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scsi: hisi_sas: Fix spin lock management in slot_index_alloc_quirk_v2_hw()
[mirror_ubuntu-bionic-kernel.git] / drivers / scsi / hisi_sas / hisi_sas_v2_hw.c
CommitLineData
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1/*
2 * Copyright (c) 2016 Linaro Ltd.
3 * Copyright (c) 2016 Hisilicon Limited.
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 */
11
12#include "hisi_sas.h"
13#define DRV_NAME "hisi_sas_v2_hw"
14
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15/* global registers need init*/
16#define DLVRY_QUEUE_ENABLE 0x0
17#define IOST_BASE_ADDR_LO 0x8
18#define IOST_BASE_ADDR_HI 0xc
19#define ITCT_BASE_ADDR_LO 0x10
20#define ITCT_BASE_ADDR_HI 0x14
21#define IO_BROKEN_MSG_ADDR_LO 0x18
22#define IO_BROKEN_MSG_ADDR_HI 0x1c
23#define PHY_CONTEXT 0x20
24#define PHY_STATE 0x24
25#define PHY_PORT_NUM_MA 0x28
26#define PORT_STATE 0x2c
27#define PORT_STATE_PHY8_PORT_NUM_OFF 16
28#define PORT_STATE_PHY8_PORT_NUM_MSK (0xf << PORT_STATE_PHY8_PORT_NUM_OFF)
29#define PORT_STATE_PHY8_CONN_RATE_OFF 20
30#define PORT_STATE_PHY8_CONN_RATE_MSK (0xf << PORT_STATE_PHY8_CONN_RATE_OFF)
31#define PHY_CONN_RATE 0x30
32#define HGC_TRANS_TASK_CNT_LIMIT 0x38
33#define AXI_AHB_CLK_CFG 0x3c
34#define ITCT_CLR 0x44
35#define ITCT_CLR_EN_OFF 16
36#define ITCT_CLR_EN_MSK (0x1 << ITCT_CLR_EN_OFF)
37#define ITCT_DEV_OFF 0
38#define ITCT_DEV_MSK (0x7ff << ITCT_DEV_OFF)
39#define AXI_USER1 0x48
40#define AXI_USER2 0x4c
41#define IO_SATA_BROKEN_MSG_ADDR_LO 0x58
42#define IO_SATA_BROKEN_MSG_ADDR_HI 0x5c
43#define SATA_INITI_D2H_STORE_ADDR_LO 0x60
44#define SATA_INITI_D2H_STORE_ADDR_HI 0x64
45#define HGC_SAS_TX_OPEN_FAIL_RETRY_CTRL 0x84
46#define HGC_SAS_TXFAIL_RETRY_CTRL 0x88
47#define HGC_GET_ITV_TIME 0x90
48#define DEVICE_MSG_WORK_MODE 0x94
49#define OPENA_WT_CONTI_TIME 0x9c
50#define I_T_NEXUS_LOSS_TIME 0xa0
51#define MAX_CON_TIME_LIMIT_TIME 0xa4
52#define BUS_INACTIVE_LIMIT_TIME 0xa8
53#define REJECT_TO_OPEN_LIMIT_TIME 0xac
54#define CFG_AGING_TIME 0xbc
55#define HGC_DFX_CFG2 0xc0
56#define HGC_IOMB_PROC1_STATUS 0x104
57#define CFG_1US_TIMER_TRSH 0xcc
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58#define HGC_LM_DFX_STATUS2 0x128
59#define HGC_LM_DFX_STATUS2_IOSTLIST_OFF 0
60#define HGC_LM_DFX_STATUS2_IOSTLIST_MSK (0xfff << \
61 HGC_LM_DFX_STATUS2_IOSTLIST_OFF)
62#define HGC_LM_DFX_STATUS2_ITCTLIST_OFF 12
63#define HGC_LM_DFX_STATUS2_ITCTLIST_MSK (0x7ff << \
64 HGC_LM_DFX_STATUS2_ITCTLIST_OFF)
65#define HGC_CQE_ECC_ADDR 0x13c
66#define HGC_CQE_ECC_1B_ADDR_OFF 0
ce41b41e 67#define HGC_CQE_ECC_1B_ADDR_MSK (0x3f << HGC_CQE_ECC_1B_ADDR_OFF)
d3b688d3 68#define HGC_CQE_ECC_MB_ADDR_OFF 8
ce41b41e 69#define HGC_CQE_ECC_MB_ADDR_MSK (0x3f << HGC_CQE_ECC_MB_ADDR_OFF)
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70#define HGC_IOST_ECC_ADDR 0x140
71#define HGC_IOST_ECC_1B_ADDR_OFF 0
ce41b41e 72#define HGC_IOST_ECC_1B_ADDR_MSK (0x3ff << HGC_IOST_ECC_1B_ADDR_OFF)
d3b688d3 73#define HGC_IOST_ECC_MB_ADDR_OFF 16
ce41b41e 74#define HGC_IOST_ECC_MB_ADDR_MSK (0x3ff << HGC_IOST_ECC_MB_ADDR_OFF)
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75#define HGC_DQE_ECC_ADDR 0x144
76#define HGC_DQE_ECC_1B_ADDR_OFF 0
ce41b41e 77#define HGC_DQE_ECC_1B_ADDR_MSK (0xfff << HGC_DQE_ECC_1B_ADDR_OFF)
d3b688d3 78#define HGC_DQE_ECC_MB_ADDR_OFF 16
ce41b41e 79#define HGC_DQE_ECC_MB_ADDR_MSK (0xfff << HGC_DQE_ECC_MB_ADDR_OFF)
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80#define HGC_INVLD_DQE_INFO 0x148
81#define HGC_INVLD_DQE_INFO_FB_CH0_OFF 9
82#define HGC_INVLD_DQE_INFO_FB_CH0_MSK (0x1 << HGC_INVLD_DQE_INFO_FB_CH0_OFF)
83#define HGC_INVLD_DQE_INFO_FB_CH3_OFF 18
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84#define HGC_ITCT_ECC_ADDR 0x150
85#define HGC_ITCT_ECC_1B_ADDR_OFF 0
86#define HGC_ITCT_ECC_1B_ADDR_MSK (0x3ff << \
87 HGC_ITCT_ECC_1B_ADDR_OFF)
88#define HGC_ITCT_ECC_MB_ADDR_OFF 16
89#define HGC_ITCT_ECC_MB_ADDR_MSK (0x3ff << \
90 HGC_ITCT_ECC_MB_ADDR_OFF)
91#define HGC_AXI_FIFO_ERR_INFO 0x154
92#define AXI_ERR_INFO_OFF 0
93#define AXI_ERR_INFO_MSK (0xff << AXI_ERR_INFO_OFF)
94#define FIFO_ERR_INFO_OFF 8
95#define FIFO_ERR_INFO_MSK (0xff << FIFO_ERR_INFO_OFF)
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96#define INT_COAL_EN 0x19c
97#define OQ_INT_COAL_TIME 0x1a0
98#define OQ_INT_COAL_CNT 0x1a4
99#define ENT_INT_COAL_TIME 0x1a8
100#define ENT_INT_COAL_CNT 0x1ac
101#define OQ_INT_SRC 0x1b0
102#define OQ_INT_SRC_MSK 0x1b4
103#define ENT_INT_SRC1 0x1b8
104#define ENT_INT_SRC1_D2H_FIS_CH0_OFF 0
105#define ENT_INT_SRC1_D2H_FIS_CH0_MSK (0x1 << ENT_INT_SRC1_D2H_FIS_CH0_OFF)
106#define ENT_INT_SRC1_D2H_FIS_CH1_OFF 8
107#define ENT_INT_SRC1_D2H_FIS_CH1_MSK (0x1 << ENT_INT_SRC1_D2H_FIS_CH1_OFF)
108#define ENT_INT_SRC2 0x1bc
109#define ENT_INT_SRC3 0x1c0
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110#define ENT_INT_SRC3_WP_DEPTH_OFF 8
111#define ENT_INT_SRC3_IPTT_SLOT_NOMATCH_OFF 9
112#define ENT_INT_SRC3_RP_DEPTH_OFF 10
113#define ENT_INT_SRC3_AXI_OFF 11
114#define ENT_INT_SRC3_FIFO_OFF 12
115#define ENT_INT_SRC3_LM_OFF 14
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116#define ENT_INT_SRC3_ITC_INT_OFF 15
117#define ENT_INT_SRC3_ITC_INT_MSK (0x1 << ENT_INT_SRC3_ITC_INT_OFF)
d3b688d3 118#define ENT_INT_SRC3_ABT_OFF 16
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119#define ENT_INT_SRC_MSK1 0x1c4
120#define ENT_INT_SRC_MSK2 0x1c8
121#define ENT_INT_SRC_MSK3 0x1cc
122#define ENT_INT_SRC_MSK3_ENT95_MSK_OFF 31
123#define ENT_INT_SRC_MSK3_ENT95_MSK_MSK (0x1 << ENT_INT_SRC_MSK3_ENT95_MSK_OFF)
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124#define SAS_ECC_INTR 0x1e8
125#define SAS_ECC_INTR_DQE_ECC_1B_OFF 0
126#define SAS_ECC_INTR_DQE_ECC_MB_OFF 1
127#define SAS_ECC_INTR_IOST_ECC_1B_OFF 2
128#define SAS_ECC_INTR_IOST_ECC_MB_OFF 3
129#define SAS_ECC_INTR_ITCT_ECC_MB_OFF 4
130#define SAS_ECC_INTR_ITCT_ECC_1B_OFF 5
131#define SAS_ECC_INTR_IOSTLIST_ECC_MB_OFF 6
132#define SAS_ECC_INTR_IOSTLIST_ECC_1B_OFF 7
133#define SAS_ECC_INTR_ITCTLIST_ECC_1B_OFF 8
134#define SAS_ECC_INTR_ITCTLIST_ECC_MB_OFF 9
135#define SAS_ECC_INTR_CQE_ECC_1B_OFF 10
136#define SAS_ECC_INTR_CQE_ECC_MB_OFF 11
137#define SAS_ECC_INTR_NCQ_MEM0_ECC_MB_OFF 12
138#define SAS_ECC_INTR_NCQ_MEM0_ECC_1B_OFF 13
139#define SAS_ECC_INTR_NCQ_MEM1_ECC_MB_OFF 14
140#define SAS_ECC_INTR_NCQ_MEM1_ECC_1B_OFF 15
141#define SAS_ECC_INTR_NCQ_MEM2_ECC_MB_OFF 16
142#define SAS_ECC_INTR_NCQ_MEM2_ECC_1B_OFF 17
143#define SAS_ECC_INTR_NCQ_MEM3_ECC_MB_OFF 18
144#define SAS_ECC_INTR_NCQ_MEM3_ECC_1B_OFF 19
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145#define SAS_ECC_INTR_MSK 0x1ec
146#define HGC_ERR_STAT_EN 0x238
1a7068b3 147#define CQE_SEND_CNT 0x248
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148#define DLVRY_Q_0_BASE_ADDR_LO 0x260
149#define DLVRY_Q_0_BASE_ADDR_HI 0x264
150#define DLVRY_Q_0_DEPTH 0x268
151#define DLVRY_Q_0_WR_PTR 0x26c
152#define DLVRY_Q_0_RD_PTR 0x270
153#define HYPER_STREAM_ID_EN_CFG 0xc80
154#define OQ0_INT_SRC_MSK 0xc90
155#define COMPL_Q_0_BASE_ADDR_LO 0x4e0
156#define COMPL_Q_0_BASE_ADDR_HI 0x4e4
157#define COMPL_Q_0_DEPTH 0x4e8
158#define COMPL_Q_0_WR_PTR 0x4ec
159#define COMPL_Q_0_RD_PTR 0x4f0
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160#define HGC_RXM_DFX_STATUS14 0xae8
161#define HGC_RXM_DFX_STATUS14_MEM0_OFF 0
162#define HGC_RXM_DFX_STATUS14_MEM0_MSK (0x1ff << \
163 HGC_RXM_DFX_STATUS14_MEM0_OFF)
164#define HGC_RXM_DFX_STATUS14_MEM1_OFF 9
165#define HGC_RXM_DFX_STATUS14_MEM1_MSK (0x1ff << \
166 HGC_RXM_DFX_STATUS14_MEM1_OFF)
167#define HGC_RXM_DFX_STATUS14_MEM2_OFF 18
168#define HGC_RXM_DFX_STATUS14_MEM2_MSK (0x1ff << \
169 HGC_RXM_DFX_STATUS14_MEM2_OFF)
170#define HGC_RXM_DFX_STATUS15 0xaec
171#define HGC_RXM_DFX_STATUS15_MEM3_OFF 0
172#define HGC_RXM_DFX_STATUS15_MEM3_MSK (0x1ff << \
173 HGC_RXM_DFX_STATUS15_MEM3_OFF)
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174/* phy registers need init */
175#define PORT_BASE (0x2000)
176
177#define PHY_CFG (PORT_BASE + 0x0)
178#define HARD_PHY_LINKRATE (PORT_BASE + 0x4)
179#define PHY_CFG_ENA_OFF 0
180#define PHY_CFG_ENA_MSK (0x1 << PHY_CFG_ENA_OFF)
181#define PHY_CFG_DC_OPT_OFF 2
182#define PHY_CFG_DC_OPT_MSK (0x1 << PHY_CFG_DC_OPT_OFF)
183#define PROG_PHY_LINK_RATE (PORT_BASE + 0x8)
184#define PROG_PHY_LINK_RATE_MAX_OFF 0
185#define PROG_PHY_LINK_RATE_MAX_MSK (0xff << PROG_PHY_LINK_RATE_MAX_OFF)
186#define PHY_CTRL (PORT_BASE + 0x14)
187#define PHY_CTRL_RESET_OFF 0
188#define PHY_CTRL_RESET_MSK (0x1 << PHY_CTRL_RESET_OFF)
189#define SAS_PHY_CTRL (PORT_BASE + 0x20)
190#define SL_CFG (PORT_BASE + 0x84)
191#define PHY_PCN (PORT_BASE + 0x44)
192#define SL_TOUT_CFG (PORT_BASE + 0x8c)
193#define SL_CONTROL (PORT_BASE + 0x94)
194#define SL_CONTROL_NOTIFY_EN_OFF 0
195#define SL_CONTROL_NOTIFY_EN_MSK (0x1 << SL_CONTROL_NOTIFY_EN_OFF)
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196#define SL_CONTROL_CTA_OFF 17
197#define SL_CONTROL_CTA_MSK (0x1 << SL_CONTROL_CTA_OFF)
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198#define RX_PRIMS_STATUS (PORT_BASE + 0x98)
199#define RX_BCAST_CHG_OFF 1
200#define RX_BCAST_CHG_MSK (0x1 << RX_BCAST_CHG_OFF)
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201#define TX_ID_DWORD0 (PORT_BASE + 0x9c)
202#define TX_ID_DWORD1 (PORT_BASE + 0xa0)
203#define TX_ID_DWORD2 (PORT_BASE + 0xa4)
204#define TX_ID_DWORD3 (PORT_BASE + 0xa8)
205#define TX_ID_DWORD4 (PORT_BASE + 0xaC)
206#define TX_ID_DWORD5 (PORT_BASE + 0xb0)
207#define TX_ID_DWORD6 (PORT_BASE + 0xb4)
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208#define TXID_AUTO (PORT_BASE + 0xb8)
209#define TXID_AUTO_CT3_OFF 1
210#define TXID_AUTO_CT3_MSK (0x1 << TXID_AUTO_CT3_OFF)
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211#define TXID_AUTO_CTB_OFF 11
212#define TXID_AUTO_CTB_MSK (0x1 << TXID_AUTO_CTB_OFF)
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213#define TX_HARDRST_OFF 2
214#define TX_HARDRST_MSK (0x1 << TX_HARDRST_OFF)
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215#define RX_IDAF_DWORD0 (PORT_BASE + 0xc4)
216#define RX_IDAF_DWORD1 (PORT_BASE + 0xc8)
217#define RX_IDAF_DWORD2 (PORT_BASE + 0xcc)
218#define RX_IDAF_DWORD3 (PORT_BASE + 0xd0)
219#define RX_IDAF_DWORD4 (PORT_BASE + 0xd4)
220#define RX_IDAF_DWORD5 (PORT_BASE + 0xd8)
221#define RX_IDAF_DWORD6 (PORT_BASE + 0xdc)
222#define RXOP_CHECK_CFG_H (PORT_BASE + 0xfc)
f2f89c32 223#define CON_CONTROL (PORT_BASE + 0x118)
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224#define CON_CONTROL_CFG_OPEN_ACC_STP_OFF 0
225#define CON_CONTROL_CFG_OPEN_ACC_STP_MSK \
226 (0x01 << CON_CONTROL_CFG_OPEN_ACC_STP_OFF)
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227#define DONE_RECEIVED_TIME (PORT_BASE + 0x11c)
228#define CHL_INT0 (PORT_BASE + 0x1b4)
229#define CHL_INT0_HOTPLUG_TOUT_OFF 0
230#define CHL_INT0_HOTPLUG_TOUT_MSK (0x1 << CHL_INT0_HOTPLUG_TOUT_OFF)
231#define CHL_INT0_SL_RX_BCST_ACK_OFF 1
232#define CHL_INT0_SL_RX_BCST_ACK_MSK (0x1 << CHL_INT0_SL_RX_BCST_ACK_OFF)
233#define CHL_INT0_SL_PHY_ENABLE_OFF 2
234#define CHL_INT0_SL_PHY_ENABLE_MSK (0x1 << CHL_INT0_SL_PHY_ENABLE_OFF)
235#define CHL_INT0_NOT_RDY_OFF 4
236#define CHL_INT0_NOT_RDY_MSK (0x1 << CHL_INT0_NOT_RDY_OFF)
237#define CHL_INT0_PHY_RDY_OFF 5
238#define CHL_INT0_PHY_RDY_MSK (0x1 << CHL_INT0_PHY_RDY_OFF)
239#define CHL_INT1 (PORT_BASE + 0x1b8)
240#define CHL_INT1_DMAC_TX_ECC_ERR_OFF 15
241#define CHL_INT1_DMAC_TX_ECC_ERR_MSK (0x1 << CHL_INT1_DMAC_TX_ECC_ERR_OFF)
242#define CHL_INT1_DMAC_RX_ECC_ERR_OFF 17
243#define CHL_INT1_DMAC_RX_ECC_ERR_MSK (0x1 << CHL_INT1_DMAC_RX_ECC_ERR_OFF)
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244#define CHL_INT1_DMAC_TX_AXI_WR_ERR_OFF 19
245#define CHL_INT1_DMAC_TX_AXI_RD_ERR_OFF 20
246#define CHL_INT1_DMAC_RX_AXI_WR_ERR_OFF 21
247#define CHL_INT1_DMAC_RX_AXI_RD_ERR_OFF 22
45c901b8 248#define CHL_INT2 (PORT_BASE + 0x1bc)
066312f6 249#define CHL_INT2_SL_IDAF_TOUT_CONF_OFF 0
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250#define CHL_INT0_MSK (PORT_BASE + 0x1c0)
251#define CHL_INT1_MSK (PORT_BASE + 0x1c4)
252#define CHL_INT2_MSK (PORT_BASE + 0x1c8)
253#define CHL_INT_COAL_EN (PORT_BASE + 0x1d0)
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254#define DMA_TX_DFX0 (PORT_BASE + 0x200)
255#define DMA_TX_DFX1 (PORT_BASE + 0x204)
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256#define DMA_TX_DFX1_IPTT_OFF 0
257#define DMA_TX_DFX1_IPTT_MSK (0xffff << DMA_TX_DFX1_IPTT_OFF)
819cbf18 258#define DMA_TX_FIFO_DFX0 (PORT_BASE + 0x240)
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259#define PORT_DFX0 (PORT_BASE + 0x258)
260#define LINK_DFX2 (PORT_BASE + 0X264)
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261#define LINK_DFX2_RCVR_HOLD_STS_OFF 9
262#define LINK_DFX2_RCVR_HOLD_STS_MSK (0x1 << LINK_DFX2_RCVR_HOLD_STS_OFF)
263#define LINK_DFX2_SEND_HOLD_STS_OFF 10
264#define LINK_DFX2_SEND_HOLD_STS_MSK (0x1 << LINK_DFX2_SEND_HOLD_STS_OFF)
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265#define SAS_ERR_CNT4_REG (PORT_BASE + 0x290)
266#define SAS_ERR_CNT6_REG (PORT_BASE + 0x298)
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267#define PHY_CTRL_RDY_MSK (PORT_BASE + 0x2b0)
268#define PHYCTRL_NOT_RDY_MSK (PORT_BASE + 0x2b4)
269#define PHYCTRL_DWS_RESET_MSK (PORT_BASE + 0x2b8)
270#define PHYCTRL_PHY_ENA_MSK (PORT_BASE + 0x2bc)
271#define SL_RX_BCAST_CHK_MSK (PORT_BASE + 0x2c0)
272#define PHYCTRL_OOB_RESTART_MSK (PORT_BASE + 0x2c4)
273#define DMA_TX_STATUS (PORT_BASE + 0x2d0)
274#define DMA_TX_STATUS_BUSY_OFF 0
275#define DMA_TX_STATUS_BUSY_MSK (0x1 << DMA_TX_STATUS_BUSY_OFF)
276#define DMA_RX_STATUS (PORT_BASE + 0x2e8)
277#define DMA_RX_STATUS_BUSY_OFF 0
278#define DMA_RX_STATUS_BUSY_MSK (0x1 << DMA_RX_STATUS_BUSY_OFF)
279
280#define AXI_CFG (0x5100)
281#define AM_CFG_MAX_TRANS (0x5010)
282#define AM_CFG_SINGLE_PORT_MAX_TRANS (0x5014)
283
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284#define AXI_MASTER_CFG_BASE (0x5000)
285#define AM_CTRL_GLOBAL (0x0)
286#define AM_CURR_TRANS_RETURN (0x150)
287
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288/* HW dma structures */
289/* Delivery queue header */
290/* dw0 */
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291#define CMD_HDR_ABORT_FLAG_OFF 0
292#define CMD_HDR_ABORT_FLAG_MSK (0x3 << CMD_HDR_ABORT_FLAG_OFF)
293#define CMD_HDR_ABORT_DEVICE_TYPE_OFF 2
294#define CMD_HDR_ABORT_DEVICE_TYPE_MSK (0x1 << CMD_HDR_ABORT_DEVICE_TYPE_OFF)
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295#define CMD_HDR_RESP_REPORT_OFF 5
296#define CMD_HDR_RESP_REPORT_MSK (0x1 << CMD_HDR_RESP_REPORT_OFF)
297#define CMD_HDR_TLR_CTRL_OFF 6
298#define CMD_HDR_TLR_CTRL_MSK (0x3 << CMD_HDR_TLR_CTRL_OFF)
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299#define CMD_HDR_PHY_ID_OFF 8
300#define CMD_HDR_PHY_ID_MSK (0x1ff << CMD_HDR_PHY_ID_OFF)
301#define CMD_HDR_FORCE_PHY_OFF 17
302#define CMD_HDR_FORCE_PHY_MSK (0x1 << CMD_HDR_FORCE_PHY_OFF)
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303#define CMD_HDR_PORT_OFF 18
304#define CMD_HDR_PORT_MSK (0xf << CMD_HDR_PORT_OFF)
305#define CMD_HDR_PRIORITY_OFF 27
306#define CMD_HDR_PRIORITY_MSK (0x1 << CMD_HDR_PRIORITY_OFF)
307#define CMD_HDR_CMD_OFF 29
308#define CMD_HDR_CMD_MSK (0x7 << CMD_HDR_CMD_OFF)
309/* dw1 */
310#define CMD_HDR_DIR_OFF 5
311#define CMD_HDR_DIR_MSK (0x3 << CMD_HDR_DIR_OFF)
312#define CMD_HDR_RESET_OFF 7
313#define CMD_HDR_RESET_MSK (0x1 << CMD_HDR_RESET_OFF)
314#define CMD_HDR_VDTL_OFF 10
315#define CMD_HDR_VDTL_MSK (0x1 << CMD_HDR_VDTL_OFF)
316#define CMD_HDR_FRAME_TYPE_OFF 11
317#define CMD_HDR_FRAME_TYPE_MSK (0x1f << CMD_HDR_FRAME_TYPE_OFF)
318#define CMD_HDR_DEV_ID_OFF 16
319#define CMD_HDR_DEV_ID_MSK (0xffff << CMD_HDR_DEV_ID_OFF)
320/* dw2 */
321#define CMD_HDR_CFL_OFF 0
322#define CMD_HDR_CFL_MSK (0x1ff << CMD_HDR_CFL_OFF)
323#define CMD_HDR_NCQ_TAG_OFF 10
324#define CMD_HDR_NCQ_TAG_MSK (0x1f << CMD_HDR_NCQ_TAG_OFF)
325#define CMD_HDR_MRFL_OFF 15
326#define CMD_HDR_MRFL_MSK (0x1ff << CMD_HDR_MRFL_OFF)
327#define CMD_HDR_SG_MOD_OFF 24
328#define CMD_HDR_SG_MOD_MSK (0x3 << CMD_HDR_SG_MOD_OFF)
329#define CMD_HDR_FIRST_BURST_OFF 26
330#define CMD_HDR_FIRST_BURST_MSK (0x1 << CMD_HDR_SG_MOD_OFF)
331/* dw3 */
332#define CMD_HDR_IPTT_OFF 0
333#define CMD_HDR_IPTT_MSK (0xffff << CMD_HDR_IPTT_OFF)
334/* dw6 */
335#define CMD_HDR_DIF_SGL_LEN_OFF 0
336#define CMD_HDR_DIF_SGL_LEN_MSK (0xffff << CMD_HDR_DIF_SGL_LEN_OFF)
337#define CMD_HDR_DATA_SGL_LEN_OFF 16
338#define CMD_HDR_DATA_SGL_LEN_MSK (0xffff << CMD_HDR_DATA_SGL_LEN_OFF)
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339#define CMD_HDR_ABORT_IPTT_OFF 16
340#define CMD_HDR_ABORT_IPTT_MSK (0xffff << CMD_HDR_ABORT_IPTT_OFF)
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341
342/* Completion header */
343/* dw0 */
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344#define CMPLT_HDR_ERR_PHASE_OFF 2
345#define CMPLT_HDR_ERR_PHASE_MSK (0xff << CMPLT_HDR_ERR_PHASE_OFF)
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346#define CMPLT_HDR_RSPNS_XFRD_OFF 10
347#define CMPLT_HDR_RSPNS_XFRD_MSK (0x1 << CMPLT_HDR_RSPNS_XFRD_OFF)
348#define CMPLT_HDR_ERX_OFF 12
349#define CMPLT_HDR_ERX_MSK (0x1 << CMPLT_HDR_ERX_OFF)
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350#define CMPLT_HDR_ABORT_STAT_OFF 13
351#define CMPLT_HDR_ABORT_STAT_MSK (0x7 << CMPLT_HDR_ABORT_STAT_OFF)
352/* abort_stat */
353#define STAT_IO_NOT_VALID 0x1
354#define STAT_IO_NO_DEVICE 0x2
355#define STAT_IO_COMPLETE 0x3
356#define STAT_IO_ABORTED 0x4
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357/* dw1 */
358#define CMPLT_HDR_IPTT_OFF 0
359#define CMPLT_HDR_IPTT_MSK (0xffff << CMPLT_HDR_IPTT_OFF)
360#define CMPLT_HDR_DEV_ID_OFF 16
361#define CMPLT_HDR_DEV_ID_MSK (0xffff << CMPLT_HDR_DEV_ID_OFF)
362
363/* ITCT header */
364/* qw0 */
365#define ITCT_HDR_DEV_TYPE_OFF 0
366#define ITCT_HDR_DEV_TYPE_MSK (0x3 << ITCT_HDR_DEV_TYPE_OFF)
367#define ITCT_HDR_VALID_OFF 2
368#define ITCT_HDR_VALID_MSK (0x1 << ITCT_HDR_VALID_OFF)
369#define ITCT_HDR_MCR_OFF 5
370#define ITCT_HDR_MCR_MSK (0xf << ITCT_HDR_MCR_OFF)
371#define ITCT_HDR_VLN_OFF 9
372#define ITCT_HDR_VLN_MSK (0xf << ITCT_HDR_VLN_OFF)
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373#define ITCT_HDR_SMP_TIMEOUT_OFF 16
374#define ITCT_HDR_SMP_TIMEOUT_8US 1
375#define ITCT_HDR_SMP_TIMEOUT (ITCT_HDR_SMP_TIMEOUT_8US * \
376 250) /* 2ms */
377#define ITCT_HDR_AWT_CONTINUE_OFF 25
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378#define ITCT_HDR_PORT_ID_OFF 28
379#define ITCT_HDR_PORT_ID_MSK (0xf << ITCT_HDR_PORT_ID_OFF)
380/* qw2 */
381#define ITCT_HDR_INLT_OFF 0
382#define ITCT_HDR_INLT_MSK (0xffffULL << ITCT_HDR_INLT_OFF)
383#define ITCT_HDR_BITLT_OFF 16
384#define ITCT_HDR_BITLT_MSK (0xffffULL << ITCT_HDR_BITLT_OFF)
385#define ITCT_HDR_MCTLT_OFF 32
386#define ITCT_HDR_MCTLT_MSK (0xffffULL << ITCT_HDR_MCTLT_OFF)
387#define ITCT_HDR_RTOLT_OFF 48
388#define ITCT_HDR_RTOLT_MSK (0xffffULL << ITCT_HDR_RTOLT_OFF)
389
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390#define HISI_SAS_FATAL_INT_NR 2
391
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392struct hisi_sas_complete_v2_hdr {
393 __le32 dw0;
394 __le32 dw1;
395 __le32 act;
396 __le32 dw3;
397};
398
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399struct hisi_sas_err_record_v2 {
400 /* dw0 */
401 __le32 trans_tx_fail_type;
402
403 /* dw1 */
404 __le32 trans_rx_fail_type;
405
406 /* dw2 */
407 __le16 dma_tx_err_type;
408 __le16 sipc_rx_err_type;
409
410 /* dw3 */
411 __le32 dma_rx_err_type;
412};
413
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414struct signal_attenuation_s {
415 u32 de_emphasis;
416 u32 preshoot;
417 u32 boost;
418};
419
420struct sig_atten_lu_s {
421 const struct signal_attenuation_s *att;
422 u32 sas_phy_ctrl;
423};
424
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425static const struct hisi_sas_hw_error one_bit_ecc_errors[] = {
426 {
427 .irq_msk = BIT(SAS_ECC_INTR_DQE_ECC_1B_OFF),
428 .msk = HGC_DQE_ECC_1B_ADDR_MSK,
429 .shift = HGC_DQE_ECC_1B_ADDR_OFF,
729428ca 430 .msg = "hgc_dqe_acc1b_intr found: Ram address is 0x%08X\n",
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431 .reg = HGC_DQE_ECC_ADDR,
432 },
433 {
434 .irq_msk = BIT(SAS_ECC_INTR_IOST_ECC_1B_OFF),
435 .msk = HGC_IOST_ECC_1B_ADDR_MSK,
436 .shift = HGC_IOST_ECC_1B_ADDR_OFF,
729428ca 437 .msg = "hgc_iost_acc1b_intr found: Ram address is 0x%08X\n",
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438 .reg = HGC_IOST_ECC_ADDR,
439 },
440 {
441 .irq_msk = BIT(SAS_ECC_INTR_ITCT_ECC_1B_OFF),
442 .msk = HGC_ITCT_ECC_1B_ADDR_MSK,
443 .shift = HGC_ITCT_ECC_1B_ADDR_OFF,
729428ca 444 .msg = "hgc_itct_acc1b_intr found: am address is 0x%08X\n",
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445 .reg = HGC_ITCT_ECC_ADDR,
446 },
447 {
448 .irq_msk = BIT(SAS_ECC_INTR_IOSTLIST_ECC_1B_OFF),
449 .msk = HGC_LM_DFX_STATUS2_IOSTLIST_MSK,
450 .shift = HGC_LM_DFX_STATUS2_IOSTLIST_OFF,
729428ca 451 .msg = "hgc_iostl_acc1b_intr found: memory address is 0x%08X\n",
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452 .reg = HGC_LM_DFX_STATUS2,
453 },
454 {
455 .irq_msk = BIT(SAS_ECC_INTR_ITCTLIST_ECC_1B_OFF),
456 .msk = HGC_LM_DFX_STATUS2_ITCTLIST_MSK,
457 .shift = HGC_LM_DFX_STATUS2_ITCTLIST_OFF,
729428ca 458 .msg = "hgc_itctl_acc1b_intr found: memory address is 0x%08X\n",
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459 .reg = HGC_LM_DFX_STATUS2,
460 },
461 {
462 .irq_msk = BIT(SAS_ECC_INTR_CQE_ECC_1B_OFF),
463 .msk = HGC_CQE_ECC_1B_ADDR_MSK,
464 .shift = HGC_CQE_ECC_1B_ADDR_OFF,
729428ca 465 .msg = "hgc_cqe_acc1b_intr found: Ram address is 0x%08X\n",
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466 .reg = HGC_CQE_ECC_ADDR,
467 },
468 {
469 .irq_msk = BIT(SAS_ECC_INTR_NCQ_MEM0_ECC_1B_OFF),
470 .msk = HGC_RXM_DFX_STATUS14_MEM0_MSK,
471 .shift = HGC_RXM_DFX_STATUS14_MEM0_OFF,
729428ca 472 .msg = "rxm_mem0_acc1b_intr found: memory address is 0x%08X\n",
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473 .reg = HGC_RXM_DFX_STATUS14,
474 },
475 {
476 .irq_msk = BIT(SAS_ECC_INTR_NCQ_MEM1_ECC_1B_OFF),
477 .msk = HGC_RXM_DFX_STATUS14_MEM1_MSK,
478 .shift = HGC_RXM_DFX_STATUS14_MEM1_OFF,
729428ca 479 .msg = "rxm_mem1_acc1b_intr found: memory address is 0x%08X\n",
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480 .reg = HGC_RXM_DFX_STATUS14,
481 },
482 {
483 .irq_msk = BIT(SAS_ECC_INTR_NCQ_MEM2_ECC_1B_OFF),
484 .msk = HGC_RXM_DFX_STATUS14_MEM2_MSK,
485 .shift = HGC_RXM_DFX_STATUS14_MEM2_OFF,
729428ca 486 .msg = "rxm_mem2_acc1b_intr found: memory address is 0x%08X\n",
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487 .reg = HGC_RXM_DFX_STATUS14,
488 },
489 {
490 .irq_msk = BIT(SAS_ECC_INTR_NCQ_MEM3_ECC_1B_OFF),
491 .msk = HGC_RXM_DFX_STATUS15_MEM3_MSK,
492 .shift = HGC_RXM_DFX_STATUS15_MEM3_OFF,
729428ca 493 .msg = "rxm_mem3_acc1b_intr found: memory address is 0x%08X\n",
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494 .reg = HGC_RXM_DFX_STATUS15,
495 },
496};
497
498static const struct hisi_sas_hw_error multi_bit_ecc_errors[] = {
499 {
500 .irq_msk = BIT(SAS_ECC_INTR_DQE_ECC_MB_OFF),
501 .msk = HGC_DQE_ECC_MB_ADDR_MSK,
502 .shift = HGC_DQE_ECC_MB_ADDR_OFF,
729428ca 503 .msg = "hgc_dqe_accbad_intr (0x%x) found: Ram address is 0x%08X\n",
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504 .reg = HGC_DQE_ECC_ADDR,
505 },
506 {
507 .irq_msk = BIT(SAS_ECC_INTR_IOST_ECC_MB_OFF),
508 .msk = HGC_IOST_ECC_MB_ADDR_MSK,
509 .shift = HGC_IOST_ECC_MB_ADDR_OFF,
729428ca 510 .msg = "hgc_iost_accbad_intr (0x%x) found: Ram address is 0x%08X\n",
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511 .reg = HGC_IOST_ECC_ADDR,
512 },
513 {
514 .irq_msk = BIT(SAS_ECC_INTR_ITCT_ECC_MB_OFF),
515 .msk = HGC_ITCT_ECC_MB_ADDR_MSK,
516 .shift = HGC_ITCT_ECC_MB_ADDR_OFF,
729428ca 517 .msg = "hgc_itct_accbad_intr (0x%x) found: Ram address is 0x%08X\n",
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518 .reg = HGC_ITCT_ECC_ADDR,
519 },
520 {
521 .irq_msk = BIT(SAS_ECC_INTR_IOSTLIST_ECC_MB_OFF),
522 .msk = HGC_LM_DFX_STATUS2_IOSTLIST_MSK,
523 .shift = HGC_LM_DFX_STATUS2_IOSTLIST_OFF,
729428ca 524 .msg = "hgc_iostl_accbad_intr (0x%x) found: memory address is 0x%08X\n",
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525 .reg = HGC_LM_DFX_STATUS2,
526 },
527 {
528 .irq_msk = BIT(SAS_ECC_INTR_ITCTLIST_ECC_MB_OFF),
529 .msk = HGC_LM_DFX_STATUS2_ITCTLIST_MSK,
530 .shift = HGC_LM_DFX_STATUS2_ITCTLIST_OFF,
729428ca 531 .msg = "hgc_itctl_accbad_intr (0x%x) found: memory address is 0x%08X\n",
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532 .reg = HGC_LM_DFX_STATUS2,
533 },
534 {
535 .irq_msk = BIT(SAS_ECC_INTR_CQE_ECC_MB_OFF),
536 .msk = HGC_CQE_ECC_MB_ADDR_MSK,
537 .shift = HGC_CQE_ECC_MB_ADDR_OFF,
729428ca 538 .msg = "hgc_cqe_accbad_intr (0x%x) found: Ram address is 0x%08X\n",
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539 .reg = HGC_CQE_ECC_ADDR,
540 },
541 {
542 .irq_msk = BIT(SAS_ECC_INTR_NCQ_MEM0_ECC_MB_OFF),
543 .msk = HGC_RXM_DFX_STATUS14_MEM0_MSK,
544 .shift = HGC_RXM_DFX_STATUS14_MEM0_OFF,
729428ca 545 .msg = "rxm_mem0_accbad_intr (0x%x) found: memory address is 0x%08X\n",
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546 .reg = HGC_RXM_DFX_STATUS14,
547 },
548 {
549 .irq_msk = BIT(SAS_ECC_INTR_NCQ_MEM1_ECC_MB_OFF),
550 .msk = HGC_RXM_DFX_STATUS14_MEM1_MSK,
551 .shift = HGC_RXM_DFX_STATUS14_MEM1_OFF,
729428ca 552 .msg = "rxm_mem1_accbad_intr (0x%x) found: memory address is 0x%08X\n",
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553 .reg = HGC_RXM_DFX_STATUS14,
554 },
555 {
556 .irq_msk = BIT(SAS_ECC_INTR_NCQ_MEM2_ECC_MB_OFF),
557 .msk = HGC_RXM_DFX_STATUS14_MEM2_MSK,
558 .shift = HGC_RXM_DFX_STATUS14_MEM2_OFF,
729428ca 559 .msg = "rxm_mem2_accbad_intr (0x%x) found: memory address is 0x%08X\n",
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560 .reg = HGC_RXM_DFX_STATUS14,
561 },
562 {
563 .irq_msk = BIT(SAS_ECC_INTR_NCQ_MEM3_ECC_MB_OFF),
564 .msk = HGC_RXM_DFX_STATUS15_MEM3_MSK,
565 .shift = HGC_RXM_DFX_STATUS15_MEM3_OFF,
729428ca 566 .msg = "rxm_mem3_accbad_intr (0x%x) found: memory address is 0x%08X\n",
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567 .reg = HGC_RXM_DFX_STATUS15,
568 },
569};
570
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571enum {
572 HISI_SAS_PHY_PHY_UPDOWN,
d3bf3d84 573 HISI_SAS_PHY_CHNL_INT,
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574 HISI_SAS_PHY_INT_NR
575};
576
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577enum {
578 TRANS_TX_FAIL_BASE = 0x0, /* dw0 */
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579 TRANS_RX_FAIL_BASE = 0x20, /* dw1 */
580 DMA_TX_ERR_BASE = 0x40, /* dw2 bit 15-0 */
581 SIPC_RX_ERR_BASE = 0x50, /* dw2 bit 31-16*/
582 DMA_RX_ERR_BASE = 0x60, /* dw3 */
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583
584 /* trans tx*/
585 TRANS_TX_OPEN_FAIL_WITH_IT_NEXUS_LOSS = TRANS_TX_FAIL_BASE, /* 0x0 */
586 TRANS_TX_ERR_PHY_NOT_ENABLE, /* 0x1 */
587 TRANS_TX_OPEN_CNX_ERR_WRONG_DESTINATION, /* 0x2 */
588 TRANS_TX_OPEN_CNX_ERR_ZONE_VIOLATION, /* 0x3 */
589 TRANS_TX_OPEN_CNX_ERR_BY_OTHER, /* 0x4 */
590 RESERVED0, /* 0x5 */
591 TRANS_TX_OPEN_CNX_ERR_AIP_TIMEOUT, /* 0x6 */
592 TRANS_TX_OPEN_CNX_ERR_STP_RESOURCES_BUSY, /* 0x7 */
593 TRANS_TX_OPEN_CNX_ERR_PROTOCOL_NOT_SUPPORTED, /* 0x8 */
594 TRANS_TX_OPEN_CNX_ERR_CONNECTION_RATE_NOT_SUPPORTED, /* 0x9 */
595 TRANS_TX_OPEN_CNX_ERR_BAD_DESTINATION, /* 0xa */
596 TRANS_TX_OPEN_CNX_ERR_BREAK_RCVD, /* 0xb */
597 TRANS_TX_OPEN_CNX_ERR_LOW_PHY_POWER, /* 0xc */
598 TRANS_TX_OPEN_CNX_ERR_PATHWAY_BLOCKED, /* 0xd */
599 TRANS_TX_OPEN_CNX_ERR_OPEN_TIMEOUT, /* 0xe */
600 TRANS_TX_OPEN_CNX_ERR_NO_DESTINATION, /* 0xf */
601 TRANS_TX_OPEN_RETRY_ERR_THRESHOLD_REACHED, /* 0x10 */
602 TRANS_TX_ERR_FRAME_TXED, /* 0x11 */
603 TRANS_TX_ERR_WITH_BREAK_TIMEOUT, /* 0x12 */
604 TRANS_TX_ERR_WITH_BREAK_REQUEST, /* 0x13 */
605 TRANS_TX_ERR_WITH_BREAK_RECEVIED, /* 0x14 */
606 TRANS_TX_ERR_WITH_CLOSE_TIMEOUT, /* 0x15 */
607 TRANS_TX_ERR_WITH_CLOSE_NORMAL, /* 0x16 for ssp*/
608 TRANS_TX_ERR_WITH_CLOSE_PHYDISALE, /* 0x17 */
609 TRANS_TX_ERR_WITH_CLOSE_DWS_TIMEOUT, /* 0x18 */
610 TRANS_TX_ERR_WITH_CLOSE_COMINIT, /* 0x19 */
611 TRANS_TX_ERR_WITH_NAK_RECEVIED, /* 0x1a for ssp*/
612 TRANS_TX_ERR_WITH_ACK_NAK_TIMEOUT, /* 0x1b for ssp*/
613 /*IO_TX_ERR_WITH_R_ERR_RECEVIED, [> 0x1b for sata/stp<] */
614 TRANS_TX_ERR_WITH_CREDIT_TIMEOUT, /* 0x1c for ssp */
615 /*IO_RX_ERR_WITH_SATA_DEVICE_LOST 0x1c for sata/stp */
616 TRANS_TX_ERR_WITH_IPTT_CONFLICT, /* 0x1d for ssp/smp */
617 TRANS_TX_ERR_WITH_OPEN_BY_DES_OR_OTHERS, /* 0x1e */
618 /*IO_TX_ERR_WITH_SYNC_RXD, [> 0x1e <] for sata/stp */
619 TRANS_TX_ERR_WITH_WAIT_RECV_TIMEOUT, /* 0x1f for sata/stp */
620
621 /* trans rx */
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622 TRANS_RX_ERR_WITH_RXFRAME_CRC_ERR = TRANS_RX_FAIL_BASE, /* 0x20 */
623 TRANS_RX_ERR_WITH_RXFIS_8B10B_DISP_ERR, /* 0x21 for sata/stp */
624 TRANS_RX_ERR_WITH_RXFRAME_HAVE_ERRPRM, /* 0x22 for ssp/smp */
625 /*IO_ERR_WITH_RXFIS_8B10B_CODE_ERR, [> 0x22 <] for sata/stp */
626 TRANS_RX_ERR_WITH_RXFIS_DECODE_ERROR, /* 0x23 for sata/stp */
627 TRANS_RX_ERR_WITH_RXFIS_CRC_ERR, /* 0x24 for sata/stp */
628 TRANS_RX_ERR_WITH_RXFRAME_LENGTH_OVERRUN, /* 0x25 for smp */
629 /*IO_ERR_WITH_RXFIS_TX SYNCP, [> 0x25 <] for sata/stp */
630 TRANS_RX_ERR_WITH_RXFIS_RX_SYNCP, /* 0x26 for sata/stp*/
631 TRANS_RX_ERR_WITH_LINK_BUF_OVERRUN, /* 0x27 */
632 TRANS_RX_ERR_WITH_BREAK_TIMEOUT, /* 0x28 */
633 TRANS_RX_ERR_WITH_BREAK_REQUEST, /* 0x29 */
634 TRANS_RX_ERR_WITH_BREAK_RECEVIED, /* 0x2a */
635 RESERVED1, /* 0x2b */
636 TRANS_RX_ERR_WITH_CLOSE_NORMAL, /* 0x2c */
637 TRANS_RX_ERR_WITH_CLOSE_PHY_DISABLE, /* 0x2d */
638 TRANS_RX_ERR_WITH_CLOSE_DWS_TIMEOUT, /* 0x2e */
639 TRANS_RX_ERR_WITH_CLOSE_COMINIT, /* 0x2f */
640 TRANS_RX_ERR_WITH_DATA_LEN0, /* 0x30 for ssp/smp */
641 TRANS_RX_ERR_WITH_BAD_HASH, /* 0x31 for ssp */
642 /*IO_RX_ERR_WITH_FIS_TOO_SHORT, [> 0x31 <] for sata/stp */
643 TRANS_RX_XRDY_WLEN_ZERO_ERR, /* 0x32 for ssp*/
644 /*IO_RX_ERR_WITH_FIS_TOO_LONG, [> 0x32 <] for sata/stp */
645 TRANS_RX_SSP_FRM_LEN_ERR, /* 0x33 for ssp */
646 /*IO_RX_ERR_WITH_SATA_DEVICE_LOST, [> 0x33 <] for sata */
647 RESERVED2, /* 0x34 */
648 RESERVED3, /* 0x35 */
649 RESERVED4, /* 0x36 */
650 RESERVED5, /* 0x37 */
651 TRANS_RX_ERR_WITH_BAD_FRM_TYPE, /* 0x38 */
652 TRANS_RX_SMP_FRM_LEN_ERR, /* 0x39 */
653 TRANS_RX_SMP_RESP_TIMEOUT_ERR, /* 0x3a */
654 RESERVED6, /* 0x3b */
655 RESERVED7, /* 0x3c */
656 RESERVED8, /* 0x3d */
657 RESERVED9, /* 0x3e */
658 TRANS_RX_R_ERR, /* 0x3f */
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659
660 /* dma tx */
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661 DMA_TX_DIF_CRC_ERR = DMA_TX_ERR_BASE, /* 0x40 */
662 DMA_TX_DIF_APP_ERR, /* 0x41 */
663 DMA_TX_DIF_RPP_ERR, /* 0x42 */
664 DMA_TX_DATA_SGL_OVERFLOW, /* 0x43 */
665 DMA_TX_DIF_SGL_OVERFLOW, /* 0x44 */
666 DMA_TX_UNEXP_XFER_ERR, /* 0x45 */
667 DMA_TX_UNEXP_RETRANS_ERR, /* 0x46 */
668 DMA_TX_XFER_LEN_OVERFLOW, /* 0x47 */
669 DMA_TX_XFER_OFFSET_ERR, /* 0x48 */
670 DMA_TX_RAM_ECC_ERR, /* 0x49 */
671 DMA_TX_DIF_LEN_ALIGN_ERR, /* 0x4a */
672 DMA_TX_MAX_ERR_CODE,
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673
674 /* sipc rx */
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675 SIPC_RX_FIS_STATUS_ERR_BIT_VLD = SIPC_RX_ERR_BASE, /* 0x50 */
676 SIPC_RX_PIO_WRSETUP_STATUS_DRQ_ERR, /* 0x51 */
677 SIPC_RX_FIS_STATUS_BSY_BIT_ERR, /* 0x52 */
678 SIPC_RX_WRSETUP_LEN_ODD_ERR, /* 0x53 */
679 SIPC_RX_WRSETUP_LEN_ZERO_ERR, /* 0x54 */
680 SIPC_RX_WRDATA_LEN_NOT_MATCH_ERR, /* 0x55 */
681 SIPC_RX_NCQ_WRSETUP_OFFSET_ERR, /* 0x56 */
682 SIPC_RX_NCQ_WRSETUP_AUTO_ACTIVE_ERR, /* 0x57 */
683 SIPC_RX_SATA_UNEXP_FIS_ERR, /* 0x58 */
684 SIPC_RX_WRSETUP_ESTATUS_ERR, /* 0x59 */
685 SIPC_RX_DATA_UNDERFLOW_ERR, /* 0x5a */
686 SIPC_RX_MAX_ERR_CODE,
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687
688 /* dma rx */
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689 DMA_RX_DIF_CRC_ERR = DMA_RX_ERR_BASE, /* 0x60 */
690 DMA_RX_DIF_APP_ERR, /* 0x61 */
691 DMA_RX_DIF_RPP_ERR, /* 0x62 */
692 DMA_RX_DATA_SGL_OVERFLOW, /* 0x63 */
693 DMA_RX_DIF_SGL_OVERFLOW, /* 0x64 */
694 DMA_RX_DATA_LEN_OVERFLOW, /* 0x65 */
695 DMA_RX_DATA_LEN_UNDERFLOW, /* 0x66 */
696 DMA_RX_DATA_OFFSET_ERR, /* 0x67 */
697 RESERVED10, /* 0x68 */
698 DMA_RX_SATA_FRAME_TYPE_ERR, /* 0x69 */
699 DMA_RX_RESP_BUF_OVERFLOW, /* 0x6a */
700 DMA_RX_UNEXP_RETRANS_RESP_ERR, /* 0x6b */
701 DMA_RX_UNEXP_NORM_RESP_ERR, /* 0x6c */
702 DMA_RX_UNEXP_RDFRAME_ERR, /* 0x6d */
703 DMA_RX_PIO_DATA_LEN_ERR, /* 0x6e */
704 DMA_RX_RDSETUP_STATUS_ERR, /* 0x6f */
705 DMA_RX_RDSETUP_STATUS_DRQ_ERR, /* 0x70 */
706 DMA_RX_RDSETUP_STATUS_BSY_ERR, /* 0x71 */
707 DMA_RX_RDSETUP_LEN_ODD_ERR, /* 0x72 */
708 DMA_RX_RDSETUP_LEN_ZERO_ERR, /* 0x73 */
709 DMA_RX_RDSETUP_LEN_OVER_ERR, /* 0x74 */
710 DMA_RX_RDSETUP_OFFSET_ERR, /* 0x75 */
711 DMA_RX_RDSETUP_ACTIVE_ERR, /* 0x76 */
712 DMA_RX_RDSETUP_ESTATUS_ERR, /* 0x77 */
713 DMA_RX_RAM_ECC_ERR, /* 0x78 */
714 DMA_RX_UNKNOWN_FRM_ERR, /* 0x79 */
715 DMA_RX_MAX_ERR_CODE,
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716};
717
94eac9e1 718#define HISI_SAS_COMMAND_ENTRIES_V2_HW 4096
32ccba52 719#define HISI_MAX_SATA_SUPPORT_V2_HW (HISI_SAS_COMMAND_ENTRIES_V2_HW/64 - 1)
94eac9e1 720
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721#define DIR_NO_DATA 0
722#define DIR_TO_INI 1
723#define DIR_TO_DEVICE 2
724#define DIR_RESERVED 3
725
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726#define ERR_ON_TX_PHASE(err_phase) (err_phase == 0x2 || \
727 err_phase == 0x4 || err_phase == 0x8 ||\
728 err_phase == 0x6 || err_phase == 0xa)
729#define ERR_ON_RX_PHASE(err_phase) (err_phase == 0x10 || \
730 err_phase == 0x20 || err_phase == 0x40)
731
77570eed 732static void link_timeout_disable_link(struct timer_list *t);
f2f89c32 733
94eac9e1
JG
734static u32 hisi_sas_read32(struct hisi_hba *hisi_hba, u32 off)
735{
736 void __iomem *regs = hisi_hba->regs + off;
737
738 return readl(regs);
739}
740
8c36e31d
JG
741static u32 hisi_sas_read32_relaxed(struct hisi_hba *hisi_hba, u32 off)
742{
743 void __iomem *regs = hisi_hba->regs + off;
744
745 return readl_relaxed(regs);
746}
747
94eac9e1
JG
748static void hisi_sas_write32(struct hisi_hba *hisi_hba, u32 off, u32 val)
749{
750 void __iomem *regs = hisi_hba->regs + off;
751
752 writel(val, regs);
753}
754
755static void hisi_sas_phy_write32(struct hisi_hba *hisi_hba, int phy_no,
756 u32 off, u32 val)
757{
758 void __iomem *regs = hisi_hba->regs + (0x400 * phy_no) + off;
759
760 writel(val, regs);
761}
762
763static u32 hisi_sas_phy_read32(struct hisi_hba *hisi_hba,
764 int phy_no, u32 off)
765{
766 void __iomem *regs = hisi_hba->regs + (0x400 * phy_no) + off;
767
768 return readl(regs);
769}
770
330fa7f3
JG
771/* This function needs to be protected from pre-emption. */
772static int
8041484f 773slot_index_alloc_quirk_v2_hw(struct hisi_hba *hisi_hba,
32ccba52 774 struct domain_device *device)
330fa7f3 775{
330fa7f3 776 int sata_dev = dev_is_sata(device);
32ccba52
XT
777 void *bitmap = hisi_hba->slot_index_tags;
778 struct hisi_sas_device *sas_dev = device->lldd_dev;
779 int sata_idx = sas_dev->sata_idx;
780 int start, end;
8041484f 781 unsigned long flags;
32ccba52
XT
782
783 if (!sata_dev) {
784 /*
785 * STP link SoC bug workaround: index starts from 1.
786 * additionally, we can only allocate odd IPTT(1~4095)
787 * for SAS/SMP device.
788 */
789 start = 1;
790 end = hisi_hba->slot_index_count;
791 } else {
792 if (sata_idx >= HISI_MAX_SATA_SUPPORT_V2_HW)
793 return -EINVAL;
794
795 /*
796 * For SATA device: allocate even IPTT in this interval
797 * [64*(sata_idx+1), 64*(sata_idx+2)], then each SATA device
798 * own 32 IPTTs. IPTT 0 shall not be used duing to STP link
799 * SoC bug workaround. So we ignore the first 32 even IPTTs.
800 */
801 start = 64 * (sata_idx + 1);
802 end = 64 * (sata_idx + 2);
803 }
330fa7f3 804
8041484f 805 spin_lock_irqsave(&hisi_hba->lock, flags);
330fa7f3 806 while (1) {
32ccba52
XT
807 start = find_next_zero_bit(bitmap,
808 hisi_hba->slot_index_count, start);
7b959ece
JG
809 if (start >= end) {
810 spin_unlock_irqrestore(&hisi_hba->lock, flags);
330fa7f3 811 return -SAS_QUEUE_FULL;
7b959ece 812 }
330fa7f3 813 /*
32ccba52
XT
814 * SAS IPTT bit0 should be 1, and SATA IPTT bit0 should be 0.
815 */
816 if (sata_dev ^ (start & 1))
330fa7f3 817 break;
32ccba52 818 start++;
330fa7f3
JG
819 }
820
32ccba52 821 set_bit(start, bitmap);
8041484f
XC
822 spin_unlock_irqrestore(&hisi_hba->lock, flags);
823 return start;
330fa7f3
JG
824}
825
32ccba52
XT
826static bool sata_index_alloc_v2_hw(struct hisi_hba *hisi_hba, int *idx)
827{
828 unsigned int index;
11b75249 829 struct device *dev = hisi_hba->dev;
32ccba52
XT
830 void *bitmap = hisi_hba->sata_dev_bitmap;
831
832 index = find_first_zero_bit(bitmap, HISI_MAX_SATA_SUPPORT_V2_HW);
833 if (index >= HISI_MAX_SATA_SUPPORT_V2_HW) {
834 dev_warn(dev, "alloc sata index failed, index=%d\n", index);
835 return false;
836 }
837
838 set_bit(index, bitmap);
839 *idx = index;
840 return true;
841}
842
843
b2bdaf2b
JG
844static struct
845hisi_sas_device *alloc_dev_quirk_v2_hw(struct domain_device *device)
846{
847 struct hisi_hba *hisi_hba = device->port->ha->lldd_ha;
848 struct hisi_sas_device *sas_dev = NULL;
849 int i, sata_dev = dev_is_sata(device);
32ccba52 850 int sata_idx = -1;
302e0901 851 unsigned long flags;
b2bdaf2b 852
302e0901 853 spin_lock_irqsave(&hisi_hba->lock, flags);
32ccba52
XT
854
855 if (sata_dev)
856 if (!sata_index_alloc_v2_hw(hisi_hba, &sata_idx))
857 goto out;
858
b2bdaf2b
JG
859 for (i = 0; i < HISI_SAS_MAX_DEVICES; i++) {
860 /*
861 * SATA device id bit0 should be 0
862 */
863 if (sata_dev && (i & 1))
864 continue;
865 if (hisi_hba->devices[i].dev_type == SAS_PHY_UNUSED) {
b1a49412
XC
866 int queue = i % hisi_hba->queue_count;
867 struct hisi_sas_dq *dq = &hisi_hba->dq[queue];
868
b2bdaf2b
JG
869 hisi_hba->devices[i].device_id = i;
870 sas_dev = &hisi_hba->devices[i];
871 sas_dev->dev_status = HISI_SAS_DEV_NORMAL;
872 sas_dev->dev_type = device->dev_type;
873 sas_dev->hisi_hba = hisi_hba;
874 sas_dev->sas_device = device;
32ccba52 875 sas_dev->sata_idx = sata_idx;
b1a49412 876 sas_dev->dq = dq;
405314df 877 INIT_LIST_HEAD(&hisi_hba->devices[i].list);
b2bdaf2b
JG
878 break;
879 }
880 }
32ccba52
XT
881
882out:
302e0901 883 spin_unlock_irqrestore(&hisi_hba->lock, flags);
b2bdaf2b
JG
884
885 return sas_dev;
886}
887
29a20428
JG
888static void config_phy_opt_mode_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
889{
890 u32 cfg = hisi_sas_phy_read32(hisi_hba, phy_no, PHY_CFG);
891
892 cfg &= ~PHY_CFG_DC_OPT_MSK;
893 cfg |= 1 << PHY_CFG_DC_OPT_OFF;
894 hisi_sas_phy_write32(hisi_hba, phy_no, PHY_CFG, cfg);
895}
896
806bb768
JG
897static void config_id_frame_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
898{
899 struct sas_identify_frame identify_frame;
900 u32 *identify_buffer;
901
902 memset(&identify_frame, 0, sizeof(identify_frame));
903 identify_frame.dev_type = SAS_END_DEVICE;
904 identify_frame.frame_type = 0;
905 identify_frame._un1 = 1;
906 identify_frame.initiator_bits = SAS_PROTOCOL_ALL;
907 identify_frame.target_bits = SAS_PROTOCOL_NONE;
908 memcpy(&identify_frame._un4_11[0], hisi_hba->sas_addr, SAS_ADDR_SIZE);
909 memcpy(&identify_frame.sas_addr[0], hisi_hba->sas_addr, SAS_ADDR_SIZE);
910 identify_frame.phy_id = phy_no;
911 identify_buffer = (u32 *)(&identify_frame);
912
913 hisi_sas_phy_write32(hisi_hba, phy_no, TX_ID_DWORD0,
914 __swab32(identify_buffer[0]));
915 hisi_sas_phy_write32(hisi_hba, phy_no, TX_ID_DWORD1,
d82debec 916 __swab32(identify_buffer[1]));
806bb768 917 hisi_sas_phy_write32(hisi_hba, phy_no, TX_ID_DWORD2,
d82debec 918 __swab32(identify_buffer[2]));
806bb768 919 hisi_sas_phy_write32(hisi_hba, phy_no, TX_ID_DWORD3,
d82debec 920 __swab32(identify_buffer[3]));
806bb768 921 hisi_sas_phy_write32(hisi_hba, phy_no, TX_ID_DWORD4,
d82debec 922 __swab32(identify_buffer[4]));
806bb768
JG
923 hisi_sas_phy_write32(hisi_hba, phy_no, TX_ID_DWORD5,
924 __swab32(identify_buffer[5]));
925}
926
85b2c3c0
JG
927static void setup_itct_v2_hw(struct hisi_hba *hisi_hba,
928 struct hisi_sas_device *sas_dev)
929{
930 struct domain_device *device = sas_dev->sas_device;
11b75249 931 struct device *dev = hisi_hba->dev;
85b2c3c0
JG
932 u64 qw0, device_id = sas_dev->device_id;
933 struct hisi_sas_itct *itct = &hisi_hba->itct[device_id];
934 struct domain_device *parent_dev = device->parent;
2e244f0f
JG
935 struct asd_sas_port *sas_port = device->port;
936 struct hisi_sas_port *port = to_hisi_sas_port(sas_port);
85b2c3c0
JG
937
938 memset(itct, 0, sizeof(*itct));
939
940 /* qw0 */
941 qw0 = 0;
942 switch (sas_dev->dev_type) {
943 case SAS_END_DEVICE:
944 case SAS_EDGE_EXPANDER_DEVICE:
945 case SAS_FANOUT_EXPANDER_DEVICE:
946 qw0 = HISI_SAS_DEV_TYPE_SSP << ITCT_HDR_DEV_TYPE_OFF;
947 break;
948 case SAS_SATA_DEV:
56cc74b9 949 case SAS_SATA_PENDING:
85b2c3c0
JG
950 if (parent_dev && DEV_IS_EXPANDER(parent_dev->dev_type))
951 qw0 = HISI_SAS_DEV_TYPE_STP << ITCT_HDR_DEV_TYPE_OFF;
952 else
953 qw0 = HISI_SAS_DEV_TYPE_SATA << ITCT_HDR_DEV_TYPE_OFF;
954 break;
955 default:
956 dev_warn(dev, "setup itct: unsupported dev type (%d)\n",
957 sas_dev->dev_type);
958 }
959
960 qw0 |= ((1 << ITCT_HDR_VALID_OFF) |
75249268 961 (device->linkrate << ITCT_HDR_MCR_OFF) |
85b2c3c0 962 (1 << ITCT_HDR_VLN_OFF) |
c399acfb
XC
963 (ITCT_HDR_SMP_TIMEOUT << ITCT_HDR_SMP_TIMEOUT_OFF) |
964 (1 << ITCT_HDR_AWT_CONTINUE_OFF) |
85b2c3c0
JG
965 (port->id << ITCT_HDR_PORT_ID_OFF));
966 itct->qw0 = cpu_to_le64(qw0);
967
968 /* qw1 */
969 memcpy(&itct->sas_addr, device->sas_addr, SAS_ADDR_SIZE);
970 itct->sas_addr = __swab64(itct->sas_addr);
971
972 /* qw2 */
f76a0b49 973 if (!dev_is_sata(device))
c399acfb 974 itct->qw2 = cpu_to_le64((5000ULL << ITCT_HDR_INLT_OFF) |
f76a0b49
JG
975 (0x1ULL << ITCT_HDR_BITLT_OFF) |
976 (0x32ULL << ITCT_HDR_MCTLT_OFF) |
977 (0x1ULL << ITCT_HDR_RTOLT_OFF));
85b2c3c0
JG
978}
979
f39943ee 980static void clear_itct_v2_hw(struct hisi_hba *hisi_hba,
85b2c3c0
JG
981 struct hisi_sas_device *sas_dev)
982{
640acc9a 983 DECLARE_COMPLETION_ONSTACK(completion);
c399acfb 984 u64 dev_id = sas_dev->device_id;
85b2c3c0
JG
985 struct hisi_sas_itct *itct = &hisi_hba->itct[dev_id];
986 u32 reg_val = hisi_sas_read32(hisi_hba, ENT_INT_SRC3);
987 int i;
988
640acc9a
XC
989 sas_dev->completion = &completion;
990
85b2c3c0
JG
991 /* clear the itct interrupt state */
992 if (ENT_INT_SRC3_ITC_INT_MSK & reg_val)
993 hisi_sas_write32(hisi_hba, ENT_INT_SRC3,
994 ENT_INT_SRC3_ITC_INT_MSK);
995
85b2c3c0 996 for (i = 0; i < 2; i++) {
640acc9a 997 reg_val = ITCT_CLR_EN_MSK | (dev_id & ITCT_DEV_MSK);
85b2c3c0 998 hisi_sas_write32(hisi_hba, ITCT_CLR, reg_val);
640acc9a 999 wait_for_completion(sas_dev->completion);
85b2c3c0 1000
640acc9a 1001 memset(itct, 0, sizeof(struct hisi_sas_itct));
85b2c3c0
JG
1002 }
1003}
1004
f39943ee
XT
1005static void free_device_v2_hw(struct hisi_sas_device *sas_dev)
1006{
1007 struct hisi_hba *hisi_hba = sas_dev->hisi_hba;
1008
1009 /* SoC bug workaround */
1010 if (dev_is_sata(sas_dev->sas_device))
1011 clear_bit(sas_dev->sata_idx, hisi_hba->sata_dev_bitmap);
1012}
1013
94eac9e1
JG
1014static int reset_hw_v2_hw(struct hisi_hba *hisi_hba)
1015{
1016 int i, reset_val;
1017 u32 val;
1018 unsigned long end_time;
11b75249 1019 struct device *dev = hisi_hba->dev;
94eac9e1
JG
1020
1021 /* The mask needs to be set depending on the number of phys */
1022 if (hisi_hba->n_phy == 9)
1023 reset_val = 0x1fffff;
1024 else
1025 reset_val = 0x7ffff;
1026
d0df8f9a 1027 hisi_sas_write32(hisi_hba, DLVRY_QUEUE_ENABLE, 0);
94eac9e1
JG
1028
1029 /* Disable all of the PHYs */
1030 for (i = 0; i < hisi_hba->n_phy; i++) {
1031 u32 phy_cfg = hisi_sas_phy_read32(hisi_hba, i, PHY_CFG);
1032
1033 phy_cfg &= ~PHY_CTRL_RESET_MSK;
1034 hisi_sas_phy_write32(hisi_hba, i, PHY_CFG, phy_cfg);
1035 }
1036 udelay(50);
1037
1038 /* Ensure DMA tx & rx idle */
1039 for (i = 0; i < hisi_hba->n_phy; i++) {
1040 u32 dma_tx_status, dma_rx_status;
1041
1042 end_time = jiffies + msecs_to_jiffies(1000);
1043
1044 while (1) {
1045 dma_tx_status = hisi_sas_phy_read32(hisi_hba, i,
1046 DMA_TX_STATUS);
1047 dma_rx_status = hisi_sas_phy_read32(hisi_hba, i,
1048 DMA_RX_STATUS);
1049
1050 if (!(dma_tx_status & DMA_TX_STATUS_BUSY_MSK) &&
1051 !(dma_rx_status & DMA_RX_STATUS_BUSY_MSK))
1052 break;
1053
1054 msleep(20);
1055 if (time_after(jiffies, end_time))
1056 return -EIO;
1057 }
1058 }
1059
1060 /* Ensure axi bus idle */
1061 end_time = jiffies + msecs_to_jiffies(1000);
1062 while (1) {
1063 u32 axi_status =
1064 hisi_sas_read32(hisi_hba, AXI_CFG);
1065
1066 if (axi_status == 0)
1067 break;
1068
1069 msleep(20);
1070 if (time_after(jiffies, end_time))
1071 return -EIO;
1072 }
1073
50408712
JG
1074 if (ACPI_HANDLE(dev)) {
1075 acpi_status s;
94eac9e1 1076
50408712
JG
1077 s = acpi_evaluate_object(ACPI_HANDLE(dev), "_RST", NULL, NULL);
1078 if (ACPI_FAILURE(s)) {
1079 dev_err(dev, "Reset failed\n");
1080 return -EIO;
1081 }
1082 } else if (hisi_hba->ctrl) {
1083 /* reset and disable clock*/
1084 regmap_write(hisi_hba->ctrl, hisi_hba->ctrl_reset_reg,
1085 reset_val);
1086 regmap_write(hisi_hba->ctrl, hisi_hba->ctrl_clock_ena_reg + 4,
1087 reset_val);
1088 msleep(1);
1089 regmap_read(hisi_hba->ctrl, hisi_hba->ctrl_reset_sts_reg, &val);
1090 if (reset_val != (val & reset_val)) {
1091 dev_err(dev, "SAS reset fail.\n");
1092 return -EIO;
1093 }
1094
1095 /* De-reset and enable clock*/
1096 regmap_write(hisi_hba->ctrl, hisi_hba->ctrl_reset_reg + 4,
1097 reset_val);
1098 regmap_write(hisi_hba->ctrl, hisi_hba->ctrl_clock_ena_reg,
1099 reset_val);
1100 msleep(1);
1101 regmap_read(hisi_hba->ctrl, hisi_hba->ctrl_reset_sts_reg,
1102 &val);
1103 if (val & reset_val) {
1104 dev_err(dev, "SAS de-reset fail.\n");
1105 return -EIO;
1106 }
bcbc7f1c
XC
1107 } else {
1108 dev_err(dev, "no reset method\n");
1109 return -EINVAL;
1110 }
94eac9e1
JG
1111
1112 return 0;
1113}
1114
c7b9d369
XT
1115/* This function needs to be called after resetting SAS controller. */
1116static void phys_reject_stp_links_v2_hw(struct hisi_hba *hisi_hba)
1117{
1118 u32 cfg;
1119 int phy_no;
1120
1121 hisi_hba->reject_stp_links_msk = (1 << hisi_hba->n_phy) - 1;
1122 for (phy_no = 0; phy_no < hisi_hba->n_phy; phy_no++) {
1123 cfg = hisi_sas_phy_read32(hisi_hba, phy_no, CON_CONTROL);
1124 if (!(cfg & CON_CONTROL_CFG_OPEN_ACC_STP_MSK))
1125 continue;
1126
1127 cfg &= ~CON_CONTROL_CFG_OPEN_ACC_STP_MSK;
1128 hisi_sas_phy_write32(hisi_hba, phy_no, CON_CONTROL, cfg);
1129 }
1130}
1131
1132static void phys_try_accept_stp_links_v2_hw(struct hisi_hba *hisi_hba)
1133{
1134 int phy_no;
1135 u32 dma_tx_dfx1;
1136
1137 for (phy_no = 0; phy_no < hisi_hba->n_phy; phy_no++) {
1138 if (!(hisi_hba->reject_stp_links_msk & BIT(phy_no)))
1139 continue;
1140
1141 dma_tx_dfx1 = hisi_sas_phy_read32(hisi_hba, phy_no,
1142 DMA_TX_DFX1);
1143 if (dma_tx_dfx1 & DMA_TX_DFX1_IPTT_MSK) {
1144 u32 cfg = hisi_sas_phy_read32(hisi_hba,
1145 phy_no, CON_CONTROL);
1146
1147 cfg |= CON_CONTROL_CFG_OPEN_ACC_STP_MSK;
1148 hisi_sas_phy_write32(hisi_hba, phy_no,
1149 CON_CONTROL, cfg);
1150 clear_bit(phy_no, &hisi_hba->reject_stp_links_msk);
1151 }
1152 }
1153}
1154
ad16fe31
XT
1155static const struct signal_attenuation_s x6000 = {9200, 0, 10476};
1156static const struct sig_atten_lu_s sig_atten_lu[] = {
1157 { &x6000, 0x3016a68 },
1158};
1159
94eac9e1
JG
1160static void init_reg_v2_hw(struct hisi_hba *hisi_hba)
1161{
11b75249 1162 struct device *dev = hisi_hba->dev;
ad16fe31
XT
1163 u32 sas_phy_ctrl = 0x30b9908;
1164 u32 signal[3];
94eac9e1
JG
1165 int i;
1166
1167 /* Global registers init */
1168
1169 /* Deal with am-max-transmissions quirk */
50408712 1170 if (device_property_present(dev, "hip06-sas-v2-quirk-amt")) {
94eac9e1
JG
1171 hisi_sas_write32(hisi_hba, AM_CFG_MAX_TRANS, 0x2020);
1172 hisi_sas_write32(hisi_hba, AM_CFG_SINGLE_PORT_MAX_TRANS,
1173 0x2020);
1174 } /* Else, use defaults -> do nothing */
1175
1176 hisi_sas_write32(hisi_hba, DLVRY_QUEUE_ENABLE,
1177 (u32)((1ULL << hisi_hba->queue_count) - 1));
1178 hisi_sas_write32(hisi_hba, AXI_USER1, 0xc0000000);
1179 hisi_sas_write32(hisi_hba, AXI_USER2, 0x10000);
f1dc7518 1180 hisi_sas_write32(hisi_hba, HGC_SAS_TXFAIL_RETRY_CTRL, 0x0);
94eac9e1
JG
1181 hisi_sas_write32(hisi_hba, HGC_SAS_TX_OPEN_FAIL_RETRY_CTRL, 0x7FF);
1182 hisi_sas_write32(hisi_hba, OPENA_WT_CONTI_TIME, 0x1);
1183 hisi_sas_write32(hisi_hba, I_T_NEXUS_LOSS_TIME, 0x1F4);
f76a0b49 1184 hisi_sas_write32(hisi_hba, MAX_CON_TIME_LIMIT_TIME, 0x32);
94eac9e1
JG
1185 hisi_sas_write32(hisi_hba, BUS_INACTIVE_LIMIT_TIME, 0x1);
1186 hisi_sas_write32(hisi_hba, CFG_AGING_TIME, 0x1);
1187 hisi_sas_write32(hisi_hba, HGC_ERR_STAT_EN, 0x1);
1188 hisi_sas_write32(hisi_hba, HGC_GET_ITV_TIME, 0x1);
f1dc7518
JG
1189 hisi_sas_write32(hisi_hba, INT_COAL_EN, 0xc);
1190 hisi_sas_write32(hisi_hba, OQ_INT_COAL_TIME, 0x60);
1191 hisi_sas_write32(hisi_hba, OQ_INT_COAL_CNT, 0x3);
94eac9e1
JG
1192 hisi_sas_write32(hisi_hba, ENT_INT_COAL_TIME, 0x1);
1193 hisi_sas_write32(hisi_hba, ENT_INT_COAL_CNT, 0x1);
1194 hisi_sas_write32(hisi_hba, OQ_INT_SRC, 0x0);
1195 hisi_sas_write32(hisi_hba, ENT_INT_SRC1, 0xffffffff);
1196 hisi_sas_write32(hisi_hba, ENT_INT_SRC2, 0xffffffff);
1197 hisi_sas_write32(hisi_hba, ENT_INT_SRC3, 0xffffffff);
1198 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK1, 0x7efefefe);
1199 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK2, 0x7efefefe);
640acc9a 1200 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK3, 0x7ffe20fe);
d3b688d3 1201 hisi_sas_write32(hisi_hba, SAS_ECC_INTR_MSK, 0xfff00c30);
94eac9e1
JG
1202 for (i = 0; i < hisi_hba->queue_count; i++)
1203 hisi_sas_write32(hisi_hba, OQ0_INT_SRC_MSK+0x4*i, 0);
1204
1205 hisi_sas_write32(hisi_hba, AXI_AHB_CLK_CFG, 1);
1206 hisi_sas_write32(hisi_hba, HYPER_STREAM_ID_EN_CFG, 1);
1207
ad16fe31
XT
1208 /* Get sas_phy_ctrl value to deal with TX FFE issue. */
1209 if (!device_property_read_u32_array(dev, "hisilicon,signal-attenuation",
1210 signal, ARRAY_SIZE(signal))) {
1211 for (i = 0; i < ARRAY_SIZE(sig_atten_lu); i++) {
1212 const struct sig_atten_lu_s *lookup = &sig_atten_lu[i];
1213 const struct signal_attenuation_s *att = lookup->att;
1214
1215 if ((signal[0] == att->de_emphasis) &&
1216 (signal[1] == att->preshoot) &&
1217 (signal[2] == att->boost)) {
1218 sas_phy_ctrl = lookup->sas_phy_ctrl;
1219 break;
1220 }
1221 }
1222
1223 if (i == ARRAY_SIZE(sig_atten_lu))
1224 dev_warn(dev, "unknown signal attenuation values, using default PHY ctrl config\n");
1225 }
1226
94eac9e1 1227 for (i = 0; i < hisi_hba->n_phy; i++) {
f385b4ff
XC
1228 struct hisi_sas_phy *phy = &hisi_hba->phy[i];
1229 struct asd_sas_phy *sas_phy = &phy->sas_phy;
1230 u32 prog_phy_link_rate = 0x800;
1231
1232 if (!sas_phy->phy || (sas_phy->phy->maximum_linkrate <
1233 SAS_LINK_RATE_1_5_GBPS)) {
1234 prog_phy_link_rate = 0x855;
1235 } else {
1236 enum sas_linkrate max = sas_phy->phy->maximum_linkrate;
1237
1238 prog_phy_link_rate =
1239 hisi_sas_get_prog_phy_linkrate_mask(max) |
1240 0x800;
1241 }
1242 hisi_sas_phy_write32(hisi_hba, i, PROG_PHY_LINK_RATE,
1243 prog_phy_link_rate);
ad16fe31 1244 hisi_sas_phy_write32(hisi_hba, i, SAS_PHY_CTRL, sas_phy_ctrl);
94eac9e1 1245 hisi_sas_phy_write32(hisi_hba, i, SL_TOUT_CFG, 0x7d7d7d7d);
9c81e2cf
JG
1246 hisi_sas_phy_write32(hisi_hba, i, SL_CONTROL, 0x0);
1247 hisi_sas_phy_write32(hisi_hba, i, TXID_AUTO, 0x2);
f1dc7518 1248 hisi_sas_phy_write32(hisi_hba, i, DONE_RECEIVED_TIME, 0x8);
94eac9e1
JG
1249 hisi_sas_phy_write32(hisi_hba, i, CHL_INT0, 0xffffffff);
1250 hisi_sas_phy_write32(hisi_hba, i, CHL_INT1, 0xffffffff);
d3b688d3 1251 hisi_sas_phy_write32(hisi_hba, i, CHL_INT2, 0xfff87fff);
94eac9e1 1252 hisi_sas_phy_write32(hisi_hba, i, RXOP_CHECK_CFG_H, 0x1000);
9dd1d620 1253 hisi_sas_phy_write32(hisi_hba, i, CHL_INT1_MSK, 0xff857fff);
066312f6 1254 hisi_sas_phy_write32(hisi_hba, i, CHL_INT2_MSK, 0x8ffffbfe);
f1dc7518 1255 hisi_sas_phy_write32(hisi_hba, i, SL_CFG, 0x13f801fc);
94eac9e1
JG
1256 hisi_sas_phy_write32(hisi_hba, i, PHY_CTRL_RDY_MSK, 0x0);
1257 hisi_sas_phy_write32(hisi_hba, i, PHYCTRL_NOT_RDY_MSK, 0x0);
1258 hisi_sas_phy_write32(hisi_hba, i, PHYCTRL_DWS_RESET_MSK, 0x0);
1259 hisi_sas_phy_write32(hisi_hba, i, PHYCTRL_PHY_ENA_MSK, 0x0);
1260 hisi_sas_phy_write32(hisi_hba, i, SL_RX_BCAST_CHK_MSK, 0x0);
1261 hisi_sas_phy_write32(hisi_hba, i, CHL_INT_COAL_EN, 0x0);
1262 hisi_sas_phy_write32(hisi_hba, i, PHYCTRL_OOB_RESTART_MSK, 0x0);
3bc45af8
JG
1263 if (hisi_hba->refclk_frequency_mhz == 66)
1264 hisi_sas_phy_write32(hisi_hba, i, PHY_CTRL, 0x199B694);
1265 /* else, do nothing -> leave it how you found it */
94eac9e1
JG
1266 }
1267
1268 for (i = 0; i < hisi_hba->queue_count; i++) {
1269 /* Delivery queue */
1270 hisi_sas_write32(hisi_hba,
1271 DLVRY_Q_0_BASE_ADDR_HI + (i * 0x14),
1272 upper_32_bits(hisi_hba->cmd_hdr_dma[i]));
1273
1274 hisi_sas_write32(hisi_hba, DLVRY_Q_0_BASE_ADDR_LO + (i * 0x14),
1275 lower_32_bits(hisi_hba->cmd_hdr_dma[i]));
1276
1277 hisi_sas_write32(hisi_hba, DLVRY_Q_0_DEPTH + (i * 0x14),
1278 HISI_SAS_QUEUE_SLOTS);
1279
1280 /* Completion queue */
1281 hisi_sas_write32(hisi_hba, COMPL_Q_0_BASE_ADDR_HI + (i * 0x14),
1282 upper_32_bits(hisi_hba->complete_hdr_dma[i]));
1283
1284 hisi_sas_write32(hisi_hba, COMPL_Q_0_BASE_ADDR_LO + (i * 0x14),
1285 lower_32_bits(hisi_hba->complete_hdr_dma[i]));
1286
1287 hisi_sas_write32(hisi_hba, COMPL_Q_0_DEPTH + (i * 0x14),
1288 HISI_SAS_QUEUE_SLOTS);
1289 }
1290
1291 /* itct */
1292 hisi_sas_write32(hisi_hba, ITCT_BASE_ADDR_LO,
1293 lower_32_bits(hisi_hba->itct_dma));
1294
1295 hisi_sas_write32(hisi_hba, ITCT_BASE_ADDR_HI,
1296 upper_32_bits(hisi_hba->itct_dma));
1297
1298 /* iost */
1299 hisi_sas_write32(hisi_hba, IOST_BASE_ADDR_LO,
1300 lower_32_bits(hisi_hba->iost_dma));
1301
1302 hisi_sas_write32(hisi_hba, IOST_BASE_ADDR_HI,
1303 upper_32_bits(hisi_hba->iost_dma));
1304
1305 /* breakpoint */
1306 hisi_sas_write32(hisi_hba, IO_BROKEN_MSG_ADDR_LO,
1307 lower_32_bits(hisi_hba->breakpoint_dma));
1308
1309 hisi_sas_write32(hisi_hba, IO_BROKEN_MSG_ADDR_HI,
1310 upper_32_bits(hisi_hba->breakpoint_dma));
1311
1312 /* SATA broken msg */
1313 hisi_sas_write32(hisi_hba, IO_SATA_BROKEN_MSG_ADDR_LO,
1314 lower_32_bits(hisi_hba->sata_breakpoint_dma));
1315
1316 hisi_sas_write32(hisi_hba, IO_SATA_BROKEN_MSG_ADDR_HI,
1317 upper_32_bits(hisi_hba->sata_breakpoint_dma));
1318
1319 /* SATA initial fis */
1320 hisi_sas_write32(hisi_hba, SATA_INITI_D2H_STORE_ADDR_LO,
1321 lower_32_bits(hisi_hba->initial_fis_dma));
1322
1323 hisi_sas_write32(hisi_hba, SATA_INITI_D2H_STORE_ADDR_HI,
1324 upper_32_bits(hisi_hba->initial_fis_dma));
1325}
1326
77570eed 1327static void link_timeout_enable_link(struct timer_list *t)
f2f89c32 1328{
77570eed 1329 struct hisi_hba *hisi_hba = from_timer(hisi_hba, t, timer);
f2f89c32
XC
1330 int i, reg_val;
1331
1332 for (i = 0; i < hisi_hba->n_phy; i++) {
c7b9d369
XT
1333 if (hisi_hba->reject_stp_links_msk & BIT(i))
1334 continue;
1335
f2f89c32
XC
1336 reg_val = hisi_sas_phy_read32(hisi_hba, i, CON_CONTROL);
1337 if (!(reg_val & BIT(0))) {
1338 hisi_sas_phy_write32(hisi_hba, i,
1339 CON_CONTROL, 0x7);
1340 break;
1341 }
1342 }
1343
841b86f3 1344 hisi_hba->timer.function = link_timeout_disable_link;
f2f89c32
XC
1345 mod_timer(&hisi_hba->timer, jiffies + msecs_to_jiffies(900));
1346}
1347
77570eed 1348static void link_timeout_disable_link(struct timer_list *t)
f2f89c32 1349{
77570eed 1350 struct hisi_hba *hisi_hba = from_timer(hisi_hba, t, timer);
f2f89c32
XC
1351 int i, reg_val;
1352
1353 reg_val = hisi_sas_read32(hisi_hba, PHY_STATE);
1354 for (i = 0; i < hisi_hba->n_phy && reg_val; i++) {
c7b9d369
XT
1355 if (hisi_hba->reject_stp_links_msk & BIT(i))
1356 continue;
1357
f2f89c32
XC
1358 if (reg_val & BIT(i)) {
1359 hisi_sas_phy_write32(hisi_hba, i,
1360 CON_CONTROL, 0x6);
1361 break;
1362 }
1363 }
1364
841b86f3 1365 hisi_hba->timer.function = link_timeout_enable_link;
f2f89c32
XC
1366 mod_timer(&hisi_hba->timer, jiffies + msecs_to_jiffies(100));
1367}
1368
1369static void set_link_timer_quirk(struct hisi_hba *hisi_hba)
1370{
841b86f3 1371 hisi_hba->timer.function = link_timeout_disable_link;
f2f89c32
XC
1372 hisi_hba->timer.expires = jiffies + msecs_to_jiffies(1000);
1373 add_timer(&hisi_hba->timer);
1374}
1375
94eac9e1
JG
1376static int hw_init_v2_hw(struct hisi_hba *hisi_hba)
1377{
11b75249 1378 struct device *dev = hisi_hba->dev;
94eac9e1
JG
1379 int rc;
1380
1381 rc = reset_hw_v2_hw(hisi_hba);
1382 if (rc) {
1383 dev_err(dev, "hisi_sas_reset_hw failed, rc=%d", rc);
1384 return rc;
1385 }
1386
1387 msleep(100);
1388 init_reg_v2_hw(hisi_hba);
806bb768 1389
94eac9e1
JG
1390 return 0;
1391}
1392
29a20428
JG
1393static void enable_phy_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1394{
1395 u32 cfg = hisi_sas_phy_read32(hisi_hba, phy_no, PHY_CFG);
1396
1397 cfg |= PHY_CFG_ENA_MSK;
1398 hisi_sas_phy_write32(hisi_hba, phy_no, PHY_CFG, cfg);
1399}
1400
4935933e
XT
1401static bool is_sata_phy_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1402{
1403 u32 context;
1404
1405 context = hisi_sas_read32(hisi_hba, PHY_CONTEXT);
1406 if (context & (1 << phy_no))
1407 return true;
1408
1409 return false;
1410}
1411
819cbf18
XT
1412static bool tx_fifo_is_empty_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1413{
1414 u32 dfx_val;
1415
1416 dfx_val = hisi_sas_phy_read32(hisi_hba, phy_no, DMA_TX_DFX1);
1417
1418 if (dfx_val & BIT(16))
1419 return false;
1420
1421 return true;
1422}
1423
1424static bool axi_bus_is_idle_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1425{
1426 int i, max_loop = 1000;
11b75249 1427 struct device *dev = hisi_hba->dev;
819cbf18
XT
1428 u32 status, axi_status, dfx_val, dfx_tx_val;
1429
1430 for (i = 0; i < max_loop; i++) {
1431 status = hisi_sas_read32_relaxed(hisi_hba,
1432 AXI_MASTER_CFG_BASE + AM_CURR_TRANS_RETURN);
1433
1434 axi_status = hisi_sas_read32(hisi_hba, AXI_CFG);
1435 dfx_val = hisi_sas_phy_read32(hisi_hba, phy_no, DMA_TX_DFX1);
1436 dfx_tx_val = hisi_sas_phy_read32(hisi_hba,
1437 phy_no, DMA_TX_FIFO_DFX0);
1438
1439 if ((status == 0x3) && (axi_status == 0x0) &&
1440 (dfx_val & BIT(20)) && (dfx_tx_val & BIT(10)))
1441 return true;
1442 udelay(10);
1443 }
1444 dev_err(dev, "bus is not idle phy%d, axi150:0x%x axi100:0x%x port204:0x%x port240:0x%x\n",
1445 phy_no, status, axi_status,
1446 dfx_val, dfx_tx_val);
1447 return false;
1448}
1449
1450static bool wait_io_done_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1451{
1452 int i, max_loop = 1000;
11b75249 1453 struct device *dev = hisi_hba->dev;
819cbf18
XT
1454 u32 status, tx_dfx0;
1455
1456 for (i = 0; i < max_loop; i++) {
1457 status = hisi_sas_phy_read32(hisi_hba, phy_no, LINK_DFX2);
1458 status = (status & 0x3fc0) >> 6;
1459
1460 if (status != 0x1)
1461 return true;
1462
1463 tx_dfx0 = hisi_sas_phy_read32(hisi_hba, phy_no, DMA_TX_DFX0);
1464 if ((tx_dfx0 & 0x1ff) == 0x2)
1465 return true;
1466 udelay(10);
1467 }
1468 dev_err(dev, "IO not done phy%d, port264:0x%x port200:0x%x\n",
1469 phy_no, status, tx_dfx0);
1470 return false;
1471}
1472
1473static bool allowed_disable_phy_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1474{
1475 if (tx_fifo_is_empty_v2_hw(hisi_hba, phy_no))
1476 return true;
1477
1478 if (!axi_bus_is_idle_v2_hw(hisi_hba, phy_no))
1479 return false;
1480
1481 if (!wait_io_done_v2_hw(hisi_hba, phy_no))
1482 return false;
1483
1484 return true;
1485}
1486
1487
63fb11b8
JG
1488static void disable_phy_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1489{
819cbf18 1490 u32 cfg, axi_val, dfx0_val, txid_auto;
11b75249 1491 struct device *dev = hisi_hba->dev;
819cbf18
XT
1492
1493 /* Close axi bus. */
1494 axi_val = hisi_sas_read32(hisi_hba, AXI_MASTER_CFG_BASE +
1495 AM_CTRL_GLOBAL);
1496 axi_val |= 0x1;
1497 hisi_sas_write32(hisi_hba, AXI_MASTER_CFG_BASE +
1498 AM_CTRL_GLOBAL, axi_val);
1499
1500 if (is_sata_phy_v2_hw(hisi_hba, phy_no)) {
1501 if (allowed_disable_phy_v2_hw(hisi_hba, phy_no))
1502 goto do_disable;
63fb11b8 1503
819cbf18
XT
1504 /* Reset host controller. */
1505 queue_work(hisi_hba->wq, &hisi_hba->rst_work);
1506 return;
1507 }
1508
1509 dfx0_val = hisi_sas_phy_read32(hisi_hba, phy_no, PORT_DFX0);
1510 dfx0_val = (dfx0_val & 0x1fc0) >> 6;
1511 if (dfx0_val != 0x4)
1512 goto do_disable;
1513
1514 if (!tx_fifo_is_empty_v2_hw(hisi_hba, phy_no)) {
1515 dev_warn(dev, "phy%d, wait tx fifo need send break\n",
1516 phy_no);
1517 txid_auto = hisi_sas_phy_read32(hisi_hba, phy_no,
1518 TXID_AUTO);
1519 txid_auto |= TXID_AUTO_CTB_MSK;
1520 hisi_sas_phy_write32(hisi_hba, phy_no, TXID_AUTO,
1521 txid_auto);
1522 }
1523
1524do_disable:
1525 cfg = hisi_sas_phy_read32(hisi_hba, phy_no, PHY_CFG);
63fb11b8
JG
1526 cfg &= ~PHY_CFG_ENA_MSK;
1527 hisi_sas_phy_write32(hisi_hba, phy_no, PHY_CFG, cfg);
819cbf18
XT
1528
1529 /* Open axi bus. */
1530 axi_val &= ~0x1;
1531 hisi_sas_write32(hisi_hba, AXI_MASTER_CFG_BASE +
1532 AM_CTRL_GLOBAL, axi_val);
63fb11b8
JG
1533}
1534
29a20428
JG
1535static void start_phy_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1536{
1537 config_id_frame_v2_hw(hisi_hba, phy_no);
1538 config_phy_opt_mode_v2_hw(hisi_hba, phy_no);
1539 enable_phy_v2_hw(hisi_hba, phy_no);
1540}
1541
63fb11b8
JG
1542static void phy_hard_reset_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1543{
0edef7e4
XC
1544 struct hisi_sas_phy *phy = &hisi_hba->phy[phy_no];
1545 u32 txid_auto;
1546
a25d0d3d 1547 disable_phy_v2_hw(hisi_hba, phy_no);
0edef7e4
XC
1548 if (phy->identify.device_type == SAS_END_DEVICE) {
1549 txid_auto = hisi_sas_phy_read32(hisi_hba, phy_no, TXID_AUTO);
1550 hisi_sas_phy_write32(hisi_hba, phy_no, TXID_AUTO,
1551 txid_auto | TX_HARDRST_MSK);
1552 }
63fb11b8
JG
1553 msleep(100);
1554 start_phy_v2_hw(hisi_hba, phy_no);
1555}
1556
c52108c6
XT
1557static void phy_get_events_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1558{
1559 struct hisi_sas_phy *phy = &hisi_hba->phy[phy_no];
1560 struct asd_sas_phy *sas_phy = &phy->sas_phy;
1561 struct sas_phy *sphy = sas_phy->phy;
1562 u32 err4_reg_val, err6_reg_val;
1563
1564 /* loss dword syn, phy reset problem */
1565 err4_reg_val = hisi_sas_phy_read32(hisi_hba, phy_no, SAS_ERR_CNT4_REG);
1566
1567 /* disparity err, invalid dword */
1568 err6_reg_val = hisi_sas_phy_read32(hisi_hba, phy_no, SAS_ERR_CNT6_REG);
1569
1570 sphy->loss_of_dword_sync_count += (err4_reg_val >> 16) & 0xFFFF;
1571 sphy->phy_reset_problem_count += err4_reg_val & 0xFFFF;
1572 sphy->invalid_dword_count += (err6_reg_val & 0xFF0000) >> 16;
1573 sphy->running_disparity_error_count += err6_reg_val & 0xFF;
1574}
1575
a25d0d3d 1576static void phys_init_v2_hw(struct hisi_hba *hisi_hba)
29a20428 1577{
29a20428
JG
1578 int i;
1579
917d3bda
XT
1580 for (i = 0; i < hisi_hba->n_phy; i++) {
1581 struct hisi_sas_phy *phy = &hisi_hba->phy[i];
1582 struct asd_sas_phy *sas_phy = &phy->sas_phy;
1583
1584 if (!sas_phy->phy->enabled)
1585 continue;
1586
29a20428 1587 start_phy_v2_hw(hisi_hba, i);
917d3bda 1588 }
29a20428
JG
1589}
1590
7911e66f
JG
1591static void sl_notify_v2_hw(struct hisi_hba *hisi_hba, int phy_no)
1592{
1593 u32 sl_control;
1594
1595 sl_control = hisi_sas_phy_read32(hisi_hba, phy_no, SL_CONTROL);
1596 sl_control |= SL_CONTROL_NOTIFY_EN_MSK;
1597 hisi_sas_phy_write32(hisi_hba, phy_no, SL_CONTROL, sl_control);
1598 msleep(1);
1599 sl_control = hisi_sas_phy_read32(hisi_hba, phy_no, SL_CONTROL);
1600 sl_control &= ~SL_CONTROL_NOTIFY_EN_MSK;
1601 hisi_sas_phy_write32(hisi_hba, phy_no, SL_CONTROL, sl_control);
1602}
1603
2ae75787
XC
1604static enum sas_linkrate phy_get_max_linkrate_v2_hw(void)
1605{
1606 return SAS_LINK_RATE_12_0_GBPS;
1607}
1608
1609static void phy_set_linkrate_v2_hw(struct hisi_hba *hisi_hba, int phy_no,
1610 struct sas_phy_linkrates *r)
1611{
5193a533 1612 enum sas_linkrate max = r->maximum_linkrate;
f385b4ff 1613 u32 prog_phy_link_rate = 0x800;
2ae75787 1614
f385b4ff 1615 prog_phy_link_rate |= hisi_sas_get_prog_phy_linkrate_mask(max);
2ae75787 1616 hisi_sas_phy_write32(hisi_hba, phy_no, PROG_PHY_LINK_RATE,
5193a533 1617 prog_phy_link_rate);
2ae75787
XC
1618}
1619
5473c060
JG
1620static int get_wideport_bitmap_v2_hw(struct hisi_hba *hisi_hba, int port_id)
1621{
1622 int i, bitmap = 0;
1623 u32 phy_port_num_ma = hisi_sas_read32(hisi_hba, PHY_PORT_NUM_MA);
1624 u32 phy_state = hisi_sas_read32(hisi_hba, PHY_STATE);
1625
1626 for (i = 0; i < (hisi_hba->n_phy < 9 ? hisi_hba->n_phy : 8); i++)
1627 if (phy_state & 1 << i)
1628 if (((phy_port_num_ma >> (i * 4)) & 0xf) == port_id)
1629 bitmap |= 1 << i;
1630
1631 if (hisi_hba->n_phy == 9) {
1632 u32 port_state = hisi_sas_read32(hisi_hba, PORT_STATE);
1633
1634 if (phy_state & 1 << 8)
1635 if (((port_state & PORT_STATE_PHY8_PORT_NUM_MSK) >>
1636 PORT_STATE_PHY8_PORT_NUM_OFF) == port_id)
1637 bitmap |= 1 << 9;
1638 }
1639
1640 return bitmap;
1641}
1642
b1a49412 1643/*
8c36e31d
JG
1644 * The callpath to this function and upto writing the write
1645 * queue pointer should be safe from interruption.
1646 */
b1a49412
XC
1647static int
1648get_free_slot_v2_hw(struct hisi_hba *hisi_hba, struct hisi_sas_dq *dq)
8c36e31d 1649{
11b75249 1650 struct device *dev = hisi_hba->dev;
b1a49412 1651 int queue = dq->id;
8c36e31d 1652 u32 r, w;
c70f1fb7 1653
c70f1fb7
XC
1654 w = dq->wr_point;
1655 r = hisi_sas_read32_relaxed(hisi_hba,
1656 DLVRY_Q_0_RD_PTR + (queue * 0x14));
1657 if (r == (w+1) % HISI_SAS_QUEUE_SLOTS) {
c58ec824 1658 dev_warn(dev, "full queue=%d r=%d w=%d\n",
c70f1fb7
XC
1659 queue, r, w);
1660 return -EAGAIN;
8c36e31d 1661 }
c70f1fb7 1662
c58ec824
XC
1663 dq->wr_point = (dq->wr_point + 1) % HISI_SAS_QUEUE_SLOTS;
1664
1665 return w;
8c36e31d
JG
1666}
1667
c58ec824 1668/* DQ lock must be taken here */
b1a49412 1669static void start_delivery_v2_hw(struct hisi_sas_dq *dq)
8c36e31d 1670{
b1a49412 1671 struct hisi_hba *hisi_hba = dq->hisi_hba;
5a61a535 1672 struct hisi_sas_slot *s, *s1, *s2 = NULL;
c58ec824
XC
1673 struct list_head *dq_list;
1674 int dlvry_queue = dq->id;
5a61a535 1675 int wp;
c58ec824
XC
1676
1677 dq_list = &dq->list;
1678 list_for_each_entry_safe(s, s1, &dq->list, delivery) {
1679 if (!s->ready)
1680 break;
5a61a535 1681 s2 = s;
c58ec824
XC
1682 list_del(&s->delivery);
1683 }
1684
5a61a535 1685 if (!s2)
c58ec824 1686 return;
8c36e31d 1687
5a61a535
XT
1688 /*
1689 * Ensure that memories for slots built on other CPUs is observed.
1690 */
1691 smp_rmb();
1692 wp = (s2->dlvry_queue_slot + 1) % HISI_SAS_QUEUE_SLOTS;
1693
c58ec824 1694 hisi_sas_write32(hisi_hba, DLVRY_Q_0_WR_PTR + (dlvry_queue * 0x14), wp);
8c36e31d
JG
1695}
1696
81d115ec 1697static void prep_prd_sge_v2_hw(struct hisi_hba *hisi_hba,
8c36e31d
JG
1698 struct hisi_sas_slot *slot,
1699 struct hisi_sas_cmd_hdr *hdr,
1700 struct scatterlist *scatter,
1701 int n_elem)
1702{
f557e32c 1703 struct hisi_sas_sge_page *sge_page = hisi_sas_sge_addr_mem(slot);
8c36e31d
JG
1704 struct scatterlist *sg;
1705 int i;
1706
8c36e31d 1707 for_each_sg(scatter, sg, n_elem, i) {
f557e32c 1708 struct hisi_sas_sge *entry = &sge_page->sge[i];
8c36e31d
JG
1709
1710 entry->addr = cpu_to_le64(sg_dma_address(sg));
1711 entry->page_ctrl_0 = entry->page_ctrl_1 = 0;
1712 entry->data_len = cpu_to_le32(sg_dma_len(sg));
1713 entry->data_off = 0;
1714 }
1715
f557e32c 1716 hdr->prd_table_addr = cpu_to_le64(hisi_sas_sge_addr_dma(slot));
8c36e31d
JG
1717
1718 hdr->sg_len = cpu_to_le32(n_elem << CMD_HDR_DATA_SGL_LEN_OFF);
8c36e31d
JG
1719}
1720
81d115ec 1721static void prep_smp_v2_hw(struct hisi_hba *hisi_hba,
c2d89392
JG
1722 struct hisi_sas_slot *slot)
1723{
1724 struct sas_task *task = slot->task;
1725 struct hisi_sas_cmd_hdr *hdr = slot->cmd_hdr;
1726 struct domain_device *device = task->dev;
c2d89392 1727 struct hisi_sas_port *port = slot->port;
8118ae07 1728 struct scatterlist *sg_req;
c2d89392
JG
1729 struct hisi_sas_device *sas_dev = device->lldd_dev;
1730 dma_addr_t req_dma_addr;
8118ae07 1731 unsigned int req_len;
c2d89392 1732
c2d89392
JG
1733 /* req */
1734 sg_req = &task->smp_task.smp_req;
c2d89392 1735 req_dma_addr = sg_dma_address(sg_req);
8118ae07 1736 req_len = sg_dma_len(&task->smp_task.smp_req);
c2d89392
JG
1737
1738 /* create header */
1739 /* dw0 */
1740 hdr->dw0 = cpu_to_le32((port->id << CMD_HDR_PORT_OFF) |
1741 (1 << CMD_HDR_PRIORITY_OFF) | /* high pri */
1742 (2 << CMD_HDR_CMD_OFF)); /* smp */
1743
1744 /* map itct entry */
1745 hdr->dw1 = cpu_to_le32((sas_dev->device_id << CMD_HDR_DEV_ID_OFF) |
1746 (1 << CMD_HDR_FRAME_TYPE_OFF) |
1747 (DIR_NO_DATA << CMD_HDR_DIR_OFF));
1748
1749 /* dw2 */
1750 hdr->dw2 = cpu_to_le32((((req_len - 4) / 4) << CMD_HDR_CFL_OFF) |
1751 (HISI_SAS_MAX_SMP_RESP_SZ / 4 <<
1752 CMD_HDR_MRFL_OFF));
1753
1754 hdr->transfer_tags = cpu_to_le32(slot->idx << CMD_HDR_IPTT_OFF);
1755
1756 hdr->cmd_table_addr = cpu_to_le64(req_dma_addr);
f557e32c 1757 hdr->sts_buffer_addr = cpu_to_le64(hisi_sas_status_buf_addr_dma(slot));
c2d89392
JG
1758}
1759
81d115ec 1760static void prep_ssp_v2_hw(struct hisi_hba *hisi_hba,
9a98d728 1761 struct hisi_sas_slot *slot)
8c36e31d
JG
1762{
1763 struct sas_task *task = slot->task;
1764 struct hisi_sas_cmd_hdr *hdr = slot->cmd_hdr;
1765 struct domain_device *device = task->dev;
1766 struct hisi_sas_device *sas_dev = device->lldd_dev;
1767 struct hisi_sas_port *port = slot->port;
1768 struct sas_ssp_task *ssp_task = &task->ssp_task;
1769 struct scsi_cmnd *scsi_cmnd = ssp_task->cmd;
9a98d728
XT
1770 struct hisi_sas_tmf_task *tmf = slot->tmf;
1771 int has_data = 0, priority = !!tmf;
8c36e31d
JG
1772 u8 *buf_cmd;
1773 u32 dw1 = 0, dw2 = 0;
1774
1775 hdr->dw0 = cpu_to_le32((1 << CMD_HDR_RESP_REPORT_OFF) |
1776 (2 << CMD_HDR_TLR_CTRL_OFF) |
1777 (port->id << CMD_HDR_PORT_OFF) |
1778 (priority << CMD_HDR_PRIORITY_OFF) |
1779 (1 << CMD_HDR_CMD_OFF)); /* ssp */
1780
1781 dw1 = 1 << CMD_HDR_VDTL_OFF;
9a98d728 1782 if (tmf) {
8c36e31d
JG
1783 dw1 |= 2 << CMD_HDR_FRAME_TYPE_OFF;
1784 dw1 |= DIR_NO_DATA << CMD_HDR_DIR_OFF;
1785 } else {
1786 dw1 |= 1 << CMD_HDR_FRAME_TYPE_OFF;
1787 switch (scsi_cmnd->sc_data_direction) {
1788 case DMA_TO_DEVICE:
1789 has_data = 1;
1790 dw1 |= DIR_TO_DEVICE << CMD_HDR_DIR_OFF;
1791 break;
1792 case DMA_FROM_DEVICE:
1793 has_data = 1;
1794 dw1 |= DIR_TO_INI << CMD_HDR_DIR_OFF;
1795 break;
1796 default:
1797 dw1 &= ~CMD_HDR_DIR_MSK;
1798 }
1799 }
1800
1801 /* map itct entry */
1802 dw1 |= sas_dev->device_id << CMD_HDR_DEV_ID_OFF;
1803 hdr->dw1 = cpu_to_le32(dw1);
1804
1805 dw2 = (((sizeof(struct ssp_command_iu) + sizeof(struct ssp_frame_hdr)
1806 + 3) / 4) << CMD_HDR_CFL_OFF) |
1807 ((HISI_SAS_MAX_SSP_RESP_SZ / 4) << CMD_HDR_MRFL_OFF) |
1808 (2 << CMD_HDR_SG_MOD_OFF);
1809 hdr->dw2 = cpu_to_le32(dw2);
1810
1811 hdr->transfer_tags = cpu_to_le32(slot->idx);
1812
81d115ec
XC
1813 if (has_data)
1814 prep_prd_sge_v2_hw(hisi_hba, slot, hdr, task->scatter,
8c36e31d 1815 slot->n_elem);
8c36e31d
JG
1816
1817 hdr->data_transfer_len = cpu_to_le32(task->total_xfer_len);
f557e32c
XT
1818 hdr->cmd_table_addr = cpu_to_le64(hisi_sas_cmd_hdr_addr_dma(slot));
1819 hdr->sts_buffer_addr = cpu_to_le64(hisi_sas_status_buf_addr_dma(slot));
8c36e31d 1820
f557e32c
XT
1821 buf_cmd = hisi_sas_cmd_hdr_addr_mem(slot) +
1822 sizeof(struct ssp_frame_hdr);
8c36e31d
JG
1823
1824 memcpy(buf_cmd, &task->ssp_task.LUN, 8);
9a98d728 1825 if (!tmf) {
8c36e31d
JG
1826 buf_cmd[9] = task->ssp_task.task_attr |
1827 (task->ssp_task.task_prio << 3);
1828 memcpy(buf_cmd + 12, task->ssp_task.cmd->cmnd,
1829 task->ssp_task.cmd->cmd_len);
1830 } else {
1831 buf_cmd[10] = tmf->tmf;
1832 switch (tmf->tmf) {
1833 case TMF_ABORT_TASK:
1834 case TMF_QUERY_TASK:
1835 buf_cmd[12] =
1836 (tmf->tag_of_task_to_be_managed >> 8) & 0xff;
1837 buf_cmd[13] =
1838 tmf->tag_of_task_to_be_managed & 0xff;
1839 break;
1840 default:
1841 break;
1842 }
1843 }
8c36e31d
JG
1844}
1845
634a9585
XC
1846#define TRANS_TX_ERR 0
1847#define TRANS_RX_ERR 1
1848#define DMA_TX_ERR 2
1849#define SIPC_RX_ERR 3
1850#define DMA_RX_ERR 4
1851
1852#define DMA_TX_ERR_OFF 0
1853#define DMA_TX_ERR_MSK (0xffff << DMA_TX_ERR_OFF)
1854#define SIPC_RX_ERR_OFF 16
1855#define SIPC_RX_ERR_MSK (0xffff << SIPC_RX_ERR_OFF)
1856
1857static int parse_trans_tx_err_code_v2_hw(u32 err_msk)
1858{
89b203e9 1859 static const u8 trans_tx_err_code_prio[] = {
634a9585
XC
1860 TRANS_TX_OPEN_FAIL_WITH_IT_NEXUS_LOSS,
1861 TRANS_TX_ERR_PHY_NOT_ENABLE,
1862 TRANS_TX_OPEN_CNX_ERR_WRONG_DESTINATION,
1863 TRANS_TX_OPEN_CNX_ERR_ZONE_VIOLATION,
1864 TRANS_TX_OPEN_CNX_ERR_BY_OTHER,
1865 RESERVED0,
1866 TRANS_TX_OPEN_CNX_ERR_AIP_TIMEOUT,
1867 TRANS_TX_OPEN_CNX_ERR_STP_RESOURCES_BUSY,
1868 TRANS_TX_OPEN_CNX_ERR_PROTOCOL_NOT_SUPPORTED,
1869 TRANS_TX_OPEN_CNX_ERR_CONNECTION_RATE_NOT_SUPPORTED,
1870 TRANS_TX_OPEN_CNX_ERR_BAD_DESTINATION,
1871 TRANS_TX_OPEN_CNX_ERR_BREAK_RCVD,
1872 TRANS_TX_OPEN_CNX_ERR_LOW_PHY_POWER,
1873 TRANS_TX_OPEN_CNX_ERR_PATHWAY_BLOCKED,
1874 TRANS_TX_OPEN_CNX_ERR_OPEN_TIMEOUT,
1875 TRANS_TX_OPEN_CNX_ERR_NO_DESTINATION,
1876 TRANS_TX_OPEN_RETRY_ERR_THRESHOLD_REACHED,
1877 TRANS_TX_ERR_WITH_CLOSE_PHYDISALE,
1878 TRANS_TX_ERR_WITH_CLOSE_DWS_TIMEOUT,
1879 TRANS_TX_ERR_WITH_CLOSE_COMINIT,
1880 TRANS_TX_ERR_WITH_BREAK_TIMEOUT,
1881 TRANS_TX_ERR_WITH_BREAK_REQUEST,
1882 TRANS_TX_ERR_WITH_BREAK_RECEVIED,
1883 TRANS_TX_ERR_WITH_CLOSE_TIMEOUT,
1884 TRANS_TX_ERR_WITH_CLOSE_NORMAL,
1885 TRANS_TX_ERR_WITH_NAK_RECEVIED,
1886 TRANS_TX_ERR_WITH_ACK_NAK_TIMEOUT,
1887 TRANS_TX_ERR_WITH_CREDIT_TIMEOUT,
1888 TRANS_TX_ERR_WITH_IPTT_CONFLICT,
1889 TRANS_TX_ERR_WITH_OPEN_BY_DES_OR_OTHERS,
1890 TRANS_TX_ERR_WITH_WAIT_RECV_TIMEOUT,
1891 };
1892 int index, i;
1893
1894 for (i = 0; i < ARRAY_SIZE(trans_tx_err_code_prio); i++) {
1895 index = trans_tx_err_code_prio[i] - TRANS_TX_FAIL_BASE;
1896 if (err_msk & (1 << index))
1897 return trans_tx_err_code_prio[i];
1898 }
1899 return -1;
1900}
1901
1902static int parse_trans_rx_err_code_v2_hw(u32 err_msk)
1903{
89b203e9 1904 static const u8 trans_rx_err_code_prio[] = {
634a9585
XC
1905 TRANS_RX_ERR_WITH_RXFRAME_CRC_ERR,
1906 TRANS_RX_ERR_WITH_RXFIS_8B10B_DISP_ERR,
1907 TRANS_RX_ERR_WITH_RXFRAME_HAVE_ERRPRM,
1908 TRANS_RX_ERR_WITH_RXFIS_DECODE_ERROR,
1909 TRANS_RX_ERR_WITH_RXFIS_CRC_ERR,
1910 TRANS_RX_ERR_WITH_RXFRAME_LENGTH_OVERRUN,
1911 TRANS_RX_ERR_WITH_RXFIS_RX_SYNCP,
1912 TRANS_RX_ERR_WITH_LINK_BUF_OVERRUN,
1913 TRANS_RX_ERR_WITH_CLOSE_PHY_DISABLE,
1914 TRANS_RX_ERR_WITH_CLOSE_DWS_TIMEOUT,
1915 TRANS_RX_ERR_WITH_CLOSE_COMINIT,
1916 TRANS_RX_ERR_WITH_BREAK_TIMEOUT,
1917 TRANS_RX_ERR_WITH_BREAK_REQUEST,
1918 TRANS_RX_ERR_WITH_BREAK_RECEVIED,
1919 RESERVED1,
1920 TRANS_RX_ERR_WITH_CLOSE_NORMAL,
1921 TRANS_RX_ERR_WITH_DATA_LEN0,
1922 TRANS_RX_ERR_WITH_BAD_HASH,
1923 TRANS_RX_XRDY_WLEN_ZERO_ERR,
1924 TRANS_RX_SSP_FRM_LEN_ERR,
1925 RESERVED2,
1926 RESERVED3,
1927 RESERVED4,
1928 RESERVED5,
1929 TRANS_RX_ERR_WITH_BAD_FRM_TYPE,
1930 TRANS_RX_SMP_FRM_LEN_ERR,
1931 TRANS_RX_SMP_RESP_TIMEOUT_ERR,
1932 RESERVED6,
1933 RESERVED7,
1934 RESERVED8,
1935 RESERVED9,
1936 TRANS_RX_R_ERR,
1937 };
1938 int index, i;
1939
1940 for (i = 0; i < ARRAY_SIZE(trans_rx_err_code_prio); i++) {
1941 index = trans_rx_err_code_prio[i] - TRANS_RX_FAIL_BASE;
1942 if (err_msk & (1 << index))
1943 return trans_rx_err_code_prio[i];
1944 }
1945 return -1;
1946}
1947
1948static int parse_dma_tx_err_code_v2_hw(u32 err_msk)
1949{
89b203e9 1950 static const u8 dma_tx_err_code_prio[] = {
634a9585
XC
1951 DMA_TX_UNEXP_XFER_ERR,
1952 DMA_TX_UNEXP_RETRANS_ERR,
1953 DMA_TX_XFER_LEN_OVERFLOW,
1954 DMA_TX_XFER_OFFSET_ERR,
1955 DMA_TX_RAM_ECC_ERR,
1956 DMA_TX_DIF_LEN_ALIGN_ERR,
1957 DMA_TX_DIF_CRC_ERR,
1958 DMA_TX_DIF_APP_ERR,
1959 DMA_TX_DIF_RPP_ERR,
1960 DMA_TX_DATA_SGL_OVERFLOW,
1961 DMA_TX_DIF_SGL_OVERFLOW,
1962 };
1963 int index, i;
1964
1965 for (i = 0; i < ARRAY_SIZE(dma_tx_err_code_prio); i++) {
1966 index = dma_tx_err_code_prio[i] - DMA_TX_ERR_BASE;
1967 err_msk = err_msk & DMA_TX_ERR_MSK;
1968 if (err_msk & (1 << index))
1969 return dma_tx_err_code_prio[i];
1970 }
1971 return -1;
1972}
1973
1974static int parse_sipc_rx_err_code_v2_hw(u32 err_msk)
1975{
89b203e9 1976 static const u8 sipc_rx_err_code_prio[] = {
634a9585
XC
1977 SIPC_RX_FIS_STATUS_ERR_BIT_VLD,
1978 SIPC_RX_PIO_WRSETUP_STATUS_DRQ_ERR,
1979 SIPC_RX_FIS_STATUS_BSY_BIT_ERR,
1980 SIPC_RX_WRSETUP_LEN_ODD_ERR,
1981 SIPC_RX_WRSETUP_LEN_ZERO_ERR,
1982 SIPC_RX_WRDATA_LEN_NOT_MATCH_ERR,
1983 SIPC_RX_NCQ_WRSETUP_OFFSET_ERR,
1984 SIPC_RX_NCQ_WRSETUP_AUTO_ACTIVE_ERR,
1985 SIPC_RX_SATA_UNEXP_FIS_ERR,
1986 SIPC_RX_WRSETUP_ESTATUS_ERR,
1987 SIPC_RX_DATA_UNDERFLOW_ERR,
1988 };
1989 int index, i;
1990
1991 for (i = 0; i < ARRAY_SIZE(sipc_rx_err_code_prio); i++) {
1992 index = sipc_rx_err_code_prio[i] - SIPC_RX_ERR_BASE;
1993 err_msk = err_msk & SIPC_RX_ERR_MSK;
1994 if (err_msk & (1 << (index + 0x10)))
1995 return sipc_rx_err_code_prio[i];
1996 }
1997 return -1;
1998}
1999
2000static int parse_dma_rx_err_code_v2_hw(u32 err_msk)
2001{
89b203e9 2002 static const u8 dma_rx_err_code_prio[] = {
634a9585
XC
2003 DMA_RX_UNKNOWN_FRM_ERR,
2004 DMA_RX_DATA_LEN_OVERFLOW,
2005 DMA_RX_DATA_LEN_UNDERFLOW,
2006 DMA_RX_DATA_OFFSET_ERR,
2007 RESERVED10,
2008 DMA_RX_SATA_FRAME_TYPE_ERR,
2009 DMA_RX_RESP_BUF_OVERFLOW,
2010 DMA_RX_UNEXP_RETRANS_RESP_ERR,
2011 DMA_RX_UNEXP_NORM_RESP_ERR,
2012 DMA_RX_UNEXP_RDFRAME_ERR,
2013 DMA_RX_PIO_DATA_LEN_ERR,
2014 DMA_RX_RDSETUP_STATUS_ERR,
2015 DMA_RX_RDSETUP_STATUS_DRQ_ERR,
2016 DMA_RX_RDSETUP_STATUS_BSY_ERR,
2017 DMA_RX_RDSETUP_LEN_ODD_ERR,
2018 DMA_RX_RDSETUP_LEN_ZERO_ERR,
2019 DMA_RX_RDSETUP_LEN_OVER_ERR,
2020 DMA_RX_RDSETUP_OFFSET_ERR,
2021 DMA_RX_RDSETUP_ACTIVE_ERR,
2022 DMA_RX_RDSETUP_ESTATUS_ERR,
2023 DMA_RX_RAM_ECC_ERR,
2024 DMA_RX_DIF_CRC_ERR,
2025 DMA_RX_DIF_APP_ERR,
2026 DMA_RX_DIF_RPP_ERR,
2027 DMA_RX_DATA_SGL_OVERFLOW,
2028 DMA_RX_DIF_SGL_OVERFLOW,
2029 };
2030 int index, i;
2031
2032 for (i = 0; i < ARRAY_SIZE(dma_rx_err_code_prio); i++) {
2033 index = dma_rx_err_code_prio[i] - DMA_RX_ERR_BASE;
2034 if (err_msk & (1 << index))
2035 return dma_rx_err_code_prio[i];
2036 }
2037 return -1;
2038}
2039
e8fed0e9
JG
2040/* by default, task resp is complete */
2041static void slot_err_v2_hw(struct hisi_hba *hisi_hba,
2042 struct sas_task *task,
634a9585
XC
2043 struct hisi_sas_slot *slot,
2044 int err_phase)
e8fed0e9
JG
2045{
2046 struct task_status_struct *ts = &task->task_status;
f557e32c
XT
2047 struct hisi_sas_err_record_v2 *err_record =
2048 hisi_sas_status_buf_addr_mem(slot);
e8fed0e9
JG
2049 u32 trans_tx_fail_type = cpu_to_le32(err_record->trans_tx_fail_type);
2050 u32 trans_rx_fail_type = cpu_to_le32(err_record->trans_rx_fail_type);
2051 u16 dma_tx_err_type = cpu_to_le16(err_record->dma_tx_err_type);
2052 u16 sipc_rx_err_type = cpu_to_le16(err_record->sipc_rx_err_type);
2053 u32 dma_rx_err_type = cpu_to_le32(err_record->dma_rx_err_type);
2054 int error = -1;
2055
634a9585
XC
2056 if (err_phase == 1) {
2057 /* error in TX phase, the priority of error is: DW2 > DW0 */
2058 error = parse_dma_tx_err_code_v2_hw(dma_tx_err_type);
2059 if (error == -1)
2060 error = parse_trans_tx_err_code_v2_hw(
2061 trans_tx_fail_type);
2062 } else if (err_phase == 2) {
2063 /* error in RX phase, the priority is: DW1 > DW3 > DW2 */
2064 error = parse_trans_rx_err_code_v2_hw(
2065 trans_rx_fail_type);
2066 if (error == -1) {
2067 error = parse_dma_rx_err_code_v2_hw(
2068 dma_rx_err_type);
2069 if (error == -1)
2070 error = parse_sipc_rx_err_code_v2_hw(
2071 sipc_rx_err_type);
2072 }
e8fed0e9
JG
2073 }
2074
2075 switch (task->task_proto) {
2076 case SAS_PROTOCOL_SSP:
2077 {
2078 switch (error) {
2079 case TRANS_TX_OPEN_CNX_ERR_NO_DESTINATION:
2080 {
2081 ts->stat = SAS_OPEN_REJECT;
2082 ts->open_rej_reason = SAS_OREJ_NO_DEST;
a28b259b 2083 break;
e8fed0e9
JG
2084 }
2085 case TRANS_TX_OPEN_CNX_ERR_PROTOCOL_NOT_SUPPORTED:
2086 {
2087 ts->stat = SAS_OPEN_REJECT;
2088 ts->open_rej_reason = SAS_OREJ_EPROTO;
2089 break;
2090 }
2091 case TRANS_TX_OPEN_CNX_ERR_CONNECTION_RATE_NOT_SUPPORTED:
2092 {
2093 ts->stat = SAS_OPEN_REJECT;
2094 ts->open_rej_reason = SAS_OREJ_CONN_RATE;
2095 break;
2096 }
2097 case TRANS_TX_OPEN_CNX_ERR_BAD_DESTINATION:
2098 {
2099 ts->stat = SAS_OPEN_REJECT;
2100 ts->open_rej_reason = SAS_OREJ_BAD_DEST;
2101 break;
2102 }
e8fed0e9
JG
2103 case TRANS_TX_OPEN_CNX_ERR_WRONG_DESTINATION:
2104 {
2105 ts->stat = SAS_OPEN_REJECT;
2106 ts->open_rej_reason = SAS_OREJ_WRONG_DEST;
2107 break;
2108 }
634a9585 2109 case DMA_RX_UNEXP_NORM_RESP_ERR:
e8fed0e9 2110 case TRANS_TX_OPEN_CNX_ERR_ZONE_VIOLATION:
634a9585 2111 case DMA_RX_RESP_BUF_OVERFLOW:
e8fed0e9
JG
2112 {
2113 ts->stat = SAS_OPEN_REJECT;
2114 ts->open_rej_reason = SAS_OREJ_UNKNOWN;
2115 break;
2116 }
2117 case TRANS_TX_OPEN_CNX_ERR_LOW_PHY_POWER:
2118 {
2119 /* not sure */
2120 ts->stat = SAS_DEV_NO_RESPONSE;
2121 break;
2122 }
e8fed0e9
JG
2123 case DMA_RX_DATA_LEN_OVERFLOW:
2124 {
2125 ts->stat = SAS_DATA_OVERRUN;
2126 ts->residual = 0;
2127 break;
2128 }
2129 case DMA_RX_DATA_LEN_UNDERFLOW:
e8fed0e9 2130 {
01b361fc 2131 ts->residual = trans_tx_fail_type;
e8fed0e9
JG
2132 ts->stat = SAS_DATA_UNDERRUN;
2133 break;
2134 }
2135 case TRANS_TX_OPEN_FAIL_WITH_IT_NEXUS_LOSS:
2136 case TRANS_TX_ERR_PHY_NOT_ENABLE:
2137 case TRANS_TX_OPEN_CNX_ERR_BY_OTHER:
2138 case TRANS_TX_OPEN_CNX_ERR_AIP_TIMEOUT:
634a9585
XC
2139 case TRANS_TX_OPEN_CNX_ERR_BREAK_RCVD:
2140 case TRANS_TX_OPEN_CNX_ERR_PATHWAY_BLOCKED:
2141 case TRANS_TX_OPEN_CNX_ERR_OPEN_TIMEOUT:
e8fed0e9
JG
2142 case TRANS_TX_OPEN_RETRY_ERR_THRESHOLD_REACHED:
2143 case TRANS_TX_ERR_WITH_BREAK_TIMEOUT:
2144 case TRANS_TX_ERR_WITH_BREAK_REQUEST:
2145 case TRANS_TX_ERR_WITH_BREAK_RECEVIED:
2146 case TRANS_TX_ERR_WITH_CLOSE_TIMEOUT:
2147 case TRANS_TX_ERR_WITH_CLOSE_NORMAL:
634a9585 2148 case TRANS_TX_ERR_WITH_CLOSE_PHYDISALE:
e8fed0e9
JG
2149 case TRANS_TX_ERR_WITH_CLOSE_DWS_TIMEOUT:
2150 case TRANS_TX_ERR_WITH_CLOSE_COMINIT:
2151 case TRANS_TX_ERR_WITH_NAK_RECEVIED:
2152 case TRANS_TX_ERR_WITH_ACK_NAK_TIMEOUT:
e8fed0e9 2153 case TRANS_TX_ERR_WITH_CREDIT_TIMEOUT:
634a9585 2154 case TRANS_TX_ERR_WITH_IPTT_CONFLICT:
e8fed0e9
JG
2155 case TRANS_RX_ERR_WITH_RXFRAME_CRC_ERR:
2156 case TRANS_RX_ERR_WITH_RXFIS_8B10B_DISP_ERR:
2157 case TRANS_RX_ERR_WITH_RXFRAME_HAVE_ERRPRM:
634a9585 2158 case TRANS_RX_ERR_WITH_LINK_BUF_OVERRUN:
e8fed0e9
JG
2159 case TRANS_RX_ERR_WITH_BREAK_TIMEOUT:
2160 case TRANS_RX_ERR_WITH_BREAK_REQUEST:
2161 case TRANS_RX_ERR_WITH_BREAK_RECEVIED:
2162 case TRANS_RX_ERR_WITH_CLOSE_NORMAL:
2163 case TRANS_RX_ERR_WITH_CLOSE_DWS_TIMEOUT:
2164 case TRANS_RX_ERR_WITH_CLOSE_COMINIT:
634a9585
XC
2165 case TRANS_TX_ERR_FRAME_TXED:
2166 case TRANS_RX_ERR_WITH_CLOSE_PHY_DISABLE:
e8fed0e9
JG
2167 case TRANS_RX_ERR_WITH_DATA_LEN0:
2168 case TRANS_RX_ERR_WITH_BAD_HASH:
2169 case TRANS_RX_XRDY_WLEN_ZERO_ERR:
2170 case TRANS_RX_SSP_FRM_LEN_ERR:
2171 case TRANS_RX_ERR_WITH_BAD_FRM_TYPE:
634a9585 2172 case DMA_TX_DATA_SGL_OVERFLOW:
e8fed0e9
JG
2173 case DMA_TX_UNEXP_XFER_ERR:
2174 case DMA_TX_UNEXP_RETRANS_ERR:
2175 case DMA_TX_XFER_LEN_OVERFLOW:
2176 case DMA_TX_XFER_OFFSET_ERR:
634a9585
XC
2177 case SIPC_RX_DATA_UNDERFLOW_ERR:
2178 case DMA_RX_DATA_SGL_OVERFLOW:
e8fed0e9 2179 case DMA_RX_DATA_OFFSET_ERR:
634a9585
XC
2180 case DMA_RX_RDSETUP_LEN_ODD_ERR:
2181 case DMA_RX_RDSETUP_LEN_ZERO_ERR:
2182 case DMA_RX_RDSETUP_LEN_OVER_ERR:
2183 case DMA_RX_SATA_FRAME_TYPE_ERR:
e8fed0e9
JG
2184 case DMA_RX_UNKNOWN_FRM_ERR:
2185 {
634a9585
XC
2186 /* This will request a retry */
2187 ts->stat = SAS_QUEUE_FULL;
2188 slot->abort = 1;
e8fed0e9
JG
2189 break;
2190 }
2191 default:
2192 break;
2193 }
2194 }
2195 break;
2196 case SAS_PROTOCOL_SMP:
2197 ts->stat = SAM_STAT_CHECK_CONDITION;
2198 break;
2199
2200 case SAS_PROTOCOL_SATA:
2201 case SAS_PROTOCOL_STP:
2202 case SAS_PROTOCOL_SATA | SAS_PROTOCOL_STP:
2203 {
2204 switch (error) {
e8fed0e9 2205 case TRANS_TX_OPEN_CNX_ERR_NO_DESTINATION:
634a9585
XC
2206 {
2207 ts->stat = SAS_OPEN_REJECT;
2208 ts->open_rej_reason = SAS_OREJ_NO_DEST;
2209 break;
2210 }
2211 case TRANS_TX_OPEN_CNX_ERR_LOW_PHY_POWER:
e8fed0e9
JG
2212 {
2213 ts->resp = SAS_TASK_UNDELIVERED;
2214 ts->stat = SAS_DEV_NO_RESPONSE;
2215 break;
2216 }
2217 case TRANS_TX_OPEN_CNX_ERR_PROTOCOL_NOT_SUPPORTED:
634a9585
XC
2218 {
2219 ts->stat = SAS_OPEN_REJECT;
2220 ts->open_rej_reason = SAS_OREJ_EPROTO;
2221 break;
2222 }
e8fed0e9 2223 case TRANS_TX_OPEN_CNX_ERR_CONNECTION_RATE_NOT_SUPPORTED:
634a9585
XC
2224 {
2225 ts->stat = SAS_OPEN_REJECT;
2226 ts->open_rej_reason = SAS_OREJ_CONN_RATE;
2227 break;
2228 }
e8fed0e9 2229 case TRANS_TX_OPEN_CNX_ERR_BAD_DESTINATION:
634a9585
XC
2230 {
2231 ts->stat = SAS_OPEN_REJECT;
2232 ts->open_rej_reason = SAS_OREJ_CONN_RATE;
2233 break;
2234 }
e8fed0e9 2235 case TRANS_TX_OPEN_CNX_ERR_WRONG_DESTINATION:
e8fed0e9
JG
2236 {
2237 ts->stat = SAS_OPEN_REJECT;
634a9585 2238 ts->open_rej_reason = SAS_OREJ_WRONG_DEST;
e8fed0e9
JG
2239 break;
2240 }
634a9585
XC
2241 case DMA_RX_RESP_BUF_OVERFLOW:
2242 case DMA_RX_UNEXP_NORM_RESP_ERR:
2243 case TRANS_TX_OPEN_CNX_ERR_ZONE_VIOLATION:
e8fed0e9 2244 {
634a9585
XC
2245 ts->stat = SAS_OPEN_REJECT;
2246 ts->open_rej_reason = SAS_OREJ_UNKNOWN;
e8fed0e9
JG
2247 break;
2248 }
2249 case DMA_RX_DATA_LEN_OVERFLOW:
2250 {
2251 ts->stat = SAS_DATA_OVERRUN;
634a9585
XC
2252 ts->residual = 0;
2253 break;
2254 }
2255 case DMA_RX_DATA_LEN_UNDERFLOW:
2256 {
01b361fc 2257 ts->residual = trans_tx_fail_type;
634a9585 2258 ts->stat = SAS_DATA_UNDERRUN;
e8fed0e9
JG
2259 break;
2260 }
2261 case TRANS_TX_OPEN_FAIL_WITH_IT_NEXUS_LOSS:
2262 case TRANS_TX_ERR_PHY_NOT_ENABLE:
2263 case TRANS_TX_OPEN_CNX_ERR_BY_OTHER:
2264 case TRANS_TX_OPEN_CNX_ERR_AIP_TIMEOUT:
634a9585
XC
2265 case TRANS_TX_OPEN_CNX_ERR_BREAK_RCVD:
2266 case TRANS_TX_OPEN_CNX_ERR_PATHWAY_BLOCKED:
2267 case TRANS_TX_OPEN_CNX_ERR_OPEN_TIMEOUT:
e8fed0e9
JG
2268 case TRANS_TX_OPEN_RETRY_ERR_THRESHOLD_REACHED:
2269 case TRANS_TX_ERR_WITH_BREAK_TIMEOUT:
2270 case TRANS_TX_ERR_WITH_BREAK_REQUEST:
2271 case TRANS_TX_ERR_WITH_BREAK_RECEVIED:
2272 case TRANS_TX_ERR_WITH_CLOSE_TIMEOUT:
2273 case TRANS_TX_ERR_WITH_CLOSE_NORMAL:
634a9585 2274 case TRANS_TX_ERR_WITH_CLOSE_PHYDISALE:
e8fed0e9
JG
2275 case TRANS_TX_ERR_WITH_CLOSE_DWS_TIMEOUT:
2276 case TRANS_TX_ERR_WITH_CLOSE_COMINIT:
e8fed0e9
JG
2277 case TRANS_TX_ERR_WITH_ACK_NAK_TIMEOUT:
2278 case TRANS_TX_ERR_WITH_CREDIT_TIMEOUT:
634a9585 2279 case TRANS_TX_ERR_WITH_OPEN_BY_DES_OR_OTHERS:
e8fed0e9 2280 case TRANS_TX_ERR_WITH_WAIT_RECV_TIMEOUT:
e8fed0e9 2281 case TRANS_RX_ERR_WITH_RXFRAME_HAVE_ERRPRM:
634a9585 2282 case TRANS_RX_ERR_WITH_RXFIS_8B10B_DISP_ERR:
e8fed0e9
JG
2283 case TRANS_RX_ERR_WITH_RXFIS_DECODE_ERROR:
2284 case TRANS_RX_ERR_WITH_RXFIS_CRC_ERR:
2285 case TRANS_RX_ERR_WITH_RXFRAME_LENGTH_OVERRUN:
2286 case TRANS_RX_ERR_WITH_RXFIS_RX_SYNCP:
634a9585
XC
2287 case TRANS_RX_ERR_WITH_LINK_BUF_OVERRUN:
2288 case TRANS_RX_ERR_WITH_BREAK_TIMEOUT:
2289 case TRANS_RX_ERR_WITH_BREAK_REQUEST:
2290 case TRANS_RX_ERR_WITH_BREAK_RECEVIED:
e8fed0e9
JG
2291 case TRANS_RX_ERR_WITH_CLOSE_NORMAL:
2292 case TRANS_RX_ERR_WITH_CLOSE_PHY_DISABLE:
2293 case TRANS_RX_ERR_WITH_CLOSE_DWS_TIMEOUT:
2294 case TRANS_RX_ERR_WITH_CLOSE_COMINIT:
2295 case TRANS_RX_ERR_WITH_DATA_LEN0:
2296 case TRANS_RX_ERR_WITH_BAD_HASH:
2297 case TRANS_RX_XRDY_WLEN_ZERO_ERR:
634a9585
XC
2298 case TRANS_RX_ERR_WITH_BAD_FRM_TYPE:
2299 case DMA_TX_DATA_SGL_OVERFLOW:
2300 case DMA_TX_UNEXP_XFER_ERR:
2301 case DMA_TX_UNEXP_RETRANS_ERR:
2302 case DMA_TX_XFER_LEN_OVERFLOW:
2303 case DMA_TX_XFER_OFFSET_ERR:
e8fed0e9
JG
2304 case SIPC_RX_FIS_STATUS_ERR_BIT_VLD:
2305 case SIPC_RX_PIO_WRSETUP_STATUS_DRQ_ERR:
2306 case SIPC_RX_FIS_STATUS_BSY_BIT_ERR:
2307 case SIPC_RX_WRSETUP_LEN_ODD_ERR:
2308 case SIPC_RX_WRSETUP_LEN_ZERO_ERR:
2309 case SIPC_RX_WRDATA_LEN_NOT_MATCH_ERR:
2310 case SIPC_RX_SATA_UNEXP_FIS_ERR:
634a9585
XC
2311 case DMA_RX_DATA_SGL_OVERFLOW:
2312 case DMA_RX_DATA_OFFSET_ERR:
e8fed0e9
JG
2313 case DMA_RX_SATA_FRAME_TYPE_ERR:
2314 case DMA_RX_UNEXP_RDFRAME_ERR:
2315 case DMA_RX_PIO_DATA_LEN_ERR:
2316 case DMA_RX_RDSETUP_STATUS_ERR:
2317 case DMA_RX_RDSETUP_STATUS_DRQ_ERR:
2318 case DMA_RX_RDSETUP_STATUS_BSY_ERR:
2319 case DMA_RX_RDSETUP_LEN_ODD_ERR:
2320 case DMA_RX_RDSETUP_LEN_ZERO_ERR:
2321 case DMA_RX_RDSETUP_LEN_OVER_ERR:
2322 case DMA_RX_RDSETUP_OFFSET_ERR:
2323 case DMA_RX_RDSETUP_ACTIVE_ERR:
2324 case DMA_RX_RDSETUP_ESTATUS_ERR:
2325 case DMA_RX_UNKNOWN_FRM_ERR:
634a9585
XC
2326 case TRANS_RX_SSP_FRM_LEN_ERR:
2327 case TRANS_TX_OPEN_CNX_ERR_STP_RESOURCES_BUSY:
e8fed0e9 2328 {
634a9585
XC
2329 slot->abort = 1;
2330 ts->stat = SAS_PHY_DOWN;
e8fed0e9
JG
2331 break;
2332 }
2333 default:
2334 {
2335 ts->stat = SAS_PROTO_RESPONSE;
2336 break;
2337 }
2338 }
75904077 2339 hisi_sas_sata_done(task, slot);
e8fed0e9
JG
2340 }
2341 break;
2342 default:
2343 break;
2344 }
2345}
2346
31a9cfa6 2347static int
405314df 2348slot_complete_v2_hw(struct hisi_hba *hisi_hba, struct hisi_sas_slot *slot)
31a9cfa6
JG
2349{
2350 struct sas_task *task = slot->task;
2351 struct hisi_sas_device *sas_dev;
11b75249 2352 struct device *dev = hisi_hba->dev;
31a9cfa6
JG
2353 struct task_status_struct *ts;
2354 struct domain_device *device;
68e6bace 2355 struct sas_ha_struct *ha;
31a9cfa6
JG
2356 enum exec_status sts;
2357 struct hisi_sas_complete_v2_hdr *complete_queue =
2358 hisi_hba->complete_hdr[slot->cmplt_queue];
2359 struct hisi_sas_complete_v2_hdr *complete_hdr =
2360 &complete_queue[slot->cmplt_queue_slot];
54c9dd2d 2361 unsigned long flags;
68e6bace 2362 bool is_internal = slot->is_internal;
31a9cfa6
JG
2363
2364 if (unlikely(!task || !task->lldd_task || !task->dev))
2365 return -EINVAL;
2366
2367 ts = &task->task_status;
2368 device = task->dev;
68e6bace 2369 ha = device->port->ha;
31a9cfa6
JG
2370 sas_dev = device->lldd_dev;
2371
54c9dd2d 2372 spin_lock_irqsave(&task->task_state_lock, flags);
31a9cfa6
JG
2373 task->task_state_flags &=
2374 ~(SAS_TASK_STATE_PENDING | SAS_TASK_AT_INITIATOR);
54c9dd2d 2375 spin_unlock_irqrestore(&task->task_state_lock, flags);
31a9cfa6
JG
2376
2377 memset(ts, 0, sizeof(*ts));
2378 ts->resp = SAS_TASK_COMPLETE;
2379
405314df
JG
2380 if (unlikely(!sas_dev)) {
2381 dev_dbg(dev, "slot complete: port has no device\n");
31a9cfa6
JG
2382 ts->stat = SAS_PHY_DOWN;
2383 goto out;
2384 }
2385
df032d0e
JG
2386 /* Use SAS+TMF status codes */
2387 switch ((complete_hdr->dw0 & CMPLT_HDR_ABORT_STAT_MSK)
2388 >> CMPLT_HDR_ABORT_STAT_OFF) {
2389 case STAT_IO_ABORTED:
2390 /* this io has been aborted by abort command */
2391 ts->stat = SAS_ABORTED_TASK;
2392 goto out;
2393 case STAT_IO_COMPLETE:
2394 /* internal abort command complete */
c35279f2 2395 ts->stat = TMF_RESP_FUNC_SUCC;
0844a3ff 2396 del_timer(&slot->internal_abort_timer);
df032d0e
JG
2397 goto out;
2398 case STAT_IO_NO_DEVICE:
2399 ts->stat = TMF_RESP_FUNC_COMPLETE;
0844a3ff 2400 del_timer(&slot->internal_abort_timer);
df032d0e
JG
2401 goto out;
2402 case STAT_IO_NOT_VALID:
2403 /* abort single io, controller don't find
2404 * the io need to abort
2405 */
2406 ts->stat = TMF_RESP_FUNC_FAILED;
0844a3ff 2407 del_timer(&slot->internal_abort_timer);
df032d0e
JG
2408 goto out;
2409 default:
2410 break;
2411 }
2412
31a9cfa6
JG
2413 if ((complete_hdr->dw0 & CMPLT_HDR_ERX_MSK) &&
2414 (!(complete_hdr->dw0 & CMPLT_HDR_RSPNS_XFRD_MSK))) {
634a9585
XC
2415 u32 err_phase = (complete_hdr->dw0 & CMPLT_HDR_ERR_PHASE_MSK)
2416 >> CMPLT_HDR_ERR_PHASE_OFF;
081a1608 2417 u32 *error_info = hisi_sas_status_buf_addr_mem(slot);
634a9585
XC
2418
2419 /* Analyse error happens on which phase TX or RX */
2420 if (ERR_ON_TX_PHASE(err_phase))
2421 slot_err_v2_hw(hisi_hba, task, slot, 1);
2422 else if (ERR_ON_RX_PHASE(err_phase))
2423 slot_err_v2_hw(hisi_hba, task, slot, 2);
fc866951 2424
081a1608 2425 if (ts->stat != SAS_DATA_UNDERRUN)
ab2d8bd6 2426 dev_info(dev, "erroneous completion iptt=%d task=%p dev id=%d "
081a1608
XC
2427 "CQ hdr: 0x%x 0x%x 0x%x 0x%x "
2428 "Error info: 0x%x 0x%x 0x%x 0x%x\n",
ab2d8bd6 2429 slot->idx, task, sas_dev->device_id,
081a1608
XC
2430 complete_hdr->dw0, complete_hdr->dw1,
2431 complete_hdr->act, complete_hdr->dw3,
2432 error_info[0], error_info[1],
2433 error_info[2], error_info[3]);
2434
fc866951 2435 if (unlikely(slot->abort))
9c8ee657 2436 return ts->stat;
31a9cfa6
JG
2437 goto out;
2438 }
2439
2440 switch (task->task_proto) {
2441 case SAS_PROTOCOL_SSP:
2442 {
f557e32c
XT
2443 struct hisi_sas_status_buffer *status_buffer =
2444 hisi_sas_status_buf_addr_mem(slot);
2445 struct ssp_response_iu *iu = (struct ssp_response_iu *)
2446 &status_buffer->iu[0];
31a9cfa6
JG
2447
2448 sas_ssp_task_response(dev, task, iu);
2449 break;
2450 }
2451 case SAS_PROTOCOL_SMP:
2452 {
2453 struct scatterlist *sg_resp = &task->smp_task.smp_resp;
2454 void *to;
2455
2456 ts->stat = SAM_STAT_GOOD;
2457 to = kmap_atomic(sg_page(sg_resp));
2458
2459 dma_unmap_sg(dev, &task->smp_task.smp_resp, 1,
2460 DMA_FROM_DEVICE);
2461 dma_unmap_sg(dev, &task->smp_task.smp_req, 1,
2462 DMA_TO_DEVICE);
2463 memcpy(to + sg_resp->offset,
f557e32c 2464 hisi_sas_status_buf_addr_mem(slot) +
31a9cfa6
JG
2465 sizeof(struct hisi_sas_err_record),
2466 sg_dma_len(sg_resp));
2467 kunmap_atomic(to);
2468 break;
2469 }
2470 case SAS_PROTOCOL_SATA:
2471 case SAS_PROTOCOL_STP:
2472 case SAS_PROTOCOL_SATA | SAS_PROTOCOL_STP:
6f2ff1a1
JG
2473 {
2474 ts->stat = SAM_STAT_GOOD;
75904077 2475 hisi_sas_sata_done(task, slot);
6f2ff1a1
JG
2476 break;
2477 }
31a9cfa6
JG
2478 default:
2479 ts->stat = SAM_STAT_CHECK_CONDITION;
2480 break;
2481 }
2482
2483 if (!slot->port->port_attached) {
081a1608 2484 dev_warn(dev, "slot complete: port %d has removed\n",
31a9cfa6
JG
2485 slot->port->sas_port.id);
2486 ts->stat = SAS_PHY_DOWN;
2487 }
2488
2489out:
52ed2bba 2490 sts = ts->stat;
54c9dd2d 2491 spin_lock_irqsave(&task->task_state_lock, flags);
52ed2bba
XC
2492 if (task->task_state_flags & SAS_TASK_STATE_ABORTED) {
2493 spin_unlock_irqrestore(&task->task_state_lock, flags);
2494 dev_info(dev, "slot complete: task(%p) aborted\n", task);
2495 return SAS_ABORTED_TASK;
2496 }
fc866951 2497 task->task_state_flags |= SAS_TASK_STATE_DONE;
54c9dd2d 2498 spin_unlock_irqrestore(&task->task_state_lock, flags);
bb03e124 2499 hisi_sas_slot_task_free(hisi_hba, task, slot);
31a9cfa6 2500
68e6bace
XC
2501 if (!is_internal && (task->task_proto != SAS_PROTOCOL_SMP)) {
2502 spin_lock_irqsave(&device->done_lock, flags);
2503 if (test_bit(SAS_HA_FROZEN, &ha->state)) {
2504 spin_unlock_irqrestore(&device->done_lock, flags);
2505 dev_info(dev, "slot complete: task(%p) ignored\n ",
2506 task);
2507 return sts;
2508 }
2509 spin_unlock_irqrestore(&device->done_lock, flags);
2510 }
2511
31a9cfa6
JG
2512 if (task->task_done)
2513 task->task_done(task);
2514
2515 return sts;
2516}
2517
81d115ec 2518static void prep_ata_v2_hw(struct hisi_hba *hisi_hba,
6f2ff1a1
JG
2519 struct hisi_sas_slot *slot)
2520{
2521 struct sas_task *task = slot->task;
2522 struct domain_device *device = task->dev;
2523 struct domain_device *parent_dev = device->parent;
2524 struct hisi_sas_device *sas_dev = device->lldd_dev;
2525 struct hisi_sas_cmd_hdr *hdr = slot->cmd_hdr;
2e244f0f
JG
2526 struct asd_sas_port *sas_port = device->port;
2527 struct hisi_sas_port *port = to_hisi_sas_port(sas_port);
8aca6d4f 2528 struct hisi_sas_tmf_task *tmf = slot->tmf;
6f2ff1a1 2529 u8 *buf_cmd;
81d115ec 2530 int has_data = 0, hdr_tag = 0;
6f2ff1a1
JG
2531 u32 dw1 = 0, dw2 = 0;
2532
2533 /* create header */
2534 /* dw0 */
2535 hdr->dw0 = cpu_to_le32(port->id << CMD_HDR_PORT_OFF);
2536 if (parent_dev && DEV_IS_EXPANDER(parent_dev->dev_type))
2537 hdr->dw0 |= cpu_to_le32(3 << CMD_HDR_CMD_OFF);
2538 else
2539 hdr->dw0 |= cpu_to_le32(4 << CMD_HDR_CMD_OFF);
2540
8aca6d4f
XT
2541 if (tmf && tmf->force_phy) {
2542 hdr->dw0 |= CMD_HDR_FORCE_PHY_MSK;
2543 hdr->dw0 |= cpu_to_le32((1 << tmf->phy_id)
2544 << CMD_HDR_PHY_ID_OFF);
2545 }
2546
6f2ff1a1
JG
2547 /* dw1 */
2548 switch (task->data_dir) {
2549 case DMA_TO_DEVICE:
2550 has_data = 1;
2551 dw1 |= DIR_TO_DEVICE << CMD_HDR_DIR_OFF;
2552 break;
2553 case DMA_FROM_DEVICE:
2554 has_data = 1;
2555 dw1 |= DIR_TO_INI << CMD_HDR_DIR_OFF;
2556 break;
2557 default:
2558 dw1 &= ~CMD_HDR_DIR_MSK;
2559 }
2560
7c594f04
XC
2561 if ((task->ata_task.fis.command == ATA_CMD_DEV_RESET) &&
2562 (task->ata_task.fis.control & ATA_SRST))
6f2ff1a1
JG
2563 dw1 |= 1 << CMD_HDR_RESET_OFF;
2564
6c7bb8a1 2565 dw1 |= (hisi_sas_get_ata_protocol(
ba0bb2be 2566 &task->ata_task.fis, task->data_dir))
6f2ff1a1
JG
2567 << CMD_HDR_FRAME_TYPE_OFF;
2568 dw1 |= sas_dev->device_id << CMD_HDR_DEV_ID_OFF;
2569 hdr->dw1 = cpu_to_le32(dw1);
2570
2571 /* dw2 */
318913c6 2572 if (task->ata_task.use_ncq && hisi_sas_get_ncq_tag(task, &hdr_tag)) {
6f2ff1a1
JG
2573 task->ata_task.fis.sector_count |= (u8) (hdr_tag << 3);
2574 dw2 |= hdr_tag << CMD_HDR_NCQ_TAG_OFF;
2575 }
2576
2577 dw2 |= (HISI_SAS_MAX_STP_RESP_SZ / 4) << CMD_HDR_CFL_OFF |
2578 2 << CMD_HDR_SG_MOD_OFF;
2579 hdr->dw2 = cpu_to_le32(dw2);
2580
2581 /* dw3 */
2582 hdr->transfer_tags = cpu_to_le32(slot->idx);
2583
81d115ec
XC
2584 if (has_data)
2585 prep_prd_sge_v2_hw(hisi_hba, slot, hdr, task->scatter,
6f2ff1a1 2586 slot->n_elem);
6f2ff1a1 2587
6f2ff1a1 2588 hdr->data_transfer_len = cpu_to_le32(task->total_xfer_len);
f557e32c
XT
2589 hdr->cmd_table_addr = cpu_to_le64(hisi_sas_cmd_hdr_addr_dma(slot));
2590 hdr->sts_buffer_addr = cpu_to_le64(hisi_sas_status_buf_addr_dma(slot));
6f2ff1a1 2591
f557e32c 2592 buf_cmd = hisi_sas_cmd_hdr_addr_mem(slot);
6f2ff1a1
JG
2593
2594 if (likely(!task->ata_task.device_control_reg_update))
2595 task->ata_task.fis.flags |= 0x80; /* C=1: update ATA cmd reg */
2596 /* fill in command FIS */
2597 memcpy(buf_cmd, &task->ata_task.fis, sizeof(struct host_to_dev_fis));
6f2ff1a1
JG
2598}
2599
77570eed 2600static void hisi_sas_internal_abort_quirk_timeout(struct timer_list *t)
0844a3ff 2601{
77570eed 2602 struct hisi_sas_slot *slot = from_timer(slot, t, internal_abort_timer);
0844a3ff
JG
2603 struct hisi_sas_port *port = slot->port;
2604 struct asd_sas_port *asd_sas_port;
2605 struct asd_sas_phy *sas_phy;
2606
2607 if (!port)
2608 return;
2609
2610 asd_sas_port = &port->sas_port;
2611
2612 /* Kick the hardware - send break command */
2613 list_for_each_entry(sas_phy, &asd_sas_port->phy_list, port_phy_el) {
2614 struct hisi_sas_phy *phy = sas_phy->lldd_phy;
2615 struct hisi_hba *hisi_hba = phy->hisi_hba;
2616 int phy_no = sas_phy->id;
2617 u32 link_dfx2;
2618
2619 link_dfx2 = hisi_sas_phy_read32(hisi_hba, phy_no, LINK_DFX2);
2620 if ((link_dfx2 == LINK_DFX2_RCVR_HOLD_STS_MSK) ||
2621 (link_dfx2 & LINK_DFX2_SEND_HOLD_STS_MSK)) {
2622 u32 txid_auto;
2623
2624 txid_auto = hisi_sas_phy_read32(hisi_hba, phy_no,
2625 TXID_AUTO);
2626 txid_auto |= TXID_AUTO_CTB_MSK;
2627 hisi_sas_phy_write32(hisi_hba, phy_no, TXID_AUTO,
2628 txid_auto);
2629 return;
2630 }
2631 }
2632}
2633
81d115ec 2634static void prep_abort_v2_hw(struct hisi_hba *hisi_hba,
a3e665d9
JG
2635 struct hisi_sas_slot *slot,
2636 int device_id, int abort_flag, int tag_to_abort)
2637{
2638 struct sas_task *task = slot->task;
2639 struct domain_device *dev = task->dev;
2640 struct hisi_sas_cmd_hdr *hdr = slot->cmd_hdr;
2641 struct hisi_sas_port *port = slot->port;
0844a3ff
JG
2642 struct timer_list *timer = &slot->internal_abort_timer;
2643
2644 /* setup the quirk timer */
77570eed 2645 timer_setup(timer, hisi_sas_internal_abort_quirk_timeout, 0);
0844a3ff
JG
2646 /* Set the timeout to 10ms less than internal abort timeout */
2647 mod_timer(timer, jiffies + msecs_to_jiffies(100));
a3e665d9
JG
2648
2649 /* dw0 */
2650 hdr->dw0 = cpu_to_le32((5 << CMD_HDR_CMD_OFF) | /*abort*/
2651 (port->id << CMD_HDR_PORT_OFF) |
bcbc7f1c 2652 (dev_is_sata(dev) <<
a3e665d9
JG
2653 CMD_HDR_ABORT_DEVICE_TYPE_OFF) |
2654 (abort_flag << CMD_HDR_ABORT_FLAG_OFF));
2655
2656 /* dw1 */
2657 hdr->dw1 = cpu_to_le32(device_id << CMD_HDR_DEV_ID_OFF);
2658
2659 /* dw7 */
2660 hdr->dw7 = cpu_to_le32(tag_to_abort << CMD_HDR_ABORT_IPTT_OFF);
2661 hdr->transfer_tags = cpu_to_le32(slot->idx);
a3e665d9
JG
2662}
2663
7911e66f
JG
2664static int phy_up_v2_hw(int phy_no, struct hisi_hba *hisi_hba)
2665{
981843c6 2666 int i, res = IRQ_HANDLED;
c57eb4e4 2667 u32 port_id, link_rate;
7911e66f
JG
2668 struct hisi_sas_phy *phy = &hisi_hba->phy[phy_no];
2669 struct asd_sas_phy *sas_phy = &phy->sas_phy;
11b75249 2670 struct device *dev = hisi_hba->dev;
7911e66f
JG
2671 u32 *frame_rcvd = (u32 *)sas_phy->frame_rcvd;
2672 struct sas_identify_frame *id = (struct sas_identify_frame *)frame_rcvd;
cca25cbc 2673 unsigned long flags;
7911e66f
JG
2674
2675 hisi_sas_phy_write32(hisi_hba, phy_no, PHYCTRL_PHY_ENA_MSK, 1);
2676
4935933e 2677 if (is_sata_phy_v2_hw(hisi_hba, phy_no))
7911e66f
JG
2678 goto end;
2679
2680 if (phy_no == 8) {
2681 u32 port_state = hisi_sas_read32(hisi_hba, PORT_STATE);
2682
2683 port_id = (port_state & PORT_STATE_PHY8_PORT_NUM_MSK) >>
2684 PORT_STATE_PHY8_PORT_NUM_OFF;
2685 link_rate = (port_state & PORT_STATE_PHY8_CONN_RATE_MSK) >>
2686 PORT_STATE_PHY8_CONN_RATE_OFF;
2687 } else {
2688 port_id = hisi_sas_read32(hisi_hba, PHY_PORT_NUM_MA);
2689 port_id = (port_id >> (4 * phy_no)) & 0xf;
2690 link_rate = hisi_sas_read32(hisi_hba, PHY_CONN_RATE);
2691 link_rate = (link_rate >> (phy_no * 4)) & 0xf;
2692 }
2693
2694 if (port_id == 0xf) {
2695 dev_err(dev, "phyup: phy%d invalid portid\n", phy_no);
2696 res = IRQ_NONE;
2697 goto end;
2698 }
2699
2700 for (i = 0; i < 6; i++) {
2701 u32 idaf = hisi_sas_phy_read32(hisi_hba, phy_no,
2702 RX_IDAF_DWORD0 + (i * 4));
2703 frame_rcvd[i] = __swab32(idaf);
2704 }
2705
7911e66f 2706 sas_phy->linkrate = link_rate;
7911e66f
JG
2707 sas_phy->oob_mode = SAS_OOB_MODE;
2708 memcpy(sas_phy->attached_sas_addr, &id->sas_addr, SAS_ADDR_SIZE);
2709 dev_info(dev, "phyup: phy%d link_rate=%d\n", phy_no, link_rate);
2710 phy->port_id = port_id;
2711 phy->phy_type &= ~(PORT_TYPE_SAS | PORT_TYPE_SATA);
2712 phy->phy_type |= PORT_TYPE_SAS;
2713 phy->phy_attached = 1;
2714 phy->identify.device_type = id->dev_type;
2715 phy->frame_rcvd_size = sizeof(struct sas_identify_frame);
2716 if (phy->identify.device_type == SAS_END_DEVICE)
2717 phy->identify.target_port_protocols =
2718 SAS_PROTOCOL_SSP;
f2f89c32 2719 else if (phy->identify.device_type != SAS_PHY_UNUSED) {
7911e66f
JG
2720 phy->identify.target_port_protocols =
2721 SAS_PROTOCOL_SMP;
f2f89c32
XC
2722 if (!timer_pending(&hisi_hba->timer))
2723 set_link_timer_quirk(hisi_hba);
2724 }
320cd6f1 2725 hisi_sas_notify_phy_event(phy, HISI_PHYE_PHY_UP);
cca25cbc
XC
2726 spin_lock_irqsave(&phy->lock, flags);
2727 if (phy->reset_completion) {
2728 phy->in_reset = 0;
2729 complete(phy->reset_completion);
2730 }
2731 spin_unlock_irqrestore(&phy->lock, flags);
7911e66f
JG
2732
2733end:
2734 hisi_sas_phy_write32(hisi_hba, phy_no, CHL_INT0,
2735 CHL_INT0_SL_PHY_ENABLE_MSK);
2736 hisi_sas_phy_write32(hisi_hba, phy_no, PHYCTRL_PHY_ENA_MSK, 0);
2737
2738 return res;
2739}
2740
f2f89c32
XC
2741static bool check_any_wideports_v2_hw(struct hisi_hba *hisi_hba)
2742{
2743 u32 port_state;
2744
2745 port_state = hisi_sas_read32(hisi_hba, PORT_STATE);
2746 if (port_state & 0x1ff)
2747 return true;
2748
2749 return false;
2750}
2751
5473c060
JG
2752static int phy_down_v2_hw(int phy_no, struct hisi_hba *hisi_hba)
2753{
9c81e2cf 2754 u32 phy_state, sl_ctrl, txid_auto;
f2f89c32
XC
2755 struct hisi_sas_phy *phy = &hisi_hba->phy[phy_no];
2756 struct hisi_sas_port *port = phy->port;
081a1608 2757 struct device *dev = hisi_hba->dev;
5473c060
JG
2758
2759 hisi_sas_phy_write32(hisi_hba, phy_no, PHYCTRL_NOT_RDY_MSK, 1);
2760
5473c060 2761 phy_state = hisi_sas_read32(hisi_hba, PHY_STATE);
081a1608 2762 dev_info(dev, "phydown: phy%d phy_state=0x%x\n", phy_no, phy_state);
5473c060
JG
2763 hisi_sas_phy_down(hisi_hba, phy_no, (phy_state & 1 << phy_no) ? 1 : 0);
2764
9c81e2cf
JG
2765 sl_ctrl = hisi_sas_phy_read32(hisi_hba, phy_no, SL_CONTROL);
2766 hisi_sas_phy_write32(hisi_hba, phy_no, SL_CONTROL,
2767 sl_ctrl & ~SL_CONTROL_CTA_MSK);
f2f89c32
XC
2768 if (port && !get_wideport_bitmap_v2_hw(hisi_hba, port->id))
2769 if (!check_any_wideports_v2_hw(hisi_hba) &&
2770 timer_pending(&hisi_hba->timer))
2771 del_timer(&hisi_hba->timer);
9c81e2cf
JG
2772
2773 txid_auto = hisi_sas_phy_read32(hisi_hba, phy_no, TXID_AUTO);
2774 hisi_sas_phy_write32(hisi_hba, phy_no, TXID_AUTO,
2775 txid_auto | TXID_AUTO_CT3_MSK);
2776
5473c060
JG
2777 hisi_sas_phy_write32(hisi_hba, phy_no, CHL_INT0, CHL_INT0_NOT_RDY_MSK);
2778 hisi_sas_phy_write32(hisi_hba, phy_no, PHYCTRL_NOT_RDY_MSK, 0);
2779
981843c6 2780 return IRQ_HANDLED;
5473c060
JG
2781}
2782
7911e66f
JG
2783static irqreturn_t int_phy_updown_v2_hw(int irq_no, void *p)
2784{
2785 struct hisi_hba *hisi_hba = p;
2786 u32 irq_msk;
2787 int phy_no = 0;
c16db736 2788 irqreturn_t res = IRQ_NONE;
7911e66f
JG
2789
2790 irq_msk = (hisi_sas_read32(hisi_hba, HGC_INVLD_DQE_INFO)
2791 >> HGC_INVLD_DQE_INFO_FB_CH0_OFF) & 0x1ff;
2792 while (irq_msk) {
2793 if (irq_msk & 1) {
981843c6
XT
2794 u32 reg_value = hisi_sas_phy_read32(hisi_hba, phy_no,
2795 CHL_INT0);
2796
2797 switch (reg_value & (CHL_INT0_NOT_RDY_MSK |
2798 CHL_INT0_SL_PHY_ENABLE_MSK)) {
7911e66f 2799
981843c6 2800 case CHL_INT0_SL_PHY_ENABLE_MSK:
7911e66f 2801 /* phy up */
981843c6 2802 if (phy_up_v2_hw(phy_no, hisi_hba) ==
c16db736
XC
2803 IRQ_HANDLED)
2804 res = IRQ_HANDLED;
981843c6 2805 break;
7911e66f 2806
981843c6 2807 case CHL_INT0_NOT_RDY_MSK:
5473c060 2808 /* phy down */
981843c6 2809 if (phy_down_v2_hw(phy_no, hisi_hba) ==
c16db736
XC
2810 IRQ_HANDLED)
2811 res = IRQ_HANDLED;
981843c6
XT
2812 break;
2813
2814 case (CHL_INT0_NOT_RDY_MSK |
2815 CHL_INT0_SL_PHY_ENABLE_MSK):
2816 reg_value = hisi_sas_read32(hisi_hba,
2817 PHY_STATE);
2818 if (reg_value & BIT(phy_no)) {
2819 /* phy up */
2820 if (phy_up_v2_hw(phy_no, hisi_hba) ==
c16db736
XC
2821 IRQ_HANDLED)
2822 res = IRQ_HANDLED;
981843c6
XT
2823 } else {
2824 /* phy down */
2825 if (phy_down_v2_hw(phy_no, hisi_hba) ==
c16db736
XC
2826 IRQ_HANDLED)
2827 res = IRQ_HANDLED;
5473c060 2828 }
981843c6
XT
2829 break;
2830
2831 default:
2832 break;
2833 }
2834
7911e66f
JG
2835 }
2836 irq_msk >>= 1;
2837 phy_no++;
2838 }
2839
c16db736 2840 return res;
7911e66f
JG
2841}
2842
d3bf3d84
JG
2843static void phy_bcast_v2_hw(int phy_no, struct hisi_hba *hisi_hba)
2844{
2845 struct hisi_sas_phy *phy = &hisi_hba->phy[phy_no];
2846 struct asd_sas_phy *sas_phy = &phy->sas_phy;
2847 struct sas_ha_struct *sas_ha = &hisi_hba->sha;
85080a25 2848 u32 bcast_status;
d3bf3d84
JG
2849
2850 hisi_sas_phy_write32(hisi_hba, phy_no, SL_RX_BCAST_CHK_MSK, 1);
85080a25 2851 bcast_status = hisi_sas_phy_read32(hisi_hba, phy_no, RX_PRIMS_STATUS);
df48a904
XT
2852 if ((bcast_status & RX_BCAST_CHG_MSK) &&
2853 !test_bit(HISI_SAS_RESET_BIT, &hisi_hba->flags))
85080a25 2854 sas_ha->notify_port_event(sas_phy, PORTE_BROADCAST_RCVD);
d3bf3d84
JG
2855 hisi_sas_phy_write32(hisi_hba, phy_no, CHL_INT0,
2856 CHL_INT0_SL_RX_BCST_ACK_MSK);
2857 hisi_sas_phy_write32(hisi_hba, phy_no, SL_RX_BCAST_CHK_MSK, 0);
2858}
2859
9dd1d620
XT
2860static const struct hisi_sas_hw_error port_ecc_axi_error[] = {
2861 {
2862 .irq_msk = BIT(CHL_INT1_DMAC_TX_ECC_ERR_OFF),
2863 .msg = "dmac_tx_ecc_bad_err",
2864 },
2865 {
2866 .irq_msk = BIT(CHL_INT1_DMAC_RX_ECC_ERR_OFF),
2867 .msg = "dmac_rx_ecc_bad_err",
2868 },
2869 {
2870 .irq_msk = BIT(CHL_INT1_DMAC_TX_AXI_WR_ERR_OFF),
2871 .msg = "dma_tx_axi_wr_err",
2872 },
2873 {
2874 .irq_msk = BIT(CHL_INT1_DMAC_TX_AXI_RD_ERR_OFF),
2875 .msg = "dma_tx_axi_rd_err",
2876 },
2877 {
2878 .irq_msk = BIT(CHL_INT1_DMAC_RX_AXI_WR_ERR_OFF),
2879 .msg = "dma_rx_axi_wr_err",
2880 },
2881 {
2882 .irq_msk = BIT(CHL_INT1_DMAC_RX_AXI_RD_ERR_OFF),
2883 .msg = "dma_rx_axi_rd_err",
2884 },
2885};
2886
d3bf3d84
JG
2887static irqreturn_t int_chnl_int_v2_hw(int irq_no, void *p)
2888{
2889 struct hisi_hba *hisi_hba = p;
11b75249 2890 struct device *dev = hisi_hba->dev;
d3bf3d84
JG
2891 u32 ent_msk, ent_tmp, irq_msk;
2892 int phy_no = 0;
2893
2894 ent_msk = hisi_sas_read32(hisi_hba, ENT_INT_SRC_MSK3);
2895 ent_tmp = ent_msk;
2896 ent_msk |= ENT_INT_SRC_MSK3_ENT95_MSK_MSK;
2897 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK3, ent_msk);
2898
2899 irq_msk = (hisi_sas_read32(hisi_hba, HGC_INVLD_DQE_INFO) >>
2900 HGC_INVLD_DQE_INFO_FB_CH3_OFF) & 0x1ff;
2901
2902 while (irq_msk) {
af00d159
XT
2903 u32 irq_value0 = hisi_sas_phy_read32(hisi_hba, phy_no,
2904 CHL_INT0);
2905 u32 irq_value1 = hisi_sas_phy_read32(hisi_hba, phy_no,
2906 CHL_INT1);
2907 u32 irq_value2 = hisi_sas_phy_read32(hisi_hba, phy_no,
2908 CHL_INT2);
2909
2910 if ((irq_msk & (1 << phy_no)) && irq_value1) {
9dd1d620
XT
2911 int i;
2912
2913 for (i = 0; i < ARRAY_SIZE(port_ecc_axi_error); i++) {
2914 const struct hisi_sas_hw_error *error =
2915 &port_ecc_axi_error[i];
2916
2917 if (!(irq_value1 & error->irq_msk))
2918 continue;
2919
2920 dev_warn(dev, "%s error (phy%d 0x%x) found!\n",
2921 error->msg, phy_no, irq_value1);
2922 queue_work(hisi_hba->wq, &hisi_hba->rst_work);
2923 }
d3bf3d84 2924
af00d159
XT
2925 hisi_sas_phy_write32(hisi_hba, phy_no,
2926 CHL_INT1, irq_value1);
2927 }
d3bf3d84 2928
066312f6
XT
2929 if ((irq_msk & (1 << phy_no)) && irq_value2) {
2930 struct hisi_sas_phy *phy = &hisi_hba->phy[phy_no];
2931
2932 if (irq_value2 & BIT(CHL_INT2_SL_IDAF_TOUT_CONF_OFF)) {
2933 dev_warn(dev, "phy%d identify timeout\n",
2934 phy_no);
2935 hisi_sas_notify_phy_event(phy,
2936 HISI_PHYE_LINK_RESET);
2937 }
d3bf3d84 2938
066312f6
XT
2939 hisi_sas_phy_write32(hisi_hba, phy_no,
2940 CHL_INT2, irq_value2);
2941 }
d3bf3d84 2942
af00d159
XT
2943 if ((irq_msk & (1 << phy_no)) && irq_value0) {
2944 if (irq_value0 & CHL_INT0_SL_RX_BCST_ACK_MSK)
2945 phy_bcast_v2_hw(phy_no, hisi_hba);
2946
2947 hisi_sas_phy_write32(hisi_hba, phy_no,
2948 CHL_INT0, irq_value0
2949 & (~CHL_INT0_HOTPLUG_TOUT_MSK)
2950 & (~CHL_INT0_SL_PHY_ENABLE_MSK)
2951 & (~CHL_INT0_NOT_RDY_MSK));
d3bf3d84
JG
2952 }
2953 irq_msk &= ~(1 << phy_no);
2954 phy_no++;
2955 }
2956
2957 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK3, ent_tmp);
2958
2959 return IRQ_HANDLED;
2960}
2961
d3b688d3
XC
2962static void
2963one_bit_ecc_error_process_v2_hw(struct hisi_hba *hisi_hba, u32 irq_value)
2964{
11b75249 2965 struct device *dev = hisi_hba->dev;
2b383351
JG
2966 const struct hisi_sas_hw_error *ecc_error;
2967 u32 val;
2968 int i;
d3b688d3 2969
2b383351
JG
2970 for (i = 0; i < ARRAY_SIZE(one_bit_ecc_errors); i++) {
2971 ecc_error = &one_bit_ecc_errors[i];
2972 if (irq_value & ecc_error->irq_msk) {
2973 val = hisi_sas_read32(hisi_hba, ecc_error->reg);
2974 val &= ecc_error->msk;
2975 val >>= ecc_error->shift;
2976 dev_warn(dev, ecc_error->msg, val);
2977 }
d3b688d3 2978 }
d3b688d3
XC
2979}
2980
2981static void multi_bit_ecc_error_process_v2_hw(struct hisi_hba *hisi_hba,
2982 u32 irq_value)
2983{
11b75249 2984 struct device *dev = hisi_hba->dev;
2b383351
JG
2985 const struct hisi_sas_hw_error *ecc_error;
2986 u32 val;
2987 int i;
d3b688d3 2988
2b383351
JG
2989 for (i = 0; i < ARRAY_SIZE(multi_bit_ecc_errors); i++) {
2990 ecc_error = &multi_bit_ecc_errors[i];
2991 if (irq_value & ecc_error->irq_msk) {
2992 val = hisi_sas_read32(hisi_hba, ecc_error->reg);
2993 val &= ecc_error->msk;
2994 val >>= ecc_error->shift;
081a1608 2995 dev_err(dev, ecc_error->msg, irq_value, val);
2b383351
JG
2996 queue_work(hisi_hba->wq, &hisi_hba->rst_work);
2997 }
d3b688d3
XC
2998 }
2999
e281f42f 3000 return;
d3b688d3
XC
3001}
3002
3003static irqreturn_t fatal_ecc_int_v2_hw(int irq_no, void *p)
3004{
3005 struct hisi_hba *hisi_hba = p;
3006 u32 irq_value, irq_msk;
3007
3008 irq_msk = hisi_sas_read32(hisi_hba, SAS_ECC_INTR_MSK);
3009 hisi_sas_write32(hisi_hba, SAS_ECC_INTR_MSK, irq_msk | 0xffffffff);
3010
3011 irq_value = hisi_sas_read32(hisi_hba, SAS_ECC_INTR);
3012 if (irq_value) {
3013 one_bit_ecc_error_process_v2_hw(hisi_hba, irq_value);
3014 multi_bit_ecc_error_process_v2_hw(hisi_hba, irq_value);
3015 }
3016
3017 hisi_sas_write32(hisi_hba, SAS_ECC_INTR, irq_value);
3018 hisi_sas_write32(hisi_hba, SAS_ECC_INTR_MSK, irq_msk);
3019
3020 return IRQ_HANDLED;
3021}
3022
729428ca
SJ
3023static const struct hisi_sas_hw_error axi_error[] = {
3024 { .msk = BIT(0), .msg = "IOST_AXI_W_ERR" },
3025 { .msk = BIT(1), .msg = "IOST_AXI_R_ERR" },
3026 { .msk = BIT(2), .msg = "ITCT_AXI_W_ERR" },
3027 { .msk = BIT(3), .msg = "ITCT_AXI_R_ERR" },
3028 { .msk = BIT(4), .msg = "SATA_AXI_W_ERR" },
3029 { .msk = BIT(5), .msg = "SATA_AXI_R_ERR" },
3030 { .msk = BIT(6), .msg = "DQE_AXI_R_ERR" },
3031 { .msk = BIT(7), .msg = "CQE_AXI_W_ERR" },
3032 {},
d3b688d3
XC
3033};
3034
729428ca
SJ
3035static const struct hisi_sas_hw_error fifo_error[] = {
3036 { .msk = BIT(8), .msg = "CQE_WINFO_FIFO" },
3037 { .msk = BIT(9), .msg = "CQE_MSG_FIFIO" },
3038 { .msk = BIT(10), .msg = "GETDQE_FIFO" },
3039 { .msk = BIT(11), .msg = "CMDP_FIFO" },
3040 { .msk = BIT(12), .msg = "AWTCTRL_FIFO" },
3041 {},
d3b688d3
XC
3042};
3043
729428ca
SJ
3044static const struct hisi_sas_hw_error fatal_axi_errors[] = {
3045 {
3046 .irq_msk = BIT(ENT_INT_SRC3_WP_DEPTH_OFF),
3047 .msg = "write pointer and depth",
3048 },
3049 {
3050 .irq_msk = BIT(ENT_INT_SRC3_IPTT_SLOT_NOMATCH_OFF),
3051 .msg = "iptt no match slot",
3052 },
3053 {
3054 .irq_msk = BIT(ENT_INT_SRC3_RP_DEPTH_OFF),
3055 .msg = "read pointer and depth",
3056 },
3057 {
3058 .irq_msk = BIT(ENT_INT_SRC3_AXI_OFF),
3059 .reg = HGC_AXI_FIFO_ERR_INFO,
3060 .sub = axi_error,
3061 },
3062 {
3063 .irq_msk = BIT(ENT_INT_SRC3_FIFO_OFF),
3064 .reg = HGC_AXI_FIFO_ERR_INFO,
3065 .sub = fifo_error,
3066 },
3067 {
3068 .irq_msk = BIT(ENT_INT_SRC3_LM_OFF),
3069 .msg = "LM add/fetch list",
3070 },
3071 {
3072 .irq_msk = BIT(ENT_INT_SRC3_ABT_OFF),
3073 .msg = "SAS_HGC_ABT fetch LM list",
3074 },
d3b688d3
XC
3075};
3076
3077static irqreturn_t fatal_axi_int_v2_hw(int irq_no, void *p)
3078{
3079 struct hisi_hba *hisi_hba = p;
3080 u32 irq_value, irq_msk, err_value;
11b75249 3081 struct device *dev = hisi_hba->dev;
729428ca
SJ
3082 const struct hisi_sas_hw_error *axi_error;
3083 int i;
d3b688d3
XC
3084
3085 irq_msk = hisi_sas_read32(hisi_hba, ENT_INT_SRC_MSK3);
3086 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK3, irq_msk | 0xfffffffe);
3087
3088 irq_value = hisi_sas_read32(hisi_hba, ENT_INT_SRC3);
d3b688d3 3089
729428ca
SJ
3090 for (i = 0; i < ARRAY_SIZE(fatal_axi_errors); i++) {
3091 axi_error = &fatal_axi_errors[i];
3092 if (!(irq_value & axi_error->irq_msk))
3093 continue;
d3b688d3 3094
729428ca
SJ
3095 hisi_sas_write32(hisi_hba, ENT_INT_SRC3,
3096 1 << axi_error->shift);
3097 if (axi_error->sub) {
3098 const struct hisi_sas_hw_error *sub = axi_error->sub;
3099
3100 err_value = hisi_sas_read32(hisi_hba, axi_error->reg);
3101 for (; sub->msk || sub->msg; sub++) {
3102 if (!(err_value & sub->msk))
3103 continue;
081a1608 3104 dev_err(dev, "%s (0x%x) found!\n",
729428ca
SJ
3105 sub->msg, irq_value);
3106 queue_work(hisi_hba->wq, &hisi_hba->rst_work);
d3b688d3 3107 }
729428ca 3108 } else {
081a1608 3109 dev_err(dev, "%s (0x%x) found!\n",
729428ca 3110 axi_error->msg, irq_value);
e281f42f 3111 queue_work(hisi_hba->wq, &hisi_hba->rst_work);
d3b688d3 3112 }
729428ca 3113 }
640acc9a 3114
729428ca
SJ
3115 if (irq_value & BIT(ENT_INT_SRC3_ITC_INT_OFF)) {
3116 u32 reg_val = hisi_sas_read32(hisi_hba, ITCT_CLR);
3117 u32 dev_id = reg_val & ITCT_DEV_MSK;
3118 struct hisi_sas_device *sas_dev = &hisi_hba->devices[dev_id];
640acc9a 3119
729428ca
SJ
3120 hisi_sas_write32(hisi_hba, ITCT_CLR, 0);
3121 dev_dbg(dev, "clear ITCT ok\n");
3122 complete(sas_dev->completion);
d3b688d3
XC
3123 }
3124
640acc9a 3125 hisi_sas_write32(hisi_hba, ENT_INT_SRC3, irq_value);
d3b688d3
XC
3126 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK3, irq_msk);
3127
3128 return IRQ_HANDLED;
3129}
3130
d177c408 3131static void cq_tasklet_v2_hw(unsigned long val)
31a9cfa6 3132{
d177c408 3133 struct hisi_sas_cq *cq = (struct hisi_sas_cq *)val;
31a9cfa6
JG
3134 struct hisi_hba *hisi_hba = cq->hisi_hba;
3135 struct hisi_sas_slot *slot;
3136 struct hisi_sas_itct *itct;
3137 struct hisi_sas_complete_v2_hdr *complete_queue;
d177c408 3138 u32 rd_point = cq->rd_point, wr_point, dev_id;
31a9cfa6
JG
3139 int queue = cq->id;
3140
c7b9d369
XT
3141 if (unlikely(hisi_hba->reject_stp_links_msk))
3142 phys_try_accept_stp_links_v2_hw(hisi_hba);
3143
31a9cfa6 3144 complete_queue = hisi_hba->complete_hdr[queue];
31a9cfa6 3145
31a9cfa6
JG
3146 wr_point = hisi_sas_read32(hisi_hba, COMPL_Q_0_WR_PTR +
3147 (0x14 * queue));
3148
3149 while (rd_point != wr_point) {
3150 struct hisi_sas_complete_v2_hdr *complete_hdr;
3151 int iptt;
3152
3153 complete_hdr = &complete_queue[rd_point];
3154
3155 /* Check for NCQ completion */
3156 if (complete_hdr->act) {
3157 u32 act_tmp = complete_hdr->act;
3158 int ncq_tag_count = ffs(act_tmp);
3159
3160 dev_id = (complete_hdr->dw1 & CMPLT_HDR_DEV_ID_MSK) >>
3161 CMPLT_HDR_DEV_ID_OFF;
3162 itct = &hisi_hba->itct[dev_id];
3163
3164 /* The NCQ tags are held in the itct header */
3165 while (ncq_tag_count) {
3166 __le64 *ncq_tag = &itct->qw4_15[0];
3167
3168 ncq_tag_count -= 1;
3169 iptt = (ncq_tag[ncq_tag_count / 5]
3170 >> (ncq_tag_count % 5) * 12) & 0xfff;
3171
3172 slot = &hisi_hba->slot_info[iptt];
3173 slot->cmplt_queue_slot = rd_point;
3174 slot->cmplt_queue = queue;
405314df 3175 slot_complete_v2_hw(hisi_hba, slot);
31a9cfa6
JG
3176
3177 act_tmp &= ~(1 << ncq_tag_count);
3178 ncq_tag_count = ffs(act_tmp);
3179 }
3180 } else {
3181 iptt = (complete_hdr->dw1) & CMPLT_HDR_IPTT_MSK;
3182 slot = &hisi_hba->slot_info[iptt];
3183 slot->cmplt_queue_slot = rd_point;
3184 slot->cmplt_queue = queue;
405314df 3185 slot_complete_v2_hw(hisi_hba, slot);
31a9cfa6
JG
3186 }
3187
3188 if (++rd_point >= HISI_SAS_QUEUE_SLOTS)
3189 rd_point = 0;
3190 }
3191
3192 /* update rd_point */
e6c346f3 3193 cq->rd_point = rd_point;
31a9cfa6 3194 hisi_sas_write32(hisi_hba, COMPL_Q_0_RD_PTR + (0x14 * queue), rd_point);
d177c408
JG
3195}
3196
3197static irqreturn_t cq_interrupt_v2_hw(int irq_no, void *p)
3198{
3199 struct hisi_sas_cq *cq = p;
3200 struct hisi_hba *hisi_hba = cq->hisi_hba;
3201 int queue = cq->id;
3202
3203 hisi_sas_write32(hisi_hba, OQ_INT_SRC, 1 << queue);
3204
3205 tasklet_schedule(&cq->tasklet);
3206
31a9cfa6
JG
3207 return IRQ_HANDLED;
3208}
3209
d43f9cdb
JG
3210static irqreturn_t sata_int_v2_hw(int irq_no, void *p)
3211{
3212 struct hisi_sas_phy *phy = p;
3213 struct hisi_hba *hisi_hba = phy->hisi_hba;
3214 struct asd_sas_phy *sas_phy = &phy->sas_phy;
11b75249 3215 struct device *dev = hisi_hba->dev;
d43f9cdb
JG
3216 struct hisi_sas_initial_fis *initial_fis;
3217 struct dev_to_host_fis *fis;
3218 u32 ent_tmp, ent_msk, ent_int, port_id, link_rate, hard_phy_linkrate;
3219 irqreturn_t res = IRQ_HANDLED;
3220 u8 attached_sas_addr[SAS_ADDR_SIZE] = {0};
cca25cbc 3221 unsigned long flags;
11826e5d 3222 int phy_no, offset;
d43f9cdb
JG
3223
3224 phy_no = sas_phy->id;
3225 initial_fis = &hisi_hba->initial_fis[phy_no];
3226 fis = &initial_fis->fis;
3227
11826e5d
JG
3228 offset = 4 * (phy_no / 4);
3229 ent_msk = hisi_sas_read32(hisi_hba, ENT_INT_SRC_MSK1 + offset);
3230 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK1 + offset,
3231 ent_msk | 1 << ((phy_no % 4) * 8));
d43f9cdb 3232
11826e5d
JG
3233 ent_int = hisi_sas_read32(hisi_hba, ENT_INT_SRC1 + offset);
3234 ent_tmp = ent_int & (1 << (ENT_INT_SRC1_D2H_FIS_CH1_OFF *
3235 (phy_no % 4)));
d43f9cdb
JG
3236 ent_int >>= ENT_INT_SRC1_D2H_FIS_CH1_OFF * (phy_no % 4);
3237 if ((ent_int & ENT_INT_SRC1_D2H_FIS_CH0_MSK) == 0) {
3238 dev_warn(dev, "sata int: phy%d did not receive FIS\n", phy_no);
d43f9cdb
JG
3239 res = IRQ_NONE;
3240 goto end;
04708ff4
XC
3241 }
3242
3243 /* check ERR bit of Status Register */
3244 if (fis->status & ATA_ERR) {
3245 dev_warn(dev, "sata int: phy%d FIS status: 0x%x\n", phy_no,
3246 fis->status);
a2d76b6b 3247 hisi_sas_notify_phy_event(phy, HISI_PHYE_LINK_RESET);
04708ff4
XC
3248 res = IRQ_NONE;
3249 goto end;
d43f9cdb
JG
3250 }
3251
3252 if (unlikely(phy_no == 8)) {
3253 u32 port_state = hisi_sas_read32(hisi_hba, PORT_STATE);
3254
3255 port_id = (port_state & PORT_STATE_PHY8_PORT_NUM_MSK) >>
3256 PORT_STATE_PHY8_PORT_NUM_OFF;
3257 link_rate = (port_state & PORT_STATE_PHY8_CONN_RATE_MSK) >>
3258 PORT_STATE_PHY8_CONN_RATE_OFF;
3259 } else {
3260 port_id = hisi_sas_read32(hisi_hba, PHY_PORT_NUM_MA);
3261 port_id = (port_id >> (4 * phy_no)) & 0xf;
3262 link_rate = hisi_sas_read32(hisi_hba, PHY_CONN_RATE);
3263 link_rate = (link_rate >> (phy_no * 4)) & 0xf;
3264 }
3265
3266 if (port_id == 0xf) {
3267 dev_err(dev, "sata int: phy%d invalid portid\n", phy_no);
3268 res = IRQ_NONE;
3269 goto end;
3270 }
3271
3272 sas_phy->linkrate = link_rate;
3273 hard_phy_linkrate = hisi_sas_phy_read32(hisi_hba, phy_no,
3274 HARD_PHY_LINKRATE);
3275 phy->maximum_linkrate = hard_phy_linkrate & 0xf;
3276 phy->minimum_linkrate = (hard_phy_linkrate >> 4) & 0xf;
3277
3278 sas_phy->oob_mode = SATA_OOB_MODE;
3279 /* Make up some unique SAS address */
3280 attached_sas_addr[0] = 0x50;
e51846ff 3281 attached_sas_addr[6] = hisi_hba->shost->host_no;
d43f9cdb
JG
3282 attached_sas_addr[7] = phy_no;
3283 memcpy(sas_phy->attached_sas_addr, attached_sas_addr, SAS_ADDR_SIZE);
3284 memcpy(sas_phy->frame_rcvd, fis, sizeof(struct dev_to_host_fis));
3285 dev_info(dev, "sata int phyup: phy%d link_rate=%d\n", phy_no, link_rate);
3286 phy->phy_type &= ~(PORT_TYPE_SAS | PORT_TYPE_SATA);
3287 phy->port_id = port_id;
3288 phy->phy_type |= PORT_TYPE_SATA;
3289 phy->phy_attached = 1;
3290 phy->identify.device_type = SAS_SATA_DEV;
3291 phy->frame_rcvd_size = sizeof(struct dev_to_host_fis);
3292 phy->identify.target_port_protocols = SAS_PROTOCOL_SATA;
320cd6f1 3293 hisi_sas_notify_phy_event(phy, HISI_PHYE_PHY_UP);
d43f9cdb 3294
cca25cbc
XC
3295 spin_lock_irqsave(&phy->lock, flags);
3296 if (phy->reset_completion) {
3297 phy->in_reset = 0;
3298 complete(phy->reset_completion);
3299 }
3300 spin_unlock_irqrestore(&phy->lock, flags);
d43f9cdb 3301end:
11826e5d
JG
3302 hisi_sas_write32(hisi_hba, ENT_INT_SRC1 + offset, ent_tmp);
3303 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK1 + offset, ent_msk);
d43f9cdb
JG
3304
3305 return res;
3306}
3307
7911e66f
JG
3308static irq_handler_t phy_interrupts[HISI_SAS_PHY_INT_NR] = {
3309 int_phy_updown_v2_hw,
d3bf3d84 3310 int_chnl_int_v2_hw,
7911e66f
JG
3311};
3312
d3b688d3
XC
3313static irq_handler_t fatal_interrupts[HISI_SAS_FATAL_INT_NR] = {
3314 fatal_ecc_int_v2_hw,
3315 fatal_axi_int_v2_hw
3316};
3317
7911e66f
JG
3318/**
3319 * There is a limitation in the hip06 chipset that we need
3320 * to map in all mbigen interrupts, even if they are not used.
3321 */
3322static int interrupt_init_v2_hw(struct hisi_hba *hisi_hba)
3323{
11b75249 3324 struct platform_device *pdev = hisi_hba->platform_dev;
7911e66f 3325 struct device *dev = &pdev->dev;
8a253888
XC
3326 int irq, rc, irq_map[128];
3327 int i, phy_no, fatal_no, queue_no, k;
7911e66f
JG
3328
3329 for (i = 0; i < 128; i++)
3330 irq_map[i] = platform_get_irq(pdev, i);
3331
3332 for (i = 0; i < HISI_SAS_PHY_INT_NR; i++) {
8a253888 3333 irq = irq_map[i + 1]; /* Phy up/down is irq1 */
7911e66f
JG
3334 rc = devm_request_irq(dev, irq, phy_interrupts[i], 0,
3335 DRV_NAME " phy", hisi_hba);
3336 if (rc) {
3337 dev_err(dev, "irq init: could not request "
3338 "phy interrupt %d, rc=%d\n",
3339 irq, rc);
8a253888
XC
3340 rc = -ENOENT;
3341 goto free_phy_int_irqs;
7911e66f
JG
3342 }
3343 }
3344
8a253888
XC
3345 for (phy_no = 0; phy_no < hisi_hba->n_phy; phy_no++) {
3346 struct hisi_sas_phy *phy = &hisi_hba->phy[phy_no];
d43f9cdb 3347
8a253888 3348 irq = irq_map[phy_no + 72];
d43f9cdb
JG
3349 rc = devm_request_irq(dev, irq, sata_int_v2_hw, 0,
3350 DRV_NAME " sata", phy);
3351 if (rc) {
3352 dev_err(dev, "irq init: could not request "
3353 "sata interrupt %d, rc=%d\n",
3354 irq, rc);
8a253888
XC
3355 rc = -ENOENT;
3356 goto free_sata_int_irqs;
d43f9cdb
JG
3357 }
3358 }
31a9cfa6 3359
8a253888
XC
3360 for (fatal_no = 0; fatal_no < HISI_SAS_FATAL_INT_NR; fatal_no++) {
3361 irq = irq_map[fatal_no + 81];
3362 rc = devm_request_irq(dev, irq, fatal_interrupts[fatal_no], 0,
d3b688d3
XC
3363 DRV_NAME " fatal", hisi_hba);
3364 if (rc) {
3365 dev_err(dev,
3366 "irq init: could not request fatal interrupt %d, rc=%d\n",
3367 irq, rc);
8a253888
XC
3368 rc = -ENOENT;
3369 goto free_fatal_int_irqs;
d3b688d3
XC
3370 }
3371 }
3372
8a253888
XC
3373 for (queue_no = 0; queue_no < hisi_hba->queue_count; queue_no++) {
3374 struct hisi_sas_cq *cq = &hisi_hba->cq[queue_no];
d177c408 3375 struct tasklet_struct *t = &cq->tasklet;
31a9cfa6 3376
8a253888 3377 irq = irq_map[queue_no + 96];
31a9cfa6 3378 rc = devm_request_irq(dev, irq, cq_interrupt_v2_hw, 0,
8a253888 3379 DRV_NAME " cq", cq);
31a9cfa6
JG
3380 if (rc) {
3381 dev_err(dev,
3382 "irq init: could not request cq interrupt %d, rc=%d\n",
3383 irq, rc);
8a253888
XC
3384 rc = -ENOENT;
3385 goto free_cq_int_irqs;
31a9cfa6 3386 }
d177c408 3387 tasklet_init(t, cq_tasklet_v2_hw, (unsigned long)cq);
31a9cfa6
JG
3388 }
3389
7911e66f 3390 return 0;
8a253888
XC
3391
3392free_cq_int_irqs:
3393 for (k = 0; k < queue_no; k++) {
3394 struct hisi_sas_cq *cq = &hisi_hba->cq[k];
3395
3396 free_irq(irq_map[k + 96], cq);
3397 tasklet_kill(&cq->tasklet);
3398 }
3399free_fatal_int_irqs:
3400 for (k = 0; k < fatal_no; k++)
3401 free_irq(irq_map[k + 81], hisi_hba);
3402free_sata_int_irqs:
3403 for (k = 0; k < phy_no; k++) {
3404 struct hisi_sas_phy *phy = &hisi_hba->phy[k];
3405
3406 free_irq(irq_map[k + 72], phy);
3407 }
3408free_phy_int_irqs:
3409 for (k = 0; k < i; k++)
3410 free_irq(irq_map[k + 1], hisi_hba);
3411 return rc;
7911e66f
JG
3412}
3413
94eac9e1
JG
3414static int hisi_sas_v2_init(struct hisi_hba *hisi_hba)
3415{
3416 int rc;
3417
32ccba52
XT
3418 memset(hisi_hba->sata_dev_bitmap, 0, sizeof(hisi_hba->sata_dev_bitmap));
3419
94eac9e1
JG
3420 rc = hw_init_v2_hw(hisi_hba);
3421 if (rc)
3422 return rc;
3423
7911e66f
JG
3424 rc = interrupt_init_v2_hw(hisi_hba);
3425 if (rc)
3426 return rc;
3427
94eac9e1
JG
3428 return 0;
3429}
3430
06ec0fb9
XC
3431static void interrupt_disable_v2_hw(struct hisi_hba *hisi_hba)
3432{
11b75249 3433 struct platform_device *pdev = hisi_hba->platform_dev;
06ec0fb9
XC
3434 int i;
3435
3436 for (i = 0; i < hisi_hba->queue_count; i++)
3437 hisi_sas_write32(hisi_hba, OQ0_INT_SRC_MSK + 0x4 * i, 0x1);
3438
3439 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK1, 0xffffffff);
3440 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK2, 0xffffffff);
3441 hisi_sas_write32(hisi_hba, ENT_INT_SRC_MSK3, 0xffffffff);
3442 hisi_sas_write32(hisi_hba, SAS_ECC_INTR_MSK, 0xffffffff);
3443
3444 for (i = 0; i < hisi_hba->n_phy; i++) {
3445 hisi_sas_phy_write32(hisi_hba, i, CHL_INT1_MSK, 0xffffffff);
3446 hisi_sas_phy_write32(hisi_hba, i, CHL_INT2_MSK, 0xffffffff);
3447 }
3448
3449 for (i = 0; i < 128; i++)
3450 synchronize_irq(platform_get_irq(pdev, i));
3451}
3452
917d3bda
XT
3453
3454static u32 get_phys_state_v2_hw(struct hisi_hba *hisi_hba)
3455{
3456 return hisi_sas_read32(hisi_hba, PHY_STATE);
3457}
3458
06ec0fb9
XC
3459static int soft_reset_v2_hw(struct hisi_hba *hisi_hba)
3460{
11b75249 3461 struct device *dev = hisi_hba->dev;
06ec0fb9 3462 int rc, cnt;
06ec0fb9
XC
3463
3464 interrupt_disable_v2_hw(hisi_hba);
3465 hisi_sas_write32(hisi_hba, DLVRY_QUEUE_ENABLE, 0x0);
571295f8 3466 hisi_sas_kill_tasklets(hisi_hba);
06ec0fb9 3467
a25d0d3d 3468 hisi_sas_stop_phys(hisi_hba);
06ec0fb9
XC
3469
3470 mdelay(10);
3471
3472 hisi_sas_write32(hisi_hba, AXI_MASTER_CFG_BASE + AM_CTRL_GLOBAL, 0x1);
3473
3474 /* wait until bus idle */
3475 cnt = 0;
3476 while (1) {
3477 u32 status = hisi_sas_read32_relaxed(hisi_hba,
3478 AXI_MASTER_CFG_BASE + AM_CURR_TRANS_RETURN);
3479
3480 if (status == 0x3)
3481 break;
3482
3483 udelay(10);
3484 if (cnt++ > 10) {
081a1608 3485 dev_err(dev, "wait axi bus state to idle timeout!\n");
06ec0fb9
XC
3486 return -1;
3487 }
3488 }
3489
3490 hisi_sas_init_mem(hisi_hba);
3491
3492 rc = hw_init_v2_hw(hisi_hba);
3493 if (rc)
3494 return rc;
3495
c7b9d369
XT
3496 phys_reject_stp_links_v2_hw(hisi_hba);
3497
06ec0fb9
XC
3498 return 0;
3499}
3500
02615ec8
XT
3501static int write_gpio_v2_hw(struct hisi_hba *hisi_hba, u8 reg_type,
3502 u8 reg_index, u8 reg_count, u8 *write_data)
3503{
3504 struct device *dev = hisi_hba->dev;
3505 int phy_no, count;
3506
3507 if (!hisi_hba->sgpio_regs)
3508 return -EOPNOTSUPP;
3509
3510 switch (reg_type) {
3511 case SAS_GPIO_REG_TX:
3512 count = reg_count * 4;
3513 count = min(count, hisi_hba->n_phy);
3514
3515 for (phy_no = 0; phy_no < count; phy_no++) {
3516 /*
3517 * GPIO_TX[n] register has the highest numbered drive
3518 * of the four in the first byte and the lowest
3519 * numbered drive in the fourth byte.
3520 * See SFF-8485 Rev. 0.7 Table 24.
3521 */
3522 void __iomem *reg_addr = hisi_hba->sgpio_regs +
3523 reg_index * 4 + phy_no;
3524 int data_idx = phy_no + 3 - (phy_no % 4) * 2;
3525
3526 writeb(write_data[data_idx], reg_addr);
3527 }
3528
3529 break;
3530 default:
3531 dev_err(dev, "write gpio: unsupported or bad reg type %d\n",
3532 reg_type);
3533 return -EINVAL;
3534 }
3535
3536 return 0;
3537}
3538
1a7068b3
XT
3539static void wait_cmds_complete_timeout_v2_hw(struct hisi_hba *hisi_hba,
3540 int delay_ms, int timeout_ms)
3541{
3542 struct device *dev = hisi_hba->dev;
3543 int entries, entries_old = 0, time;
3544
3545 for (time = 0; time < timeout_ms; time += delay_ms) {
3546 entries = hisi_sas_read32(hisi_hba, CQE_SEND_CNT);
3547 if (entries == entries_old)
3548 break;
3549
3550 entries_old = entries;
3551 msleep(delay_ms);
3552 }
3553
3554 dev_dbg(dev, "wait commands complete %dms\n", time);
3555}
b1793064
XC
3556
3557static struct scsi_host_template sht_v2_hw = {
3558 .name = DRV_NAME,
3559 .module = THIS_MODULE,
3560 .queuecommand = sas_queuecommand,
3561 .target_alloc = sas_target_alloc,
3562 .slave_configure = hisi_sas_slave_configure,
3563 .scan_finished = hisi_sas_scan_finished,
3564 .scan_start = hisi_sas_scan_start,
3565 .change_queue_depth = sas_change_queue_depth,
3566 .bios_param = sas_bios_param,
b1793064
XC
3567 .this_id = -1,
3568 .sg_tablesize = SG_ALL,
3569 .max_sectors = SCSI_DEFAULT_MAX_SECTORS,
3570 .use_clustering = ENABLE_CLUSTERING,
3571 .eh_device_reset_handler = sas_eh_device_reset_handler,
3572 .eh_target_reset_handler = sas_eh_target_reset_handler,
3573 .target_destroy = sas_target_destroy,
3574 .ioctl = sas_ioctl,
3575 .shost_attrs = host_attrs,
3576};
3577
3417ba8a 3578static const struct hisi_sas_hw hisi_sas_v2_hw = {
94eac9e1 3579 .hw_init = hisi_sas_v2_init,
85b2c3c0 3580 .setup_itct = setup_itct_v2_hw,
330fa7f3 3581 .slot_index_alloc = slot_index_alloc_quirk_v2_hw,
b2bdaf2b 3582 .alloc_dev = alloc_dev_quirk_v2_hw,
7911e66f 3583 .sl_notify = sl_notify_v2_hw,
5473c060 3584 .get_wideport_bitmap = get_wideport_bitmap_v2_hw,
f39943ee 3585 .clear_itct = clear_itct_v2_hw,
85b2c3c0 3586 .free_device = free_device_v2_hw,
c2d89392 3587 .prep_smp = prep_smp_v2_hw,
8c36e31d 3588 .prep_ssp = prep_ssp_v2_hw,
6f2ff1a1 3589 .prep_stp = prep_ata_v2_hw,
a3e665d9 3590 .prep_abort = prep_abort_v2_hw,
8c36e31d
JG
3591 .get_free_slot = get_free_slot_v2_hw,
3592 .start_delivery = start_delivery_v2_hw,
31a9cfa6 3593 .slot_complete = slot_complete_v2_hw,
396b8044 3594 .phys_init = phys_init_v2_hw,
1eb8eeac 3595 .phy_start = start_phy_v2_hw,
63fb11b8
JG
3596 .phy_disable = disable_phy_v2_hw,
3597 .phy_hard_reset = phy_hard_reset_v2_hw,
c52108c6 3598 .get_events = phy_get_events_v2_hw,
2ae75787
XC
3599 .phy_set_linkrate = phy_set_linkrate_v2_hw,
3600 .phy_get_max_linkrate = phy_get_max_linkrate_v2_hw,
94eac9e1
JG
3601 .max_command_entries = HISI_SAS_COMMAND_ENTRIES_V2_HW,
3602 .complete_hdr_size = sizeof(struct hisi_sas_complete_v2_hdr),
06ec0fb9 3603 .soft_reset = soft_reset_v2_hw,
917d3bda 3604 .get_phys_state = get_phys_state_v2_hw,
02615ec8 3605 .write_gpio = write_gpio_v2_hw,
1a7068b3 3606 .wait_cmds_complete_timeout = wait_cmds_complete_timeout_v2_hw,
b1793064 3607 .sht = &sht_v2_hw,
3417ba8a
JG
3608};
3609
3610static int hisi_sas_v2_probe(struct platform_device *pdev)
3611{
26f3ba96
JG
3612 /*
3613 * Check if we should defer the probe before we probe the
3614 * upper layer, as it's hard to defer later on.
3615 */
3616 int ret = platform_get_irq(pdev, 0);
3617
3618 if (ret < 0) {
3619 if (ret != -EPROBE_DEFER)
3620 dev_err(&pdev->dev, "cannot obtain irq\n");
3621 return ret;
3622 }
3623
3417ba8a
JG
3624 return hisi_sas_probe(pdev, &hisi_sas_v2_hw);
3625}
3626
3627static int hisi_sas_v2_remove(struct platform_device *pdev)
3628{
f2f89c32
XC
3629 struct sas_ha_struct *sha = platform_get_drvdata(pdev);
3630 struct hisi_hba *hisi_hba = sha->lldd_ha;
3631
571295f8 3632 hisi_sas_kill_tasklets(hisi_hba);
8a253888 3633
3417ba8a
JG
3634 return hisi_sas_remove(pdev);
3635}
3636
3637static const struct of_device_id sas_v2_of_match[] = {
3638 { .compatible = "hisilicon,hip06-sas-v2",},
039ae102 3639 { .compatible = "hisilicon,hip07-sas-v2",},
3417ba8a
JG
3640 {},
3641};
3642MODULE_DEVICE_TABLE(of, sas_v2_of_match);
3643
50408712
JG
3644static const struct acpi_device_id sas_v2_acpi_match[] = {
3645 { "HISI0162", 0 },
3646 { }
3647};
3648
3649MODULE_DEVICE_TABLE(acpi, sas_v2_acpi_match);
3650
3417ba8a
JG
3651static struct platform_driver hisi_sas_v2_driver = {
3652 .probe = hisi_sas_v2_probe,
3653 .remove = hisi_sas_v2_remove,
3654 .driver = {
3655 .name = DRV_NAME,
3656 .of_match_table = sas_v2_of_match,
50408712 3657 .acpi_match_table = ACPI_PTR(sas_v2_acpi_match),
3417ba8a
JG
3658 },
3659};
3660
3661module_platform_driver(hisi_sas_v2_driver);
3662
3663MODULE_LICENSE("GPL");
3664MODULE_AUTHOR("John Garry <john.garry@huawei.com>");
3665MODULE_DESCRIPTION("HISILICON SAS controller v2 hw driver");
3666MODULE_ALIAS("platform:" DRV_NAME);