xref: /openbmc/linux/drivers/ata/ahci_xgene.c (revision 0bed13bebd6c99d097796d2ca6c4f10fb5b2eabc)
181d01bfaSLoc Ho /*
281d01bfaSLoc Ho  * AppliedMicro X-Gene SoC SATA Host Controller Driver
381d01bfaSLoc Ho  *
481d01bfaSLoc Ho  * Copyright (c) 2014, Applied Micro Circuits Corporation
581d01bfaSLoc Ho  * Author: Loc Ho <lho@apm.com>
681d01bfaSLoc Ho  *         Tuan Phan <tphan@apm.com>
781d01bfaSLoc Ho  *         Suman Tripathi <stripathi@apm.com>
881d01bfaSLoc Ho  *
981d01bfaSLoc Ho  * This program is free software; you can redistribute  it and/or modify it
1081d01bfaSLoc Ho  * under  the terms of  the GNU General  Public License as published by the
1181d01bfaSLoc Ho  * Free Software Foundation;  either version 2 of the  License, or (at your
1281d01bfaSLoc Ho  * option) any later version.
1381d01bfaSLoc Ho  *
1481d01bfaSLoc Ho  * This program is distributed in the hope that it will be useful,
1581d01bfaSLoc Ho  * but WITHOUT ANY WARRANTY; without even the implied warranty of
1681d01bfaSLoc Ho  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1781d01bfaSLoc Ho  * GNU General Public License for more details.
1881d01bfaSLoc Ho  *
1981d01bfaSLoc Ho  * You should have received a copy of the GNU General Public License
2081d01bfaSLoc Ho  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
2181d01bfaSLoc Ho  *
2281d01bfaSLoc Ho  * NOTE: PM support is not currently available.
2381d01bfaSLoc Ho  *
2481d01bfaSLoc Ho  */
2581d01bfaSLoc Ho #include <linux/module.h>
2681d01bfaSLoc Ho #include <linux/platform_device.h>
2781d01bfaSLoc Ho #include <linux/ahci_platform.h>
2881d01bfaSLoc Ho #include <linux/of_address.h>
2981d01bfaSLoc Ho #include <linux/of_irq.h>
3081d01bfaSLoc Ho #include <linux/phy/phy.h>
3181d01bfaSLoc Ho #include "ahci.h"
3281d01bfaSLoc Ho 
3381d01bfaSLoc Ho /* Max # of disk per a controller */
3481d01bfaSLoc Ho #define MAX_AHCI_CHN_PERCTR		2
3581d01bfaSLoc Ho 
3681d01bfaSLoc Ho /* MUX CSR */
3781d01bfaSLoc Ho #define SATA_ENET_CONFIG_REG		0x00000000
3881d01bfaSLoc Ho #define  CFG_SATA_ENET_SELECT_MASK	0x00000001
3981d01bfaSLoc Ho 
4081d01bfaSLoc Ho /* SATA core host controller CSR */
4181d01bfaSLoc Ho #define SLVRDERRATTRIBUTES		0x00000000
4281d01bfaSLoc Ho #define SLVWRERRATTRIBUTES		0x00000004
4381d01bfaSLoc Ho #define MSTRDERRATTRIBUTES		0x00000008
4481d01bfaSLoc Ho #define MSTWRERRATTRIBUTES		0x0000000c
4581d01bfaSLoc Ho #define BUSCTLREG			0x00000014
4681d01bfaSLoc Ho #define IOFMSTRWAUX			0x00000018
4781d01bfaSLoc Ho #define INTSTATUSMASK			0x0000002c
4881d01bfaSLoc Ho #define ERRINTSTATUS			0x00000030
4981d01bfaSLoc Ho #define ERRINTSTATUSMASK		0x00000034
5081d01bfaSLoc Ho 
5181d01bfaSLoc Ho /* SATA host AHCI CSR */
5281d01bfaSLoc Ho #define PORTCFG				0x000000a4
5381d01bfaSLoc Ho #define  PORTADDR_SET(dst, src) \
5481d01bfaSLoc Ho 		(((dst) & ~0x0000003f) | (((u32)(src)) & 0x0000003f))
5581d01bfaSLoc Ho #define PORTPHY1CFG		0x000000a8
5681d01bfaSLoc Ho #define PORTPHY1CFG_FRCPHYRDY_SET(dst, src) \
5781d01bfaSLoc Ho 		(((dst) & ~0x00100000) | (((u32)(src) << 0x14) & 0x00100000))
5881d01bfaSLoc Ho #define PORTPHY2CFG			0x000000ac
5981d01bfaSLoc Ho #define PORTPHY3CFG			0x000000b0
6081d01bfaSLoc Ho #define PORTPHY4CFG			0x000000b4
6181d01bfaSLoc Ho #define PORTPHY5CFG			0x000000b8
6281d01bfaSLoc Ho #define SCTL0				0x0000012C
6381d01bfaSLoc Ho #define PORTPHY5CFG_RTCHG_SET(dst, src) \
6481d01bfaSLoc Ho 		(((dst) & ~0xfff00000) | (((u32)(src) << 0x14) & 0xfff00000))
6581d01bfaSLoc Ho #define PORTAXICFG_EN_CONTEXT_SET(dst, src) \
6681d01bfaSLoc Ho 		(((dst) & ~0x01000000) | (((u32)(src) << 0x18) & 0x01000000))
6781d01bfaSLoc Ho #define PORTAXICFG			0x000000bc
6881d01bfaSLoc Ho #define PORTAXICFG_OUTTRANS_SET(dst, src) \
6981d01bfaSLoc Ho 		(((dst) & ~0x00f00000) | (((u32)(src) << 0x14) & 0x00f00000))
70aeae4dcaSSuman Tripathi #define PORTRANSCFG			0x000000c8
71aeae4dcaSSuman Tripathi #define PORTRANSCFG_RXWM_SET(dst, src)		\
72aeae4dcaSSuman Tripathi 		(((dst) & ~0x0000007f) | (((u32)(src)) & 0x0000007f))
7381d01bfaSLoc Ho 
7481d01bfaSLoc Ho /* SATA host controller AXI CSR */
7581d01bfaSLoc Ho #define INT_SLV_TMOMASK			0x00000010
7681d01bfaSLoc Ho 
7781d01bfaSLoc Ho /* SATA diagnostic CSR */
7881d01bfaSLoc Ho #define CFG_MEM_RAM_SHUTDOWN		0x00000070
7981d01bfaSLoc Ho #define BLOCK_MEM_RDY			0x00000074
8081d01bfaSLoc Ho 
8181d01bfaSLoc Ho struct xgene_ahci_context {
8281d01bfaSLoc Ho 	struct ahci_host_priv *hpriv;
8381d01bfaSLoc Ho 	struct device *dev;
842a0bdff6SSuman Tripathi 	u8 last_cmd[MAX_AHCI_CHN_PERCTR]; /* tracking the last command issued*/
8581d01bfaSLoc Ho 	void __iomem *csr_core;		/* Core CSR address of IP */
8681d01bfaSLoc Ho 	void __iomem *csr_diag;		/* Diag CSR address of IP */
8781d01bfaSLoc Ho 	void __iomem *csr_axi;		/* AXI CSR address of IP */
8881d01bfaSLoc Ho 	void __iomem *csr_mux;		/* MUX CSR address of IP */
8981d01bfaSLoc Ho };
9081d01bfaSLoc Ho 
9181d01bfaSLoc Ho static int xgene_ahci_init_memram(struct xgene_ahci_context *ctx)
9281d01bfaSLoc Ho {
9381d01bfaSLoc Ho 	dev_dbg(ctx->dev, "Release memory from shutdown\n");
9481d01bfaSLoc Ho 	writel(0x0, ctx->csr_diag + CFG_MEM_RAM_SHUTDOWN);
9581d01bfaSLoc Ho 	readl(ctx->csr_diag + CFG_MEM_RAM_SHUTDOWN); /* Force a barrier */
9681d01bfaSLoc Ho 	msleep(1);	/* reset may take up to 1ms */
9781d01bfaSLoc Ho 	if (readl(ctx->csr_diag + BLOCK_MEM_RDY) != 0xFFFFFFFF) {
9881d01bfaSLoc Ho 		dev_err(ctx->dev, "failed to release memory from shutdown\n");
9981d01bfaSLoc Ho 		return -ENODEV;
10081d01bfaSLoc Ho 	}
10181d01bfaSLoc Ho 	return 0;
10281d01bfaSLoc Ho }
10381d01bfaSLoc Ho 
10481d01bfaSLoc Ho /**
1052a0bdff6SSuman Tripathi  * xgene_ahci_restart_engine - Restart the dma engine.
1062a0bdff6SSuman Tripathi  * @ap : ATA port of interest
1072a0bdff6SSuman Tripathi  *
1082a0bdff6SSuman Tripathi  * Restarts the dma engine inside the controller.
1092a0bdff6SSuman Tripathi  */
1102a0bdff6SSuman Tripathi static int xgene_ahci_restart_engine(struct ata_port *ap)
1112a0bdff6SSuman Tripathi {
1122a0bdff6SSuman Tripathi 	struct ahci_host_priv *hpriv = ap->host->private_data;
1132a0bdff6SSuman Tripathi 
1142a0bdff6SSuman Tripathi 	ahci_stop_engine(ap);
1152a0bdff6SSuman Tripathi 	ahci_start_fis_rx(ap);
1162a0bdff6SSuman Tripathi 	hpriv->start_engine(ap);
1172a0bdff6SSuman Tripathi 
1182a0bdff6SSuman Tripathi 	return 0;
1192a0bdff6SSuman Tripathi }
1202a0bdff6SSuman Tripathi 
1212a0bdff6SSuman Tripathi /**
1222a0bdff6SSuman Tripathi  * xgene_ahci_qc_issue - Issue commands to the device
1232a0bdff6SSuman Tripathi  * @qc: Command to issue
1242a0bdff6SSuman Tripathi  *
1252a0bdff6SSuman Tripathi  * Due to Hardware errata for IDENTIFY DEVICE command, the controller cannot
1262a0bdff6SSuman Tripathi  * clear the BSY bit after receiving the PIO setup FIS. This results in the dma
1272a0bdff6SSuman Tripathi  * state machine goes into the CMFatalErrorUpdate state and locks up. By
1282a0bdff6SSuman Tripathi  * restarting the dma engine, it removes the controller out of lock up state.
1292a0bdff6SSuman Tripathi  */
1302a0bdff6SSuman Tripathi static unsigned int xgene_ahci_qc_issue(struct ata_queued_cmd *qc)
1312a0bdff6SSuman Tripathi {
1322a0bdff6SSuman Tripathi 	struct ata_port *ap = qc->ap;
1332a0bdff6SSuman Tripathi 	struct ahci_host_priv *hpriv = ap->host->private_data;
1342a0bdff6SSuman Tripathi 	struct xgene_ahci_context *ctx = hpriv->plat_data;
1352a0bdff6SSuman Tripathi 	int rc = 0;
1362a0bdff6SSuman Tripathi 
1372a0bdff6SSuman Tripathi 	if (unlikely(ctx->last_cmd[ap->port_no] == ATA_CMD_ID_ATA))
1382a0bdff6SSuman Tripathi 		xgene_ahci_restart_engine(ap);
1392a0bdff6SSuman Tripathi 
1402a0bdff6SSuman Tripathi 	rc = ahci_qc_issue(qc);
1412a0bdff6SSuman Tripathi 
1422a0bdff6SSuman Tripathi 	/* Save the last command issued */
1432a0bdff6SSuman Tripathi 	ctx->last_cmd[ap->port_no] = qc->tf.command;
1442a0bdff6SSuman Tripathi 
1452a0bdff6SSuman Tripathi 	return rc;
1462a0bdff6SSuman Tripathi }
1472a0bdff6SSuman Tripathi 
148*0bed13beSSuman Tripathi static bool xgene_ahci_is_memram_inited(struct xgene_ahci_context *ctx)
149*0bed13beSSuman Tripathi {
150*0bed13beSSuman Tripathi 	void __iomem *diagcsr = ctx->csr_diag;
151*0bed13beSSuman Tripathi 
152*0bed13beSSuman Tripathi 	return (readl(diagcsr + CFG_MEM_RAM_SHUTDOWN) == 0 &&
153*0bed13beSSuman Tripathi 	        readl(diagcsr + BLOCK_MEM_RDY) == 0xFFFFFFFF);
154*0bed13beSSuman Tripathi }
155*0bed13beSSuman Tripathi 
1562a0bdff6SSuman Tripathi /**
15781d01bfaSLoc Ho  * xgene_ahci_read_id - Read ID data from the specified device
15881d01bfaSLoc Ho  * @dev: device
15981d01bfaSLoc Ho  * @tf: proposed taskfile
16081d01bfaSLoc Ho  * @id: data buffer
16181d01bfaSLoc Ho  *
16281d01bfaSLoc Ho  * This custom read ID function is required due to the fact that the HW
1632a0bdff6SSuman Tripathi  * does not support DEVSLP.
16481d01bfaSLoc Ho  */
16581d01bfaSLoc Ho static unsigned int xgene_ahci_read_id(struct ata_device *dev,
16681d01bfaSLoc Ho 				       struct ata_taskfile *tf, u16 *id)
16781d01bfaSLoc Ho {
16881d01bfaSLoc Ho 	u32 err_mask;
16981d01bfaSLoc Ho 
17081d01bfaSLoc Ho 	err_mask = ata_do_dev_read_id(dev, tf, id);
17181d01bfaSLoc Ho 	if (err_mask)
17281d01bfaSLoc Ho 		return err_mask;
17381d01bfaSLoc Ho 
17481d01bfaSLoc Ho 	/*
17581d01bfaSLoc Ho 	 * Mask reserved area. Word78 spec of Link Power Management
17681d01bfaSLoc Ho 	 * bit15-8: reserved
17781d01bfaSLoc Ho 	 * bit7: NCQ autosence
17881d01bfaSLoc Ho 	 * bit6: Software settings preservation supported
17981d01bfaSLoc Ho 	 * bit5: reserved
18081d01bfaSLoc Ho 	 * bit4: In-order sata delivery supported
18181d01bfaSLoc Ho 	 * bit3: DIPM requests supported
18281d01bfaSLoc Ho 	 * bit2: DMA Setup FIS Auto-Activate optimization supported
18381d01bfaSLoc Ho 	 * bit1: DMA Setup FIX non-Zero buffer offsets supported
18481d01bfaSLoc Ho 	 * bit0: Reserved
18581d01bfaSLoc Ho 	 *
18681d01bfaSLoc Ho 	 * Clear reserved bit 8 (DEVSLP bit) as we don't support DEVSLP
18781d01bfaSLoc Ho 	 */
18881d01bfaSLoc Ho 	id[ATA_ID_FEATURE_SUPP] &= ~(1 << 8);
18981d01bfaSLoc Ho 
19081d01bfaSLoc Ho 	return 0;
19181d01bfaSLoc Ho }
19281d01bfaSLoc Ho 
19381d01bfaSLoc Ho static void xgene_ahci_set_phy_cfg(struct xgene_ahci_context *ctx, int channel)
19481d01bfaSLoc Ho {
19581d01bfaSLoc Ho 	void __iomem *mmio = ctx->hpriv->mmio;
19681d01bfaSLoc Ho 	u32 val;
19781d01bfaSLoc Ho 
19881d01bfaSLoc Ho 	dev_dbg(ctx->dev, "port configure mmio 0x%p channel %d\n",
19981d01bfaSLoc Ho 		mmio, channel);
20081d01bfaSLoc Ho 	val = readl(mmio + PORTCFG);
20181d01bfaSLoc Ho 	val = PORTADDR_SET(val, channel == 0 ? 2 : 3);
20281d01bfaSLoc Ho 	writel(val, mmio + PORTCFG);
20381d01bfaSLoc Ho 	readl(mmio + PORTCFG);  /* Force a barrier */
20481d01bfaSLoc Ho 	/* Disable fix rate */
20581d01bfaSLoc Ho 	writel(0x0001fffe, mmio + PORTPHY1CFG);
20681d01bfaSLoc Ho 	readl(mmio + PORTPHY1CFG); /* Force a barrier */
2070185b1b7SSuman Tripathi 	writel(0x28183219, mmio + PORTPHY2CFG);
20881d01bfaSLoc Ho 	readl(mmio + PORTPHY2CFG); /* Force a barrier */
2090185b1b7SSuman Tripathi 	writel(0x13081008, mmio + PORTPHY3CFG);
21081d01bfaSLoc Ho 	readl(mmio + PORTPHY3CFG); /* Force a barrier */
2110185b1b7SSuman Tripathi 	writel(0x00480815, mmio + PORTPHY4CFG);
21281d01bfaSLoc Ho 	readl(mmio + PORTPHY4CFG); /* Force a barrier */
21381d01bfaSLoc Ho 	/* Set window negotiation */
21481d01bfaSLoc Ho 	val = readl(mmio + PORTPHY5CFG);
21581d01bfaSLoc Ho 	val = PORTPHY5CFG_RTCHG_SET(val, 0x300);
21681d01bfaSLoc Ho 	writel(val, mmio + PORTPHY5CFG);
21781d01bfaSLoc Ho 	readl(mmio + PORTPHY5CFG); /* Force a barrier */
21881d01bfaSLoc Ho 	val = readl(mmio + PORTAXICFG);
21981d01bfaSLoc Ho 	val = PORTAXICFG_EN_CONTEXT_SET(val, 0x1); /* Enable context mgmt */
22081d01bfaSLoc Ho 	val = PORTAXICFG_OUTTRANS_SET(val, 0xe); /* Set outstanding */
22181d01bfaSLoc Ho 	writel(val, mmio + PORTAXICFG);
22281d01bfaSLoc Ho 	readl(mmio + PORTAXICFG); /* Force a barrier */
223aeae4dcaSSuman Tripathi 	/* Set the watermark threshold of the receive FIFO */
224aeae4dcaSSuman Tripathi 	val = readl(mmio + PORTRANSCFG);
225aeae4dcaSSuman Tripathi 	val = PORTRANSCFG_RXWM_SET(val, 0x30);
226aeae4dcaSSuman Tripathi 	writel(val, mmio + PORTRANSCFG);
22781d01bfaSLoc Ho }
22881d01bfaSLoc Ho 
22981d01bfaSLoc Ho /**
23081d01bfaSLoc Ho  * xgene_ahci_do_hardreset - Issue the actual COMRESET
23181d01bfaSLoc Ho  * @link: link to reset
23281d01bfaSLoc Ho  * @deadline: deadline jiffies for the operation
23381d01bfaSLoc Ho  * @online: Return value to indicate if device online
23481d01bfaSLoc Ho  *
23581d01bfaSLoc Ho  * Due to the limitation of the hardware PHY, a difference set of setting is
23681d01bfaSLoc Ho  * required for each supported disk speed - Gen3 (6.0Gbps), Gen2 (3.0Gbps),
23781d01bfaSLoc Ho  * and Gen1 (1.5Gbps). Otherwise during long IO stress test, the PHY will
23881d01bfaSLoc Ho  * report disparity error and etc. In addition, during COMRESET, there can
23981d01bfaSLoc Ho  * be error reported in the register PORT_SCR_ERR. For SERR_DISPARITY and
24081d01bfaSLoc Ho  * SERR_10B_8B_ERR, the PHY receiver line must be reseted. The following
24181d01bfaSLoc Ho  * algorithm is followed to proper configure the hardware PHY during COMRESET:
24281d01bfaSLoc Ho  *
24381d01bfaSLoc Ho  * Alg Part 1:
24481d01bfaSLoc Ho  * 1. Start the PHY at Gen3 speed (default setting)
24581d01bfaSLoc Ho  * 2. Issue the COMRESET
24681d01bfaSLoc Ho  * 3. If no link, go to Alg Part 3
24781d01bfaSLoc Ho  * 4. If link up, determine if the negotiated speed matches the PHY
24881d01bfaSLoc Ho  *    configured speed
24981d01bfaSLoc Ho  * 5. If they matched, go to Alg Part 2
25081d01bfaSLoc Ho  * 6. If they do not matched and first time, configure the PHY for the linked
25181d01bfaSLoc Ho  *    up disk speed and repeat step 2
25281d01bfaSLoc Ho  * 7. Go to Alg Part 2
25381d01bfaSLoc Ho  *
25481d01bfaSLoc Ho  * Alg Part 2:
25581d01bfaSLoc Ho  * 1. On link up, if there are any SERR_DISPARITY and SERR_10B_8B_ERR error
25681d01bfaSLoc Ho  *    reported in the register PORT_SCR_ERR, then reset the PHY receiver line
25781d01bfaSLoc Ho  * 2. Go to Alg Part 3
25881d01bfaSLoc Ho  *
25981d01bfaSLoc Ho  * Alg Part 3:
26081d01bfaSLoc Ho  * 1. Clear any pending from register PORT_SCR_ERR.
26181d01bfaSLoc Ho  *
26281d01bfaSLoc Ho  * NOTE: For the initial version, we will NOT support Gen1/Gen2. In addition
26381d01bfaSLoc Ho  *       and until the underlying PHY supports an method to reset the receiver
26481d01bfaSLoc Ho  *       line, on detection of SERR_DISPARITY or SERR_10B_8B_ERR errors,
26581d01bfaSLoc Ho  *       an warning message will be printed.
26681d01bfaSLoc Ho  */
26781d01bfaSLoc Ho static int xgene_ahci_do_hardreset(struct ata_link *link,
26881d01bfaSLoc Ho 				   unsigned long deadline, bool *online)
26981d01bfaSLoc Ho {
27081d01bfaSLoc Ho 	const unsigned long *timing = sata_ehc_deb_timing(&link->eh_context);
27181d01bfaSLoc Ho 	struct ata_port *ap = link->ap;
27281d01bfaSLoc Ho 	struct ahci_host_priv *hpriv = ap->host->private_data;
27381d01bfaSLoc Ho 	struct xgene_ahci_context *ctx = hpriv->plat_data;
27481d01bfaSLoc Ho 	struct ahci_port_priv *pp = ap->private_data;
27581d01bfaSLoc Ho 	u8 *d2h_fis = pp->rx_fis + RX_FIS_D2H_REG;
27681d01bfaSLoc Ho 	void __iomem *port_mmio = ahci_port_base(ap);
27781d01bfaSLoc Ho 	struct ata_taskfile tf;
27881d01bfaSLoc Ho 	int rc;
27981d01bfaSLoc Ho 	u32 val;
28081d01bfaSLoc Ho 
28181d01bfaSLoc Ho 	/* clear D2H reception area to properly wait for D2H FIS */
28281d01bfaSLoc Ho 	ata_tf_init(link->device, &tf);
28381d01bfaSLoc Ho 	tf.command = ATA_BUSY;
28481d01bfaSLoc Ho 	ata_tf_to_fis(&tf, 0, 0, d2h_fis);
28581d01bfaSLoc Ho 	rc = sata_link_hardreset(link, timing, deadline, online,
28681d01bfaSLoc Ho 				 ahci_check_ready);
28781d01bfaSLoc Ho 
28881d01bfaSLoc Ho 	val = readl(port_mmio + PORT_SCR_ERR);
28981d01bfaSLoc Ho 	if (val & (SERR_DISPARITY | SERR_10B_8B_ERR))
29081d01bfaSLoc Ho 		dev_warn(ctx->dev, "link has error\n");
29181d01bfaSLoc Ho 
29281d01bfaSLoc Ho 	/* clear all errors if any pending */
29381d01bfaSLoc Ho 	val = readl(port_mmio + PORT_SCR_ERR);
29481d01bfaSLoc Ho 	writel(val, port_mmio + PORT_SCR_ERR);
29581d01bfaSLoc Ho 
29681d01bfaSLoc Ho 	return rc;
29781d01bfaSLoc Ho }
29881d01bfaSLoc Ho 
29981d01bfaSLoc Ho static int xgene_ahci_hardreset(struct ata_link *link, unsigned int *class,
30081d01bfaSLoc Ho 				unsigned long deadline)
30181d01bfaSLoc Ho {
30281d01bfaSLoc Ho 	struct ata_port *ap = link->ap;
30381d01bfaSLoc Ho         struct ahci_host_priv *hpriv = ap->host->private_data;
30481d01bfaSLoc Ho 	void __iomem *port_mmio = ahci_port_base(ap);
30581d01bfaSLoc Ho 	bool online;
30681d01bfaSLoc Ho 	int rc;
30781d01bfaSLoc Ho 	u32 portcmd_saved;
30881d01bfaSLoc Ho 	u32 portclb_saved;
30981d01bfaSLoc Ho 	u32 portclbhi_saved;
31081d01bfaSLoc Ho 	u32 portrxfis_saved;
31181d01bfaSLoc Ho 	u32 portrxfishi_saved;
31281d01bfaSLoc Ho 
31381d01bfaSLoc Ho 	/* As hardreset resets these CSR, save it to restore later */
31481d01bfaSLoc Ho 	portcmd_saved = readl(port_mmio + PORT_CMD);
31581d01bfaSLoc Ho 	portclb_saved = readl(port_mmio + PORT_LST_ADDR);
31681d01bfaSLoc Ho 	portclbhi_saved = readl(port_mmio + PORT_LST_ADDR_HI);
31781d01bfaSLoc Ho 	portrxfis_saved = readl(port_mmio + PORT_FIS_ADDR);
31881d01bfaSLoc Ho 	portrxfishi_saved = readl(port_mmio + PORT_FIS_ADDR_HI);
31981d01bfaSLoc Ho 
32081d01bfaSLoc Ho 	ahci_stop_engine(ap);
32181d01bfaSLoc Ho 
32281d01bfaSLoc Ho 	rc = xgene_ahci_do_hardreset(link, deadline, &online);
32381d01bfaSLoc Ho 
32481d01bfaSLoc Ho 	/* As controller hardreset clears them, restore them */
32581d01bfaSLoc Ho 	writel(portcmd_saved, port_mmio + PORT_CMD);
32681d01bfaSLoc Ho 	writel(portclb_saved, port_mmio + PORT_LST_ADDR);
32781d01bfaSLoc Ho 	writel(portclbhi_saved, port_mmio + PORT_LST_ADDR_HI);
32881d01bfaSLoc Ho 	writel(portrxfis_saved, port_mmio + PORT_FIS_ADDR);
32981d01bfaSLoc Ho 	writel(portrxfishi_saved, port_mmio + PORT_FIS_ADDR_HI);
33081d01bfaSLoc Ho 
33181d01bfaSLoc Ho 	hpriv->start_engine(ap);
33281d01bfaSLoc Ho 
33381d01bfaSLoc Ho 	if (online)
33481d01bfaSLoc Ho 		*class = ahci_dev_classify(ap);
33581d01bfaSLoc Ho 
33681d01bfaSLoc Ho 	return rc;
33781d01bfaSLoc Ho }
33881d01bfaSLoc Ho 
33981d01bfaSLoc Ho static void xgene_ahci_host_stop(struct ata_host *host)
34081d01bfaSLoc Ho {
34181d01bfaSLoc Ho 	struct ahci_host_priv *hpriv = host->private_data;
34281d01bfaSLoc Ho 
34381d01bfaSLoc Ho 	ahci_platform_disable_resources(hpriv);
34481d01bfaSLoc Ho }
34581d01bfaSLoc Ho 
34681d01bfaSLoc Ho static struct ata_port_operations xgene_ahci_ops = {
34781d01bfaSLoc Ho 	.inherits = &ahci_ops,
34881d01bfaSLoc Ho 	.host_stop = xgene_ahci_host_stop,
34981d01bfaSLoc Ho 	.hardreset = xgene_ahci_hardreset,
35081d01bfaSLoc Ho 	.read_id = xgene_ahci_read_id,
3512a0bdff6SSuman Tripathi 	.qc_issue = xgene_ahci_qc_issue,
35281d01bfaSLoc Ho };
35381d01bfaSLoc Ho 
35481d01bfaSLoc Ho static const struct ata_port_info xgene_ahci_port_info = {
35572f79f9eSSuman Tripathi 	.flags = AHCI_FLAG_COMMON,
35681d01bfaSLoc Ho 	.pio_mask = ATA_PIO4,
35781d01bfaSLoc Ho 	.udma_mask = ATA_UDMA6,
35881d01bfaSLoc Ho 	.port_ops = &xgene_ahci_ops,
35981d01bfaSLoc Ho };
36081d01bfaSLoc Ho 
36181d01bfaSLoc Ho static int xgene_ahci_hw_init(struct ahci_host_priv *hpriv)
36281d01bfaSLoc Ho {
36381d01bfaSLoc Ho 	struct xgene_ahci_context *ctx = hpriv->plat_data;
36481d01bfaSLoc Ho 	int i;
36581d01bfaSLoc Ho 	int rc;
36681d01bfaSLoc Ho 	u32 val;
36781d01bfaSLoc Ho 
36881d01bfaSLoc Ho 	/* Remove IP RAM out of shutdown */
36981d01bfaSLoc Ho 	rc = xgene_ahci_init_memram(ctx);
37081d01bfaSLoc Ho 	if (rc)
37181d01bfaSLoc Ho 		return rc;
37281d01bfaSLoc Ho 
37381d01bfaSLoc Ho 	for (i = 0; i < MAX_AHCI_CHN_PERCTR; i++)
37481d01bfaSLoc Ho 		xgene_ahci_set_phy_cfg(ctx, i);
37581d01bfaSLoc Ho 
37681d01bfaSLoc Ho 	/* AXI disable Mask */
37781d01bfaSLoc Ho 	writel(0xffffffff, hpriv->mmio + HOST_IRQ_STAT);
37881d01bfaSLoc Ho 	readl(hpriv->mmio + HOST_IRQ_STAT); /* Force a barrier */
37981d01bfaSLoc Ho 	writel(0, ctx->csr_core + INTSTATUSMASK);
3806a96918aSLoc Ho 	val = readl(ctx->csr_core + INTSTATUSMASK); /* Force a barrier */
38181d01bfaSLoc Ho 	dev_dbg(ctx->dev, "top level interrupt mask 0x%X value 0x%08X\n",
38281d01bfaSLoc Ho 		INTSTATUSMASK, val);
38381d01bfaSLoc Ho 
38481d01bfaSLoc Ho 	writel(0x0, ctx->csr_core + ERRINTSTATUSMASK);
38581d01bfaSLoc Ho 	readl(ctx->csr_core + ERRINTSTATUSMASK); /* Force a barrier */
38681d01bfaSLoc Ho 	writel(0x0, ctx->csr_axi + INT_SLV_TMOMASK);
38781d01bfaSLoc Ho 	readl(ctx->csr_axi + INT_SLV_TMOMASK);
38881d01bfaSLoc Ho 
38981d01bfaSLoc Ho 	/* Enable AXI Interrupt */
39081d01bfaSLoc Ho 	writel(0xffffffff, ctx->csr_core + SLVRDERRATTRIBUTES);
39181d01bfaSLoc Ho 	writel(0xffffffff, ctx->csr_core + SLVWRERRATTRIBUTES);
39281d01bfaSLoc Ho 	writel(0xffffffff, ctx->csr_core + MSTRDERRATTRIBUTES);
39381d01bfaSLoc Ho 	writel(0xffffffff, ctx->csr_core + MSTWRERRATTRIBUTES);
39481d01bfaSLoc Ho 
39581d01bfaSLoc Ho 	/* Enable coherency */
39681d01bfaSLoc Ho 	val = readl(ctx->csr_core + BUSCTLREG);
39781d01bfaSLoc Ho 	val &= ~0x00000002;     /* Enable write coherency */
39881d01bfaSLoc Ho 	val &= ~0x00000001;     /* Enable read coherency */
39981d01bfaSLoc Ho 	writel(val, ctx->csr_core + BUSCTLREG);
40081d01bfaSLoc Ho 
40181d01bfaSLoc Ho 	val = readl(ctx->csr_core + IOFMSTRWAUX);
40281d01bfaSLoc Ho 	val |= (1 << 3);        /* Enable read coherency */
40381d01bfaSLoc Ho 	val |= (1 << 9);        /* Enable write coherency */
40481d01bfaSLoc Ho 	writel(val, ctx->csr_core + IOFMSTRWAUX);
40581d01bfaSLoc Ho 	val = readl(ctx->csr_core + IOFMSTRWAUX);
40681d01bfaSLoc Ho 	dev_dbg(ctx->dev, "coherency 0x%X value 0x%08X\n",
40781d01bfaSLoc Ho 		IOFMSTRWAUX, val);
40881d01bfaSLoc Ho 
40981d01bfaSLoc Ho 	return rc;
41081d01bfaSLoc Ho }
41181d01bfaSLoc Ho 
41281d01bfaSLoc Ho static int xgene_ahci_mux_select(struct xgene_ahci_context *ctx)
41381d01bfaSLoc Ho {
41481d01bfaSLoc Ho 	u32 val;
41581d01bfaSLoc Ho 
41681d01bfaSLoc Ho 	/* Check for optional MUX resource */
41781d01bfaSLoc Ho 	if (IS_ERR(ctx->csr_mux))
41881d01bfaSLoc Ho 		return 0;
41981d01bfaSLoc Ho 
42081d01bfaSLoc Ho 	val = readl(ctx->csr_mux + SATA_ENET_CONFIG_REG);
42181d01bfaSLoc Ho 	val &= ~CFG_SATA_ENET_SELECT_MASK;
42281d01bfaSLoc Ho 	writel(val, ctx->csr_mux + SATA_ENET_CONFIG_REG);
42381d01bfaSLoc Ho 	val = readl(ctx->csr_mux + SATA_ENET_CONFIG_REG);
42481d01bfaSLoc Ho 	return val & CFG_SATA_ENET_SELECT_MASK ? -1 : 0;
42581d01bfaSLoc Ho }
42681d01bfaSLoc Ho 
42781d01bfaSLoc Ho static int xgene_ahci_probe(struct platform_device *pdev)
42881d01bfaSLoc Ho {
42981d01bfaSLoc Ho 	struct device *dev = &pdev->dev;
43081d01bfaSLoc Ho 	struct ahci_host_priv *hpriv;
43181d01bfaSLoc Ho 	struct xgene_ahci_context *ctx;
43281d01bfaSLoc Ho 	struct resource *res;
43381d01bfaSLoc Ho 	int rc;
43481d01bfaSLoc Ho 
43581d01bfaSLoc Ho 	hpriv = ahci_platform_get_resources(pdev);
43681d01bfaSLoc Ho 	if (IS_ERR(hpriv))
43781d01bfaSLoc Ho 		return PTR_ERR(hpriv);
43881d01bfaSLoc Ho 
43981d01bfaSLoc Ho 	ctx = devm_kzalloc(dev, sizeof(*ctx), GFP_KERNEL);
44081d01bfaSLoc Ho 	if (!ctx)
44181d01bfaSLoc Ho 		return -ENOMEM;
44281d01bfaSLoc Ho 
44381d01bfaSLoc Ho 	hpriv->plat_data = ctx;
44481d01bfaSLoc Ho 	ctx->hpriv = hpriv;
44581d01bfaSLoc Ho 	ctx->dev = dev;
44681d01bfaSLoc Ho 
44781d01bfaSLoc Ho 	/* Retrieve the IP core resource */
44881d01bfaSLoc Ho 	res = platform_get_resource(pdev, IORESOURCE_MEM, 1);
44981d01bfaSLoc Ho 	ctx->csr_core = devm_ioremap_resource(dev, res);
45081d01bfaSLoc Ho 	if (IS_ERR(ctx->csr_core))
45181d01bfaSLoc Ho 		return PTR_ERR(ctx->csr_core);
45281d01bfaSLoc Ho 
45381d01bfaSLoc Ho 	/* Retrieve the IP diagnostic resource */
45481d01bfaSLoc Ho 	res = platform_get_resource(pdev, IORESOURCE_MEM, 2);
45581d01bfaSLoc Ho 	ctx->csr_diag = devm_ioremap_resource(dev, res);
45681d01bfaSLoc Ho 	if (IS_ERR(ctx->csr_diag))
45781d01bfaSLoc Ho 		return PTR_ERR(ctx->csr_diag);
45881d01bfaSLoc Ho 
45981d01bfaSLoc Ho 	/* Retrieve the IP AXI resource */
46081d01bfaSLoc Ho 	res = platform_get_resource(pdev, IORESOURCE_MEM, 3);
46181d01bfaSLoc Ho 	ctx->csr_axi = devm_ioremap_resource(dev, res);
46281d01bfaSLoc Ho 	if (IS_ERR(ctx->csr_axi))
46381d01bfaSLoc Ho 		return PTR_ERR(ctx->csr_axi);
46481d01bfaSLoc Ho 
46581d01bfaSLoc Ho 	/* Retrieve the optional IP mux resource */
46681d01bfaSLoc Ho 	res = platform_get_resource(pdev, IORESOURCE_MEM, 4);
46781d01bfaSLoc Ho 	ctx->csr_mux = devm_ioremap_resource(dev, res);
46881d01bfaSLoc Ho 
46981d01bfaSLoc Ho 	dev_dbg(dev, "VAddr 0x%p Mmio VAddr 0x%p\n", ctx->csr_core,
47081d01bfaSLoc Ho 		hpriv->mmio);
47181d01bfaSLoc Ho 
47281d01bfaSLoc Ho 	/* Select ATA */
47381d01bfaSLoc Ho 	if ((rc = xgene_ahci_mux_select(ctx))) {
47481d01bfaSLoc Ho 		dev_err(dev, "SATA mux selection failed error %d\n", rc);
47581d01bfaSLoc Ho 		return -ENODEV;
47681d01bfaSLoc Ho 	}
47781d01bfaSLoc Ho 
478*0bed13beSSuman Tripathi 	if (xgene_ahci_is_memram_inited(ctx)) {
479*0bed13beSSuman Tripathi 		dev_info(dev, "skip clock and PHY initialization\n");
480*0bed13beSSuman Tripathi 		goto skip_clk_phy;
481*0bed13beSSuman Tripathi 	}
482*0bed13beSSuman Tripathi 
48381d01bfaSLoc Ho 	/* Due to errata, HW requires full toggle transition */
48481d01bfaSLoc Ho 	rc = ahci_platform_enable_clks(hpriv);
48581d01bfaSLoc Ho 	if (rc)
48681d01bfaSLoc Ho 		goto disable_resources;
48781d01bfaSLoc Ho 	ahci_platform_disable_clks(hpriv);
48881d01bfaSLoc Ho 
48981d01bfaSLoc Ho 	rc = ahci_platform_enable_resources(hpriv);
49081d01bfaSLoc Ho 	if (rc)
49181d01bfaSLoc Ho 		goto disable_resources;
49281d01bfaSLoc Ho 
49381d01bfaSLoc Ho 	/* Configure the host controller */
49481d01bfaSLoc Ho 	xgene_ahci_hw_init(hpriv);
495*0bed13beSSuman Tripathi skip_clk_phy:
49672f79f9eSSuman Tripathi 	hpriv->flags = AHCI_HFLAG_NO_PMP | AHCI_HFLAG_NO_NCQ;
497f9f36917SKefeng Wang 
498725c7b57SAntoine Ténart 	rc = ahci_platform_init_host(pdev, hpriv, &xgene_ahci_port_info);
49981d01bfaSLoc Ho 	if (rc)
50081d01bfaSLoc Ho 		goto disable_resources;
50181d01bfaSLoc Ho 
50281d01bfaSLoc Ho 	dev_dbg(dev, "X-Gene SATA host controller initialized\n");
50381d01bfaSLoc Ho 	return 0;
50481d01bfaSLoc Ho 
50581d01bfaSLoc Ho disable_resources:
50681d01bfaSLoc Ho 	ahci_platform_disable_resources(hpriv);
50781d01bfaSLoc Ho 	return rc;
50881d01bfaSLoc Ho }
50981d01bfaSLoc Ho 
51081d01bfaSLoc Ho static const struct of_device_id xgene_ahci_of_match[] = {
51181d01bfaSLoc Ho 	{.compatible = "apm,xgene-ahci"},
51281d01bfaSLoc Ho 	{},
51381d01bfaSLoc Ho };
51481d01bfaSLoc Ho MODULE_DEVICE_TABLE(of, xgene_ahci_of_match);
51581d01bfaSLoc Ho 
51681d01bfaSLoc Ho static struct platform_driver xgene_ahci_driver = {
51781d01bfaSLoc Ho 	.probe = xgene_ahci_probe,
51881d01bfaSLoc Ho 	.remove = ata_platform_remove_one,
51981d01bfaSLoc Ho 	.driver = {
52081d01bfaSLoc Ho 		.name = "xgene-ahci",
52181d01bfaSLoc Ho 		.owner = THIS_MODULE,
52281d01bfaSLoc Ho 		.of_match_table = xgene_ahci_of_match,
52381d01bfaSLoc Ho 	},
52481d01bfaSLoc Ho };
52581d01bfaSLoc Ho 
52681d01bfaSLoc Ho module_platform_driver(xgene_ahci_driver);
52781d01bfaSLoc Ho 
52881d01bfaSLoc Ho MODULE_DESCRIPTION("APM X-Gene AHCI SATA driver");
52981d01bfaSLoc Ho MODULE_AUTHOR("Loc Ho <lho@apm.com>");
53081d01bfaSLoc Ho MODULE_LICENSE("GPL");
53181d01bfaSLoc Ho MODULE_VERSION("0.4");
532