY; without even the implied warranty of
16c6fd2807SJeff Garzik  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17c6fd2807SJeff Garzik  * GNU General Public License for more details.
18c6fd2807SJeff Garzik  *
19c6fd2807SJeff Garzik  * You should have received a copy of the GNU General Public License
20c6fd2807SJeff Garzik  * along with this program; if not, write to the Free Software
21c6fd2807SJeff Garzik  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
22c6fd2807SJeff Garzik  *
23c6fd2807SJeff Garzik  */
24c6fd2807SJeff Garzik 
254a05e209SJeff Garzik /*
2685afb934SMark Lord  * sata_mv TODO list:
2785afb934SMark Lord  *
2885afb934SMark Lord  * --> Errata workaround for NCQ device errors.
2985afb934SMark Lord  *
3085afb934SMark Lord  * --> More errata workarounds for PCI-X.
3185afb934SMark Lord  *
3285afb934SMark Lord  * --> Complete a full errata audit for all chipsets to identify others.
3385afb934SMark Lord  *
3485afb934SMark Lord  * --> ATAPI support (Marvell claims the 60xx/70xx chips can do it).
3585afb934SMark Lord  *
3685afb934SMark Lord  * --> Investigate problems with PCI Message Signalled Interrupts (MSI).
3785afb934SMark Lord  *
3885afb934SMark Lord  * --> Cache frequently-accessed registers in mv_port_priv to reduce overhead.
3985afb934SMark Lord  *
4085afb934SMark Lord  * --> Develop a low-power-consumption strategy, and implement it.
4185afb934SMark Lord  *
4285afb934SMark Lord  * --> [Experiment, low priority] Investigate interrupt coalescing.
4385afb934SMark Lord  *       Quite often, especially with PCI Message Signalled Interrupts (MSI),
4485afb934SMark Lord  *       the overhead reduced by interrupt mitigation is quite often not
4585afb934SMark Lord  *       worth the latency cost.
4685afb934SMark Lord  *
4785afb934SMark Lord  * --> [Experiment, Marvell value added] Is it possible to use target
4885afb934SMark Lord  *       mode to cross-connect two Linux boxes with Marvell cards?  If so,
4985afb934SMark Lord  *       creating LibATA target mode support would be very interesting.
5085afb934SMark Lord  *
5185afb934SMark Lord  *       Target mode, for those without docs, is the ability to directly
5285afb934SMark Lord  *       connect two SATA ports.
534a05e209SJeff Garzik  */
544a05e209SJeff Garzik 
55c6fd2807SJeff Garzik #include <linux/kernel.h>
56c6fd2807SJeff Garzik #include <linux/module.h>
57c6fd2807SJeff Garzik #include <linux/pci.h>
58c6fd2807SJeff Garzik #include <linux/init.h>
59c6fd2807SJeff Garzik #include <linux/blkdev.h>
60c6fd2807SJeff Garzik #include <linux/delay.h>
61c6fd2807SJeff Garzik #include <linux/interrupt.h>
628d8b6004SAndrew Morton #include <linux/dmapool.h>
63c6fd2807SJeff Garzik #include <linux/dma-mapping.h>
64c6fd2807SJeff Garzik #include <linux/device.h>
65f351b2d6SSaeed Bishara #include <linux/platform_device.h>
66f351b2d6SSaeed Bishara #include <linux/ata_platform.h>
6715a32632SLennert Buytenhek #include <linux/mbus.h>
68c46938ccSMark Lord #include <linux/bitops.h>
69c6fd2807SJeff Garzik #include <scsi/scsi_host.h>
70c6fd2807SJeff Garzik #include <scsi/scsi_cmnd.h>
716c08772eSJeff Garzik #include <scsi/scsi_device.h>
72c6fd2807SJeff Garzik #include <linux/libata.h>
73c6fd2807SJeff Garzik 
74c6fd2807SJeff Garzik #define DRV_NAME	"sata_mv"
750388a8c0SMark Lord #define DRV_VERSION	"1.24"
76c6fd2807SJeff Garzik 
77c6fd2807SJeff Garzik enum {
78c6fd2807SJeff Garzik 	/* BAR's are enumerated in terms of pci_resource_start() terms */
79c6fd2807SJeff Garzik 	MV_PRIMARY_BAR		= 0,	/* offset 0x10: memory space */
80c6fd2807SJeff Garzik 	MV_IO_BAR		= 2,	/* offset 0x18: IO space */
81c6fd2807SJeff Garzik 	MV_MISC_BAR		= 3,	/* offset 0x1c: FLASH, NVRAM, SRAM */
82c6fd2807SJeff Garzik 
83c6fd2807SJeff Garzik 	MV_MAJOR_REG_AREA_SZ	= 0x10000,	/* 64KB */
84c6fd2807SJeff Garzik 	MV_MINOR_REG_AREA_SZ	= 0x2000,	/* 8KB */
85c6fd2807SJeff Garzik 
86c6fd2807SJeff Garzik 	MV_PCI_REG_BASE		= 0,
87c6fd2807SJeff Garzik 	MV_IRQ_COAL_REG_BASE	= 0x18000,	/* 6xxx part only */
88c6fd2807SJeff Garzik 	MV_IRQ_COAL_CAUSE		= (MV_IRQ_COAL_REG_BASE + 0x08),
89c6fd2807SJeff Garzik 	MV_IRQ_COAL_CAUSE_LO		= (MV_IRQ_COAL_REG_BASE + 0x88),
90c6fd2807SJeff Garzik 	MV_IRQ_COAL_CAUSE_HI		= (MV_IRQ_COAL_REG_BASE + 0x8c),
91c6fd2807SJeff Garzik 	MV_IRQ_COAL_THRESHOLD		= (MV_IRQ_COAL_REG_BASE + 0xcc),
92c6fd2807SJeff Garzik 	MV_IRQ_COAL_TIME_THRESHOLD	= (MV_IRQ_COAL_REG_BASE + 0xd0),
93c6fd2807SJeff Garzik 
94c6fd2807SJeff Garzik 	MV_SATAHC0_REG_BASE	= 0x20000,
958e7decdbSMark Lord 	MV_FLASH_CTL_OFS	= 0x1046c,
968e7decdbSMark Lord 	MV_GPIO_PORT_CTL_OFS	= 0x104f0,
978e7decdbSMark Lord 	MV_RESET_CFG_OFS	= 0x180d8,
98c6fd2807SJeff Garzik 
99c6fd2807SJeff Garzik 	MV_PCI_REG_SZ		= MV_MAJOR_REG_AREA_SZ,
100c6fd2807SJeff Garzik 	MV_SATAHC_REG_SZ	= MV_MAJOR_REG_AREA_SZ,
101c6fd2807SJeff Garzik 	MV_SATAHC_ARBTR_REG_SZ	= MV_MINOR_REG_AREA_SZ,		/* arbiter */
102c6fd2807SJeff Garzik 	MV_PORT_REG_SZ		= MV_MINOR_REG_AREA_SZ,
103c6fd2807SJeff Garzik 
104c6fd2807SJeff Garzik 	MV_MAX_Q_DEPTH		= 32,
105c6fd2807SJeff Garzik 	MV_MAX_Q_DEPTH_MASK	= MV_MAX_Q_DEPTH - 1,
106c6fd2807SJeff Garzik 
107c6fd2807SJeff Garzik 	/* CRQB needs alignment on a 1KB boundary. Size == 1KB
108c6fd2807SJeff Garzik 	 * CRPB needs alignment on a 256B boundary. Size == 256B
109c6fd2807SJeff Garzik 	 * ePRD (SG) entries need alignment on a 16B boundary. Size == 16B
110c6fd2807SJeff Garzik 	 */
111c6fd2807SJeff Garzik 	MV_CRQB_Q_SZ		= (32 * MV_MAX_Q_DEPTH),
112c6fd2807SJeff Garzik 	MV_CRPB_Q_SZ		= (8 * MV_MAX_Q_DEPTH),
113da2fa9baSMark Lord 	MV_MAX_SG_CT		= 256,
114c6fd2807SJeff Garzik 	MV_SG_TBL_SZ		= (16 * MV_MAX_SG_CT),
115c6fd2807SJeff Garzik 
116352fab70SMark Lord 	/* Determine hc from 0-7 port: hc = port >> MV_PORT_HC_SHIFT */
117c6fd2807SJeff Garzik 	MV_PORT_HC_SHIFT	= 2,
118352fab70SMark Lord 	MV_PORTS_PER_HC		= (1 << MV_PORT_HC_SHIFT), /* 4 */
119352fab70SMark Lord 	/* Determine hc port from 0-7 port: hardport = port & MV_PORT_MASK */
120352fab70SMark Lord 	MV_PORT_MASK		= (MV_PORTS_PER_HC - 1),   /* 3 */
121c6fd2807SJeff Garzik 
122c6fd2807SJeff Garzik 	/* Host Flags */
123c6fd2807SJeff Garzik 	MV_FLAG_DUAL_HC		= (1 << 30),  /* two SATA Host Controllers */
124c6fd2807SJeff Garzik 	MV_FLAG_IRQ_COALESCE	= (1 << 29),  /* IRQ coalescing capability */
1257bb3c529SSaeed Bishara 
126c5d3e45aSJeff Garzik 	MV_COMMON_FLAGS		= ATA_FLAG_SATA | ATA_FLAG_NO_LEGACY |
127bdd4dddeSJeff Garzik 				  ATA_FLAG_MMIO | ATA_FLAG_NO_ATAPI |
128bdd4dddeSJeff Garzik 				  ATA_FLAG_PIO_POLLING,
129ad3aef51SMark Lord 
130c6fd2807SJeff Garzik 	MV_6XXX_FLAGS		= MV_FLAG_IRQ_COALESCE,
131c6fd2807SJeff Garzik 
132ad3aef51SMark Lord 	MV_GENIIE_FLAGS		= MV_COMMON_FLAGS | MV_6XXX_FLAGS |
133ad3aef51SMark Lord 				  ATA_FLAG_PMP | ATA_FLAG_ACPI_SATA |
134c443c500SMark Lord 				  ATA_FLAG_NCQ | ATA_FLAG_AN,
135ad3aef51SMark Lord 
136c6fd2807SJeff Garzik 	CRQB_FLAG_READ		= (1 << 0),
137c6fd2807SJeff Garzik 	CRQB_TAG_SHIFT		= 1,
138c5d3e45aSJeff Garzik 	CRQB_IOID_SHIFT		= 6,	/* CRQB Gen-II/IIE IO Id shift */
139e12bef50SMark Lord 	CRQB_PMP_SHIFT		= 12,	/* CRQB Gen-II/IIE PMP shift */
140c5d3e45aSJeff Garzik 	CRQB_HOSTQ_SHIFT	= 17,	/* CRQB Gen-II/IIE HostQueTag shift */
141c6fd2807SJeff Garzik 	CRQB_CMD_ADDR_SHIFT	= 8,
142c6fd2807SJeff Garzik 	CRQB_CMD_CS		= (0x2 << 11),
143c6fd2807SJeff Garzik 	CRQB_CMD_LAST		= (1 << 15),
144c6fd2807SJeff Garzik 
145c6fd2807SJeff Garzik 	CRPB_FLAG_STATUS_SHIFT	= 8,
146c5d3e45aSJeff Garzik 	CRPB_IOID_SHIFT_6	= 5,	/* CRPB Gen-II IO Id shift */
147c5d3e45aSJeff Garzik 	CRPB_IOID_SHIFT_7	= 7,	/* CRPB Gen-IIE IO Id shift */
148c6fd2807SJeff Garzik 
149c6fd2807SJeff Garzik 	EPRD_FLAG_END_OF_TBL	= (1 << 31),
150c6fd2807SJeff Garzik 
151c6fd2807SJeff Garzik 	/* PCI interface registers */
152c6fd2807SJeff Garzik 
153c6fd2807SJeff Garzik 	PCI_COMMAND_OFS		= 0xc00,
1548e7decdbSMark Lord 	PCI_COMMAND_MRDTRIG	= (1 << 7),	/* PCI Master Read Trigger */
155c6fd2807SJeff Garzik 
156c6fd2807SJeff Garzik 	PCI_MAIN_CMD_STS_OFS	= 0xd30,
157c6fd2807SJeff Garzik 	STOP_PCI_MASTER		= (1 << 2),
158c6fd2807SJeff Garzik 	PCI_MASTER_EMPTY	= (1 << 3),
159c6fd2807SJeff Garzik 	GLOB_SFT_RST		= (1 << 4),
160c6fd2807SJeff Garzik 
1618e7decdbSMark Lord 	MV_PCI_MODE_OFS		= 0xd00,
1628e7decdbSMark Lord 	MV_PCI_MODE_MASK	= 0x30,
1638e7decdbSMark Lord 
164c6fd2807SJeff Garzik 	MV_PCI_EXP_ROM_BAR_CTL	= 0xd2c,
165c6fd2807SJeff Garzik 	MV_PCI_DISC_TIMER	= 0xd04,
166c6fd2807SJeff Garzik 	MV_PCI_MSI_TRIGGER	= 0xc38,
167c6fd2807SJeff Garzik 	MV_PCI_SERR_MASK	= 0xc28,
1688e7decdbSMark Lord 	MV_PCI_XBAR_TMOUT_OFS	= 0x1d04,
169c6fd2807SJeff Garzik 	MV_PCI_ERR_LOW_ADDRESS	= 0x1d40,
170c6fd2807SJeff Garzik 	MV_PCI_ERR_HIGH_ADDRESS	= 0x1d44,
171c6fd2807SJeff Garzik 	MV_PCI_ERR_ATTRIBUTE	= 0x1d48,
172c6fd2807SJeff Garzik 	MV_PCI_ERR_COMMAND	= 0x1d50,
173c6fd2807SJeff Garzik 
174c6fd2807SJeff Garzik 	PCI_IRQ_CAUSE_OFS	= 0x1d58,
175c6fd2807SJeff Garzik 	PCI_IRQ_MASK_OFS	= 0x1d5c,
176c6fd2807SJeff Garzik 	PCI_UNMASK_ALL_IRQS	= 0x7fffff,	/* bits 22-0 */
177c6fd2807SJeff Garzik 
17802a121daSMark Lord 	PCIE_IRQ_CAUSE_OFS	= 0x1900,
17902a121daSMark Lord 	PCIE_IRQ_MASK_OFS	= 0x1910,
180646a4da5SMark Lord 	PCIE_UNMASK_ALL_IRQS	= 0x40a,	/* assorted bits */
18102a121daSMark Lord 
1827368f919SMark Lord 	/* Host Controller Main Interrupt Cause/Mask registers (1 per-chip) */
1837368f919SMark Lord 	PCI_HC_MAIN_IRQ_CAUSE_OFS = 0x1d60,
1847368f919SMark Lord 	PCI_HC_MAIN_IRQ_MASK_OFS  = 0x1d64,
1857368f919SMark Lord 	SOC_HC_MAIN_IRQ_CAUSE_OFS = 0x20020,
1867368f919SMark Lord 	SOC_HC_MAIN_IRQ_MASK_OFS  = 0x20024,
187352fab70SMark Lord 	ERR_IRQ			= (1 << 0),	/* shift by port # */
188352fab70SMark Lord 	DONE_IRQ		= (1 << 1),	/* shift by port # */
189c6fd2807SJeff Garzik 	HC0_IRQ_PEND		= 0x1ff,	/* bits 0-8 = HC0's ports */
190c6fd2807SJeff Garzik 	HC_SHIFT		= 9,		/* bits 9-17 = HC1's ports */
191c6fd2807SJeff Garzik 	PCI_ERR			= (1 << 18),
192c6fd2807SJeff Garzik 	TRAN_LO_DONE		= (1 << 19),	/* 6xxx: IRQ coalescing */
193c6fd2807SJeff Garzik 	TRAN_HI_DONE		= (1 << 20),	/* 6xxx: IRQ coalescing */
194fb621e2fSJeff Garzik 	PORTS_0_3_COAL_DONE	= (1 << 8),
195fb621e2fSJeff Garzik 	PORTS_4_7_COAL_DONE	= (1 << 17),
196c6fd2807SJeff Garzik 	PORTS_0_7_COAL_DONE	= (1 << 21),	/* 6xxx: IRQ coalescing */
197c6fd2807SJeff Garzik 	GPIO_INT		= (1 << 22),
198c6fd2807SJeff Garzik 	SELF_INT		= (1 << 23),
199c6fd2807SJeff Garzik 	TWSI_INT		= (1 << 24),
200c6fd2807SJeff Garzik 	HC_MAIN_RSVD		= (0x7f << 25),	/* bits 31-25 */
201fb621e2fSJeff Garzik 	HC_MAIN_RSVD_5		= (0x1fff << 19), /* bits 31-19 */
202f351b2d6SSaeed Bishara 	HC_MAIN_RSVD_SOC	= (0x3fffffb << 6),     /* bits 31-9, 7-6 */
203c6fd2807SJeff Garzik 
204c6fd2807SJeff Garzik 	/* SATAHC registers */
205c6fd2807SJeff Garzik 	HC_CFG_OFS		= 0,
206c6fd2807SJeff Garzik 
207c6fd2807SJeff Garzik 	HC_IRQ_CAUSE_OFS	= 0x14,
208352fab70SMark Lord 	DMA_IRQ			= (1 << 0),	/* shift by port # */
209352fab70SMark Lord 	HC_COAL_IRQ		= (1 << 4),	/* IRQ coalescing */
210c6fd2807SJeff Garzik 	DEV_IRQ			= (1 << 8),	/* shift by port # */
211c6fd2807SJeff Garzik 
212c6fd2807SJeff Garzik 	/* Shadow block registers */
213c6fd2807SJeff Garzik 	SHD_BLK_OFS		= 0x100,
214c6fd2807SJeff Garzik 	SHD_CTL_AST_OFS		= 0x20,		/* ofs from SHD_BLK_OFS */
215c6fd2807SJeff Garzik 
216c6fd2807SJeff Garzik 	/* SATA registers */
217c6fd2807SJeff Garzik 	SATA_STATUS_OFS		= 0x300,  /* ctrl, err regs follow status */
218c6fd2807SJeff Garzik 	SATA_ACTIVE_OFS		= 0x350,
2190c58912eSMark Lord 	SATA_FIS_IRQ_CAUSE_OFS	= 0x364,
220c443c500SMark Lord 	SATA_FIS_IRQ_AN		= (1 << 9),	/* async notification */
22117c5aab5SMark Lord 
222e12bef50SMark Lord 	LTMODE_OFS		= 0x30c,
22317c5aab5SMark Lord 	LTMODE_BIT8		= (1 << 8),	/* unknown, but necessary */
22417c5aab5SMark Lord 
225c6fd2807SJeff Garzik 	PHY_MODE3		= 0x310,
226c6fd2807SJeff Garzik 	PHY_MODE4		= 0x314,
227ba069e37SMark Lord 	PHY_MODE4_CFG_MASK	= 0x00000003,	/* phy internal config field */
228ba069e37SMark Lord 	PHY_MODE4_CFG_VALUE	= 0x00000001,	/* phy internal config field */
229ba069e37SMark Lord 	PHY_MODE4_RSVD_ZEROS	= 0x5de3fffa,	/* Gen2e always write zeros */
230ba069e37SMark Lord 	PHY_MODE4_RSVD_ONES	= 0x00000005,	/* Gen2e always write ones */
231ba069e37SMark Lord 
232c6fd2807SJeff Garzik 	PHY_MODE2		= 0x330,
233e12bef50SMark Lord 	SATA_IFCTL_OFS		= 0x344,
2348e7decdbSMark Lord 	SATA_TESTCTL_OFS	= 0x348,
235e12bef50SMark Lord 	SATA_IFSTAT_OFS		= 0x34c,
236e12bef50SMark Lord 	VENDOR_UNIQUE_FIS_OFS	= 0x35c,
23717c5aab5SMark Lord 
2388e7decdbSMark Lord 	FISCFG_OFS		= 0x360,
2398e7decdbSMark Lord 	FISCFG_WAIT_DEV_ERR	= (1 << 8),	/* wait for host on DevErr */
2408e7decdbSMark Lord 	FISCFG_SINGLE_SYNC	= (1 << 16),	/* SYNC on DMA activation */
24117c5aab5SMark Lord 
242c6fd2807SJeff Garzik 	MV5_PHY_MODE		= 0x74,
2438e7decdbSMark Lord 	MV5_LTMODE_OFS		= 0x30,
2448e7decdbSMark Lord 	MV5_PHY_CTL_OFS		= 0x0C,
2458e7decdbSMark Lord 	SATA_INTERFACE_CFG_OFS	= 0x050,
246c6fd2807SJeff Garzik 
247c6fd2807SJeff Garzik 	MV_M2_PREAMP_MASK	= 0x7e0,
248c6fd2807SJeff Garzik 
249c6fd2807SJeff Garzik 	/* Port registers */
250c6fd2807SJeff Garzik 	EDMA_CFG_OFS		= 0,
2510c58912eSMark Lord 	EDMA_CFG_Q_DEPTH	= 0x1f,		/* max device queue depth */
2520c58912eSMark Lord 	EDMA_CFG_NCQ		= (1 << 5),	/* for R/W FPDMA queued */
253c6fd2807SJeff Garzik 	EDMA_CFG_NCQ_GO_ON_ERR	= (1 << 14),	/* continue on error */
254c6fd2807SJeff Garzik 	EDMA_CFG_RD_BRST_EXT	= (1 << 11),	/* read burst 512B */
255c6fd2807SJeff Garzik 	EDMA_CFG_WR_BUFF_LEN	= (1 << 13),	/* write buffer 512B */
256e12bef50SMark Lord 	EDMA_CFG_EDMA_FBS	= (1 << 16),	/* EDMA FIS-Based Switching */
257e12bef50SMark Lord 	EDMA_CFG_FBS		= (1 << 26),	/* FIS-Based Switching */
258c6fd2807SJeff Garzik 
259c6fd2807SJeff Garzik 	EDMA_ERR_IRQ_CAUSE_OFS	= 0x8,
260c6fd2807SJeff Garzik 	EDMA_ERR_IRQ_MASK_OFS	= 0xc,
2616c1153e0SJeff Garzik 	EDMA_ERR_D_PAR		= (1 << 0),	/* UDMA data parity err */
2626c1153e0SJeff Garzik 	EDMA_ERR_PRD_PAR	= (1 << 1),	/* UDMA PRD parity err */
2636c1153e0SJeff Garzik 	EDMA_ERR_DEV		= (1 << 2),	/* device error */
2646c1153e0SJeff Garzik 	EDMA_ERR_DEV_DCON	= (1 << 3),	/* device disconnect */
2656c1153e0SJeff Garzik 	EDMA_ERR_DEV_CON	= (1 << 4),	/* device connected */
2666c1153e0SJeff Garzik 	EDMA_ERR_SERR		= (1 << 5),	/* SError bits [WBDST] raised */
267c5d3e45aSJeff Garzik 	EDMA_ERR_SELF_DIS	= (1 << 7),	/* Gen II/IIE self-disable */
268c5d3e45aSJeff Garzik 	EDMA_ERR_SELF_DIS_5	= (1 << 8),	/* Gen I self-disable */
2696c1153e0SJeff Garzik 	EDMA_ERR_BIST_ASYNC	= (1 << 8),	/* BIST FIS or Async Notify */
270c5d3e45aSJeff Garzik 	EDMA_ERR_TRANS_IRQ_7	= (1 << 8),	/* Gen IIE transprt layer irq */
2716c1153e0SJeff Garzik 	EDMA_ERR_CRQB_PAR	= (1 << 9),	/* CRQB parity error */
2726c1153e0SJeff Garzik 	EDMA_ERR_CRPB_PAR	= (1 << 10),	/* CRPB parity error */
2736c1153e0SJeff Garzik 	EDMA_ERR_INTRL_PAR	= (1 << 11),	/* internal parity error */
2746c1153e0SJeff Garzik 	EDMA_ERR_IORDY		= (1 << 12),	/* IORdy timeout */
275646a4da5SMark Lord 
2766c1153e0SJeff Garzik 	EDMA_ERR_LNK_CTRL_RX	= (0xf << 13),	/* link ctrl rx error */
277646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_RX_0	= (1 << 13),	/* transient: CRC err */
278646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_RX_1	= (1 << 14),	/* transient: FIFO err */
279646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_RX_2	= (1 << 15),	/* fatal: caught SYNC */
280646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_RX_3	= (1 << 16),	/* transient: FIS rx err */
281646a4da5SMark Lord 
2826c1153e0SJeff Garzik 	EDMA_ERR_LNK_DATA_RX	= (0xf << 17),	/* link data rx error */
283646a4da5SMark Lord 
2846c1153e0SJeff Garzik 	EDMA_ERR_LNK_CTRL_TX	= (0x1f << 21),	/* link ctrl tx error */
285646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_TX_0	= (1 << 21),	/* transient: CRC err */
286646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_TX_1	= (1 << 22),	/* transient: FIFO err */
287646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_TX_2	= (1 << 23),	/* transient: caught SYNC */
288646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_TX_3	= (1 << 24),	/* transient: caught DMAT */
289646a4da5SMark Lord 	EDMA_ERR_LNK_CTRL_TX_4	= (1 << 25),	/* transient: FIS collision */
290646a4da5SMark Lord 
2916c1153e0SJeff Garzik 	EDMA_ERR_LNK_DATA_TX	= (0x1f << 26),	/* link data tx error */
292646a4da5SMark Lord 
2936c1153e0SJeff Garzik 	EDMA_ERR_TRANS_PROTO	= (1 << 31),	/* transport protocol error */
294c5d3e45aSJeff Garzik 	EDMA_ERR_OVERRUN_5	= (1 << 5),
295c5d3e45aSJeff Garzik 	EDMA_ERR_UNDERRUN_5	= (1 << 6),
296646a4da5SMark Lord 
297646a4da5SMark Lord 	EDMA_ERR_IRQ_TRANSIENT  = EDMA_ERR_LNK_CTRL_RX_0 |
298646a4da5SMark Lord 				  EDMA_ERR_LNK_CTRL_RX_1 |
299646a4da5SMark Lord 				  EDMA_ERR_LNK_CTRL_RX_3 |
30085afb934SMark Lord 				  EDMA_ERR_LNK_CTRL_TX,
301646a4da5SMark Lord 
302bdd4dddeSJeff Garzik 	EDMA_EH_FREEZE		= EDMA_ERR_D_PAR |
303bdd4dddeSJeff Garzik 				  EDMA_ERR_PRD_PAR |
304bdd4dddeSJeff Garzik 				  EDMA_ERR_DEV_DCON |
305bdd4dddeSJeff Garzik 				  EDMA_ERR_DEV_CON |
306bdd4dddeSJeff Garzik 				  EDMA_ERR_SERR |
307bdd4dddeSJeff Garzik 				  EDMA_ERR_SELF_DIS |
3086c1153e0SJeff Garzik 				  EDMA_ERR_CRQB_PAR |
309bdd4dddeSJeff Garzik 				  EDMA_ERR_CRPB_PAR |
310bdd4dddeSJeff Garzik 				  EDMA_ERR_INTRL_PAR |
311bdd4dddeSJeff Garzik 				  EDMA_ERR_IORDY |
312bdd4dddeSJeff Garzik 				  EDMA_ERR_LNK_CTRL_RX_2 |
313c6fd2807SJeff Garzik 				  EDMA_ERR_LNK_DATA_RX |
314c6fd2807SJeff Garzik 				  EDMA_ERR_LNK_DATA_TX |
315bdd4dddeSJeff Garzik 				  EDMA_ERR_TRANS_PROTO,
316e12bef50SMark Lord 
317bdd4dddeSJeff Garzik 	EDMA_EH_FREEZE_5	= EDMA_ERR_D_PAR |
318bdd4dddeSJeff Garzik 				  EDMA_ERR_PRD_PAR |
319bdd4dddeSJeff Garzik 				  EDMA_ERR_DEV_DCON |
320bdd4dddeSJeff Garzik 				  EDMA_ERR_DEV_CON |
321bdd4dddeSJeff Garzik 				  EDMA_ERR_OVERRUN_5 |
322bdd4dddeSJeff Garzik 				  EDMA_ERR_UNDERRUN_5 |
323bdd4dddeSJeff Garzik 				  EDMA_ERR_SELF_DIS_5 |
3246c1153e0SJeff Garzik 				  EDMA_ERR_CRQB_PAR |
325bdd4dddeSJeff Garzik 				  EDMA_ERR_CRPB_PAR |
326bdd4dddeSJeff Garzik 				  EDMA_ERR_INTRL_PAR |
327bdd4dddeSJeff Garzik 				  EDMA_ERR_IORDY,
328c6fd2807SJeff Garzik 
329c6fd2807SJeff Garzik 	EDMA_REQ_Q_BASE_HI_OFS	= 0x10,
330c6fd2807SJeff Garzik 	EDMA_REQ_Q_IN_PTR_OFS	= 0x14,		/* also contains BASE_LO */
331c6fd2807SJeff Garzik 
332c6fd2807SJeff Garzik 	EDMA_REQ_Q_OUT_PTR_OFS	= 0x18,
333c6fd2807SJeff Garzik 	EDMA_REQ_Q_PTR_SHIFT	= 5,
334c6fd2807SJeff Garzik 
335c6fd2807SJeff Garzik 	EDMA_RSP_Q_BASE_HI_OFS	= 0x1c,
336c6fd2807SJeff Garzik 	EDMA_RSP_Q_IN_PTR_OFS	= 0x20,
337c6fd2807SJeff Garzik 	EDMA_RSP_Q_OUT_PTR_OFS	= 0x24,		/* also contains BASE_LO */
338c6fd2807SJeff Garzik 	EDMA_RSP_Q_PTR_SHIFT	= 3,
339c6fd2807SJeff Garzik 
3400ea9e179SJeff Garzik 	EDMA_CMD_OFS		= 0x28,		/* EDMA command register */
3410ea9e179SJeff Garzik 	EDMA_EN			= (1 << 0),	/* enable EDMA */
3420ea9e179SJeff Garzik 	EDMA_DS			= (1 << 1),	/* disable EDMA; self-negated */
3438e7decdbSMark Lord 	EDMA_RESET		= (1 << 2),	/* reset eng/trans/link/phy */
344c6fd2807SJeff Garzik 
3458e7decdbSMark Lord 	EDMA_STATUS_OFS		= 0x30,		/* EDMA engine status */
3468e7decdbSMark Lord 	EDMA_STATUS_CACHE_EMPTY	= (1 << 6),	/* GenIIe command cache empty */
3478e7decdbSMark Lord 	EDMA_STATUS_IDLE	= (1 << 7),	/* GenIIe EDMA enabled/idle */
3488e7decdbSMark Lord 
3498e7decdbSMark Lord 	EDMA_IORDY_TMOUT_OFS	= 0x34,
3508e7decdbSMark Lord 	EDMA_ARB_CFG_OFS	= 0x38,
3518e7decdbSMark Lord 
3528e7decdbSMark Lord 	EDMA_HALTCOND_OFS	= 0x60,		/* GenIIe halt conditions */
353c6fd2807SJeff Garzik 
354352fab70SMark Lord 	GEN_II_NCQ_MAX_SECTORS	= 256,		/* max sects/io on Gen2 w/NCQ */
355352fab70SMark Lord 
356c6fd2807SJeff Garzik 	/* Host private flags (hp_flags) */
357c6fd2807SJeff Garzik 	MV_HP_FLAG_MSI		= (1 << 0),
358c6fd2807SJeff Garzik 	MV_HP_ERRATA_50XXB0	= (1 << 1),
359c6fd2807SJeff Garzik 	MV_HP_ERRATA_50XXB2	= (1 << 2),
360c6fd2807SJeff Garzik 	MV_HP_ERRATA_60X1B2	= (1 << 3),
361c6fd2807SJeff Garzik 	MV_HP_ERRATA_60X1C0	= (1 << 4),
3620ea9e179SJeff Garzik 	MV_HP_GEN_I		= (1 << 6),	/* Generation I: 50xx */
3630ea9e179SJeff Garzik 	MV_HP_GEN_II		= (1 << 7),	/* Generation II: 60xx */
3640ea9e179SJeff Garzik 	MV_HP_GEN_IIE		= (1 << 8),	/* Generation IIE: 6042/7042 */
36502a121daSMark Lord 	MV_HP_PCIE		= (1 << 9),	/* PCIe bus/regs: 7042 */
366616d4a98SMark Lord 	MV_HP_CUT_THROUGH	= (1 << 10),	/* can use EDMA cut-through */
3671f398472SMark Lord 	MV_HP_FLAG_SOC		= (1 << 11),	/* SystemOnChip, no PCI */
368c6fd2807SJeff Garzik 
369c6fd2807SJeff Garzik 	/* Port private flags (pp_flags) */
3700ea9e179SJeff Garzik 	MV_PP_FLAG_EDMA_EN	= (1 << 0),	/* is EDMA engine enabled? */
37172109168SMark Lord 	MV_PP_FLAG_NCQ_EN	= (1 << 1),	/* is EDMA set up for NCQ? */
37200f42eabSMark Lord 	MV_PP_FLAG_FBS_EN	= (1 << 2),	/* is EDMA set up for FBS? */
37329d187bbSMark Lord 	MV_PP_FLAG_DELAYED_EH	= (1 << 3),	/* delayed dev err handling */
374c6fd2807SJeff Garzik };
375c6fd2807SJeff Garzik 
376ee9ccdf7SJeff Garzik #define IS_GEN_I(hpriv) ((hpriv)->hp_flags & MV_HP_GEN_I)
377ee9ccdf7SJeff Garzik #define IS_GEN_II(hpriv) ((hpriv)->hp_flags & MV_HP_GEN_II)
378c6fd2807SJeff Garzik #define IS_GEN_IIE(hpriv) ((hpriv)->hp_flags & MV_HP_GEN_IIE)
3798e7decdbSMark Lord #define IS_PCIE(hpriv) ((hpriv)->hp_flags & MV_HP_PCIE)
3801f398472SMark Lord #define IS_SOC(hpriv) ((hpriv)->hp_flags & MV_HP_FLAG_SOC)
381c6fd2807SJeff Garzik 
38215a32632SLennert Buytenhek #define WINDOW_CTRL(i)		(0x20030 + ((i) << 4))
38315a32632SLennert Buytenhek #define WINDOW_BASE(i)		(0x20034 + ((i) << 4))
38415a32632SLennert Buytenhek 
385c6fd2807SJeff Garzik enum {
386baf14aa1SJeff Garzik 	/* DMA boundary 0xffff is required by the s/g splitting
387baf14aa1SJeff Garzik 	 * we need on /length/ in mv_fill-sg().
388baf14aa1SJeff Garzik 	 */
389baf14aa1SJeff Garzik 	MV_DMA_BOUNDARY		= 0xffffU,
390c6fd2807SJeff Garzik 
3910ea9e179SJeff Garzik 	/* mask of register bits containing lower 32 bits
3920ea9e179SJeff Garzik 	 * of EDMA request queue DMA address
3930ea9e179SJeff Garzik 	 */
394c6fd2807SJeff Garzik 	EDMA_REQ_Q_BASE_LO_MASK	= 0xfffffc00U,
395c6fd2807SJeff Garzik 
3960ea9e179SJeff Garzik 	/* ditto, for response queue */
397c6fd2807SJeff Garzik 	EDMA_RSP_Q_BASE_LO_MASK	= 0xffffff00U,
398c6fd2807SJeff Garzik };
399c6fd2807SJeff Garzik 
400c6fd2807SJeff Garzik enum chip_type {
401c6fd2807SJeff Garzik 	chip_504x,
402c6fd2807SJeff Garzik 	chip_508x,
403c6fd2807SJeff Garzik 	chip_5080,
404c6fd2807SJeff Garzik 	chip_604x,
405c6fd2807SJeff Garzik 	chip_608x,
406c6fd2807SJeff Garzik 	chip_6042,
407c6fd2807SJeff Garzik 	chip_7042,
408f351b2d6SSaeed Bishara 	chip_soc,
409c6fd2807SJeff Garzik };
410c6fd2807SJeff Garzik 
411c6fd2807SJeff Garzik /* Command ReQuest Block: 32B */
412c6fd2807SJeff Garzik struct mv_crqb {
413c6fd2807SJeff Garzik 	__le32			sg_addr;
414c6fd2807SJeff Garzik 	__le32			sg_addr_hi;
415c6fd2807SJeff Garzik 	__le16			ctrl_flags;
416c6fd2807SJeff Garzik 	__le16			ata_cmd[11];
417c6fd2807SJeff Garzik };
418c6fd2807SJeff Garzik 
419c6fd2807SJeff Garzik struct mv_crqb_iie {
420c6fd2807SJeff Garzik 	__le32			addr;
421c6fd2807SJeff Garzik 	__le32			addr_hi;
422c6fd2807SJeff Garzik 	__le32			flags;
423c6fd2807SJeff Garzik 	__le32			len;
424c6fd2807SJeff Garzik 	__le32			ata_cmd[4];
425c6fd2807SJeff Garzik };
426c6fd2807SJeff Garzik 
427c6fd2807SJeff Garzik /* Command ResPonse Block: 8B */
428c6fd2807SJeff Garzik struct mv_crpb {
429c6fd2807SJeff Garzik 	__le16			id;
430c6fd2807SJeff Garzik 	__le16			flags;
431c6fd2807SJeff Garzik 	__le32			tmstmp;
432c6fd2807SJeff Garzik };
433c6fd2807SJeff Garzik 
434c6fd2807SJeff Garzik /* EDMA Physical Region Descriptor (ePRD); A.K.A. SG */
435c6fd2807SJeff Garzik struct mv_sg {
436c6fd2807SJeff Garzik 	__le32			addr;
437c6fd2807SJeff Garzik 	__le32			flags_size;
438c6fd2807SJeff Garzik 	__le32			addr_hi;
439c6fd2807SJeff Garzik 	__le32			reserved;
440c6fd2807SJeff Garzik };
441c6fd2807SJeff Garzik 
442c6fd2807SJeff Garzik struct mv_port_priv {
443c6fd2807SJeff Garzik 	struct mv_crqb		*crqb;
444c6fd2807SJeff Garzik 	dma_addr_t		crqb_dma;
445c6fd2807SJeff Garzik 	struct mv_crpb		*crpb;
446c6fd2807SJeff Garzik 	dma_addr_t		crpb_dma;
447eb73d558SMark Lord 	struct mv_sg		*sg_tbl[MV_MAX_Q_DEPTH];
448eb73d558SMark Lord 	dma_addr_t		sg_tbl_dma[MV_MAX_Q_DEPTH];
449bdd4dddeSJeff Garzik 
450bdd4dddeSJeff Garzik 	unsigned int		req_idx;
451bdd4dddeSJeff Garzik 	unsigned int		resp_idx;
452bdd4dddeSJeff Garzik 
453c6fd2807SJeff Garzik 	u32			pp_flags;
45429d187bbSMark Lord 	unsigned int		delayed_eh_pmp_map;
455c6fd2807SJeff Garzik };
456c6fd2807SJeff Garzik 
457c6fd2807SJeff Garzik struct mv_port_signal {
458c6fd2807SJeff Garzik 	u32			amps;
459c6fd2807SJeff Garzik 	u32			pre;
460c6fd2807SJeff Garzik };
461c6fd2807SJeff Garzik 
46202a121daSMark Lord struct mv_host_priv {
46302a121daSMark Lord 	u32			hp_flags;
46496e2c487SMark Lord 	u32			main_irq_mask;
46502a121daSMark Lord 	struct mv_port_signal	signal[8];
46602a121daSMark Lord 	const struct mv_hw_ops	*ops;
467f351b2d6SSaeed Bishara 	int			n_ports;
468f351b2d6SSaeed Bishara 	void __iomem		*base;
4697368f919SMark Lord 	void __iomem		*main_irq_cause_addr;
4707368f919SMark Lord 	void __iomem		*main_irq_mask_addr;
47102a121daSMark Lord 	u32			irq_cause_ofs;
47202a121daSMark Lord 	u32			irq_mask_ofs;
47302a121daSMark Lord 	u32			unmask_all_irqs;
474da2fa9baSMark Lord 	/*
475da2fa9baSMark Lord 	 * These consistent DMA memory pools give us guaranteed
476da2fa9baSMark Lord 	 * alignment for hardware-accessed data structures,
477da2fa9baSMark Lord 	 * and less memory waste in accomplishing the alignment.
478da2fa9baSMark Lord 	 */
479da2fa9baSMark Lord 	struct dma_pool		*crqb_pool;
480da2fa9baSMark Lord 	struct dma_pool		*crpb_pool;
481da2fa9baSMark Lord 	struct dma_pool		*sg_tbl_pool;
48202a121daSMark Lord };
48302a121daSMark Lord 
484c6fd2807SJeff Garzik struct mv_hw_ops {
485c6fd2807SJeff Garzik 	void (*phy_errata)(struct mv_host_priv *hpriv, void __iomem *mmio,
486c6fd2807SJeff Garzik 			   unsigned int port);
487c6fd2807SJeff Garzik 	void (*enable_leds)(struct mv_host_priv *hpriv, void __iomem *mmio);
488c6fd2807SJeff Garzik 	void (*read_preamp)(struct mv_host_priv *hpriv, int idx,
489c6fd2807SJeff Garzik 			   void __iomem *mmio);
490c6fd2807SJeff Garzik 	int (*reset_hc)(struct mv_host_priv *hpriv, void __iomem *mmio,
491c6fd2807SJeff Garzik 			unsigned int n_hc);
492c6fd2807SJeff Garzik 	void (*reset_flash)(struct mv_host_priv *hpriv, void __iomem *mmio);
4937bb3c529SSaeed Bishara 	void (*reset_bus)(struct ata_host *host, void __iomem *mmio);
494c6fd2807SJeff Garzik };
495c6fd2807SJeff Garzik 
496da3dbb17STejun Heo static int mv_scr_read(struct ata_port *ap, unsigned int sc_reg_in, u32 *val);
497da3dbb17STejun Heo static int mv_scr_write(struct ata_port *ap, unsigned int sc_reg_in, u32 val);
498da3dbb17STejun Heo static int mv5_scr_read(struct ata_port *ap, unsigned int sc_reg_in, u32 *val);
499da3dbb17STejun Heo static int mv5_scr_write(struct ata_port *ap, unsigned int sc_reg_in, u32 val);
500c6fd2807SJeff Garzik static int mv_port_start(struct ata_port *ap);
501c6fd2807SJeff Garzik static void mv_port_stop(struct ata_port *ap);
5023e4a1391SMark Lord static int mv_qc_defer(struct ata_queued_cmd *qc);
503c6fd2807SJeff Garzik static void mv_qc_prep(struct ata_queued_cmd *qc);
504c6fd2807SJeff Garzik static void mv_qc_prep_iie(struct ata_queued_cmd *qc);
505c6fd2807SJeff Garzik static unsigned int mv_qc_issue(struct ata_queued_cmd *qc);
506a1efdabaSTejun Heo static int mv_hardreset(struct ata_link *link, unsigned int *class,
507a1efdabaSTejun Heo 			unsigned long deadline);
508bdd4dddeSJeff Garzik static void mv_eh_freeze(struct ata_port *ap);
509bdd4dddeSJeff Garzik static void mv_eh_thaw(struct ata_port *ap);
510f273827eSMark Lord static void mv6_dev_config(struct ata_device *dev);
511c6fd2807SJeff Garzik 
512c6fd2807SJeff Garzik static void mv5_phy_errata(struct mv_host_priv *hpriv, void __iomem *mmio,
513c6fd2807SJeff Garzik 			   unsigned int port);
514c6fd2807SJeff Garzik static void mv5_enable_leds(struct mv_host_priv *hpriv, void __iomem *mmio);
515c6fd2807SJeff Garzik static void mv5_read_preamp(struct mv_host_priv *hpriv, int idx,
516c6fd2807SJeff Garzik 			   void __iomem *mmio);
517c6fd2807SJeff Garzik static int mv5_reset_hc(struct mv_host_priv *hpriv, void __iomem *mmio,
518c6fd2807SJeff Garzik 			unsigned int n_hc);
519c6fd2807SJeff Garzik static void mv5_reset_flash(struct mv_host_priv *hpriv, void __iomem *mmio);
5207bb3c529SSaeed Bishara static void mv5_reset_bus(struct ata_host *host, void __iomem *mmio);
521c6fd2807SJeff Garzik 
522c6fd2807SJeff Garzik static void mv6_phy_errata(struct mv_host_priv *hpriv, void __iomem *mmio,
523c6fd2807SJeff Garzik 			   unsigned int port);
524c6fd2807SJeff Garzik static void mv6_enable_leds(struct mv_host_priv *hpriv, void __iomem *mmio);
525c6fd2807SJeff Garzik static void mv6_read_preamp(struct mv_host_priv *hpriv, int idx,
526c6fd2807SJeff Garzik 			   void __iomem *mmio);
527c6fd2807SJeff Garzik static int mv6_reset_hc(struct mv_host_priv *hpriv, void __iomem *mmio,
528c6fd2807SJeff Garzik 			unsigned int n_hc);
529c6fd2807SJeff Garzik static void mv6_reset_flash(struct mv_host_priv *hpriv, void __iomem *mmio);
530f351b2d6SSaeed Bishara static void mv_soc_enable_leds(struct mv_host_priv *hpriv,
531f351b2d6SSaeed Bishara 				      void __iomem *mmio);
532f351b2d6SSaeed Bishara static void mv_soc_read_preamp(struct mv_host_priv *hpriv, int idx,
533f351b2d6SSaeed Bishara 				      void __iomem *mmio);
534f351b2d6SSaeed Bishara static int mv_soc_reset_hc(struct mv_host_priv *hpriv,
535f351b2d6SSaeed Bishara 				  void __iomem *mmio, unsigned int n_hc);
536f351b2d6SSaeed Bishara static void mv_soc_reset_flash(struct mv_host_priv *hpriv,
537f351b2d6SSaeed Bishara 				      void __iomem *mmio);
538f351b2d6SSaeed Bishara static void mv_soc_reset_bus(struct ata_host *host, void __iomem *mmio);
5397bb3c529SSaeed Bishara static void mv_reset_pci_bus(struct ata_host *host, void __iomem *mmio);
540e12bef50SMark Lord static void mv_reset_channel(struct mv_host_priv *hpriv, void __iomem *mmio,
541c6fd2807SJeff Garzik 			     unsigned int port_no);
542e12bef50SMark Lord static int mv_stop_edma(struct ata_port *ap);
543b562468cSMark Lord static int mv_stop_edma_engine(void __iomem *port_mmio);
544e12bef50SMark Lord static void mv_edma_cfg(struct ata_port *ap, int want_ncq);
545c6fd2807SJeff Garzik 
546e49856d8SMark Lord static void mv_pmp_select(struct ata_port *ap, int pmp);
547e49856d8SMark Lord static int mv_pmp_hardreset(struct ata_link *link, unsigned int *class,
548e49856d8SMark Lord 				unsigned long deadline);
549e49856d8SMark Lord static int  mv_softreset(struct ata_link *link, unsigned int *class,
550e49856d8SMark Lord 				unsigned long deadline);
55129d187bbSMark Lord static void mv_pmp_error_handler(struct ata_port *ap);
5524c299ca3SMark Lord static void mv_process_crpb_entries(struct ata_port *ap,
5534c299ca3SMark Lord 					struct mv_port_priv *pp);
554c6fd2807SJeff Garzik 
555eb73d558SMark Lord /* .sg_tablesize is (MV_MAX_SG_CT / 2) in the structures below
556eb73d558SMark Lord  * because we have to allow room for worst case splitting of
557eb73d558SMark Lord  * PRDs for 64K boundaries in mv_fill_sg().
558eb73d558SMark Lord  */
559c5d3e45aSJeff Garzik static struct scsi_host_template mv5_sht = {
56068d1d07bSTejun Heo 	ATA_BASE_SHT(DRV_NAME),
561baf14aa1SJeff Garzik 	.sg_tablesize		= MV_MAX_SG_CT / 2,
562c5d3e45aSJeff Garzik 	.dma_boundary		= MV_DMA_BOUNDARY,
563c5d3e45aSJeff Garzik };
564c5d3e45aSJeff Garzik 
565c5d3e45aSJeff Garzik static struct scsi_host_template mv6_sht = {
56668d1d07bSTejun Heo 	ATA_NCQ_SHT(DRV_NAME),
567138bfdd0SMark Lord 	.can_queue		= MV_MAX_Q_DEPTH - 1,
568baf14aa1SJeff Garzik 	.sg_tablesize		= MV_MAX_SG_CT / 2,
569c6fd2807SJeff Garzik 	.dma_boundary		= MV_DMA_BOUNDARY,
570c6fd2807SJeff Garzik };
571c6fd2807SJeff Garzik 
572029cfd6bSTejun Heo static struct ata_port_operations mv5_ops = {
573029cfd6bSTejun Heo 	.inherits		= &ata_sff_port_ops,
574c6fd2807SJeff Garzik 
5753e4a1391SMark Lord 	.qc_defer		= mv_qc_defer,
576c6fd2807SJeff Garzik 	.qc_prep		= mv_qc_prep,
577c6fd2807SJeff Garzik 	.qc_issue		= mv_qc_issue,
578c6fd2807SJeff Garzik 
579bdd4dddeSJeff Garzik 	.freeze			= mv_eh_freeze,
580bdd4dddeSJeff Garzik 	.thaw			= mv_eh_thaw,
581a1efdabaSTejun Heo 	.hardreset		= mv_hardreset,
582a1efdabaSTejun Heo 	.error_handler		= ata_std_error_handler, /* avoid SFF EH */
583029cfd6bSTejun Heo 	.post_internal_cmd	= ATA_OP_NULL,
584bdd4dddeSJeff Garzik 
585c6fd2807SJeff Garzik 	.scr_read		= mv5_scr_read,
586c6fd2807SJeff Garzik 	.scr_write		= mv5_scr_write,
587c6fd2807SJeff Garzik 
588c6fd2807SJeff Garzik 	.port_start		= mv_port_start,
589c6fd2807SJeff Garzik 	.port_stop		= mv_port_stop,
590c6fd2807SJeff Garzik };
591c6fd2807SJeff Garzik 
592029cfd6bSTejun Heo static struct ata_port_operations mv6_ops = {
593029cfd6bSTejun Heo 	.inherits		= &mv5_ops,
594f273827eSMark Lord 	.dev_config             = mv6_dev_config,
595c6fd2807SJeff Garzik 	.scr_read		= mv_scr_read,
596c6fd2807SJeff Garzik 	.scr_write		= mv_scr_write,
597c6fd2807SJeff Garzik 
598e49856d8SMark Lord 	.pmp_hardreset		= mv_pmp_hardreset,
599e49856d8SMark Lord 	.pmp_softreset		= mv_softreset,
600e49856d8SMark Lord 	.softreset		= mv_softreset,
60129d187bbSMark Lord 	.error_handler		= mv_pmp_error_handler,
602c6fd2807SJeff Garzik };
603c6fd2807SJeff Garzik 
604029cfd6bSTejun Heo static struct ata_port_operations mv_iie_ops = {
605029cfd6bSTejun Heo 	.inherits		= &mv6_ops,
606029cfd6bSTejun Heo 	.dev_config		= ATA_OP_NULL,
607c6fd2807SJeff Garzik 	.qc_prep		= mv_qc_prep_iie,
608c6fd2807SJeff Garzik };
609c6fd2807SJeff Garzik 
610c6fd2807SJeff Garzik static const struct ata_port_info mv_port_info[] = {
611c6fd2807SJeff Garzik 	{  /* chip_504x */
612cca3974eSJeff Garzik 		.flags		= MV_COMMON_FLAGS,
613c6fd2807SJeff Garzik 		.pio_mask	= 0x1f,	/* pio0-4 */
614bf6263a8SJeff Garzik 		.udma_mask	= ATA_UDMA6,
615c6fd2807SJeff Garzik 		.port_ops	= &mv5_ops,
616c6fd2807SJeff Garzik 	},
617c6fd2807SJeff Garzik 	{  /* chip_508x */
618c5d3e45aSJeff Garzik 		.flags		= MV_COMMON_FLAGS | MV_FLAG_DUAL_HC,
619c6fd2807SJeff Garzik 		.pio_mask	= 0x1f,	/* pio0-4 */
620bf6263a8SJeff Garzik 		.udma_mask	= ATA_UDMA6,
621c6fd2807SJeff Garzik 		.port_ops	= &mv5_ops,
622c6fd2807SJeff Garzik 	},
623c6fd2807SJeff Garzik 	{  /* chip_5080 */
624c5d3e45aSJeff Garzik 		.flags		= MV_COMMON_FLAGS | MV_FLAG_DUAL_HC,
625c6fd2807SJeff Garzik 		.pio_mask	= 0x1f,	/* pio0-4 */
626bf6263a8SJeff Garzik 		.udma_mask	= ATA_UDMA6,
627c6fd2807SJeff Garzik 		.port_ops	= &mv5_ops,
628c6fd2807SJeff Garzik 	},
629c6fd2807SJeff Garzik 	{  /* chip_604x */
630138bfdd0SMark Lord 		.flags		= MV_COMMON_FLAGS | MV_6XXX_FLAGS |
631e49856d8SMark Lord 				  ATA_FLAG_PMP | ATA_FLAG_ACPI_SATA |
632138bfdd0SMark Lord 				  ATA_FLAG_NCQ,
633c6fd2807SJeff Garzik 		.pio_mask	= 0x1f,	/* pio0-4 */
634bf6263a8SJeff Garzik 		.udma_mask	= ATA_UDMA6,
635c6fd2807SJeff Garzik 		.port_ops	= &mv6_ops,
636c6fd2807SJeff Garzik 	},
637c6fd2807SJeff Garzik 	{  /* chip_608x */
638c5d3e45aSJeff Garzik 		.flags		= MV_COMMON_FLAGS | MV_6XXX_FLAGS |
639e49856d8SMark Lord 				  ATA_FLAG_PMP | ATA_FLAG_ACPI_SATA |
640138bfdd0SMark Lord 				  ATA_FLAG_NCQ | MV_FLAG_DUAL_HC,
641c6fd2807SJeff Garzik 		.pio_mask	= 0x1f,	/* pio0-4 */
642bf6263a8SJeff Garzik 		.udma_mask	= ATA_UDMA6,
643c6fd2807SJeff Garzik 		.port_ops	= &mv6_ops,
644c6fd2807SJeff Garzik 	},
645c6fd2807SJeff Garzik 	{  /* chip_6042 */
646ad3aef51SMark Lord 		.flags		= MV_GENIIE_FLAGS,
647c6fd2807SJeff Garzik 		.pio_mask	= 0x1f,	/* pio0-4 */
648bf6263a8SJeff Garzik 		.udma_mask	= ATA_UDMA6,
649c6fd2807SJeff Garzik 		.port_ops	= &mv_iie_ops,
650c6fd2807SJeff Garzik 	},
651c6fd2807SJeff Garzik 	{  /* chip_7042 */
652ad3aef51SMark Lord 		.flags		= MV_GENIIE_FLAGS,
653c6fd2807SJeff Garzik 		.pio_mask	= 0x1f,	/* pio0-4 */
654bf6263a8SJeff Garzik 		.udma_mask	= ATA_UDMA6,
655c6fd2807SJeff Garzik 		.port_ops	= &mv_iie_ops,
656c6fd2807SJeff Garzik 	},
657f351b2d6SSaeed Bishara 	{  /* chip_soc */
6581f398472SMark Lord 		.flags		= MV_GENIIE_FLAGS,
659f351b2d6SSaeed Bishara 		.pio_mask	= 0x1f,	/* pio0-4 */
660f351b2d6SSaeed Bishara 		.udma_mask	= ATA_UDMA6,
661f351b2d6SSaeed Bishara 		.port_ops	= &mv_iie_ops,
662f351b2d6SSaeed Bishara 	},
663c6fd2807SJeff Garzik };
664c6fd2807SJeff Garzik 
665c6fd2807SJeff Garzik static const struct pci_device_id mv_pci_tbl[] = {
6662d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x5040), chip_504x },
6672d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x5041), chip_504x },
6682d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x5080), chip_5080 },
6692d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x5081), chip_508x },
670*46c5784cSMark Lord 	/* RocketRAID 1720/174x have different identifiers */
671*46c5784cSMark Lord 	{ PCI_VDEVICE(TTI, 0x1720), chip_6042 },
672cfbf723eSAlan Cox 	{ PCI_VDEVICE(TTI, 0x1740), chip_508x },
673cfbf723eSAlan Cox 	{ PCI_VDEVICE(TTI, 0x1742), chip_508x },
674c6fd2807SJeff Garzik 
6752d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x6040), chip_604x },
6762d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x6041), chip_604x },
6772d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x6042), chip_6042 },
6782d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x6080), chip_608x },
6792d2744fcSJeff Garzik 	{ PCI_VDEVICE(MARVELL, 0x6081), chip_608x },
680c6fd2807SJeff Garzik 
6812d2744fcSJeff Garzik 	{ PCI_VDEVICE(ADAPTEC2, 0x0241), chip_604x },
6822d2744fcSJeff Garzik 
683d9f9c6bcSFlorian Attenberger 	/* Adaptec 1430SA */
684d9f9c6bcSFlorian Attenberger 	{ PCI_VDEVICE(ADAPTEC2, 0x0243), chip_7042 },
685d9f9c6bcSFlorian Attenberger 
68602a121daSMark Lord 	/* Marvell 7042 support */
6876a3d586dSMorrison, Tom 	{ PCI_VDEVICE(MARVELL, 0x7042), chip_7042 },
6886a3d586dSMorrison, Tom 
68902a121daSMark Lord 	/* Highpoint RocketRAID PCIe series */
69002a121daSMark Lord 	{ PCI_VDEVICE(TTI, 0x2300), chip_7042 },
69102a121daSMark Lord 	{ PCI_VDEVICE(TTI, 0x2310), chip_7042 },
69202a121daSMark Lord 
693c6fd2807SJeff Garzik 	{ }			/* terminate list */
694c6fd2807SJeff Garzik };
695c6fd2807SJeff Garzik 
696c6fd2807SJeff Garzik static const struct mv_hw_ops mv5xxx_ops = {
697c6fd2807SJeff Garzik 	.phy_errata		= mv5_phy_errata,
698c6fd2807SJeff Garzik 	.enable_leds		= mv5_enable_leds,
699c6fd2807SJeff Garzik 	.read_preamp		= mv5_read_preamp,
700c6fd2807SJeff Garzik 	.reset_hc		= mv5_reset_hc,
701c6fd2807SJeff Garzik 	.reset_flash		= mv5_reset_flash,
702c6fd2807SJeff Garzik 	.reset_bus		= mv5_reset_bus,
703c6fd2807SJeff Garzik };
704c6fd2807SJeff Garzik 
705c6fd2807SJeff Garzik static const struct mv_hw_ops mv6xxx_ops = {
706c6fd2807SJeff Garzik 	.phy_errata		= mv6_phy_errata,
707c6fd2807SJeff Garzik 	.enable_leds		= mv6_enable_leds,
708c6fd2807SJeff Garzik 	.read_preamp		= mv6_read_preamp,
709c6fd2807SJeff Garzik 	.reset_hc		= mv6_reset_hc,
710c6fd2807SJeff Garzik 	.reset_flash		= mv6_reset_flash,
711c6fd2807SJeff Garzik 	.reset_bus		= mv_reset_pci_bus,
712c6fd2807SJeff Garzik };
713c6fd2807SJeff Garzik 
714f351b2d6SSaeed Bishara static const struct mv_hw_ops mv_soc_ops = {
715f351b2d6SSaeed Bishara 	.phy_errata		= mv6_phy_errata,
716f351b2d6SSaeed Bishara 	.enable_leds		= mv_soc_enable_leds,
717f351b2d6SSaeed Bishara 	.read_preamp		= mv_soc_read_preamp,
718f351b2d6SSaeed Bishara 	.reset_hc		= mv_soc_reset_hc,
719f351b2d6SSaeed Bishara 	.reset_flash		= mv_soc_reset_flash,
720f351b2d6SSaeed Bishara 	.reset_bus		= mv_soc_reset_bus,
721f351b2d6SSaeed Bishara };
722f351b2d6SSaeed Bishara 
723c6fd2807SJeff Garzik /*
724c6fd2807SJeff Garzik  * Functions
725c6fd2807SJeff Garzik  */
726c6fd2807SJeff Garzik 
727c6fd2807SJeff Garzik static inline void writelfl(unsigned long data, void __iomem *addr)
728c6fd2807SJeff Garzik {
729c6fd2807SJeff Garzik 	writel(data, addr);
730c6fd2807SJeff Garzik 	(void) readl(addr);	/* flush to avoid PCI posted write */
731c6fd2807SJeff Garzik }
732c6fd2807SJeff Garzik 
733c6fd2807SJeff Garzik static inline unsigned int mv_hc_from_port(unsigned int port)
734c6fd2807SJeff Garzik {
735c6fd2807SJeff Garzik 	return port >> MV_PORT_HC_SHIFT;
736c6fd2807SJeff Garzik }
737c6fd2807SJeff Garzik 
738c6fd2807SJeff Garzik static inline unsigned int mv_hardport_from_port(unsigned int port)
739c6fd2807SJeff Garzik {
740c6fd2807SJeff Garzik 	return port & MV_PORT_MASK;
741c6fd2807SJeff Garzik }
742c6fd2807SJeff Garzik 
7431cfd19aeSMark Lord /*
7441cfd19aeSMark Lord  * Consolidate some rather tricky bit shift calculations.
7451cfd19aeSMark Lord  * This is hot-path stuff, so not a function.
7461cfd19aeSMark Lord  * Simple code, with two return values, so macro rather than inline.
7471cfd19aeSMark Lord  *
7481cfd19aeSMark Lord  * port is the sole input, in range 0..7.
7497368f919SMark Lord  * shift is one output, for use with main_irq_cause / main_irq_mask registers.
7507368f919SMark Lord  * hardport is the other output, in range 0..3.
7511cfd19aeSMark Lord  *
7521cfd19aeSMark Lord  * Note that port and hardport may be the same variable in some cases.
7531cfd19aeSMark Lord  */
7541cfd19aeSMark Lord #define MV_PORT_TO_SHIFT_AND_HARDPORT(port, shift, hardport)	\
7551cfd19aeSMark Lord {								\
7561cfd19aeSMark Lord 	shift    = mv_hc_from_port(port) * HC_SHIFT;		\
7571cfd19aeSMark Lord 	hardport = mv_hardport_from_port(port);			\
7581cfd19aeSMark Lord 	shift   += hardport * 2;				\
7591cfd19aeSMark Lord }
7601cfd19aeSMark Lord 
761352fab70SMark Lord static inline void __iomem *mv_hc_base(void __iomem *base, unsigned int hc)
762352fab70SMark Lord {
763352fab70SMark Lord 	return (base + MV_SATAHC0_REG_BASE + (hc * MV_SATAHC_REG_SZ));
764352fab70SMark Lord }
765352fab70SMark Lord 
766c6fd2807SJeff Garzik static inline void __iomem *mv_hc_base_from_port(void __iomem *base,
767c6fd2807SJeff Garzik 						 unsigned int port)
768c6fd2807SJeff Garzik {
769c6fd2807SJeff Garzik 	return mv_hc_base(base, mv_hc_from_port(port));
770c6fd2807SJeff Garzik }
771c6fd2807SJeff Garzik 
772c6fd2807SJeff Garzik static inline void __iomem *mv_port_base(void __iomem *base, unsigned int port)
773c6fd2807SJeff Garzik {
774c6fd2807SJeff Garzik 	return  mv_hc_base_from_port(base, port) +
775c6fd2807SJeff Garzik 		MV_SATAHC_ARBTR_REG_SZ +
776c6fd2807SJeff Garzik 		(mv_hardport_from_port(port) * MV_PORT_REG_SZ);
777c6fd2807SJeff Garzik }
778c6fd2807SJeff Garzik 
779e12bef50SMark Lord static void __iomem *mv5_phy_base(void __iomem *mmio, unsigned int port)
780e12bef50SMark Lord {
781e12bef50SMark Lord 	void __iomem *hc_mmio = mv_hc_base_from_port(mmio, port);
782e12bef50SMark Lord 	unsigned long ofs = (mv_hardport_from_port(port) + 1) * 0x100UL;
783e12bef50SMark Lord 
784e12bef50SMark Lord 	return hc_mmio + ofs;
785e12bef50SMark Lord }
786e12bef50SMark Lord 
787f351b2d6SSaeed Bishara static inline void __iomem *mv_host_base(struct ata_host *host)
788f351b2d6SSaeed Bishara {
789f351b2d6SSaeed Bishara 	struct mv_host_priv *hpriv = host->private_data;
790f351b2d6SSaeed Bishara 	return hpriv->base;
791f351b2d6SSaeed Bishara }
792f351b2d6SSaeed Bishara 
793c6fd2807SJeff Garzik static inline void __iomem *mv_ap_base(struct ata_port *ap)
794c6fd2807SJeff Garzik {
795f351b2d6SSaeed Bishara 	return mv_port_base(mv_host_base(ap->host), ap->port_no);
796c6fd2807SJeff Garzik }
797c6fd2807SJeff Garzik 
798cca3974eSJeff Garzik static inline int mv_get_hc_count(unsigned long port_flags)
799c6fd2807SJeff Garzik {
800cca3974eSJeff Garzik 	return ((port_flags & MV_FLAG_DUAL_HC) ? 2 : 1);
801c6fd2807SJeff Garzik }
802c6fd2807SJeff Garzik 
803c5d3e45aSJeff Garzik static void mv_set_edma_ptrs(void __iomem *port_mmio,
804c5d3e45aSJeff Garzik 			     struct mv_host_priv *hpriv,
805c5d3e45aSJeff Garzik 			     struct mv_port_priv *pp)
806c5d3e45aSJeff Garzik {
807bdd4dddeSJeff Garzik 	u32 index;
808bdd4dddeSJeff Garzik 
809c5d3e45aSJeff Garzik 	/*
810c5d3e45aSJeff Garzik 	 * initialize request queue
811c5d3e45aSJeff Garzik 	 */
812fcfb1f77SMark Lord 	pp->req_idx &= MV_MAX_Q_DEPTH_MASK;	/* paranoia */
813fcfb1f77SMark Lord 	index = pp->req_idx << EDMA_REQ_Q_PTR_SHIFT;
814bdd4dddeSJeff Garzik 
815c5d3e45aSJeff Garzik 	WARN_ON(pp->crqb_dma & 0x3ff);
816c5d3e45aSJeff Garzik 	writel((pp->crqb_dma >> 16) >> 16, port_mmio + EDMA_REQ_Q_BASE_HI_OFS);
817bdd4dddeSJeff Garzik 	writelfl((pp->crqb_dma & EDMA_REQ_Q_BASE_LO_MASK) | index,
818c5d3e45aSJeff Garzik 		 port_mmio + EDMA_REQ_Q_IN_PTR_OFS);
819bdd4dddeSJeff Garzik 	writelfl(index, port_mmio + EDMA_REQ_Q_OUT_PTR_OFS);
820c5d3e45aSJeff Garzik 
821c5d3e45aSJeff Garzik 	/*
822c5d3e45aSJeff Garzik 	 * initialize response queue
823c5d3e45aSJeff Garzik 	 */
824fcfb1f77SMark Lord 	pp->resp_idx &= MV_MAX_Q_DEPTH_MASK;	/* paranoia */
825fcfb1f77SMark Lord 	index = pp->resp_idx << EDMA_RSP_Q_PTR_SHIFT;
826bdd4dddeSJeff Garzik 
827c5d3e45aSJeff Garzik 	WARN_ON(pp->crpb_dma & 0xff);
828c5d3e45aSJeff Garzik 	writel((pp->crpb_dma >> 16) >> 16, port_mmio + EDMA_RSP_Q_BASE_HI_OFS);
829bdd4dddeSJeff Garzik 	writelfl(index, port_mmio + EDMA_RSP_Q_IN_PTR_OFS);
830bdd4dddeSJeff Garzik 	writelfl((pp->crpb_dma & EDMA_RSP_Q_BASE_LO_MASK) | index,
831c5d3e45aSJeff Garzik 		 port_mmio + EDMA_RSP_Q_OUT_PTR_OFS);
832c5d3e45aSJeff Garzik }
833c5d3e45aSJeff Garzik 
834c4de573bSMark Lord static void mv_set_main_irq_mask(struct ata_host *host,
835c4de573bSMark Lord 				 u32 disable_bits, u32 enable_bits)
836c4de573bSMark Lord {
837c4de573bSMark Lord 	struct mv_host_priv *hpriv = host->private_data;
838c4de573bSMark Lord 	u32 old_mask, new_mask;
839c4de573bSMark Lord 
84096e2c487SMark Lord 	old_mask = hpriv->main_irq_mask;
841c4de573bSMark Lord 	new_mask = (old_mask & ~disable_bits) | enable_bits;
84296e2c487SMark Lord 	if (new_mask != old_mask) {
84396e2c487SMark Lord 		hpriv->main_irq_mask = new_mask;
844c4de573bSMark Lord 		writelfl(new_mask, hpriv->main_irq_mask_addr);
845c4de573bSMark Lord 	}
84696e2c487SMark Lord }
847c4de573bSMark Lord 
848c4de573bSMark Lord static void mv_enable_port_irqs(struct ata_port *ap,
849c4de573bSMark Lord 				     unsigned int port_bits)
850c4de573bSMark Lord {
851c4de573bSMark Lord 	unsigned int shift, hardport, port = ap->port_no;
852c4de573bSMark Lord 	u32 disable_bits, enable_bits;
853c4de573bSMark Lord 
854c4de573bSMark Lord 	MV_PORT_TO_SHIFT_AND_HARDPORT(port, shift, hardport);
855c4de573bSMark Lord 
856c4de573bSMark Lord 	disable_bits = (DONE_IRQ | ERR_IRQ) << shift;
857c4de573bSMark Lord 	enable_bits  = port_bits << shift;
858c4de573bSMark Lord 	mv_set_main_irq_mask(ap->host, disable_bits, enable_bits);
859c4de573bSMark Lord }
860c4de573bSMark Lord 
861c6fd2807SJeff Garzik /**
862c6fd2807SJeff Garzik  *      mv_start_dma - Enable eDMA engine
863c6fd2807SJeff Garzik  *      @base: port base address
864c6fd2807SJeff Garzik  *      @pp: port private data
865c6fd2807SJeff Garzik  *
866c6fd2807SJeff Garzik  *      Verify the local cache of the eDMA state is accurate with a
867c6fd2807SJeff Garzik  *      WARN_ON.
868c6fd2807SJeff Garzik  *
869c6fd2807SJeff Garzik  *      LOCKING:
870c6fd2807SJeff Garzik  *      Inherited from caller.
871c6fd2807SJeff Garzik  */
8720c58912eSMark Lord static void mv_start_dma(struct ata_port *ap, void __iomem *port_mmio,
87372109168SMark Lord 			 struct mv_port_priv *pp, u8 protocol)
874c6fd2807SJeff Garzik {
87572109168SMark Lord 	int want_ncq = (protocol == ATA_PROT_NCQ);
87672109168SMark Lord 
87772109168SMark Lord 	if (pp->pp_flags & MV_PP_FLAG_EDMA_EN) {
87872109168SMark Lord 		int using_ncq = ((pp->pp_flags & MV_PP_FLAG_NCQ_EN) != 0);
87972109168SMark Lord 		if (want_ncq != using_ncq)
880b562468cSMark Lord 			mv_stop_edma(ap);
88172109168SMark Lord 	}
882c5d3e45aSJeff Garzik 	if (!(pp->pp_flags & MV_PP_FLAG_EDMA_EN)) {
8830c58912eSMark Lord 		struct mv_host_priv *hpriv = ap->host->private_data;
884352fab70SMark Lord 		int hardport = mv_hardport_from_port(ap->port_no);
8850c58912eSMark Lord 		void __iomem *hc_mmio = mv_hc_base_from_port(
886352fab70SMark Lord 					mv_host_base(ap->host), hardport);
8870c58912eSMark Lord 		u32 hc_irq_cause, ipending;
8880c58912eSMark Lord 
889bdd4dddeSJeff Garzik 		/* clear EDMA event indicators, if any */
890f630d562SMark Lord 		writelfl(0, port_mmio + EDMA_ERR_IRQ_CAUSE_OFS);
891bdd4dddeSJeff Garzik 
8920c58912eSMark Lord 		/* clear EDMA interrupt indicator, if any */
8930c58912eSMark Lord 		hc_irq_cause = readl(hc_mmio + HC_IRQ_CAUSE_OFS);
894352fab70SMark Lord 		ipending = (DEV_IRQ | DMA_IRQ) << hardport;
8950c58912eSMark Lord 		if (hc_irq_cause & ipending) {
8960c58912eSMark Lord 			writelfl(hc_irq_cause & ~ipending,
8970c58912eSMark Lord 				 hc_mmio + HC_IRQ_CAUSE_OFS);
8980c58912eSMark Lord 		}
8990c58912eSMark Lord 
900e12bef50SMark Lord 		mv_edma_cfg(ap, want_ncq);
9010c58912eSMark Lord 
9020c58912eSMark Lord 		/* clear FIS IRQ Cause */
903e4006077SMark Lord 		if (IS_GEN_IIE(hpriv))
9040c58912eSMark Lord 			writelfl(0, port_mmio + SATA_FIS_IRQ_CAUSE_OFS);
9050c58912eSMark Lord 
906f630d562SMark Lord 		mv_set_edma_ptrs(port_mmio, hpriv, pp);
90788e675e1SMark Lord 		mv_enable_port_irqs(ap, DONE_IRQ|ERR_IRQ);
908bdd4dddeSJeff Garzik 
909f630d562SMark Lord 		writelfl(EDMA_EN, port_mmio + EDMA_CMD_OFS);
910c6fd2807SJeff Garzik 		pp->pp_flags |= MV_PP_FLAG_EDMA_EN;
911c6fd2807SJeff Garzik 	}
912c6fd2807SJeff Garzik }
913c6fd2807SJeff Garzik 
9149b2c4e0bSMark Lord static void mv_wait_for_edma_empty_idle(struct ata_port *ap)
9159b2c4e0bSMark Lord {
9169b2c4e0bSMark Lord 	void __iomem *port_mmio = mv_ap_base(ap);
9179b2c4e0bSMark Lord 	const u32 empty_idle = (EDMA_STATUS_CACHE_EMPTY | EDMA_STATUS_IDLE);
9189b2c4e0bSMark Lord 	const int per_loop = 5, timeout = (15 * 1000 / per_loop);
9199b2c4e0bSMark Lord 	int i;
9209b2c4e0bSMark Lord 
9219b2c4e0bSMark Lord 	/*
9229b2c4e0bSMark Lord 	 * Wait for the EDMA engine to finish transactions in progress.
923c46938ccSMark Lord 	 * No idea what a good "timeout" value might be, but measurements
924c46938ccSMark Lord 	 * indicate that it often requires hundreds of microseconds
925c46938ccSMark Lord 	 * with two drives in-use.  So we use the 15msec value above
926c46938ccSMark Lord 	 * as a rough guess at what even more drives might require.
9279b2c4e0bSMark Lord 	 */
9289b2c4e0bSMark Lord 	for (i = 0; i < timeout; ++i) {
9299b2c4e0bSMark Lord 		u32 edma_stat = readl(port_mmio + EDMA_STATUS_OFS);
9309b2c4e0bSMark Lord 		if ((edma_stat & empty_idle) == empty_idle)
9319b2c4e0bSMark Lord 			break;
9329b2c4e0bSMark Lord 		udelay(per_loop);
9339b2c4e0bSMark Lord 	}
9349b2c4e0bSMark Lord 	/* ata_port_printk(ap, KERN_INFO, "%s: %u+ usecs\n", __func__, i); */
9359b2c4e0bSMark Lord }
9369b2c4e0bSMark Lord 
937c6fd2807SJeff Garzik /**
938e12bef50SMark Lord  *      mv_stop_edma_engine - Disable eDMA engine
939b562468cSMark Lord  *      @port_mmio: io base address
940c6fd2807SJeff Garzik  *
941c6fd2807SJeff Garzik  *      LOCKING:
942c6fd2807SJeff Garzik  *      Inherited from caller.
943c6fd2807SJeff Garzik  */
944b562468cSMark Lord static int mv_stop_edma_engine(void __iomem *port_mmio)
945c6fd2807SJeff Garzik {
946b562468cSMark Lord 	int i;
947c6fd2807SJeff Garzik 
948b562468cSMark Lord 	/* Disable eDMA.  The disable bit auto clears. */
949c6fd2807SJeff Garzik 	writelfl(EDMA_DS, port_mmio + EDMA_CMD_OFS);
950c6fd2807SJeff Garzik 
951b562468cSMark Lord 	/* Wait for the chip to confirm eDMA is off. */
952b562468cSMark Lord 	for (i = 10000; i > 0; i--) {
953b562468cSMark Lord 		u32 reg = readl(port_mmio + EDMA_CMD_OFS);
9544537deb5SJeff Garzik 		if (!(reg & EDMA_EN))
955b562468cSMark Lord 			return 0;
956b562468cSMark Lord 		udelay(10);
957c6fd2807SJeff Garzik 	}
958b562468cSMark Lord 	return -EIO;
959c6fd2807SJeff Garzik }
960c6fd2807SJeff Garzik 
961e12bef50SMark Lord static int mv_stop_edma(struct ata_port *ap)
962c6fd2807SJeff Garzik {
963c6fd2807SJeff Garzik 	void __iomem *port_mmio = mv_ap_base(ap);
964c6fd2807SJeff Garzik 	struct mv_port_priv *pp = ap->private_data;
965c6fd2807SJeff Garzik 
966b562468cSMark Lord 	if (!(pp->pp_flags & MV_PP_FLAG_EDMA_EN))
967b562468cSMark Lord 		return 0;
968c6fd2807SJeff Garzik 	pp->pp_flags &= ~MV_PP_FLAG_EDMA_EN;
9699b2c4e0bSMark Lord 	mv_wait_for_edma_empty_idle(ap);
970b562468cSMark Lord 	if (mv_stop_edma_engine(port_mmio)) {
971c6fd2807SJeff Garzik 		ata_port_printk(ap, KERN_ERR, "Unable to stop eDMA\n");
972b562468cSMark Lord 		return -EIO;
973c6fd2807SJeff Garzik 	}
974b562468cSMark Lord 	return 0;
9750ea9e179SJeff Garzik }
9760ea9e179SJeff Garzik 
977c6fd2807SJeff Garzik #ifdef ATA_DEBUG
978c6fd2807SJeff Garzik static void mv_dump_mem(void __iomem *start, unsigned bytes)
979c6fd2807SJeff Garzik {
980c6fd2807SJeff Garzik 	int b, w;
981c6fd2807SJeff Garzik 	for (b = 0; b < bytes; ) {
982c6fd2807SJeff Garzik 		DPRINTK("%p: ", start + b);
983c6fd2807SJeff Garzik 		for (w = 0; b < bytes && w < 4; w++) {
984c6fd2807SJeff Garzik 			printk("%08x ", readl(start + b));
985c6fd2807SJeff Garzik 			b += sizeof(u32);
986c6fd2807SJeff Garzik 		}
987c6fd2807SJeff Garzik 		printk("\n");
988c6fd2807SJeff Garzik 	}
989c6fd2807SJeff Garzik }
990c6fd2807SJeff Garzik #endif
991c6fd2807SJeff Garzik 
992c6fd2807SJeff Garzik static void mv_dump_pci_cfg(struct pci_dev *pdev, unsigned bytes)
993c6fd2807SJeff Garzik {
994c6fd2807SJeff Garzik #ifdef ATA_DEBUG
995c6fd2807SJeff Garzik 	int b, w;
996c6fd2807SJeff Garzik 	u32 dw;
997c6fd2807SJeff Garzik 	for (b = 0; b < bytes; ) {
998c6fd2807SJeff Garzik 		DPRINTK("%02x: ", b);
999c6fd2807SJeff Garzik 		for (w = 0; b < bytes && w < 4; w++) {
1000c6fd2807SJeff Garzik 			(void) pci_read_config_dword(pdev, b, &dw);
1001c6fd2807SJeff Garzik 			printk("%08x ", dw);
1002c6fd2807SJeff Garzik 			b += sizeof(u32);
1003c6fd2807SJeff Garzik 		}
1004c6fd2807SJeff Garzik 		printk("\n");
1005c6fd2807SJeff Garzik 	}
1006c6fd2807SJeff Garzik #endif
1007c6fd2807SJeff Garzik }
1008c6fd2807SJeff Garzik static void mv_dump_all_regs(void __iomem *mmio_base, int port,
1009c6fd2807SJeff Garzik 			     struct pci_dev *pdev)
1010c6fd2807SJeff Garzik {
1011c6fd2807SJeff Garzik #ifdef ATA_DEBUG
1012c6fd2807SJeff Garzik 	void __iomem *hc_base = mv_hc_base(mmio_base,
1013c6fd2807SJeff Garzik 					   port >> MV_PORT_HC_SHIFT);
1014c6fd2807SJeff Garzik 	void __iomem *port_base;
1015c6fd2807SJeff Garzik 	int start_port, num_ports, p, start_hc, num_hcs, hc;
1016c6fd2807SJeff Garzik 
1017c6fd2807SJeff Garzik 	if (0 > port) {
1018c6fd2807SJeff Garzik 		start_hc = start_port = 0;
1019c6fd2807SJeff Garzik 		num_ports = 8;		/* shld be benign for 4 port devs */
1020c6fd2807SJeff Garzik 		num_hcs = 2;
1021c6fd2807SJeff Garzik 	} else {
1022c6fd2807SJeff Garzik 		start_hc = port >> MV_PORT_HC_SHIFT;
1023c6fd2807SJeff Garzik 		start_port = port;
1024c6fd2807SJeff Garzik 		num_ports = num_hcs = 1;
1025c6fd2807SJeff Garzik 	}
1026c6fd2807SJeff Garzik 	DPRINTK("All registers for port(s) %u-%u:\n", start_port,
1027c6fd2807SJeff Garzik 		num_ports > 1 ? num_ports - 1 : start_port);
1028c6fd2807SJeff Garzik 
1029c6fd2807SJeff Garzik 	if (NULL != pdev) {
1030c6fd2807SJeff Garzik 		DPRINTK("PCI config space regs:\n");
1031c6fd2807SJeff Garzik 		mv_dump_pci_cfg(pdev, 0x68);
1032c6fd2807SJeff Garzik 	}
1033c6fd2807SJeff Garzik 	DPRINTK("PCI regs:\n");
1034c6fd2807SJeff Garzik 	mv_dump_mem(mmio_base+0xc00, 0x3c);
1035c6fd2807SJeff Garzik 	mv_dump_mem(mmio_base+0xd00, 0x34);
1036c6fd2807SJeff Garzik 	mv_dump_mem(mmio_base+0xf00, 0x4);
1037c6fd2807SJeff Garzik 	mv_dump_mem(mmio_base+0x1d00, 0x6c);
1038c6fd2807SJeff Garzik 	for (hc = start_hc; hc < start_hc + num_hcs; hc++) {
1039c6fd2807SJeff Garzik 		hc_base = mv_hc_base(mmio_base, hc);
1040c6fd2807SJeff Garzik 		DPRINTK("HC regs (HC %i):\n", hc);
1041c6fd2807SJeff Garzik 		mv_dump_mem(hc_base, 0x1c);
1042c6fd2807SJeff Garzik 	}
1043c6fd2807SJeff Garzik 	for (p = start_port; p < start_port + num_ports; p++) {
1044c6fd2807SJeff Garzik 		port_base = mv_port_base(mmio_base, p);
1045c6fd2807SJeff Garzik 		DPRINTK("EDMA regs (port %i):\n", p);
1046c6fd2807SJeff Garzik 		mv_dump_mem(port_base, 0x54);
1047c6fd2807SJeff Garzik 		DPRINTK("SATA regs (port %i):\n", p);
1048c6fd2807SJeff Garzik 		mv_dump_mem(port_base+0x300, 0x60);
1049c6fd2807SJeff Garzik 	}
1050c6fd2807SJeff Garzik #endif
1051c6fd2807SJeff Garzik }
1052c6fd2807SJeff Garzik 
1053c6fd2807SJeff Garzik static unsigned int mv_scr_offset(unsigned int sc_reg_in)
1054c6fd2807SJeff Garzik {
1055c6fd2807SJeff Garzik 	unsigned int ofs;
1056c6fd2807SJeff Garzik 
1057c6fd2807SJeff Garzik 	switch (sc_reg_in) {
1058c6fd2807SJeff Garzik 	case SCR_STATUS:
1059c6fd2807SJeff Garzik 	case SCR_CONTROL:
1060c6fd2807SJeff Garzik 	case SCR_ERROR:
1061c6fd2807SJeff Garzik 		ofs = SATA_STATUS_OFS + (sc_reg_in * sizeof(u32));
1062c6fd2807SJeff Garzik 		break;
1063c6fd2807SJeff Garzik 	case SCR_ACTIVE:
1064c6fd2807SJeff Garzik 		ofs = SATA_ACTIVE_OFS;   /* active is not with the others */
1065c6fd2807SJeff Garzik 		break;
1066c6fd2807SJeff Garzik 	default:
1067c6fd2807SJeff Garzik 		ofs = 0xffffffffU;
1068c6fd2807SJeff Garzik 		break;
1069c6fd2807SJeff Garzik 	}
1070c6fd2807SJeff Garzik 	return ofs;
1071c6fd2807SJeff Garzik }
1072c6fd2807SJeff Garzik 
1073da3dbb17STejun Heo static int mv_scr_read(struct ata_port *ap, unsigned int sc_reg_in, u32 *val)
1074c6fd2807SJeff Garzik {
1075c6fd2807SJeff Garzik 	unsigned int ofs = mv_scr_offset(sc_reg_in);
1076c6fd2807SJeff Garzik 
1077da3dbb17STejun Heo 	if (ofs != 0xffffffffU) {
1078da3dbb17STejun Heo 		*val = readl(mv_ap_base(ap) + ofs);
1079da3dbb17STejun Heo 		return 0;
1080da3dbb17STejun Heo 	} else
1081da3dbb17STejun Heo 		return -EINVAL;
1082c6fd2807SJeff Garzik }
1083c6fd2807SJeff Garzik 
1084da3dbb17STejun Heo static int mv_scr_write(struct ata_port *ap, unsigned int sc_reg_in, u32 val)
1085c6fd2807SJeff Garzik {
1086c6fd2807SJeff Garzik 	unsigned int ofs = mv_scr_offset(sc_reg_in);
1087c6fd2807SJeff Garzik 
1088da3dbb17STejun Heo 	if (ofs != 0xffffffffU) {
1089c6fd2807SJeff Garzik 		writelfl(val, mv_ap_base(ap) + ofs);
1090da3dbb17STejun Heo 		return 0;
1091da3dbb17STejun Heo 	} else
1092da3dbb17STejun Heo 		return -EINVAL;
1093c6fd2807SJeff Garzik }
1094c6fd2807SJeff Garzik 
1095f273827eSMark Lord static void mv6_dev_config(struct ata_device *adev)
1096f273827eSMark Lord {
1097f273827eSMark Lord 	/*
1098e49856d8SMark Lord 	 * Deal with Gen-II ("mv6") hardware quirks/restrictions:
1099e49856d8SMark Lord 	 *
1100e49856d8SMark Lord 	 * Gen-II does not support NCQ over a port multiplier
1101e49856d8SMark Lord 	 *  (no FIS-based switching).
1102e49856d8SMark Lord 	 *
1103f273827eSMark Lord 	 * We don't have hob_nsect when doing NCQ commands on Gen-II.
1104f273827eSMark Lord 	 * See mv_qc_prep() for more info.
1105f273827eSMark Lord 	 */
1106e49856d8SMark Lord 	if (adev->flags & ATA_DFLAG_NCQ) {
1107352fab70SMark Lord 		if (sata_pmp_attached(adev->link->ap)) {
1108e49856d8SMark Lord 			adev->flags &= ~ATA_DFLAG_NCQ;
1109352fab70SMark Lord 			ata_dev_printk(adev, KERN_INFO,
1110352fab70SMark Lord 				"NCQ disabled for command-based switching\n");
1111352fab70SMark Lord 		} else if (adev->max_sectors > GEN_II_NCQ_MAX_SECTORS) {
1112352fab70SMark Lord 			adev->max_sectors = GEN_II_NCQ_MAX_SECTORS;
1113352fab70SMark Lord 			ata_dev_printk(adev, KERN_INFO,
1114352fab70SMark Lord 				"max_sectors limited to %u for NCQ\n",
1115352fab70SMark Lord 				adev->max_sectors);
1116352fab70SMark Lord 		}
1117f273827eSMark Lord 	}
1118e49856d8SMark Lord }
1119f273827eSMark Lord 
11203e4a1391SMark Lord static int mv_qc_defer(struct ata_queued_cmd *qc)
11213e4a1391SMark Lord {
11223e4a1391SMark Lord 	struct ata_link *link = qc->dev->link;
11233e4a1391SMark Lord 	struct ata_port *ap = link->ap;
11243e4a1391SMark Lord 	struct mv_port_priv *pp = ap->private_data;
11253e4a1391SMark Lord 
11263e4a1391SMark Lord 	/*
112729d187bbSMark Lord 	 * Don't allow new commands if we're in a delayed EH state
112829d187bbSMark Lord 	 * for NCQ and/or FIS-based switching.
112929d187bbSMark Lord 	 */
113029d187bbSMark Lord 	if (pp->pp_flags & MV_PP_FLAG_DELAYED_EH)
113129d187bbSMark Lord 		return ATA_DEFER_PORT;
113229d187bbSMark Lord 	/*
11333e4a1391SMark Lord 	 * If the port is completely idle, then allow the new qc.
11343e4a1391SMark Lord 	 */
11353e4a1391SMark Lord 	if (ap->nr_active_links == 0)
11363e4a1391SMark Lord 		return 0;
11373e4a1391SMark Lord 
11383e4a1391SMark Lord 	/*
11394bdee6c5STejun Heo 	 * The port is operating in host queuing mode (EDMA) with NCQ
11404bdee6c5STejun Heo 	 * enabled, allow multiple NCQ commands.  EDMA also allows
11414bdee6c5STejun Heo 	 * queueing multiple DMA commands but libata core currently
11424bdee6c5STejun Heo 	 * doesn't allow it.
11433e4a1391SMark Lord 	 */
11444bdee6c5STejun Heo 	if ((pp->pp_flags & MV_PP_FLAG_EDMA_EN) &&
11454bdee6c5STejun Heo 	    (pp->pp_flags & MV_PP_FLAG_NCQ_EN) && ata_is_ncq(qc->tf.protocol))
11463e4a1391SMark Lord 		return 0;
11474bdee6c5STejun Heo 
11483e4a1391SMark Lord 	return ATA_DEFER_PORT;
11493e4a1391SMark Lord }
11503e4a1391SMark Lord 
115100f42eabSMark Lord static void mv_config_fbs(void __iomem *port_mmio, int want_ncq, int want_fbs)
1152e49856d8SMark Lord {
115300f42eabSMark Lord 	u32 new_fiscfg, old_fiscfg;
115400f42eabSMark Lord 	u32 new_ltmode, old_ltmode;
115500f42eabSMark Lord 	u32 new_haltcond, old_haltcond;
115600f42eabSMark Lord 
11578e7decdbSMark Lord 	old_fiscfg   = readl(port_mmio + FISCFG_OFS);
1158e49856d8SMark Lord 	old_ltmode   = readl(port_mmio + LTMODE_OFS);
115900f42eabSMark Lord 	old_haltcond = readl(port_mmio + EDMA_HALTCOND_OFS);
116000f42eabSMark Lord 
116100f42eabSMark Lord 	new_fiscfg   = old_fiscfg & ~(FISCFG_SINGLE_SYNC | FISCFG_WAIT_DEV_ERR);
116200f42eabSMark Lord 	new_ltmode   = old_ltmode & ~LTMODE_BIT8;
116300f42eabSMark Lord 	new_haltcond = old_haltcond | EDMA_ERR_DEV;
116400f42eabSMark Lord 
116500f42eabSMark Lord 	if (want_fbs) {
11668e7decdbSMark Lord 		new_fiscfg = old_fiscfg | FISCFG_SINGLE_SYNC;
1167e49856d8SMark Lord 		new_ltmode = old_ltmode | LTMODE_BIT8;
11684c299ca3SMark Lord 		if (want_ncq)
11694c299ca3SMark Lord 			new_haltcond &= ~EDMA_ERR_DEV;
11704c299ca3SMark Lord 		else
11714c299ca3SMark Lord 			new_fiscfg |=  FISCFG_WAIT_DEV_ERR;
1172e49856d8SMark Lord 	}
117300f42eabSMark Lord 
11748e7decdbSMark Lord 	if (new_fiscfg != old_fiscfg)
11758e7decdbSMark Lord 		writelfl(new_fiscfg, port_mmio + FISCFG_OFS);
1176e49856d8SMark Lord 	if (new_ltmode != old_ltmode)
1177e49856d8SMark Lord 		writelfl(new_ltmode, port_mmio + LTMODE_OFS);
117800f42eabSMark Lord 	if (new_haltcond != old_haltcond)
117900f42eabSMark Lord 		writelfl(new_haltcond, port_mmio + EDMA_HALTCOND_OFS);
1180e49856d8SMark Lord }
1181c6fd2807SJeff Garzik 
1182dd2890f6SMark Lord static void mv_60x1_errata_sata25(struct ata_port *ap, int want_ncq)
1183dd2890f6SMark Lord {
1184dd2890f6SMark Lord 	struct mv_host_priv *hpriv = ap->host->private_data;
1185dd2890f6SMark Lord 	u32 old, new;
1186dd2890f6SMark Lord 
1187dd2890f6SMark Lord 	/* workaround for 88SX60x1 FEr SATA#25 (part 1) */
1188dd2890f6SMark Lord 	old = readl(hpriv->base + MV_GPIO_PORT_CTL_OFS);
1189dd2890f6SMark Lord 	if (want_ncq)
1190dd2890f6SMark Lord 		new = old | (1 << 22);
1191dd2890f6SMark Lord 	else
1192dd2890f6SMark Lord 		new = old & ~(1 << 22);
1193dd2890f6SMark Lord 	if (new != old)
1194dd2890f6SMark Lord 		writel(new, hpriv->base + MV_GPIO_PORT_CTL_OFS);
1195dd2890f6SMark Lord }
1196dd2890f6SMark Lord 
1197e12bef50SMark Lord static void mv_edma_cfg(struct ata_port *ap, int want_ncq)
1198c6fd2807SJeff Garzik {
1199c6fd2807SJeff Garzik 	u32 cfg;
1200e12bef50SMark Lord 	struct mv_port_priv *pp    = ap->private_data;
1201e12bef50SMark Lord 	struct mv_host_priv *hpriv = ap->host->private_data;
1202e12bef50SMark Lord 	void __iomem *port_mmio    = mv_ap_base(ap);
1203c6fd2807SJeff Garzik 
1204c6fd2807SJeff Garzik 	/* set up non-NCQ EDMA configuration */
1205c6fd2807SJeff Garzik 	cfg = EDMA_CFG_Q_DEPTH;		/* always 0x1f for *all* chips */
120600f42eabSMark Lord 	pp->pp_flags &= ~MV_PP_FLAG_FBS_EN;
1207c6fd2807SJeff Garzik 
1208c6fd2807SJeff Garzik 	if (IS_GEN_I(hpriv))
1209c6fd2807SJeff Garzik 		cfg |= (1 << 8);	/* enab config burst size mask */
1210c6fd2807SJeff Garzik 
1211dd2890f6SMark Lord 	else if (IS_GEN_II(hpriv)) {
1212c6fd2807SJeff Garzik 		cfg |= EDMA_CFG_RD_BRST_EXT | EDMA_CFG_WR_BUFF_LEN;
1213dd2890f6SMark Lord 		mv_60x1_errata_sata25(ap, want_ncq);
1214c6fd2807SJeff Garzik 
1215dd2890f6SMark Lord 	} else if (IS_GEN_IIE(hpriv)) {
121600f42eabSMark Lord 		int want_fbs = sata_pmp_attached(ap);
121700f42eabSMark Lord 		/*
121800f42eabSMark Lord 		 * Possible future enhancement:
121900f42eabSMark Lord 		 *
122000f42eabSMark Lord 		 * The chip can use FBS with non-NCQ, if we allow it,
122100f42eabSMark Lord 		 * But first we need to have the error handling in place
122200f42eabSMark Lord 		 * for this mode (datasheet section 7.3.15.4.2.3).
122300f42eabSMark Lord 		 * So disallow non-NCQ FBS for now.
122400f42eabSMark Lord 		 */
122500f42eabSMark Lord 		want_fbs &= want_ncq;
122600f42eabSMark Lord 
122700f42eabSMark Lord 		mv_config_fbs(port_mmio, want_ncq, want_fbs);
122800f42eabSMark Lord 
122900f42eabSMark Lord 		if (want_fbs) {
123000f42eabSMark Lord 			pp->pp_flags |= MV_PP_FLAG_FBS_EN;
123100f42eabSMark Lord 			cfg |= EDMA_CFG_EDMA_FBS; /* FIS-based switching */
123200f42eabSMark Lord 		}
123300f42eabSMark Lord 
1234e728eabeSJeff Garzik 		cfg |= (1 << 23);	/* do not mask PM field in rx'd FIS */
1235e728eabeSJeff Garzik 		cfg |= (1 << 22);	/* enab 4-entry host queue cache */
12361f398472SMark Lord 		if (!IS_SOC(hpriv))
1237c6fd2807SJeff Garzik 			cfg |= (1 << 18);	/* enab early completion */
1238616d4a98SMark Lord 		if (hpriv->hp_flags & MV_HP_CUT_THROUGH)
1239616d4a98SMark Lord 			cfg |= (1 << 17); /* enab cut-thru (dis stor&forwrd) */
1240c6fd2807SJeff Garzik 	}
1241c6fd2807SJeff Garzik 
124272109168SMark Lord 	if (want_ncq) {
124372109168SMark Lord 		cfg |= EDMA_CFG_NCQ;
124472109168SMark Lord 		pp->pp_flags |=  MV_PP_FLAG_NCQ_EN;
124572109168SMark Lord 	} else
124672109168SMark Lord 		pp->pp_flags &= ~MV_PP_FLAG_NCQ_EN;
124772109168SMark Lord 
1248c6fd2807SJeff Garzik 	writelfl(cfg, port_mmio + EDMA_CFG_OFS);
1249c6fd2807SJeff Garzik }
1250c6fd2807SJeff Garzik 
1251da2fa9baSMark Lord static void mv_port_free_dma_mem(struct ata_port *ap)
1252da2fa9baSMark Lord {
1253da2fa9baSMark Lord 	struct mv_host_priv *hpriv = ap->host->private_data;
1254da2fa9baSMark Lord 	struct mv_port_priv *pp = ap->private_data;
1255eb73d558SMark Lord 	int tag;
1256da2fa9baSMark Lord 
1257da2fa9baSMark Lord 	if (pp->crqb) {
1258da2fa9baSMark Lord 		dma_pool_free(hpriv->crqb_pool, pp->crqb, pp->crqb_dma);
1259da2fa9baSMark Lord 		pp->crqb = NULL;
1260da2fa9baSMark Lord 	}
1261da2fa9baSMark Lord 	if (pp->crpb) {
1262da2fa9baSMark Lord 		dma_pool_free(hpriv->crpb_pool, pp->crpb, pp->crpb_dma);
1263da2fa9baSMark Lord 		pp->crpb = NULL;
1264da2fa9baSMark Lord 	}
1265eb73d558SMark Lord 	/*
1266eb73d558SMark Lord 	 * For GEN_I, there's no NCQ, so we have only a single sg_tbl.
1267eb73d558SMark Lord 	 * For later hardware, we have one unique sg_tbl per NCQ tag.
1268eb73d558SMark Lord 	 */
1269eb73d558SMark Lord 	for (tag = 0; tag < MV_MAX_Q_DEPTH; ++tag) {
1270eb73d558SMark Lord 		if (pp->sg_tbl[tag]) {
1271eb73d558SMark Lord 			if (tag == 0 || !IS_GEN_I(hpriv))
1272eb73d558SMark Lord 				dma_pool_free(hpriv->sg_tbl_pool,
1273eb73d558SMark Lord 					      pp->sg_tbl[tag],
1274eb73d558SMark Lord 					      pp->sg_tbl_dma[tag]);
1275eb73d558SMark Lord 			pp->sg_tbl[tag] = NULL;
1276eb73d558SMark Lord 		}
1277da2fa9baSMark Lord 	}
1278da2fa9baSMark Lord }
1279da2fa9baSMark Lord 
1280c6fd2807SJeff Garzik /**
1281c6fd2807SJeff Garzik  *      mv_port_start - Port specific init/start routine.
1282c6fd2807SJeff Garzik  *      @ap: ATA channel to manipulate
1283c6fd2807SJeff Garzik  *
1284c6fd2807SJeff Garzik  *      Allocate and point to DMA memory, init port private memory,
1285c6fd2807SJeff Garzik  *      zero indices.
1286c6fd2807SJeff Garzik  *
1287c6fd2807SJeff Garzik  *      LOCKING:
1288c6fd2807SJeff Garzik  *      Inherited from caller.
1289c6fd2807SJeff Garzik  */
1290c6fd2807SJeff Garzik static int mv_port_start(struct ata_port *ap)
1291c6fd2807SJeff Garzik {
1292cca3974eSJeff Garzik 	struct device *dev = ap->host->dev;
1293cca3974eSJeff Garzik 	struct mv_host_priv *hpriv = ap->host->private_data;
1294c6fd2807SJeff Garzik 	struct mv_port_priv *pp;
1295dde20207SJames Bottomley 	int tag;
1296c6fd2807SJeff Garzik 
129724dc5f33STejun Heo 	pp = devm_kzalloc(dev, sizeof(*pp), GFP_KERNEL);
1298c6fd2807SJeff Garzik 	if (!pp)
129924dc5f33STejun Heo 		return -ENOMEM;
1300da2fa9baSMark Lord 	ap->private_data = pp;
1301c6fd2807SJeff Garzik 
1302da2fa9baSMark Lord 	pp->crqb = dma_pool_alloc(hpriv->crqb_pool, GFP_KERNEL, &pp->crqb_dma);
1303da2fa9baSMark Lord 	if (!pp->crqb)
1304da2fa9baSMark Lord 		return -ENOMEM;
1305da2fa9baSMark Lord 	memset(pp->crqb, 0, MV_CRQB_Q_SZ);
1306c6fd2807SJeff Garzik 
1307da2fa9baSMark Lord 	pp->crpb = dma_pool_alloc(hpriv->crpb_pool, GFP_KERNEL, &pp->crpb_dma);
1308da2fa9baSMark Lord 	if (!pp->crpb)
1309da2fa9baSMark Lord 		goto out_port_free_dma_mem;
1310da2fa9baSMark Lord 	memset(pp->crpb, 0, MV_CRPB_Q_SZ);
1311c6fd2807SJeff Garzik 
13123bd0a70eSMark Lord 	/* 6041/6081 Rev. "C0" (and newer) are okay with async notify */
13133bd0a70eSMark Lord 	if (hpriv->hp_flags & MV_HP_ERRATA_60X1C0)
13143bd0a70eSMark Lord 		ap->flags |= ATA_FLAG_AN;
1315eb73d558SMark Lord 	/*
1316eb73d558SMark Lord 	 * For GEN_I, there's no NCQ, so we only allocate a single sg_tbl.
1317eb73d558SMark Lord 	 * For later hardware, we need one unique sg_tbl per NCQ tag.
1318eb73d558SMark Lord 	 */
1319eb73d558SMark Lord 	for (tag = 0; tag < MV_MAX_Q_DEPTH; ++tag) {
1320eb73d558SMark Lord 		if (tag == 0 || !IS_GEN_I(hpriv)) {
1321eb73d558SMark Lord 			pp->sg_tbl[tag] = dma_pool_alloc(hpriv->sg_tbl_pool,
1322eb73d558SMark Lord 					      GFP_KERNEL, &pp->sg_tbl_dma[tag]);
1323eb73d558SMark Lord 			if (!pp->sg_tbl[tag])
1324da2fa9baSMark Lord 				goto out_port_free_dma_mem;
1325eb73d558SMark Lord 		} else {
1326eb73d558SMark Lord 			pp->sg_tbl[tag]     = pp->sg_tbl[0];
1327eb73d558SMark Lord 			pp->sg_tbl_dma[tag] = pp->sg_tbl_dma[0];
1328eb73d558SMark Lord 		}
1329eb73d558SMark Lord 	}
1330c6fd2807SJeff Garzik 	return 0;
1331da2fa9baSMark Lord 
1332da2fa9baSMark Lord out_port_free_dma_mem:
1333da2fa9baSMark Lord 	mv_port_free_dma_mem(ap);
1334da2fa9baSMark Lord 	return -ENOMEM;
1335c6fd2807SJeff Garzik }
1336c6fd2807SJeff Garzik 
1337c6fd2807SJeff Garzik /**
1338c6fd2807SJeff Garzik  *      mv_port_stop - Port specific cleanup/stop routine.
1339c6fd2807SJeff Garzik  *      @ap: ATA channel to manipulate
1340c6fd2807SJeff Garzik  *
1341c6fd2807SJeff Garzik  *      Stop DMA, cleanup port memory.
1342c6fd2807SJeff Garzik  *
1343c6fd2807SJeff Garzik  *      LOCKING:
1344cca3974eSJeff Garzik  *      This routine uses the host lock to protect the DMA stop.
1345c6fd2807SJeff Garzik  */
1346c6fd2807SJeff Garzik static void mv_port_stop(struct ata_port *ap)
1347c6fd2807SJeff Garzik {
1348e12bef50SMark Lord 	mv_stop_edma(ap);
134988e675e1SMark Lord 	mv_enable_port_irqs(ap, 0);
1350da2fa9baSMark Lord 	mv_port_free_dma_mem(ap);
1351c6fd2807SJeff Garzik }
1352c6fd2807SJeff Garzik 
1353c6fd2807SJeff Garzik /**
1354c6fd2807SJeff Garzik  *      mv_fill_sg - Fill out the Marvell ePRD (scatter gather) entries
1355c6fd2807SJeff Garzik  *      @qc: queued command whose SG list to source from
1356c6fd2807SJeff Garzik  *
1357c6fd2807SJeff Garzik  *      Populate the SG list and mark the last entry.
1358c6fd2807SJeff Garzik  *
1359c6fd2807SJeff Garzik  *      LOCKING:
1360c6fd2807SJeff Garzik  *      Inherited from caller.
1361c6fd2807SJeff Garzik  */
13626c08772eSJeff Garzik static void mv_fill_sg(struct ata_queued_cmd *qc)
1363c6fd2807SJeff Garzik {
1364c6fd2807SJeff Garzik 	struct mv_port_priv *pp = qc->ap->private_data;
1365c6fd2807SJeff Garzik 	struct scatterlist *sg;
13663be6cbd7SJeff Garzik 	struct mv_sg *mv_sg, *last_sg = NULL;
1367ff2aeb1eSTejun Heo 	unsigned int si;
1368c6fd2807SJeff Garzik 
1369eb73d558SMark Lord 	mv_sg = pp->sg_tbl[qc->tag];
1370ff2aeb1eSTejun Heo 	for_each_sg(qc->sg, sg, qc->n_elem, si) {
1371d88184fbSJeff Garzik 		dma_addr_t addr = sg_dma_address(sg);
1372d88184fbSJeff Garzik 		u32 sg_len = sg_dma_len(sg);
1373c6fd2807SJeff Garzik 
13744007b493SOlof Johansson 		while (sg_len) {
13754007b493SOlof Johansson 			u32 offset = addr & 0xffff;
13764007b493SOlof Johansson 			u32 len = sg_len;
13774007b493SOlof Johansson 
13784007b493SOlof Johansson 			if ((offset + sg_len > 0x10000))
13794007b493SOlof Johansson 				len = 0x10000 - offset;
13804007b493SOlof Johansson 
1381d88184fbSJeff Garzik 			mv_sg->addr = cpu_to_le32(addr & 0xffffffff);
1382d88184fbSJeff Garzik 			mv_sg->addr_hi = cpu_to_le32((addr >> 16) >> 16);
13836c08772eSJeff Garzik 			mv_sg->flags_size = cpu_to_le32(len & 0xffff);
1384c6fd2807SJeff Garzik 
13854007b493SOlof Johansson 			sg_len -= len;
13864007b493SOlof Johansson 			addr += len;
13874007b493SOlof Johansson 
13883be6cbd7SJeff Garzik 			last_sg = mv_sg;
1389d88184fbSJeff Garzik 			mv_sg++;
1390c6fd2807SJeff Garzik 		}
13914007b493SOlof Johansson 	}
13923be6cbd7SJeff Garzik 
13933be6cbd7SJeff Garzik 	if (likely(last_sg))
13943be6cbd7SJeff Garzik 		last_sg->flags_size |= cpu_to_le32(EPRD_FLAG_END_OF_TBL);
1395c6fd2807SJeff Garzik }
1396c6fd2807SJeff Garzik 
13975796d1c4SJeff Garzik static void mv_crqb_pack_cmd(__le16 *cmdw, u8 data, u8 addr, unsigned last)
1398c6fd2807SJeff Garzik {
1399c6fd2807SJeff Garzik 	u16 tmp = data | (addr << CRQB_CMD_ADDR_SHIFT) | CRQB_CMD_CS |
1400c6fd2807SJeff Garzik 		(last ? CRQB_CMD_LAST : 0);
1401c6fd2807SJeff Garzik 	*cmdw = cpu_to_le16(tmp);
1402c6fd2807SJeff Garzik }
1403c6fd2807SJeff Garzik 
1404c6fd2807SJeff Garzik /**
1405c6fd2807SJeff Garzik  *      mv_qc_prep - Host specific command preparation.
1406c6fd2807SJeff Garzik  *      @qc: queued command to prepare
1407c6fd2807SJeff Garzik  *
1408c6fd2807SJeff Garzik  *      This routine simply redirects to the general purpose routine
1409c6fd2807SJeff Garzik  *      if command is not DMA.  Else, it handles prep of the CRQB
1410c6fd2807SJeff Garzik  *      (command request block), does some sanity checking, and calls
1411c6fd2807SJeff Garzik  *      the SG load routine.
1412c6fd2807SJeff Garzik  *
1413c6fd2807SJeff Garzik  *      LOCKING:
1414c6fd2807SJeff Garzik  *      Inherited from caller.
1415c6fd2807SJeff Garzik  */
1416c6fd2807SJeff Garzik static void mv_qc_prep(struct ata_queued_cmd *qc)
1417c6fd2807SJeff Garzik {
1418c6fd2807SJeff Garzik 	struct ata_port *ap = qc->ap;
1419c6fd2807SJeff Garzik 	struct mv_port_priv *pp = ap->private_data;
1420c6fd2807SJeff Garzik 	__le16 *cw;
1421c6fd2807SJeff Garzik 	struct ata_taskfile *tf;
1422c6fd2807SJeff Garzik 	u16 flags = 0;
1423c6fd2807SJeff Garzik 	unsigned in_index;
1424c6fd2807SJeff Garzik 
1425138bfdd0SMark Lord 	if ((qc->tf.protocol != ATA_PROT_DMA) &&
1426138bfdd0SMark Lord 	    (qc->tf.protocol != ATA_PROT_NCQ))
1427c6fd2807SJeff Garzik 		return;
1428c6fd2807SJeff Garzik 
1429c6fd2807SJeff Garzik 	/* Fill in command request block
1430c6fd2807SJeff Garzik 	 */
1431c6fd2807SJeff Garzik 	if (!(qc->tf.flags & ATA_TFLAG_WRITE))
1432c6fd2807SJeff Garzik 		flags |= CRQB_FLAG_READ;
1433c6fd2807SJeff Garzik 	WARN_ON(MV_MAX_Q_DEPTH <= qc->tag);
1434c6fd2807SJeff Garzik 	flags |= qc->tag << CRQB_TAG_SHIFT;
1435e49856d8SMark Lord 	flags |= (qc->dev->link->pmp & 0xf) << CRQB_PMP_SHIFT;
1436c6fd2807SJeff Garzik 
1437bdd4dddeSJeff Garzik 	/* get current queue index from software */
1438fcfb1f77SMark Lord 	in_index = pp->req_idx;
1439c6fd2807SJeff Garzik 
1440c6fd2807SJeff Garzik 	pp->crqb[in_index].sg_addr =
1441eb73d558SMark Lord 		cpu_to_le32(pp->sg_tbl_dma[qc->tag] & 0xffffffff);
1442c6fd2807SJeff Garzik 	pp->crqb[in_index].sg_addr_hi =
1443eb73d558SMark Lord 		cpu_to_le32((pp->sg_tbl_dma[qc->tag] >> 16) >> 16);
1444c6fd2807SJeff Garzik 	pp->crqb[in_index].ctrl_flags = cpu_to_le16(flags);
1445c6fd2807SJeff Garzik 
1446c6fd2807SJeff Garzik 	cw = &pp->crqb[in_index].ata_cmd[0];
1447c6fd2807SJeff Garzik 	tf = &qc->tf;
1448c6fd2807SJeff Garzik 
1449c6fd2807SJeff Garzik 	/* Sadly, the CRQB cannot accomodate all registers--there are
1450c6fd2807SJeff Garzik 	 * only 11 bytes...so we must pick and choose required
1451c6fd2807SJeff Garzik 	 * registers based on the command.  So, we drop feature and
1452c6fd2807SJeff Garzik 	 * hob_feature for [RW] DMA commands, but they are needed for
1453c6fd2807SJeff Garzik 	 * NCQ.  NCQ will drop hob_nsect.
1454c6fd2807SJeff Garzik 	 */
1455c6fd2807SJeff Garzik 	switch (tf->command) {
1456c6fd2807SJeff Garzik 	case ATA_CMD_READ:
1457c6fd2807SJeff Garzik 	case ATA_CMD_READ_EXT:
1458c6fd2807SJeff Garzik 	case ATA_CMD_WRITE:
1459c6fd2807SJeff Garzik 	case ATA_CMD_WRITE_EXT:
1460c6fd2807SJeff Garzik 	case ATA_CMD_WRITE_FUA_EXT:
1461c6fd2807SJeff Garzik 		mv_crqb_pack_cmd(cw++, tf->hob_nsect, ATA_REG_NSECT, 0);
1462c6fd2807SJeff Garzik 		break;
1463c6fd2807SJeff Garzik 	case ATA_CMD_FPDMA_READ:
1464c6fd2807SJeff Garzik 	case ATA_CMD_FPDMA_WRITE:
1465c6fd2807SJeff Garzik 		mv_crqb_pack_cmd(cw++, tf->hob_feature, ATA_REG_FEATURE, 0);
1466c6fd2807SJeff Garzik 		mv_crqb_pack_cmd(cw++, tf->feature, ATA_REG_FEATURE, 0);
1467c6fd2807SJeff Garzik 		break;
1468c6fd2807SJeff Garzik 	default:
1469c6fd2807SJeff Garzik 		/* The only other commands EDMA supports in non-queued and
1470c6fd2807SJeff Garzik 		 * non-NCQ mode are: [RW] STREAM DMA and W DMA FUA EXT, none
1471c6fd2807SJeff Garzik 		 * of which are defined/used by Linux.  If we get here, this
1472c6fd2807SJeff Garzik 		 * driver needs work.
1473c6fd2807SJeff Garzik 		 *
1474c6fd2807SJeff Garzik 		 * FIXME: modify libata to give qc_prep a return value and
1475c6fd2807SJeff Garzik 		 * return error here.
1476c6fd2807SJeff Garzik 		 */
1477c6fd2807SJeff Garzik 		BUG_ON(tf->command);
1478c6fd2807SJeff Garzik 		break;
1479c6fd2807SJeff Garzik 	}
1480c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->nsect, ATA_REG_NSECT, 0);
1481c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->hob_lbal, ATA_REG_LBAL, 0);
1482c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->lbal, ATA_REG_LBAL, 0);
1483c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->hob_lbam, ATA_REG_LBAM, 0);
1484c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->lbam, ATA_REG_LBAM, 0);
1485c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->hob_lbah, ATA_REG_LBAH, 0);
1486c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->lbah, ATA_REG_LBAH, 0);
1487c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->device, ATA_REG_DEVICE, 0);
1488c6fd2807SJeff Garzik 	mv_crqb_pack_cmd(cw++, tf->command, ATA_REG_CMD, 1);	/* last */
1489c6fd2807SJeff Garzik 
1490c6fd2807SJeff Garzik 	if (!(qc->flags & ATA_QCFLAG_DMAMAP))
1491c6fd2807SJeff Garzik 		return;
1492c6fd2807SJeff Garzik 	mv_fill_sg(qc);
1493c6fd2807SJeff Garzik }
1494c6fd2807SJeff Garzik 
1495c6fd2807SJeff Garzik /**
1496c6fd2807SJeff Garzik  *      mv_qc_prep_iie - Host specific command preparation.
1497c6fd2807SJeff Garzik  *      @qc: queued command to prepare
1498c6fd2807SJeff Garzik  *
1499c6fd2807SJeff Garzik  *      This routine simply redirects to the general purpose routine
1500c6fd2807SJeff Garzik  *      if command is not DMA.  Else, it handles prep of the CRQB
1501c6fd2807SJeff Garzik  *      (command request block), does some sanity checking, and calls
1502c6fd2807SJeff Garzik  *      the SG load routine.
1503c6fd2807SJeff Garzik  *
1504c6fd2807SJeff Garzik  *      LOCKING:
1505c6fd2807SJeff Garzik  *      Inherited from caller.
1506c6fd2807SJeff Garzik  */
1507c6fd2807SJeff Garzik static void mv_qc_prep_iie(struct ata_queued_cmd *qc)
1508c6fd2807SJeff Garzik {
1509c6fd2807SJeff Garzik 	struct ata_port *ap = qc->ap;
1510c6fd2807SJeff Garzik 	struct mv_port_priv *pp = ap->private_data;
1511c6fd2807SJeff Garzik 	struct mv_crqb_iie *crqb;
1512c6fd2807SJeff Garzik 	struct ata_taskfile *tf;
1513c6fd2807SJeff Garzik 	unsigned in_index;
1514c6fd2807SJeff Garzik 	u32 flags = 0;
1515c6fd2807SJeff Garzik 
1516138bfdd0SMark Lord 	if ((qc->tf.protocol != ATA_PROT_DMA) &&
1517138bfdd0SMark Lord 	    (qc->tf.protocol != ATA_PROT_NCQ))
1518c6fd2807SJeff Garzik 		return;
1519c6fd2807SJeff Garzik 
1520e12bef50SMark Lord 	/* Fill in Gen IIE command request block */
1521c6fd2807SJeff Garzik 	if (!(qc->tf.flags & ATA_TFLAG_WRITE))
1522c6fd2807SJeff Garzik 		flags |= CRQB_FLAG_READ;
1523c6fd2807SJeff Garzik 
1524c6fd2807SJeff Garzik 	WARN_ON(MV_MAX_Q_DEPTH <= qc->tag);
1525c6fd2807SJeff Garzik 	flags |= qc->tag << CRQB_TAG_SHIFT;
15268c0aeb4aSMark Lord 	flags |= qc->tag << CRQB_HOSTQ_SHIFT;
1527e49856d8SMark Lord 	flags |= (qc->dev->link->pmp & 0xf) << CRQB_PMP_SHIFT;
1528c6fd2807SJeff Garzik 
1529bdd4dddeSJeff Garzik 	/* get current queue index from software */
1530fcfb1f77SMark Lord 	in_index = pp->req_idx;
1531c6fd2807SJeff Garzik 
1532c6fd2807SJeff Garzik 	crqb = (struct mv_crqb_iie *) &pp->crqb[in_index];
1533eb73d558SMark Lord 	crqb->addr = cpu_to_le32(pp->sg_tbl_dma[qc->tag] & 0xffffffff);
1534eb73d558SMark Lord 	crqb->addr_hi = cpu_to_le32((pp->sg_tbl_dma[qc->tag] >> 16) >> 16);
1535c6fd2807SJeff Garzik 	crqb->flags = cpu_to_le32(flags);
1536c6fd2807SJeff Garzik 
1537c6fd2807SJeff Garzik 	tf = &qc->tf;
1538c6fd2807SJeff Garzik 	crqb->ata_cmd[0] = cpu_to_le32(
1539c6fd2807SJeff Garzik 			(tf->command << 16) |
1540c6fd2807SJeff Garzik 			(tf->feature << 24)
1541c6fd2807SJeff Garzik 		);
1542c6fd2807SJeff Garzik 	crqb->ata_cmd[1] = cpu_to_le32(
1543c6fd2807SJeff Garzik 			(tf->lbal << 0) |
1544c6fd2807SJeff Garzik 			(tf->lbam << 8) |
1545c6fd2807SJeff Garzik 			(tf->lbah << 16) |
1546c6fd2807SJeff Garzik 			(tf->device << 24)
1547c6fd2807SJeff Garzik 		);
1548c6fd2807SJeff Garzik 	crqb->ata_cmd[2] = cpu_to_le32(
1549c6fd2807SJeff Garzik 			(tf->hob_lbal << 0) |
1550c6fd2807SJeff Garzik 			(tf->hob_lbam << 8) |
1551c6fd2807SJeff Garzik 			(tf->hob_lbah << 16) |
1552c6fd2807SJeff Garzik 			(tf->hob_feature << 24)
1553c6fd2807SJeff Garzik 		);
1554c6fd2807SJeff Garzik 	crqb->ata_cmd[3] = cpu_to_le32(
1555c6fd2807SJeff Garzik 			(tf->nsect << 0) |
1556c6fd2807SJeff Garzik 			(tf->hob_nsect << 8)
1557c6fd2807SJeff Garzik 		);
1558c6fd2807SJeff Garzik 
1559c6fd2807SJeff Garzik 	if (!(qc->flags & ATA_QCFLAG_DMAMAP))
1560c6fd2807SJeff Garzik 		return;
1561c6fd2807SJeff Garzik 	mv_fill_sg(qc);
1562c6fd2807SJeff Garzik }
1563c6fd2807SJeff Garzik 
1564c6fd2807SJeff Garzik /**
1565c6fd2807SJeff Garzik  *      mv_qc_issue - Initiate a command to the host
1566c6fd2807SJeff Garzik  *      @qc: queued command to start
1567c6fd2807SJeff Garzik  *
1568c6fd2807SJeff Garzik  *      This routine simply redirects to the general purpose routine
1569c6fd2807SJeff Garzik  *      if command is not DMA.  Else, it sanity checks our local
1570c6fd2807SJeff Garzik  *      caches of the request producer/consumer indices then enables
1571c6fd2807SJeff Garzik  *      DMA and bumps the request producer index.
1572c6fd2807SJeff Garzik  *
1573c6fd2807SJeff Garzik  *      LOCKING:
1574c6fd2807SJeff Garzik  *      Inherited from caller.
1575c6fd2807SJeff Garzik  */
1576c6fd2807SJeff Garzik static unsigned int mv_qc_issue(struct ata_queued_cmd *qc)
1577c6fd2807SJeff Garzik {
1578c5d3e45aSJeff Garzik 	struct ata_port *ap = qc->ap;
1579c5d3e45aSJeff Garzik 	void __iomem *port_mmio = mv_ap_base(ap);
1580c5d3e45aSJeff Garzik 	struct mv_port_priv *pp = ap->private_data;
1581bdd4dddeSJeff Garzik 	u32 in_index;
1582c6fd2807SJeff Garzik 
1583138bfdd0SMark Lord 	if ((qc->tf.protocol != ATA_PROT_DMA) &&
1584138bfdd0SMark Lord 	    (qc->tf.protocol != ATA_PROT_NCQ)) {
1585c6112bd8SMark Lord 		static int limit_warnings = 10;
1586c6112bd8SMark Lord 		/*
1587c6112bd8SMark Lord 		 * Errata SATA#16, SATA#24: warn if multiple DRQs expected.
1588c6112bd8SMark Lord 		 *
1589c6112bd8SMark Lord 		 * Someday, we might implement special polling workarounds
1590c6112bd8SMark Lord 		 * for these, but it all seems rather unnecessary since we
1591c6112bd8SMark Lord 		 * normally use only DMA for commands which transfer more
1592c6112bd8SMark Lord 		 * than a single block of data.
1593c6112bd8SMark Lord 		 *
1594c6112bd8SMark Lord 		 * Much of the time, this could just work regardless.
1595c6112bd8SMark Lord 		 * So for now, just log the incident, and allow the attempt.
1596c6112bd8SMark Lord 		 */
1597c7843e8fSMark Lord 		if (limit_warnings > 0 && (qc->nbytes / qc->sect_size) > 1) {
1598c6112bd8SMark Lord 			--limit_warnings;
1599c6112bd8SMark Lord 			ata_link_printk(qc->dev->link, KERN_WARNING, DRV_NAME
1600c6112bd8SMark Lord 					": attempting PIO w/multiple DRQ: "
1601c6112bd8SMark Lord 					"this may fail due to h/w errata\n");
1602c6112bd8SMark Lord 		}
160317c5aab5SMark Lord 		/*
160417c5aab5SMark Lord 		 * We're about to send a non-EDMA capable command to the
1605c6fd2807SJeff Garzik 		 * port.  Turn off EDMA so there won't be problems accessing
1606c6fd2807SJeff Garzik 		 * shadow block, etc registers.
1607c6fd2807SJeff Garzik 		 */
1608b562468cSMark Lord 		mv_stop_edma(ap);
160988e675e1SMark Lord 		mv_enable_port_irqs(ap, ERR_IRQ);
1610e49856d8SMark Lord 		mv_pmp_select(ap, qc->dev->link->pmp);
16119363c382STejun Heo 		return ata_sff_qc_issue(qc);
1612c6fd2807SJeff Garzik 	}
1613c6fd2807SJeff Garzik 
161472109168SMark Lord 	mv_start_dma(ap, port_mmio, pp, qc->tf.protocol);
1615bdd4dddeSJeff Garzik 
1616fcfb1f77SMark Lord 	pp->req_idx = (pp->req_idx + 1) & MV_MAX_Q_DEPTH_MASK;
1617fcfb1f77SMark Lord 	in_index = pp->req_idx << EDMA_REQ_Q_PTR_SHIFT;
1618c6fd2807SJeff Garzik 
1619c6fd2807SJeff Garzik 	/* and write the request in pointer to kick the EDMA to life */
1620bdd4dddeSJeff Garzik 	writelfl((pp->crqb_dma & EDMA_REQ_Q_BASE_LO_MASK) | in_index,
1621bdd4dddeSJeff Garzik 		 port_mmio + EDMA_REQ_Q_IN_PTR_OFS);
1622c6fd2807SJeff Garzik 
1623c6fd2807SJeff Garzik 	return 0;
1624c6fd2807SJeff Garzik }
1625c6fd2807SJeff Garzik 
16268f767f8aSMark Lord static struct ata_queued_cmd *mv_get_active_qc(struct ata_port *ap)
16278f767f8aSMark Lord {
16288f767f8aSMark Lord 	struct mv_port_priv *pp = ap->private_data;
16298f767f8aSMark Lord 	struct ata_queued_cmd *qc;
16308f767f8aSMark Lord 
16318f767f8aSMark Lord 	if (pp->pp_flags & MV_PP_FLAG_NCQ_EN)
16328f767f8aSMark Lord 		return NULL;
16338f767f8aSMark Lord 	qc = ata_qc_from_tag(ap, ap->link.active_tag);
16348f767f8aSMark Lord 	if (qc && (qc->tf.flags & ATA_TFLAG_POLLING))
16358f767f8aSMark Lord 		qc = NULL;
16368f767f8aSMark Lord 	return qc;
16378f767f8aSMark Lord }
16388f767f8aSMark Lord 
163929d187bbSMark Lord static void mv_pmp_error_handler(struct ata_port *ap)
164029d187bbSMark Lord {
164129d187bbSMark Lord 	unsigned int pmp, pmp_map;
164229d187bbSMark Lord 	struct mv_port_priv *pp = ap->private_data;
164329d187bbSMark Lord 
164429d187bbSMark Lord 	if (pp->pp_flags & MV_PP_FLAG_DELAYED_EH) {
164529d187bbSMark Lord 		/*
164629d187bbSMark Lord 		 * Perform NCQ error analysis on failed PMPs
164729d187bbSMark Lord 		 * before we freeze the port entirely.
164829d187bbSMark Lord 		 *
164929d187bbSMark Lord 		 * The failed PMPs are marked earlier by mv_pmp_eh_prep().
165029d187bbSMark Lord 		 */
165129d187bbSMark Lord 		pmp_map = pp->delayed_eh_pmp_map;
165229d187bbSMark Lord 		pp->pp_flags &= ~MV_PP_FLAG_DELAYED_EH;
165329d187bbSMark Lord 		for (pmp = 0; pmp_map != 0; pmp++) {
165429d187bbSMark Lord 			unsigned int this_pmp = (1 << pmp);
165529d187bbSMark Lord 			if (pmp_map & this_pmp) {
165629d187bbSMark Lord 				struct ata_link *link = &ap->pmp_link[pmp];
165729d187bbSMark Lord 				pmp_map &= ~this_pmp;
165829d187bbSMark Lord 				ata_eh_analyze_ncq_error(link);
165929d187bbSMark Lord 			}
166029d187bbSMark Lord 		}
166129d187bbSMark Lord 		ata_port_freeze(ap);
166229d187bbSMark Lord 	}
166329d187bbSMark Lord 	sata_pmp_error_handler(ap);
166429d187bbSMark Lord }
166529d187bbSMark Lord 
16664c299ca3SMark Lord static unsigned int mv_get_err_pmp_map(struct ata_port *ap)
16674c299ca3SMark Lord {
16684c299ca3SMark Lord 	void __iomem *port_mmio = mv_ap_base(ap);
16694c299ca3SMark Lord 
16704c299ca3SMark Lord 	return readl(port_mmio + SATA_TESTCTL_OFS) >> 16;
16714c299ca3SMark Lord }
16724c299ca3SMark Lord 
16734c299ca3SMark Lord static void mv_pmp_eh_prep(struct ata_port *ap, unsigned int pmp_map)
16744c299ca3SMark Lord {
16754c299ca3SMark Lord 	struct ata_eh_info *ehi;
16764c299ca3SMark Lord 	unsigned int pmp;
16774c299ca3SMark Lord 
16784c299ca3SMark Lord 	/*
16794c299ca3SMark Lord 	 * Initialize EH info for PMPs which saw device errors
16804c299ca3SMark Lord 	 */
16814c299ca3SMark Lord 	ehi = &ap->link.eh_info;
16824c299ca3SMark Lord 	for (pmp = 0; pmp_map != 0; pmp++) {
16834c299ca3SMark Lord 		unsigned int this_pmp = (1 << pmp);
16844c299ca3SMark Lord 		if (pmp_map & this_pmp) {
16854c299ca3SMark Lord 			struct ata_link *link = &ap->pmp_link[pmp];
16864c299ca3SMark Lord 
16874c299ca3SMark Lord 			pmp_map &= ~this_pmp;
16884c299ca3SMark Lord 			ehi = &link->eh_info;
16894c299ca3SMark Lord 			ata_ehi_clear_desc(ehi);
16904c299ca3SMark Lord 			ata_ehi_push_desc(ehi, "dev err");
16914c299ca3SMark Lord 			ehi->err_mask |= AC_ERR_DEV;
16924c299ca3SMark Lord 			ehi->action |= ATA_EH_RESET;
16934c299ca3SMark Lord 			ata_link_abort(link);
16944c299ca3SMark Lord 		}
16954c299ca3SMark Lord 	}
16964c299ca3SMark Lord }
16974c299ca3SMark Lord 
169806aaca3fSMark Lord static int mv_req_q_empty(struct ata_port *ap)
169906aaca3fSMark Lord {
170006aaca3fSMark Lord 	void __iomem *port_mmio = mv_ap_base(ap);
170106aaca3fSMark Lord 	u32 in_ptr, out_ptr;
170206aaca3fSMark Lord 
170306aaca3fSMark Lord 	in_ptr  = (readl(port_mmio + EDMA_REQ_Q_IN_PTR_OFS)
170406aaca3fSMark Lord 			>> EDMA_REQ_Q_PTR_SHIFT) & MV_MAX_Q_DEPTH_MASK;
170506aaca3fSMark Lord 	out_ptr = (readl(port_mmio + EDMA_REQ_Q_OUT_PTR_OFS)
170606aaca3fSMark Lord 			>> EDMA_REQ_Q_PTR_SHIFT) & MV_MAX_Q_DEPTH_MASK;
170706aaca3fSMark Lord 	return (in_ptr == out_ptr);	/* 1 == queue_is_empty */
170806aaca3fSMark Lord }
170906aaca3fSMark Lord 
17104c299ca3SMark Lord static int mv_handle_fbs_ncq_dev_err(struct ata_port *ap)
17114c299ca3SMark Lord {
17124c299ca3SMark Lord 	struct mv_port_priv *pp = ap->private_data;
17134c299ca3SMark Lord 	int failed_links;
17144c299ca3SMark Lord 	unsigned int old_map, new_map;
17154c299ca3SMark Lord 
17164c299ca3SMark Lord 	/*
17174c299ca3SMark Lord 	 * Device error during FBS+NCQ operation:
17184c299ca3SMark Lord 	 *
17194c299ca3SMark Lord 	 * Set a port flag to prevent further I/O being enqueued.
17204c299ca3SMark Lord 	 * Leave the EDMA running to drain outstanding commands from this port.
17214c299ca3SMark Lord 	 * Perform the post-mortem/EH only when all responses are complete.
17224c299ca3SMark Lord 	 * Follow recovery sequence from 6042/7042 datasheet (7.3.15.4.2.2).
17234c299ca3SMark Lord 	 */
17244c299ca3SMark Lord 	if (!(pp->pp_flags & MV_PP_FLAG_DELAYED_EH)) {
17254c299ca3SMark Lord 		pp->pp_flags |= MV_PP_FLAG_DELAYED_EH;
17264c299ca3SMark Lord 		pp->delayed_eh_pmp_map = 0;
17274c299ca3SMark Lord 	}
17284c299ca3SMark Lord 	old_map = pp->delayed_eh_pmp_map;
17294c299ca3SMark Lord 	new_map = old_map | mv_get_err_pmp_map(ap);
17304c299ca3SMark Lord 
17314c299ca3SMark Lord 	if (old_map != new_map) {
17324c299ca3SMark Lord 		pp->delayed_eh_pmp_map = new_map;
17334c299ca3SMark Lord 		mv_pmp_eh_prep(ap, new_map & ~old_map);
17344c299ca3SMark Lord 	}
1735c46938ccSMark Lord 	failed_links = hweight16(new_map);
17364c299ca3SMark Lord 
17374c299ca3SMark Lord 	ata_port_printk(ap, KERN_INFO, "%s: pmp_map=%04x qc_map=%04x "
17384c299ca3SMark Lord 			"failed_links=%d nr_active_links=%d\n",
17394c299ca3SMark Lord 			__func__, pp->delayed_eh_pmp_map,
17404c299ca3SMark Lord 			ap->qc_active, failed_links,
17414c299ca3SMark Lord 			ap->nr_active_links);
17424c299ca3SMark Lord 
174306aaca3fSMark Lord 	if (ap->nr_active_links <= failed_links && mv_req_q_empty(ap)) {
17444c299ca3SMark Lord 		mv_process_crpb_entries(ap, pp);
17454c299ca3SMark Lord 		mv_stop_edma(ap);
17464c299ca3SMark Lord 		mv_eh_freeze(ap);
17474c299ca3SMark Lord 		ata_port_printk(ap, KERN_INFO, "%s: done\n", __func__);
17484c299ca3SMark Lord 		return 1;	/* handled */
17494c299ca3SMark Lord 	}
17504c299ca3SMark Lord 	ata_port_printk(ap, KERN_INFO, "%s: waiting\n", __func__);
17514c299ca3SMark Lord 	return 1;	/* handled */
17524c299ca3SMark Lord }
17534c299ca3SMark Lord 
17544c299ca3SMark Lord static int mv_handle_fbs_non_ncq_dev_err(struct ata_port *ap)
17554c299ca3SMark Lord {
17564c299ca3SMark Lord 	/*
17574c299ca3SMark Lord 	 * Possible future enhancement:
17584c299ca3SMark Lord 	 *
17594c299ca3SMark Lord 	 * FBS+non-NCQ operation is not yet implemented.
17604c299ca3SMark Lord 	 * See related notes in mv_edma_cfg().
17614c299ca3SMark Lord 	 *
17624c299ca3SMark Lord 	 * Device error during FBS+non-NCQ operation:
17634c299ca3SMark Lord 	 *
17644c299ca3SMark Lord 	 * We need to snapshot the shadow registers for each failed command.
17654c299ca3SMark Lord 	 * Follow recovery sequence from 6042/7042 datasheet (7.3.15.4.2.3).
17664c299ca3SMark Lord 	 */
17674c299ca3SMark Lord 	return 0;	/* not handled */
17684c299ca3SMark Lord }
17694c299ca3SMark Lord 
17704c299ca3SMark Lord static int mv_handle_dev_err(struct ata_port *ap, u32 edma_err_cause)
17714c299ca3SMark Lord {
17724c299ca3SMark Lord 	struct mv_port_priv *pp = ap->private_data;
17734c299ca3SMark Lord 
17744c299ca3SMark Lord 	if (!(pp->pp_flags & MV_PP_FLAG_EDMA_EN))
17754c299ca3SMark Lord 		return 0;	/* EDMA was not active: not handled */
17764c299ca3SMark Lord 	if (!(pp->pp_flags & MV_PP_FLAG_FBS_EN))
17774c299ca3SMark Lord 		return 0;	/* FBS was not active: not handled */
17784c299ca3SMark Lord 
17794c299ca3SMark Lord 	if (!(edma_err_cause & EDMA_ERR_DEV))
17804c299ca3SMark Lord 		return 0;	/* non DEV error: not handled */
17814c299ca3SMark Lord 	edma_err_cause &= ~EDMA_ERR_IRQ_TRANSIENT;
17824c299ca3SMark Lord 	if (edma_err_cause & ~(EDMA_ERR_DEV | EDMA_ERR_SELF_DIS))
17834c299ca3SMark Lord 		return 0;	/* other problems: not handled */
17844c299ca3SMark Lord 
17854c299ca3SMark Lord 	if (pp->pp_flags & MV_PP_FLAG_NCQ_EN) {
17864c299ca3SMark Lord 		/*
17874c299ca3SMark Lord 		 * EDMA should NOT have self-disabled for this case.
17884c299ca3SMark Lord 		 * If it did, then something is wrong elsewhere,
17894c299ca3SMark Lord 		 * and we cannot handle it here.
17904c299ca3SMark Lord 		 */
17914c299ca3SMark Lord 		if (edma_err_cause & EDMA_ERR_SELF_DIS) {
17924c299ca3SMark Lord 			ata_port_printk(ap, KERN_WARNING,
17934c299ca3SMark Lord 				"%s: err_cause=0x%x pp_flags=0x%x\n",
17944c299ca3SMark Lord 				__func__, edma_err_cause, pp->pp_flags);
17954c299ca3SMark Lord 			return 0; /* not handled */
17964c299ca3SMark Lord 		}
17974c299ca3SMark Lord 		return mv_handle_fbs_ncq_dev_err(ap);
17984c299ca3SMark Lord 	} else {
17994c299ca3SMark Lord 		/*
18004c299ca3SMark Lord 		 * EDMA should have self-disabled for this case.
18014c299ca3SMark Lord 		 * If it did not, then something is wrong elsewhere,
18024c299ca3SMark Lord 		 * and we cannot handle it here.
18034c299ca3SMark Lord 		 */
18044c299ca3SMark Lord 		if (!(edma_err_cause & EDMA_ERR_SELF_DIS)) {
18054c299ca3SMark Lord 			ata_port_printk(ap, KERN_WARNING,
18064c299ca3SMark Lord 				"%s: err_cause=0x%x pp_flags=0x%x\n",
18074c299ca3SMark Lord 				__func__, edma_err_cause, pp->pp_flags);
18084c299ca3SMark Lord 			return 0; /* not handled */
18094c299ca3SMark Lord 		}
18104c299ca3SMark Lord 		return mv_handle_fbs_non_ncq_dev_err(ap);
18114c299ca3SMark Lord 	}
18124c299ca3SMark Lord 	return 0;	/* not handled */
18134c299ca3SMark Lord }
18144c299ca3SMark Lord 
1815a9010329SMark Lord static void mv_unexpected_intr(struct ata_port *ap, int edma_was_enabled)
18168f767f8aSMark Lord {
18178f767f8aSMark Lord 	struct ata_eh_info *ehi = &ap->link.eh_info;
1818a9010329SMark Lord 	char *when = "idle";
18198f767f8aSMark Lord 
18208f767f8aSMark Lord 	ata_ehi_clear_desc(ehi);
1821a9010329SMark Lord 	if (!ap || (ap->flags & ATA_FLAG_DISABLED)) {
1822a9010329SMark Lord 		when = "disabled";
1823a9010329SMark Lord 	} else if (edma_was_enabled) {
1824a9010329SMark Lord 		when = "EDMA enabled";
18258f767f8aSMark Lord 	} else {
18268f767f8aSMark Lord 		struct ata_queued_cmd *qc = ata_qc_from_tag(ap, ap->link.active_tag);
18278f767f8aSMark Lord 		if (qc && (qc->tf.flags & ATA_TFLAG_POLLING))
1828a9010329SMark Lord 			when = "polling";
18298f767f8aSMark Lord 	}
1830a9010329SMark Lord 	ata_ehi_push_desc(ehi, "unexpected device interrupt while %s", when);
18318f767f8aSMark Lord 	ehi->err_mask |= AC_ERR_OTHER;
18328f767f8aSMark Lord 	ehi->action   |= ATA_EH_RESET;
18338f767f8aSMark Lord 	ata_port_freeze(ap);
18348f767f8aSMark Lord }
18358f767f8aSMark Lord 
1836c6fd2807SJeff Garzik /**
1837c6fd2807SJeff Garzik  *      mv_err_intr - Handle error interrupts on the port
1838c6fd2807SJeff Garzik  *      @ap: ATA channel to manipulate
18398d07379dSMark Lord  *      @qc: affected command (non-NCQ), or NULL
1840c6fd2807SJeff Garzik  *
18418d07379dSMark Lord  *      Most cases require a full reset of the chip's state machine,
18428d07379dSMark Lord  *      which also performs a COMRESET.
18438d07379dSMark Lord  *      Also, if the port disabled DMA, update our cached copy to match.
1844c6fd2807SJeff Garzik  *
1845c6fd2807SJeff Garzik  *      LOCKING:
1846c6fd2807SJeff Garzik  *      Inherited from caller.
1847c6fd2807SJeff Garzik  */
184837b9046aSMark Lord static void mv_err_intr(struct ata_port *ap)
1849c6fd2807SJeff Garzik {
1850c6fd2807SJeff Garzik 	void __iomem *port_mmio = mv_ap_base(ap);
1851bdd4dddeSJeff Garzik 	u32 edma_err_cause, eh_freeze_mask, serr = 0;
1852e4006077SMark Lord 	u32 fis_cause = 0;
1853bdd4dddeSJeff Garzik 	struct mv_port_priv *pp = ap->private_data;
1854bdd4dddeSJeff Garzik 	struct mv_host_priv *hpriv = ap->host->private_data;
1855bdd4dddeSJeff Garzik 	unsigned int action = 0, err_mask = 0;
18569af5c9c9STejun Heo 	struct ata_eh_info *ehi = &ap->link.eh_info;
185737b9046aSMark Lord 	struct ata_queued_cmd *qc;
185837b9046aSMark Lord 	int abort = 0;
1859c6fd2807SJeff Garzik 
18608d07379dSMark Lord 	/*
186137b9046aSMark Lord 	 * Read and clear the SError and err_cause bits.
1862e4006077SMark Lord 	 * For GenIIe, if EDMA_ERR_TRANS_IRQ_7 is set, we also must read/clear
1863e4006077SMark Lord 	 * the FIS_IRQ_CAUSE register before clearing edma_err_cause.
1864bdd4dddeSJeff Garzik 	 */
186537b9046aSMark Lord 	sata_scr_read(&ap->link, SCR_ERROR, &serr);
186637b9046aSMark Lord 	sata_scr_write_flush(&ap->link, SCR_ERROR, serr);
186737b9046aSMark Lord 
1868bdd4dddeSJeff Garzik 	edma_err_cause = readl(port_mmio + EDMA_ERR_IRQ_CAUSE_OFS);
1869e4006077SMark Lord 	if (IS_GEN_IIE(hpriv) && (edma_err_cause & EDMA_ERR_TRANS_IRQ_7)) {
1870e4006077SMark Lord 		fis_cause = readl(port_mmio + SATA_FIS_IRQ_CAUSE_OFS);
1871e4006077SMark Lord 		writelfl(~fis_cause, port_mmio + SATA_FIS_IRQ_CAUSE_OFS);
1872e4006077SMark Lord 	}
18738d07379dSMark Lord 	writelfl(~edma_err_cause, port_mmio + EDMA_ERR_IRQ_CAUSE_OFS);
1874bdd4dddeSJeff Garzik 
18754c299ca3SMark Lord 	if (edma_err_cause & EDMA_ERR_DEV) {
18764c299ca3SMark Lord 		/*
18774c299ca3SMark Lord 		 * Device errors during FIS-based switching operation
18784c299ca3SMark Lord 		 * require special handling.
18794c299ca3SMark Lord 		 */
18804c299ca3SMark Lord 		if (mv_handle_dev_err(ap, edma_err_cause))
18814c299ca3SMark Lord 			return;
18824c299ca3SMark Lord 	}
18834c299ca3SMark Lord 
188437b9046aSMark Lord 	qc = mv_get_active_qc(ap);
188537b9046aSMark Lord 	ata_ehi_clear_desc(ehi);
188637b9046aSMark Lord 	ata_ehi_push_desc(ehi, "edma_err_cause=%08x pp_flags=%08x",
188737b9046aSMark Lord 			  edma_err_cause, pp->pp_flags);
1888e4006077SMark Lord 
1889c443c500SMark Lord 	if (IS_GEN_IIE(hpriv) && (edma_err_cause & EDMA_ERR_TRANS_IRQ_7)) {
1890e4006077SMark Lord 		ata_ehi_push_desc(ehi, "fis_cause=%08x", fis_cause);
1891c443c500SMark Lord 		if (fis_cause & SATA_FIS_IRQ_AN) {
1892c443c500SMark Lord 			u32 ec = edma_err_cause &
1893c443c500SMark Lord 			       ~(EDMA_ERR_TRANS_IRQ_7 | EDMA_ERR_IRQ_TRANSIENT);
1894c443c500SMark Lord 			sata_async_notification(ap);
1895c443c500SMark Lord 			if (!ec)
1896c443c500SMark Lord 				return; /* Just an AN; no need for the nukes */
1897c443c500SMark Lord 			ata_ehi_push_desc(ehi, "SDB notify");
1898c443c500SMark Lord 		}
1899c443c500SMark Lord 	}
1900bdd4dddeSJeff Garzik 	/*
1901352fab70SMark Lord 	 * All generations share these EDMA error cause bits:
1902bdd4dddeSJeff Garzik 	 */
190337b9046aSMark Lord 	if (edma_err_cause & EDMA_ERR_DEV) {
1904bdd4dddeSJeff Garzik 		err_mask |= AC_ERR_DEV;
190537b9046aSMark Lord 		action |= ATA_EH_RESET;
190637b9046aSMark Lord 		ata_ehi_push_desc(ehi, "dev error");
190737b9046aSMark Lord 	}
1908bdd4dddeSJeff Garzik 	if (edma_err_cause & (EDMA_ERR_D_PAR | EDMA_ERR_PRD_PAR |
19096c1153e0SJeff Garzik 			EDMA_ERR_CRQB_PAR | EDMA_ERR_CRPB_PAR |
1910bdd4dddeSJeff Garzik 			EDMA_ERR_INTRL_PAR)) {
1911bdd4dddeSJeff Garzik 		err_mask |= AC_ERR_ATA_BUS;
1912cf480626STejun Heo 		action |= ATA_EH_RESET;
1913b64bbc39STejun Heo 		ata_ehi_push_desc(ehi, "parity error");
1914bdd4dddeSJeff Garzik 	}
1915bdd4dddeSJeff Garzik 	if (edma_err_cause & (EDMA_ERR_DEV_DCON | EDMA_ERR_DEV_CON)) {
1916bdd4dddeSJeff Garzik 		ata_ehi_hotplugged(ehi);
1917bdd4dddeSJeff Garzik 		ata_ehi_push_desc(ehi, edma_err_cause & EDMA_ERR_DEV_DCON ?
1918b64bbc39STejun Heo 			"dev disconnect" : "dev connect");
1919cf480626STejun Heo 		action |= ATA_EH_RESET;
1920bdd4dddeSJeff Garzik 	}
1921bdd4dddeSJeff Garzik 
1922352fab70SMark Lord 	/*
1923352fab70SMark Lord 	 * Gen-I has a different SELF_DIS bit,
1924352fab70SMark Lord 	 * different FREEZE bits, and no SERR bit:
1925352fab70SMark Lord 	 */
1926ee9ccdf7SJeff Garzik 	if (IS_GEN_I(hpriv)) {
1927bdd4dddeSJeff Garzik 		eh_freeze_mask = EDMA_EH_FREEZE_5;
1928bdd4dddeSJeff Garzik 		if (edma_err_cause & EDMA_ERR_SELF_DIS_5) {
1929c6fd2807SJeff Garzik 			pp->pp_flags &= ~MV_PP_FLAG_EDMA_EN;
1930b64bbc39STejun Heo 			ata_ehi_push_desc(ehi, "EDMA self-disable");
1931c6fd2807SJeff Garzik 		}
1932bdd4dddeSJeff Garzik 	} else {
1933bdd4dddeSJeff Garzik 		eh_freeze_mask = EDMA_EH_FREEZE;
1934bdd4dddeSJeff Garzik 		if (edma_err_cause & EDMA_ERR_SELF_DIS) {
1935bdd4dddeSJeff Garzik 			pp->pp_flags &= ~MV_PP_FLAG_EDMA_EN;
1936b64bbc39STejun Heo 			ata_ehi_push_desc(ehi, "EDMA self-disable");
1937bdd4dddeSJeff Garzik 		}
1938bdd4dddeSJeff Garzik 		if (edma_err_cause & EDMA_ERR_SERR) {
19398d07379dSMark Lord 			ata_ehi_push_desc(ehi, "SError=%08x", serr);
19408d07379dSMark Lord 			err_mask |= AC_ERR_ATA_BUS;
1941cf480626STejun Heo 			action |= ATA_EH_RESET;
1942bdd4dddeSJeff Garzik 		}
1943bdd4dddeSJeff Garzik 	}
1944c6fd2807SJeff Garzik 
1945bdd4dddeSJeff Garzik 	if (!err_mask) {
1946bdd4dddeSJeff Garzik 		err_mask = AC_ERR_OTHER;
1947cf480626STejun Heo 		action |= ATA_EH_RESET;
1948bdd4dddeSJeff Garzik 	}
1949bdd4dddeSJeff Garzik 
1950bdd4dddeSJeff Garzik 	ehi->serror |= serr;
1951bdd4dddeSJeff Garzik 	ehi->action |= action;
1952bdd4dddeSJeff Garzik 
1953bdd4dddeSJeff Garzik 	if (qc)
1954bdd4dddeSJeff Garzik 		qc->err_mask |= err_mask;
1955bdd4dddeSJeff Garzik 	else
1956bdd4dddeSJeff Garzik 		ehi->err_mask |= err_mask;
1957bdd4dddeSJeff Garzik 
195837b9046aSMark Lord 	if (err_mask == AC_ERR_DEV) {
195937b9046aSMark Lord 		/*
196037b9046aSMark Lord 		 * Cannot do ata_port_freeze() here,
196137b9046aSMark Lord 		 * because it would kill PIO access,
196237b9046aSMark Lord 		 * which is needed for further diagnosis.
196337b9046aSMark Lord 		 */
196437b9046aSMark Lord 		mv_eh_freeze(ap);
196537b9046aSMark Lord 		abort = 1;
196637b9046aSMark Lord 	} else if (edma_err_cause & eh_freeze_mask) {
196737b9046aSMark Lord 		/*
196837b9046aSMark Lord 		 * Note to self: ata_port_freeze() calls ata_port_abort()
196937b9046aSMark Lord 		 */
1970bdd4dddeSJeff Garzik 		ata_port_freeze(ap);
197137b9046aSMark Lord 	} else {
197237b9046aSMark Lord 		abort = 1;
197337b9046aSMark Lord 	}
197437b9046aSMark Lord 
197537b9046aSMark Lord 	if (abort) {
197637b9046aSMark Lord 		if (qc)
197737b9046aSMark Lord 			ata_link_abort(qc->dev->link);
1978bdd4dddeSJeff Garzik 		else
1979bdd4dddeSJeff Garzik 			ata_port_abort(ap);
1980bdd4dddeSJeff Garzik 	}
198137b9046aSMark Lord }
1982bdd4dddeSJeff Garzik 
1983fcfb1f77SMark Lord static void mv_process_crpb_response(struct ata_port *ap,
1984fcfb1f77SMark Lord 		struct mv_crpb *response, unsigned int tag, int ncq_enabled)
1985fcfb1f77SMark Lord {
1986fcfb1f77SMark Lord 	struct ata_queued_cmd *qc = ata_qc_from_tag(ap, tag);
1987fcfb1f77SMark Lord 
1988fcfb1f77SMark Lord 	if (qc) {
1989fcfb1f77SMark Lord 		u8 ata_status;
1990fcfb1f77SMark Lord 		u16 edma_status = le16_to_cpu(response->flags);
1991fcfb1f77SMark Lord 		/*
1992fcfb1f77SMark Lord 		 * edma_status from a response queue entry:
1993fcfb1f77SMark Lord 		 *   LSB is from EDMA_ERR_IRQ_CAUSE_OFS (non-NCQ only).
1994fcfb1f77SMark Lord 		 *   MSB is saved ATA status from command completion.
1995fcfb1f77SMark Lord 		 */
1996fcfb1f77SMark Lord 		if (!ncq_enabled) {
1997fcfb1f77SMark Lord 			u8 err_cause = edma_status & 0xff & ~EDMA_ERR_DEV;
1998fcfb1f77SMark Lord 			if (err_cause) {
1999fcfb1f77SMark Lord 				/*
2000fcfb1f77SMark Lord 				 * Error will be seen/handled by mv_err_intr().
2001fcfb1f77SMark Lord 				 * So do nothing at all here.
2002fcfb1f77SMark Lord 				 */
2003fcfb1f77SMark Lord 				return;
2004fcfb1f77SMark Lord 			}
2005fcfb1f77SMark Lord 		}
2006fcfb1f77SMark Lord 		ata_status = edma_status >> CRPB_FLAG_STATUS_SHIFT;
200737b9046aSMark Lord 		if (!ac_err_mask(ata_status))
2008fcfb1f77SMark Lord 			ata_qc_complete(qc);
200937b9046aSMark Lord 		/* else: leave it for mv_err_intr() */
2010fcfb1f77SMark Lord 	} else {
2011fcfb1f77SMark Lord 		ata_port_printk(ap, KERN_ERR, "%s: no qc for tag=%d\n",
2012fcfb1f77SMark Lord 				__func__, tag);
2013fcfb1f77SMark Lord 	}
2014fcfb1f77SMark Lord }
2015fcfb1f77SMark Lord 
2016fcfb1f77SMark Lord static void mv_process_crpb_entries(struct ata_port *ap, struct mv_port_priv *pp)
2017bdd4dddeSJeff Garzik {
2018bdd4dddeSJeff Garzik 	void __iomem *port_mmio = mv_ap_base(ap);
2019bdd4dddeSJeff Garzik 	struct mv_host_priv *hpriv = ap->host->private_data;
2020fcfb1f77SMark Lord 	u32 in_index;
2021bdd4dddeSJeff Garzik 	bool work_done = false;
2022fcfb1f77SMark Lord 	int ncq_enabled = (pp->pp_flags & MV_PP_FLAG_NCQ_EN);
2023bdd4dddeSJeff Garzik 
2024fcfb1f77SMark Lord 	/* Get the hardware queue position index */
2025bdd4dddeSJeff Garzik 	in_index = (readl(port_mmio + EDMA_RSP_Q_IN_PTR_OFS)
2026bdd4dddeSJeff Garzik 			>> EDMA_RSP_Q_PTR_SHIFT) & MV_MAX_Q_DEPTH_MASK;
2027bdd4dddeSJeff Garzik 
2028fcfb1f77SMark Lord 	/* Process new responses from since the last time we looked */
2029fcfb1f77SMark Lord 	while (in_index != pp->resp_idx) {
20306c1153e0SJeff Garzik 		unsigned int tag;
2031fcfb1f77SMark Lord 		struct mv_crpb *response = &pp->crpb[pp->resp_idx];
2032bdd4dddeSJeff Garzik 
2033fcfb1f77SMark Lord 		pp->resp_idx = (pp->resp_idx + 1) & MV_MAX_Q_DEPTH_MASK;
2034bdd4dddeSJeff Garzik 
2035fcfb1f77SMark Lord 		if (IS_GEN_I(hpriv)) {
2036fcfb1f77SMark Lord 			/* 50xx: no NCQ, only one command active at a time */
20379af5c9c9STejun Heo 			tag = ap->link.active_tag;
2038fcfb1f77SMark Lord 		} else {
2039fcfb1f77SMark Lord 			/* Gen II/IIE: get command tag from CRPB entry */
2040fcfb1f77SMark Lord 			tag = le16_to_cpu(response->id) & 0x1f;
2041bdd4dddeSJeff Garzik 		}
2042fcfb1f77SMark Lord 		mv_process_crpb_response(ap, response, tag, ncq_enabled);
2043bdd4dddeSJeff Garzik 		work_done = true;
2044bdd4dddeSJeff Garzik 	}
2045bdd4dddeSJeff Garzik 
2046352fab70SMark Lord 	/* Update the software queue position index in hardware */
2047bdd4dddeSJeff Garzik 	if (work_done)
2048bdd4dddeSJeff Garzik 		writelfl((pp->crpb_dma & EDMA_RSP_Q_BASE_LO_MASK) |
2049fcfb1f77SMark Lord 			 (pp->resp_idx << EDMA_RSP_Q_PTR_SHIFT),
2050bdd4dddeSJeff Garzik 			 port_mmio + EDMA_RSP_Q_OUT_PTR_OFS);
2051c6fd2807SJeff Garzik }
2052c6fd2807SJeff Garzik 
2053a9010329SMark Lord static void mv_port_intr(struct ata_port *ap, u32 port_cause)
2054a9010329SMark Lord {
2055a9010329SMark Lord 	struct mv_port_priv *pp;
2056a9010329SMark Lord 	int edma_was_enabled;
2057a9010329SMark Lord 
2058a9010329SMark Lord 	if (!ap || (ap->flags & ATA_FLAG_DISABLED)) {
2059a9010329SMark Lord 		mv_unexpected_intr(ap, 0);
2060a9010329SMark Lord 		return;
2061a9010329SMark Lord 	}
2062a9010329SMark Lord 	/*
2063a9010329SMark Lord 	 * Grab a snapshot of the EDMA_EN flag setting,
2064a9010329SMark Lord 	 * so that we have a consistent view for this port,
2065a9010329SMark Lord 	 * even if something we call of our routines changes it.
2066a9010329SMark Lord 	 */
2067a9010329SMark Lord 	pp = ap->private_data;
2068a9010329SMark Lord 	edma_was_enabled = (pp->pp_flags & MV_PP_FLAG_EDMA_EN);
2069a9010329SMark Lord 	/*
2070a9010329SMark Lord 	 * Process completed CRPB response(s) before other events.
2071a9010329SMark Lord 	 */
2072a9010329SMark Lord 	if (edma_was_enabled && (port_cause & DONE_IRQ)) {
2073a9010329SMark Lord 		mv_process_crpb_entries(ap, pp);
20744c299ca3SMark Lord 		if (pp->pp_flags & MV_PP_FLAG_DELAYED_EH)
20754c299ca3SMark Lord 			mv_handle_fbs_ncq_dev_err(ap);
2076a9010329SMark Lord 	}
2077a9010329SMark Lord 	/*
2078a9010329SMark Lord 	 * Handle chip-reported errors, or continue on to handle PIO.
2079a9010329SMark Lord 	 */
2080a9010329SMark Lord 	if (unlikely(port_cause & ERR_IRQ)) {
2081a9010329SMark Lord 		mv_err_intr(ap);
2082a9010329SMark Lord 	} else if (!edma_was_enabled) {
2083a9010329SMark Lord 		struct ata_queued_cmd *qc = mv_get_active_qc(ap);
2084a9010329SMark Lord 		if (qc)
2085a9010329SMark Lord 			ata_sff_host_intr(ap, qc);
2086a9010329SMark Lord 		else
2087a9010329SMark Lord 			mv_unexpected_intr(ap, edma_was_enabled);
2088a9010329SMark Lord 	}
2089a9010329SMark Lord }
2090a9010329SMark Lord 
2091c6fd2807SJeff Garzik /**
2092c6fd2807SJeff Garzik  *      mv_host_intr - Handle all interrupts on the given host controller
2093cca3974eSJeff Garzik  *      @host: host specific structure
20947368f919SMark Lord  *      @main_irq_cause: Main interrupt cause register for the chip.
2095c6fd2807SJeff Garzik  *
2096c6fd2807SJeff Garzik  *      LOCKING:
2097c6fd2807SJeff Garzik  *      Inherited from caller.
2098c6fd2807SJeff Garzik  */
20997368f919SMark Lord static int mv_host_intr(struct ata_host *host, u32 main_irq_cause)
2100c6fd2807SJeff Garzik {
2101f351b2d6SSaeed Bishara 	struct mv_host_priv *hpriv = host->private_data;
2102eabd5eb1SMark Lord 	void __iomem *mmio = hpriv->base, *hc_mmio;
2103a3718c1fSMark Lord 	unsigned int handled = 0, port;
2104c6fd2807SJeff Garzik 
2105a3718c1fSMark Lord 	for (port = 0; port < hpriv->n_ports; port++) {
2106cca3974eSJeff Garzik 		struct ata_port *ap = host->ports[port];
2107eabd5eb1SMark Lord 		unsigned int p, shift, hardport, port_cause;
2108eabd5eb1SMark Lord 
2109a3718c1fSMark Lord 		MV_PORT_TO_SHIFT_AND_HARDPORT(port, shift, hardport);
2110a3718c1fSMark Lord 		/*
2111eabd5eb1SMark Lord 		 * Each hc within the host has its own hc_irq_cause register,
2112eabd5eb1SMark Lord 		 * where the interrupting ports bits get ack'd.
2113a3718c1fSMark Lord 		 */
2114eabd5eb1SMark Lord 		if (hardport == 0) {	/* first port on this hc ? */
2115eabd5eb1SMark Lord 			u32 hc_cause = (main_irq_cause >> shift) & HC0_IRQ_PEND;
2116eabd5eb1SMark Lord 			u32 port_mask, ack_irqs;
2117eabd5eb1SMark Lord 			/*
2118eabd5eb1SMark Lord 			 * Skip this entire hc if nothing pending for any ports
2119eabd5eb1SMark Lord 			 */
2120eabd5eb1SMark Lord 			if (!hc_cause) {
2121eabd5eb1SMark Lord 				port += MV_PORTS_PER_HC - 1;
2122eabd5eb1SMark Lord 				continue;
2123eabd5eb1SMark Lord 			}
2124eabd5eb1SMark Lord 			/*
2125eabd5eb1SMark Lord 			 * We don't need/want to read the hc_irq_cause register,
2126eabd5eb1SMark Lord 			 * because doing so hurts performance, and
2127eabd5eb1SMark Lord 			 * main_irq_cause already gives us everything we need.
2128eabd5eb1SMark Lord 			 *
2129eabd5eb1SMark Lord 			 * But we do have to *write* to the hc_irq_cause to ack
2130eabd5eb1SMark Lord 			 * the ports that we are handling this time through.
2131eabd5eb1SMark Lord 			 *
2132eabd5eb1SMark Lord 			 * This requires that we create a bitmap for those
2133eabd5eb1SMark Lord 			 * ports which interrupted us, and use that bitmap
2134eabd5eb1SMark Lord 			 * to ack (only) those ports via hc_irq_cause.
2135eabd5eb1SMark Lord 			 */
2136eabd5eb1SMark Lord 			ack_irqs = 0;
2137eabd5eb1SMark Lord 			for (p = 0; p < MV_PORTS_PER_HC; ++p) {
2138eabd5eb1SMark Lord 				if ((port + p) >= hpriv->n_ports)
2139eabd5eb1SMark Lord 					break;
2140eabd5eb1SMark Lord 				port_mask = (DONE_IRQ | ERR_IRQ) << (p * 2);
2141eabd5eb1SMark Lord 				if (hc_cause & port_mask)
2142eabd5eb1SMark Lord 					ack_irqs |= (DMA_IRQ | DEV_IRQ) << p;
2143eabd5eb1SMark Lord 			}
2144a3718c1fSMark Lord 			hc_mmio = mv_hc_base_from_port(mmio, port);
2145eabd5eb1SMark Lord 			writelfl(~ack_irqs, hc_mmio + HC_IRQ_CAUSE_OFS);
2146a3718c1fSMark Lord 			handled = 1;
2147a3718c1fSMark Lord 		}
2148a9010329SMark Lord 		/*
2149a9010329SMark Lord 		 * Handle interrupts signalled for this port:
2150a9010329SMark Lord 		 */
2151eabd5eb1SMark Lord 		port_cause = (main_irq_cause >> shift) & (DONE_IRQ | ERR_IRQ);
2152a9010329SMark Lord 		if (port_cause)
2153a9010329SMark Lord 			mv_port_intr(ap, port_cause);
2154eabd5eb1SMark Lord 	}
2155a3718c1fSMark Lord 	return handled;
2156c6fd2807SJeff Garzik }
2157c6fd2807SJeff Garzik 
2158a3718c1fSMark Lord static int mv_pci_error(struct ata_host *host, void __iomem *mmio)
2159bdd4dddeSJeff Garzik {
216002a121daSMark Lord 	struct mv_host_priv *hpriv = host->private_data;
2161bdd4dddeSJeff Garzik 	struct ata_port *ap;
2162bdd4dddeSJeff Garzik 	struct ata_queued_cmd *qc;
2163bdd4dddeSJeff Garzik 	struct ata_eh_info *ehi;
2164bdd4dddeSJeff Garzik 	unsigned int i, err_mask, printed = 0;
2165bdd4dddeSJeff Garzik 	u32 err_cause;
2166bdd4dddeSJeff Garzik 
216702a121daSMark Lord 	err_cause = readl(mmio + hpriv->irq_cause_ofs);
2168bdd4dddeSJeff Garzik 
2169bdd4dddeSJeff Garzik 	dev_printk(KERN_ERR, host->dev, "PCI ERROR; PCI IRQ cause=0x%08x\n",
2170bdd4dddeSJeff Garzik 		   err_cause);
2171bdd4dddeSJeff Garzik 
2172bdd4dddeSJeff Garzik 	DPRINTK("All regs @ PCI error\n");
2173bdd4dddeSJeff Garzik 	mv_dump_all_regs(mmio, -1, to_pci_dev(host->dev));
2174bdd4dddeSJeff Garzik 
217502a121daSMark Lord 	writelfl(0, mmio + hpriv->irq_cause_ofs);
2176bdd4dddeSJeff Garzik 
2177bdd4dddeSJeff Garzik 	for (i = 0; i < host->n_ports; i++) {
2178bdd4dddeSJeff Garzik 		ap = host->ports[i];
2179936fd732STejun Heo 		if (!ata_link_offline(&ap->link)) {
21809af5c9c9STejun Heo 			ehi = &ap->link.eh_info;
2181bdd4dddeSJeff Garzik 			ata_ehi_clear_desc(ehi);
2182bdd4dddeSJeff Garzik 			if (!printed++)
2183bdd4dddeSJeff Garzik 				ata_ehi_push_desc(ehi,
2184bdd4dddeSJeff Garzik 					"PCI err cause 0x%08x", err_cause);
2185bdd4dddeSJeff Garzik 			err_mask = AC_ERR_HOST_BUS;
2186cf480626STejun Heo 			ehi->action = ATA_EH_RESET;
21879af5c9c9STejun Heo 			qc = ata_qc_from_tag(ap, ap->link.active_tag);
2188bdd4dddeSJeff Garzik 			if (qc)
2189bdd4dddeSJeff Garzik 				qc->err_mask |= err_mask;
2190bdd4dddeSJeff Garzik 			else
2191bdd4dddeSJeff Garzik 				ehi->err_mask |= err_mask;
2192bdd4dddeSJeff Garzik 
2193bdd4dddeSJeff Garzik 			ata_port_freeze(ap);
2194bdd4dddeSJeff Garzik 		}
2195bdd4dddeSJeff Garzik 	}
2196a3718c1fSMark Lord 	return 1;	/* handled */
2197bdd4dddeSJeff Garzik }
2198bdd4dddeSJeff Garzik 
2199c6fd2807SJeff Garzik /**
2200c5d3e45aSJeff Garzik  *      mv_interrupt - Main interrupt event handler
2201c6fd2807SJeff Garzik  *      @irq: unused
2202c6fd2807SJeff Garzik  *      @dev_instance: private data; in this case the host structure
2203c6fd2807SJeff Garzik  *
2204c6fd2807SJeff Garzik  *      Read the read only register to determine if any host
2205c6fd2807SJeff Garzik  *      controllers have pending interrupts.  If so, call lower level
2206c6fd2807SJeff Garzik  *      routine to handle.  Also check for PCI errors which are only
2207c6fd2807SJeff Garzik  *      reported here.
2208c6fd2807SJeff Garzik  *
2209c6fd2807SJeff Garzik  *      LOCKING:
2210cca3974eSJeff Garzik  *      This routine holds the host lock while processing pending
2211c6fd2807SJeff Garzik  *      interrupts.
2212c6fd2807SJeff Garzik  */
22137d12e780SDavid Howells static irqreturn_t mv_interrupt(int irq, void *dev_instance)
2214c6fd2807SJeff Garzik {
2215cca3974eSJeff Garzik 	struct ata_host *host = dev_instance;
2216f351b2d6SSaeed Bishara 	struct mv_host_priv *hpriv = host->private_data;
2217a3718c1fSMark Lord 	unsigned int handled = 0;
221896e2c487SMark Lord 	u32 main_irq_cause, pending_irqs;
2219c6fd2807SJeff Garzik 
2220646a4da5SMark Lord 	spin_lock(&host->lock);
22217368f919SMark Lord 	main_irq_cause = readl(hpriv->main_irq_cause_addr);
222296e2c487SMark Lord 	pending_irqs   = main_irq_cause & hpriv->main_irq_mask;
2223352fab70SMark Lord 	/*
2224352fab70SMark Lord 	 * Deal with cases where we either have nothing pending, or have read
2225352fab70SMark Lord 	 * a bogus register value which can indicate HW removal or PCI fault.
2226c6fd2807SJeff Garzik 	 */
2227a44253d2SMark Lord 	if (pending_irqs && main_irq_cause != 0xffffffffU) {
22281f398472SMark Lord 		if (unlikely((pending_irqs & PCI_ERR) && !IS_SOC(hpriv)))
2229a3718c1fSMark Lord 			handled = mv_pci_error(host, hpriv->base);
2230a3718c1fSMark Lord 		else
2231a44253d2SMark Lord 			handled = mv_host_intr(host, pending_irqs);
2232bdd4dddeSJeff Garzik 	}
2233cca3974eSJeff Garzik 	spin_unlock(&host->lock);
2234c6fd2807SJeff Garzik 	return IRQ_RETVAL(handled);
2235c6fd2807SJeff Garzik }
2236c6fd2807SJeff Garzik 
2237c6fd2807SJeff Garzik static unsigned int mv5_scr_offset(unsigned int sc_reg_in)
2238c6fd2807SJeff Garzik {
2239c6fd2807SJeff Garzik 	unsigned int ofs;
2240c6fd2807SJeff Garzik 
2241c6fd2807SJeff Garzik 	switch (sc_reg_in) {
2242c6fd2807SJeff Garzik 	case SCR_STATUS:
2243c6fd2807SJeff Garzik 	case SCR_ERROR:
2244c6fd2807SJeff Garzik 	case SCR_CONTROL:
2245c6fd2807SJeff Garzik 		ofs = sc_reg_in * sizeof(u32);
2246c6fd2807SJeff Garzik 		break;
2247c6fd2807SJeff Garzik 	default:
2248c6fd2807SJeff Garzik 		ofs = 0xffffffffU;
2249c6fd2807SJeff Garzik 		break;
2250c6fd2807SJeff Garzik 	}
2251c6fd2807SJeff Garzik 	return ofs;
2252c6fd2807SJeff Garzik }
2253c6fd2807SJeff Garzik 
2254da3dbb17STejun Heo static int mv5_scr_read(struct ata_port *ap, unsigned int sc_reg_in, u32 *val)
2255c6fd2807SJeff Garzik {
2256f351b2d6SSaeed Bishara 	struct mv_host_priv *hpriv = ap->host->private_data;
2257f351b2d6SSaeed Bishara 	void __iomem *mmio = hpriv->base;
22580d5ff566STejun Heo 	void __iomem *addr = mv5_phy_base(mmio, ap->port_no);
2259c6fd2807SJeff Garzik 	unsigned int ofs = mv5_scr_offset(sc_reg_in);
2260c6fd2807SJeff Garzik 
2261da3dbb17STejun Heo 	if (ofs != 0xffffffffU) {
2262da3dbb17STejun Heo 		*val = readl(addr + ofs);
2263da3dbb17STejun Heo 		return 0;
2264da3dbb17STejun Heo 	} else
2265da3dbb17STejun Heo 		return -EINVAL;
2266c6fd2807SJeff Garzik }
2267c6fd2807SJeff Garzik 
2268da3dbb17STejun Heo static int mv5_scr_write(struct ata_port *ap, unsigned int sc_reg_in, u32 val)
2269c6fd2807SJeff Garzik {
2270f351b2d6SSaeed Bishara 	struct mv_host_priv *hpriv = ap->host->private_data;
2271f351b2d6SSaeed Bishara 	void __iomem *mmio = hpriv->base;
22720d5ff566STejun Heo 	void __iomem *addr = mv5_phy_base(mmio, ap->port_no);
2273c6fd2807SJeff Garzik 	unsigned int ofs = mv5_scr_offset(sc_reg_in);
2274c6fd2807SJeff Garzik 
2275da3dbb17STejun Heo 	if (ofs != 0xffffffffU) {
22760d5ff566STejun Heo 		writelfl(val, addr + ofs);
2277da3dbb17STejun Heo 		return 0;
2278da3dbb17STejun Heo 	} else
2279da3dbb17STejun Heo 		return -EINVAL;
2280c6fd2807SJeff Garzik }
2281c6fd2807SJeff Garzik 
22827bb3c529SSaeed Bishara static void mv5_reset_bus(struct ata_host *host, void __iomem *mmio)
2283c6fd2807SJeff Garzik {
22847bb3c529SSaeed Bishara 	struct pci_dev *pdev = to_pci_dev(host->dev);
2285c6fd2807SJeff Garzik 	int early_5080;
2286c6fd2807SJeff Garzik 
228744c10138SAuke Kok 	early_5080 = (pdev->device == 0x5080) && (pdev->revision == 0);
2288c6fd2807SJeff Garzik 
2289c6fd2807SJeff Garzik 	if (!early_5080) {
2290c6fd2807SJeff Garzik 		u32 tmp = readl(mmio + MV_PCI_EXP_ROM_BAR_CTL);
2291c6fd2807SJeff Garzik 		tmp |= (1 << 0);
2292c6fd2807SJeff Garzik 		writel(tmp, mmio + MV_PCI_EXP_ROM_BAR_CTL);
2293c6fd2807SJeff Garzik 	}
2294c6fd2807SJeff Garzik 
22957bb3c529SSaeed Bishara 	mv_reset_pci_bus(host, mmio);
2296c6fd2807SJeff Garzik }
2297c6fd2807SJeff Garzik 
2298c6fd2807SJeff Garzik static void mv5_reset_flash(struct mv_host_priv *hpriv, void __iomem *mmio)
2299c6fd2807SJeff Garzik {
23008e7decdbSMark Lord 	writel(0x0fcfffff, mmio + MV_FLASH_CTL_OFS);
2301c6fd2807SJeff Garzik }
2302c6fd2807SJeff Garzik 
2303c6fd2807SJeff Garzik static void mv5_read_preamp(struct mv_host_priv *hpriv, int idx,
2304c6fd2807SJeff Garzik 			   void __iomem *mmio)
2305c6fd2807SJeff Garzik {
2306c6fd2807SJeff Garzik 	void __iomem *phy_mmio = mv5_phy_base(mmio, idx);
2307c6fd2807SJeff Garzik 	u32 tmp;
2308c6fd2807SJeff Garzik 
2309c6fd2807SJeff Garzik 	tmp = readl(phy_mmio + MV5_PHY_MODE);
2310c6fd2807SJeff Garzik 
2311c6fd2807SJeff Garzik 	hpriv->signal[idx].pre = tmp & 0x1800;	/* bits 12:11 */
2312c6fd2807SJeff Garzik 	hpriv->signal[idx].amps = tmp & 0xe0;	/* bits 7:5 */
2313c6fd2807SJeff Garzik }
2314c6fd2807SJeff Garzik 
2315c6fd2807SJeff Garzik static void mv5_enable_leds(struct mv_host_priv *hpriv, void __iomem *mmio)
2316c6fd2807SJeff Garzik {
2317c6fd2807SJeff Garzik 	u32 tmp;
2318c6fd2807SJeff Garzik 
23198e7decdbSMark Lord 	writel(0, mmio + MV_GPIO_PORT_CTL_OFS);
2320c6fd2807SJeff Garzik 
2321c6fd2807SJeff Garzik 	/* FIXME: handle MV_HP_ERRATA_50XXB2 errata */
2322c6fd2807SJeff Garzik 
2323c6fd2807SJeff Garzik 	tmp = readl(mmio + MV_PCI_EXP_ROM_BAR_CTL);
2324c6fd2807SJeff Garzik 	tmp |= ~(1 << 0);
2325c6fd2807SJeff Garzik 	writel(tmp, mmio + MV_PCI_EXP_ROM_BAR_CTL);
2326c6fd2807SJeff Garzik }
2327c6fd2807SJeff Garzik 
2328c6fd2807SJeff Garzik static void mv5_phy_errata(struct mv_host_priv *hpriv, void __iomem *mmio,
2329c6fd2807SJeff Garzik 			   unsigned int port)
2330c6fd2807SJeff Garzik {
2331c6fd2807SJeff Garzik 	void __iomem *phy_mmio = mv5_phy_base(mmio, port);
2332c6fd2807SJeff Garzik 	const u32 mask = (1<<12) | (1<<11) | (1<<7) | (1<<6) | (1<<5);
2333c6fd2807SJeff Garzik 	u32 tmp;
2334c6fd2807SJeff Garzik 	int fix_apm_sq = (hpriv->hp_flags & MV_HP_ERRATA_50XXB0);
2335c6fd2807SJeff Garzik 
2336c6fd2807SJeff Garzik 	if (fix_apm_sq) {
23378e7decdbSMark Lord 		tmp = readl(phy_mmio + MV5_LTMODE_OFS);
2338c6fd2807SJeff Garzik 		tmp |= (1 << 19);
23398e7decdbSMark Lord 		writel(tmp, phy_mmio + MV5_LTMODE_OFS);
2340c6fd2807SJeff Garzik 
23418e7decdbSMark Lord 		tmp = readl(phy_mmio + MV5_PHY_CTL_OFS);
2342c6fd2807SJeff Garzik 		tmp &= ~0x3;
2343c6fd2807SJeff Garzik 		tmp |= 0x1;
23448e7decdbSMark Lord 		writel(tmp, phy_mmio + MV5_PHY_CTL_OFS);
2345c6fd2807SJeff Garzik 	}
2346c6fd2807SJeff Garzik 
2347c6fd2807SJeff Garzik 	tmp = readl(phy_mmio + MV5_PHY_MODE);
2348c6fd2807SJeff Garzik 	tmp &= ~mask;
2349c6fd2807SJeff Garzik 	tmp |= hpriv->signal[port].pre;
2350c6fd2807SJeff Garzik 	tmp |= hpriv->signal[port].amps;
2351c6fd2807SJeff Garzik 	writel(tmp, phy_mmio + MV5_PHY_MODE);
2352c6fd2807SJeff Garzik }
2353c6fd2807SJeff Garzik 
2354c6fd2807SJeff Garzik 
2355c6fd2807SJeff Garzik #undef ZERO
2356c6fd2807SJeff Garzik #define ZERO(reg) writel(0, port_mmio + (reg))
2357c6fd2807SJeff Garzik static void mv5_reset_hc_port(struct mv_host_priv *hpriv, void __iomem *mmio,
2358c6fd2807SJeff Garzik 			     unsigned int port)
2359c6fd2807SJeff Garzik {
2360c6fd2807SJeff Garzik 	void __iomem *port_mmio = mv_port_base(mmio, port);
2361c6fd2807SJeff Garzik 
2362e12bef50SMark Lord 	mv_reset_channel(hpriv, mmio, port);
2363c6fd2807SJeff Garzik 
2364c6fd2807SJeff Garzik 	ZERO(0x028);	/* command */
2365c6fd2807SJeff Garzik 	writel(0x11f, port_mmio + EDMA_CFG_OFS);
2366c6fd2807SJeff Garzik 	ZERO(0x004);	/* timer */
2367c6fd2807SJeff Garzik 	ZERO(0x008);	/* irq err cause */
2368c6fd2807SJeff Garzik 	ZERO(0x00c);	/* irq err mask */
2369c6fd2807SJeff Garzik 	ZERO(0x010);	/* rq bah */
2370c6fd2807SJeff Garzik 	ZERO(0x014);	/* rq inp */
2371c6fd2807SJeff Garzik 	ZERO(0x018);	/* rq outp */
2372c6fd2807SJeff Garzik 	ZERO(0x01c);	/* respq bah */
2373c6fd2807SJeff Garzik 	ZERO(0x024);	/* respq outp */
2374c6fd2807SJeff Garzik 	ZERO(0x020);	/* respq inp */
2375c6fd2807SJeff Garzik 	ZERO(0x02c);	/* test control */
23768e7decdbSMark Lord 	writel(0xbc, port_mmio + EDMA_IORDY_TMOUT_OFS);
2377c6fd2807SJeff Garzik }
2378c6fd2807SJeff Garzik #undef ZERO
2379c6fd2807SJeff Garzik 
2380c6fd2807SJeff Garzik #define ZERO(reg) writel(0, hc_mmio + (reg))
2381c6fd2807SJeff Garzik static void mv5_reset_one_hc(struct mv_host_priv *hpriv, void __iomem *mmio,
2382c6fd2807SJeff Garzik 			unsigned int hc)
2383c6fd2807SJeff Garzik {
2384c6fd2807SJeff Garzik 	void __iomem *hc_mmio = mv_hc_base(mmio, hc);
2385c6fd2807SJeff Garzik 	u32 tmp;
2386c6fd2807SJeff Garzik 
2387c6fd2807SJeff Garzik 	ZERO(0x00c);
2388c6fd2807SJeff Garzik 	ZERO(0x010);
2389c6fd2807SJeff Garzik 	ZERO(0x014);
2390c6fd2807SJeff Garzik 	ZERO(0x018);
2391c6fd2807SJeff Garzik 
2392c6fd2807SJeff Garzik 	tmp = readl(hc_mmio + 0x20);
2393c6fd2807SJeff Garzik 	tmp &= 0x1c1c1c1c;
2394c6fd2807SJeff Garzik 	tmp |= 0x03030303;
2395c6fd2807SJeff Garzik 	writel(tmp, hc_mmio + 0x20);
2396c6fd2807SJeff Garzik }
2397c6fd2807SJeff Garzik #undef ZERO
2398c6fd2807SJeff Garzik 
2399c6fd2807SJeff Garzik static int mv5_reset_hc(struct mv_host_priv *hpriv, void __iomem *mmio,
2400c6fd2807SJeff Garzik 			unsigned int n_hc)
2401c6fd2807SJeff Garzik {
2402c6fd2807SJeff Garzik 	unsigned int hc, port;
2403c6fd2807SJeff Garzik 
2404c6fd2807SJeff Garzik 	for (hc = 0; hc < n_hc; hc++) {
2405c6fd2807SJeff Garzik 		for (port = 0; port < MV_PORTS_PER_HC; port++)
2406c6fd2807SJeff Garzik 			mv5_reset_hc_port(hpriv, mmio,
2407c6fd2807SJeff Garzik 					  (hc * MV_PORTS_PER_HC) + port);
2408c6fd2807SJeff Garzik 
2409c6fd2807SJeff Garzik 		mv5_reset_one_hc(hpriv, mmio, hc);
2410c6fd2807SJeff Garzik 	}
2411c6fd2807SJeff Garzik 
2412c6fd2807SJeff Garzik 	return 0;
2413c6fd2807SJeff Garzik }
2414c6fd2807SJeff Garzik 
2415c6fd2807SJeff Garzik #undef ZERO
2416c6fd2807SJeff Garzik #define ZERO(reg) writel(0, mmio + (reg))
24177bb3c529SSaeed Bishara static void mv_reset_pci_bus(struct ata_host *host, void __iomem *mmio)
2418c6fd2807SJeff Garzik {
241902a121daSMark Lord 	struct mv_host_priv *hpriv = host->private_data;
2420c6fd2807SJeff Garzik 	u32 tmp;
2421c6fd2807SJeff Garzik 
24228e7decdbSMark Lord 	tmp = readl(mmio + MV_PCI_MODE_OFS);
2423c6fd2807SJeff Garzik 	tmp &= 0xff00ffff;
24248e7decdbSMark Lord 	writel(tmp, mmio + MV_PCI_MODE_OFS);
2425c6fd2807SJeff Garzik 
2426c6fd2807SJeff Garzik 	ZERO(MV_PCI_DISC_TIMER);
2427c6fd2807SJeff Garzik 	ZERO(MV_PCI_MSI_TRIGGER);
24288e7decdbSMark Lord 	writel(0x000100ff, mmio + MV_PCI_XBAR_TMOUT_OFS);
2429c6fd2807SJeff Garzik 	ZERO(MV_PCI_SERR_MASK);
243002a121daSMark Lord 	ZERO(hpriv->irq_cause_ofs);
243102a121daSMark Lord 	ZERO(hpriv->irq_mask_ofs);
2432c6fd2807SJeff Garzik 	ZERO(MV_PCI_ERR_LOW_ADDRESS);
2433c6fd2807SJeff Garzik 	ZERO(MV_PCI_ERR_HIGH_ADDRESS);
2434c6fd2807SJeff Garzik 	ZERO(MV_PCI_ERR_ATTRIBUTE);
2435c6fd2807SJeff Garzik 	ZERO(MV_PCI_ERR_COMMAND);
2436c6fd2807SJeff Garzik }
2437c6fd2807SJeff Garzik #undef ZERO
2438c6fd2807SJeff Garzik 
2439c6fd2807SJeff Garzik static void mv6_reset_flash(struct mv_host_priv *hpriv, void __iomem *mmio)
2440c6fd2807SJeff Garzik {
2441c6fd2807SJeff Garzik 	u32 tmp;
2442c6fd2807SJeff Garzik 
2443c6fd2807SJeff Garzik 	mv5_reset_flash(hpriv, mmio);
2444c6fd2807SJeff Garzik 
24458e7decdbSMark Lord 	tmp = readl(mmio + MV_GPIO_PORT_CTL_OFS);
2446c6fd2807SJeff Garzik 	tmp &= 0x3;
2447c6fd2807SJeff Garzik 	tmp |= (1 << 5) | (1 << 6);
24488e7decdbSMark Lord 	writel(tmp, mmio + MV_GPIO_PORT_CTL_OFS);
2449c6fd2807SJeff Garzik }
2450c6fd2807SJeff Garzik 
2451c6fd2807SJeff Garzik /**
2452c6fd2807SJeff Garzik  *      mv6_reset_hc - Perform the 6xxx global soft reset
2453c6fd2807SJeff Garzik  *      @mmio: base address of the HBA
2454c6fd2807SJeff Garzik  *
2455c6fd2807SJeff Garzik  *      This routine only applies to 6xxx parts.
2456c6fd2807SJeff Garzik  *
2457c6fd2807SJeff Garzik  *      LOCKING:
2458c6fd2807SJeff Garzik  *      Inherited from caller.
2459c6fd2807SJeff Garzik  */
2460c6fd2807SJeff Garzik static int mv6_reset_hc(struct mv_host_priv *hpriv, void __iomem *mmio,
2461c6fd2807SJeff Garzik 			unsigned int n_hc)
2462c6fd2807SJeff Garzik {
2463c6fd2807SJeff Garzik 	void __iomem *reg = mmio + PCI_MAIN_CMD_STS_OFS;
2464c6fd2807SJeff Garzik 	int i, rc = 0;
2465c6fd2807SJeff Garzik 	u32 t;
2466c6fd2807SJeff Garzik 
2467c6fd2807SJeff Garzik 	/* Following procedure defined in PCI "main command and status
2468c6fd2807SJeff Garzik 	 * register" table.
2469c6fd2807SJeff Garzik 	 */
2470c6fd2807SJeff Garzik 	t = readl(reg);
2471c6fd2807SJeff Garzik 	writel(t | STOP_PCI_MASTER, reg);
2472c6fd2807SJeff Garzik 
2473c6fd2807SJeff Garzik 	for (i = 0; i < 1000; i++) {
2474c6fd2807SJeff Garzik 		udelay(1);
2475c6fd2807SJeff Garzik 		t = readl(reg);
24762dcb407eSJeff Garzik 		if (PCI_MASTER_EMPTY & t)
2477c6fd2807SJeff Garzik 			break;
2478c6fd2807SJeff Garzik 	}
2479c6fd2807SJeff Garzik 	if (!(PCI_MASTER_EMPTY & t)) {
2480c6fd2807SJeff Garzik 		printk(KERN_ERR DRV_NAME ": PCI master won't flush\n");
2481c6fd2807SJeff Garzik 		rc = 1;
2482c6fd2807SJeff Garzik 		goto done;
2483c6fd2807SJeff Garzik 	}
2484c6fd2807SJeff Garzik 
2485c6fd2807SJeff Garzik 	/* set reset */
2486c6fd2807SJeff Garzik 	i = 5;
2487c6fd2807SJeff Garzik 	do {
2488c6fd2807SJeff Garzik 		writel(t | GLOB_SFT_RST, reg);
2489c6fd2807SJeff Garzik 		t = readl(reg);
2490c6fd2807SJeff Garzik 		udelay(1);
2491c6fd2807SJeff Garzik 	} while (!(GLOB_SFT_RST & t) && (i-- > 0));
2492c6fd2807SJeff Garzik 
2493c6fd2807SJeff Garzik 	if (!(GLOB_SFT_RST & t)) {
2494c6fd2807SJeff Garzik 		printk(KERN_ERR DRV_NAME ": can't set global reset\n");
2495c6fd2807SJeff Garzik 		rc = 1;
2496c6fd2807SJeff Garzik 		goto done;
2497c6fd2807SJeff Garzik 	}
2498c6fd2807SJeff Garzik 
2499c6fd2807SJeff Garzik 	/* clear reset and *reenable the PCI master* (not mentioned in spec) */
2500c6fd2807SJeff Garzik 	i = 5;
2501c6fd2807SJeff Garzik 	do {
2502c6fd2807SJeff Garzik 		writel(t & ~(GLOB_SFT_RST | STOP_PCI_MASTER), reg);
2503c6fd2807SJeff Garzik 		t = readl(reg);
2504c6fd2807SJeff Garzik 		udelay(1);
2505c6fd2807SJeff Garzik 	} while ((GLOB_SFT_RST & t) && (i-- > 0));
2506c6fd2807SJeff Garzik 
2507c6fd2807SJeff Garzik 	if (GLOB_SFT_RST & t) {
2508c6fd2807SJeff Garzik 		printk(KERN_ERR DRV_NAME ": can't clear global reset\n");
2509c6fd2807SJeff Garzik 		rc = 1;
2510c6fd2807SJeff Garzik 	}
2511c6fd2807SJeff Garzik done:
2512c6fd2807SJeff Garzik 	return rc;
2513c6fd2807SJeff Garzik }
2514c6fd2807SJeff Garzik 
2515c6fd2807SJeff Garzik static void mv6_read_preamp(struct mv_host_priv *hpriv, int idx,
2516c6fd2807SJeff Garzik 			   void __iomem *mmio)
2517c6fd2807SJeff Garzik {
2518c6fd2807SJeff Garzik 	void __iomem *port_mmio;
2519c6fd2807SJeff Garzik 	u32 tmp;
2520c6fd2807SJeff Garzik 
25218e7decdbSMark Lord 	tmp = readl(mmio + MV_RESET_CFG_OFS);
2522c6fd2807SJeff Garzik 	if ((tmp & (1 << 0)) == 0) {
2523c6fd2807SJeff Garzik 		hpriv->signal[idx].amps = 0x7 << 8;
2524c6fd2807SJeff Garzik 		hpriv->signal[idx].pre = 0x1 << 5;
2525c6fd2807SJeff Garzik 		return;
2526c6fd2807SJeff Garzik 	}
2527c6fd2807SJeff Garzik 
2528c6fd2807SJeff Garzik 	port_mmio = mv_port_base(mmio, idx);
2529c6fd2807SJeff Garzik 	tmp = readl(port_mmio + PHY_MODE2);
2530c6fd2807SJeff Garzik 
2531c6fd2807SJeff Garzik 	hpriv->signal[idx].amps = tmp & 0x700;	/* bits 10:8 */
2532c6fd2807SJeff Garzik 	hpriv->signal[idx].pre = tmp & 0xe0;	/* bits 7:5 */
2533c6fd2807SJeff Garzik }
2534c6fd2807SJeff Garzik 
2535c6fd2807SJeff Garzik static void mv6_enable_leds(struct mv_host_priv *hpriv, void __iomem *mmio)
2536c6fd2807SJeff Garzik {
25378e7decdbSMark Lord 	writel(0x00000060, mmio + MV_GPIO_PORT_CTL_OFS);
2538c6fd2807SJeff Garzik }
2539c6fd2807SJeff Garzik 
2540c6fd2807SJeff Garzik static void mv6_phy_errata(struct mv_host_priv *hpriv, void __iomem *mmio,
2541c6fd2807SJeff Garzik 			   unsigned int port)
2542c6fd2807SJeff Garzik {
2543c6fd2807SJeff Garzik 	void __iomem *port_mmio = mv_port_base(mmio, port);
2544c6fd2807SJeff Garzik 
2545c6fd2807SJeff Garzik 	u32 hp_flags = hpriv->hp_flags;
2546c6fd2807SJeff Garzik 	int fix_phy_mode2 =
2547c6fd2807SJeff Garzik 		hp_flags & (MV_HP_ERRATA_60X1B2 | MV_HP_ERRATA_60X1C0);
2548c6fd2807SJeff Garzik 	int fix_phy_mode4 =
2549c6fd2807SJeff Garzik 		hp_flags & (MV_HP_ERRATA_60X1B2 | MV_HP_ERRATA_60X1C0);
25508c30a8b9SMark Lord 	u32 m2, m3;
2551c6fd2807SJeff Garzik 
2552c6fd2807SJeff Garzik 	if (fix_phy_mode2) {
2553c6fd2807SJeff Garzik 		m2 = readl(port_mmio + PHY_MODE2);
2554c6fd2807SJeff Garzik 		m2 &= ~(1 << 16);
2555c6fd2807SJeff Garzik 		m2 |= (1 << 31);
2556c6fd2807SJeff Garzik 		writel(m2, port_mmio + PHY_MODE2);
2557c6fd2807SJeff Garzik 
2558c6fd2807SJeff Garzik 		udelay(200);
2559c6fd2807SJeff Garzik 
2560c6fd2807SJeff Garzik 		m2 = readl(port_mmio + PHY_MODE2);
2561c6fd2807SJeff Garzik 		m2 &= ~((1 << 16) | (1 << 31));
2562c6fd2807SJeff Garzik 		writel(m2, port_mmio + PHY_MODE2);
2563c6fd2807SJeff Garzik 
2564c6fd2807SJeff Garzik 		udelay(200);
2565c6fd2807SJeff Garzik 	}
2566c6fd2807SJeff Garzik 
25678c30a8b9SMark Lord 	/*
25688c30a8b9SMark Lord 	 * Gen-II/IIe PHY_MODE3 errata RM#2:
25698c30a8b9SMark Lord 	 * Achieves better receiver noise performance than the h/w default:
25708c30a8b9SMark Lord 	 */
25718c30a8b9SMark Lord 	m3 = readl(port_mmio + PHY_MODE3);
25728c30a8b9SMark Lord 	m3 = (m3 & 0x1f) | (0x5555601 << 5);
2573c6fd2807SJeff Garzik 
25740388a8c0SMark Lord 	/* Guideline 88F5182 (GL# SATA-S11) */
25750388a8c0SMark Lord 	if (IS_SOC(hpriv))
25760388a8c0SMark Lord 		m3 &= ~0x1c;
25770388a8c0SMark Lord 
2578c6fd2807SJeff Garzik 	if (fix_phy_mode4) {
2579ba069e37SMark Lord 		u32 m4 = readl(port_mmio + PHY_MODE4);
2580ba069e37SMark Lord 		/*
2581ba069e37SMark Lord 		 * Enforce reserved-bit restrictions on GenIIe devices only.
2582ba069e37SMark Lord 		 * For earlier chipsets, force only the internal config field
2583ba069e37SMark Lord 		 *  (workaround for errata FEr SATA#10 part 1).
2584ba069e37SMark Lord 		 */
25858c30a8b9SMark Lord 		if (IS_GEN_IIE(hpriv))
2586ba069e37SMark Lord 			m4 = (m4 & ~PHY_MODE4_RSVD_ZEROS) | PHY_MODE4_RSVD_ONES;
2587ba069e37SMark Lord 		else
2588ba069e37SMark Lord 			m4 = (m4 & ~PHY_MODE4_CFG_MASK) | PHY_MODE4_CFG_VALUE;
25898c30a8b9SMark Lord 		writel(m4, port_mmio + PHY_MODE4);
2590c6fd2807SJeff Garzik 	}
2591b406c7a6SMark Lord 	/*
2592b406c7a6SMark Lord 	 * Workaround for 60x1-B2 errata SATA#13:
2593b406c7a6SMark Lord 	 * Any write to PHY_MODE4 (above) may corrupt PHY_MODE3,
2594b406c7a6SMark Lord 	 * so we must always rewrite PHY_MODE3 after PHY_MODE4.
2595b406c7a6SMark Lord 	 */
2596b406c7a6SMark Lord 	writel(m3, port_mmio + PHY_MODE3);
2597c6fd2807SJeff Garzik 
2598c6fd2807SJeff Garzik 	/* Revert values of pre-emphasis and signal amps to the saved ones */
2599c6fd2807SJeff Garzik 	m2 = readl(port_mmio + PHY_MODE2);
2600c6fd2807SJeff Garzik 
2601c6fd2807SJeff Garzik 	m2 &= ~MV_M2_PREAMP_MASK;
2602c6fd2807SJeff Garzik 	m2 |= hpriv->signal[port].amps;
2603c6fd2807SJeff Garzik 	m2 |= hpriv->signal[port].pre;
2604c6fd2807SJeff Garzik 	m2 &= ~(1 << 16);
2605c6fd2807SJeff Garzik 
2606c6fd2807SJeff Garzik 	/* according to mvSata 3.6.1, some IIE values are fixed */
2607c6fd2807SJeff Garzik 	if (IS_GEN_IIE(hpriv)) {
2608c6fd2807SJeff Garzik 		m2 &= ~0xC30FF01F;
2609c6fd2807SJeff Garzik 		m2 |= 0x0000900F;
2610c6fd2807SJeff Garzik 	}
2611c6fd2807SJeff Garzik 
2612c6fd2807SJeff Garzik 	writel(m2, port_mmio + PHY_MODE2);
2613c6fd2807SJeff Garzik }
2614c6fd2807SJeff Garzik 
2615f351b2d6SSaeed Bishara /* TODO: use the generic LED interface to configure the SATA Presence */
2616f351b2d6SSaeed Bishara /* & Acitivy LEDs on the board */
2617f351b2d6SSaeed Bishara static void mv_soc_enable_leds(struct mv_host_priv *hpriv,
2618f351b2d6SSaeed Bishara 				      void __iomem *mmio)
2619f351b2d6SSaeed Bishara {
2620f351b2d6SSaeed Bishara 	return;
2621f351b2d6SSaeed Bishara }
2622f351b2d6SSaeed Bishara 
2623f351b2d6SSaeed Bishara static void mv_soc_read_preamp(struct mv_host_priv *hpriv, int idx,
2624f351b2d6SSaeed Bishara 			   void __iomem *mmio)
2625f351b2d6SSaeed Bishara {
2626f351b2d6SSaeed Bishara 	void __iomem *port_mmio;
2627f351b2d6SSaeed Bishara 	u32 tmp;
2628f351b2d6SSaeed Bishara 
2629f351b2d6SSaeed Bishara 	port_mmio = mv_port_base(mmio, idx);
2630f351b2d6SSaeed Bishara 	tmp = readl(port_mmio + PHY_MODE2);
2631f351b2d6SSaeed Bishara 
2632f351b2d6SSaeed Bishara 	hpriv->signal[idx].amps = tmp & 0x700;	/* bits 10:8 */
2633f351b2d6SSaeed Bishara 	hpriv->signal[idx].pre = tmp & 0xe0;	/* bits 7:5 */
2634f351b2d6SSaeed Bishara }
2635f351b2d6SSaeed Bishara 
2636f351b2d6SSaeed Bishara #undef ZERO
2637f351b2d6SSaeed Bishara #define ZERO(reg) writel(0, port_mmio + (reg))
2638f351b2d6SSaeed Bishara static void mv_soc_reset_hc_port(struct mv_host_priv *hpriv,
2639f351b2d6SSaeed Bishara 					void __iomem *mmio, unsigned int port)
2640f351b2d6SSaeed Bishara {
2641f351b2d6SSaeed Bishara 	void __iomem *port_mmio = mv_port_base(mmio, port);
2642f351b2d6SSaeed Bishara 
2643e12bef50SMark Lord 	mv_reset_channel(hpriv, mmio, port);
2644f351b2d6SSaeed Bishara 
2645f351b2d6SSaeed Bishara 	ZERO(0x028);		/* command */
2646f351b2d6SSaeed Bishara 	writel(0x101f, port_mmio + EDMA_CFG_OFS);
2647f351b2d6SSaeed Bishara 	ZERO(0x004);		/* timer */
2648f351b2d6SSaeed Bishara 	ZERO(0x008);		/* irq err cause */
2649f351b2d6SSaeed Bishara 	ZERO(0x00c);		/* irq err mask */
2650f351b2d6SSaeed Bishara 	ZERO(0x010);		/* rq bah */
2651f351b2d6SSaeed Bishara 	ZERO(0x014);		/* rq inp */
2652f351b2d6SSaeed Bishara 	ZERO(0x018);		/* rq outp */
2653f351b2d6SSaeed Bishara 	ZERO(0x01c);		/* respq bah */
2654f351b2d6SSaeed Bishara 	ZERO(0x024);		/* respq outp */
2655f351b2d6SSaeed Bishara 	ZERO(0x020);		/* respq inp */
2656f351b2d6SSaeed Bishara 	ZERO(0x02c);		/* test control */
26578e7decdbSMark Lord 	writel(0xbc, port_mmio + EDMA_IORDY_TMOUT_OFS);
2658f351b2d6SSaeed Bishara }
2659f351b2d6SSaeed Bishara 
2660f351b2d6SSaeed Bishara #undef ZERO
2661f351b2d6SSaeed Bishara 
2662f351b2d6SSaeed Bishara #define ZERO(reg) writel(0, hc_mmio + (reg))
2663f351b2d6SSaeed Bishara static void mv_soc_reset_one_hc(struct mv_host_priv *hpriv,
2664f351b2d6SSaeed Bishara 				       void __iomem *mmio)
2665f351b2d6SSaeed Bishara {
2666f351b2d6SSaeed Bishara 	void __iomem *hc_mmio = mv_hc_base(mmio, 0);
2667f351b2d6SSaeed Bishara 
2668f351b2d6SSaeed Bishara 	ZERO(0x00c);
2669f351b2d6SSaeed Bishara 	ZERO(0x010);
2670f351b2d6SSaeed Bishara 	ZERO(0x014);
2671f351b2d6SSaeed Bishara 
2672f351b2d6SSaeed Bishara }
2673f351b2d6SSaeed Bishara 
2674f351b2d6SSaeed Bishara #undef ZERO
2675f351b2d6SSaeed Bishara 
2676f351b2d6SSaeed Bishara static int mv_soc_reset_hc(struct mv_host_priv *hpriv,
2677f351b2d6SSaeed Bishara 				  void __iomem *mmio, unsigned int n_hc)
2678f351b2d6SSaeed Bishara {
2679f351b2d6SSaeed Bishara 	unsigned int port;
2680f351b2d6SSaeed Bishara 
2681f351b2d6SSaeed Bishara 	for (port = 0; port < hpriv->n_ports; port++)
2682f351b2d6SSaeed Bishara 		mv_soc_reset_hc_port(hpriv, mmio, port);
2683f351b2d6SSaeed Bishara 
2684f351b2d6SSaeed Bishara 	mv_soc_reset_one_hc(hpriv, mmio);
2685f351b2d6SSaeed Bishara 
2686f351b2d6SSaeed Bishara 	return 0;
2687f351b2d6SSaeed Bishara }
2688f351b2d6SSaeed Bishara 
2689f351b2d6SSaeed Bishara static void mv_soc_reset_flash(struct mv_host_priv *hpriv,
2690f351b2d6SSaeed Bishara 				      void __iomem *mmio)
2691f351b2d6SSaeed Bishara {
2692f351b2d6SSaeed Bishara 	return;
2693f351b2d6SSaeed Bishara }
2694f351b2d6SSaeed Bishara 
2695f351b2d6SSaeed Bishara static void mv_soc_reset_bus(struct ata_host *host, void __iomem *mmio)
2696f351b2d6SSaeed Bishara {
2697f351b2d6SSaeed Bishara 	return;
2698f351b2d6SSaeed Bishara }
2699f351b2d6SSaeed Bishara 
27008e7decdbSMark Lord static void mv_setup_ifcfg(void __iomem *port_mmio, int want_gen2i)
2701b67a1064SMark Lord {
27028e7decdbSMark Lord 	u32 ifcfg = readl(port_mmio + SATA_INTERFACE_CFG_OFS);
2703b67a1064SMark Lord 
27048e7decdbSMark Lord 	ifcfg = (ifcfg & 0xf7f) | 0x9b1000;	/* from chip spec */
2705b67a1064SMark Lord 	if (want_gen2i)
27068e7decdbSMark Lord 		ifcfg |= (1 << 7);		/* enable gen2i speed */
27078e7decdbSMark Lord 	writelfl(ifcfg, port_mmio + SATA_INTERFACE_CFG_OFS);
2708b67a1064SMark Lord }
2709b67a1064SMark Lord 
2710e12bef50SMark Lord static void mv_reset_channel(struct mv_host_priv *hpriv, void __iomem *mmio,
2711c6fd2807SJeff Garzik 			     unsigned int port_no)
2712c6fd2807SJeff Garzik {
2713c6fd2807SJeff Garzik 	void __iomem *port_mmio = mv_port_base(mmio, port_no);
2714c6fd2807SJeff Garzik 
27158e7decdbSMark Lord 	/*
27168e7decdbSMark Lord 	 * The datasheet warns against setting EDMA_RESET when EDMA is active
27178e7decdbSMark Lord 	 * (but doesn't say what the problem might be).  So we first try
27188e7decdbSMark Lord 	 * to disable the EDMA engine before doing the EDMA_RESET operation.
27198e7decdbSMark Lord 	 */
27200d8be5cbSMark Lord 	mv_stop_edma_engine(port_mmio);
27218e7decdbSMark Lord 	writelfl(EDMA_RESET, port_mmio + EDMA_CMD_OFS);
2722c6fd2807SJeff Garzik 
2723b67a1064SMark Lord 	if (!IS_GEN_I(hpriv)) {
27248e7decdbSMark Lord 		/* Enable 3.0gb/s link speed: this survives EDMA_RESET */
27258e7decdbSMark Lord 		mv_setup_ifcfg(port_mmio, 1);
2726c6fd2807SJeff Garzik 	}
2727b67a1064SMark Lord 	/*
27288e7decdbSMark Lord 	 * Strobing EDMA_RESET here causes a hard reset of the SATA transport,
2729b67a1064SMark Lord 	 * link, and physical layers.  It resets all SATA interface registers
2730b67a1064SMark Lord 	 * (except for SATA_INTERFACE_CFG), and issues a COMRESET to the dev.
2731c6fd2807SJeff Garzik 	 */
27328e7decdbSMark Lord 	writelfl(EDMA_RESET, port_mmio + EDMA_CMD_OFS);
2733b67a1064SMark Lord 	udelay(25);	/* allow reset propagation */
2734c6fd2807SJeff Garzik 	writelfl(0, port_mmio + EDMA_CMD_OFS);
2735c6fd2807SJeff Garzik 
2736c6fd2807SJeff Garzik 	hpriv->ops->phy_errata(hpriv, mmio, port_no);
2737c6fd2807SJeff Garzik 
2738ee9ccdf7SJeff Garzik 	if (IS_GEN_I(hpriv))
2739c6fd2807SJeff Garzik 		mdelay(1);
2740c6fd2807SJeff Garzik }
2741c6fd2807SJeff Garzik 
2742e49856d8SMark Lord static void mv_pmp_select(struct ata_port *ap, int pmp)
2743e49856d8SMark Lord {
2744e49856d8SMark Lord 	if (sata_pmp_supported(ap)) {
2745e49856d8SMark Lord 		void __iomem *port_mmio = mv_ap_base(ap);
2746e49856d8SMark Lord 		u32 reg = readl(port_mmio + SATA_IFCTL_OFS);
2747e49856d8SMark Lord 		int old = reg & 0xf;
2748e49856d8SMark Lord 
2749e49856d8SMark Lord 		if (old != pmp) {
2750e49856d8SMark Lord 			reg = (reg & ~0xf) | pmp;
2751e49856d8SMark Lord 			writelfl(reg, port_mmio + SATA_IFCTL_OFS);
2752e49856d8SMark Lord 		}
2753e49856d8SMark Lord 	}
2754e49856d8SMark Lord }
2755e49856d8SMark Lord 
2756e49856d8SMark Lord static int mv_pmp_hardreset(struct ata_link *link, unsigned int *class,
2757bdd4dddeSJeff Garzik 				unsigned long deadline)
2758c6fd2807SJeff Garzik {
2759e49856d8SMark Lord 	mv_pmp_select(link->ap, sata_srst_pmp(link));
2760e49856d8SMark Lord 	return sata_std_hardreset(link, class, deadline);
2761e49856d8SMark Lord }
2762c6fd2807SJeff Garzik 
2763e49856d8SMark Lord static int mv_softreset(struct ata_link *link, unsigned int *class,
2764e49856d8SMark Lord 				unsigned long deadline)
2765da3dbb17STejun Heo {
2766e49856d8SMark Lord 	mv_pmp_select(link->ap, sata_srst_pmp(link));
2767e49856d8SMark Lord 	return ata_sff_softreset(link, class, deadline);
2768bdd4dddeSJeff Garzik }
2769bdd4dddeSJeff Garzik 
2770cc0680a5STejun Heo static int mv_hardreset(struct ata_link *link, unsigned int *class,
2771bdd4dddeSJeff Garzik 			unsigned long deadline)
2772bdd4dddeSJeff Garzik {
2773cc0680a5STejun Heo 	struct ata_port *ap = link->ap;
2774bdd4dddeSJeff Garzik 	struct mv_host_priv *hpriv = ap->host->private_data;
2775b562468cSMark Lord 	struct mv_port_priv *pp = ap->private_data;
2776f351b2d6SSaeed Bishara 	void __iomem *mmio = hpriv->base;
27770d8be5cbSMark Lord 	int rc, attempts = 0, extra = 0;
27780d8be5cbSMark Lord 	u32 sstatus;
27790d8be5cbSMark Lord 	bool online;
2780bdd4dddeSJeff Garzik 
2781e12bef50SMark Lord 	mv_reset_channel(hpriv, mmio, ap->port_no);
2782b562468cSMark Lord 	pp->pp_flags &= ~MV_PP_FLAG_EDMA_EN;
2783bdd4dddeSJeff Garzik 
27840d8be5cbSMark Lord 	/* Workaround for errata FEr SATA#10 (part 2) */
27850d8be5cbSMark Lord 	do {
278617c5aab5SMark Lord 		const unsigned long *timing =
278717c5aab5SMark Lord 				sata_ehc_deb_timing(&link->eh_context);
2788bdd4dddeSJeff Garzik 
278917c5aab5SMark Lord 		rc = sata_link_hardreset(link, timing, deadline + extra,
279017c5aab5SMark Lord 					 &online, NULL);
27919dcffd99SMark Lord 		rc = online ? -EAGAIN : rc;
279217c5aab5SMark Lord 		if (rc)
27930d8be5cbSMark Lord 			return rc;
27940d8be5cbSMark Lord 		sata_scr_read(link, SCR_STATUS, &sstatus);
27950d8be5cbSMark Lord 		if (!IS_GEN_I(hpriv) && ++attempts >= 5 && sstatus == 0x121) {
27960d8be5cbSMark Lord 			/* Force 1.5gb/s link speed and try again */
27978e7decdbSMark Lord 			mv_setup_ifcfg(mv_ap_base(ap), 0);
27980d8be5cbSMark Lord 			if (time_after(jiffies + HZ, deadline))
27990d8be5cbSMark Lord 				extra = HZ; /* only extend it once, max */
2800bdd4dddeSJeff Garzik 		}
28010d8be5cbSMark Lord 	} while (sstatus != 0x0 && sstatus != 0x113 && sstatus != 0x123);
2802bdd4dddeSJeff Garzik 
280317c5aab5SMark Lord 	return rc;
2804bdd4dddeSJeff Garzik }
2805bdd4dddeSJeff Garzik 
2806bdd4dddeSJeff Garzik static void mv_eh_freeze(struct ata_port *ap)
2807c6fd2807SJeff Garzik {
28081cfd19aeSMark Lord 	mv_stop_edma(ap);
2809c4de573bSMark Lord 	mv_enable_port_irqs(ap, 0);
2810c6fd2807SJeff Garzik }
2811bdd4dddeSJeff Garzik 
2812bdd4dddeSJeff Garzik static void mv_eh_thaw(struct ata_port *ap)
2813bdd4dddeSJeff Garzik {
2814f351b2d6SSaeed Bishara 	struct mv_host_priv *hpriv = ap->host->private_data;
2815c4de573bSMark Lord 	unsigned int port = ap->port_no;
2816c4de573bSMark Lord 	unsigned int hardport = mv_hardport_from_port(port);
28171cfd19aeSMark Lord 	void __iomem *hc_mmio = mv_hc_base_from_port(hpriv->base, port);
2818bdd4dddeSJeff Garzik 	void __iomem *port_mmio = mv_ap_base(ap);
2819c4de573bSMark Lord 	u32 hc_irq_cause;
2820bdd4dddeSJeff Garzik 
2821bdd4dddeSJeff Garzik 	/* clear EDMA errors on this port */
2822bdd4dddeSJeff Garzik 	writel(0, port_mmio + EDMA_ERR_IRQ_CAUSE_OFS);
2823bdd4dddeSJeff Garzik 
2824bdd4dddeSJeff Garzik 	/* clear pending irq events */
2825bdd4dddeSJeff Garzik 	hc_irq_cause = readl(hc_mmio + HC_IRQ_CAUSE_OFS);
28261cfd19aeSMark Lord 	hc_irq_cause &= ~((DEV_IRQ | DMA_IRQ) << hardport);
28271cfd19aeSMark Lord 	writelfl(hc_irq_cause, hc_mmio + HC_IRQ_CAUSE_OFS);
2828bdd4dddeSJeff Garzik 
282988e675e1SMark Lord 	mv_enable_port_irqs(ap, ERR_IRQ);
2830c6fd2807SJeff Garzik }
2831c6fd2807SJeff Garzik 
2832c6fd2807SJeff Garzik /**
2833c6fd2807SJeff Garzik  *      mv_port_init - Perform some early initialization on a single port.
2834c6fd2807SJeff Garzik  *      @port: libata data structure storing shadow register addresses
2835c6fd2807SJeff Garzik  *      @port_mmio: base address of the port
2836c6fd2807SJeff Garzik  *
2837c6fd2807SJeff Garzik  *      Initialize shadow register mmio addresses, clear outstanding
2838c6fd2807SJeff Garzik  *      interrupts on the port, and unmask interrupts for the future
2839c6fd2807SJeff Garzik  *      start of the port.
2840c6fd2807SJeff Garzik  *
2841c6fd2807SJeff Garzik  *      LOCKING:
2842c6fd2807SJeff Garzik  *      Inherited from caller.
2843c6fd2807SJeff Garzik  */
2844c6fd2807SJeff Garzik static void mv_port_init(struct ata_ioports *port,  void __iomem *port_mmio)
2845c6fd2807SJeff Garzik {
28460d5ff566STejun Heo 	void __iomem *shd_base = port_mmio + SHD_BLK_OFS;
2847c6fd2807SJeff Garzik 	unsigned serr_ofs;
2848c6fd2807SJeff Garzik 
2849c6fd2807SJeff Garzik 	/* PIO related setup
2850c6fd2807SJeff Garzik 	 */
2851c6fd2807SJeff Garzik 	port->data_addr = shd_base + (sizeof(u32) * ATA_REG_DATA);
2852c6fd2807SJeff Garzik 	port->error_addr =
2853c6fd2807SJeff Garzik 		port->feature_addr = shd_base + (sizeof(u32) * ATA_REG_ERR);
2854c6fd2807SJeff Garzik 	port->nsect_addr = shd_base + (sizeof(u32) * ATA_REG_NSECT);
2855c6fd2807SJeff Garzik 	port->lbal_addr = shd_base + (sizeof(u32) * ATA_REG_LBAL);
2856c6fd2807SJeff Garzik 	port->lbam_addr = shd_base + (sizeof(u32) * ATA_REG_LBAM);
2857c6fd2807SJeff Garzik 	port->lbah_addr = shd_base + (sizeof(u32) * ATA_REG_LBAH);
2858c6fd2807SJeff Garzik 	port->device_addr = shd_base + (sizeof(u32) * ATA_REG_DEVICE);
2859c6fd2807SJeff Garzik 	port->status_addr =
2860c6fd2807SJeff Garzik 		port->command_addr = shd_base + (sizeof(u32) * ATA_REG_STATUS);
2861c6fd2807SJeff Garzik 	/* special case: control/altstatus doesn't have ATA_REG_ address */
2862c6fd2807SJeff Garzik 	port->altstatus_addr = port->ctl_addr = shd_base + SHD_CTL_AST_OFS;
2863c6fd2807SJeff Garzik 
2864c6fd2807SJeff Garzik 	/* unused: */
28658d9db2d2SRandy Dunlap 	port->cmd_addr = port->bmdma_addr = port->scr_addr = NULL;
2866c6fd2807SJeff Garzik 
2867c6fd2807SJeff Garzik 	/* Clear any currently outstanding port interrupt conditions */
2868c6fd2807SJeff Garzik 	serr_ofs = mv_scr_offset(SCR_ERROR);
2869c6fd2807SJeff Garzik 	writelfl(readl(port_mmio + serr_ofs), port_mmio + serr_ofs);
2870c6fd2807SJeff Garzik 	writelfl(0, port_mmio + EDMA_ERR_IRQ_CAUSE_OFS);
2871c6fd2807SJeff Garzik 
2872646a4da5SMark Lord 	/* unmask all non-transient EDMA error interrupts */
2873646a4da5SMark Lord 	writelfl(~EDMA_ERR_IRQ_TRANSIENT, port_mmio + EDMA_ERR_IRQ_MASK_OFS);
2874c6fd2807SJeff Garzik 
2875c6fd2807SJeff Garzik 	VPRINTK("EDMA cfg=0x%08x EDMA IRQ err cause/mask=0x%08x/0x%08x\n",
2876c6fd2807SJeff Garzik 		readl(port_mmio + EDMA_CFG_OFS),
2877c6fd2807SJeff Garzik 		readl(port_mmio + EDMA_ERR_IRQ_CAUSE_OFS),
2878c6fd2807SJeff Garzik 		readl(port_mmio + EDMA_ERR_IRQ_MASK_OFS));
2879c6fd2807SJeff Garzik }
2880c6fd2807SJeff Garzik 
2881616d4a98SMark Lord static unsigned int mv_in_pcix_mode(struct ata_host *host)
2882616d4a98SMark Lord {
2883616d4a98SMark Lord 	struct mv_host_priv *hpriv = host->private_data;
2884616d4a98SMark Lord 	void __iomem *mmio = hpriv->base;
2885616d4a98SMark Lord 	u32 reg;
2886616d4a98SMark Lord 
28871f398472SMark Lord 	if (IS_SOC(hpriv) || !IS_PCIE(hpriv))
2888616d4a98SMark Lord 		return 0;	/* not PCI-X capable */
2889616d4a98SMark Lord 	reg = readl(mmio + MV_PCI_MODE_OFS);
2890616d4a98SMark Lord 	if ((reg & MV_PCI_MODE_MASK) == 0)
2891616d4a98SMark Lord 		return 0;	/* conventional PCI mode */
2892616d4a98SMark Lord 	return 1;	/* chip is in PCI-X mode */
2893616d4a98SMark Lord }
2894616d4a98SMark Lord 
2895616d4a98SMark Lord static int mv_pci_cut_through_okay(struct ata_host *host)
2896616d4a98SMark Lord {
2897616d4a98SMark Lord 	struct mv_host_priv *hpriv = host->private_data;
2898616d4a98SMark Lord 	void __iomem *mmio = hpriv->base;
2899616d4a98SMark Lord 	u32 reg;
2900616d4a98SMark Lord 
2901616d4a98SMark Lord 	if (!mv_in_pcix_mode(host)) {
2902616d4a98SMark Lord 		reg = readl(mmio + PCI_COMMAND_OFS);
2903616d4a98SMark Lord 		if (reg & PCI_COMMAND_MRDTRIG)
2904616d4a98SMark Lord 			return 0; /* not okay */
2905616d4a98SMark Lord 	}
2906616d4a98SMark Lord 	return 1; /* okay */
2907616d4a98SMark Lord }
2908616d4a98SMark Lord 
29094447d351STejun Heo static int mv_chip_id(struct ata_host *host, unsigned int board_idx)
2910c6fd2807SJeff Garzik {
29114447d351STejun Heo 	struct pci_dev *pdev = to_pci_dev(host->dev);
29124447d351STejun Heo 	struct mv_host_priv *hpriv = host->private_data;
2913c6fd2807SJeff Garzik 	u32 hp_flags = hpriv->hp_flags;
2914c6fd2807SJeff Garzik 
2915c6fd2807SJeff Garzik 	switch (board_idx) {
2916c6fd2807SJeff Garzik 	case chip_5080:
2917c6fd2807SJeff Garzik 		hpriv->ops = &mv5xxx_ops;
2918ee9ccdf7SJeff Garzik 		hp_flags |= MV_HP_GEN_I;
2919c6fd2807SJeff Garzik 
292044c10138SAuke Kok 		switch (pdev->revision) {
2921c6fd2807SJeff Garzik 		case 0x1:
2922c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_50XXB0;
2923c6fd2807SJeff Garzik 			break;
2924c6fd2807SJeff Garzik 		case 0x3:
2925c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_50XXB2;
2926c6fd2807SJeff Garzik 			break;
2927c6fd2807SJeff Garzik 		default:
2928c6fd2807SJeff Garzik 			dev_printk(KERN_WARNING, &pdev->dev,
2929c6fd2807SJeff Garzik 			   "Applying 50XXB2 workarounds to unknown rev\n");
2930c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_50XXB2;
2931c6fd2807SJeff Garzik 			break;
2932c6fd2807SJeff Garzik 		}
2933c6fd2807SJeff Garzik 		break;
2934c6fd2807SJeff Garzik 
2935c6fd2807SJeff Garzik 	case chip_504x:
2936c6fd2807SJeff Garzik 	case chip_508x:
2937c6fd2807SJeff Garzik 		hpriv->ops = &mv5xxx_ops;
2938ee9ccdf7SJeff Garzik 		hp_flags |= MV_HP_GEN_I;
2939c6fd2807SJeff Garzik 
294044c10138SAuke Kok 		switch (pdev->revision) {
2941c6fd2807SJeff Garzik 		case 0x0:
2942c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_50XXB0;
2943c6fd2807SJeff Garzik 			break;
2944c6fd2807SJeff Garzik 		case 0x3:
2945c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_50XXB2;
2946c6fd2807SJeff Garzik 			break;
2947c6fd2807SJeff Garzik 		default:
2948c6fd2807SJeff Garzik 			dev_printk(KERN_WARNING, &pdev->dev,
2949c6fd2807SJeff Garzik 			   "Applying B2 workarounds to unknown rev\n");
2950c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_50XXB2;
2951c6fd2807SJeff Garzik 			break;
2952c6fd2807SJeff Garzik 		}
2953c6fd2807SJeff Garzik 		break;
2954c6fd2807SJeff Garzik 
2955c6fd2807SJeff Garzik 	case chip_604x:
2956c6fd2807SJeff Garzik 	case chip_608x:
2957c6fd2807SJeff Garzik 		hpriv->ops = &mv6xxx_ops;
2958ee9ccdf7SJeff Garzik 		hp_flags |= MV_HP_GEN_II;
2959c6fd2807SJeff Garzik 
296044c10138SAuke Kok 		switch (pdev->revision) {
2961c6fd2807SJeff Garzik 		case 0x7:
2962c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_60X1B2;
2963c6fd2807SJeff Garzik 			break;
2964c6fd2807SJeff Garzik 		case 0x9:
2965c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_60X1C0;
2966c6fd2807SJeff Garzik 			break;
2967c6fd2807SJeff Garzik 		default:
2968c6fd2807SJeff Garzik 			dev_printk(KERN_WARNING, &pdev->dev,
2969c6fd2807SJeff Garzik 				   "Applying B2 workarounds to unknown rev\n");
2970c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_60X1B2;
2971c6fd2807SJeff Garzik 			break;
2972c6fd2807SJeff Garzik 		}
2973c6fd2807SJeff Garzik 		break;
2974c6fd2807SJeff Garzik 
2975c6fd2807SJeff Garzik 	case chip_7042:
2976616d4a98SMark Lord 		hp_flags |= MV_HP_PCIE | MV_HP_CUT_THROUGH;
2977306b30f7SMark Lord 		if (pdev->vendor == PCI_VENDOR_ID_TTI &&
2978306b30f7SMark Lord 		    (pdev->device == 0x2300 || pdev->device == 0x2310))
2979306b30f7SMark Lord 		{
29804e520033SMark Lord 			/*
29814e520033SMark Lord 			 * Highpoint RocketRAID PCIe 23xx series cards:
29824e520033SMark Lord 			 *
29834e520033SMark Lord 			 * Unconfigured drives are treated as "Legacy"
29844e520033SMark Lord 			 * by the BIOS, and it overwrites sector 8 with
29854e520033SMark Lord 			 * a "Lgcy" metadata block prior to Linux boot.
29864e520033SMark Lord 			 *
29874e520033SMark Lord 			 * Configured drives (RAID or JBOD) leave sector 8
29884e520033SMark Lord 			 * alone, but instead overwrite a high numbered
29894e520033SMark Lord 			 * sector for the RAID metadata.  This sector can
29904e520033SMark Lord 			 * be determined exactly, by truncating the physical
29914e520033SMark Lord 			 * drive capacity to a nice even GB value.
29924e520033SMark Lord 			 *
29934e520033SMark Lord 			 * RAID metadata is at: (dev->n_sectors & ~0xfffff)
29944e520033SMark Lord 			 *
29954e520033SMark Lord 			 * Warn the user, lest they think we're just buggy.
29964e520033SMark Lord 			 */
29974e520033SMark Lord 			printk(KERN_WARNING DRV_NAME ": Highpoint RocketRAID"
29984e520033SMark Lord 				" BIOS CORRUPTS DATA on all attached drives,"
29994e520033SMark Lord 				" regardless of if/how they are configured."
30004e520033SMark Lord 				" BEWARE!\n");
30014e520033SMark Lord 			printk(KERN_WARNING DRV_NAME ": For data safety, do not"
30024e520033SMark Lord 				" use sectors 8-9 on \"Legacy\" drives,"
30034e520033SMark Lord 				" and avoid the final two gigabytes on"
30044e520033SMark Lord 				" all RocketRAID BIOS initialized drives.\n");
3005306b30f7SMark Lord 		}
30068e7decdbSMark Lord 		/* drop through */
3007c6fd2807SJeff Garzik 	case chip_6042:
3008c6fd2807SJeff Garzik 		hpriv->ops = &mv6xxx_ops;
3009c6fd2807SJeff Garzik 		hp_flags |= MV_HP_GEN_IIE;
3010616d4a98SMark Lord 		if (board_idx == chip_6042 && mv_pci_cut_through_okay(host))
3011616d4a98SMark Lord 			hp_flags |= MV_HP_CUT_THROUGH;
3012c6fd2807SJeff Garzik 
301344c10138SAuke Kok 		switch (pdev->revision) {
30145cf73bfbSMark Lord 		case 0x2: /* Rev.B0: the first/only public release */
3015c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_60X1C0;
3016c6fd2807SJeff Garzik 			break;
3017c6fd2807SJeff Garzik 		default:
3018c6fd2807SJeff Garzik 			dev_printk(KERN_WARNING, &pdev->dev,
3019c6fd2807SJeff Garzik 			   "Applying 60X1C0 workarounds to unknown rev\n");
3020c6fd2807SJeff Garzik 			hp_flags |= MV_HP_ERRATA_60X1C0;
3021c6fd2807SJeff Garzik 			break;
3022c6fd2807SJeff Garzik 		}
3023c6fd2807SJeff Garzik 		break;
3024f351b2d6SSaeed Bishara 	case chip_soc:
3025f351b2d6SSaeed Bishara 		hpriv->ops = &mv_soc_ops;
3026eb3a55a9SSaeed Bishara 		hp_flags |= MV_HP_FLAG_SOC | MV_HP_GEN_IIE |
3027eb3a55a9SSaeed Bishara 			MV_HP_ERRATA_60X1C0;
3028f351b2d6SSaeed Bishara 		break;
3029c6fd2807SJeff Garzik 
3030c6fd2807SJeff Garzik 	default:
3031f351b2d6SSaeed Bishara 		dev_printk(KERN_ERR, host->dev,
30325796d1c4SJeff Garzik 			   "BUG: invalid board index %u\n", board_idx);
3033c6fd2807SJeff Garzik 		return 1;
3034c6fd2807SJeff Garzik 	}
3035c6fd2807SJeff Garzik 
3036c6fd2807SJeff Garzik 	hpriv->hp_flags = hp_flags;
303702a121daSMark Lord 	if (hp_flags & MV_HP_PCIE) {
303802a121daSMark Lord 		hpriv->irq_cause_ofs	= PCIE_IRQ_CAUSE_OFS;
303902a121daSMark Lord 		hpriv->irq_mask_ofs	= PCIE_IRQ_MASK_OFS;
304002a121daSMark Lord 		hpriv->unmask_all_irqs	= PCIE_UNMASK_ALL_IRQS;
304102a121daSMark Lord 	} else {
304202a121daSMark Lord 		hpriv->irq_cause_ofs	= PCI_IRQ_CAUSE_OFS;
304302a121daSMark Lord 		hpriv->irq_mask_ofs	= PCI_IRQ_MASK_OFS;
304402a121daSMark Lord 		hpriv->unmask_all_irqs	= PCI_UNMASK_ALL_IRQS;
304502a121daSMark Lord 	}
3046c6fd2807SJeff Garzik 
3047c6fd2807SJeff Garzik 	return 0;
3048c6fd2807SJeff Garzik }
3049c6fd2807SJeff Garzik 
3050c6fd2807SJeff Garzik /**
3051c6fd2807SJeff Garzik  *      mv_init_host - Perform some early initialization of the host.
30524447d351STejun Heo  *	@host: ATA host to initialize
30534447d351STejun Heo  *      @board_idx: controller index
3054c6fd2807SJeff Garzik  *
3055c6fd2807SJeff Garzik  *      If possible, do an early global reset of the host.  Then do
3056c6fd2807SJeff Garzik  *      our port init and clear/unmask all/relevant host interrupts.
3057c6fd2807SJeff Garzik  *
3058c6fd2807SJeff Garzik  *      LOCKING:
3059c6fd2807SJeff Garzik  *      Inherited from caller.
3060c6fd2807SJeff Garzik  */
30614447d351STejun Heo static int mv_init_host(struct ata_host *host, unsigned int board_idx)
3062c6fd2807SJeff Garzik {
3063c6fd2807SJeff Garzik 	int rc = 0, n_hc, port, hc;
30644447d351STejun Heo 	struct mv_host_priv *hpriv = host->private_data;
3065f351b2d6SSaeed Bishara 	void __iomem *mmio = hpriv->base;
3066c6fd2807SJeff Garzik 
30674447d351STejun Heo 	rc = mv_chip_id(host, board_idx);
3068c6fd2807SJeff Garzik 	if (rc)
3069c6fd2807SJeff Garzik 		goto done;
3070c6fd2807SJeff Garzik 
30711f398472SMark Lord 	if (IS_SOC(hpriv)) {
30727368f919SMark Lord 		hpriv->main_irq_cause_addr = mmio + SOC_HC_MAIN_IRQ_CAUSE_OFS;
30737368f919SMark Lord 		hpriv->main_irq_mask_addr  = mmio + SOC_HC_MAIN_IRQ_MASK_OFS;
30741f398472SMark Lord 	} else {
30751f398472SMark Lord 		hpriv->main_irq_cause_addr = mmio + PCI_HC_MAIN_IRQ_CAUSE_OFS;
30761f398472SMark Lord 		hpriv->main_irq_mask_addr  = mmio + PCI_HC_MAIN_IRQ_MASK_OFS;
3077f351b2d6SSaeed Bishara 	}
3078352fab70SMark Lord 
3079352fab70SMark Lord 	/* global interrupt mask: 0 == mask everything */
3080c4de573bSMark Lord 	mv_set_main_irq_mask(host, ~0, 0);
3081f351b2d6SSaeed Bishara 
30824447d351STejun Heo 	n_hc = mv_get_hc_count(host->ports[0]->flags);
3083c6fd2807SJeff Garzik 
30844447d351STejun Heo 	for (port = 0; port < host->n_ports; port++)
3085c6fd2807SJeff Garzik 		hpriv->ops->read_preamp(hpriv, port, mmio);
3086c6fd2807SJeff Garzik 
3087c6fd2807SJeff Garzik 	rc = hpriv->ops->reset_hc(hpriv, mmio, n_hc);
3088c6fd2807SJeff Garzik 	if (rc)
3089c6fd2807SJeff Garzik 		goto done;
3090c6fd2807SJeff Garzik 
3091c6fd2807SJeff Garzik 	hpriv->ops->reset_flash(hpriv, mmio);
30927bb3c529SSaeed Bishara 	hpriv->ops->reset_bus(host, mmio);
3093c6fd2807SJeff Garzik 	hpriv->ops->enable_leds(hpriv, mmio);
3094c6fd2807SJeff Garzik 
30954447d351STejun Heo 	for (port = 0; port < host->n_ports; port++) {
3096cbcdd875STejun Heo 		struct ata_port *ap = host->ports[port];
3097c6fd2807SJeff Garzik 		void __iomem *port_mmio = mv_port_base(mmio, port);
3098cbcdd875STejun Heo 
3099cbcdd875STejun Heo 		mv_port_init(&ap->ioaddr, port_mmio);
3100cbcdd875STejun Heo 
31017bb3c529SSaeed Bishara #ifdef CONFIG_PCI
31021f398472SMark Lord 		if (!IS_SOC(hpriv)) {
3103f351b2d6SSaeed Bishara 			unsigned int offset = port_mmio - mmio;
3104cbcdd875STejun Heo 			ata_port_pbar_desc(ap, MV_PRIMARY_BAR, -1, "mmio");
3105cbcdd875STejun Heo 			ata_port_pbar_desc(ap, MV_PRIMARY_BAR, offset, "port");
3106f351b2d6SSaeed Bishara 		}
31077bb3c529SSaeed Bishara #endif
3108c6fd2807SJeff Garzik 	}
3109c6fd2807SJeff Garzik 
3110c6fd2807SJeff Garzik 	for (hc = 0; hc < n_hc; hc++) {
3111c6fd2807SJeff Garzik 		void __iomem *hc_mmio = mv_hc_base(mmio, hc);
3112c6fd2807SJeff Garzik 
3113c6fd2807SJeff Garzik 		VPRINTK("HC%i: HC config=0x%08x HC IRQ cause "
3114c6fd2807SJeff Garzik 			"(before clear)=0x%08x\n", hc,
3115c6fd2807SJeff Garzik 			readl(hc_mmio + HC_CFG_OFS),
3116c6fd2807SJeff Garzik 			readl(hc_mmio + HC_IRQ_CAUSE_OFS));
3117c6fd2807SJeff Garzik 
3118c6fd2807SJeff Garzik 		/* Clear any currently outstanding hc interrupt conditions */
3119c6fd2807SJeff Garzik 		writelfl(0, hc_mmio + HC_IRQ_CAUSE_OFS);
3120c6fd2807SJeff Garzik 	}
3121c6fd2807SJeff Garzik 
31221f398472SMark Lord 	if (!IS_SOC(hpriv)) {
3123c6fd2807SJeff Garzik 		/* Clear any currently outstanding host interrupt conditions */
312402a121daSMark Lord 		writelfl(0, mmio + hpriv->irq_cause_ofs);
3125c6fd2807SJeff Garzik 
3126c6fd2807SJeff Garzik 		/* and unmask interrupt generation for host regs */
312702a121daSMark Lord 		writelfl(hpriv->unmask_all_irqs, mmio + hpriv->irq_mask_ofs);
3128c6fd2807SJeff Garzik 
312951de32d2SMark Lord 		/*
313051de32d2SMark Lord 		 * enable only global host interrupts for now.
313151de32d2SMark Lord 		 * The per-port interrupts get done later as ports are set up.
313251de32d2SMark Lord 		 */
3133c4de573bSMark Lord 		mv_set_main_irq_mask(host, 0, PCI_ERR);
3134f351b2d6SSaeed Bishara 	}
3135c6fd2807SJeff Garzik done:
3136c6fd2807SJeff Garzik 	return rc;
3137c6fd2807SJeff Garzik }
3138c6fd2807SJeff Garzik 
3139fbf14e2fSByron Bradley static int mv_create_dma_pools(struct mv_host_priv *hpriv, struct device *dev)
3140fbf14e2fSByron Bradley {
3141fbf14e2fSByron Bradley 	hpriv->crqb_pool   = dmam_pool_create("crqb_q", dev, MV_CRQB_Q_SZ,
3142fbf14e2fSByron Bradley 							     MV_CRQB_Q_SZ, 0);
3143fbf14e2fSByron Bradley 	if (!hpriv->crqb_pool)
3144fbf14e2fSByron Bradley 		return -ENOMEM;
3145fbf14e2fSByron Bradley 
3146fbf14e2fSByron Bradley 	hpriv->crpb_pool   = dmam_pool_create("crpb_q", dev, MV_CRPB_Q_SZ,
3147fbf14e2fSByron Bradley 							     MV_CRPB_Q_SZ, 0);
3148fbf14e2fSByron Bradley 	if (!hpriv->crpb_pool)
3149fbf14e2fSByron Bradley 		return -ENOMEM;
3150fbf14e2fSByron Bradley 
3151fbf14e2fSByron Bradley 	hpriv->sg_tbl_pool = dmam_pool_create("sg_tbl", dev, MV_SG_TBL_SZ,
3152fbf14e2fSByron Bradley 							     MV_SG_TBL_SZ, 0);
3153fbf14e2fSByron Bradley 	if (!hpriv->sg_tbl_pool)
3154fbf14e2fSByron Bradley 		return -ENOMEM;
3155fbf14e2fSByron Bradley 
3156fbf14e2fSByron Bradley 	return 0;
3157fbf14e2fSByron Bradley }
3158fbf14e2fSByron Bradley 
315915a32632SLennert Buytenhek static void mv_conf_mbus_windows(struct mv_host_priv *hpriv,
316015a32632SLennert Buytenhek 				 struct mbus_dram_target_info *dram)
316115a32632SLennert Buytenhek {
316215a32632SLennert Buytenhek 	int i;
316315a32632SLennert Buytenhek 
316415a32632SLennert Buytenhek 	for (i = 0; i < 4; i++) {
316515a32632SLennert Buytenhek 		writel(0, hpriv->base + WINDOW_CTRL(i));
316615a32632SLennert Buytenhek 		writel(0, hpriv->base + WINDOW_BASE(i));
316715a32632SLennert Buytenhek 	}
316815a32632SLennert Buytenhek 
316915a32632SLennert Buytenhek 	for (i = 0; i < dram->num_cs; i++) {
317015a32632SLennert Buytenhek 		struct mbus_dram_window *cs = dram->cs + i;
317115a32632SLennert Buytenhek 
317215a32632SLennert Buytenhek 		writel(((cs->size - 1) & 0xffff0000) |
317315a32632SLennert Buytenhek 			(cs->mbus_attr << 8) |
317415a32632SLennert Buytenhek 			(dram->mbus_dram_target_id << 4) | 1,
317515a32632SLennert Buytenhek 			hpriv->base + WINDOW_CTRL(i));
317615a32632SLennert Buytenhek 		writel(cs->base, hpriv->base + WINDOW_BASE(i));
317715a32632SLennert Buytenhek 	}
317815a32632SLennert Buytenhek }
317915a32632SLennert Buytenhek 
3180f351b2d6SSaeed Bishara /**
3181f351b2d6SSaeed Bishara  *      mv_platform_probe - handle a positive probe of an soc Marvell
3182f351b2d6SSaeed Bishara  *      host
3183f351b2d6SSaeed Bishara  *      @pdev: platform device found
3184f351b2d6SSaeed Bishara  *
3185f351b2d6SSaeed Bishara  *      LOCKING:
3186f351b2d6SSaeed Bishara  *      Inherited from caller.
3187f351b2d6SSaeed Bishara  */
3188f351b2d6SSaeed Bishara static int mv_platform_probe(struct platform_device *pdev)
3189f351b2d6SSaeed Bishara {
3190f351b2d6SSaeed Bishara 	static int printed_version;
3191f351b2d6SSaeed Bishara 	const struct mv_sata_platform_data *mv_platform_data;
3192f351b2d6SSaeed Bishara 	const struct ata_port_info *ppi[] =
3193f351b2d6SSaeed Bishara 	    { &mv_port_info[chip_soc], NULL };
3194f351b2d6SSaeed Bishara 	struct ata_host *host;
3195f351b2d6SSaeed Bishara 	struct mv_host_priv *hpriv;
3196f351b2d6SSaeed Bishara 	struct resource *res;
3197f351b2d6SSaeed Bishara 	int n_ports, rc;
3198f351b2d6SSaeed Bishara 
3199f351b2d6SSaeed Bishara 	if (!printed_version++)
3200f351b2d6SSaeed Bishara 		dev_printk(KERN_INFO, &pdev->dev, "version " DRV_VERSION "\n");
3201f351b2d6SSaeed Bishara 
3202f351b2d6SSaeed Bishara 	/*
3203f351b2d6SSaeed Bishara 	 * Simple resource validation ..
3204f351b2d6SSaeed Bishara 	 */
3205f351b2d6SSaeed Bishara 	if (unlikely(pdev->num_resources != 2)) {
3206f351b2d6SSaeed Bishara 		dev_err(&pdev->dev, "invalid number of resources\n");
3207f351b2d6SSaeed Bishara 		return -EINVAL;
3208f351b2d6SSaeed Bishara 	}
3209f351b2d6SSaeed Bishara 
3210f351b2d6SSaeed Bishara 	/*
3211f351b2d6SSaeed Bishara 	 * Get the register base first
3212f351b2d6SSaeed Bishara 	 */
3213f351b2d6SSaeed Bishara 	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
3214f351b2d6SSaeed Bishara 	if (res == NULL)
3215f351b2d6SSaeed Bishara 		return -EINVAL;
3216f351b2d6SSaeed Bishara 
3217f351b2d6SSaeed Bishara 	/* allocate host */
3218f351b2d6SSaeed Bishara 	mv_platform_data = pdev->dev.platform_data;
3219f351b2d6SSaeed Bishara 	n_ports = mv_platform_data->n_ports;
3220f351b2d6SSaeed Bishara 
3221f351b2d6SSaeed Bishara 	host = ata_host_alloc_pinfo(&pdev->dev, ppi, n_ports);
3222f351b2d6SSaeed Bishara 	hpriv = devm_kzalloc(&pdev->dev, sizeof(*hpriv), GFP_KERNEL);
3223f351b2d6SSaeed Bishara 
3224f351b2d6SSaeed Bishara 	if (!host || !hpriv)
3225f351b2d6SSaeed Bishara 		return -ENOMEM;
3226f351b2d6SSaeed Bishara 	host->private_data = hpriv;
3227f351b2d6SSaeed Bishara 	hpriv->n_ports = n_ports;
3228f351b2d6SSaeed Bishara 
3229f351b2d6SSaeed Bishara 	host->iomap = NULL;
3230f1cb0ea1SSaeed Bishara 	hpriv->base = devm_ioremap(&pdev->dev, res->start,
3231f1cb0ea1SSaeed Bishara 				   res->end - res->start + 1);
3232f351b2d6SSaeed Bishara 	hpriv->base -= MV_SATAHC0_REG_BASE;
3233f351b2d6SSaeed Bishara 
323415a32632SLennert Buytenhek 	/*
323515a32632SLennert Buytenhek 	 * (Re-)program MBUS remapping windows if we are asked to.
323615a32632SLennert Buytenhek 	 */
323715a32632SLennert Buytenhek 	if (mv_platform_data->dram != NULL)
323815a32632SLennert Buytenhek 		mv_conf_mbus_windows(hpriv, mv_platform_data->dram);
323915a32632SLennert Buytenhek 
3240fbf14e2fSByron Bradley 	rc = mv_create_dma_pools(hpriv, &pdev->dev);
3241fbf14e2fSByron Bradley 	if (rc)
3242fbf14e2fSByron Bradley 		return rc;
3243fbf14e2fSByron Bradley 
3244f351b2d6SSaeed Bishara 	/* initialize adapter */
3245f351b2d6SSaeed Bishara 	rc = mv_init_host(host, chip_soc);
3246f351b2d6SSaeed Bishara 	if (rc)
3247f351b2d6SSaeed Bishara 		return rc;
3248f351b2d6SSaeed Bishara 
3249f351b2d6SSaeed Bishara 	dev_printk(KERN_INFO, &pdev->dev,
3250f351b2d6SSaeed Bishara 		   "slots %u ports %d\n", (unsigned)MV_MAX_Q_DEPTH,
3251f351b2d6SSaeed Bishara 		   host->n_ports);
3252f351b2d6SSaeed Bishara 
3253f351b2d6SSaeed Bishara 	return ata_host_activate(host, platform_get_irq(pdev, 0), mv_interrupt,
3254f351b2d6SSaeed Bishara 				 IRQF_SHARED, &mv6_sht);
3255f351b2d6SSaeed Bishara }
3256f351b2d6SSaeed Bishara 
3257f351b2d6SSaeed Bishara /*
3258f351b2d6SSaeed Bishara  *
3259f351b2d6SSaeed Bishara  *      mv_platform_remove    -       unplug a platform interface
3260f351b2d6SSaeed Bishara  *      @pdev: platform device
3261f351b2d6SSaeed Bishara  *
3262f351b2d6SSaeed Bishara  *      A platform bus SATA device has been unplugged. Perform the needed
3263f351b2d6SSaeed Bishara  *      cleanup. Also called on module unload for any active devices.
3264f351b2d6SSaeed Bishara  */
3265f351b2d6SSaeed Bishara static int __devexit mv_platform_remove(struct platform_device *pdev)
3266f351b2d6SSaeed Bishara {
3267f351b2d6SSaeed Bishara 	struct device *dev = &pdev->dev;
3268f351b2d6SSaeed Bishara 	struct ata_host *host = dev_get_drvdata(dev);
3269f351b2d6SSaeed Bishara 
3270f351b2d6SSaeed Bishara 	ata_host_detach(host);
3271f351b2d6SSaeed Bishara 	return 0;
3272f351b2d6SSaeed Bishara }
3273f351b2d6SSaeed Bishara 
3274f351b2d6SSaeed Bishara static struct platform_driver mv_platform_driver = {
3275f351b2d6SSaeed Bishara 	.probe			= mv_platform_probe,
3276f351b2d6SSaeed Bishara 	.remove			= __devexit_p(mv_platform_remove),
3277f351b2d6SSaeed Bishara 	.driver			= {
3278f351b2d6SSaeed Bishara 				   .name = DRV_NAME,
3279f351b2d6SSaeed Bishara 				   .owner = THIS_MODULE,
3280f351b2d6SSaeed Bishara 				  },
3281f351b2d6SSaeed Bishara };
3282f351b2d6SSaeed Bishara 
3283f351b2d6SSaeed Bishara 
32847bb3c529SSaeed Bishara #ifdef CONFIG_PCI
3285f351b2d6SSaeed Bishara static int mv_pci_init_one(struct pci_dev *pdev,
3286f351b2d6SSaeed Bishara 			   const struct pci_device_id *ent);
3287f351b2d6SSaeed Bishara 
32887bb3c529SSaeed Bishara 
32897bb3c529SSaeed Bishara static struct pci_driver mv_pci_driver = {
32907bb3c529SSaeed Bishara 	.name			= DRV_NAME,
32917bb3c529SSaeed Bishara 	.id_table		= mv_pci_tbl,
3292f351b2d6SSaeed Bishara 	.probe			= mv_pci_init_one,
32937bb3c529SSaeed Bishara 	.remove			= ata_pci_remove_one,
32947bb3c529SSaeed Bishara };
32957bb3c529SSaeed Bishara 
32967bb3c529SSaeed Bishara /*
32977bb3c529SSaeed Bishara  * module options
32987bb3c529SSaeed Bishara  */
32997bb3c529SSaeed Bishara static int msi;	      /* Use PCI msi; either zero (off, default) or non-zero */
33007bb3c529SSaeed Bishara 
33017bb3c529SSaeed Bishara 
33027bb3c529SSaeed Bishara /* move to PCI layer or libata core? */
33037bb3c529SSaeed Bishara static int pci_go_64(struct pci_dev *pdev)
33047bb3c529SSaeed Bishara {
33057bb3c529SSaeed Bishara 	int rc;
33067bb3c529SSaeed Bishara 
33077bb3c529SSaeed Bishara 	if (!pci_set_dma_mask(pdev, DMA_64BIT_MASK)) {
33087bb3c529SSaeed Bishara 		rc = pci_set_consistent_dma_mask(pdev, DMA_64BIT_MASK);
33097bb3c529SSaeed Bishara 		if (rc) {
33107bb3c529SSaeed Bishara 			rc = pci_set_consistent_dma_mask(pdev, DMA_32BIT_MASK);
33117bb3c529SSaeed Bishara 			if (rc) {
33127bb3c529SSaeed Bishara 				dev_printk(KERN_ERR, &pdev->dev,
33137bb3c529SSaeed Bishara 					   "64-bit DMA enable failed\n");
33147bb3c529SSaeed Bishara 				return rc;
33157bb3c529SSaeed Bishara 			}
33167bb3c529SSaeed Bishara 		}
33177bb3c529SSaeed Bishara 	} else {
33187bb3c529SSaeed Bishara 		rc = pci_set_dma_mask(pdev, DMA_32BIT_MASK);
33197bb3c529SSaeed Bishara 		if (rc) {
33207bb3c529SSaeed Bishara 			dev_printk(KERN_ERR, &pdev->dev,
33217bb3c529SSaeed Bishara 				   "32-bit DMA enable failed\n");
33227bb3c529SSaeed Bishara 			return rc;
33237bb3c529SSaeed Bishara 		}
33247bb3c529SSaeed Bishara 		rc = pci_set_consistent_dma_mask(pdev, DMA_32BIT_MASK);
33257bb3c529SSaeed Bishara 		if (rc) {
33267bb3c529SSaeed Bishara 			dev_printk(KERN_ERR, &pdev->dev,
33277bb3c529SSaeed Bishara 				   "32-bit consistent DMA enable failed\n");
33287bb3c529SSaeed Bishara 			return rc;
33297bb3c529SSaeed Bishara 		}
33307bb3c529SSaeed Bishara 	}
33317bb3c529SSaeed Bishara 
33327bb3c529SSaeed Bishara 	return rc;
33337bb3c529SSaeed Bishara }
33347bb3c529SSaeed Bishara 
3335c6fd2807SJeff Garzik /**
3336c6fd2807SJeff Garzik  *      mv_print_info - Dump key info to kernel log for perusal.
33374447d351STejun Heo  *      @host: ATA host to print info about
3338c6fd2807SJeff Garzik  *
3339c6fd2807SJeff Garzik  *      FIXME: complete this.
3340c6fd2807SJeff Garzik  *
3341c6fd2807SJeff Garzik  *      LOCKING:
3342c6fd2807SJeff Garzik  *      Inherited from caller.
3343c6fd2807SJeff Garzik  */
33444447d351STejun Heo static void mv_print_info(struct ata_host *host)
3345c6fd2807SJeff Garzik {
33464447d351STejun Heo 	struct pci_dev *pdev = to_pci_dev(host->dev);
33474447d351STejun Heo 	struct mv_host_priv *hpriv = host->private_data;
334844c10138SAuke Kok 	u8 scc;
3349c1e4fe71SJeff Garzik 	const char *scc_s, *gen;
3350c6fd2807SJeff Garzik 
3351c6fd2807SJeff Garzik 	/* Use this to determine the HW stepping of the chip so we know
3352c6fd2807SJeff Garzik 	 * what errata to workaround
3353c6fd2807SJeff Garzik 	 */
3354c6fd2807SJeff Garzik 	pci_read_config_byte(pdev, PCI_CLASS_DEVICE, &scc);
3355c6fd2807SJeff Garzik 	if (scc == 0)
3356c6fd2807SJeff Garzik 		scc_s = "SCSI";
3357c6fd2807SJeff Garzik 	else if (scc == 0x01)
3358c6fd2807SJeff Garzik 		scc_s = "RAID";
3359c6fd2807SJeff Garzik 	else
3360c1e4fe71SJeff Garzik 		scc_s = "?";
3361c1e4fe71SJeff Garzik 
3362c1e4fe71SJeff Garzik 	if (IS_GEN_I(hpriv))
3363c1e4fe71SJeff Garzik 		gen = "I";
3364c1e4fe71SJeff Garzik 	else if (IS_GEN_II(hpriv))
3365c1e4fe71SJeff Garzik 		gen = "II";
3366c1e4fe71SJeff Garzik 	else if (IS_GEN_IIE(hpriv))
3367c1e4fe71SJeff Garzik 		gen = "IIE";
3368c1e4fe71SJeff Garzik 	else
3369c1e4fe71SJeff Garzik 		gen = "?";
3370c6fd2807SJeff Garzik 
3371c6fd2807SJeff Garzik 	dev_printk(KERN_INFO, &pdev->dev,
3372c1e4fe71SJeff Garzik 	       "Gen-%s %u slots %u ports %s mode IRQ via %s\n",
3373c1e4fe71SJeff Garzik 	       gen, (unsigned)MV_MAX_Q_DEPTH, host->n_ports,
3374c6fd2807SJeff Garzik 	       scc_s, (MV_HP_FLAG_MSI & hpriv->hp_flags) ? "MSI" : "INTx");
3375c6fd2807SJeff Garzik }
3376c6fd2807SJeff Garzik 
3377c6fd2807SJeff Garzik /**
3378f351b2d6SSaeed Bishara  *      mv_pci_init_one - handle a positive probe of a PCI Marvell host
3379c6fd2807SJeff Garzik  *      @pdev: PCI device found
3380c6fd2807SJeff Garzik  *      @ent: PCI device ID entry for the matched host
3381c6fd2807SJeff Garzik  *
3382c6fd2807SJeff Garzik  *      LOCKING:
3383c6fd2807SJeff Garzik  *      Inherited from caller.
3384c6fd2807SJeff Garzik  */
3385f351b2d6SSaeed Bishara static int mv_pci_init_one(struct pci_dev *pdev,
3386f351b2d6SSaeed Bishara 			   const struct pci_device_id *ent)
3387c6fd2807SJeff Garzik {
33882dcb407eSJeff Garzik 	static int printed_version;
3389c6fd2807SJeff Garzik 	unsigned int board_idx = (unsigned int)ent->driver_data;
33904447d351STejun Heo 	const struct ata_port_info *ppi[] = { &mv_port_info[board_idx], NULL };
33914447d351STejun Heo 	struct ata_host *host;
33924447d351STejun Heo 	struct mv_host_priv *hpriv;
33934447d351STejun Heo 	int n_ports, rc;
3394c6fd2807SJeff Garzik 
3395c6fd2807SJeff Garzik 	if (!printed_version++)
3396c6fd2807SJeff Garzik 		dev_printk(KERN_INFO, &pdev->dev, "version " DRV_VERSION "\n");
3397c6fd2807SJeff Garzik 
33984447d351STejun Heo 	/* allocate host */
33994447d351STejun Heo 	n_ports = mv_get_hc_count(ppi[0]->flags) * MV_PORTS_PER_HC;
34004447d351STejun Heo 
34014447d351STejun Heo 	host = ata_host_alloc_pinfo(&pdev->dev, ppi, n_ports);
34024447d351STejun Heo 	hpriv = devm_kzalloc(&pdev->dev, sizeof(*hpriv), GFP_KERNEL);
34034447d351STejun Heo 	if (!host || !hpriv)
34044447d351STejun Heo 		return -ENOMEM;
34054447d351STejun Heo 	host->private_data = hpriv;
3406f351b2d6SSaeed Bishara 	hpriv->n_ports = n_ports;
34074447d351STejun Heo 
34084447d351STejun Heo 	/* acquire resources */
340924dc5f33STejun Heo 	rc = pcim_enable_device(pdev);
341024dc5f33STejun Heo 	if (rc)
3411c6fd2807SJeff Garzik 		return rc;
3412c6fd2807SJeff Garzik 
34130d5ff566STejun Heo 	rc = pcim_iomap_regions(pdev, 1 << MV_PRIMARY_BAR, DRV_NAME);
34140d5ff566STejun Heo 	if (rc == -EBUSY)
341524dc5f33STejun Heo 		pcim_pin_device(pdev);
34160d5ff566STejun Heo 	if (rc)
341724dc5f33STejun Heo 		return rc;
34184447d351STejun Heo 	host->iomap = pcim_iomap_table(pdev);
3419f351b2d6SSaeed Bishara 	hpriv->base = host->iomap[MV_PRIMARY_BAR];
3420c6fd2807SJeff Garzik 
3421d88184fbSJeff Garzik 	rc = pci_go_64(pdev);
3422d88184fbSJeff Garzik 	if (rc)
3423d88184fbSJeff Garzik 		return rc;
3424d88184fbSJeff Garzik 
3425da2fa9baSMark Lord 	rc = mv_create_dma_pools(hpriv, &pdev->dev);
3426da2fa9baSMark Lord 	if (rc)
3427da2fa9baSMark Lord 		return rc;
3428da2fa9baSMark Lord 
3429c6fd2807SJeff Garzik 	/* initialize adapter */
34304447d351STejun Heo 	rc = mv_init_host(host, board_idx);
343124dc5f33STejun Heo 	if (rc)
343224dc5f33STejun Heo 		return rc;
3433c6fd2807SJeff Garzik 
3434c6fd2807SJeff Garzik 	/* Enable interrupts */
34356a59dcf8STejun Heo 	if (msi && pci_enable_msi(pdev))
3436c6fd2807SJeff Garzik 		pci_intx(pdev, 1);
3437c6fd2807SJeff Garzik 
3438c6fd2807SJeff Garzik 	mv_dump_pci_cfg(pdev, 0x68);
34394447d351STejun Heo 	mv_print_info(host);
3440c6fd2807SJeff Garzik 
34414447d351STejun Heo 	pci_set_master(pdev);
3442ea8b4db9SJeff Garzik 	pci_try_set_mwi(pdev);
34434447d351STejun Heo 	return ata_host_activate(host, pdev->irq, mv_interrupt, IRQF_SHARED,
3444c5d3e45aSJeff Garzik 				 IS_GEN_I(hpriv) ? &mv5_sht : &mv6_sht);
3445c6fd2807SJeff Garzik }
34467bb3c529SSaeed Bishara #endif
3447c6fd2807SJeff Garzik 
3448f351b2d6SSaeed Bishara static int mv_platform_probe(struct platform_device *pdev);
3449f351b2d6SSaeed Bishara static int __devexit mv_platform_remove(struct platform_device *pdev);
3450f351b2d6SSaeed Bishara 
3451c6fd2807SJeff Garzik static int __init mv_init(void)
3452c6fd2807SJeff Garzik {
34537bb3c529SSaeed Bishara 	int rc = -ENODEV;
34547bb3c529SSaeed Bishara #ifdef CONFIG_PCI
34557bb3c529SSaeed Bishara 	rc = pci_register_driver(&mv_pci_driver);
3456f351b2d6SSaeed Bishara 	if (rc < 0)
3457f351b2d6SSaeed Bishara 		return rc;
3458f351b2d6SSaeed Bishara #endif
3459f351b2d6SSaeed Bishara 	rc = platform_driver_register(&mv_platform_driver);
3460f351b2d6SSaeed Bishara 
3461f351b2d6SSaeed Bishara #ifdef CONFIG_PCI
3462f351b2d6SSaeed Bishara 	if (rc < 0)
3463f351b2d6SSaeed Bishara 		pci_unregister_driver(&mv_pci_driver);
34647bb3c529SSaeed Bishara #endif
34657bb3c529SSaeed Bishara 	return rc;
3466c6fd2807SJeff Garzik }
3467c6fd2807SJeff Garzik 
3468c6fd2807SJeff Garzik static void __exit mv_exit(void)
3469c6fd2807SJeff Garzik {
34707bb3c529SSaeed Bishara #ifdef CONFIG_PCI
3471c6fd2807SJeff Garzik 	pci_unregister_driver(&mv_pci_driver);
34727bb3c529SSaeed Bishara #endif
3473f351b2d6SSaeed Bishara 	platform_driver_unregister(&mv_platform_driver);
3474c6fd2807SJeff Garzik }
3475c6fd2807SJeff Garzik 
3476c6fd2807SJeff Garzik MODULE_AUTHOR("Brett Russ");
3477c6fd2807SJeff Garzik MODULE_DESCRIPTION("SCSI low-level driver for Marvell SATA controllers");
3478c6fd2807SJeff Garzik MODULE_LICENSE("GPL");
3479c6fd2807SJeff Garzik MODULE_DEVICE_TABLE(pci, mv_pci_tbl);
3480c6fd2807SJeff Garzik MODULE_VERSION(DRV_VERSION);
348117c5aab5SMark Lord MODULE_ALIAS("platform:" DRV_NAME);
3482c6fd2807SJeff Garzik 
34837bb3c529SSaeed Bishara #ifdef CONFIG_PCI
3484c6fd2807SJeff Garzik module_param(msi, int, 0444);
3485c6fd2807SJeff Garzik MODULE_PARM_DESC(msi, "Enable use of PCI MSI (0=off, 1=on)");
34867bb3c529SSaeed Bishara #endif
3487c6fd2807SJeff Garzik 
3488c6fd2807SJeff Garzik module_init(mv_init);
3489c6fd2807SJeff Garzik module_exit(mv_exit);
3490