]> git.proxmox.com Git - mirror_ubuntu-artful-kernel.git/blame - drivers/ata/pata_mpiix.c
ipv4: convert dst_metrics.refcnt from atomic_t to refcount_t
[mirror_ubuntu-artful-kernel.git] / drivers / ata / pata_mpiix.c
CommitLineData
669a5db4
JG
1/*
2 * pata_mpiix.c - Intel MPIIX PATA for new ATA layer
3 * (C) 2005-2006 Red Hat Inc
ab771630 4 * Alan Cox <alan@lxorguk.ukuu.org.uk>
669a5db4
JG
5 *
6 * The MPIIX is different enough to the PIIX4 and friends that we give it
7 * a separate driver. The old ide/pci code handles this by just not tuning
8 * MPIIX at all.
9 *
10 * The MPIIX also differs in another important way from the majority of PIIX
11 * devices. The chip is a bridge (pardon the pun) between the old world of
12 * ISA IDE and PCI IDE. Although the ATA timings are PCI configured the actual
13 * IDE controller is not decoded in PCI space and the chip does not claim to
14 * be IDE class PCI. This requires slightly non-standard probe logic compared
15 * with PCI IDE and also that we do not disable the device when our driver is
16 * unloaded (as it has many other functions).
17 *
25985edc 18 * The driver consciously keeps this logic internally to avoid pushing quirky
669a5db4
JG
19 * PATA history into the clean libata layer.
20 *
c961922b 21 * Thinkpad specific note: If you boot an MPIIX using a thinkpad with a PCMCIA
669a5db4
JG
22 * hard disk present this driver will not detect it. This is not a bug. In this
23 * configuration the secondary port of the MPIIX is disabled and the addresses
24 * are decoded by the PCMCIA bridge and therefore are for a generic IDE driver
25 * to operate.
26 */
27
28#include <linux/kernel.h>
29#include <linux/module.h>
30#include <linux/pci.h>
669a5db4
JG
31#include <linux/blkdev.h>
32#include <linux/delay.h>
33#include <scsi/scsi_host.h>
34#include <linux/libata.h>
35
36#define DRV_NAME "pata_mpiix"
871af121 37#define DRV_VERSION "0.7.7"
669a5db4
JG
38
39enum {
40 IDETIM = 0x6C, /* IDE control register */
41 IORDY = (1 << 1),
42 PPE = (1 << 2),
43 FTIM = (1 << 0),
44 ENABLED = (1 << 15),
45 SECONDARY = (1 << 14)
46};
47
cc0680a5 48static int mpiix_pre_reset(struct ata_link *link, unsigned long deadline)
669a5db4 49{
cc0680a5 50 struct ata_port *ap = link->ap;
669a5db4 51 struct pci_dev *pdev = to_pci_dev(ap->host->dev);
92ae7849 52 static const struct pci_bits mpiix_enable_bits = { 0x6D, 1, 0x80, 0x80 };
669a5db4 53
92ae7849 54 if (!pci_test_config_bits(pdev, &mpiix_enable_bits))
c961922b 55 return -ENOENT;
d4b2bab4 56
9363c382 57 return ata_sff_prereset(link, deadline);
669a5db4
JG
58}
59
669a5db4
JG
60/**
61 * mpiix_set_piomode - set initial PIO mode data
62 * @ap: ATA interface
63 * @adev: ATA device
64 *
65 * Called to do the PIO mode setup. The MPIIX allows us to program the
7b4f1a13
SS
66 * IORDY sample point (2-5 clocks), recovery (1-4 clocks) and whether
67 * prefetching or IORDY are used.
669a5db4
JG
68 *
69 * This would get very ugly because we can only program timing for one
70 * device at a time, the other gets PIO0. Fortunately libata calls
9363c382
TH
71 * our qc_issue command before a command is issued so we can flip the
72 * timings back and forth to reduce the pain.
669a5db4
JG
73 */
74
75static void mpiix_set_piomode(struct ata_port *ap, struct ata_device *adev)
76{
77 int control = 0;
78 int pio = adev->pio_mode - XFER_PIO_0;
79 struct pci_dev *pdev = to_pci_dev(ap->host->dev);
80 u16 idetim;
81 static const /* ISP RTC */
82 u8 timings[][2] = { { 0, 0 },
83 { 0, 0 },
84 { 1, 0 },
85 { 2, 1 },
86 { 2, 3 }, };
87
88 pci_read_config_word(pdev, IDETIM, &idetim);
7b4f1a13
SS
89
90 /* Mask the IORDY/TIME/PPE for this device */
669a5db4 91 if (adev->class == ATA_DEV_ATA)
7b4f1a13 92 control |= PPE; /* Enable prefetch/posting for disk */
669a5db4 93 if (ata_pio_need_iordy(adev))
7b4f1a13
SS
94 control |= IORDY;
95 if (pio > 1)
669a5db4
JG
96 control |= FTIM; /* This drive is on the fast timing bank */
97
98 /* Mask out timing and clear both TIME bank selects */
99 idetim &= 0xCCEE;
7b4f1a13
SS
100 idetim &= ~(0x07 << (4 * adev->devno));
101 idetim |= control << (4 * adev->devno);
669a5db4
JG
102
103 idetim |= (timings[pio][0] << 12) | (timings[pio][1] << 8);
104 pci_write_config_word(pdev, IDETIM, idetim);
105
106 /* We use ap->private_data as a pointer to the device currently
107 loaded for timing */
108 ap->private_data = adev;
109}
110
111/**
9363c382 112 * mpiix_qc_issue - command issue
669a5db4
JG
113 * @qc: command pending
114 *
115 * Called when the libata layer is about to issue a command. We wrap
116 * this interface so that we can load the correct ATA timings if
3a4fa0a2 117 * necessary. Our logic also clears TIME0/TIME1 for the other device so
669a5db4
JG
118 * that, even if we get this wrong, cycles to the other device will
119 * be made PIO0.
120 */
121
9363c382 122static unsigned int mpiix_qc_issue(struct ata_queued_cmd *qc)
669a5db4
JG
123{
124 struct ata_port *ap = qc->ap;
125 struct ata_device *adev = qc->dev;
126
127 /* If modes have been configured and the channel data is not loaded
128 then load it. We have to check if pio_mode is set as the core code
129 does not set adev->pio_mode to XFER_PIO_0 while probing as would be
130 logical */
131
132 if (adev->pio_mode && adev != ap->private_data)
133 mpiix_set_piomode(ap, adev);
134
9363c382 135 return ata_sff_qc_issue(qc);
669a5db4
JG
136}
137
138static struct scsi_host_template mpiix_sht = {
68d1d07b 139 ATA_PIO_SHT(DRV_NAME),
669a5db4
JG
140};
141
142static struct ata_port_operations mpiix_port_ops = {
029cfd6b 143 .inherits = &ata_sff_port_ops,
9363c382 144 .qc_issue = mpiix_qc_issue,
029cfd6b 145 .cable_detect = ata_cable_40wire,
669a5db4 146 .set_piomode = mpiix_set_piomode,
a1efdaba 147 .prereset = mpiix_pre_reset,
871af121 148 .sff_data_xfer = ata_sff_data_xfer32,
669a5db4
JG
149};
150
151static int mpiix_init_one(struct pci_dev *dev, const struct pci_device_id *id)
152{
153 /* Single threaded by the PCI probe logic */
5d728824
TH
154 struct ata_host *host;
155 struct ata_port *ap;
0d5ff566 156 void __iomem *cmd_addr, *ctl_addr;
669a5db4 157 u16 idetim;
cbcdd875 158 int cmd, ctl, irq;
669a5db4 159
06296a1e 160 ata_print_version_once(&dev->dev, DRV_VERSION);
669a5db4 161
5d728824
TH
162 host = ata_host_alloc(&dev->dev, 1);
163 if (!host)
164 return -ENOMEM;
cbcdd875 165 ap = host->ports[0];
5d728824 166
669a5db4
JG
167 /* MPIIX has many functions which can be turned on or off according
168 to other devices present. Make sure IDE is enabled before we try
169 and use it */
170
171 pci_read_config_word(dev, IDETIM, &idetim);
172 if (!(idetim & ENABLED))
173 return -ENODEV;
174
92ae7849 175 /* See if it's primary or secondary channel... */
0d5ff566 176 if (!(idetim & SECONDARY)) {
cbcdd875
TH
177 cmd = 0x1F0;
178 ctl = 0x3F6;
0d5ff566 179 irq = 14;
0d5ff566 180 } else {
cbcdd875
TH
181 cmd = 0x170;
182 ctl = 0x376;
0d5ff566 183 irq = 15;
0d5ff566
TH
184 }
185
cbcdd875
TH
186 cmd_addr = devm_ioport_map(&dev->dev, cmd, 8);
187 ctl_addr = devm_ioport_map(&dev->dev, ctl, 1);
0d5ff566
TH
188 if (!cmd_addr || !ctl_addr)
189 return -ENOMEM;
190
cbcdd875
TH
191 ata_port_desc(ap, "cmd 0x%x ctl 0x%x", cmd, ctl);
192
669a5db4
JG
193 /* We do our own plumbing to avoid leaking special cases for whacko
194 ancient hardware into the core code. There are two issues to
195 worry about. #1 The chip is a bridge so if in legacy mode and
196 without BARs set fools the setup. #2 If you pci_disable_device
197 the MPIIX your box goes castors up */
198
5d728824 199 ap->ops = &mpiix_port_ops;
14bdef98 200 ap->pio_mask = ATA_PIO4;
5d728824 201 ap->flags |= ATA_FLAG_SLAVE_POSS;
92ae7849 202
5d728824
TH
203 ap->ioaddr.cmd_addr = cmd_addr;
204 ap->ioaddr.ctl_addr = ctl_addr;
205 ap->ioaddr.altstatus_addr = ctl_addr;
669a5db4
JG
206
207 /* Let libata fill in the port details */
9363c382 208 ata_sff_std_ports(&ap->ioaddr);
669a5db4 209
5d728824 210 /* activate host */
9363c382 211 return ata_host_activate(host, irq, ata_sff_interrupt, IRQF_SHARED,
5d728824 212 &mpiix_sht);
669a5db4
JG
213}
214
669a5db4 215static const struct pci_device_id mpiix[] = {
2d2744fc
JG
216 { PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_82371MX), },
217
218 { },
669a5db4
JG
219};
220
221static struct pci_driver mpiix_pci_driver = {
222 .name = DRV_NAME,
223 .id_table = mpiix,
224 .probe = mpiix_init_one,
24dc5f33 225 .remove = ata_pci_remove_one,
58eb8cd5 226#ifdef CONFIG_PM_SLEEP
30ced0f0
AC
227 .suspend = ata_pci_device_suspend,
228 .resume = ata_pci_device_resume,
438ac6d5 229#endif
669a5db4
JG
230};
231
2fc75da0 232module_pci_driver(mpiix_pci_driver);
669a5db4 233
669a5db4
JG
234MODULE_AUTHOR("Alan Cox");
235MODULE_DESCRIPTION("low-level driver for Intel MPIIX");
236MODULE_LICENSE("GPL");
237MODULE_DEVICE_TABLE(pci, mpiix);
238MODULE_VERSION(DRV_VERSION);