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 /* 264a05e209SJeff Garzik sata_mv TODO list: 274a05e209SJeff Garzik 284a05e209SJeff Garzik 1) Needs a full errata audit for all chipsets. I implemented most 294a05e209SJeff Garzik of the errata workarounds found in the Marvell vendor driver, but 304a05e209SJeff Garzik I distinctly remember a couple workarounds (one related to PCI-X) 314a05e209SJeff Garzik are still needed. 324a05e209SJeff Garzik 331fd2e1c2SMark Lord 2) Improve/fix IRQ and error handling sequences. 341fd2e1c2SMark Lord 351fd2e1c2SMark Lord 3) ATAPI support (Marvell claims the 60xx/70xx chips can do it). 361fd2e1c2SMark Lord 371fd2e1c2SMark Lord 4) Think about TCQ support here, and for libata in general 381fd2e1c2SMark Lord with controllers that suppport it via host-queuing hardware 391fd2e1c2SMark Lord (a software-only implementation could be a nightmare). 404a05e209SJeff Garzik 414a05e209SJeff Garzik 5) Investigate problems with PCI Message Signalled Interrupts (MSI). 424a05e209SJeff Garzik 43e49856d8SMark Lord 6) Cache frequently-accessed registers in mv_port_priv to reduce overhead. 444a05e209SJeff Garzik 4540f0bc2dSMark Lord 7) Fix/reenable hot plug/unplug (should happen as a side-effect of (2) above). 464a05e209SJeff Garzik 474a05e209SJeff Garzik 8) Develop a low-power-consumption strategy, and implement it. 484a05e209SJeff Garzik 494a05e209SJeff Garzik 9) [Experiment, low priority] See if ATAPI can be supported using 504a05e209SJeff Garzik "unknown FIS" or "vendor-specific FIS" support, or something creative 514a05e209SJeff Garzik like that. 524a05e209SJeff Garzik 534a05e209SJeff Garzik 10) [Experiment, low priority] Investigate interrupt coalescing. 544a05e209SJeff Garzik Quite often, especially with PCI Message Signalled Interrupts (MSI), 554a05e209SJeff Garzik the overhead reduced by interrupt mitigation is quite often not 564a05e209SJeff Garzik worth the latency cost. 574a05e209SJeff Garzik 584a05e209SJeff Garzik 11) [Experiment, Marvell value added] Is it possible to use target 594a05e209SJeff Garzik mode to cross-connect two Linux boxes with Marvell cards? If so, 604a05e209SJeff Garzik creating LibATA target mode support would be very interesting. 614a05e209SJeff Garzik 624a05e209SJeff Garzik Target mode, for those without docs, is the ability to directly 634a05e209SJeff Garzik connect two SATA controllers. 644a05e209SJeff Garzik 654a05e209SJeff Garzik */ 664a05e209SJeff Garzik 67c6fd2807SJeff Garzik #include <linux/kernel.h> 68c6fd2807SJeff Garzik #include <linux/module.h> 69c6fd2807SJeff Garzik #include <linux/pci.h> 70c6fd2807SJeff Garzik #include <linux/init.h> 71c6fd2807SJeff Garzik #include <linux/blkdev.h> 72c6fd2807SJeff Garzik #include <linux/delay.h> 73c6fd2807SJeff Garzik #include <linux/interrupt.h> 748d8b6004SAndrew Morton #include <linux/dmapool.h> 75c6fd2807SJeff Garzik #include <linux/dma-mapping.h> 76c6fd2807SJeff Garzik #include <linux/device.h> 77f351b2d6SSaeed Bishara #include <linux/platform_device.h> 78f351b2d6SSaeed Bishara #include <linux/ata_platform.h> 7915a32632SLennert Buytenhek #include <linux/mbus.h> 80c6fd2807SJeff Garzik #include <scsi/scsi_host.h> 81c6fd2807SJeff Garzik #include <scsi/scsi_cmnd.h> 826c08772eSJeff Garzik #include <scsi/scsi_device.h> 83c6fd2807SJeff Garzik #include <linux/libata.h> 84c6fd2807SJeff Garzik 85c6fd2807SJeff Garzik #define DRV_NAME "sata_mv" 861fd2e1c2SMark Lord #define DRV_VERSION "1.20" 87c6fd2807SJeff Garzik 88c6fd2807SJeff Garzik enum { 89c6fd2807SJeff Garzik /* BAR's are enumerated in terms of pci_resource_start() terms */ 90c6fd2807SJeff Garzik MV_PRIMARY_BAR = 0, /* offset 0x10: memory space */ 91c6fd2807SJeff Garzik MV_IO_BAR = 2, /* offset 0x18: IO space */ 92c6fd2807SJeff Garzik MV_MISC_BAR = 3, /* offset 0x1c: FLASH, NVRAM, SRAM */ 93c6fd2807SJeff Garzik 94c6fd2807SJeff Garzik MV_MAJOR_REG_AREA_SZ = 0x10000, /* 64KB */ 95c6fd2807SJeff Garzik MV_MINOR_REG_AREA_SZ = 0x2000, /* 8KB */ 96c6fd2807SJeff Garzik 97c6fd2807SJeff Garzik MV_PCI_REG_BASE = 0, 98c6fd2807SJeff Garzik MV_IRQ_COAL_REG_BASE = 0x18000, /* 6xxx part only */ 99c6fd2807SJeff Garzik MV_IRQ_COAL_CAUSE = (MV_IRQ_COAL_REG_BASE + 0x08), 100c6fd2807SJeff Garzik MV_IRQ_COAL_CAUSE_LO = (MV_IRQ_COAL_REG_BASE + 0x88), 101c6fd2807SJeff Garzik MV_IRQ_COAL_CAUSE_HI = (MV_IRQ_COAL_REG_BASE + 0x8c), 102c6fd2807SJeff Garzik MV_IRQ_COAL_THRESHOLD = (MV_IRQ_COAL_REG_BASE + 0xcc), 103c6fd2807SJeff Garzik MV_IRQ_COAL_TIME_THRESHOLD = (MV_IRQ_COAL_REG_BASE + 0xd0), 104c6fd2807SJeff Garzik 105c6fd2807SJeff Garzik MV_SATAHC0_REG_BASE = 0x20000, 106c6fd2807SJeff Garzik MV_FLASH_CTL = 0x1046c, 107c6fd2807SJeff Garzik MV_GPIO_PORT_CTL = 0x104f0, 108c6fd2807SJeff Garzik MV_RESET_CFG = 0x180d8, 109c6fd2807SJeff Garzik 110c6fd2807SJeff Garzik MV_PCI_REG_SZ = MV_MAJOR_REG_AREA_SZ, 111c6fd2807SJeff Garzik MV_SATAHC_REG_SZ = MV_MAJOR_REG_AREA_SZ, 112c6fd2807SJeff Garzik MV_SATAHC_ARBTR_REG_SZ = MV_MINOR_REG_AREA_SZ, /* arbiter */ 113c6fd2807SJeff Garzik MV_PORT_REG_SZ = MV_MINOR_REG_AREA_SZ, 114c6fd2807SJeff Garzik 115c6fd2807SJeff Garzik MV_MAX_Q_DEPTH = 32, 116c6fd2807SJeff Garzik MV_MAX_Q_DEPTH_MASK = MV_MAX_Q_DEPTH - 1, 117c6fd2807SJeff Garzik 118c6fd2807SJeff Garzik /* CRQB needs alignment on a 1KB boundary. Size == 1KB 119c6fd2807SJeff Garzik * CRPB needs alignment on a 256B boundary. Size == 256B 120c6fd2807SJeff Garzik * ePRD (SG) entries need alignment on a 16B boundary. Size == 16B 121c6fd2807SJeff Garzik */ 122c6fd2807SJeff Garzik MV_CRQB_Q_SZ = (32 * MV_MAX_Q_DEPTH), 123c6fd2807SJeff Garzik MV_CRPB_Q_SZ = (8 * MV_MAX_Q_DEPTH), 124da2fa9baSMark Lord MV_MAX_SG_CT = 256, 125c6fd2807SJeff Garzik MV_SG_TBL_SZ = (16 * MV_MAX_SG_CT), 126c6fd2807SJeff Garzik 127352fab70SMark Lord /* Determine hc from 0-7 port: hc = port >> MV_PORT_HC_SHIFT */ 128c6fd2807SJeff Garzik MV_PORT_HC_SHIFT = 2, 129352fab70SMark Lord MV_PORTS_PER_HC = (1 << MV_PORT_HC_SHIFT), /* 4 */ 130352fab70SMark Lord /* Determine hc port from 0-7 port: hardport = port & MV_PORT_MASK */ 131352fab70SMark Lord MV_PORT_MASK = (MV_PORTS_PER_HC - 1), /* 3 */ 132c6fd2807SJeff Garzik 133c6fd2807SJeff Garzik /* Host Flags */ 134c6fd2807SJeff Garzik MV_FLAG_DUAL_HC = (1 << 30), /* two SATA Host Controllers */ 135c6fd2807SJeff Garzik MV_FLAG_IRQ_COALESCE = (1 << 29), /* IRQ coalescing capability */ 1367bb3c529SSaeed Bishara /* SoC integrated controllers, no PCI interface */ 1377bb3c529SSaeed Bishara MV_FLAG_SOC = (1 << 28), 1387bb3c529SSaeed Bishara 139c5d3e45aSJeff Garzik MV_COMMON_FLAGS = ATA_FLAG_SATA | ATA_FLAG_NO_LEGACY | 140bdd4dddeSJeff Garzik ATA_FLAG_MMIO | ATA_FLAG_NO_ATAPI | 141bdd4dddeSJeff Garzik ATA_FLAG_PIO_POLLING, 142c6fd2807SJeff Garzik MV_6XXX_FLAGS = MV_FLAG_IRQ_COALESCE, 143c6fd2807SJeff Garzik 144c6fd2807SJeff Garzik CRQB_FLAG_READ = (1 << 0), 145c6fd2807SJeff Garzik CRQB_TAG_SHIFT = 1, 146c5d3e45aSJeff Garzik CRQB_IOID_SHIFT = 6, /* CRQB Gen-II/IIE IO Id shift */ 147e12bef50SMark Lord CRQB_PMP_SHIFT = 12, /* CRQB Gen-II/IIE PMP shift */ 148c5d3e45aSJeff Garzik CRQB_HOSTQ_SHIFT = 17, /* CRQB Gen-II/IIE HostQueTag shift */ 149c6fd2807SJeff Garzik CRQB_CMD_ADDR_SHIFT = 8, 150c6fd2807SJeff Garzik CRQB_CMD_CS = (0x2 << 11), 151c6fd2807SJeff Garzik CRQB_CMD_LAST = (1 << 15), 152c6fd2807SJeff Garzik 153c6fd2807SJeff Garzik CRPB_FLAG_STATUS_SHIFT = 8, 154c5d3e45aSJeff Garzik CRPB_IOID_SHIFT_6 = 5, /* CRPB Gen-II IO Id shift */ 155c5d3e45aSJeff Garzik CRPB_IOID_SHIFT_7 = 7, /* CRPB Gen-IIE IO Id shift */ 156c6fd2807SJeff Garzik 157c6fd2807SJeff Garzik EPRD_FLAG_END_OF_TBL = (1 << 31), 158c6fd2807SJeff Garzik 159c6fd2807SJeff Garzik /* PCI interface registers */ 160c6fd2807SJeff Garzik 161c6fd2807SJeff Garzik PCI_COMMAND_OFS = 0xc00, 162c6fd2807SJeff Garzik 163c6fd2807SJeff Garzik PCI_MAIN_CMD_STS_OFS = 0xd30, 164c6fd2807SJeff Garzik STOP_PCI_MASTER = (1 << 2), 165c6fd2807SJeff Garzik PCI_MASTER_EMPTY = (1 << 3), 166c6fd2807SJeff Garzik GLOB_SFT_RST = (1 << 4), 167c6fd2807SJeff Garzik 168c6fd2807SJeff Garzik MV_PCI_MODE = 0xd00, 169c6fd2807SJeff Garzik MV_PCI_EXP_ROM_BAR_CTL = 0xd2c, 170c6fd2807SJeff Garzik MV_PCI_DISC_TIMER = 0xd04, 171c6fd2807SJeff Garzik MV_PCI_MSI_TRIGGER = 0xc38, 172c6fd2807SJeff Garzik MV_PCI_SERR_MASK = 0xc28, 173c6fd2807SJeff Garzik MV_PCI_XBAR_TMOUT = 0x1d04, 174c6fd2807SJeff Garzik MV_PCI_ERR_LOW_ADDRESS = 0x1d40, 175c6fd2807SJeff Garzik MV_PCI_ERR_HIGH_ADDRESS = 0x1d44, 176c6fd2807SJeff Garzik MV_PCI_ERR_ATTRIBUTE = 0x1d48, 177c6fd2807SJeff Garzik MV_PCI_ERR_COMMAND = 0x1d50, 178c6fd2807SJeff Garzik 179c6fd2807SJeff Garzik PCI_IRQ_CAUSE_OFS = 0x1d58, 180c6fd2807SJeff Garzik PCI_IRQ_MASK_OFS = 0x1d5c, 181c6fd2807SJeff Garzik PCI_UNMASK_ALL_IRQS = 0x7fffff, /* bits 22-0 */ 182c6fd2807SJeff Garzik 18302a121daSMark Lord PCIE_IRQ_CAUSE_OFS = 0x1900, 18402a121daSMark Lord PCIE_IRQ_MASK_OFS = 0x1910, 185646a4da5SMark Lord PCIE_UNMASK_ALL_IRQS = 0x40a, /* assorted bits */ 18602a121daSMark Lord 187c6fd2807SJeff Garzik HC_MAIN_IRQ_CAUSE_OFS = 0x1d60, 188c6fd2807SJeff Garzik HC_MAIN_IRQ_MASK_OFS = 0x1d64, 189f351b2d6SSaeed Bishara HC_SOC_MAIN_IRQ_CAUSE_OFS = 0x20020, 190f351b2d6SSaeed Bishara HC_SOC_MAIN_IRQ_MASK_OFS = 0x20024, 191352fab70SMark Lord ERR_IRQ = (1 << 0), /* shift by port # */ 192352fab70SMark Lord DONE_IRQ = (1 << 1), /* shift by port # */ 193c6fd2807SJeff Garzik HC0_IRQ_PEND = 0x1ff, /* bits 0-8 = HC0's ports */ 194c6fd2807SJeff Garzik HC_SHIFT = 9, /* bits 9-17 = HC1's ports */ 195c6fd2807SJeff Garzik PCI_ERR = (1 << 18), 196c6fd2807SJeff Garzik TRAN_LO_DONE = (1 << 19), /* 6xxx: IRQ coalescing */ 197c6fd2807SJeff Garzik TRAN_HI_DONE = (1 << 20), /* 6xxx: IRQ coalescing */ 198fb621e2fSJeff Garzik PORTS_0_3_COAL_DONE = (1 << 8), 199fb621e2fSJeff Garzik PORTS_4_7_COAL_DONE = (1 << 17), 200c6fd2807SJeff Garzik PORTS_0_7_COAL_DONE = (1 << 21), /* 6xxx: IRQ coalescing */ 201c6fd2807SJeff Garzik GPIO_INT = (1 << 22), 202c6fd2807SJeff Garzik SELF_INT = (1 << 23), 203c6fd2807SJeff Garzik TWSI_INT = (1 << 24), 204c6fd2807SJeff Garzik HC_MAIN_RSVD = (0x7f << 25), /* bits 31-25 */ 205fb621e2fSJeff Garzik HC_MAIN_RSVD_5 = (0x1fff << 19), /* bits 31-19 */ 206f351b2d6SSaeed Bishara HC_MAIN_RSVD_SOC = (0x3fffffb << 6), /* bits 31-9, 7-6 */ 207c6fd2807SJeff Garzik HC_MAIN_MASKED_IRQS = (TRAN_LO_DONE | TRAN_HI_DONE | 208f9f7fe01SMark Lord PORTS_0_3_COAL_DONE | PORTS_4_7_COAL_DONE | 209c6fd2807SJeff Garzik PORTS_0_7_COAL_DONE | GPIO_INT | TWSI_INT | 210c6fd2807SJeff Garzik HC_MAIN_RSVD), 211fb621e2fSJeff Garzik HC_MAIN_MASKED_IRQS_5 = (PORTS_0_3_COAL_DONE | PORTS_4_7_COAL_DONE | 212fb621e2fSJeff Garzik HC_MAIN_RSVD_5), 213f351b2d6SSaeed Bishara HC_MAIN_MASKED_IRQS_SOC = (PORTS_0_3_COAL_DONE | HC_MAIN_RSVD_SOC), 214c6fd2807SJeff Garzik 215c6fd2807SJeff Garzik /* SATAHC registers */ 216c6fd2807SJeff Garzik HC_CFG_OFS = 0, 217c6fd2807SJeff Garzik 218c6fd2807SJeff Garzik HC_IRQ_CAUSE_OFS = 0x14, 219352fab70SMark Lord DMA_IRQ = (1 << 0), /* shift by port # */ 220352fab70SMark Lord HC_COAL_IRQ = (1 << 4), /* IRQ coalescing */ 221c6fd2807SJeff Garzik DEV_IRQ = (1 << 8), /* shift by port # */ 222c6fd2807SJeff Garzik 223c6fd2807SJeff Garzik /* Shadow block registers */ 224c6fd2807SJeff Garzik SHD_BLK_OFS = 0x100, 225c6fd2807SJeff Garzik SHD_CTL_AST_OFS = 0x20, /* ofs from SHD_BLK_OFS */ 226c6fd2807SJeff Garzik 227c6fd2807SJeff Garzik /* SATA registers */ 228c6fd2807SJeff Garzik SATA_STATUS_OFS = 0x300, /* ctrl, err regs follow status */ 229c6fd2807SJeff Garzik SATA_ACTIVE_OFS = 0x350, 2300c58912eSMark Lord SATA_FIS_IRQ_CAUSE_OFS = 0x364, 23117c5aab5SMark Lord 232e12bef50SMark Lord LTMODE_OFS = 0x30c, 23317c5aab5SMark Lord LTMODE_BIT8 = (1 << 8), /* unknown, but necessary */ 23417c5aab5SMark Lord 235c6fd2807SJeff Garzik PHY_MODE3 = 0x310, 236c6fd2807SJeff Garzik PHY_MODE4 = 0x314, 237c6fd2807SJeff Garzik PHY_MODE2 = 0x330, 238e12bef50SMark Lord SATA_IFCTL_OFS = 0x344, 239e12bef50SMark Lord SATA_IFSTAT_OFS = 0x34c, 240e12bef50SMark Lord VENDOR_UNIQUE_FIS_OFS = 0x35c, 24117c5aab5SMark Lord 242e12bef50SMark Lord FIS_CFG_OFS = 0x360, 24317c5aab5SMark Lord FIS_CFG_SINGLE_SYNC = (1 << 16), /* SYNC on DMA activation */ 24417c5aab5SMark Lord 245c6fd2807SJeff Garzik MV5_PHY_MODE = 0x74, 246c6fd2807SJeff Garzik MV5_LT_MODE = 0x30, 247c6fd2807SJeff Garzik MV5_PHY_CTL = 0x0C, 248e12bef50SMark Lord SATA_INTERFACE_CFG = 0x050, 249c6fd2807SJeff Garzik 250c6fd2807SJeff Garzik MV_M2_PREAMP_MASK = 0x7e0, 251c6fd2807SJeff Garzik 252c6fd2807SJeff Garzik /* Port registers */ 253c6fd2807SJeff Garzik EDMA_CFG_OFS = 0, 2540c58912eSMark Lord EDMA_CFG_Q_DEPTH = 0x1f, /* max device queue depth */ 2550c58912eSMark Lord EDMA_CFG_NCQ = (1 << 5), /* for R/W FPDMA queued */ 256c6fd2807SJeff Garzik EDMA_CFG_NCQ_GO_ON_ERR = (1 << 14), /* continue on error */ 257c6fd2807SJeff Garzik EDMA_CFG_RD_BRST_EXT = (1 << 11), /* read burst 512B */ 258c6fd2807SJeff Garzik EDMA_CFG_WR_BUFF_LEN = (1 << 13), /* write buffer 512B */ 259e12bef50SMark Lord EDMA_CFG_EDMA_FBS = (1 << 16), /* EDMA FIS-Based Switching */ 260e12bef50SMark Lord EDMA_CFG_FBS = (1 << 26), /* FIS-Based Switching */ 261c6fd2807SJeff Garzik 262c6fd2807SJeff Garzik EDMA_ERR_IRQ_CAUSE_OFS = 0x8, 263c6fd2807SJeff Garzik EDMA_ERR_IRQ_MASK_OFS = 0xc, 2646c1153e0SJeff Garzik EDMA_ERR_D_PAR = (1 << 0), /* UDMA data parity err */ 2656c1153e0SJeff Garzik EDMA_ERR_PRD_PAR = (1 << 1), /* UDMA PRD parity err */ 2666c1153e0SJeff Garzik EDMA_ERR_DEV = (1 << 2), /* device error */ 2676c1153e0SJeff Garzik EDMA_ERR_DEV_DCON = (1 << 3), /* device disconnect */ 2686c1153e0SJeff Garzik EDMA_ERR_DEV_CON = (1 << 4), /* device connected */ 2696c1153e0SJeff Garzik EDMA_ERR_SERR = (1 << 5), /* SError bits [WBDST] raised */ 270c5d3e45aSJeff Garzik EDMA_ERR_SELF_DIS = (1 << 7), /* Gen II/IIE self-disable */ 271c5d3e45aSJeff Garzik EDMA_ERR_SELF_DIS_5 = (1 << 8), /* Gen I self-disable */ 2726c1153e0SJeff Garzik EDMA_ERR_BIST_ASYNC = (1 << 8), /* BIST FIS or Async Notify */ 273c5d3e45aSJeff Garzik EDMA_ERR_TRANS_IRQ_7 = (1 << 8), /* Gen IIE transprt layer irq */ 2746c1153e0SJeff Garzik EDMA_ERR_CRQB_PAR = (1 << 9), /* CRQB parity error */ 2756c1153e0SJeff Garzik EDMA_ERR_CRPB_PAR = (1 << 10), /* CRPB parity error */ 2766c1153e0SJeff Garzik EDMA_ERR_INTRL_PAR = (1 << 11), /* internal parity error */ 2776c1153e0SJeff Garzik EDMA_ERR_IORDY = (1 << 12), /* IORdy timeout */ 278646a4da5SMark Lord 2796c1153e0SJeff Garzik EDMA_ERR_LNK_CTRL_RX = (0xf << 13), /* link ctrl rx error */ 280646a4da5SMark Lord EDMA_ERR_LNK_CTRL_RX_0 = (1 << 13), /* transient: CRC err */ 281646a4da5SMark Lord EDMA_ERR_LNK_CTRL_RX_1 = (1 << 14), /* transient: FIFO err */ 282646a4da5SMark Lord EDMA_ERR_LNK_CTRL_RX_2 = (1 << 15), /* fatal: caught SYNC */ 283646a4da5SMark Lord EDMA_ERR_LNK_CTRL_RX_3 = (1 << 16), /* transient: FIS rx err */ 284646a4da5SMark Lord 2856c1153e0SJeff Garzik EDMA_ERR_LNK_DATA_RX = (0xf << 17), /* link data rx error */ 286646a4da5SMark Lord 2876c1153e0SJeff Garzik EDMA_ERR_LNK_CTRL_TX = (0x1f << 21), /* link ctrl tx error */ 288646a4da5SMark Lord EDMA_ERR_LNK_CTRL_TX_0 = (1 << 21), /* transient: CRC err */ 289646a4da5SMark Lord EDMA_ERR_LNK_CTRL_TX_1 = (1 << 22), /* transient: FIFO err */ 290646a4da5SMark Lord EDMA_ERR_LNK_CTRL_TX_2 = (1 << 23), /* transient: caught SYNC */ 291646a4da5SMark Lord EDMA_ERR_LNK_CTRL_TX_3 = (1 << 24), /* transient: caught DMAT */ 292646a4da5SMark Lord EDMA_ERR_LNK_CTRL_TX_4 = (1 << 25), /* transient: FIS collision */ 293646a4da5SMark Lord 2946c1153e0SJeff Garzik EDMA_ERR_LNK_DATA_TX = (0x1f << 26), /* link data tx error */ 295646a4da5SMark Lord 2966c1153e0SJeff Garzik EDMA_ERR_TRANS_PROTO = (1 << 31), /* transport protocol error */ 297c5d3e45aSJeff Garzik EDMA_ERR_OVERRUN_5 = (1 << 5), 298c5d3e45aSJeff Garzik EDMA_ERR_UNDERRUN_5 = (1 << 6), 299646a4da5SMark Lord 300646a4da5SMark Lord EDMA_ERR_IRQ_TRANSIENT = EDMA_ERR_LNK_CTRL_RX_0 | 301646a4da5SMark Lord EDMA_ERR_LNK_CTRL_RX_1 | 302646a4da5SMark Lord EDMA_ERR_LNK_CTRL_RX_3 | 30340f0bc2dSMark Lord EDMA_ERR_LNK_CTRL_TX | 30440f0bc2dSMark Lord /* temporary, until we fix hotplug: */ 30540f0bc2dSMark Lord (EDMA_ERR_DEV_DCON | EDMA_ERR_DEV_CON), 306646a4da5SMark Lord 307bdd4dddeSJeff Garzik EDMA_EH_FREEZE = EDMA_ERR_D_PAR | 308bdd4dddeSJeff Garzik EDMA_ERR_PRD_PAR | 309bdd4dddeSJeff Garzik EDMA_ERR_DEV_DCON | 310bdd4dddeSJeff Garzik EDMA_ERR_DEV_CON | 311bdd4dddeSJeff Garzik EDMA_ERR_SERR | 312bdd4dddeSJeff Garzik EDMA_ERR_SELF_DIS | 3136c1153e0SJeff Garzik EDMA_ERR_CRQB_PAR | 314bdd4dddeSJeff Garzik EDMA_ERR_CRPB_PAR | 315bdd4dddeSJeff Garzik EDMA_ERR_INTRL_PAR | 316bdd4dddeSJeff Garzik EDMA_ERR_IORDY | 317bdd4dddeSJeff Garzik EDMA_ERR_LNK_CTRL_RX_2 | 318c6fd2807SJeff Garzik EDMA_ERR_LNK_DATA_RX | 319c6fd2807SJeff Garzik EDMA_ERR_LNK_DATA_TX | 320bdd4dddeSJeff Garzik EDMA_ERR_TRANS_PROTO, 321e12bef50SMark Lord 322bdd4dddeSJeff Garzik EDMA_EH_FREEZE_5 = EDMA_ERR_D_PAR | 323bdd4dddeSJeff Garzik EDMA_ERR_PRD_PAR | 324bdd4dddeSJeff Garzik EDMA_ERR_DEV_DCON | 325bdd4dddeSJeff Garzik EDMA_ERR_DEV_CON | 326bdd4dddeSJeff Garzik EDMA_ERR_OVERRUN_5 | 327bdd4dddeSJeff Garzik EDMA_ERR_UNDERRUN_5 | 328bdd4dddeSJeff Garzik EDMA_ERR_SELF_DIS_5 | 3296c1153e0SJeff Garzik EDMA_ERR_CRQB_PAR | 330bdd4dddeSJeff Garzik EDMA_ERR_CRPB_PAR | 331bdd4dddeSJeff Garzik EDMA_ERR_INTRL_PAR | 332bdd4dddeSJeff Garzik EDMA_ERR_IORDY, 333c6fd2807SJeff Garzik 334c6fd2807SJeff Garzik EDMA_REQ_Q_BASE_HI_OFS = 0x10, 335c6fd2807SJeff Garzik EDMA_REQ_Q_IN_PTR_OFS = 0x14, /* also contains BASE_LO */ 336c6fd2807SJeff Garzik 337c6fd2807SJeff Garzik EDMA_REQ_Q_OUT_PTR_OFS = 0x18, 338c6fd2807SJeff Garzik EDMA_REQ_Q_PTR_SHIFT = 5, 339c6fd2807SJeff Garzik 340c6fd2807SJeff Garzik EDMA_RSP_Q_BASE_HI_OFS = 0x1c, 341c6fd2807SJeff Garzik EDMA_RSP_Q_IN_PTR_OFS = 0x20, 342c6fd2807SJeff Garzik EDMA_RSP_Q_OUT_PTR_OFS = 0x24, /* also contains BASE_LO */ 343c6fd2807SJeff Garzik EDMA_RSP_Q_PTR_SHIFT = 3, 344c6fd2807SJeff Garzik 3450ea9e179SJeff Garzik EDMA_CMD_OFS = 0x28, /* EDMA command register */ 3460ea9e179SJeff Garzik EDMA_EN = (1 << 0), /* enable EDMA */ 3470ea9e179SJeff Garzik EDMA_DS = (1 << 1), /* disable EDMA; self-negated */ 3480ea9e179SJeff Garzik ATA_RST = (1 << 2), /* reset trans/link/phy */ 349c6fd2807SJeff Garzik 350c6fd2807SJeff Garzik EDMA_IORDY_TMOUT = 0x34, 351c6fd2807SJeff Garzik EDMA_ARB_CFG = 0x38, 352c6fd2807SJeff Garzik 353352fab70SMark Lord GEN_II_NCQ_MAX_SECTORS = 256, /* max sects/io on Gen2 w/NCQ */ 354352fab70SMark Lord 355c6fd2807SJeff Garzik /* Host private flags (hp_flags) */ 356c6fd2807SJeff Garzik MV_HP_FLAG_MSI = (1 << 0), 357c6fd2807SJeff Garzik MV_HP_ERRATA_50XXB0 = (1 << 1), 358c6fd2807SJeff Garzik MV_HP_ERRATA_50XXB2 = (1 << 2), 359c6fd2807SJeff Garzik MV_HP_ERRATA_60X1B2 = (1 << 3), 360c6fd2807SJeff Garzik MV_HP_ERRATA_60X1C0 = (1 << 4), 361c6fd2807SJeff Garzik MV_HP_ERRATA_XX42A0 = (1 << 5), 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 */ 366c6fd2807SJeff Garzik 367c6fd2807SJeff Garzik /* Port private flags (pp_flags) */ 3680ea9e179SJeff Garzik MV_PP_FLAG_EDMA_EN = (1 << 0), /* is EDMA engine enabled? */ 36972109168SMark Lord MV_PP_FLAG_NCQ_EN = (1 << 1), /* is EDMA set up for NCQ? */ 370c6fd2807SJeff Garzik }; 371c6fd2807SJeff Garzik 372ee9ccdf7SJeff Garzik #define IS_GEN_I(hpriv) ((hpriv)->hp_flags & MV_HP_GEN_I) 373ee9ccdf7SJeff Garzik #define IS_GEN_II(hpriv) ((hpriv)->hp_flags & MV_HP_GEN_II) 374c6fd2807SJeff Garzik #define IS_GEN_IIE(hpriv) ((hpriv)->hp_flags & MV_HP_GEN_IIE) 3757bb3c529SSaeed Bishara #define HAS_PCI(host) (!((host)->ports[0]->flags & MV_FLAG_SOC)) 376c6fd2807SJeff Garzik 37715a32632SLennert Buytenhek #define WINDOW_CTRL(i) (0x20030 + ((i) << 4)) 37815a32632SLennert Buytenhek #define WINDOW_BASE(i) (0x20034 + ((i) << 4)) 37915a32632SLennert Buytenhek 380c6fd2807SJeff Garzik enum { 381baf14aa1SJeff Garzik /* DMA boundary 0xffff is required by the s/g splitting 382baf14aa1SJeff Garzik * we need on /length/ in mv_fill-sg(). 383baf14aa1SJeff Garzik */ 384baf14aa1SJeff Garzik MV_DMA_BOUNDARY = 0xffffU, 385c6fd2807SJeff Garzik 3860ea9e179SJeff Garzik /* mask of register bits containing lower 32 bits 3870ea9e179SJeff Garzik * of EDMA request queue DMA address 3880ea9e179SJeff Garzik */ 389c6fd2807SJeff Garzik EDMA_REQ_Q_BASE_LO_MASK = 0xfffffc00U, 390c6fd2807SJeff Garzik 3910ea9e179SJeff Garzik /* ditto, for response queue */ 392c6fd2807SJeff Garzik EDMA_RSP_Q_BASE_LO_MASK = 0xffffff00U, 393c6fd2807SJeff Garzik }; 394c6fd2807SJeff Garzik 395c6fd2807SJeff Garzik enum chip_type { 396c6fd2807SJeff Garzik chip_504x, 397c6fd2807SJeff Garzik chip_508x, 398c6fd2807SJeff Garzik chip_5080, 399c6fd2807SJeff Garzik chip_604x, 400c6fd2807SJeff Garzik chip_608x, 401c6fd2807SJeff Garzik chip_6042, 402c6fd2807SJeff Garzik chip_7042, 403f351b2d6SSaeed Bishara chip_soc, 404c6fd2807SJeff Garzik }; 405c6fd2807SJeff Garzik 406c6fd2807SJeff Garzik /* Command ReQuest Block: 32B */ 407c6fd2807SJeff Garzik struct mv_crqb { 408c6fd2807SJeff Garzik __le32 sg_addr; 409c6fd2807SJeff Garzik __le32 sg_addr_hi; 410c6fd2807SJeff Garzik __le16 ctrl_flags; 411c6fd2807SJeff Garzik __le16 ata_cmd[11]; 412c6fd2807SJeff Garzik }; 413c6fd2807SJeff Garzik 414c6fd2807SJeff Garzik struct mv_crqb_iie { 415c6fd2807SJeff Garzik __le32 addr; 416c6fd2807SJeff Garzik __le32 addr_hi; 417c6fd2807SJeff Garzik __le32 flags; 418c6fd2807SJeff Garzik __le32 len; 419c6fd2807SJeff Garzik __le32 ata_cmd[4]; 420c6fd2807SJeff Garzik }; 421c6fd2807SJeff Garzik 422c6fd2807SJeff Garzik /* Command ResPonse Block: 8B */ 423c6fd2807SJeff Garzik struct mv_crpb { 424c6fd2807SJeff Garzik __le16 id; 425c6fd2807SJeff Garzik __le16 flags; 426c6fd2807SJeff Garzik __le32 tmstmp; 427c6fd2807SJeff Garzik }; 428c6fd2807SJeff Garzik 429c6fd2807SJeff Garzik /* EDMA Physical Region Descriptor (ePRD); A.K.A. SG */ 430c6fd2807SJeff Garzik struct mv_sg { 431c6fd2807SJeff Garzik __le32 addr; 432c6fd2807SJeff Garzik __le32 flags_size; 433c6fd2807SJeff Garzik __le32 addr_hi; 434c6fd2807SJeff Garzik __le32 reserved; 435c6fd2807SJeff Garzik }; 436c6fd2807SJeff Garzik 437c6fd2807SJeff Garzik struct mv_port_priv { 438c6fd2807SJeff Garzik struct mv_crqb *crqb; 439c6fd2807SJeff Garzik dma_addr_t crqb_dma; 440c6fd2807SJeff Garzik struct mv_crpb *crpb; 441c6fd2807SJeff Garzik dma_addr_t crpb_dma; 442eb73d558SMark Lord struct mv_sg *sg_tbl[MV_MAX_Q_DEPTH]; 443eb73d558SMark Lord dma_addr_t sg_tbl_dma[MV_MAX_Q_DEPTH]; 444bdd4dddeSJeff Garzik 445bdd4dddeSJeff Garzik unsigned int req_idx; 446bdd4dddeSJeff Garzik unsigned int resp_idx; 447bdd4dddeSJeff Garzik 448c6fd2807SJeff Garzik u32 pp_flags; 449c6fd2807SJeff Garzik }; 450c6fd2807SJeff Garzik 451c6fd2807SJeff Garzik struct mv_port_signal { 452c6fd2807SJeff Garzik u32 amps; 453c6fd2807SJeff Garzik u32 pre; 454c6fd2807SJeff Garzik }; 455c6fd2807SJeff Garzik 45602a121daSMark Lord struct mv_host_priv { 45702a121daSMark Lord u32 hp_flags; 45802a121daSMark Lord struct mv_port_signal signal[8]; 45902a121daSMark Lord const struct mv_hw_ops *ops; 460f351b2d6SSaeed Bishara int n_ports; 461f351b2d6SSaeed Bishara void __iomem *base; 462f351b2d6SSaeed Bishara void __iomem *main_cause_reg_addr; 463f351b2d6SSaeed Bishara void __iomem *main_mask_reg_addr; 46402a121daSMark Lord u32 irq_cause_ofs; 46502a121daSMark Lord u32 irq_mask_ofs; 46602a121daSMark Lord u32 unmask_all_irqs; 467da2fa9baSMark Lord /* 468da2fa9baSMark Lord * These consistent DMA memory pools give us guaranteed 469da2fa9baSMark Lord * alignment for hardware-accessed data structures, 470da2fa9baSMark Lord * and less memory waste in accomplishing the alignment. 471da2fa9baSMark Lord */ 472da2fa9baSMark Lord struct dma_pool *crqb_pool; 473da2fa9baSMark Lord struct dma_pool *crpb_pool; 474da2fa9baSMark Lord struct dma_pool *sg_tbl_pool; 47502a121daSMark Lord }; 47602a121daSMark Lord 477c6fd2807SJeff Garzik struct mv_hw_ops { 478c6fd2807SJeff Garzik void (*phy_errata)(struct mv_host_priv *hpriv, void __iomem *mmio, 479c6fd2807SJeff Garzik unsigned int port); 480c6fd2807SJeff Garzik void (*enable_leds)(struct mv_host_priv *hpriv, void __iomem *mmio); 481c6fd2807SJeff Garzik void (*read_preamp)(struct mv_host_priv *hpriv, int idx, 482c6fd2807SJeff Garzik void __iomem *mmio); 483c6fd2807SJeff Garzik int (*reset_hc)(struct mv_host_priv *hpriv, void __iomem *mmio, 484c6fd2807SJeff Garzik unsigned int n_hc); 485c6fd2807SJeff Garzik void (*reset_flash)(struct mv_host_priv *hpriv, void __iomem *mmio); 4867bb3c529SSaeed Bishara void (*reset_bus)(struct ata_host *host, void __iomem *mmio); 487c6fd2807SJeff Garzik }; 488c6fd2807SJeff Garzik 489da3dbb17STejun Heo static int mv_scr_read(struct ata_port *ap, unsigned int sc_reg_in, u32 *val); 490da3dbb17STejun Heo static int mv_scr_write(struct ata_port *ap, unsigned int sc_reg_in, u32 val); 491da3dbb17STejun Heo static int mv5_scr_read(struct ata_port *ap, unsigned int sc_reg_in, u32 *val); 492da3dbb17STejun Heo static int mv5_scr_write(struct ata_port *ap, unsigned int sc_reg_in, u32 val); 493c6fd2807SJeff Garzik static int mv_port_start(struct ata_port *ap); 494c6fd2807SJeff Garzik static void mv_port_stop(struct ata_port *ap); 495c6fd2807SJeff Garzik static void mv_qc_prep(struct ata_queued_cmd *qc); 496c6fd2807SJeff Garzik static void mv_qc_prep_iie(struct ata_queued_cmd *qc); 497c6fd2807SJeff Garzik static unsigned int mv_qc_issue(struct ata_queued_cmd *qc); 498a1efdabaSTejun Heo static int mv_hardreset(struct ata_link *link, unsigned int *class, 499a1efdabaSTejun Heo unsigned long deadline); 500bdd4dddeSJeff Garzik static void mv_eh_freeze(struct ata_port *ap); 501bdd4dddeSJeff Garzik static void mv_eh_thaw(struct ata_port *ap); 502f273827eSMark Lord static void mv6_dev_config(struct ata_device *dev); 503c6fd2807SJeff Garzik 504c6fd2807SJeff Garzik static void mv5_phy_errata(struct mv_host_priv *hpriv, void __iomem *mmio, 505c6fd2807SJeff Garzik unsigned int port); 506c6fd2807SJeff Garzik static void mv5_enable_leds(struct mv_host_priv *hpriv, void __iomem *mmio); 507c6fd2807SJeff Garzik static void mv5_read_preamp(struct mv_host_priv *hpriv, int idx, 508c6fd2807SJeff Garzik void __iomem *mmio); 509c6fd2807SJeff Garzik static int mv5_reset_hc(struct mv_host_priv *hpriv, void __iomem *mmio, 510c6fd2807SJeff Garzik unsigned int n_hc); 511c6fd2807SJeff Garzik static void mv5_reset_flash(struct mv_host_priv *hpriv, void __iomem *mmio); 5127bb3c529SSaeed Bishara static void mv5_reset_bus(struct ata_host *host, void __iomem *mmio); 513c6fd2807SJeff Garzik 514c6fd2807SJeff Garzik static void mv6_phy_errata(struct mv_host_priv *hpriv, void __iomem *mmio, 515c6fd2807SJeff Garzik unsigned int port); 516c6fd2807SJeff Garzik static void mv6_enable_leds(struct mv_host_priv *hpriv, void __iomem *mmio); 517c6fd2807SJeff Garzik static void mv6_read_preamp(struct mv_host_priv *hpriv, int idx, 518c6fd2807SJeff Garzik void __iomem *mmio); 519c6fd2807SJeff Garzik static int mv6_reset_hc(struct mv_host_priv *hpriv, void __iomem *mmio, 520c6fd2807SJeff Garzik unsigned int n_hc); 521c6fd2807SJeff Garzik static void mv6_reset_flash(struct mv_host_priv *hpriv, void __iomem *mmio); 522f351b2d6SSaeed Bishara static void mv_soc_enable_leds(struct mv_host_priv *hpriv, 523f351b2d6SSaeed Bishara void __iomem *mmio); 524f351b2d6SSaeed Bishara static void mv_soc_read_preamp(struct mv_host_priv *hpriv, int idx, 525f351b2d6SSaeed Bishara void __iomem *mmio); 526f351b2d6SSaeed Bishara static int mv_soc_reset_hc(struct mv_host_priv *hpriv, 527f351b2d6SSaeed Bishara void __iomem *mmio, unsigned int n_hc); 528f351b2d6SSaeed Bishara static void mv_soc_reset_flash(struct mv_host_priv *hpriv, 529f351b2d6SSaeed Bishara void __iomem *mmio); 530f351b2d6SSaeed Bishara static void mv_soc_reset_bus(struct ata_host *host, void __iomem *mmio); 5317bb3c529SSaeed Bishara static void mv_reset_pci_bus(struct ata_host *host, void __iomem *mmio); 532e12bef50SMark Lord static void mv_reset_channel(struct mv_host_priv *hpriv, void __iomem *mmio, 533c6fd2807SJeff Garzik unsigned int port_no); 534e12bef50SMark Lord static int mv_stop_edma(struct ata_port *ap); 535b562468cSMark Lord static int mv_stop_edma_engine(void __iomem *port_mmio); 536e12bef50SMark Lord static void mv_edma_cfg(struct ata_port *ap, int want_ncq); 537c6fd2807SJeff Garzik 538e49856d8SMark Lord static void mv_pmp_select(struct ata_port *ap, int pmp); 539e49856d8SMark Lord static int mv_pmp_hardreset(struct ata_link *link, unsigned int *class, 540e49856d8SMark Lord unsigned long deadline); 541e49856d8SMark Lord static int mv_softreset(struct ata_link *link, unsigned int *class, 542e49856d8SMark Lord unsigned long deadline); 543c6fd2807SJeff Garzik 544eb73d558SMark Lord /* .sg_tablesize is (MV_MAX_SG_CT / 2) in the structures below 545eb73d558SMark Lord * because we have to allow room for worst case splitting of 546eb73d558SMark Lord * PRDs for 64K boundaries in mv_fill_sg(). 547eb73d558SMark Lord */ 548c5d3e45aSJeff Garzik static struct scsi_host_template mv5_sht = { 54968d1d07bSTejun Heo ATA_BASE_SHT(DRV_NAME), 550baf14aa1SJeff Garzik .sg_tablesize = MV_MAX_SG_CT / 2, 551c5d3e45aSJeff Garzik .dma_boundary = MV_DMA_BOUNDARY, 552c5d3e45aSJeff Garzik }; 553c5d3e45aSJeff Garzik 554c5d3e45aSJeff Garzik static struct scsi_host_template mv6_sht = { 55568d1d07bSTejun Heo ATA_NCQ_SHT(DRV_NAME), 556138bfdd0SMark Lord .can_queue = MV_MAX_Q_DEPTH - 1, 557baf14aa1SJeff Garzik .sg_tablesize = MV_MAX_SG_CT / 2, 558c6fd2807SJeff Garzik .dma_boundary = MV_DMA_BOUNDARY, 559c6fd2807SJeff Garzik }; 560c6fd2807SJeff Garzik 561029cfd6bSTejun Heo static struct ata_port_operations mv5_ops = { 562029cfd6bSTejun Heo .inherits = &ata_sff_port_ops, 563c6fd2807SJeff Garzik 564c6fd2807SJeff Garzik .qc_prep = mv_qc_prep, 565c6fd2807SJeff Garzik .qc_issue = mv_qc_issue, 566c6fd2807SJeff Garzik 567bdd4dddeSJeff Garzik .freeze = mv_eh_freeze, 568bdd4dddeSJeff Garzik .thaw = mv_eh_thaw, 569a1efdabaSTejun Heo .hardreset = mv_hardreset, 570a1efdabaSTejun Heo .error_handler = ata_std_error_handler, /* avoid SFF EH */ 571029cfd6bSTejun Heo .post_internal_cmd = ATA_OP_NULL, 572bdd4dddeSJeff Garzik 573c6fd2807SJeff Garzik .scr_read = mv5_scr_read, 574c6fd2807SJeff Garzik .scr_write = mv5_scr_write, 575c6fd2807SJeff Garzik 576c6fd2807SJeff Garzik .port_start = mv_port_start, 577c6fd2807SJeff Garzik .port_stop = mv_port_stop, 578c6fd2807SJeff Garzik }; 579c6fd2807SJeff Garzik 580029cfd6bSTejun Heo static struct ata_port_operations mv6_ops = { 581029cfd6bSTejun Heo .inherits = &mv5_ops, 582e49856d8SMark Lord .qc_defer = sata_pmp_qc_defer_cmd_switch, 583f273827eSMark Lord .dev_config = mv6_dev_config, 584c6fd2807SJeff Garzik .scr_read = mv_scr_read, 585c6fd2807SJeff Garzik .scr_write = mv_scr_write, 586c6fd2807SJeff Garzik 587e49856d8SMark Lord .pmp_hardreset = mv_pmp_hardreset, 588e49856d8SMark Lord .pmp_softreset = mv_softreset, 589e49856d8SMark Lord .softreset = mv_softreset, 590e49856d8SMark Lord .error_handler = sata_pmp_error_handler, 591c6fd2807SJeff Garzik }; 592c6fd2807SJeff Garzik 593029cfd6bSTejun Heo static struct ata_port_operations mv_iie_ops = { 594029cfd6bSTejun Heo .inherits = &mv6_ops, 595e49856d8SMark Lord .qc_defer = ata_std_qc_defer, /* FIS-based switching */ 596029cfd6bSTejun Heo .dev_config = ATA_OP_NULL, 597c6fd2807SJeff Garzik .qc_prep = mv_qc_prep_iie, 598c6fd2807SJeff Garzik }; 599c6fd2807SJeff Garzik 600c6fd2807SJeff Garzik static const struct ata_port_info mv_port_info[] = { 601c6fd2807SJeff Garzik { /* chip_504x */ 602cca3974eSJeff Garzik .flags = MV_COMMON_FLAGS, 603c6fd2807SJeff Garzik .pio_mask = 0x1f, /* pio0-4 */ 604bf6263a8SJeff Garzik .udma_mask = ATA_UDMA6, 605c6fd2807SJeff Garzik .port_ops = &mv5_ops, 606c6fd2807SJeff Garzik }, 607c6fd2807SJeff Garzik { /* chip_508x */ 608c5d3e45aSJeff Garzik .flags = MV_COMMON_FLAGS | MV_FLAG_DUAL_HC, 609c6fd2807SJeff Garzik .pio_mask = 0x1f, /* pio0-4 */ 610bf6263a8SJeff Garzik .udma_mask = ATA_UDMA6, 611c6fd2807SJeff Garzik .port_ops = &mv5_ops, 612c6fd2807SJeff Garzik }, 613c6fd2807SJeff Garzik { /* chip_5080 */ 614c5d3e45aSJeff Garzik .flags = MV_COMMON_FLAGS | MV_FLAG_DUAL_HC, 615c6fd2807SJeff Garzik .pio_mask = 0x1f, /* pio0-4 */ 616bf6263a8SJeff Garzik .udma_mask = ATA_UDMA6, 617c6fd2807SJeff Garzik .port_ops = &mv5_ops, 618c6fd2807SJeff Garzik }, 619c6fd2807SJeff Garzik { /* chip_604x */ 620138bfdd0SMark Lord .flags = MV_COMMON_FLAGS | MV_6XXX_FLAGS | 621e49856d8SMark Lord ATA_FLAG_PMP | ATA_FLAG_ACPI_SATA | 622138bfdd0SMark Lord ATA_FLAG_NCQ, 623c6fd2807SJeff Garzik .pio_mask = 0x1f, /* pio0-4 */ 624bf6263a8SJeff Garzik .udma_mask = ATA_UDMA6, 625c6fd2807SJeff Garzik .port_ops = &mv6_ops, 626c6fd2807SJeff Garzik }, 627c6fd2807SJeff Garzik { /* chip_608x */ 628c5d3e45aSJeff Garzik .flags = MV_COMMON_FLAGS | MV_6XXX_FLAGS | 629e49856d8SMark Lord ATA_FLAG_PMP | ATA_FLAG_ACPI_SATA | 630138bfdd0SMark Lord ATA_FLAG_NCQ | MV_FLAG_DUAL_HC, 631c6fd2807SJeff Garzik .pio_mask = 0x1f, /* pio0-4 */ 632bf6263a8SJeff Garzik .udma_mask = ATA_UDMA6, 633c6fd2807SJeff Garzik .port_ops = &mv6_ops, 634c6fd2807SJeff Garzik }, 635c6fd2807SJeff Garzik { /* chip_6042 */ 636138bfdd0SMark Lord .flags = MV_COMMON_FLAGS | MV_6XXX_FLAGS | 637e49856d8SMark Lord ATA_FLAG_PMP | ATA_FLAG_ACPI_SATA | 638138bfdd0SMark Lord ATA_FLAG_NCQ, 639c6fd2807SJeff Garzik .pio_mask = 0x1f, /* pio0-4 */ 640bf6263a8SJeff Garzik .udma_mask = ATA_UDMA6, 641c6fd2807SJeff Garzik .port_ops = &mv_iie_ops, 642c6fd2807SJeff Garzik }, 643c6fd2807SJeff Garzik { /* chip_7042 */ 644138bfdd0SMark Lord .flags = MV_COMMON_FLAGS | MV_6XXX_FLAGS | 645e49856d8SMark Lord ATA_FLAG_PMP | ATA_FLAG_ACPI_SATA | 646138bfdd0SMark Lord ATA_FLAG_NCQ, 647c6fd2807SJeff Garzik .pio_mask = 0x1f, /* pio0-4 */ 648bf6263a8SJeff Garzik .udma_mask = ATA_UDMA6, 649c6fd2807SJeff Garzik .port_ops = &mv_iie_ops, 650c6fd2807SJeff Garzik }, 651f351b2d6SSaeed Bishara { /* chip_soc */ 65202c1f32fSMark Lord .flags = MV_COMMON_FLAGS | MV_6XXX_FLAGS | 653e49856d8SMark Lord ATA_FLAG_PMP | ATA_FLAG_ACPI_SATA | 65402c1f32fSMark Lord ATA_FLAG_NCQ | MV_FLAG_SOC, 655f351b2d6SSaeed Bishara .pio_mask = 0x1f, /* pio0-4 */ 656f351b2d6SSaeed Bishara .udma_mask = ATA_UDMA6, 657f351b2d6SSaeed Bishara .port_ops = &mv_iie_ops, 658f351b2d6SSaeed Bishara }, 659c6fd2807SJeff Garzik }; 660c6fd2807SJeff Garzik 661c6fd2807SJeff Garzik static const struct pci_device_id mv_pci_tbl[] = { 6622d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x5040), chip_504x }, 6632d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x5041), chip_504x }, 6642d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x5080), chip_5080 }, 6652d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x5081), chip_508x }, 666cfbf723eSAlan Cox /* RocketRAID 1740/174x have different identifiers */ 667cfbf723eSAlan Cox { PCI_VDEVICE(TTI, 0x1740), chip_508x }, 668cfbf723eSAlan Cox { PCI_VDEVICE(TTI, 0x1742), chip_508x }, 669c6fd2807SJeff Garzik 6702d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x6040), chip_604x }, 6712d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x6041), chip_604x }, 6722d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x6042), chip_6042 }, 6732d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x6080), chip_608x }, 6742d2744fcSJeff Garzik { PCI_VDEVICE(MARVELL, 0x6081), chip_608x }, 675c6fd2807SJeff Garzik 6762d2744fcSJeff Garzik { PCI_VDEVICE(ADAPTEC2, 0x0241), chip_604x }, 6772d2744fcSJeff Garzik 678d9f9c6bcSFlorian Attenberger /* Adaptec 1430SA */ 679d9f9c6bcSFlorian Attenberger { PCI_VDEVICE(ADAPTEC2, 0x0243), chip_7042 }, 680d9f9c6bcSFlorian Attenberger 68102a121daSMark Lord /* Marvell 7042 support */ 6826a3d586dSMorrison, Tom { PCI_VDEVICE(MARVELL, 0x7042), chip_7042 }, 6836a3d586dSMorrison, Tom 68402a121daSMark Lord /* Highpoint RocketRAID PCIe series */ 68502a121daSMark Lord { PCI_VDEVICE(TTI, 0x2300), chip_7042 }, 68602a121daSMark Lord { PCI_VDEVICE(TTI, 0x2310), chip_7042 }, 68702a121daSMark Lord 688c6fd2807SJeff Garzik { } /* terminate list */ 689c6fd2807SJeff Garzik }; 690c6fd2807SJeff Garzik 691c6fd2807SJeff Garzik static const struct mv_hw_ops mv5xxx_ops = { 692c6fd2807SJeff Garzik .phy_errata = mv5_phy_errata, 693c6fd2807SJeff Garzik .enable_leds = mv5_enable_leds, 694c6fd2807SJeff Garzik .read_preamp = mv5_read_preamp, 695c6fd2807SJeff Garzik .reset_hc = mv5_reset_hc, 696c6fd2807SJeff Garzik .reset_flash = mv5_reset_flash, 697c6fd2807SJeff Garzik .reset_bus = mv5_reset_bus, 698c6fd2807SJeff Garzik }; 699c6fd2807SJeff Garzik 700c6fd2807SJeff Garzik static const struct mv_hw_ops mv6xxx_ops = { 701c6fd2807SJeff Garzik .phy_errata = mv6_phy_errata, 702c6fd2807SJeff Garzik .enable_leds = mv6_enable_leds, 703c6fd2807SJeff Garzik .read_preamp = mv6_read_preamp, 704c6fd2807SJeff Garzik .reset_hc = mv6_reset_hc, 705c6fd2807SJeff Garzik .reset_flash = mv6_reset_flash, 706c6fd2807SJeff Garzik .reset_bus = mv_reset_pci_bus, 707c6fd2807SJeff Garzik }; 708c6fd2807SJeff Garzik 709f351b2d6SSaeed Bishara static const struct mv_hw_ops mv_soc_ops = { 710f351b2d6SSaeed Bishara .phy_errata = mv6_phy_errata, 711f351b2d6SSaeed Bishara .enable_leds = mv_soc_enable_leds, 712f351b2d6SSaeed Bishara .read_preamp = mv_soc_read_preamp, 713f351b2d6SSaeed Bishara .reset_hc = mv_soc_reset_hc, 714f351b2d6SSaeed Bishara .reset_flash = mv_soc_reset_flash, 715f351b2d6SSaeed Bishara .reset_bus = mv_soc_reset_bus, 716f351b2d6SSaeed Bishara }; 717f351b2d6SSaeed Bishara 718c6fd2807SJeff Garzik /* 719c6fd2807SJeff Garzik * Functions 720c6fd2807SJeff Garzik */ 721c6fd2807SJeff Garzik 722c6fd2807SJeff Garzik static inline void writelfl(unsigned long data, void __iomem *addr) 723c6fd2807SJeff Garzik { 724c6fd2807SJeff Garzik writel(data, addr); 725c6fd2807SJeff Garzik (void) readl(addr); /* flush to avoid PCI posted write */ 726c6fd2807SJeff Garzik } 727c6fd2807SJeff Garzik 728c6fd2807SJeff Garzik static inline unsigned int mv_hc_from_port(unsigned int port) 729c6fd2807SJeff Garzik { 730c6fd2807SJeff Garzik return port >> MV_PORT_HC_SHIFT; 731c6fd2807SJeff Garzik } 732c6fd2807SJeff Garzik 733c6fd2807SJeff Garzik static inline unsigned int mv_hardport_from_port(unsigned int port) 734c6fd2807SJeff Garzik { 735c6fd2807SJeff Garzik return port & MV_PORT_MASK; 736c6fd2807SJeff Garzik } 737c6fd2807SJeff Garzik 7381cfd19aeSMark Lord /* 7391cfd19aeSMark Lord * Consolidate some rather tricky bit shift calculations. 7401cfd19aeSMark Lord * This is hot-path stuff, so not a function. 7411cfd19aeSMark Lord * Simple code, with two return values, so macro rather than inline. 7421cfd19aeSMark Lord * 7431cfd19aeSMark Lord * port is the sole input, in range 0..7. 7441cfd19aeSMark Lord * shift is one output, for use with the main_cause and main_mask registers. 7451cfd19aeSMark Lord * hardport is the other output, in range 0..3 7461cfd19aeSMark Lord * 7471cfd19aeSMark Lord * Note that port and hardport may be the same variable in some cases. 7481cfd19aeSMark Lord */ 7491cfd19aeSMark Lord #define MV_PORT_TO_SHIFT_AND_HARDPORT(port, shift, hardport) \ 7501cfd19aeSMark Lord { \ 7511cfd19aeSMark Lord shift = mv_hc_from_port(port) * HC_SHIFT; \ 7521cfd19aeSMark Lord hardport = mv_hardport_from_port(port); \ 7531cfd19aeSMark Lord shift += hardport * 2; \ 7541cfd19aeSMark Lord } 7551cfd19aeSMark Lord 756352fab70SMark Lord static inline void __iomem *mv_hc_base(void __iomem *base, unsigned int hc) 757352fab70SMark Lord { 758352fab70SMark Lord return (base + MV_SATAHC0_REG_BASE + (hc * MV_SATAHC_REG_SZ)); 759352fab70SMark Lord } 760352fab70SMark Lord 761c6fd2807SJeff Garzik static inline void __iomem *mv_hc_base_from_port(void __iomem *base, 762c6fd2807SJeff Garzik unsigned int port) 763c6fd2807SJeff Garzik { 764c6fd2807SJeff Garzik return mv_hc_base(base, mv_hc_from_port(port)); 765c6fd2807SJeff Garzik } 766c6fd2807SJeff Garzik 767c6fd2807SJeff Garzik static inline void __iomem *mv_port_base(void __iomem *base, unsigned int port) 768c6fd2807SJeff Garzik { 769c6fd2807SJeff Garzik return mv_hc_base_from_port(base, port) + 770c6fd2807SJeff Garzik MV_SATAHC_ARBTR_REG_SZ + 771c6fd2807SJeff Garzik (mv_hardport_from_port(port) * MV_PORT_REG_SZ); 772c6fd2807SJeff Garzik } 773c6fd2807SJeff Garzik 774e12bef50SMark Lord static void __iomem *mv5_phy_base(void __iomem *mmio, unsigned int port) 775e12bef50SMark Lord { 776e12bef50SMark Lord void __iomem *hc_mmio = mv_hc_base_from_port(mmio, port); 777e12bef50SMark Lord unsigned long ofs = (mv_hardport_from_port(port) + 1) * 0x100UL; 778e12bef50SMark Lord 779e12bef50SMark Lord return hc_mmio + ofs; 780e12bef50SMark Lord } 781e12bef50SMark Lord 782f351b2d6SSaeed Bishara static inline void __iomem *mv_host_base(struct ata_host *host) 783f351b2d6SSaeed Bishara { 784f351b2d6SSaeed Bishara struct mv_host_priv *hpriv = host->private_data; 785f351b2d6SSaeed Bishara return hpriv->base; 786f351b2d6SSaeed Bishara } 787f351b2d6SSaeed Bishara 788c6fd2807SJeff Garzik static inline void __iomem *mv_ap_base(struct ata_port *ap) 789c6fd2807SJeff Garzik { 790f351b2d6SSaeed Bishara return mv_port_base(mv_host_base(ap->host), ap->port_no); 791c6fd2807SJeff Garzik } 792c6fd2807SJeff Garzik 793cca3974eSJeff Garzik static inline int mv_get_hc_count(unsigned long port_flags) 794c6fd2807SJeff Garzik { 795cca3974eSJeff Garzik return ((port_flags & MV_FLAG_DUAL_HC) ? 2 : 1); 796c6fd2807SJeff Garzik } 797c6fd2807SJeff Garzik 798c5d3e45aSJeff Garzik static void mv_set_edma_ptrs(void __iomem *port_mmio, 799c5d3e45aSJeff Garzik struct mv_host_priv *hpriv, 800c5d3e45aSJeff Garzik struct mv_port_priv *pp) 801c5d3e45aSJeff Garzik { 802bdd4dddeSJeff Garzik u32 index; 803bdd4dddeSJeff Garzik 804c5d3e45aSJeff Garzik /* 805c5d3e45aSJeff Garzik * initialize request queue 806c5d3e45aSJeff Garzik */ 807fcfb1f77SMark Lord pp->req_idx &= MV_MAX_Q_DEPTH_MASK; /* paranoia */ 808fcfb1f77SMark Lord index = pp->req_idx << EDMA_REQ_Q_PTR_SHIFT; 809bdd4dddeSJeff Garzik 810c5d3e45aSJeff Garzik WARN_ON(pp->crqb_dma & 0x3ff); 811c5d3e45aSJeff Garzik writel((pp->crqb_dma >> 16) >> 16, port_mmio + EDMA_REQ_Q_BASE_HI_OFS); 812bdd4dddeSJeff Garzik writelfl((pp->crqb_dma & EDMA_REQ_Q_BASE_LO_MASK) | index, 813c5d3e45aSJeff Garzik port_mmio + EDMA_REQ_Q_IN_PTR_OFS); 814c5d3e45aSJeff Garzik 815c5d3e45aSJeff Garzik if (hpriv->hp_flags & MV_HP_ERRATA_XX42A0) 816bdd4dddeSJeff Garzik writelfl((pp->crqb_dma & 0xffffffff) | index, 817c5d3e45aSJeff Garzik port_mmio + EDMA_REQ_Q_OUT_PTR_OFS); 818c5d3e45aSJeff Garzik else 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); 829c5d3e45aSJeff Garzik 830c5d3e45aSJeff Garzik if (hpriv->hp_flags & MV_HP_ERRATA_XX42A0) 831bdd4dddeSJeff Garzik writelfl((pp->crpb_dma & 0xffffffff) | index, 832c5d3e45aSJeff Garzik port_mmio + EDMA_RSP_Q_IN_PTR_OFS); 833c5d3e45aSJeff Garzik else 834bdd4dddeSJeff Garzik writelfl(index, port_mmio + EDMA_RSP_Q_IN_PTR_OFS); 835c5d3e45aSJeff Garzik 836bdd4dddeSJeff Garzik writelfl((pp->crpb_dma & EDMA_RSP_Q_BASE_LO_MASK) | index, 837c5d3e45aSJeff Garzik port_mmio + EDMA_RSP_Q_OUT_PTR_OFS); 838c5d3e45aSJeff Garzik } 839c5d3e45aSJeff Garzik 840c6fd2807SJeff Garzik /** 841c6fd2807SJeff Garzik * mv_start_dma - Enable eDMA engine 842c6fd2807SJeff Garzik * @base: port base address 843c6fd2807SJeff Garzik * @pp: port private data 844c6fd2807SJeff Garzik * 845c6fd2807SJeff Garzik * Verify the local cache of the eDMA state is accurate with a 846c6fd2807SJeff Garzik * WARN_ON. 847c6fd2807SJeff Garzik * 848c6fd2807SJeff Garzik * LOCKING: 849c6fd2807SJeff Garzik * Inherited from caller. 850c6fd2807SJeff Garzik */ 8510c58912eSMark Lord static void mv_start_dma(struct ata_port *ap, void __iomem *port_mmio, 85272109168SMark Lord struct mv_port_priv *pp, u8 protocol) 853c6fd2807SJeff Garzik { 85472109168SMark Lord int want_ncq = (protocol == ATA_PROT_NCQ); 85572109168SMark Lord 85672109168SMark Lord if (pp->pp_flags & MV_PP_FLAG_EDMA_EN) { 85772109168SMark Lord int using_ncq = ((pp->pp_flags & MV_PP_FLAG_NCQ_EN) != 0); 85872109168SMark Lord if (want_ncq != using_ncq) 859b562468cSMark Lord mv_stop_edma(ap); 86072109168SMark Lord } 861c5d3e45aSJeff Garzik if (!(pp->pp_flags & MV_PP_FLAG_EDMA_EN)) { 8620c58912eSMark Lord struct mv_host_priv *hpriv = ap->host->private_data; 863352fab70SMark Lord int hardport = mv_hardport_from_port(ap->port_no); 8640c58912eSMark Lord void __iomem *hc_mmio = mv_hc_base_from_port( 865352fab70SMark Lord mv_host_base(ap->host), hardport); 8660c58912eSMark Lord u32 hc_irq_cause, ipending; 8670c58912eSMark Lord 868bdd4dddeSJeff Garzik /* clear EDMA event indicators, if any */ 869f630d562SMark Lord writelfl(0, port_mmio + EDMA_ERR_IRQ_CAUSE_OFS); 870bdd4dddeSJeff Garzik 8710c58912eSMark Lord /* clear EDMA interrupt indicator, if any */ 8720c58912eSMark Lord hc_irq_cause = readl(hc_mmio + HC_IRQ_CAUSE_OFS); 873352fab70SMark Lord ipending = (DEV_IRQ | DMA_IRQ) << hardport; 8740c58912eSMark Lord if (hc_irq_cause & ipending) { 8750c58912eSMark Lord writelfl(hc_irq_cause & ~ipending, 8760c58912eSMark Lord hc_mmio + HC_IRQ_CAUSE_OFS); 8770c58912eSMark Lord } 8780c58912eSMark Lord 879e12bef50SMark Lord mv_edma_cfg(ap, want_ncq); 8800c58912eSMark Lord 8810c58912eSMark Lord /* clear FIS IRQ Cause */ 8820c58912eSMark Lord writelfl(0, port_mmio + SATA_FIS_IRQ_CAUSE_OFS); 8830c58912eSMark Lord 884f630d562SMark Lord mv_set_edma_ptrs(port_mmio, hpriv, pp); 885bdd4dddeSJeff Garzik 886f630d562SMark Lord writelfl(EDMA_EN, port_mmio + EDMA_CMD_OFS); 887c6fd2807SJeff Garzik pp->pp_flags |= MV_PP_FLAG_EDMA_EN; 888c6fd2807SJeff Garzik } 889c6fd2807SJeff Garzik } 890c6fd2807SJeff Garzik 891c6fd2807SJeff Garzik /** 892e12bef50SMark Lord * mv_stop_edma_engine - Disable eDMA engine 893b562468cSMark Lord * @port_mmio: io base address 894c6fd2807SJeff Garzik * 895c6fd2807SJeff Garzik * LOCKING: 896c6fd2807SJeff Garzik * Inherited from caller. 897c6fd2807SJeff Garzik */ 898b562468cSMark Lord static int mv_stop_edma_engine(void __iomem *port_mmio) 899c6fd2807SJeff Garzik { 900b562468cSMark Lord int i; 901c6fd2807SJeff Garzik 902b562468cSMark Lord /* Disable eDMA. The disable bit auto clears. */ 903c6fd2807SJeff Garzik writelfl(EDMA_DS, port_mmio + EDMA_CMD_OFS); 904c6fd2807SJeff Garzik 905b562468cSMark Lord /* Wait for the chip to confirm eDMA is off. */ 906b562468cSMark Lord for (i = 10000; i > 0; i--) { 907b562468cSMark Lord u32 reg = readl(port_mmio + EDMA_CMD_OFS); 9084537deb5SJeff Garzik if (!(reg & EDMA_EN)) 909b562468cSMark Lord return 0; 910b562468cSMark Lord udelay(10); 911c6fd2807SJeff Garzik } 912b562468cSMark Lord return -EIO; 913c6fd2807SJeff Garzik } 914c6fd2807SJeff Garzik 915e12bef50SMark Lord static int mv_stop_edma(struct ata_port *ap) 916c6fd2807SJeff Garzik { 917c6fd2807SJeff Garzik void __iomem *port_mmio = mv_ap_base(ap); 918c6fd2807SJeff Garzik struct mv_port_priv *pp = ap->private_data; 919c6fd2807SJeff Garzik 920b562468cSMark Lord if (!(pp->pp_flags & MV_PP_FLAG_EDMA_EN)) 921b562468cSMark Lord return 0; 922c6fd2807SJeff Garzik pp->pp_flags &= ~MV_PP_FLAG_EDMA_EN; 923b562468cSMark Lord if (mv_stop_edma_engine(port_mmio)) { 924c6fd2807SJeff Garzik ata_port_printk(ap, KERN_ERR, "Unable to stop eDMA\n"); 925b562468cSMark Lord return -EIO; 926c6fd2807SJeff Garzik } 927b562468cSMark Lord return 0; 9280ea9e179SJeff Garzik } 9290ea9e179SJeff Garzik 930c6fd2807SJeff Garzik #ifdef ATA_DEBUG 931c6fd2807SJeff Garzik static void mv_dump_mem(void __iomem *start, unsigned bytes) 932c6fd2807SJeff Garzik { 933c6fd2807SJeff Garzik int b, w; 934c6fd2807SJeff Garzik for (b = 0; b < bytes; ) { 935c6fd2807SJeff Garzik DPRINTK("%p: ", start + b); 936c6fd2807SJeff Garzik for (w = 0; b < bytes && w < 4; w++) { 937c6fd2807SJeff Garzik printk("%08x ", readl(start + b)); 938c6fd2807SJeff Garzik b += sizeof(u32); 939c6fd2807SJeff Garzik } 940c6fd2807SJeff Garzik printk("\n"); 941c6fd2807SJeff Garzik } 942c6fd2807SJeff Garzik } 943c6fd2807SJeff Garzik #endif 944c6fd2807SJeff Garzik 945c6fd2807SJeff Garzik static void mv_dump_pci_cfg(struct pci_dev *pdev, unsigned bytes) 946c6fd2807SJeff Garzik { 947c6fd2807SJeff Garzik #ifdef ATA_DEBUG 948c6fd2807SJeff Garzik int b, w; 949c6fd2807SJeff Garzik u32 dw; 950c6fd2807SJeff Garzik for (b = 0; b < bytes; ) { 951c6fd2807SJeff Garzik DPRINTK("%02x: ", b); 952c6fd2807SJeff Garzik for (w = 0; b < bytes && w < 4; w++) { 953c6fd2807SJeff Garzik (void) pci_read_config_dword(pdev, b, &dw); 954c6fd2807SJeff Garzik printk("%08x ", dw); 955c6fd2807SJeff Garzik b += sizeof(u32); 956c6fd2807SJeff Garzik } 957c6fd2807SJeff Garzik printk("\n"); 958c6fd2807SJeff Garzik } 959c6fd2807SJeff Garzik #endif 960c6fd2807SJeff Garzik } 961c6fd2807SJeff Garzik static void mv_dump_all_regs(void __iomem *mmio_base, int port, 962c6fd2807SJeff Garzik struct pci_dev *pdev) 963c6fd2807SJeff Garzik { 964c6fd2807SJeff Garzik #ifdef ATA_DEBUG 965c6fd2807SJeff Garzik void __iomem *hc_base = mv_hc_base(mmio_base, 966c6fd2807SJeff Garzik port >> MV_PORT_HC_SHIFT); 967c6fd2807SJeff Garzik void __iomem *port_base; 968c6fd2807SJeff Garzik int start_port, num_ports, p, start_hc, num_hcs, hc; 969c6fd2807SJeff Garzik 970c6fd2807SJeff Garzik if (0 > port) { 971c6fd2807SJeff Garzik start_hc = start_port = 0; 972c6fd2807SJeff Garzik num_ports = 8; /* shld be benign for 4 port devs */ 973c6fd2807SJeff Garzik num_hcs = 2; 974c6fd2807SJeff Garzik } else { 975c6fd2807SJeff Garzik start_hc = port >> MV_PORT_HC_SHIFT; 976c6fd2807SJeff Garzik start_port = port; 977c6fd2807SJeff Garzik num_ports = num_hcs = 1; 978c6fd2807SJeff Garzik } 979c6fd2807SJeff Garzik DPRINTK("All registers for port(s) %u-%u:\n", start_port, 980c6fd2807SJeff Garzik num_ports > 1 ? num_ports - 1 : start_port); 981c6fd2807SJeff Garzik 982c6fd2807SJeff Garzik if (NULL != pdev) { 983c6fd2807SJeff Garzik DPRINTK("PCI config space regs:\n"); 984c6fd2807SJeff Garzik mv_dump_pci_cfg(pdev, 0x68); 985c6fd2807SJeff Garzik } 986c6fd2807SJeff Garzik DPRINTK("PCI regs:\n"); 987c6fd2807SJeff Garzik mv_dump_mem(mmio_base+0xc00, 0x3c); 988c6fd2807SJeff Garzik mv_dump_mem(mmio_base+0xd00, 0x34); 989c6fd2807SJeff Garzik mv_dump_mem(mmio_base+0xf00, 0x4); 990c6fd2807SJeff Garzik mv_dump_mem(mmio_base+0x1d00, 0x6c); 991c6fd2807SJeff Garzik for (hc = start_hc; hc < start_hc + num_hcs; hc++) { 992c6fd2807SJeff Garzik hc_base = mv_hc_base(mmio_base, hc); 993c6fd2807SJeff Garzik DPRINTK("HC regs (HC %i):\n", hc); 994c6fd2807SJeff Garzik mv_dump_mem(hc_base, 0x1c); 995c6fd2807SJeff Garzik } 996c6fd2807SJeff Garzik for (p = start_port; p < start_port + num_ports; p++) { 997c6fd2807SJeff Garzik port_base = mv_port_base(mmio_base, p); 998c6fd2807SJeff Garzik DPRINTK("EDMA regs (port %i):\n", p); 999c6fd2807SJeff Garzik mv_dump_mem(port_base, 0x54); 1000c6fd2807SJeff Garzik DPRINTK("SATA regs (port %i):\n", p); 1001c6fd2807SJeff Garzik mv_dump_mem(port_base+0x300, 0x60); 1002c6fd2807SJeff Garzik } 1003c6fd2807SJeff Garzik #endif 1004c6fd2807SJeff Garzik } 1005c6fd2807SJeff Garzik 1006c6fd2807SJeff Garzik static unsigned int mv_scr_offset(unsigned int sc_reg_in) 1007c6fd2807SJeff Garzik { 1008c6fd2807SJeff Garzik unsigned int ofs; 1009c6fd2807SJeff Garzik 1010c6fd2807SJeff Garzik switch (sc_reg_in) { 1011c6fd2807SJeff Garzik case SCR_STATUS: 1012c6fd2807SJeff Garzik case SCR_CONTROL: 1013c6fd2807SJeff Garzik case SCR_ERROR: 1014c6fd2807SJeff Garzik ofs = SATA_STATUS_OFS + (sc_reg_in * sizeof(u32)); 1015c6fd2807SJeff Garzik break; 1016c6fd2807SJeff Garzik case SCR_ACTIVE: 1017c6fd2807SJeff Garzik ofs = SATA_ACTIVE_OFS; /* active is not with the others */ 1018c6fd2807SJeff Garzik break; 1019c6fd2807SJeff Garzik default: 1020c6fd2807SJeff Garzik ofs = 0xffffffffU; 1021c6fd2807SJeff Garzik break; 1022c6fd2807SJeff Garzik } 1023c6fd2807SJeff Garzik return ofs; 1024c6fd2807SJeff Garzik } 1025c6fd2807SJeff Garzik 1026da3dbb17STejun Heo static int mv_scr_read(struct ata_port *ap, unsigned int sc_reg_in, u32 *val) 1027c6fd2807SJeff Garzik { 1028c6fd2807SJeff Garzik unsigned int ofs = mv_scr_offset(sc_reg_in); 1029c6fd2807SJeff Garzik 1030da3dbb17STejun Heo if (ofs != 0xffffffffU) { 1031da3dbb17STejun Heo *val = readl(mv_ap_base(ap) + ofs); 1032da3dbb17STejun Heo return 0; 1033da3dbb17STejun Heo } else 1034da3dbb17STejun Heo return -EINVAL; 1035c6fd2807SJeff Garzik } 1036c6fd2807SJeff Garzik 1037da3dbb17STejun Heo static int mv_scr_write(struct ata_port *ap, unsigned int sc_reg_in, u32 val) 1038c6fd2807SJeff Garzik { 1039c6fd2807SJeff Garzik unsigned int ofs = mv_scr_offset(sc_reg_in); 1040c6fd2807SJeff Garzik 1041da3dbb17STejun Heo if (ofs != 0xffffffffU) { 1042c6fd2807SJeff Garzik writelfl(val, mv_ap_base(ap) + ofs); 1043da3dbb17STejun Heo return 0; 1044da3dbb17STejun Heo } else 1045da3dbb17STejun Heo return -EINVAL; 1046c6fd2807SJeff Garzik } 1047c6fd2807SJeff Garzik 1048f273827eSMark Lord static void mv6_dev_config(struct ata_device *adev) 1049f273827eSMark Lord { 1050f273827eSMark Lord /* 1051e49856d8SMark Lord * Deal with Gen-II ("mv6") hardware quirks/restrictions: 1052e49856d8SMark Lord * 1053e49856d8SMark Lord * Gen-II does not support NCQ over a port multiplier 1054e49856d8SMark Lord * (no FIS-based switching). 1055e49856d8SMark Lord * 1056f273827eSMark Lord * We don't have hob_nsect when doing NCQ commands on Gen-II. 1057f273827eSMark Lord * See mv_qc_prep() for more info. 1058f273827eSMark Lord */ 1059e49856d8SMark Lord if (adev->flags & ATA_DFLAG_NCQ) { 1060352fab70SMark Lord if (sata_pmp_attached(adev->link->ap)) { 1061e49856d8SMark Lord adev->flags &= ~ATA_DFLAG_NCQ; 1062352fab70SMark Lord ata_dev_printk(adev, KERN_INFO, 1063352fab70SMark Lord "NCQ disabled for command-based switching\n"); 1064352fab70SMark Lord } else if (adev->max_sectors > GEN_II_NCQ_MAX_SECTORS) { 1065352fab70SMark Lord adev->max_sectors = GEN_II_NCQ_MAX_SECTORS; 1066352fab70SMark Lord ata_dev_printk(adev, KERN_INFO, 1067352fab70SMark Lord "max_sectors limited to %u for NCQ\n", 1068352fab70SMark Lord adev->max_sectors); 1069352fab70SMark Lord } 1070f273827eSMark Lord } 1071e49856d8SMark Lord } 1072f273827eSMark Lord 1073e49856d8SMark Lord static void mv_config_fbs(void __iomem *port_mmio, int enable_fbs) 1074e49856d8SMark Lord { 1075e49856d8SMark Lord u32 old_fcfg, new_fcfg, old_ltmode, new_ltmode; 1076e49856d8SMark Lord /* 1077e49856d8SMark Lord * Various bit settings required for operation 1078e49856d8SMark Lord * in FIS-based switching (fbs) mode on GenIIe: 1079e49856d8SMark Lord */ 1080e49856d8SMark Lord old_fcfg = readl(port_mmio + FIS_CFG_OFS); 1081e49856d8SMark Lord old_ltmode = readl(port_mmio + LTMODE_OFS); 1082e49856d8SMark Lord if (enable_fbs) { 1083e49856d8SMark Lord new_fcfg = old_fcfg | FIS_CFG_SINGLE_SYNC; 1084e49856d8SMark Lord new_ltmode = old_ltmode | LTMODE_BIT8; 1085e49856d8SMark Lord } else { /* disable fbs */ 1086e49856d8SMark Lord new_fcfg = old_fcfg & ~FIS_CFG_SINGLE_SYNC; 1087e49856d8SMark Lord new_ltmode = old_ltmode & ~LTMODE_BIT8; 1088e49856d8SMark Lord } 1089e49856d8SMark Lord if (new_fcfg != old_fcfg) 1090e49856d8SMark Lord writelfl(new_fcfg, port_mmio + FIS_CFG_OFS); 1091e49856d8SMark Lord if (new_ltmode != old_ltmode) 1092e49856d8SMark Lord writelfl(new_ltmode, port_mmio + LTMODE_OFS); 1093e49856d8SMark Lord } 1094c6fd2807SJeff Garzik 1095e12bef50SMark Lord static void mv_edma_cfg(struct ata_port *ap, int want_ncq) 1096c6fd2807SJeff Garzik { 1097c6fd2807SJeff Garzik u32 cfg; 1098e12bef50SMark Lord struct mv_port_priv *pp = ap->private_data; 1099e12bef50SMark Lord struct mv_host_priv *hpriv = ap->host->private_data; 1100e12bef50SMark Lord void __iomem *port_mmio = mv_ap_base(ap); 1101c6fd2807SJeff Garzik 1102c6fd2807SJeff Garzik /* set up non-NCQ EDMA configuration */ 1103c6fd2807SJeff Garzik cfg = EDMA_CFG_Q_DEPTH; /* always 0x1f for *all* chips */ 1104c6fd2807SJeff Garzik 1105c6fd2807SJeff Garzik if (IS_GEN_I(hpriv)) 1106c6fd2807SJeff Garzik cfg |= (1 << 8); /* enab config burst size mask */ 1107c6fd2807SJeff Garzik 1108c6fd2807SJeff Garzik else if (IS_GEN_II(hpriv)) 1109c6fd2807SJeff Garzik cfg |= EDMA_CFG_RD_BRST_EXT | EDMA_CFG_WR_BUFF_LEN; 1110c6fd2807SJeff Garzik 1111c6fd2807SJeff Garzik else if (IS_GEN_IIE(hpriv)) { 1112e728eabeSJeff Garzik cfg |= (1 << 23); /* do not mask PM field in rx'd FIS */ 1113e728eabeSJeff Garzik cfg |= (1 << 22); /* enab 4-entry host queue cache */ 1114c6fd2807SJeff Garzik cfg |= (1 << 18); /* enab early completion */ 1115e728eabeSJeff Garzik cfg |= (1 << 17); /* enab cut-through (dis stor&forwrd) */ 1116e49856d8SMark Lord 1117e49856d8SMark Lord if (want_ncq && sata_pmp_attached(ap)) { 1118e49856d8SMark Lord cfg |= EDMA_CFG_EDMA_FBS; /* FIS-based switching */ 1119e49856d8SMark Lord mv_config_fbs(port_mmio, 1); 1120e49856d8SMark Lord } else { 1121e49856d8SMark Lord mv_config_fbs(port_mmio, 0); 1122e49856d8SMark Lord } 1123c6fd2807SJeff Garzik } 1124c6fd2807SJeff Garzik 112572109168SMark Lord if (want_ncq) { 112672109168SMark Lord cfg |= EDMA_CFG_NCQ; 112772109168SMark Lord pp->pp_flags |= MV_PP_FLAG_NCQ_EN; 112872109168SMark Lord } else 112972109168SMark Lord pp->pp_flags &= ~MV_PP_FLAG_NCQ_EN; 113072109168SMark Lord 1131c6fd2807SJeff Garzik writelfl(cfg, port_mmio + EDMA_CFG_OFS); 1132c6fd2807SJeff Garzik } 1133c6fd2807SJeff Garzik 1134da2fa9baSMark Lord static void mv_port_free_dma_mem(struct ata_port *ap) 1135da2fa9baSMark Lord { 1136da2fa9baSMark Lord struct mv_host_priv *hpriv = ap->host->private_data; 1137da2fa9baSMark Lord struct mv_port_priv *pp = ap->private_data; 1138eb73d558SMark Lord int tag; 1139da2fa9baSMark Lord 1140da2fa9baSMark Lord if (pp->crqb) { 1141da2fa9baSMark Lord dma_pool_free(hpriv->crqb_pool, pp->crqb, pp->crqb_dma); 1142da2fa9baSMark Lord pp->crqb = NULL; 1143da2fa9baSMark Lord } 1144da2fa9baSMark Lord if (pp->crpb) { 1145da2fa9baSMark Lord dma_pool_free(hpriv->crpb_pool, pp->crpb, pp->crpb_dma); 1146da2fa9baSMark Lord pp->crpb = NULL; 1147da2fa9baSMark Lord } 1148eb73d558SMark Lord /* 1149eb73d558SMark Lord * For GEN_I, there's no NCQ, so we have only a single sg_tbl. 1150eb73d558SMark Lord * For later hardware, we have one unique sg_tbl per NCQ tag. 1151eb73d558SMark Lord */ 1152eb73d558SMark Lord for (tag = 0; tag < MV_MAX_Q_DEPTH; ++tag) { 1153eb73d558SMark Lord if (pp->sg_tbl[tag]) { 1154eb73d558SMark Lord if (tag == 0 || !IS_GEN_I(hpriv)) 1155eb73d558SMark Lord dma_pool_free(hpriv->sg_tbl_pool, 1156eb73d558SMark Lord pp->sg_tbl[tag], 1157eb73d558SMark Lord pp->sg_tbl_dma[tag]); 1158eb73d558SMark Lord pp->sg_tbl[tag] = NULL; 1159eb73d558SMark Lord } 1160da2fa9baSMark Lord } 1161da2fa9baSMark Lord } 1162da2fa9baSMark Lord 1163c6fd2807SJeff Garzik /** 1164c6fd2807SJeff Garzik * mv_port_start - Port specific init/start routine. 1165c6fd2807SJeff Garzik * @ap: ATA channel to manipulate 1166c6fd2807SJeff Garzik * 1167c6fd2807SJeff Garzik * Allocate and point to DMA memory, init port private memory, 1168c6fd2807SJeff Garzik * zero indices. 1169c6fd2807SJeff Garzik * 1170c6fd2807SJeff Garzik * LOCKING: 1171c6fd2807SJeff Garzik * Inherited from caller. 1172c6fd2807SJeff Garzik */ 1173c6fd2807SJeff Garzik static int mv_port_start(struct ata_port *ap) 1174c6fd2807SJeff Garzik { 1175cca3974eSJeff Garzik struct device *dev = ap->host->dev; 1176cca3974eSJeff Garzik struct mv_host_priv *hpriv = ap->host->private_data; 1177c6fd2807SJeff Garzik struct mv_port_priv *pp; 1178dde20207SJames Bottomley int tag; 1179c6fd2807SJeff Garzik 118024dc5f33STejun Heo pp = devm_kzalloc(dev, sizeof(*pp), GFP_KERNEL); 1181c6fd2807SJeff Garzik if (!pp) 118224dc5f33STejun Heo return -ENOMEM; 1183da2fa9baSMark Lord ap->private_data = pp; 1184c6fd2807SJeff Garzik 1185da2fa9baSMark Lord pp->crqb = dma_pool_alloc(hpriv->crqb_pool, GFP_KERNEL, &pp->crqb_dma); 1186da2fa9baSMark Lord if (!pp->crqb) 1187da2fa9baSMark Lord return -ENOMEM; 1188da2fa9baSMark Lord memset(pp->crqb, 0, MV_CRQB_Q_SZ); 1189c6fd2807SJeff Garzik 1190da2fa9baSMark Lord pp->crpb = dma_pool_alloc(hpriv->crpb_pool, GFP_KERNEL, &pp->crpb_dma); 1191da2fa9baSMark Lord if (!pp->crpb) 1192da2fa9baSMark Lord goto out_port_free_dma_mem; 1193da2fa9baSMark Lord memset(pp->crpb, 0, MV_CRPB_Q_SZ); 1194c6fd2807SJeff Garzik 1195eb73d558SMark Lord /* 1196eb73d558SMark Lord * For GEN_I, there's no NCQ, so we only allocate a single sg_tbl. 1197eb73d558SMark Lord * For later hardware, we need one unique sg_tbl per NCQ tag. 1198eb73d558SMark Lord */ 1199eb73d558SMark Lord for (tag = 0; tag < MV_MAX_Q_DEPTH; ++tag) { 1200eb73d558SMark Lord if (tag == 0 || !IS_GEN_I(hpriv)) { 1201eb73d558SMark Lord pp->sg_tbl[tag] = dma_pool_alloc(hpriv->sg_tbl_pool, 1202eb73d558SMark Lord GFP_KERNEL, &pp->sg_tbl_dma[tag]); 1203eb73d558SMark Lord if (!pp->sg_tbl[tag]) 1204da2fa9baSMark Lord goto out_port_free_dma_mem; 1205eb73d558SMark Lord } else { 1206eb73d558SMark Lord pp->sg_tbl[tag] = pp->sg_tbl[0]; 1207eb73d558SMark Lord pp->sg_tbl_dma[tag] = pp->sg_tbl_dma[0]; 1208eb73d558SMark Lord } 1209eb73d558SMark Lord } 1210c6fd2807SJeff Garzik return 0; 1211da2fa9baSMark Lord 1212da2fa9baSMark Lord out_port_free_dma_mem: 1213da2fa9baSMark Lord mv_port_free_dma_mem(ap); 1214da2fa9baSMark Lord return -ENOMEM; 1215c6fd2807SJeff Garzik } 1216c6fd2807SJeff Garzik 1217c6fd2807SJeff Garzik /** 1218c6fd2807SJeff Garzik * mv_port_stop - Port specific cleanup/stop routine. 1219c6fd2807SJeff Garzik * @ap: ATA channel to manipulate 1220c6fd2807SJeff Garzik * 1221c6fd2807SJeff Garzik * Stop DMA, cleanup port memory. 1222c6fd2807SJeff Garzik * 1223c6fd2807SJeff Garzik * LOCKING: 1224cca3974eSJeff Garzik * This routine uses the host lock to protect the DMA stop. 1225c6fd2807SJeff Garzik */ 1226c6fd2807SJeff Garzik static void mv_port_stop(struct ata_port *ap) 1227c6fd2807SJeff Garzik { 1228e12bef50SMark Lord mv_stop_edma(ap); 1229da2fa9baSMark Lord mv_port_free_dma_mem(ap); 1230c6fd2807SJeff Garzik } 1231c6fd2807SJeff Garzik 1232c6fd2807SJeff Garzik /** 1233c6fd2807SJeff Garzik * mv_fill_sg - Fill out the Marvell ePRD (scatter gather) entries 1234c6fd2807SJeff Garzik * @qc: queued command whose SG list to source from 1235c6fd2807SJeff Garzik * 1236c6fd2807SJeff Garzik * Populate the SG list and mark the last entry. 1237c6fd2807SJeff Garzik * 1238c6fd2807SJeff Garzik * LOCKING: 1239c6fd2807SJeff Garzik * Inherited from caller. 1240c6fd2807SJeff Garzik */ 12416c08772eSJeff Garzik static void mv_fill_sg(struct ata_queued_cmd *qc) 1242c6fd2807SJeff Garzik { 1243c6fd2807SJeff Garzik struct mv_port_priv *pp = qc->ap->private_data; 1244c6fd2807SJeff Garzik struct scatterlist *sg; 12453be6cbd7SJeff Garzik struct mv_sg *mv_sg, *last_sg = NULL; 1246ff2aeb1eSTejun Heo unsigned int si; 1247c6fd2807SJeff Garzik 1248eb73d558SMark Lord mv_sg = pp->sg_tbl[qc->tag]; 1249ff2aeb1eSTejun Heo for_each_sg(qc->sg, sg, qc->n_elem, si) { 1250d88184fbSJeff Garzik dma_addr_t addr = sg_dma_address(sg); 1251d88184fbSJeff Garzik u32 sg_len = sg_dma_len(sg); 1252c6fd2807SJeff Garzik 12534007b493SOlof Johansson while (sg_len) { 12544007b493SOlof Johansson u32 offset = addr & 0xffff; 12554007b493SOlof Johansson u32 len = sg_len; 12564007b493SOlof Johansson 12574007b493SOlof Johansson if ((offset + sg_len > 0x10000)) 12584007b493SOlof Johansson len = 0x10000 - offset; 12594007b493SOlof Johansson 1260d88184fbSJeff Garzik mv_sg->addr = cpu_to_le32(addr & 0xffffffff); 1261d88184fbSJeff Garzik mv_sg->addr_hi = cpu_to_le32((addr >> 16) >> 16); 12626c08772eSJeff Garzik mv_sg->flags_size = cpu_to_le32(len & 0xffff); 1263c6fd2807SJeff Garzik 12644007b493SOlof Johansson sg_len -= len; 12654007b493SOlof Johansson addr += len; 12664007b493SOlof Johansson 12673be6cbd7SJeff Garzik last_sg = mv_sg; 1268d88184fbSJeff Garzik mv_sg++; 1269c6fd2807SJeff Garzik } 12704007b493SOlof Johansson } 12713be6cbd7SJeff Garzik 12723be6cbd7SJeff Garzik if (likely(last_sg)) 12733be6cbd7SJeff Garzik last_sg->flags_size |= cpu_to_le32(EPRD_FLAG_END_OF_TBL); 1274c6fd2807SJeff Garzik } 1275c6fd2807SJeff Garzik 12765796d1c4SJeff Garzik static void mv_crqb_pack_cmd(__le16 *cmdw, u8 data, u8 addr, unsigned last) 1277c6fd2807SJeff Garzik { 1278c6fd2807SJeff Garzik u16 tmp = data | (addr << CRQB_CMD_ADDR_SHIFT) | CRQB_CMD_CS | 1279c6fd2807SJeff Garzik (last ? CRQB_CMD_LAST : 0); 1280c6fd2807SJeff Garzik *cmdw = cpu_to_le16(tmp); 1281c6fd2807SJeff Garzik } 1282c6fd2807SJeff Garzik 1283c6fd2807SJeff Garzik /** 1284c6fd2807SJeff Garzik * mv_qc_prep - Host specific command preparation. 1285c6fd2807SJeff Garzik * @qc: queued command to prepare 1286c6fd2807SJeff Garzik * 1287c6fd2807SJeff Garzik * This routine simply redirects to the general purpose routine 1288c6fd2807SJeff Garzik * if command is not DMA. Else, it handles prep of the CRQB 1289c6fd2807SJeff Garzik * (command request block), does some sanity checking, and calls 1290c6fd2807SJeff Garzik * the SG load routine. 1291c6fd2807SJeff Garzik * 1292c6fd2807SJeff Garzik * LOCKING: 1293c6fd2807SJeff Garzik * Inherited from caller. 1294c6fd2807SJeff Garzik */ 1295c6fd2807SJeff Garzik static void mv_qc_prep(struct ata_queued_cmd *qc) 1296c6fd2807SJeff Garzik { 1297c6fd2807SJeff Garzik struct ata_port *ap = qc->ap; 1298c6fd2807SJeff Garzik struct mv_port_priv *pp = ap->private_data; 1299c6fd2807SJeff Garzik __le16 *cw; 1300c6fd2807SJeff Garzik struct ata_taskfile *tf; 1301c6fd2807SJeff Garzik u16 flags = 0; 1302c6fd2807SJeff Garzik unsigned in_index; 1303c6fd2807SJeff Garzik 1304138bfdd0SMark Lord if ((qc->tf.protocol != ATA_PROT_DMA) && 1305138bfdd0SMark Lord (qc->tf.protocol != ATA_PROT_NCQ)) 1306c6fd2807SJeff Garzik return; 1307c6fd2807SJeff Garzik 1308c6fd2807SJeff Garzik /* Fill in command request block 1309c6fd2807SJeff Garzik */ 1310c6fd2807SJeff Garzik if (!(qc->tf.flags & ATA_TFLAG_WRITE)) 1311c6fd2807SJeff Garzik flags |= CRQB_FLAG_READ; 1312c6fd2807SJeff Garzik WARN_ON(MV_MAX_Q_DEPTH <= qc->tag); 1313c6fd2807SJeff Garzik flags |= qc->tag << CRQB_TAG_SHIFT; 1314e49856d8SMark Lord flags |= (qc->dev->link->pmp & 0xf) << CRQB_PMP_SHIFT; 1315c6fd2807SJeff Garzik 1316bdd4dddeSJeff Garzik /* get current queue index from software */ 1317fcfb1f77SMark Lord in_index = pp->req_idx; 1318c6fd2807SJeff Garzik 1319c6fd2807SJeff Garzik pp->crqb[in_index].sg_addr = 1320eb73d558SMark Lord cpu_to_le32(pp->sg_tbl_dma[qc->tag] & 0xffffffff); 1321c6fd2807SJeff Garzik pp->crqb[in_index].sg_addr_hi = 1322eb73d558SMark Lord cpu_to_le32((pp->sg_tbl_dma[qc->tag] >> 16) >> 16); 1323c6fd2807SJeff Garzik pp->crqb[in_index].ctrl_flags = cpu_to_le16(flags); 1324c6fd2807SJeff Garzik 1325c6fd2807SJeff Garzik cw = &pp->crqb[in_index].ata_cmd[0]; 1326c6fd2807SJeff Garzik tf = &qc->tf; 1327c6fd2807SJeff Garzik 1328c6fd2807SJeff Garzik /* Sadly, the CRQB cannot accomodate all registers--there are 1329c6fd2807SJeff Garzik * only 11 bytes...so we must pick and choose required 1330c6fd2807SJeff Garzik * registers based on the command. So, we drop feature and 1331c6fd2807SJeff Garzik * hob_feature for [RW] DMA commands, but they are needed for 1332c6fd2807SJeff Garzik * NCQ. NCQ will drop hob_nsect. 1333c6fd2807SJeff Garzik */ 1334c6fd2807SJeff Garzik switch (tf->command) { 1335c6fd2807SJeff Garzik case ATA_CMD_READ: 1336c6fd2807SJeff Garzik case ATA_CMD_READ_EXT: 1337c6fd2807SJeff Garzik case ATA_CMD_WRITE: 1338c6fd2807SJeff Garzik case ATA_CMD_WRITE_EXT: 1339c6fd2807SJeff Garzik case ATA_CMD_WRITE_FUA_EXT: 1340c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->hob_nsect, ATA_REG_NSECT, 0); 1341c6fd2807SJeff Garzik break; 1342c6fd2807SJeff Garzik case ATA_CMD_FPDMA_READ: 1343c6fd2807SJeff Garzik case ATA_CMD_FPDMA_WRITE: 1344c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->hob_feature, ATA_REG_FEATURE, 0); 1345c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->feature, ATA_REG_FEATURE, 0); 1346c6fd2807SJeff Garzik break; 1347c6fd2807SJeff Garzik default: 1348c6fd2807SJeff Garzik /* The only other commands EDMA supports in non-queued and 1349c6fd2807SJeff Garzik * non-NCQ mode are: [RW] STREAM DMA and W DMA FUA EXT, none 1350c6fd2807SJeff Garzik * of which are defined/used by Linux. If we get here, this 1351c6fd2807SJeff Garzik * driver needs work. 1352c6fd2807SJeff Garzik * 1353c6fd2807SJeff Garzik * FIXME: modify libata to give qc_prep a return value and 1354c6fd2807SJeff Garzik * return error here. 1355c6fd2807SJeff Garzik */ 1356c6fd2807SJeff Garzik BUG_ON(tf->command); 1357c6fd2807SJeff Garzik break; 1358c6fd2807SJeff Garzik } 1359c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->nsect, ATA_REG_NSECT, 0); 1360c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->hob_lbal, ATA_REG_LBAL, 0); 1361c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->lbal, ATA_REG_LBAL, 0); 1362c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->hob_lbam, ATA_REG_LBAM, 0); 1363c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->lbam, ATA_REG_LBAM, 0); 1364c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->hob_lbah, ATA_REG_LBAH, 0); 1365c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->lbah, ATA_REG_LBAH, 0); 1366c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->device, ATA_REG_DEVICE, 0); 1367c6fd2807SJeff Garzik mv_crqb_pack_cmd(cw++, tf->command, ATA_REG_CMD, 1); /* last */ 1368c6fd2807SJeff Garzik 1369c6fd2807SJeff Garzik if (!(qc->flags & ATA_QCFLAG_DMAMAP)) 1370c6fd2807SJeff Garzik return; 1371c6fd2807SJeff Garzik mv_fill_sg(qc); 1372c6fd2807SJeff Garzik } 1373c6fd2807SJeff Garzik 1374c6fd2807SJeff Garzik /** 1375c6fd2807SJeff Garzik * mv_qc_prep_iie - Host specific command preparation. 1376c6fd2807SJeff Garzik * @qc: queued command to prepare 1377c6fd2807SJeff Garzik * 1378c6fd2807SJeff Garzik * This routine simply redirects to the general purpose routine 1379c6fd2807SJeff Garzik * if command is not DMA. Else, it handles prep of the CRQB 1380c6fd2807SJeff Garzik * (command request block), does some sanity checking, and calls 1381c6fd2807SJeff Garzik * the SG load routine. 1382c6fd2807SJeff Garzik * 1383c6fd2807SJeff Garzik * LOCKING: 1384c6fd2807SJeff Garzik * Inherited from caller. 1385c6fd2807SJeff Garzik */ 1386c6fd2807SJeff Garzik static void mv_qc_prep_iie(struct ata_queued_cmd *qc) 1387c6fd2807SJeff Garzik { 1388c6fd2807SJeff Garzik struct ata_port *ap = qc->ap; 1389c6fd2807SJeff Garzik struct mv_port_priv *pp = ap->private_data; 1390c6fd2807SJeff Garzik struct mv_crqb_iie *crqb; 1391c6fd2807SJeff Garzik struct ata_taskfile *tf; 1392c6fd2807SJeff Garzik unsigned in_index; 1393c6fd2807SJeff Garzik u32 flags = 0; 1394c6fd2807SJeff Garzik 1395138bfdd0SMark Lord if ((qc->tf.protocol != ATA_PROT_DMA) && 1396138bfdd0SMark Lord (qc->tf.protocol != ATA_PROT_NCQ)) 1397c6fd2807SJeff Garzik return; 1398c6fd2807SJeff Garzik 1399e12bef50SMark Lord /* Fill in Gen IIE command request block */ 1400c6fd2807SJeff Garzik if (!(qc->tf.flags & ATA_TFLAG_WRITE)) 1401c6fd2807SJeff Garzik flags |= CRQB_FLAG_READ; 1402c6fd2807SJeff Garzik 1403c6fd2807SJeff Garzik WARN_ON(MV_MAX_Q_DEPTH <= qc->tag); 1404c6fd2807SJeff Garzik flags |= qc->tag << CRQB_TAG_SHIFT; 14058c0aeb4aSMark Lord flags |= qc->tag << CRQB_HOSTQ_SHIFT; 1406e49856d8SMark Lord flags |= (qc->dev->link->pmp & 0xf) << CRQB_PMP_SHIFT; 1407c6fd2807SJeff Garzik 1408bdd4dddeSJeff Garzik /* get current queue index from software */ 1409fcfb1f77SMark Lord in_index = pp->req_idx; 1410c6fd2807SJeff Garzik 1411c6fd2807SJeff Garzik crqb = (struct mv_crqb_iie *) &pp->crqb[in_index]; 1412eb73d558SMark Lord crqb->addr = cpu_to_le32(pp->sg_tbl_dma[qc->tag] & 0xffffffff); 1413eb73d558SMark Lord crqb->addr_hi = cpu_to_le32((pp->sg_tbl_dma[qc->tag] >> 16) >> 16); 1414c6fd2807SJeff Garzik crqb->flags = cpu_to_le32(flags); 1415c6fd2807SJeff Garzik 1416c6fd2807SJeff Garzik tf = &qc->tf; 1417c6fd2807SJeff Garzik crqb->ata_cmd[0] = cpu_to_le32( 1418c6fd2807SJeff Garzik (tf->command << 16) | 1419c6fd2807SJeff Garzik (tf->feature << 24) 1420c6fd2807SJeff Garzik ); 1421c6fd2807SJeff Garzik crqb->ata_cmd[1] = cpu_to_le32( 1422c6fd2807SJeff Garzik (tf->lbal << 0) | 1423c6fd2807SJeff Garzik (tf->lbam << 8) | 1424c6fd2807SJeff Garzik (tf->lbah << 16) | 1425c6fd2807SJeff Garzik (tf->device << 24) 1426c6fd2807SJeff Garzik ); 1427c6fd2807SJeff Garzik crqb->ata_cmd[2] = cpu_to_le32( 1428c6fd2807SJeff Garzik (tf->hob_lbal << 0) | 1429c6fd2807SJeff Garzik (tf->hob_lbam << 8) | 1430c6fd2807SJeff Garzik (tf->hob_lbah << 16) | 1431c6fd2807SJeff Garzik (tf->hob_feature << 24) 1432c6fd2807SJeff Garzik ); 1433c6fd2807SJeff Garzik crqb->ata_cmd[3] = cpu_to_le32( 1434c6fd2807SJeff Garzik (tf->nsect << 0) | 1435c6fd2807SJeff Garzik (tf->hob_nsect << 8) 1436c6fd2807SJeff Garzik ); 1437c6fd2807SJeff Garzik 1438c6fd2807SJeff Garzik if (!(qc->flags & ATA_QCFLAG_DMAMAP)) 1439c6fd2807SJeff Garzik return; 1440c6fd2807SJeff Garzik mv_fill_sg(qc); 1441c6fd2807SJeff Garzik } 1442c6fd2807SJeff Garzik 1443c6fd2807SJeff Garzik /** 1444c6fd2807SJeff Garzik * mv_qc_issue - Initiate a command to the host 1445c6fd2807SJeff Garzik * @qc: queued command to start 1446c6fd2807SJeff Garzik * 1447c6fd2807SJeff Garzik * This routine simply redirects to the general purpose routine 1448c6fd2807SJeff Garzik * if command is not DMA. Else, it sanity checks our local 1449c6fd2807SJeff Garzik * caches of the request producer/consumer indices then enables 1450c6fd2807SJeff Garzik * DMA and bumps the request producer index. 1451c6fd2807SJeff Garzik * 1452c6fd2807SJeff Garzik * LOCKING: 1453c6fd2807SJeff Garzik * Inherited from caller. 1454c6fd2807SJeff Garzik */ 1455c6fd2807SJeff Garzik static unsigned int mv_qc_issue(struct ata_queued_cmd *qc) 1456c6fd2807SJeff Garzik { 1457c5d3e45aSJeff Garzik struct ata_port *ap = qc->ap; 1458c5d3e45aSJeff Garzik void __iomem *port_mmio = mv_ap_base(ap); 1459c5d3e45aSJeff Garzik struct mv_port_priv *pp = ap->private_data; 1460bdd4dddeSJeff Garzik u32 in_index; 1461c6fd2807SJeff Garzik 1462138bfdd0SMark Lord if ((qc->tf.protocol != ATA_PROT_DMA) && 1463138bfdd0SMark Lord (qc->tf.protocol != ATA_PROT_NCQ)) { 146417c5aab5SMark Lord /* 146517c5aab5SMark Lord * We're about to send a non-EDMA capable command to the 1466c6fd2807SJeff Garzik * port. Turn off EDMA so there won't be problems accessing 1467c6fd2807SJeff Garzik * shadow block, etc registers. 1468c6fd2807SJeff Garzik */ 1469b562468cSMark Lord mv_stop_edma(ap); 1470e49856d8SMark Lord mv_pmp_select(ap, qc->dev->link->pmp); 14719363c382STejun Heo return ata_sff_qc_issue(qc); 1472c6fd2807SJeff Garzik } 1473c6fd2807SJeff Garzik 147472109168SMark Lord mv_start_dma(ap, port_mmio, pp, qc->tf.protocol); 1475bdd4dddeSJeff Garzik 1476fcfb1f77SMark Lord pp->req_idx = (pp->req_idx + 1) & MV_MAX_Q_DEPTH_MASK; 1477fcfb1f77SMark Lord in_index = pp->req_idx << EDMA_REQ_Q_PTR_SHIFT; 1478c6fd2807SJeff Garzik 1479c6fd2807SJeff Garzik /* and write the request in pointer to kick the EDMA to life */ 1480bdd4dddeSJeff Garzik writelfl((pp->crqb_dma & EDMA_REQ_Q_BASE_LO_MASK) | in_index, 1481bdd4dddeSJeff Garzik port_mmio + EDMA_REQ_Q_IN_PTR_OFS); 1482c6fd2807SJeff Garzik 1483c6fd2807SJeff Garzik return 0; 1484c6fd2807SJeff Garzik } 1485c6fd2807SJeff Garzik 1486c6fd2807SJeff Garzik /** 1487c6fd2807SJeff Garzik * mv_err_intr - Handle error interrupts on the port 1488c6fd2807SJeff Garzik * @ap: ATA channel to manipulate 1489c6fd2807SJeff Garzik * @reset_allowed: bool: 0 == don't trigger from reset here 1490c6fd2807SJeff Garzik * 1491c6fd2807SJeff Garzik * In most cases, just clear the interrupt and move on. However, 1492e12bef50SMark Lord * some cases require an eDMA reset, which also performs a COMRESET. 1493e12bef50SMark Lord * The SERR case requires a clear of pending errors in the SATA 1494e12bef50SMark Lord * SERROR register. Finally, if the port disabled DMA, 1495e12bef50SMark Lord * update our cached copy to match. 1496c6fd2807SJeff Garzik * 1497c6fd2807SJeff Garzik * LOCKING: 1498c6fd2807SJeff Garzik * Inherited from caller. 1499c6fd2807SJeff Garzik */ 1500bdd4dddeSJeff Garzik static void mv_err_intr(struct ata_port *ap, struct ata_queued_cmd *qc) 1501c6fd2807SJeff Garzik { 1502c6fd2807SJeff Garzik void __iomem *port_mmio = mv_ap_base(ap); 1503bdd4dddeSJeff Garzik u32 edma_err_cause, eh_freeze_mask, serr = 0; 1504bdd4dddeSJeff Garzik struct mv_port_priv *pp = ap->private_data; 1505bdd4dddeSJeff Garzik struct mv_host_priv *hpriv = ap->host->private_data; 1506bdd4dddeSJeff Garzik unsigned int edma_enabled = (pp->pp_flags & MV_PP_FLAG_EDMA_EN); 1507bdd4dddeSJeff Garzik unsigned int action = 0, err_mask = 0; 15089af5c9c9STejun Heo struct ata_eh_info *ehi = &ap->link.eh_info; 1509c6fd2807SJeff Garzik 1510bdd4dddeSJeff Garzik ata_ehi_clear_desc(ehi); 1511c6fd2807SJeff Garzik 1512bdd4dddeSJeff Garzik if (!edma_enabled) { 1513bdd4dddeSJeff Garzik /* just a guess: do we need to do this? should we 1514bdd4dddeSJeff Garzik * expand this, and do it in all cases? 1515bdd4dddeSJeff Garzik */ 1516936fd732STejun Heo sata_scr_read(&ap->link, SCR_ERROR, &serr); 1517936fd732STejun Heo sata_scr_write_flush(&ap->link, SCR_ERROR, serr); 1518c6fd2807SJeff Garzik } 1519bdd4dddeSJeff Garzik 1520bdd4dddeSJeff Garzik edma_err_cause = readl(port_mmio + EDMA_ERR_IRQ_CAUSE_OFS); 1521bdd4dddeSJeff Garzik 1522352fab70SMark Lord ata_ehi_push_desc(ehi, "edma_err_cause=%08x", edma_err_cause); 1523bdd4dddeSJeff Garzik 1524bdd4dddeSJeff Garzik /* 1525352fab70SMark Lord * All generations share these EDMA error cause bits: 1526bdd4dddeSJeff Garzik */ 1527bdd4dddeSJeff Garzik if (edma_err_cause & EDMA_ERR_DEV) 1528bdd4dddeSJeff Garzik err_mask |= AC_ERR_DEV; 1529bdd4dddeSJeff Garzik if (edma_err_cause & (EDMA_ERR_D_PAR | EDMA_ERR_PRD_PAR | 15306c1153e0SJeff Garzik EDMA_ERR_CRQB_PAR | EDMA_ERR_CRPB_PAR | 1531bdd4dddeSJeff Garzik EDMA_ERR_INTRL_PAR)) { 1532bdd4dddeSJeff Garzik err_mask |= AC_ERR_ATA_BUS; 1533cf480626STejun Heo action |= ATA_EH_RESET; 1534b64bbc39STejun Heo ata_ehi_push_desc(ehi, "parity error"); 1535bdd4dddeSJeff Garzik } 1536bdd4dddeSJeff Garzik if (edma_err_cause & (EDMA_ERR_DEV_DCON | EDMA_ERR_DEV_CON)) { 1537bdd4dddeSJeff Garzik ata_ehi_hotplugged(ehi); 1538bdd4dddeSJeff Garzik ata_ehi_push_desc(ehi, edma_err_cause & EDMA_ERR_DEV_DCON ? 1539b64bbc39STejun Heo "dev disconnect" : "dev connect"); 1540cf480626STejun Heo action |= ATA_EH_RESET; 1541bdd4dddeSJeff Garzik } 1542bdd4dddeSJeff Garzik 1543352fab70SMark Lord /* 1544352fab70SMark Lord * Gen-I has a different SELF_DIS bit, 1545352fab70SMark Lord * different FREEZE bits, and no SERR bit: 1546352fab70SMark Lord */ 1547ee9ccdf7SJeff Garzik if (IS_GEN_I(hpriv)) { 1548bdd4dddeSJeff Garzik eh_freeze_mask = EDMA_EH_FREEZE_5; 1549bdd4dddeSJeff Garzik if (edma_err_cause & EDMA_ERR_SELF_DIS_5) { 1550c6fd2807SJeff Garzik pp->pp_flags &= ~MV_PP_FLAG_EDMA_EN; 1551b64bbc39STejun Heo ata_ehi_push_desc(ehi, "EDMA self-disable"); 1552c6fd2807SJeff Garzik } 1553bdd4dddeSJeff Garzik } else { 1554bdd4dddeSJeff Garzik eh_freeze_mask = EDMA_EH_FREEZE; 1555bdd4dddeSJeff Garzik if (edma_err_cause & EDMA_ERR_SELF_DIS) { 1556bdd4dddeSJeff Garzik pp->pp_flags &= ~MV_PP_FLAG_EDMA_EN; 1557b64bbc39STejun Heo ata_ehi_push_desc(ehi, "EDMA self-disable"); 1558bdd4dddeSJeff Garzik } 1559bdd4dddeSJeff Garzik if (edma_err_cause & EDMA_ERR_SERR) { 1560936fd732STejun Heo sata_scr_read(&ap->link, SCR_ERROR, &serr); 1561936fd732STejun Heo sata_scr_write_flush(&ap->link, SCR_ERROR, serr); 1562bdd4dddeSJeff Garzik err_mask = AC_ERR_ATA_BUS; 1563cf480626STejun Heo action |= ATA_EH_RESET; 1564bdd4dddeSJeff Garzik } 1565bdd4dddeSJeff Garzik } 1566c6fd2807SJeff Garzik 1567c6fd2807SJeff Garzik /* Clear EDMA now that SERR cleanup done */ 15683606a380SMark Lord writelfl(~edma_err_cause, port_mmio + EDMA_ERR_IRQ_CAUSE_OFS); 1569c6fd2807SJeff Garzik 1570bdd4dddeSJeff Garzik if (!err_mask) { 1571bdd4dddeSJeff Garzik err_mask = AC_ERR_OTHER; 1572cf480626STejun Heo action |= ATA_EH_RESET; 1573bdd4dddeSJeff Garzik } 1574bdd4dddeSJeff Garzik 1575bdd4dddeSJeff Garzik ehi->serror |= serr; 1576bdd4dddeSJeff Garzik ehi->action |= action; 1577bdd4dddeSJeff Garzik 1578bdd4dddeSJeff Garzik if (qc) 1579bdd4dddeSJeff Garzik qc->err_mask |= err_mask; 1580bdd4dddeSJeff Garzik else 1581bdd4dddeSJeff Garzik ehi->err_mask |= err_mask; 1582bdd4dddeSJeff Garzik 1583bdd4dddeSJeff Garzik if (edma_err_cause & eh_freeze_mask) 1584bdd4dddeSJeff Garzik ata_port_freeze(ap); 1585bdd4dddeSJeff Garzik else 1586bdd4dddeSJeff Garzik ata_port_abort(ap); 1587bdd4dddeSJeff Garzik } 1588bdd4dddeSJeff Garzik 1589bdd4dddeSJeff Garzik static void mv_intr_pio(struct ata_port *ap) 1590bdd4dddeSJeff Garzik { 1591bdd4dddeSJeff Garzik struct ata_queued_cmd *qc; 1592bdd4dddeSJeff Garzik u8 ata_status; 1593bdd4dddeSJeff Garzik 1594bdd4dddeSJeff Garzik /* ignore spurious intr if drive still BUSY */ 1595bdd4dddeSJeff Garzik ata_status = readb(ap->ioaddr.status_addr); 1596bdd4dddeSJeff Garzik if (unlikely(ata_status & ATA_BUSY)) 1597bdd4dddeSJeff Garzik return; 1598bdd4dddeSJeff Garzik 1599bdd4dddeSJeff Garzik /* get active ATA command */ 16009af5c9c9STejun Heo qc = ata_qc_from_tag(ap, ap->link.active_tag); 1601bdd4dddeSJeff Garzik if (unlikely(!qc)) /* no active tag */ 1602bdd4dddeSJeff Garzik return; 1603bdd4dddeSJeff Garzik if (qc->tf.flags & ATA_TFLAG_POLLING) /* polling; we don't own qc */ 1604bdd4dddeSJeff Garzik return; 1605bdd4dddeSJeff Garzik 1606bdd4dddeSJeff Garzik /* and finally, complete the ATA command */ 1607bdd4dddeSJeff Garzik qc->err_mask |= ac_err_mask(ata_status); 1608bdd4dddeSJeff Garzik ata_qc_complete(qc); 1609bdd4dddeSJeff Garzik } 1610bdd4dddeSJeff Garzik 1611fcfb1f77SMark Lord static void mv_process_crpb_response(struct ata_port *ap, 1612fcfb1f77SMark Lord struct mv_crpb *response, unsigned int tag, int ncq_enabled) 1613fcfb1f77SMark Lord { 1614fcfb1f77SMark Lord struct ata_queued_cmd *qc = ata_qc_from_tag(ap, tag); 1615fcfb1f77SMark Lord 1616fcfb1f77SMark Lord if (qc) { 1617fcfb1f77SMark Lord u8 ata_status; 1618fcfb1f77SMark Lord u16 edma_status = le16_to_cpu(response->flags); 1619fcfb1f77SMark Lord /* 1620fcfb1f77SMark Lord * edma_status from a response queue entry: 1621fcfb1f77SMark Lord * LSB is from EDMA_ERR_IRQ_CAUSE_OFS (non-NCQ only). 1622fcfb1f77SMark Lord * MSB is saved ATA status from command completion. 1623fcfb1f77SMark Lord */ 1624fcfb1f77SMark Lord if (!ncq_enabled) { 1625fcfb1f77SMark Lord u8 err_cause = edma_status & 0xff & ~EDMA_ERR_DEV; 1626fcfb1f77SMark Lord if (err_cause) { 1627fcfb1f77SMark Lord /* 1628fcfb1f77SMark Lord * Error will be seen/handled by mv_err_intr(). 1629fcfb1f77SMark Lord * So do nothing at all here. 1630fcfb1f77SMark Lord */ 1631fcfb1f77SMark Lord return; 1632fcfb1f77SMark Lord } 1633fcfb1f77SMark Lord } 1634fcfb1f77SMark Lord ata_status = edma_status >> CRPB_FLAG_STATUS_SHIFT; 1635fcfb1f77SMark Lord qc->err_mask |= ac_err_mask(ata_status); 1636fcfb1f77SMark Lord ata_qc_complete(qc); 1637fcfb1f77SMark Lord } else { 1638fcfb1f77SMark Lord ata_port_printk(ap, KERN_ERR, "%s: no qc for tag=%d\n", 1639fcfb1f77SMark Lord __func__, tag); 1640fcfb1f77SMark Lord } 1641fcfb1f77SMark Lord } 1642fcfb1f77SMark Lord 1643fcfb1f77SMark Lord static void mv_process_crpb_entries(struct ata_port *ap, struct mv_port_priv *pp) 1644bdd4dddeSJeff Garzik { 1645bdd4dddeSJeff Garzik void __iomem *port_mmio = mv_ap_base(ap); 1646bdd4dddeSJeff Garzik struct mv_host_priv *hpriv = ap->host->private_data; 1647fcfb1f77SMark Lord u32 in_index; 1648bdd4dddeSJeff Garzik bool work_done = false; 1649fcfb1f77SMark Lord int ncq_enabled = (pp->pp_flags & MV_PP_FLAG_NCQ_EN); 1650bdd4dddeSJeff Garzik 1651fcfb1f77SMark Lord /* Get the hardware queue position index */ 1652bdd4dddeSJeff Garzik in_index = (readl(port_mmio + EDMA_RSP_Q_IN_PTR_OFS) 1653bdd4dddeSJeff Garzik >> EDMA_RSP_Q_PTR_SHIFT) & MV_MAX_Q_DEPTH_MASK; 1654bdd4dddeSJeff Garzik 1655fcfb1f77SMark Lord /* Process new responses from since the last time we looked */ 1656fcfb1f77SMark Lord while (in_index != pp->resp_idx) { 16576c1153e0SJeff Garzik unsigned int tag; 1658fcfb1f77SMark Lord struct mv_crpb *response = &pp->crpb[pp->resp_idx]; 1659bdd4dddeSJeff Garzik 1660fcfb1f77SMark Lord pp->resp_idx = (pp->resp_idx + 1) & MV_MAX_Q_DEPTH_MASK; 1661bdd4dddeSJeff Garzik 1662fcfb1f77SMark Lord if (IS_GEN_I(hpriv)) { 1663fcfb1f77SMark Lord /* 50xx: no NCQ, only one command active at a time */ 16649af5c9c9STejun Heo tag = ap->link.active_tag; 1665fcfb1f77SMark Lord } else { 1666fcfb1f77SMark Lord /* Gen II/IIE: get command tag from CRPB entry */ 1667fcfb1f77SMark Lord tag = le16_to_cpu(response->id) & 0x1f; 1668bdd4dddeSJeff Garzik } 1669fcfb1f77SMark Lord mv_process_crpb_response(ap, response, tag, ncq_enabled); 1670bdd4dddeSJeff Garzik work_done = true; 1671bdd4dddeSJeff Garzik } 1672bdd4dddeSJeff Garzik 1673352fab70SMark Lord /* Update the software queue position index in hardware */ 1674bdd4dddeSJeff Garzik if (work_done) 1675bdd4dddeSJeff Garzik writelfl((pp->crpb_dma & EDMA_RSP_Q_BASE_LO_MASK) | 1676fcfb1f77SMark Lord (pp->resp_idx << EDMA_RSP_Q_PTR_SHIFT), 1677bdd4dddeSJeff Garzik port_mmio + EDMA_RSP_Q_OUT_PTR_OFS); 1678c6fd2807SJeff Garzik } 1679c6fd2807SJeff Garzik 1680c6fd2807SJeff Garzik /** 1681c6fd2807SJeff Garzik * mv_host_intr - Handle all interrupts on the given host controller 1682cca3974eSJeff Garzik * @host: host specific structure 1683c6fd2807SJeff Garzik * @relevant: port error bits relevant to this host controller 1684c6fd2807SJeff Garzik * @hc: which host controller we're to look at 1685c6fd2807SJeff Garzik * 1686c6fd2807SJeff Garzik * Read then write clear the HC interrupt status then walk each 1687c6fd2807SJeff Garzik * port connected to the HC and see if it needs servicing. Port 1688c6fd2807SJeff Garzik * success ints are reported in the HC interrupt status reg, the 1689c6fd2807SJeff Garzik * port error ints are reported in the higher level main 1690c6fd2807SJeff Garzik * interrupt status register and thus are passed in via the 1691c6fd2807SJeff Garzik * 'relevant' argument. 1692c6fd2807SJeff Garzik * 1693c6fd2807SJeff Garzik * LOCKING: 1694c6fd2807SJeff Garzik * Inherited from caller. 1695c6fd2807SJeff Garzik */ 1696*a3718c1fSMark Lord static int mv_host_intr(struct ata_host *host, u32 main_cause) 1697c6fd2807SJeff Garzik { 1698f351b2d6SSaeed Bishara struct mv_host_priv *hpriv = host->private_data; 1699*a3718c1fSMark Lord void __iomem *mmio = hpriv->base, *hc_mmio = NULL; 1700*a3718c1fSMark Lord u32 hc_irq_cause = 0; 1701*a3718c1fSMark Lord unsigned int handled = 0, port; 1702c6fd2807SJeff Garzik 1703*a3718c1fSMark Lord for (port = 0; port < hpriv->n_ports; port++) { 1704cca3974eSJeff Garzik struct ata_port *ap = host->ports[port]; 17058f71efe2SYinghai Lu struct mv_port_priv *pp; 1706*a3718c1fSMark Lord unsigned int shift, hardport, port_cause; 1707*a3718c1fSMark Lord /* 1708*a3718c1fSMark Lord * When we move to the second hc, flag our cached 1709*a3718c1fSMark Lord * copies of hc_mmio (and hc_irq_cause) as invalid again. 1710*a3718c1fSMark Lord */ 1711*a3718c1fSMark Lord if (port == MV_PORTS_PER_HC) 1712*a3718c1fSMark Lord hc_mmio = NULL; 1713*a3718c1fSMark Lord /* 1714*a3718c1fSMark Lord * Do nothing if port is not interrupting or is disabled: 1715*a3718c1fSMark Lord */ 1716*a3718c1fSMark Lord MV_PORT_TO_SHIFT_AND_HARDPORT(port, shift, hardport); 1717*a3718c1fSMark Lord port_cause = (main_cause >> shift) & (DONE_IRQ | ERR_IRQ); 1718*a3718c1fSMark Lord if (!port_cause || !ap || (ap->flags & ATA_FLAG_DISABLED)) 1719c6fd2807SJeff Garzik continue; 1720*a3718c1fSMark Lord /* 1721*a3718c1fSMark Lord * Each hc within the host has its own hc_irq_cause register. 1722*a3718c1fSMark Lord * We defer reading it until we know we need it, right now: 1723*a3718c1fSMark Lord * 1724*a3718c1fSMark Lord * FIXME later: we don't really need to read this register 1725*a3718c1fSMark Lord * (some logic changes required below if we go that way), 1726*a3718c1fSMark Lord * because it doesn't tell us anything new. But we do need 1727*a3718c1fSMark Lord * to write to it, outside the top of this loop, 1728*a3718c1fSMark Lord * to reset the interrupt triggers for next time. 1729*a3718c1fSMark Lord */ 1730*a3718c1fSMark Lord if (!hc_mmio) { 1731*a3718c1fSMark Lord hc_mmio = mv_hc_base_from_port(mmio, port); 1732*a3718c1fSMark Lord hc_irq_cause = readl(hc_mmio + HC_IRQ_CAUSE_OFS); 1733*a3718c1fSMark Lord writelfl(~hc_irq_cause, hc_mmio + HC_IRQ_CAUSE_OFS); 1734*a3718c1fSMark Lord handled = 1; 1735*a3718c1fSMark Lord } 1736c6fd2807SJeff Garzik 1737*a3718c1fSMark Lord if (unlikely(port_cause & ERR_IRQ)) { 1738bdd4dddeSJeff Garzik struct ata_queued_cmd *qc; 1739bdd4dddeSJeff Garzik 17409af5c9c9STejun Heo qc = ata_qc_from_tag(ap, ap->link.active_tag); 1741bdd4dddeSJeff Garzik if (qc && (qc->tf.flags & ATA_TFLAG_POLLING)) 1742bdd4dddeSJeff Garzik continue; 1743bdd4dddeSJeff Garzik 1744bdd4dddeSJeff Garzik mv_err_intr(ap, qc); 1745bdd4dddeSJeff Garzik continue; 1746c6fd2807SJeff Garzik } 1747c6fd2807SJeff Garzik 1748*a3718c1fSMark Lord pp = ap->private_data; 1749bdd4dddeSJeff Garzik if (pp->pp_flags & MV_PP_FLAG_EDMA_EN) { 1750352fab70SMark Lord if ((DMA_IRQ << hardport) & hc_irq_cause) 1751fcfb1f77SMark Lord mv_process_crpb_entries(ap, pp); 1752bdd4dddeSJeff Garzik } else { 1753352fab70SMark Lord if ((DEV_IRQ << hardport) & hc_irq_cause) 1754bdd4dddeSJeff Garzik mv_intr_pio(ap); 1755c6fd2807SJeff Garzik } 1756c6fd2807SJeff Garzik } 1757*a3718c1fSMark Lord return handled; 1758c6fd2807SJeff Garzik } 1759c6fd2807SJeff Garzik 1760*a3718c1fSMark Lord static int mv_pci_error(struct ata_host *host, void __iomem *mmio) 1761bdd4dddeSJeff Garzik { 176202a121daSMark Lord struct mv_host_priv *hpriv = host->private_data; 1763bdd4dddeSJeff Garzik struct ata_port *ap; 1764bdd4dddeSJeff Garzik struct ata_queued_cmd *qc; 1765bdd4dddeSJeff Garzik struct ata_eh_info *ehi; 1766bdd4dddeSJeff Garzik unsigned int i, err_mask, printed = 0; 1767bdd4dddeSJeff Garzik u32 err_cause; 1768bdd4dddeSJeff Garzik 176902a121daSMark Lord err_cause = readl(mmio + hpriv->irq_cause_ofs); 1770bdd4dddeSJeff Garzik 1771bdd4dddeSJeff Garzik dev_printk(KERN_ERR, host->dev, "PCI ERROR; PCI IRQ cause=0x%08x\n", 1772bdd4dddeSJeff Garzik err_cause); 1773bdd4dddeSJeff Garzik 1774bdd4dddeSJeff Garzik DPRINTK("All regs @ PCI error\n"); 1775bdd4dddeSJeff Garzik mv_dump_all_regs(mmio, -1, to_pci_dev(host->dev)); 1776bdd4dddeSJeff Garzik 177702a121daSMark Lord writelfl(0, mmio + hpriv->irq_cause_ofs); 1778bdd4dddeSJeff Garzik 1779bdd4dddeSJeff Garzik for (i = 0; i < host->n_ports; i++) { 1780bdd4dddeSJeff Garzik ap = host->ports[i]; 1781936fd732STejun Heo if (!ata_link_offline(&ap->link)) { 17829af5c9c9STejun Heo ehi = &ap->link.eh_info; 1783bdd4dddeSJeff Garzik ata_ehi_clear_desc(ehi); 1784bdd4dddeSJeff Garzik if (!printed++) 1785bdd4dddeSJeff Garzik ata_ehi_push_desc(ehi, 1786bdd4dddeSJeff Garzik "PCI err cause 0x%08x", err_cause); 1787bdd4dddeSJeff Garzik err_mask = AC_ERR_HOST_BUS; 1788cf480626STejun Heo ehi->action = ATA_EH_RESET; 17899af5c9c9STejun Heo qc = ata_qc_from_tag(ap, ap->link.active_tag); 1790bdd4dddeSJeff Garzik if (qc) 1791bdd4dddeSJeff Garzik qc->err_mask |= err_mask; 1792bdd4dddeSJeff Garzik else 1793bdd4dddeSJeff Garzik ehi->err_mask |= err_mask; 1794bdd4dddeSJeff Garzik 1795bdd4dddeSJeff Garzik ata_port_freeze(ap); 1796bdd4dddeSJeff Garzik } 1797bdd4dddeSJeff Garzik } 1798*a3718c1fSMark Lord return 1; /* handled */ 1799bdd4dddeSJeff Garzik } 1800bdd4dddeSJeff Garzik 1801c6fd2807SJeff Garzik /** 1802c5d3e45aSJeff Garzik * mv_interrupt - Main interrupt event handler 1803c6fd2807SJeff Garzik * @irq: unused 1804c6fd2807SJeff Garzik * @dev_instance: private data; in this case the host structure 1805c6fd2807SJeff Garzik * 1806c6fd2807SJeff Garzik * Read the read only register to determine if any host 1807c6fd2807SJeff Garzik * controllers have pending interrupts. If so, call lower level 1808c6fd2807SJeff Garzik * routine to handle. Also check for PCI errors which are only 1809c6fd2807SJeff Garzik * reported here. 1810c6fd2807SJeff Garzik * 1811c6fd2807SJeff Garzik * LOCKING: 1812cca3974eSJeff Garzik * This routine holds the host lock while processing pending 1813c6fd2807SJeff Garzik * interrupts. 1814c6fd2807SJeff Garzik */ 18157d12e780SDavid Howells static irqreturn_t mv_interrupt(int irq, void *dev_instance) 1816c6fd2807SJeff Garzik { 1817cca3974eSJeff Garzik struct ata_host *host = dev_instance; 1818f351b2d6SSaeed Bishara struct mv_host_priv *hpriv = host->private_data; 1819*a3718c1fSMark Lord unsigned int handled = 0; 1820352fab70SMark Lord u32 main_cause, main_mask; 1821c6fd2807SJeff Garzik 1822646a4da5SMark Lord spin_lock(&host->lock); 1823352fab70SMark Lord main_cause = readl(hpriv->main_cause_reg_addr); 1824352fab70SMark Lord main_mask = readl(hpriv->main_mask_reg_addr); 1825352fab70SMark Lord /* 1826352fab70SMark Lord * Deal with cases where we either have nothing pending, or have read 1827352fab70SMark Lord * a bogus register value which can indicate HW removal or PCI fault. 1828c6fd2807SJeff Garzik */ 1829*a3718c1fSMark Lord if ((main_cause & main_mask) && (main_cause != 0xffffffffU)) { 1830*a3718c1fSMark Lord if (unlikely((main_cause & PCI_ERR) && HAS_PCI(host))) 1831*a3718c1fSMark Lord handled = mv_pci_error(host, hpriv->base); 1832*a3718c1fSMark Lord else 1833*a3718c1fSMark Lord handled = mv_host_intr(host, main_cause); 1834bdd4dddeSJeff Garzik } 1835cca3974eSJeff Garzik spin_unlock(&host->lock); 1836c6fd2807SJeff Garzik return IRQ_RETVAL(handled); 1837c6fd2807SJeff Garzik } 1838c6fd2807SJeff Garzik 1839c6fd2807SJeff Garzik static unsigned int mv5_scr_offset(unsigned int sc_reg_in) 1840c6fd2807SJeff Garzik { 1841c6fd2807SJeff Garzik unsigned int ofs; 1842c6fd2807SJeff Garzik 1843c6fd2807SJeff Garzik switch (sc_reg_in) { 1844c6fd2807SJeff Garzik case SCR_STATUS: 1845c6fd2807SJeff Garzik case SCR_ERROR: 1846c6fd2807SJeff Garzik case SCR_CONTROL: 1847c6fd2807SJeff Garzik ofs = sc_reg_in * sizeof(u32); 1848c6fd2807SJeff Garzik break; 1849c6fd2807SJeff Garzik default: 1850c6fd2807SJeff Garzik ofs = 0xffffffffU; 1851c6fd2807SJeff Garzik break; 1852c6fd2807SJeff Garzik } 1853c6fd2807SJeff Garzik return ofs; 1854c6fd2807SJeff Garzik } 1855c6fd2807SJeff Garzik 1856da3dbb17STejun Heo static int mv5_scr_read(struct ata_port *ap, unsigned int sc_reg_in, u32 *val) 1857c6fd2807SJeff Garzik { 1858f351b2d6SSaeed Bishara struct mv_host_priv *hpriv = ap->host->private_data; 1859f351b2d6SSaeed Bishara void __iomem *mmio = hpriv->base; 18600d5ff566STejun Heo void __iomem *addr = mv5_phy_base(mmio, ap->port_no); 1861c6fd2807SJeff Garzik unsigned int ofs = mv5_scr_offset(sc_reg_in); 1862c6fd2807SJeff Garzik 1863da3dbb17STejun Heo if (ofs != 0xffffffffU) { 1864da3dbb17STejun Heo *val = readl(addr + ofs); 1865da3dbb17STejun Heo return 0; 1866da3dbb17STejun Heo } else 1867da3dbb17STejun Heo return -EINVAL; 1868c6fd2807SJeff Garzik } 1869c6fd2807SJeff Garzik 1870da3dbb17STejun Heo static int mv5_scr_write(struct ata_port *ap, unsigned int sc_reg_in, u32 val) 1871c6fd2807SJeff Garzik { 1872f351b2d6SSaeed Bishara struct mv_host_priv *hpriv = ap->host->private_data; 1873f351b2d6SSaeed Bishara void __iomem *mmio = hpriv->base; 18740d5ff566STejun Heo void __iomem *addr = mv5_phy_base(mmio, ap->port_no); 1875c6fd2807SJeff Garzik unsigned int ofs = mv5_scr_offset(sc_reg_in); 1876c6fd2807SJeff Garzik 1877da3dbb17STejun Heo if (ofs != 0xffffffffU) { 18780d5ff566STejun Heo writelfl(val, addr + ofs); 1879da3dbb17STejun Heo return 0; 1880da3dbb17STejun Heo } else 1881da3dbb17STejun Heo return -EINVAL; 1882c6fd2807SJeff Garzik } 1883c6fd2807SJeff Garzik 18847bb3c529SSaeed Bishara static void mv5_reset_bus(struct ata_host *host, void __iomem *mmio) 1885c6fd2807SJeff Garzik { 18867bb3c529SSaeed Bishara struct pci_dev *pdev = to_pci_dev(host->dev); 1887c6fd2807SJeff Garzik int early_5080; 1888c6fd2807SJeff Garzik 188944c10138SAuke Kok early_5080 = (pdev->device == 0x5080) && (pdev->revision == 0); 1890c6fd2807SJeff Garzik 1891c6fd2807SJeff Garzik if (!early_5080) { 1892c6fd2807SJeff Garzik u32 tmp = readl(mmio + MV_PCI_EXP_ROM_BAR_CTL); 1893c6fd2807SJeff Garzik tmp |= (1 << 0); 1894c6fd2807SJeff Garzik writel(tmp, mmio + MV_PCI_EXP_ROM_BAR_CTL); 1895c6fd2807SJeff Garzik } 1896c6fd2807SJeff Garzik 18977bb3c529SSaeed Bishara mv_reset_pci_bus(host, mmio); 1898c6fd2807SJeff Garzik } 1899c6fd2807SJeff Garzik 1900c6fd2807SJeff Garzik static void mv5_reset_flash(struct mv_host_priv *hpriv, void __iomem *mmio) 1901c6fd2807SJeff Garzik { 1902c6fd2807SJeff Garzik writel(0x0fcfffff, mmio + MV_FLASH_CTL); 1903c6fd2807SJeff Garzik } 1904c6fd2807SJeff Garzik 1905c6fd2807SJeff Garzik static void mv5_read_preamp(struct mv_host_priv *hpriv, int idx, 1906c6fd2807SJeff Garzik void __iomem *mmio) 1907c6fd2807SJeff Garzik { 1908c6fd2807SJeff Garzik void __iomem *phy_mmio = mv5_phy_base(mmio, idx); 1909c6fd2807SJeff Garzik u32 tmp; 1910c6fd2807SJeff Garzik 1911c6fd2807SJeff Garzik tmp = readl(phy_mmio + MV5_PHY_MODE); 1912c6fd2807SJeff Garzik 1913c6fd2807SJeff Garzik hpriv->signal[idx].pre = tmp & 0x1800; /* bits 12:11 */ 1914c6fd2807SJeff Garzik hpriv->signal[idx].amps = tmp & 0xe0; /* bits 7:5 */ 1915c6fd2807SJeff Garzik } 1916c6fd2807SJeff Garzik 1917c6fd2807SJeff Garzik static void mv5_enable_leds(struct mv_host_priv *hpriv, void __iomem *mmio) 1918c6fd2807SJeff Garzik { 1919c6fd2807SJeff Garzik u32 tmp; 1920c6fd2807SJeff Garzik 1921c6fd2807SJeff Garzik writel(0, mmio + MV_GPIO_PORT_CTL); 1922c6fd2807SJeff Garzik 1923c6fd2807SJeff Garzik /* FIXME: handle MV_HP_ERRATA_50XXB2 errata */ 1924c6fd2807SJeff Garzik 1925c6fd2807SJeff Garzik tmp = readl(mmio + MV_PCI_EXP_ROM_BAR_CTL); 1926c6fd2807SJeff Garzik tmp |= ~(1 << 0); 1927c6fd2807SJeff Garzik writel(tmp, mmio + MV_PCI_EXP_ROM_BAR_CTL); 1928c6fd2807SJeff Garzik } 1929c6fd2807SJeff Garzik 1930c6fd2807SJeff Garzik static void mv5_phy_errata(struct mv_host_priv *hpriv, void __iomem *mmio, 1931c6fd2807SJeff Garzik unsigned int port) 1932c6fd2807SJeff Garzik { 1933c6fd2807SJeff Garzik void __iomem *phy_mmio = mv5_phy_base(mmio, port); 1934c6fd2807SJeff Garzik const u32 mask = (1<<12) | (1<<11) | (1<<7) | (1<<6) | (1<<5); 1935c6fd2807SJeff Garzik u32 tmp; 1936c6fd2807SJeff Garzik int fix_apm_sq = (hpriv->hp_flags & MV_HP_ERRATA_50XXB0); 1937c6fd2807SJeff Garzik 1938c6fd2807SJeff Garzik if (fix_apm_sq) { 1939c6fd2807SJeff Garzik tmp = readl(phy_mmio + MV5_LT_MODE); 1940c6fd2807SJeff Garzik tmp |= (1 << 19); 1941c6fd2807SJeff Garzik writel(tmp, phy_mmio + MV5_LT_MODE); 1942c6fd2807SJeff Garzik 1943c6fd2807SJeff Garzik tmp = readl(phy_mmio + MV5_PHY_CTL); 1944c6fd2807SJeff Garzik tmp &= ~0x3; 1945c6fd2807SJeff Garzik tmp |= 0x1; 1946c6fd2807SJeff Garzik writel(tmp, phy_mmio + MV5_PHY_CTL); 1947c6fd2807SJeff Garzik } 1948c6fd2807SJeff Garzik 1949c6fd2807SJeff Garzik tmp = readl(phy_mmio + MV5_PHY_MODE); 1950c6fd2807SJeff Garzik tmp &= ~mask; 1951c6fd2807SJeff Garzik tmp |= hpriv->signal[port].pre; 1952c6fd2807SJeff Garzik tmp |= hpriv->signal[port].amps; 1953c6fd2807SJeff Garzik writel(tmp, phy_mmio + MV5_PHY_MODE); 1954c6fd2807SJeff Garzik } 1955c6fd2807SJeff Garzik 1956c6fd2807SJeff Garzik 1957c6fd2807SJeff Garzik #undef ZERO 1958c6fd2807SJeff Garzik #define ZERO(reg) writel(0, port_mmio + (reg)) 1959c6fd2807SJeff Garzik static void mv5_reset_hc_port(struct mv_host_priv *hpriv, void __iomem *mmio, 1960c6fd2807SJeff Garzik unsigned int port) 1961c6fd2807SJeff Garzik { 1962c6fd2807SJeff Garzik void __iomem *port_mmio = mv_port_base(mmio, port); 1963c6fd2807SJeff Garzik 1964b562468cSMark Lord /* 1965b562468cSMark Lord * The datasheet warns against setting ATA_RST when EDMA is active 1966b562468cSMark Lord * (but doesn't say what the problem might be). So we first try 1967b562468cSMark Lord * to disable the EDMA engine before doing the ATA_RST operation. 1968b562468cSMark Lord */ 1969e12bef50SMark Lord mv_reset_channel(hpriv, mmio, port); 1970c6fd2807SJeff Garzik 1971c6fd2807SJeff Garzik ZERO(0x028); /* command */ 1972c6fd2807SJeff Garzik writel(0x11f, port_mmio + EDMA_CFG_OFS); 1973c6fd2807SJeff Garzik ZERO(0x004); /* timer */ 1974c6fd2807SJeff Garzik ZERO(0x008); /* irq err cause */ 1975c6fd2807SJeff Garzik ZERO(0x00c); /* irq err mask */ 1976c6fd2807SJeff Garzik ZERO(0x010); /* rq bah */ 1977c6fd2807SJeff Garzik ZERO(0x014); /* rq inp */ 1978c6fd2807SJeff Garzik ZERO(0x018); /* rq outp */ 1979c6fd2807SJeff Garzik ZERO(0x01c); /* respq bah */ 1980c6fd2807SJeff Garzik ZERO(0x024); /* respq outp */ 1981c6fd2807SJeff Garzik ZERO(0x020); /* respq inp */ 1982c6fd2807SJeff Garzik ZERO(0x02c); /* test control */ 1983c6fd2807SJeff Garzik writel(0xbc, port_mmio + EDMA_IORDY_TMOUT); 1984c6fd2807SJeff Garzik } 1985c6fd2807SJeff Garzik #undef ZERO 1986c6fd2807SJeff Garzik 1987c6fd2807SJeff Garzik #define ZERO(reg) writel(0, hc_mmio + (reg)) 1988c6fd2807SJeff Garzik static void mv5_reset_one_hc(struct mv_host_priv *hpriv, void __iomem *mmio, 1989c6fd2807SJeff Garzik unsigned int hc) 1990c6fd2807SJeff Garzik { 1991c6fd2807SJeff Garzik void __iomem *hc_mmio = mv_hc_base(mmio, hc); 1992c6fd2807SJeff Garzik u32 tmp; 1993c6fd2807SJeff Garzik 1994c6fd2807SJeff Garzik ZERO(0x00c); 1995c6fd2807SJeff Garzik ZERO(0x010); 1996c6fd2807SJeff Garzik ZERO(0x014); 1997c6fd2807SJeff Garzik ZERO(0x018); 1998c6fd2807SJeff Garzik 1999c6fd2807SJeff Garzik tmp = readl(hc_mmio + 0x20); 2000c6fd2807SJeff Garzik tmp &= 0x1c1c1c1c; 2001c6fd2807SJeff Garzik tmp |= 0x03030303; 2002c6fd2807SJeff Garzik writel(tmp, hc_mmio + 0x20); 2003c6fd2807SJeff Garzik } 2004c6fd2807SJeff Garzik #undef ZERO 2005c6fd2807SJeff Garzik 2006c6fd2807SJeff Garzik static int mv5_reset_hc(struct mv_host_priv *hpriv, void __iomem *mmio, 2007c6fd2807SJeff Garzik unsigned int n_hc) 2008c6fd2807SJeff Garzik { 2009c6fd2807SJeff Garzik unsigned int hc, port; 2010c6fd2807SJeff Garzik 2011c6fd2807SJeff Garzik for (hc = 0; hc < n_hc; hc++) { 2012c6fd2807SJeff Garzik for (port = 0; port < MV_PORTS_PER_HC; port++) 2013c6fd2807SJeff Garzik mv5_reset_hc_port(hpriv, mmio, 2014c6fd2807SJeff Garzik (hc * MV_PORTS_PER_HC) + port); 2015c6fd2807SJeff Garzik 2016c6fd2807SJeff Garzik mv5_reset_one_hc(hpriv, mmio, hc); 2017c6fd2807SJeff Garzik } 2018c6fd2807SJeff Garzik 2019c6fd2807SJeff Garzik return 0; 2020c6fd2807SJeff Garzik } 2021c6fd2807SJeff Garzik 2022c6fd2807SJeff Garzik #undef ZERO 2023c6fd2807SJeff Garzik #define ZERO(reg) writel(0, mmio + (reg)) 20247bb3c529SSaeed Bishara static void mv_reset_pci_bus(struct ata_host *host, void __iomem *mmio) 2025c6fd2807SJeff Garzik { 202602a121daSMark Lord struct mv_host_priv *hpriv = host->private_data; 2027c6fd2807SJeff Garzik u32 tmp; 2028c6fd2807SJeff Garzik 2029c6fd2807SJeff Garzik tmp = readl(mmio + MV_PCI_MODE); 2030c6fd2807SJeff Garzik tmp &= 0xff00ffff; 2031c6fd2807SJeff Garzik writel(tmp, mmio + MV_PCI_MODE); 2032c6fd2807SJeff Garzik 2033c6fd2807SJeff Garzik ZERO(MV_PCI_DISC_TIMER); 2034c6fd2807SJeff Garzik ZERO(MV_PCI_MSI_TRIGGER); 2035c6fd2807SJeff Garzik writel(0x000100ff, mmio + MV_PCI_XBAR_TMOUT); 2036c6fd2807SJeff Garzik ZERO(HC_MAIN_IRQ_MASK_OFS); 2037c6fd2807SJeff Garzik ZERO(MV_PCI_SERR_MASK); 203802a121daSMark Lord ZERO(hpriv->irq_cause_ofs); 203902a121daSMark Lord ZERO(hpriv->irq_mask_ofs); 2040c6fd2807SJeff Garzik ZERO(MV_PCI_ERR_LOW_ADDRESS); 2041c6fd2807SJeff Garzik ZERO(MV_PCI_ERR_HIGH_ADDRESS); 2042c6fd2807SJeff Garzik ZERO(MV_PCI_ERR_ATTRIBUTE); 2043c6fd2807SJeff Garzik ZERO(MV_PCI_ERR_COMMAND); 2044c6fd2807SJeff Garzik } 2045c6fd2807SJeff Garzik #undef ZERO 2046c6fd2807SJeff Garzik 2047c6fd2807SJeff Garzik static void mv6_reset_flash(struct mv_host_priv *hpriv, void __iomem *mmio) 2048c6fd2807SJeff Garzik { 2049c6fd2807SJeff Garzik u32 tmp; 2050c6fd2807SJeff Garzik 2051c6fd2807SJeff Garzik mv5_reset_flash(hpriv, mmio); 2052c6fd2807SJeff Garzik 2053c6fd2807SJeff Garzik tmp = readl(mmio + MV_GPIO_PORT_CTL); 2054c6fd2807SJeff Garzik tmp &= 0x3; 2055c6fd2807SJeff Garzik tmp |= (1 << 5) | (1 << 6); 2056c6fd2807SJeff Garzik writel(tmp, mmio + MV_GPIO_PORT_CTL); 2057c6fd2807SJeff Garzik } 2058c6fd2807SJeff Garzik 2059c6fd2807SJeff Garzik /** 2060c6fd2807SJeff Garzik * mv6_reset_hc - Perform the 6xxx global soft reset 2061c6fd2807SJeff Garzik * @mmio: base address of the HBA 2062c6fd2807SJeff Garzik * 2063c6fd2807SJeff Garzik * This routine only applies to 6xxx parts. 2064c6fd2807SJeff Garzik * 2065c6fd2807SJeff Garzik * LOCKING: 2066c6fd2807SJeff Garzik * Inherited from caller. 2067c6fd2807SJeff Garzik */ 2068c6fd2807SJeff Garzik static int mv6_reset_hc(struct mv_host_priv *hpriv, void __iomem *mmio, 2069c6fd2807SJeff Garzik unsigned int n_hc) 2070c6fd2807SJeff Garzik { 2071c6fd2807SJeff Garzik void __iomem *reg = mmio + PCI_MAIN_CMD_STS_OFS; 2072c6fd2807SJeff Garzik int i, rc = 0; 2073c6fd2807SJeff Garzik u32 t; 2074c6fd2807SJeff Garzik 2075c6fd2807SJeff Garzik /* Following procedure defined in PCI "main command and status 2076c6fd2807SJeff Garzik * register" table. 2077c6fd2807SJeff Garzik */ 2078c6fd2807SJeff Garzik t = readl(reg); 2079c6fd2807SJeff Garzik writel(t | STOP_PCI_MASTER, reg); 2080c6fd2807SJeff Garzik 2081c6fd2807SJeff Garzik for (i = 0; i < 1000; i++) { 2082c6fd2807SJeff Garzik udelay(1); 2083c6fd2807SJeff Garzik t = readl(reg); 20842dcb407eSJeff Garzik if (PCI_MASTER_EMPTY & t) 2085c6fd2807SJeff Garzik break; 2086c6fd2807SJeff Garzik } 2087c6fd2807SJeff Garzik if (!(PCI_MASTER_EMPTY & t)) { 2088c6fd2807SJeff Garzik printk(KERN_ERR DRV_NAME ": PCI master won't flush\n"); 2089c6fd2807SJeff Garzik rc = 1; 2090c6fd2807SJeff Garzik goto done; 2091c6fd2807SJeff Garzik } 2092c6fd2807SJeff Garzik 2093c6fd2807SJeff Garzik /* set reset */ 2094c6fd2807SJeff Garzik i = 5; 2095c6fd2807SJeff Garzik do { 2096c6fd2807SJeff Garzik writel(t | GLOB_SFT_RST, reg); 2097c6fd2807SJeff Garzik t = readl(reg); 2098c6fd2807SJeff Garzik udelay(1); 2099c6fd2807SJeff Garzik } while (!(GLOB_SFT_RST & t) && (i-- > 0)); 2100c6fd2807SJeff Garzik 2101c6fd2807SJeff Garzik if (!(GLOB_SFT_RST & t)) { 2102c6fd2807SJeff Garzik printk(KERN_ERR DRV_NAME ": can't set global reset\n"); 2103c6fd2807SJeff Garzik rc = 1; 2104c6fd2807SJeff Garzik goto done; 2105c6fd2807SJeff Garzik } 2106c6fd2807SJeff Garzik 2107c6fd2807SJeff Garzik /* clear reset and *reenable the PCI master* (not mentioned in spec) */ 2108c6fd2807SJeff Garzik i = 5; 2109c6fd2807SJeff Garzik do { 2110c6fd2807SJeff Garzik writel(t & ~(GLOB_SFT_RST | STOP_PCI_MASTER), reg); 2111c6fd2807SJeff Garzik t = readl(reg); 2112c6fd2807SJeff Garzik udelay(1); 2113c6fd2807SJeff Garzik } while ((GLOB_SFT_RST & t) && (i-- > 0)); 2114c6fd2807SJeff Garzik 2115c6fd2807SJeff Garzik if (GLOB_SFT_RST & t) { 2116c6fd2807SJeff Garzik printk(KERN_ERR DRV_NAME ": can't clear global reset\n"); 2117c6fd2807SJeff Garzik rc = 1; 2118c6fd2807SJeff Garzik } 2119094e50b2SMark Lord /* 2120094e50b2SMark Lord * Temporary: wait 3 seconds before port-probing can happen, 2121094e50b2SMark Lord * so that we don't miss finding sleepy SilXXXX port-multipliers. 2122094e50b2SMark Lord * This can go away once hotplug is fully/correctly implemented. 2123094e50b2SMark Lord */ 2124094e50b2SMark Lord if (rc == 0) 2125094e50b2SMark Lord msleep(3000); 2126c6fd2807SJeff Garzik done: 2127c6fd2807SJeff Garzik return rc; 2128c6fd2807SJeff Garzik } 2129c6fd2807SJeff Garzik 2130c6fd2807SJeff Garzik static void mv6_read_preamp(struct mv_host_priv *hpriv, int idx, 2131c6fd2807SJeff Garzik void __iomem *mmio) 2132c6fd2807SJeff Garzik { 2133c6fd2807SJeff Garzik void __iomem *port_mmio; 2134c6fd2807SJeff Garzik u32 tmp; 2135c6fd2807SJeff Garzik 2136c6fd2807SJeff Garzik tmp = readl(mmio + MV_RESET_CFG); 2137c6fd2807SJeff Garzik if ((tmp & (1 << 0)) == 0) { 2138c6fd2807SJeff Garzik hpriv->signal[idx].amps = 0x7 << 8; 2139c6fd2807SJeff Garzik hpriv->signal[idx].pre = 0x1 << 5; 2140c6fd2807SJeff Garzik return; 2141c6fd2807SJeff Garzik } 2142c6fd2807SJeff Garzik 2143c6fd2807SJeff Garzik port_mmio = mv_port_base(mmio, idx); 2144c6fd2807SJeff Garzik tmp = readl(port_mmio + PHY_MODE2); 2145c6fd2807SJeff Garzik 2146c6fd2807SJeff Garzik hpriv->signal[idx].amps = tmp & 0x700; /* bits 10:8 */ 2147c6fd2807SJeff Garzik hpriv->signal[idx].pre = tmp & 0xe0; /* bits 7:5 */ 2148c6fd2807SJeff Garzik } 2149c6fd2807SJeff Garzik 2150c6fd2807SJeff Garzik static void mv6_enable_leds(struct mv_host_priv *hpriv, void __iomem *mmio) 2151c6fd2807SJeff Garzik { 2152c6fd2807SJeff Garzik writel(0x00000060, mmio + MV_GPIO_PORT_CTL); 2153c6fd2807SJeff Garzik } 2154c6fd2807SJeff Garzik 2155c6fd2807SJeff Garzik static void mv6_phy_errata(struct mv_host_priv *hpriv, void __iomem *mmio, 2156c6fd2807SJeff Garzik unsigned int port) 2157c6fd2807SJeff Garzik { 2158c6fd2807SJeff Garzik void __iomem *port_mmio = mv_port_base(mmio, port); 2159c6fd2807SJeff Garzik 2160c6fd2807SJeff Garzik u32 hp_flags = hpriv->hp_flags; 2161c6fd2807SJeff Garzik int fix_phy_mode2 = 2162c6fd2807SJeff Garzik hp_flags & (MV_HP_ERRATA_60X1B2 | MV_HP_ERRATA_60X1C0); 2163c6fd2807SJeff Garzik int fix_phy_mode4 = 2164c6fd2807SJeff Garzik hp_flags & (MV_HP_ERRATA_60X1B2 | MV_HP_ERRATA_60X1C0); 2165c6fd2807SJeff Garzik u32 m2, tmp; 2166c6fd2807SJeff Garzik 2167c6fd2807SJeff Garzik if (fix_phy_mode2) { 2168c6fd2807SJeff Garzik m2 = readl(port_mmio + PHY_MODE2); 2169c6fd2807SJeff Garzik m2 &= ~(1 << 16); 2170c6fd2807SJeff Garzik m2 |= (1 << 31); 2171c6fd2807SJeff Garzik writel(m2, port_mmio + PHY_MODE2); 2172c6fd2807SJeff Garzik 2173c6fd2807SJeff Garzik udelay(200); 2174c6fd2807SJeff Garzik 2175c6fd2807SJeff Garzik m2 = readl(port_mmio + PHY_MODE2); 2176c6fd2807SJeff Garzik m2 &= ~((1 << 16) | (1 << 31)); 2177c6fd2807SJeff Garzik writel(m2, port_mmio + PHY_MODE2); 2178c6fd2807SJeff Garzik 2179c6fd2807SJeff Garzik udelay(200); 2180c6fd2807SJeff Garzik } 2181c6fd2807SJeff Garzik 2182c6fd2807SJeff Garzik /* who knows what this magic does */ 2183c6fd2807SJeff Garzik tmp = readl(port_mmio + PHY_MODE3); 2184c6fd2807SJeff Garzik tmp &= ~0x7F800000; 2185c6fd2807SJeff Garzik tmp |= 0x2A800000; 2186c6fd2807SJeff Garzik writel(tmp, port_mmio + PHY_MODE3); 2187c6fd2807SJeff Garzik 2188c6fd2807SJeff Garzik if (fix_phy_mode4) { 2189c6fd2807SJeff Garzik u32 m4; 2190c6fd2807SJeff Garzik 2191c6fd2807SJeff Garzik m4 = readl(port_mmio + PHY_MODE4); 2192c6fd2807SJeff Garzik 2193c6fd2807SJeff Garzik if (hp_flags & MV_HP_ERRATA_60X1B2) 2194e12bef50SMark Lord tmp = readl(port_mmio + PHY_MODE3); 2195c6fd2807SJeff Garzik 2196e12bef50SMark Lord /* workaround for errata FEr SATA#10 (part 1) */ 2197c6fd2807SJeff Garzik m4 = (m4 & ~(1 << 1)) | (1 << 0); 2198c6fd2807SJeff Garzik 2199c6fd2807SJeff Garzik writel(m4, port_mmio + PHY_MODE4); 2200c6fd2807SJeff Garzik 2201c6fd2807SJeff Garzik if (hp_flags & MV_HP_ERRATA_60X1B2) 2202e12bef50SMark Lord writel(tmp, port_mmio + PHY_MODE3); 2203c6fd2807SJeff Garzik } 2204c6fd2807SJeff Garzik 2205c6fd2807SJeff Garzik /* Revert values of pre-emphasis and signal amps to the saved ones */ 2206c6fd2807SJeff Garzik m2 = readl(port_mmio + PHY_MODE2); 2207c6fd2807SJeff Garzik 2208c6fd2807SJeff Garzik m2 &= ~MV_M2_PREAMP_MASK; 2209c6fd2807SJeff Garzik m2 |= hpriv->signal[port].amps; 2210c6fd2807SJeff Garzik m2 |= hpriv->signal[port].pre; 2211c6fd2807SJeff Garzik m2 &= ~(1 << 16); 2212c6fd2807SJeff Garzik 2213c6fd2807SJeff Garzik /* according to mvSata 3.6.1, some IIE values are fixed */ 2214c6fd2807SJeff Garzik if (IS_GEN_IIE(hpriv)) { 2215c6fd2807SJeff Garzik m2 &= ~0xC30FF01F; 2216c6fd2807SJeff Garzik m2 |= 0x0000900F; 2217c6fd2807SJeff Garzik } 2218c6fd2807SJeff Garzik 2219c6fd2807SJeff Garzik writel(m2, port_mmio + PHY_MODE2); 2220c6fd2807SJeff Garzik } 2221c6fd2807SJeff Garzik 2222f351b2d6SSaeed Bishara /* TODO: use the generic LED interface to configure the SATA Presence */ 2223f351b2d6SSaeed Bishara /* & Acitivy LEDs on the board */ 2224f351b2d6SSaeed Bishara static void mv_soc_enable_leds(struct mv_host_priv *hpriv, 2225f351b2d6SSaeed Bishara void __iomem *mmio) 2226f351b2d6SSaeed Bishara { 2227f351b2d6SSaeed Bishara return; 2228f351b2d6SSaeed Bishara } 2229f351b2d6SSaeed Bishara 2230f351b2d6SSaeed Bishara static void mv_soc_read_preamp(struct mv_host_priv *hpriv, int idx, 2231f351b2d6SSaeed Bishara void __iomem *mmio) 2232f351b2d6SSaeed Bishara { 2233f351b2d6SSaeed Bishara void __iomem *port_mmio; 2234f351b2d6SSaeed Bishara u32 tmp; 2235f351b2d6SSaeed Bishara 2236f351b2d6SSaeed Bishara port_mmio = mv_port_base(mmio, idx); 2237f351b2d6SSaeed Bishara tmp = readl(port_mmio + PHY_MODE2); 2238f351b2d6SSaeed Bishara 2239f351b2d6SSaeed Bishara hpriv->signal[idx].amps = tmp & 0x700; /* bits 10:8 */ 2240f351b2d6SSaeed Bishara hpriv->signal[idx].pre = tmp & 0xe0; /* bits 7:5 */ 2241f351b2d6SSaeed Bishara } 2242f351b2d6SSaeed Bishara 2243f351b2d6SSaeed Bishara #undef ZERO 2244f351b2d6SSaeed Bishara #define ZERO(reg) writel(0, port_mmio + (reg)) 2245f351b2d6SSaeed Bishara static void mv_soc_reset_hc_port(struct mv_host_priv *hpriv, 2246f351b2d6SSaeed Bishara void __iomem *mmio, unsigned int port) 2247f351b2d6SSaeed Bishara { 2248f351b2d6SSaeed Bishara void __iomem *port_mmio = mv_port_base(mmio, port); 2249f351b2d6SSaeed Bishara 2250b562468cSMark Lord /* 2251b562468cSMark Lord * The datasheet warns against setting ATA_RST when EDMA is active 2252b562468cSMark Lord * (but doesn't say what the problem might be). So we first try 2253b562468cSMark Lord * to disable the EDMA engine before doing the ATA_RST operation. 2254b562468cSMark Lord */ 2255e12bef50SMark Lord mv_reset_channel(hpriv, mmio, port); 2256f351b2d6SSaeed Bishara 2257f351b2d6SSaeed Bishara ZERO(0x028); /* command */ 2258f351b2d6SSaeed Bishara writel(0x101f, port_mmio + EDMA_CFG_OFS); 2259f351b2d6SSaeed Bishara ZERO(0x004); /* timer */ 2260f351b2d6SSaeed Bishara ZERO(0x008); /* irq err cause */ 2261f351b2d6SSaeed Bishara ZERO(0x00c); /* irq err mask */ 2262f351b2d6SSaeed Bishara ZERO(0x010); /* rq bah */ 2263f351b2d6SSaeed Bishara ZERO(0x014); /* rq inp */ 2264f351b2d6SSaeed Bishara ZERO(0x018); /* rq outp */ 2265f351b2d6SSaeed Bishara ZERO(0x01c); /* respq bah */ 2266f351b2d6SSaeed Bishara ZERO(0x024); /* respq outp */ 2267f351b2d6SSaeed Bishara ZERO(0x020); /* respq inp */ 2268f351b2d6SSaeed Bishara ZERO(0x02c); /* test control */ 2269f351b2d6SSaeed Bishara writel(0xbc, port_mmio + EDMA_IORDY_TMOUT); 2270f351b2d6SSaeed Bishara } 2271f351b2d6SSaeed Bishara 2272f351b2d6SSaeed Bishara #undef ZERO 2273f351b2d6SSaeed Bishara 2274f351b2d6SSaeed Bishara #define ZERO(reg) writel(0, hc_mmio + (reg)) 2275f351b2d6SSaeed Bishara static void mv_soc_reset_one_hc(struct mv_host_priv *hpriv, 2276f351b2d6SSaeed Bishara void __iomem *mmio) 2277f351b2d6SSaeed Bishara { 2278f351b2d6SSaeed Bishara void __iomem *hc_mmio = mv_hc_base(mmio, 0); 2279f351b2d6SSaeed Bishara 2280f351b2d6SSaeed Bishara ZERO(0x00c); 2281f351b2d6SSaeed Bishara ZERO(0x010); 2282f351b2d6SSaeed Bishara ZERO(0x014); 2283f351b2d6SSaeed Bishara 2284f351b2d6SSaeed Bishara } 2285f351b2d6SSaeed Bishara 2286f351b2d6SSaeed Bishara #undef ZERO 2287f351b2d6SSaeed Bishara 2288f351b2d6SSaeed Bishara static int mv_soc_reset_hc(struct mv_host_priv *hpriv, 2289f351b2d6SSaeed Bishara void __iomem *mmio, unsigned int n_hc) 2290f351b2d6SSaeed Bishara { 2291f351b2d6SSaeed Bishara unsigned int port; 2292f351b2d6SSaeed Bishara 2293f351b2d6SSaeed Bishara for (port = 0; port < hpriv->n_ports; port++) 2294f351b2d6SSaeed Bishara mv_soc_reset_hc_port(hpriv, mmio, port); 2295f351b2d6SSaeed Bishara 2296f351b2d6SSaeed Bishara mv_soc_reset_one_hc(hpriv, mmio); 2297f351b2d6SSaeed Bishara 2298f351b2d6SSaeed Bishara return 0; 2299f351b2d6SSaeed Bishara } 2300f351b2d6SSaeed Bishara 2301f351b2d6SSaeed Bishara static void mv_soc_reset_flash(struct mv_host_priv *hpriv, 2302f351b2d6SSaeed Bishara void __iomem *mmio) 2303f351b2d6SSaeed Bishara { 2304f351b2d6SSaeed Bishara return; 2305f351b2d6SSaeed Bishara } 2306f351b2d6SSaeed Bishara 2307f351b2d6SSaeed Bishara static void mv_soc_reset_bus(struct ata_host *host, void __iomem *mmio) 2308f351b2d6SSaeed Bishara { 2309f351b2d6SSaeed Bishara return; 2310f351b2d6SSaeed Bishara } 2311f351b2d6SSaeed Bishara 2312b67a1064SMark Lord static void mv_setup_ifctl(void __iomem *port_mmio, int want_gen2i) 2313b67a1064SMark Lord { 2314b67a1064SMark Lord u32 ifctl = readl(port_mmio + SATA_INTERFACE_CFG); 2315b67a1064SMark Lord 2316b67a1064SMark Lord ifctl = (ifctl & 0xf7f) | 0x9b1000; /* from chip spec */ 2317b67a1064SMark Lord if (want_gen2i) 2318b67a1064SMark Lord ifctl |= (1 << 7); /* enable gen2i speed */ 2319b67a1064SMark Lord writelfl(ifctl, port_mmio + SATA_INTERFACE_CFG); 2320b67a1064SMark Lord } 2321b67a1064SMark Lord 2322b562468cSMark Lord /* 2323b562468cSMark Lord * Caller must ensure that EDMA is not active, 2324b562468cSMark Lord * by first doing mv_stop_edma() where needed. 2325b562468cSMark Lord */ 2326e12bef50SMark Lord static void mv_reset_channel(struct mv_host_priv *hpriv, void __iomem *mmio, 2327c6fd2807SJeff Garzik unsigned int port_no) 2328c6fd2807SJeff Garzik { 2329c6fd2807SJeff Garzik void __iomem *port_mmio = mv_port_base(mmio, port_no); 2330c6fd2807SJeff Garzik 23310d8be5cbSMark Lord mv_stop_edma_engine(port_mmio); 2332c6fd2807SJeff Garzik writelfl(ATA_RST, port_mmio + EDMA_CMD_OFS); 2333c6fd2807SJeff Garzik 2334b67a1064SMark Lord if (!IS_GEN_I(hpriv)) { 2335b67a1064SMark Lord /* Enable 3.0gb/s link speed */ 2336b67a1064SMark Lord mv_setup_ifctl(port_mmio, 1); 2337c6fd2807SJeff Garzik } 2338b67a1064SMark Lord /* 2339b67a1064SMark Lord * Strobing ATA_RST here causes a hard reset of the SATA transport, 2340b67a1064SMark Lord * link, and physical layers. It resets all SATA interface registers 2341b67a1064SMark Lord * (except for SATA_INTERFACE_CFG), and issues a COMRESET to the dev. 2342c6fd2807SJeff Garzik */ 2343b67a1064SMark Lord writelfl(ATA_RST, port_mmio + EDMA_CMD_OFS); 2344b67a1064SMark Lord udelay(25); /* allow reset propagation */ 2345c6fd2807SJeff Garzik writelfl(0, port_mmio + EDMA_CMD_OFS); 2346c6fd2807SJeff Garzik 2347c6fd2807SJeff Garzik hpriv->ops->phy_errata(hpriv, mmio, port_no); 2348c6fd2807SJeff Garzik 2349ee9ccdf7SJeff Garzik if (IS_GEN_I(hpriv)) 2350c6fd2807SJeff Garzik mdelay(1); 2351c6fd2807SJeff Garzik } 2352c6fd2807SJeff Garzik 2353e49856d8SMark Lord static void mv_pmp_select(struct ata_port *ap, int pmp) 2354e49856d8SMark Lord { 2355e49856d8SMark Lord if (sata_pmp_supported(ap)) { 2356e49856d8SMark Lord void __iomem *port_mmio = mv_ap_base(ap); 2357e49856d8SMark Lord u32 reg = readl(port_mmio + SATA_IFCTL_OFS); 2358e49856d8SMark Lord int old = reg & 0xf; 2359e49856d8SMark Lord 2360e49856d8SMark Lord if (old != pmp) { 2361e49856d8SMark Lord reg = (reg & ~0xf) | pmp; 2362e49856d8SMark Lord writelfl(reg, port_mmio + SATA_IFCTL_OFS); 2363e49856d8SMark Lord } 2364e49856d8SMark Lord } 2365e49856d8SMark Lord } 2366e49856d8SMark Lord 2367e49856d8SMark Lord static int mv_pmp_hardreset(struct ata_link *link, unsigned int *class, 2368bdd4dddeSJeff Garzik unsigned long deadline) 2369c6fd2807SJeff Garzik { 2370e49856d8SMark Lord mv_pmp_select(link->ap, sata_srst_pmp(link)); 2371e49856d8SMark Lord return sata_std_hardreset(link, class, deadline); 2372e49856d8SMark Lord } 2373c6fd2807SJeff Garzik 2374e49856d8SMark Lord static int mv_softreset(struct ata_link *link, unsigned int *class, 2375e49856d8SMark Lord unsigned long deadline) 2376da3dbb17STejun Heo { 2377e49856d8SMark Lord mv_pmp_select(link->ap, sata_srst_pmp(link)); 2378e49856d8SMark Lord return ata_sff_softreset(link, class, deadline); 2379bdd4dddeSJeff Garzik } 2380bdd4dddeSJeff Garzik 2381cc0680a5STejun Heo static int mv_hardreset(struct ata_link *link, unsigned int *class, 2382bdd4dddeSJeff Garzik unsigned long deadline) 2383bdd4dddeSJeff Garzik { 2384cc0680a5STejun Heo struct ata_port *ap = link->ap; 2385bdd4dddeSJeff Garzik struct mv_host_priv *hpriv = ap->host->private_data; 2386b562468cSMark Lord struct mv_port_priv *pp = ap->private_data; 2387f351b2d6SSaeed Bishara void __iomem *mmio = hpriv->base; 23880d8be5cbSMark Lord int rc, attempts = 0, extra = 0; 23890d8be5cbSMark Lord u32 sstatus; 23900d8be5cbSMark Lord bool online; 2391bdd4dddeSJeff Garzik 2392e12bef50SMark Lord mv_reset_channel(hpriv, mmio, ap->port_no); 2393b562468cSMark Lord pp->pp_flags &= ~MV_PP_FLAG_EDMA_EN; 2394bdd4dddeSJeff Garzik 23950d8be5cbSMark Lord /* Workaround for errata FEr SATA#10 (part 2) */ 23960d8be5cbSMark Lord do { 239717c5aab5SMark Lord const unsigned long *timing = 239817c5aab5SMark Lord sata_ehc_deb_timing(&link->eh_context); 2399bdd4dddeSJeff Garzik 240017c5aab5SMark Lord rc = sata_link_hardreset(link, timing, deadline + extra, 240117c5aab5SMark Lord &online, NULL); 240217c5aab5SMark Lord if (rc) 24030d8be5cbSMark Lord return rc; 24040d8be5cbSMark Lord sata_scr_read(link, SCR_STATUS, &sstatus); 24050d8be5cbSMark Lord if (!IS_GEN_I(hpriv) && ++attempts >= 5 && sstatus == 0x121) { 24060d8be5cbSMark Lord /* Force 1.5gb/s link speed and try again */ 24070d8be5cbSMark Lord mv_setup_ifctl(mv_ap_base(ap), 0); 24080d8be5cbSMark Lord if (time_after(jiffies + HZ, deadline)) 24090d8be5cbSMark Lord extra = HZ; /* only extend it once, max */ 2410bdd4dddeSJeff Garzik } 24110d8be5cbSMark Lord } while (sstatus != 0x0 && sstatus != 0x113 && sstatus != 0x123); 2412bdd4dddeSJeff Garzik 241317c5aab5SMark Lord return rc; 2414bdd4dddeSJeff Garzik } 2415bdd4dddeSJeff Garzik 2416bdd4dddeSJeff Garzik static void mv_eh_freeze(struct ata_port *ap) 2417c6fd2807SJeff Garzik { 2418f351b2d6SSaeed Bishara struct mv_host_priv *hpriv = ap->host->private_data; 24191cfd19aeSMark Lord unsigned int shift, hardport, port = ap->port_no; 2420352fab70SMark Lord u32 main_mask; 2421c6fd2807SJeff Garzik 2422bdd4dddeSJeff Garzik /* FIXME: handle coalescing completion events properly */ 2423c6fd2807SJeff Garzik 24241cfd19aeSMark Lord mv_stop_edma(ap); 24251cfd19aeSMark Lord MV_PORT_TO_SHIFT_AND_HARDPORT(port, shift, hardport); 2426c6fd2807SJeff Garzik 2427bdd4dddeSJeff Garzik /* disable assertion of portN err, done events */ 2428352fab70SMark Lord main_mask = readl(hpriv->main_mask_reg_addr); 2429352fab70SMark Lord main_mask &= ~((DONE_IRQ | ERR_IRQ) << shift); 2430352fab70SMark Lord writelfl(main_mask, hpriv->main_mask_reg_addr); 2431c6fd2807SJeff Garzik } 2432bdd4dddeSJeff Garzik 2433bdd4dddeSJeff Garzik static void mv_eh_thaw(struct ata_port *ap) 2434bdd4dddeSJeff Garzik { 2435f351b2d6SSaeed Bishara struct mv_host_priv *hpriv = ap->host->private_data; 24361cfd19aeSMark Lord unsigned int shift, hardport, port = ap->port_no; 24371cfd19aeSMark Lord void __iomem *hc_mmio = mv_hc_base_from_port(hpriv->base, port); 2438bdd4dddeSJeff Garzik void __iomem *port_mmio = mv_ap_base(ap); 2439352fab70SMark Lord u32 main_mask, hc_irq_cause; 2440bdd4dddeSJeff Garzik 2441bdd4dddeSJeff Garzik /* FIXME: handle coalescing completion events properly */ 2442bdd4dddeSJeff Garzik 24431cfd19aeSMark Lord MV_PORT_TO_SHIFT_AND_HARDPORT(port, shift, hardport); 2444bdd4dddeSJeff Garzik 2445bdd4dddeSJeff Garzik /* clear EDMA errors on this port */ 2446bdd4dddeSJeff Garzik writel(0, port_mmio + EDMA_ERR_IRQ_CAUSE_OFS); 2447bdd4dddeSJeff Garzik 2448bdd4dddeSJeff Garzik /* clear pending irq events */ 2449bdd4dddeSJeff Garzik hc_irq_cause = readl(hc_mmio + HC_IRQ_CAUSE_OFS); 24501cfd19aeSMark Lord hc_irq_cause &= ~((DEV_IRQ | DMA_IRQ) << hardport); 24511cfd19aeSMark Lord writelfl(hc_irq_cause, hc_mmio + HC_IRQ_CAUSE_OFS); 2452bdd4dddeSJeff Garzik 2453bdd4dddeSJeff Garzik /* enable assertion of portN err, done events */ 2454352fab70SMark Lord main_mask = readl(hpriv->main_mask_reg_addr); 2455352fab70SMark Lord main_mask |= ((DONE_IRQ | ERR_IRQ) << shift); 2456352fab70SMark Lord writelfl(main_mask, hpriv->main_mask_reg_addr); 2457c6fd2807SJeff Garzik } 2458c6fd2807SJeff Garzik 2459c6fd2807SJeff Garzik /** 2460c6fd2807SJeff Garzik * mv_port_init - Perform some early initialization on a single port. 2461c6fd2807SJeff Garzik * @port: libata data structure storing shadow register addresses 2462c6fd2807SJeff Garzik * @port_mmio: base address of the port 2463c6fd2807SJeff Garzik * 2464c6fd2807SJeff Garzik * Initialize shadow register mmio addresses, clear outstanding 2465c6fd2807SJeff Garzik * interrupts on the port, and unmask interrupts for the future 2466c6fd2807SJeff Garzik * start of the port. 2467c6fd2807SJeff Garzik * 2468c6fd2807SJeff Garzik * LOCKING: 2469c6fd2807SJeff Garzik * Inherited from caller. 2470c6fd2807SJeff Garzik */ 2471c6fd2807SJeff Garzik static void mv_port_init(struct ata_ioports *port, void __iomem *port_mmio) 2472c6fd2807SJeff Garzik { 24730d5ff566STejun Heo void __iomem *shd_base = port_mmio + SHD_BLK_OFS; 2474c6fd2807SJeff Garzik unsigned serr_ofs; 2475c6fd2807SJeff Garzik 2476c6fd2807SJeff Garzik /* PIO related setup 2477c6fd2807SJeff Garzik */ 2478c6fd2807SJeff Garzik port->data_addr = shd_base + (sizeof(u32) * ATA_REG_DATA); 2479c6fd2807SJeff Garzik port->error_addr = 2480c6fd2807SJeff Garzik port->feature_addr = shd_base + (sizeof(u32) * ATA_REG_ERR); 2481c6fd2807SJeff Garzik port->nsect_addr = shd_base + (sizeof(u32) * ATA_REG_NSECT); 2482c6fd2807SJeff Garzik port->lbal_addr = shd_base + (sizeof(u32) * ATA_REG_LBAL); 2483c6fd2807SJeff Garzik port->lbam_addr = shd_base + (sizeof(u32) * ATA_REG_LBAM); 2484c6fd2807SJeff Garzik port->lbah_addr = shd_base + (sizeof(u32) * ATA_REG_LBAH); 2485c6fd2807SJeff Garzik port->device_addr = shd_base + (sizeof(u32) * ATA_REG_DEVICE); 2486c6fd2807SJeff Garzik port->status_addr = 2487c6fd2807SJeff Garzik port->command_addr = shd_base + (sizeof(u32) * ATA_REG_STATUS); 2488c6fd2807SJeff Garzik /* special case: control/altstatus doesn't have ATA_REG_ address */ 2489c6fd2807SJeff Garzik port->altstatus_addr = port->ctl_addr = shd_base + SHD_CTL_AST_OFS; 2490c6fd2807SJeff Garzik 2491c6fd2807SJeff Garzik /* unused: */ 24928d9db2d2SRandy Dunlap port->cmd_addr = port->bmdma_addr = port->scr_addr = NULL; 2493c6fd2807SJeff Garzik 2494c6fd2807SJeff Garzik /* Clear any currently outstanding port interrupt conditions */ 2495c6fd2807SJeff Garzik serr_ofs = mv_scr_offset(SCR_ERROR); 2496c6fd2807SJeff Garzik writelfl(readl(port_mmio + serr_ofs), port_mmio + serr_ofs); 2497c6fd2807SJeff Garzik writelfl(0, port_mmio + EDMA_ERR_IRQ_CAUSE_OFS); 2498c6fd2807SJeff Garzik 2499646a4da5SMark Lord /* unmask all non-transient EDMA error interrupts */ 2500646a4da5SMark Lord writelfl(~EDMA_ERR_IRQ_TRANSIENT, port_mmio + EDMA_ERR_IRQ_MASK_OFS); 2501c6fd2807SJeff Garzik 2502c6fd2807SJeff Garzik VPRINTK("EDMA cfg=0x%08x EDMA IRQ err cause/mask=0x%08x/0x%08x\n", 2503c6fd2807SJeff Garzik readl(port_mmio + EDMA_CFG_OFS), 2504c6fd2807SJeff Garzik readl(port_mmio + EDMA_ERR_IRQ_CAUSE_OFS), 2505c6fd2807SJeff Garzik readl(port_mmio + EDMA_ERR_IRQ_MASK_OFS)); 2506c6fd2807SJeff Garzik } 2507c6fd2807SJeff Garzik 25084447d351STejun Heo static int mv_chip_id(struct ata_host *host, unsigned int board_idx) 2509c6fd2807SJeff Garzik { 25104447d351STejun Heo struct pci_dev *pdev = to_pci_dev(host->dev); 25114447d351STejun Heo struct mv_host_priv *hpriv = host->private_data; 2512c6fd2807SJeff Garzik u32 hp_flags = hpriv->hp_flags; 2513c6fd2807SJeff Garzik 2514c6fd2807SJeff Garzik switch (board_idx) { 2515c6fd2807SJeff Garzik case chip_5080: 2516c6fd2807SJeff Garzik hpriv->ops = &mv5xxx_ops; 2517ee9ccdf7SJeff Garzik hp_flags |= MV_HP_GEN_I; 2518c6fd2807SJeff Garzik 251944c10138SAuke Kok switch (pdev->revision) { 2520c6fd2807SJeff Garzik case 0x1: 2521c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_50XXB0; 2522c6fd2807SJeff Garzik break; 2523c6fd2807SJeff Garzik case 0x3: 2524c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_50XXB2; 2525c6fd2807SJeff Garzik break; 2526c6fd2807SJeff Garzik default: 2527c6fd2807SJeff Garzik dev_printk(KERN_WARNING, &pdev->dev, 2528c6fd2807SJeff Garzik "Applying 50XXB2 workarounds to unknown rev\n"); 2529c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_50XXB2; 2530c6fd2807SJeff Garzik break; 2531c6fd2807SJeff Garzik } 2532c6fd2807SJeff Garzik break; 2533c6fd2807SJeff Garzik 2534c6fd2807SJeff Garzik case chip_504x: 2535c6fd2807SJeff Garzik case chip_508x: 2536c6fd2807SJeff Garzik hpriv->ops = &mv5xxx_ops; 2537ee9ccdf7SJeff Garzik hp_flags |= MV_HP_GEN_I; 2538c6fd2807SJeff Garzik 253944c10138SAuke Kok switch (pdev->revision) { 2540c6fd2807SJeff Garzik case 0x0: 2541c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_50XXB0; 2542c6fd2807SJeff Garzik break; 2543c6fd2807SJeff Garzik case 0x3: 2544c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_50XXB2; 2545c6fd2807SJeff Garzik break; 2546c6fd2807SJeff Garzik default: 2547c6fd2807SJeff Garzik dev_printk(KERN_WARNING, &pdev->dev, 2548c6fd2807SJeff Garzik "Applying B2 workarounds to unknown rev\n"); 2549c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_50XXB2; 2550c6fd2807SJeff Garzik break; 2551c6fd2807SJeff Garzik } 2552c6fd2807SJeff Garzik break; 2553c6fd2807SJeff Garzik 2554c6fd2807SJeff Garzik case chip_604x: 2555c6fd2807SJeff Garzik case chip_608x: 2556c6fd2807SJeff Garzik hpriv->ops = &mv6xxx_ops; 2557ee9ccdf7SJeff Garzik hp_flags |= MV_HP_GEN_II; 2558c6fd2807SJeff Garzik 255944c10138SAuke Kok switch (pdev->revision) { 2560c6fd2807SJeff Garzik case 0x7: 2561c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_60X1B2; 2562c6fd2807SJeff Garzik break; 2563c6fd2807SJeff Garzik case 0x9: 2564c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_60X1C0; 2565c6fd2807SJeff Garzik break; 2566c6fd2807SJeff Garzik default: 2567c6fd2807SJeff Garzik dev_printk(KERN_WARNING, &pdev->dev, 2568c6fd2807SJeff Garzik "Applying B2 workarounds to unknown rev\n"); 2569c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_60X1B2; 2570c6fd2807SJeff Garzik break; 2571c6fd2807SJeff Garzik } 2572c6fd2807SJeff Garzik break; 2573c6fd2807SJeff Garzik 2574c6fd2807SJeff Garzik case chip_7042: 257502a121daSMark Lord hp_flags |= MV_HP_PCIE; 2576306b30f7SMark Lord if (pdev->vendor == PCI_VENDOR_ID_TTI && 2577306b30f7SMark Lord (pdev->device == 0x2300 || pdev->device == 0x2310)) 2578306b30f7SMark Lord { 25794e520033SMark Lord /* 25804e520033SMark Lord * Highpoint RocketRAID PCIe 23xx series cards: 25814e520033SMark Lord * 25824e520033SMark Lord * Unconfigured drives are treated as "Legacy" 25834e520033SMark Lord * by the BIOS, and it overwrites sector 8 with 25844e520033SMark Lord * a "Lgcy" metadata block prior to Linux boot. 25854e520033SMark Lord * 25864e520033SMark Lord * Configured drives (RAID or JBOD) leave sector 8 25874e520033SMark Lord * alone, but instead overwrite a high numbered 25884e520033SMark Lord * sector for the RAID metadata. This sector can 25894e520033SMark Lord * be determined exactly, by truncating the physical 25904e520033SMark Lord * drive capacity to a nice even GB value. 25914e520033SMark Lord * 25924e520033SMark Lord * RAID metadata is at: (dev->n_sectors & ~0xfffff) 25934e520033SMark Lord * 25944e520033SMark Lord * Warn the user, lest they think we're just buggy. 25954e520033SMark Lord */ 25964e520033SMark Lord printk(KERN_WARNING DRV_NAME ": Highpoint RocketRAID" 25974e520033SMark Lord " BIOS CORRUPTS DATA on all attached drives," 25984e520033SMark Lord " regardless of if/how they are configured." 25994e520033SMark Lord " BEWARE!\n"); 26004e520033SMark Lord printk(KERN_WARNING DRV_NAME ": For data safety, do not" 26014e520033SMark Lord " use sectors 8-9 on \"Legacy\" drives," 26024e520033SMark Lord " and avoid the final two gigabytes on" 26034e520033SMark Lord " all RocketRAID BIOS initialized drives.\n"); 2604306b30f7SMark Lord } 2605c6fd2807SJeff Garzik case chip_6042: 2606c6fd2807SJeff Garzik hpriv->ops = &mv6xxx_ops; 2607c6fd2807SJeff Garzik hp_flags |= MV_HP_GEN_IIE; 2608c6fd2807SJeff Garzik 260944c10138SAuke Kok switch (pdev->revision) { 2610c6fd2807SJeff Garzik case 0x0: 2611c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_XX42A0; 2612c6fd2807SJeff Garzik break; 2613c6fd2807SJeff Garzik case 0x1: 2614c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_60X1C0; 2615c6fd2807SJeff Garzik break; 2616c6fd2807SJeff Garzik default: 2617c6fd2807SJeff Garzik dev_printk(KERN_WARNING, &pdev->dev, 2618c6fd2807SJeff Garzik "Applying 60X1C0 workarounds to unknown rev\n"); 2619c6fd2807SJeff Garzik hp_flags |= MV_HP_ERRATA_60X1C0; 2620c6fd2807SJeff Garzik break; 2621c6fd2807SJeff Garzik } 2622c6fd2807SJeff Garzik break; 2623f351b2d6SSaeed Bishara case chip_soc: 2624f351b2d6SSaeed Bishara hpriv->ops = &mv_soc_ops; 2625f351b2d6SSaeed Bishara hp_flags |= MV_HP_ERRATA_60X1C0; 2626f351b2d6SSaeed Bishara break; 2627c6fd2807SJeff Garzik 2628c6fd2807SJeff Garzik default: 2629f351b2d6SSaeed Bishara dev_printk(KERN_ERR, host->dev, 26305796d1c4SJeff Garzik "BUG: invalid board index %u\n", board_idx); 2631c6fd2807SJeff Garzik return 1; 2632c6fd2807SJeff Garzik } 2633c6fd2807SJeff Garzik 2634c6fd2807SJeff Garzik hpriv->hp_flags = hp_flags; 263502a121daSMark Lord if (hp_flags & MV_HP_PCIE) { 263602a121daSMark Lord hpriv->irq_cause_ofs = PCIE_IRQ_CAUSE_OFS; 263702a121daSMark Lord hpriv->irq_mask_ofs = PCIE_IRQ_MASK_OFS; 263802a121daSMark Lord hpriv->unmask_all_irqs = PCIE_UNMASK_ALL_IRQS; 263902a121daSMark Lord } else { 264002a121daSMark Lord hpriv->irq_cause_ofs = PCI_IRQ_CAUSE_OFS; 264102a121daSMark Lord hpriv->irq_mask_ofs = PCI_IRQ_MASK_OFS; 264202a121daSMark Lord hpriv->unmask_all_irqs = PCI_UNMASK_ALL_IRQS; 264302a121daSMark Lord } 2644c6fd2807SJeff Garzik 2645c6fd2807SJeff Garzik return 0; 2646c6fd2807SJeff Garzik } 2647c6fd2807SJeff Garzik 2648c6fd2807SJeff Garzik /** 2649c6fd2807SJeff Garzik * mv_init_host - Perform some early initialization of the host. 26504447d351STejun Heo * @host: ATA host to initialize 26514447d351STejun Heo * @board_idx: controller index 2652c6fd2807SJeff Garzik * 2653c6fd2807SJeff Garzik * If possible, do an early global reset of the host. Then do 2654c6fd2807SJeff Garzik * our port init and clear/unmask all/relevant host interrupts. 2655c6fd2807SJeff Garzik * 2656c6fd2807SJeff Garzik * LOCKING: 2657c6fd2807SJeff Garzik * Inherited from caller. 2658c6fd2807SJeff Garzik */ 26594447d351STejun Heo static int mv_init_host(struct ata_host *host, unsigned int board_idx) 2660c6fd2807SJeff Garzik { 2661c6fd2807SJeff Garzik int rc = 0, n_hc, port, hc; 26624447d351STejun Heo struct mv_host_priv *hpriv = host->private_data; 2663f351b2d6SSaeed Bishara void __iomem *mmio = hpriv->base; 2664c6fd2807SJeff Garzik 26654447d351STejun Heo rc = mv_chip_id(host, board_idx); 2666c6fd2807SJeff Garzik if (rc) 2667c6fd2807SJeff Garzik goto done; 2668c6fd2807SJeff Garzik 2669f351b2d6SSaeed Bishara if (HAS_PCI(host)) { 2670352fab70SMark Lord hpriv->main_cause_reg_addr = mmio + HC_MAIN_IRQ_CAUSE_OFS; 2671352fab70SMark Lord hpriv->main_mask_reg_addr = mmio + HC_MAIN_IRQ_MASK_OFS; 2672f351b2d6SSaeed Bishara } else { 2673352fab70SMark Lord hpriv->main_cause_reg_addr = mmio + HC_SOC_MAIN_IRQ_CAUSE_OFS; 2674352fab70SMark Lord hpriv->main_mask_reg_addr = mmio + HC_SOC_MAIN_IRQ_MASK_OFS; 2675f351b2d6SSaeed Bishara } 2676352fab70SMark Lord 2677352fab70SMark Lord /* global interrupt mask: 0 == mask everything */ 2678f351b2d6SSaeed Bishara writel(0, hpriv->main_mask_reg_addr); 2679f351b2d6SSaeed Bishara 26804447d351STejun Heo n_hc = mv_get_hc_count(host->ports[0]->flags); 2681c6fd2807SJeff Garzik 26824447d351STejun Heo for (port = 0; port < host->n_ports; port++) 2683c6fd2807SJeff Garzik hpriv->ops->read_preamp(hpriv, port, mmio); 2684c6fd2807SJeff Garzik 2685c6fd2807SJeff Garzik rc = hpriv->ops->reset_hc(hpriv, mmio, n_hc); 2686c6fd2807SJeff Garzik if (rc) 2687c6fd2807SJeff Garzik goto done; 2688c6fd2807SJeff Garzik 2689c6fd2807SJeff Garzik hpriv->ops->reset_flash(hpriv, mmio); 26907bb3c529SSaeed Bishara hpriv->ops->reset_bus(host, mmio); 2691c6fd2807SJeff Garzik hpriv->ops->enable_leds(hpriv, mmio); 2692c6fd2807SJeff Garzik 26934447d351STejun Heo for (port = 0; port < host->n_ports; port++) { 2694cbcdd875STejun Heo struct ata_port *ap = host->ports[port]; 2695c6fd2807SJeff Garzik void __iomem *port_mmio = mv_port_base(mmio, port); 2696cbcdd875STejun Heo 2697cbcdd875STejun Heo mv_port_init(&ap->ioaddr, port_mmio); 2698cbcdd875STejun Heo 26997bb3c529SSaeed Bishara #ifdef CONFIG_PCI 2700f351b2d6SSaeed Bishara if (HAS_PCI(host)) { 2701f351b2d6SSaeed Bishara unsigned int offset = port_mmio - mmio; 2702cbcdd875STejun Heo ata_port_pbar_desc(ap, MV_PRIMARY_BAR, -1, "mmio"); 2703cbcdd875STejun Heo ata_port_pbar_desc(ap, MV_PRIMARY_BAR, offset, "port"); 2704f351b2d6SSaeed Bishara } 27057bb3c529SSaeed Bishara #endif 2706c6fd2807SJeff Garzik } 2707c6fd2807SJeff Garzik 2708c6fd2807SJeff Garzik for (hc = 0; hc < n_hc; hc++) { 2709c6fd2807SJeff Garzik void __iomem *hc_mmio = mv_hc_base(mmio, hc); 2710c6fd2807SJeff Garzik 2711c6fd2807SJeff Garzik VPRINTK("HC%i: HC config=0x%08x HC IRQ cause " 2712c6fd2807SJeff Garzik "(before clear)=0x%08x\n", hc, 2713c6fd2807SJeff Garzik readl(hc_mmio + HC_CFG_OFS), 2714c6fd2807SJeff Garzik readl(hc_mmio + HC_IRQ_CAUSE_OFS)); 2715c6fd2807SJeff Garzik 2716c6fd2807SJeff Garzik /* Clear any currently outstanding hc interrupt conditions */ 2717c6fd2807SJeff Garzik writelfl(0, hc_mmio + HC_IRQ_CAUSE_OFS); 2718c6fd2807SJeff Garzik } 2719c6fd2807SJeff Garzik 2720f351b2d6SSaeed Bishara if (HAS_PCI(host)) { 2721c6fd2807SJeff Garzik /* Clear any currently outstanding host interrupt conditions */ 272202a121daSMark Lord writelfl(0, mmio + hpriv->irq_cause_ofs); 2723c6fd2807SJeff Garzik 2724c6fd2807SJeff Garzik /* and unmask interrupt generation for host regs */ 272502a121daSMark Lord writelfl(hpriv->unmask_all_irqs, mmio + hpriv->irq_mask_ofs); 2726ee9ccdf7SJeff Garzik if (IS_GEN_I(hpriv)) 2727f351b2d6SSaeed Bishara writelfl(~HC_MAIN_MASKED_IRQS_5, 2728f351b2d6SSaeed Bishara hpriv->main_mask_reg_addr); 2729fb621e2fSJeff Garzik else 2730f351b2d6SSaeed Bishara writelfl(~HC_MAIN_MASKED_IRQS, 2731f351b2d6SSaeed Bishara hpriv->main_mask_reg_addr); 2732c6fd2807SJeff Garzik 2733c6fd2807SJeff Garzik VPRINTK("HC MAIN IRQ cause/mask=0x%08x/0x%08x " 2734c6fd2807SJeff Garzik "PCI int cause/mask=0x%08x/0x%08x\n", 2735f351b2d6SSaeed Bishara readl(hpriv->main_cause_reg_addr), 2736f351b2d6SSaeed Bishara readl(hpriv->main_mask_reg_addr), 273702a121daSMark Lord readl(mmio + hpriv->irq_cause_ofs), 273802a121daSMark Lord readl(mmio + hpriv->irq_mask_ofs)); 2739f351b2d6SSaeed Bishara } else { 2740f351b2d6SSaeed Bishara writelfl(~HC_MAIN_MASKED_IRQS_SOC, 2741f351b2d6SSaeed Bishara hpriv->main_mask_reg_addr); 2742f351b2d6SSaeed Bishara VPRINTK("HC MAIN IRQ cause/mask=0x%08x/0x%08x\n", 2743f351b2d6SSaeed Bishara readl(hpriv->main_cause_reg_addr), 2744f351b2d6SSaeed Bishara readl(hpriv->main_mask_reg_addr)); 2745f351b2d6SSaeed Bishara } 2746c6fd2807SJeff Garzik done: 2747c6fd2807SJeff Garzik return rc; 2748c6fd2807SJeff Garzik } 2749c6fd2807SJeff Garzik 2750fbf14e2fSByron Bradley static int mv_create_dma_pools(struct mv_host_priv *hpriv, struct device *dev) 2751fbf14e2fSByron Bradley { 2752fbf14e2fSByron Bradley hpriv->crqb_pool = dmam_pool_create("crqb_q", dev, MV_CRQB_Q_SZ, 2753fbf14e2fSByron Bradley MV_CRQB_Q_SZ, 0); 2754fbf14e2fSByron Bradley if (!hpriv->crqb_pool) 2755fbf14e2fSByron Bradley return -ENOMEM; 2756fbf14e2fSByron Bradley 2757fbf14e2fSByron Bradley hpriv->crpb_pool = dmam_pool_create("crpb_q", dev, MV_CRPB_Q_SZ, 2758fbf14e2fSByron Bradley MV_CRPB_Q_SZ, 0); 2759fbf14e2fSByron Bradley if (!hpriv->crpb_pool) 2760fbf14e2fSByron Bradley return -ENOMEM; 2761fbf14e2fSByron Bradley 2762fbf14e2fSByron Bradley hpriv->sg_tbl_pool = dmam_pool_create("sg_tbl", dev, MV_SG_TBL_SZ, 2763fbf14e2fSByron Bradley MV_SG_TBL_SZ, 0); 2764fbf14e2fSByron Bradley if (!hpriv->sg_tbl_pool) 2765fbf14e2fSByron Bradley return -ENOMEM; 2766fbf14e2fSByron Bradley 2767fbf14e2fSByron Bradley return 0; 2768fbf14e2fSByron Bradley } 2769fbf14e2fSByron Bradley 277015a32632SLennert Buytenhek static void mv_conf_mbus_windows(struct mv_host_priv *hpriv, 277115a32632SLennert Buytenhek struct mbus_dram_target_info *dram) 277215a32632SLennert Buytenhek { 277315a32632SLennert Buytenhek int i; 277415a32632SLennert Buytenhek 277515a32632SLennert Buytenhek for (i = 0; i < 4; i++) { 277615a32632SLennert Buytenhek writel(0, hpriv->base + WINDOW_CTRL(i)); 277715a32632SLennert Buytenhek writel(0, hpriv->base + WINDOW_BASE(i)); 277815a32632SLennert Buytenhek } 277915a32632SLennert Buytenhek 278015a32632SLennert Buytenhek for (i = 0; i < dram->num_cs; i++) { 278115a32632SLennert Buytenhek struct mbus_dram_window *cs = dram->cs + i; 278215a32632SLennert Buytenhek 278315a32632SLennert Buytenhek writel(((cs->size - 1) & 0xffff0000) | 278415a32632SLennert Buytenhek (cs->mbus_attr << 8) | 278515a32632SLennert Buytenhek (dram->mbus_dram_target_id << 4) | 1, 278615a32632SLennert Buytenhek hpriv->base + WINDOW_CTRL(i)); 278715a32632SLennert Buytenhek writel(cs->base, hpriv->base + WINDOW_BASE(i)); 278815a32632SLennert Buytenhek } 278915a32632SLennert Buytenhek } 279015a32632SLennert Buytenhek 2791f351b2d6SSaeed Bishara /** 2792f351b2d6SSaeed Bishara * mv_platform_probe - handle a positive probe of an soc Marvell 2793f351b2d6SSaeed Bishara * host 2794f351b2d6SSaeed Bishara * @pdev: platform device found 2795f351b2d6SSaeed Bishara * 2796f351b2d6SSaeed Bishara * LOCKING: 2797f351b2d6SSaeed Bishara * Inherited from caller. 2798f351b2d6SSaeed Bishara */ 2799f351b2d6SSaeed Bishara static int mv_platform_probe(struct platform_device *pdev) 2800f351b2d6SSaeed Bishara { 2801f351b2d6SSaeed Bishara static int printed_version; 2802f351b2d6SSaeed Bishara const struct mv_sata_platform_data *mv_platform_data; 2803f351b2d6SSaeed Bishara const struct ata_port_info *ppi[] = 2804f351b2d6SSaeed Bishara { &mv_port_info[chip_soc], NULL }; 2805f351b2d6SSaeed Bishara struct ata_host *host; 2806f351b2d6SSaeed Bishara struct mv_host_priv *hpriv; 2807f351b2d6SSaeed Bishara struct resource *res; 2808f351b2d6SSaeed Bishara int n_ports, rc; 2809f351b2d6SSaeed Bishara 2810f351b2d6SSaeed Bishara if (!printed_version++) 2811f351b2d6SSaeed Bishara dev_printk(KERN_INFO, &pdev->dev, "version " DRV_VERSION "\n"); 2812f351b2d6SSaeed Bishara 2813f351b2d6SSaeed Bishara /* 2814f351b2d6SSaeed Bishara * Simple resource validation .. 2815f351b2d6SSaeed Bishara */ 2816f351b2d6SSaeed Bishara if (unlikely(pdev->num_resources != 2)) { 2817f351b2d6SSaeed Bishara dev_err(&pdev->dev, "invalid number of resources\n"); 2818f351b2d6SSaeed Bishara return -EINVAL; 2819f351b2d6SSaeed Bishara } 2820f351b2d6SSaeed Bishara 2821f351b2d6SSaeed Bishara /* 2822f351b2d6SSaeed Bishara * Get the register base first 2823f351b2d6SSaeed Bishara */ 2824f351b2d6SSaeed Bishara res = platform_get_resource(pdev, IORESOURCE_MEM, 0); 2825f351b2d6SSaeed Bishara if (res == NULL) 2826f351b2d6SSaeed Bishara return -EINVAL; 2827f351b2d6SSaeed Bishara 2828f351b2d6SSaeed Bishara /* allocate host */ 2829f351b2d6SSaeed Bishara mv_platform_data = pdev->dev.platform_data; 2830f351b2d6SSaeed Bishara n_ports = mv_platform_data->n_ports; 2831f351b2d6SSaeed Bishara 2832f351b2d6SSaeed Bishara host = ata_host_alloc_pinfo(&pdev->dev, ppi, n_ports); 2833f351b2d6SSaeed Bishara hpriv = devm_kzalloc(&pdev->dev, sizeof(*hpriv), GFP_KERNEL); 2834f351b2d6SSaeed Bishara 2835f351b2d6SSaeed Bishara if (!host || !hpriv) 2836f351b2d6SSaeed Bishara return -ENOMEM; 2837f351b2d6SSaeed Bishara host->private_data = hpriv; 2838f351b2d6SSaeed Bishara hpriv->n_ports = n_ports; 2839f351b2d6SSaeed Bishara 2840f351b2d6SSaeed Bishara host->iomap = NULL; 2841f1cb0ea1SSaeed Bishara hpriv->base = devm_ioremap(&pdev->dev, res->start, 2842f1cb0ea1SSaeed Bishara res->end - res->start + 1); 2843f351b2d6SSaeed Bishara hpriv->base -= MV_SATAHC0_REG_BASE; 2844f351b2d6SSaeed Bishara 284515a32632SLennert Buytenhek /* 284615a32632SLennert Buytenhek * (Re-)program MBUS remapping windows if we are asked to. 284715a32632SLennert Buytenhek */ 284815a32632SLennert Buytenhek if (mv_platform_data->dram != NULL) 284915a32632SLennert Buytenhek mv_conf_mbus_windows(hpriv, mv_platform_data->dram); 285015a32632SLennert Buytenhek 2851fbf14e2fSByron Bradley rc = mv_create_dma_pools(hpriv, &pdev->dev); 2852fbf14e2fSByron Bradley if (rc) 2853fbf14e2fSByron Bradley return rc; 2854fbf14e2fSByron Bradley 2855f351b2d6SSaeed Bishara /* initialize adapter */ 2856f351b2d6SSaeed Bishara rc = mv_init_host(host, chip_soc); 2857f351b2d6SSaeed Bishara if (rc) 2858f351b2d6SSaeed Bishara return rc; 2859f351b2d6SSaeed Bishara 2860f351b2d6SSaeed Bishara dev_printk(KERN_INFO, &pdev->dev, 2861f351b2d6SSaeed Bishara "slots %u ports %d\n", (unsigned)MV_MAX_Q_DEPTH, 2862f351b2d6SSaeed Bishara host->n_ports); 2863f351b2d6SSaeed Bishara 2864f351b2d6SSaeed Bishara return ata_host_activate(host, platform_get_irq(pdev, 0), mv_interrupt, 2865f351b2d6SSaeed Bishara IRQF_SHARED, &mv6_sht); 2866f351b2d6SSaeed Bishara } 2867f351b2d6SSaeed Bishara 2868f351b2d6SSaeed Bishara /* 2869f351b2d6SSaeed Bishara * 2870f351b2d6SSaeed Bishara * mv_platform_remove - unplug a platform interface 2871f351b2d6SSaeed Bishara * @pdev: platform device 2872f351b2d6SSaeed Bishara * 2873f351b2d6SSaeed Bishara * A platform bus SATA device has been unplugged. Perform the needed 2874f351b2d6SSaeed Bishara * cleanup. Also called on module unload for any active devices. 2875f351b2d6SSaeed Bishara */ 2876f351b2d6SSaeed Bishara static int __devexit mv_platform_remove(struct platform_device *pdev) 2877f351b2d6SSaeed Bishara { 2878f351b2d6SSaeed Bishara struct device *dev = &pdev->dev; 2879f351b2d6SSaeed Bishara struct ata_host *host = dev_get_drvdata(dev); 2880f351b2d6SSaeed Bishara 2881f351b2d6SSaeed Bishara ata_host_detach(host); 2882f351b2d6SSaeed Bishara return 0; 2883f351b2d6SSaeed Bishara } 2884f351b2d6SSaeed Bishara 2885f351b2d6SSaeed Bishara static struct platform_driver mv_platform_driver = { 2886f351b2d6SSaeed Bishara .probe = mv_platform_probe, 2887f351b2d6SSaeed Bishara .remove = __devexit_p(mv_platform_remove), 2888f351b2d6SSaeed Bishara .driver = { 2889f351b2d6SSaeed Bishara .name = DRV_NAME, 2890f351b2d6SSaeed Bishara .owner = THIS_MODULE, 2891f351b2d6SSaeed Bishara }, 2892f351b2d6SSaeed Bishara }; 2893f351b2d6SSaeed Bishara 2894f351b2d6SSaeed Bishara 28957bb3c529SSaeed Bishara #ifdef CONFIG_PCI 2896f351b2d6SSaeed Bishara static int mv_pci_init_one(struct pci_dev *pdev, 2897f351b2d6SSaeed Bishara const struct pci_device_id *ent); 2898f351b2d6SSaeed Bishara 28997bb3c529SSaeed Bishara 29007bb3c529SSaeed Bishara static struct pci_driver mv_pci_driver = { 29017bb3c529SSaeed Bishara .name = DRV_NAME, 29027bb3c529SSaeed Bishara .id_table = mv_pci_tbl, 2903f351b2d6SSaeed Bishara .probe = mv_pci_init_one, 29047bb3c529SSaeed Bishara .remove = ata_pci_remove_one, 29057bb3c529SSaeed Bishara }; 29067bb3c529SSaeed Bishara 29077bb3c529SSaeed Bishara /* 29087bb3c529SSaeed Bishara * module options 29097bb3c529SSaeed Bishara */ 29107bb3c529SSaeed Bishara static int msi; /* Use PCI msi; either zero (off, default) or non-zero */ 29117bb3c529SSaeed Bishara 29127bb3c529SSaeed Bishara 29137bb3c529SSaeed Bishara /* move to PCI layer or libata core? */ 29147bb3c529SSaeed Bishara static int pci_go_64(struct pci_dev *pdev) 29157bb3c529SSaeed Bishara { 29167bb3c529SSaeed Bishara int rc; 29177bb3c529SSaeed Bishara 29187bb3c529SSaeed Bishara if (!pci_set_dma_mask(pdev, DMA_64BIT_MASK)) { 29197bb3c529SSaeed Bishara rc = pci_set_consistent_dma_mask(pdev, DMA_64BIT_MASK); 29207bb3c529SSaeed Bishara if (rc) { 29217bb3c529SSaeed Bishara rc = pci_set_consistent_dma_mask(pdev, DMA_32BIT_MASK); 29227bb3c529SSaeed Bishara if (rc) { 29237bb3c529SSaeed Bishara dev_printk(KERN_ERR, &pdev->dev, 29247bb3c529SSaeed Bishara "64-bit DMA enable failed\n"); 29257bb3c529SSaeed Bishara return rc; 29267bb3c529SSaeed Bishara } 29277bb3c529SSaeed Bishara } 29287bb3c529SSaeed Bishara } else { 29297bb3c529SSaeed Bishara rc = pci_set_dma_mask(pdev, DMA_32BIT_MASK); 29307bb3c529SSaeed Bishara if (rc) { 29317bb3c529SSaeed Bishara dev_printk(KERN_ERR, &pdev->dev, 29327bb3c529SSaeed Bishara "32-bit DMA enable failed\n"); 29337bb3c529SSaeed Bishara return rc; 29347bb3c529SSaeed Bishara } 29357bb3c529SSaeed Bishara rc = pci_set_consistent_dma_mask(pdev, DMA_32BIT_MASK); 29367bb3c529SSaeed Bishara if (rc) { 29377bb3c529SSaeed Bishara dev_printk(KERN_ERR, &pdev->dev, 29387bb3c529SSaeed Bishara "32-bit consistent DMA enable failed\n"); 29397bb3c529SSaeed Bishara return rc; 29407bb3c529SSaeed Bishara } 29417bb3c529SSaeed Bishara } 29427bb3c529SSaeed Bishara 29437bb3c529SSaeed Bishara return rc; 29447bb3c529SSaeed Bishara } 29457bb3c529SSaeed Bishara 2946c6fd2807SJeff Garzik /** 2947c6fd2807SJeff Garzik * mv_print_info - Dump key info to kernel log for perusal. 29484447d351STejun Heo * @host: ATA host to print info about 2949c6fd2807SJeff Garzik * 2950c6fd2807SJeff Garzik * FIXME: complete this. 2951c6fd2807SJeff Garzik * 2952c6fd2807SJeff Garzik * LOCKING: 2953c6fd2807SJeff Garzik * Inherited from caller. 2954c6fd2807SJeff Garzik */ 29554447d351STejun Heo static void mv_print_info(struct ata_host *host) 2956c6fd2807SJeff Garzik { 29574447d351STejun Heo struct pci_dev *pdev = to_pci_dev(host->dev); 29584447d351STejun Heo struct mv_host_priv *hpriv = host->private_data; 295944c10138SAuke Kok u8 scc; 2960c1e4fe71SJeff Garzik const char *scc_s, *gen; 2961c6fd2807SJeff Garzik 2962c6fd2807SJeff Garzik /* Use this to determine the HW stepping of the chip so we know 2963c6fd2807SJeff Garzik * what errata to workaround 2964c6fd2807SJeff Garzik */ 2965c6fd2807SJeff Garzik pci_read_config_byte(pdev, PCI_CLASS_DEVICE, &scc); 2966c6fd2807SJeff Garzik if (scc == 0) 2967c6fd2807SJeff Garzik scc_s = "SCSI"; 2968c6fd2807SJeff Garzik else if (scc == 0x01) 2969c6fd2807SJeff Garzik scc_s = "RAID"; 2970c6fd2807SJeff Garzik else 2971c1e4fe71SJeff Garzik scc_s = "?"; 2972c1e4fe71SJeff Garzik 2973c1e4fe71SJeff Garzik if (IS_GEN_I(hpriv)) 2974c1e4fe71SJeff Garzik gen = "I"; 2975c1e4fe71SJeff Garzik else if (IS_GEN_II(hpriv)) 2976c1e4fe71SJeff Garzik gen = "II"; 2977c1e4fe71SJeff Garzik else if (IS_GEN_IIE(hpriv)) 2978c1e4fe71SJeff Garzik gen = "IIE"; 2979c1e4fe71SJeff Garzik else 2980c1e4fe71SJeff Garzik gen = "?"; 2981c6fd2807SJeff Garzik 2982c6fd2807SJeff Garzik dev_printk(KERN_INFO, &pdev->dev, 2983c1e4fe71SJeff Garzik "Gen-%s %u slots %u ports %s mode IRQ via %s\n", 2984c1e4fe71SJeff Garzik gen, (unsigned)MV_MAX_Q_DEPTH, host->n_ports, 2985c6fd2807SJeff Garzik scc_s, (MV_HP_FLAG_MSI & hpriv->hp_flags) ? "MSI" : "INTx"); 2986c6fd2807SJeff Garzik } 2987c6fd2807SJeff Garzik 2988c6fd2807SJeff Garzik /** 2989f351b2d6SSaeed Bishara * mv_pci_init_one - handle a positive probe of a PCI Marvell host 2990c6fd2807SJeff Garzik * @pdev: PCI device found 2991c6fd2807SJeff Garzik * @ent: PCI device ID entry for the matched host 2992c6fd2807SJeff Garzik * 2993c6fd2807SJeff Garzik * LOCKING: 2994c6fd2807SJeff Garzik * Inherited from caller. 2995c6fd2807SJeff Garzik */ 2996f351b2d6SSaeed Bishara static int mv_pci_init_one(struct pci_dev *pdev, 2997f351b2d6SSaeed Bishara const struct pci_device_id *ent) 2998c6fd2807SJeff Garzik { 29992dcb407eSJeff Garzik static int printed_version; 3000c6fd2807SJeff Garzik unsigned int board_idx = (unsigned int)ent->driver_data; 30014447d351STejun Heo const struct ata_port_info *ppi[] = { &mv_port_info[board_idx], NULL }; 30024447d351STejun Heo struct ata_host *host; 30034447d351STejun Heo struct mv_host_priv *hpriv; 30044447d351STejun Heo int n_ports, rc; 3005c6fd2807SJeff Garzik 3006c6fd2807SJeff Garzik if (!printed_version++) 3007c6fd2807SJeff Garzik dev_printk(KERN_INFO, &pdev->dev, "version " DRV_VERSION "\n"); 3008c6fd2807SJeff Garzik 30094447d351STejun Heo /* allocate host */ 30104447d351STejun Heo n_ports = mv_get_hc_count(ppi[0]->flags) * MV_PORTS_PER_HC; 30114447d351STejun Heo 30124447d351STejun Heo host = ata_host_alloc_pinfo(&pdev->dev, ppi, n_ports); 30134447d351STejun Heo hpriv = devm_kzalloc(&pdev->dev, sizeof(*hpriv), GFP_KERNEL); 30144447d351STejun Heo if (!host || !hpriv) 30154447d351STejun Heo return -ENOMEM; 30164447d351STejun Heo host->private_data = hpriv; 3017f351b2d6SSaeed Bishara hpriv->n_ports = n_ports; 30184447d351STejun Heo 30194447d351STejun Heo /* acquire resources */ 302024dc5f33STejun Heo rc = pcim_enable_device(pdev); 302124dc5f33STejun Heo if (rc) 3022c6fd2807SJeff Garzik return rc; 3023c6fd2807SJeff Garzik 30240d5ff566STejun Heo rc = pcim_iomap_regions(pdev, 1 << MV_PRIMARY_BAR, DRV_NAME); 30250d5ff566STejun Heo if (rc == -EBUSY) 302624dc5f33STejun Heo pcim_pin_device(pdev); 30270d5ff566STejun Heo if (rc) 302824dc5f33STejun Heo return rc; 30294447d351STejun Heo host->iomap = pcim_iomap_table(pdev); 3030f351b2d6SSaeed Bishara hpriv->base = host->iomap[MV_PRIMARY_BAR]; 3031c6fd2807SJeff Garzik 3032d88184fbSJeff Garzik rc = pci_go_64(pdev); 3033d88184fbSJeff Garzik if (rc) 3034d88184fbSJeff Garzik return rc; 3035d88184fbSJeff Garzik 3036da2fa9baSMark Lord rc = mv_create_dma_pools(hpriv, &pdev->dev); 3037da2fa9baSMark Lord if (rc) 3038da2fa9baSMark Lord return rc; 3039da2fa9baSMark Lord 3040c6fd2807SJeff Garzik /* initialize adapter */ 30414447d351STejun Heo rc = mv_init_host(host, board_idx); 304224dc5f33STejun Heo if (rc) 304324dc5f33STejun Heo return rc; 3044c6fd2807SJeff Garzik 3045c6fd2807SJeff Garzik /* Enable interrupts */ 30466a59dcf8STejun Heo if (msi && pci_enable_msi(pdev)) 3047c6fd2807SJeff Garzik pci_intx(pdev, 1); 3048c6fd2807SJeff Garzik 3049c6fd2807SJeff Garzik mv_dump_pci_cfg(pdev, 0x68); 30504447d351STejun Heo mv_print_info(host); 3051c6fd2807SJeff Garzik 30524447d351STejun Heo pci_set_master(pdev); 3053ea8b4db9SJeff Garzik pci_try_set_mwi(pdev); 30544447d351STejun Heo return ata_host_activate(host, pdev->irq, mv_interrupt, IRQF_SHARED, 3055c5d3e45aSJeff Garzik IS_GEN_I(hpriv) ? &mv5_sht : &mv6_sht); 3056c6fd2807SJeff Garzik } 30577bb3c529SSaeed Bishara #endif 3058c6fd2807SJeff Garzik 3059f351b2d6SSaeed Bishara static int mv_platform_probe(struct platform_device *pdev); 3060f351b2d6SSaeed Bishara static int __devexit mv_platform_remove(struct platform_device *pdev); 3061f351b2d6SSaeed Bishara 3062c6fd2807SJeff Garzik static int __init mv_init(void) 3063c6fd2807SJeff Garzik { 30647bb3c529SSaeed Bishara int rc = -ENODEV; 30657bb3c529SSaeed Bishara #ifdef CONFIG_PCI 30667bb3c529SSaeed Bishara rc = pci_register_driver(&mv_pci_driver); 3067f351b2d6SSaeed Bishara if (rc < 0) 3068f351b2d6SSaeed Bishara return rc; 3069f351b2d6SSaeed Bishara #endif 3070f351b2d6SSaeed Bishara rc = platform_driver_register(&mv_platform_driver); 3071f351b2d6SSaeed Bishara 3072f351b2d6SSaeed Bishara #ifdef CONFIG_PCI 3073f351b2d6SSaeed Bishara if (rc < 0) 3074f351b2d6SSaeed Bishara pci_unregister_driver(&mv_pci_driver); 30757bb3c529SSaeed Bishara #endif 30767bb3c529SSaeed Bishara return rc; 3077c6fd2807SJeff Garzik } 3078c6fd2807SJeff Garzik 3079c6fd2807SJeff Garzik static void __exit mv_exit(void) 3080c6fd2807SJeff Garzik { 30817bb3c529SSaeed Bishara #ifdef CONFIG_PCI 3082c6fd2807SJeff Garzik pci_unregister_driver(&mv_pci_driver); 30837bb3c529SSaeed Bishara #endif 3084f351b2d6SSaeed Bishara platform_driver_unregister(&mv_platform_driver); 3085c6fd2807SJeff Garzik } 3086c6fd2807SJeff Garzik 3087c6fd2807SJeff Garzik MODULE_AUTHOR("Brett Russ"); 3088c6fd2807SJeff Garzik MODULE_DESCRIPTION("SCSI low-level driver for Marvell SATA controllers"); 3089c6fd2807SJeff Garzik MODULE_LICENSE("GPL"); 3090c6fd2807SJeff Garzik MODULE_DEVICE_TABLE(pci, mv_pci_tbl); 3091c6fd2807SJeff Garzik MODULE_VERSION(DRV_VERSION); 309217c5aab5SMark Lord MODULE_ALIAS("platform:" DRV_NAME); 3093c6fd2807SJeff Garzik 30947bb3c529SSaeed Bishara #ifdef CONFIG_PCI 3095c6fd2807SJeff Garzik module_param(msi, int, 0444); 3096c6fd2807SJeff Garzik MODULE_PARM_DESC(msi, "Enable use of PCI MSI (0=off, 1=on)"); 30977bb3c529SSaeed Bishara #endif 3098c6fd2807SJeff Garzik 3099c6fd2807SJeff Garzik module_init(mv_init); 3100c6fd2807SJeff Garzik module_exit(mv_exit); 3101