1 // SPDX-License-Identifier: GPL-2.0-only
3 * pata_triflex.c - Compaq PATA for new ATA layer
5 * Alan Cox <alan@lxorguk.ukuu.org.uk>
11 * IDE Chipset driver for the Compaq TriFlex IDE controller.
13 * Known to work with the Compaq Workstation 5x00 series.
15 * Copyright (C) 2002 Hewlett-Packard Development Group, L.P.
16 * Author: Torben Mathiasen <torben.mathiasen@hp.com>
18 * Loosely based on the piix & svwks drivers.
21 * Not publicly available.
24 #include <linux/kernel.h>
25 #include <linux/module.h>
26 #include <linux/pci.h>
27 #include <linux/blkdev.h>
28 #include <linux/delay.h>
29 #include <scsi/scsi_host.h>
30 #include <linux/libata.h>
32 #define DRV_NAME "pata_triflex"
33 #define DRV_VERSION "0.2.8"
36 * triflex_prereset - probe begin
38 * @deadline: deadline jiffies for the operation
40 * Set up cable type and use generic probe init
43 static int triflex_prereset(struct ata_link
*link
, unsigned long deadline
)
45 static const struct pci_bits triflex_enable_bits
[] = {
46 { 0x80, 1, 0x01, 0x01 },
47 { 0x80, 1, 0x02, 0x02 }
50 struct ata_port
*ap
= link
->ap
;
51 struct pci_dev
*pdev
= to_pci_dev(ap
->host
->dev
);
53 if (!pci_test_config_bits(pdev
, &triflex_enable_bits
[ap
->port_no
]))
56 return ata_sff_prereset(link
, deadline
);
62 * triflex_load_timing - timing configuration
64 * @adev: Device on the bus
65 * @speed: speed to configure
67 * The Triflex has one set of timings per device per channel. This
68 * means we must do some switching. As the PIO and DMA timings don't
69 * match we have to do some reloading unlike PIIX devices where tuning
70 * tricks can avoid it.
73 static void triflex_load_timing(struct ata_port
*ap
, struct ata_device
*adev
, int speed
)
75 struct pci_dev
*pdev
= to_pci_dev(ap
->host
->dev
);
77 u32 triflex_timing
, old_triflex_timing
;
78 int channel_offset
= ap
->port_no
? 0x74: 0x70;
79 unsigned int is_slave
= (adev
->devno
!= 0);
82 pci_read_config_dword(pdev
, channel_offset
, &old_triflex_timing
);
83 triflex_timing
= old_triflex_timing
;
88 timing
= 0x0103;break;
90 timing
= 0x0203;break;
92 timing
= 0x0808;break;
96 timing
= 0x0F0F;break;
98 timing
= 0x0202;break;
100 timing
= 0x0204;break;
102 timing
= 0x0404;break;
104 timing
= 0x0508;break;
106 timing
= 0x0808;break;
110 triflex_timing
&= ~ (0xFFFF << (16 * is_slave
));
111 triflex_timing
|= (timing
<< (16 * is_slave
));
113 if (triflex_timing
!= old_triflex_timing
)
114 pci_write_config_dword(pdev
, channel_offset
, triflex_timing
);
118 * triflex_set_piomode - set initial PIO mode data
122 * Use the timing loader to set up the PIO mode. We have to do this
123 * because DMA start/stop will only be called once DMA occurs. If there
124 * has been no DMA then the PIO timings are still needed.
126 static void triflex_set_piomode(struct ata_port
*ap
, struct ata_device
*adev
)
128 triflex_load_timing(ap
, adev
, adev
->pio_mode
);
132 * triflex_dma_start - DMA start callback
133 * @qc: Command in progress
135 * Usually drivers set the DMA timing at the point the set_dmamode call
136 * is made. Triflex however requires we load new timings on the
137 * transition or keep matching PIO/DMA pairs (ie MWDMA2/PIO4 etc).
138 * We load the DMA timings just before starting DMA and then restore
139 * the PIO timing when the DMA is finished.
142 static void triflex_bmdma_start(struct ata_queued_cmd
*qc
)
144 triflex_load_timing(qc
->ap
, qc
->dev
, qc
->dev
->dma_mode
);
149 * triflex_dma_stop - DMA stop callback
153 * We loaded new timings in dma_start, as a result we need to restore
154 * the PIO timings in dma_stop so that the next command issue gets the
155 * right clock values.
158 static void triflex_bmdma_stop(struct ata_queued_cmd
*qc
)
161 triflex_load_timing(qc
->ap
, qc
->dev
, qc
->dev
->pio_mode
);
164 static struct scsi_host_template triflex_sht
= {
165 ATA_BMDMA_SHT(DRV_NAME
),
168 static struct ata_port_operations triflex_port_ops
= {
169 .inherits
= &ata_bmdma_port_ops
,
170 .bmdma_start
= triflex_bmdma_start
,
171 .bmdma_stop
= triflex_bmdma_stop
,
172 .cable_detect
= ata_cable_40wire
,
173 .set_piomode
= triflex_set_piomode
,
174 .prereset
= triflex_prereset
,
177 static int triflex_init_one(struct pci_dev
*dev
, const struct pci_device_id
*id
)
179 static const struct ata_port_info info
= {
180 .flags
= ATA_FLAG_SLAVE_POSS
,
181 .pio_mask
= ATA_PIO4
,
182 .mwdma_mask
= ATA_MWDMA2
,
183 .port_ops
= &triflex_port_ops
185 const struct ata_port_info
*ppi
[] = { &info
, NULL
};
187 ata_print_version_once(&dev
->dev
, DRV_VERSION
);
189 return ata_pci_bmdma_init_one(dev
, ppi
, &triflex_sht
, NULL
, 0);
192 static const struct pci_device_id triflex
[] = {
193 { PCI_VDEVICE(COMPAQ
, PCI_DEVICE_ID_COMPAQ_TRIFLEX_IDE
), },
198 #ifdef CONFIG_PM_SLEEP
199 static int triflex_ata_pci_device_suspend(struct pci_dev
*pdev
, pm_message_t mesg
)
201 struct ata_host
*host
= pci_get_drvdata(pdev
);
204 rc
= ata_host_suspend(host
, mesg
);
209 * We must not disable or powerdown the device.
210 * APM bios refuses to suspend if IDE is not accessible.
212 pci_save_state(pdev
);
219 static struct pci_driver triflex_pci_driver
= {
222 .probe
= triflex_init_one
,
223 .remove
= ata_pci_remove_one
,
224 #ifdef CONFIG_PM_SLEEP
225 .suspend
= triflex_ata_pci_device_suspend
,
226 .resume
= ata_pci_device_resume
,
230 module_pci_driver(triflex_pci_driver
);
232 MODULE_AUTHOR("Alan Cox");
233 MODULE_DESCRIPTION("low-level driver for Compaq Triflex");
234 MODULE_LICENSE("GPL");
235 MODULE_DEVICE_TABLE(pci
, triflex
);
236 MODULE_VERSION(DRV_VERSION
);