xref: /linux/drivers/net/wireless/broadcom/brcm80211/brcmfmac/pcie.c (revision fab183d632628381b466a41479489541ac0e29a0)
1 // SPDX-License-Identifier: ISC
2 /*
3  * Copyright (c) 2014 Broadcom Corporation
4  */
5 
6 #include <linux/kernel.h>
7 #include <linux/module.h>
8 #include <linux/firmware.h>
9 #include <linux/pci.h>
10 #include <linux/vmalloc.h>
11 #include <linux/delay.h>
12 #include <linux/interrupt.h>
13 #include <linux/bcma/bcma.h>
14 #include <linux/sched.h>
15 #include <linux/sched/signal.h>
16 #include <linux/kthread.h>
17 #include <linux/io.h>
18 #include <linux/random.h>
19 #include <linux/unaligned.h>
20 
21 #include <soc.h>
22 #include <chipcommon.h>
23 #include <brcmu_utils.h>
24 #include <brcmu_wifi.h>
25 #include <brcm_hw_ids.h>
26 
27 /* Custom brcmf_err() that takes bus arg and passes it further */
28 #define brcmf_err(bus, fmt, ...)					\
29 	do {								\
30 		if (IS_ENABLED(CONFIG_BRCMDBG) ||			\
31 		    IS_ENABLED(CONFIG_BRCM_TRACING) ||			\
32 		    net_ratelimit())					\
33 			__brcmf_err(bus, __func__, fmt, ##__VA_ARGS__);	\
34 	} while (0)
35 
36 #include "debug.h"
37 #include "bus.h"
38 #include "commonring.h"
39 #include "msgbuf.h"
40 #include "pcie.h"
41 #include "firmware.h"
42 #include "chip.h"
43 #include "core.h"
44 #include "common.h"
45 
46 
47 enum brcmf_pcie_state {
48 	BRCMFMAC_PCIE_STATE_DOWN,
49 	BRCMFMAC_PCIE_STATE_UP
50 };
51 
52 BRCMF_FW_DEF(43602, "brcmfmac43602-pcie");
53 BRCMF_FW_DEF(4350, "brcmfmac4350-pcie");
54 BRCMF_FW_DEF(4350C, "brcmfmac4350c2-pcie");
55 BRCMF_FW_CLM_DEF(4355, "brcmfmac4355-pcie");
56 BRCMF_FW_CLM_DEF(4355C1, "brcmfmac4355c1-pcie");
57 BRCMF_FW_CLM_DEF(4356, "brcmfmac4356-pcie");
58 BRCMF_FW_CLM_DEF(43570, "brcmfmac43570-pcie");
59 BRCMF_FW_DEF(4358, "brcmfmac4358-pcie");
60 BRCMF_FW_DEF(4359, "brcmfmac4359-pcie");
61 BRCMF_FW_DEF(4359C, "brcmfmac4359c-pcie");
62 BRCMF_FW_CLM_DEF(4364B2, "brcmfmac4364b2-pcie");
63 BRCMF_FW_CLM_DEF(4364B3, "brcmfmac4364b3-pcie");
64 BRCMF_FW_DEF(4365B, "brcmfmac4365b-pcie");
65 BRCMF_FW_DEF(4365C, "brcmfmac4365c-pcie");
66 BRCMF_FW_DEF(4366B, "brcmfmac4366b-pcie");
67 BRCMF_FW_DEF(4366C, "brcmfmac4366c-pcie");
68 BRCMF_FW_DEF(4371, "brcmfmac4371-pcie");
69 BRCMF_FW_CLM_DEF(43752, "brcmfmac43752-pcie");
70 BRCMF_FW_CLM_DEF(4377B3, "brcmfmac4377b3-pcie");
71 BRCMF_FW_CLM_DEF(4378B1, "brcmfmac4378b1-pcie");
72 BRCMF_FW_CLM_DEF(4378B3, "brcmfmac4378b3-pcie");
73 BRCMF_FW_CLM_DEF(4387C2, "brcmfmac4387c2-pcie");
74 BRCMF_FW_CLM_DEF(54591, "brcmfmac54591-pcie");
75 
76 /* firmware config files */
77 MODULE_FIRMWARE(BRCMF_FW_DEFAULT_PATH "brcmfmac*-pcie.txt");
78 MODULE_FIRMWARE(BRCMF_FW_DEFAULT_PATH "brcmfmac*-pcie.*.txt");
79 
80 /* per-board firmware binaries */
81 MODULE_FIRMWARE(BRCMF_FW_DEFAULT_PATH "brcmfmac*-pcie.*.bin");
82 MODULE_FIRMWARE(BRCMF_FW_DEFAULT_PATH "brcmfmac*-pcie.*.clm_blob");
83 MODULE_FIRMWARE(BRCMF_FW_DEFAULT_PATH "brcmfmac*-pcie.*.txcap_blob");
84 
85 static const struct brcmf_firmware_mapping brcmf_pcie_fwnames[] = {
86 	BRCMF_FW_ENTRY(BRCM_CC_43602_CHIP_ID, 0xFFFFFFFF, 43602),
87 	BRCMF_FW_ENTRY(BRCM_CC_43465_CHIP_ID, 0xFFFFFFF0, 4366C),
88 	BRCMF_FW_ENTRY(BRCM_CC_4350_CHIP_ID, 0x000000FF, 4350C),
89 	BRCMF_FW_ENTRY(BRCM_CC_4350_CHIP_ID, 0xFFFFFF00, 4350),
90 	BRCMF_FW_ENTRY(BRCM_CC_43525_CHIP_ID, 0xFFFFFFF0, 4365C),
91 	BRCMF_FW_ENTRY(BRCM_CC_4355_CHIP_ID, 0x000007FF, 4355),
92 	BRCMF_FW_ENTRY(BRCM_CC_4355_CHIP_ID, 0x00002000, 54591),
93 	BRCMF_FW_ENTRY(BRCM_CC_4355_CHIP_ID, 0xFFFFF800, 4355C1), /* rev ID 12/C2 seen */
94 	BRCMF_FW_ENTRY(BRCM_CC_4356_CHIP_ID, 0xFFFFFFFF, 4356),
95 	BRCMF_FW_ENTRY(BRCM_CC_43567_CHIP_ID, 0xFFFFFFFF, 43570),
96 	BRCMF_FW_ENTRY(BRCM_CC_43569_CHIP_ID, 0xFFFFFFFF, 43570),
97 	BRCMF_FW_ENTRY(BRCM_CC_43570_CHIP_ID, 0xFFFFFFFF, 43570),
98 	BRCMF_FW_ENTRY(BRCM_CC_4358_CHIP_ID, 0xFFFFFFFF, 4358),
99 	BRCMF_FW_ENTRY(BRCM_CC_4359_CHIP_ID, 0x000001FF, 4359),
100 	BRCMF_FW_ENTRY(BRCM_CC_4359_CHIP_ID, 0xFFFFFE00, 4359C),
101 	BRCMF_FW_ENTRY(BRCM_CC_4364_CHIP_ID, 0x0000000F, 4364B2), /* 3 */
102 	BRCMF_FW_ENTRY(BRCM_CC_4364_CHIP_ID, 0xFFFFFFF0, 4364B3), /* 4 */
103 	BRCMF_FW_ENTRY(BRCM_CC_4365_CHIP_ID, 0x0000000F, 4365B),
104 	BRCMF_FW_ENTRY(BRCM_CC_4365_CHIP_ID, 0xFFFFFFF0, 4365C),
105 	BRCMF_FW_ENTRY(BRCM_CC_4366_CHIP_ID, 0x0000000F, 4366B),
106 	BRCMF_FW_ENTRY(BRCM_CC_4366_CHIP_ID, 0xFFFFFFF0, 4366C),
107 	BRCMF_FW_ENTRY(BRCM_CC_43664_CHIP_ID, 0xFFFFFFF0, 4366C),
108 	BRCMF_FW_ENTRY(BRCM_CC_43666_CHIP_ID, 0xFFFFFFF0, 4366C),
109 	BRCMF_FW_ENTRY(BRCM_CC_4371_CHIP_ID, 0xFFFFFFFF, 4371),
110 	BRCMF_FW_ENTRY(BRCM_CC_43752_CHIP_ID, 0xFFFFFFFF, 43752),
111 	BRCMF_FW_ENTRY(BRCM_CC_4377_CHIP_ID, 0xFFFFFFFF, 4377B3), /* revision ID 4 */
112 	BRCMF_FW_ENTRY(BRCM_CC_4378_CHIP_ID, 0x0000000F, 4378B1), /* revision ID 3 */
113 	BRCMF_FW_ENTRY(BRCM_CC_4378_CHIP_ID, 0xFFFFFFE0, 4378B3), /* revision ID 5 */
114 	BRCMF_FW_ENTRY(BRCM_CC_4387_CHIP_ID, 0xFFFFFFFF, 4387C2), /* revision ID 7 */
115 };
116 
117 #define BRCMF_PCIE_FW_UP_TIMEOUT		5000 /* msec */
118 
119 #define BRCMF_PCIE_REG_MAP_SIZE			(32 * 1024)
120 
121 /* backplane addres space accessed by BAR0 */
122 #define	BRCMF_PCIE_BAR0_WINDOW			0x80
123 #define BRCMF_PCIE_BAR0_REG_SIZE		0x1000
124 #define	BRCMF_PCIE_BAR0_WRAPPERBASE		0x70
125 
126 #define BRCMF_PCIE_BAR0_WRAPBASE_DMP_OFFSET	0x1000
127 #define BRCMF_PCIE_BARO_PCIE_ENUM_OFFSET	0x2000
128 
129 #define BRCMF_PCIE_ARMCR4REG_BANKIDX		0x40
130 #define BRCMF_PCIE_ARMCR4REG_BANKPDA		0x4C
131 
132 #define BRCMF_PCIE_REG_INTSTATUS		0x90
133 #define BRCMF_PCIE_REG_INTMASK			0x94
134 #define BRCMF_PCIE_REG_SBMBX			0x98
135 
136 #define BRCMF_PCIE_REG_LINK_STATUS_CTRL		0xBC
137 
138 #define BRCMF_PCIE_PCIE2REG_INTMASK		0x24
139 #define BRCMF_PCIE_PCIE2REG_MAILBOXINT		0x48
140 #define BRCMF_PCIE_PCIE2REG_MAILBOXMASK		0x4C
141 #define BRCMF_PCIE_PCIE2REG_CONFIGADDR		0x120
142 #define BRCMF_PCIE_PCIE2REG_CONFIGDATA		0x124
143 #define BRCMF_PCIE_PCIE2REG_H2D_MAILBOX_0	0x140
144 #define BRCMF_PCIE_PCIE2REG_H2D_MAILBOX_1	0x144
145 
146 #define BRCMF_PCIE_64_PCIE2REG_INTMASK		0xC14
147 #define BRCMF_PCIE_64_PCIE2REG_MAILBOXINT	0xC30
148 #define BRCMF_PCIE_64_PCIE2REG_MAILBOXMASK	0xC34
149 #define BRCMF_PCIE_64_PCIE2REG_H2D_MAILBOX_0	0xA20
150 #define BRCMF_PCIE_64_PCIE2REG_H2D_MAILBOX_1	0xA24
151 
152 #define BRCMF_PCIE2_INTA			0x01
153 #define BRCMF_PCIE2_INTB			0x02
154 
155 #define BRCMF_PCIE_INT_0			0x01
156 #define BRCMF_PCIE_INT_1			0x02
157 #define BRCMF_PCIE_INT_DEF			(BRCMF_PCIE_INT_0 | \
158 						 BRCMF_PCIE_INT_1)
159 
160 #define BRCMF_PCIE_MB_INT_FN0_0			0x0100
161 #define BRCMF_PCIE_MB_INT_FN0_1			0x0200
162 #define	BRCMF_PCIE_MB_INT_D2H0_DB0		0x10000
163 #define	BRCMF_PCIE_MB_INT_D2H0_DB1		0x20000
164 #define	BRCMF_PCIE_MB_INT_D2H1_DB0		0x40000
165 #define	BRCMF_PCIE_MB_INT_D2H1_DB1		0x80000
166 #define	BRCMF_PCIE_MB_INT_D2H2_DB0		0x100000
167 #define	BRCMF_PCIE_MB_INT_D2H2_DB1		0x200000
168 #define	BRCMF_PCIE_MB_INT_D2H3_DB0		0x400000
169 #define	BRCMF_PCIE_MB_INT_D2H3_DB1		0x800000
170 
171 #define BRCMF_PCIE_MB_INT_FN0			(BRCMF_PCIE_MB_INT_FN0_0 | \
172 						 BRCMF_PCIE_MB_INT_FN0_1)
173 #define BRCMF_PCIE_MB_INT_D2H_DB		(BRCMF_PCIE_MB_INT_D2H0_DB0 | \
174 						 BRCMF_PCIE_MB_INT_D2H0_DB1 | \
175 						 BRCMF_PCIE_MB_INT_D2H1_DB0 | \
176 						 BRCMF_PCIE_MB_INT_D2H1_DB1 | \
177 						 BRCMF_PCIE_MB_INT_D2H2_DB0 | \
178 						 BRCMF_PCIE_MB_INT_D2H2_DB1 | \
179 						 BRCMF_PCIE_MB_INT_D2H3_DB0 | \
180 						 BRCMF_PCIE_MB_INT_D2H3_DB1)
181 
182 #define	BRCMF_PCIE_64_MB_INT_D2H0_DB0		0x1
183 #define	BRCMF_PCIE_64_MB_INT_D2H0_DB1		0x2
184 #define	BRCMF_PCIE_64_MB_INT_D2H1_DB0		0x4
185 #define	BRCMF_PCIE_64_MB_INT_D2H1_DB1		0x8
186 #define	BRCMF_PCIE_64_MB_INT_D2H2_DB0		0x10
187 #define	BRCMF_PCIE_64_MB_INT_D2H2_DB1		0x20
188 #define	BRCMF_PCIE_64_MB_INT_D2H3_DB0		0x40
189 #define	BRCMF_PCIE_64_MB_INT_D2H3_DB1		0x80
190 #define	BRCMF_PCIE_64_MB_INT_D2H4_DB0		0x100
191 #define	BRCMF_PCIE_64_MB_INT_D2H4_DB1		0x200
192 #define	BRCMF_PCIE_64_MB_INT_D2H5_DB0		0x400
193 #define	BRCMF_PCIE_64_MB_INT_D2H5_DB1		0x800
194 #define	BRCMF_PCIE_64_MB_INT_D2H6_DB0		0x1000
195 #define	BRCMF_PCIE_64_MB_INT_D2H6_DB1		0x2000
196 #define	BRCMF_PCIE_64_MB_INT_D2H7_DB0		0x4000
197 #define	BRCMF_PCIE_64_MB_INT_D2H7_DB1		0x8000
198 
199 #define BRCMF_PCIE_64_MB_INT_D2H_DB		(BRCMF_PCIE_64_MB_INT_D2H0_DB0 | \
200 						 BRCMF_PCIE_64_MB_INT_D2H0_DB1 | \
201 						 BRCMF_PCIE_64_MB_INT_D2H1_DB0 | \
202 						 BRCMF_PCIE_64_MB_INT_D2H1_DB1 | \
203 						 BRCMF_PCIE_64_MB_INT_D2H2_DB0 | \
204 						 BRCMF_PCIE_64_MB_INT_D2H2_DB1 | \
205 						 BRCMF_PCIE_64_MB_INT_D2H3_DB0 | \
206 						 BRCMF_PCIE_64_MB_INT_D2H3_DB1 | \
207 						 BRCMF_PCIE_64_MB_INT_D2H4_DB0 | \
208 						 BRCMF_PCIE_64_MB_INT_D2H4_DB1 | \
209 						 BRCMF_PCIE_64_MB_INT_D2H5_DB0 | \
210 						 BRCMF_PCIE_64_MB_INT_D2H5_DB1 | \
211 						 BRCMF_PCIE_64_MB_INT_D2H6_DB0 | \
212 						 BRCMF_PCIE_64_MB_INT_D2H6_DB1 | \
213 						 BRCMF_PCIE_64_MB_INT_D2H7_DB0 | \
214 						 BRCMF_PCIE_64_MB_INT_D2H7_DB1)
215 
216 #define BRCMF_PCIE_SHARED_VERSION_7		7
217 #define BRCMF_PCIE_MIN_SHARED_VERSION		5
218 #define BRCMF_PCIE_MAX_SHARED_VERSION		BRCMF_PCIE_SHARED_VERSION_7
219 #define BRCMF_PCIE_SHARED_VERSION_MASK		0x00FF
220 #define BRCMF_PCIE_SHARED_DMA_INDEX		0x10000
221 #define BRCMF_PCIE_SHARED_DMA_2B_IDX		0x100000
222 #define BRCMF_PCIE_SHARED_HOSTRDY_DB1		0x10000000
223 
224 #define BRCMF_PCIE_FLAGS_HTOD_SPLIT		0x4000
225 #define BRCMF_PCIE_FLAGS_DTOH_SPLIT		0x8000
226 
227 #define BRCMF_SHARED_MAX_RXBUFPOST_OFFSET	34
228 #define BRCMF_SHARED_RING_BASE_OFFSET		52
229 #define BRCMF_SHARED_RX_DATAOFFSET_OFFSET	36
230 #define BRCMF_SHARED_CONSOLE_ADDR_OFFSET	20
231 #define BRCMF_SHARED_HTOD_MB_DATA_ADDR_OFFSET	40
232 #define BRCMF_SHARED_DTOH_MB_DATA_ADDR_OFFSET	44
233 #define BRCMF_SHARED_RING_INFO_ADDR_OFFSET	48
234 #define BRCMF_SHARED_DMA_SCRATCH_LEN_OFFSET	52
235 #define BRCMF_SHARED_DMA_SCRATCH_ADDR_OFFSET	56
236 #define BRCMF_SHARED_DMA_RINGUPD_LEN_OFFSET	64
237 #define BRCMF_SHARED_DMA_RINGUPD_ADDR_OFFSET	68
238 
239 #define BRCMF_RING_H2D_RING_COUNT_OFFSET	0
240 #define BRCMF_RING_D2H_RING_COUNT_OFFSET	1
241 #define BRCMF_RING_H2D_RING_MEM_OFFSET		4
242 #define BRCMF_RING_H2D_RING_STATE_OFFSET	8
243 
244 #define BRCMF_RING_MEM_BASE_ADDR_OFFSET		8
245 #define BRCMF_RING_MAX_ITEM_OFFSET		4
246 #define BRCMF_RING_LEN_ITEMS_OFFSET		6
247 #define BRCMF_RING_MEM_SZ			16
248 #define BRCMF_RING_STATE_SZ			8
249 
250 #define BRCMF_DEF_MAX_RXBUFPOST			255
251 
252 #define BRCMF_CONSOLE_BUFADDR_OFFSET		8
253 #define BRCMF_CONSOLE_BUFSIZE_OFFSET		12
254 #define BRCMF_CONSOLE_WRITEIDX_OFFSET		16
255 
256 #define BRCMF_DMA_D2H_SCRATCH_BUF_LEN		8
257 #define BRCMF_DMA_D2H_RINGUPD_BUF_LEN		1024
258 
259 #define BRCMF_D2H_DEV_D3_ACK			0x00000001
260 #define BRCMF_D2H_DEV_DS_ENTER_REQ		0x00000002
261 #define BRCMF_D2H_DEV_DS_EXIT_NOTE		0x00000004
262 #define BRCMF_D2H_DEV_FWHALT			0x10000000
263 
264 #define BRCMF_H2D_HOST_D3_INFORM		0x00000001
265 #define BRCMF_H2D_HOST_DS_ACK			0x00000002
266 #define BRCMF_H2D_HOST_D0_INFORM_IN_USE		0x00000008
267 #define BRCMF_H2D_HOST_D0_INFORM		0x00000010
268 
269 #define BRCMF_PCIE_MBDATA_TIMEOUT		msecs_to_jiffies(2000)
270 
271 #define BRCMF_PCIE_CFGREG_STATUS_CMD		0x4
272 #define BRCMF_PCIE_CFGREG_PM_CSR		0x4C
273 #define BRCMF_PCIE_CFGREG_MSI_CAP		0x58
274 #define BRCMF_PCIE_CFGREG_MSI_ADDR_L		0x5C
275 #define BRCMF_PCIE_CFGREG_MSI_ADDR_H		0x60
276 #define BRCMF_PCIE_CFGREG_MSI_DATA		0x64
277 #define BRCMF_PCIE_CFGREG_LINK_STATUS_CTRL	0xBC
278 #define BRCMF_PCIE_CFGREG_LINK_STATUS_CTRL2	0xDC
279 #define BRCMF_PCIE_CFGREG_RBAR_CTRL		0x228
280 #define BRCMF_PCIE_CFGREG_PML1_SUB_CTRL1	0x248
281 #define BRCMF_PCIE_CFGREG_REG_BAR2_CONFIG	0x4E0
282 #define BRCMF_PCIE_CFGREG_REG_BAR3_CONFIG	0x4F4
283 #define BRCMF_PCIE_LINK_STATUS_CTRL_ASPM_ENAB	3
284 
285 /* Magic number at a magic location to find RAM size */
286 #define BRCMF_RAMSIZE_MAGIC			0x534d4152	/* SMAR */
287 #define BRCMF_RAMSIZE_OFFSET			0x6c
288 
289 
290 struct brcmf_pcie_console {
291 	u32 base_addr;
292 	u32 buf_addr;
293 	u32 bufsize;
294 	u32 read_idx;
295 	u8 log_str[256];
296 	u8 log_idx;
297 };
298 
299 struct brcmf_pcie_shared_info {
300 	u32 tcm_base_address;
301 	u32 flags;
302 	struct brcmf_pcie_ringbuf *commonrings[BRCMF_NROF_COMMON_MSGRINGS];
303 	struct brcmf_pcie_ringbuf *flowrings;
304 	u16 max_rxbufpost;
305 	u16 max_flowrings;
306 	u16 max_submissionrings;
307 	u16 max_completionrings;
308 	u32 rx_dataoffset;
309 	u32 htod_mb_data_addr;
310 	u32 dtoh_mb_data_addr;
311 	u32 ring_info_addr;
312 	struct brcmf_pcie_console console;
313 	void *scratch;
314 	dma_addr_t scratch_dmahandle;
315 	void *ringupd;
316 	dma_addr_t ringupd_dmahandle;
317 	u8 version;
318 };
319 
320 #define BRCMF_OTP_MAX_PARAM_LEN 16
321 
322 struct brcmf_otp_params {
323 	char module[BRCMF_OTP_MAX_PARAM_LEN];
324 	char vendor[BRCMF_OTP_MAX_PARAM_LEN];
325 	char version[BRCMF_OTP_MAX_PARAM_LEN];
326 	bool valid;
327 };
328 
329 struct brcmf_pciedev_info {
330 	enum brcmf_pcie_state state;
331 	bool in_irq;
332 	struct pci_dev *pdev;
333 	char fw_name[BRCMF_FW_NAME_LEN];
334 	char nvram_name[BRCMF_FW_NAME_LEN];
335 	char clm_name[BRCMF_FW_NAME_LEN];
336 	char txcap_name[BRCMF_FW_NAME_LEN];
337 	const struct firmware *clm_fw;
338 	const struct firmware *txcap_fw;
339 	const struct brcmf_pcie_reginfo *reginfo;
340 	void __iomem *regs;
341 	void __iomem *tcm;
342 	u32 ram_base;
343 	u32 ram_size;
344 	struct brcmf_chip *ci;
345 	u32 coreid;
346 	struct brcmf_pcie_shared_info shared;
347 	wait_queue_head_t mbdata_resp_wait;
348 	bool mbdata_completed;
349 	bool irq_allocated;
350 	bool wowl_enabled;
351 	u8 dma_idx_sz;
352 	void *idxbuf;
353 	u32 idxbuf_sz;
354 	dma_addr_t idxbuf_dmahandle;
355 	u16 (*read_ptr)(struct brcmf_pciedev_info *devinfo, u32 mem_offset);
356 	void (*write_ptr)(struct brcmf_pciedev_info *devinfo, u32 mem_offset,
357 			  u16 value);
358 	struct brcmf_mp_device *settings;
359 	struct brcmf_otp_params otp;
360 	bool fwseed;
361 #ifdef DEBUG
362 	u32 console_interval;
363 	bool console_active;
364 	struct timer_list timer;
365 #endif
366 };
367 
368 struct brcmf_pcie_ringbuf {
369 	struct brcmf_commonring commonring;
370 	dma_addr_t dma_handle;
371 	u32 w_idx_addr;
372 	u32 r_idx_addr;
373 	struct brcmf_pciedev_info *devinfo;
374 	u8 id;
375 };
376 
377 /**
378  * struct brcmf_pcie_dhi_ringinfo - dongle/host interface shared ring info
379  *
380  * @ringmem: dongle memory pointer to ring memory location
381  * @h2d_w_idx_ptr: h2d ring write indices dongle memory pointers
382  * @h2d_r_idx_ptr: h2d ring read indices dongle memory pointers
383  * @d2h_w_idx_ptr: d2h ring write indices dongle memory pointers
384  * @d2h_r_idx_ptr: d2h ring read indices dongle memory pointers
385  * @h2d_w_idx_hostaddr: h2d ring write indices host memory pointers
386  * @h2d_r_idx_hostaddr: h2d ring read indices host memory pointers
387  * @d2h_w_idx_hostaddr: d2h ring write indices host memory pointers
388  * @d2h_r_idx_hostaddr: d2h ring reaD indices host memory pointers
389  * @max_flowrings: maximum number of tx flow rings supported.
390  * @max_submissionrings: maximum number of submission rings(h2d) supported.
391  * @max_completionrings: maximum number of completion rings(d2h) supported.
392  */
393 struct brcmf_pcie_dhi_ringinfo {
394 	__le32			ringmem;
395 	__le32			h2d_w_idx_ptr;
396 	__le32			h2d_r_idx_ptr;
397 	__le32			d2h_w_idx_ptr;
398 	__le32			d2h_r_idx_ptr;
399 	struct msgbuf_buf_addr	h2d_w_idx_hostaddr;
400 	struct msgbuf_buf_addr	h2d_r_idx_hostaddr;
401 	struct msgbuf_buf_addr	d2h_w_idx_hostaddr;
402 	struct msgbuf_buf_addr	d2h_r_idx_hostaddr;
403 	__le16			max_flowrings;
404 	__le16			max_submissionrings;
405 	__le16			max_completionrings;
406 };
407 
408 static const u32 brcmf_ring_max_item[BRCMF_NROF_COMMON_MSGRINGS] = {
409 	BRCMF_H2D_MSGRING_CONTROL_SUBMIT_MAX_ITEM,
410 	BRCMF_H2D_MSGRING_RXPOST_SUBMIT_MAX_ITEM,
411 	BRCMF_D2H_MSGRING_CONTROL_COMPLETE_MAX_ITEM,
412 	BRCMF_D2H_MSGRING_TX_COMPLETE_MAX_ITEM,
413 	BRCMF_D2H_MSGRING_RX_COMPLETE_MAX_ITEM
414 };
415 
416 static const u32 brcmf_ring_itemsize_pre_v7[BRCMF_NROF_COMMON_MSGRINGS] = {
417 	BRCMF_H2D_MSGRING_CONTROL_SUBMIT_ITEMSIZE,
418 	BRCMF_H2D_MSGRING_RXPOST_SUBMIT_ITEMSIZE,
419 	BRCMF_D2H_MSGRING_CONTROL_COMPLETE_ITEMSIZE,
420 	BRCMF_D2H_MSGRING_TX_COMPLETE_ITEMSIZE_PRE_V7,
421 	BRCMF_D2H_MSGRING_RX_COMPLETE_ITEMSIZE_PRE_V7
422 };
423 
424 static const u32 brcmf_ring_itemsize[BRCMF_NROF_COMMON_MSGRINGS] = {
425 	BRCMF_H2D_MSGRING_CONTROL_SUBMIT_ITEMSIZE,
426 	BRCMF_H2D_MSGRING_RXPOST_SUBMIT_ITEMSIZE,
427 	BRCMF_D2H_MSGRING_CONTROL_COMPLETE_ITEMSIZE,
428 	BRCMF_D2H_MSGRING_TX_COMPLETE_ITEMSIZE,
429 	BRCMF_D2H_MSGRING_RX_COMPLETE_ITEMSIZE
430 };
431 
432 struct brcmf_pcie_reginfo {
433 	u32 intmask;
434 	u32 mailboxint;
435 	u32 mailboxmask;
436 	u32 h2d_mailbox_0;
437 	u32 h2d_mailbox_1;
438 	u32 int_d2h_db;
439 	u32 int_fn0;
440 };
441 
442 static const struct brcmf_pcie_reginfo brcmf_reginfo_default = {
443 	.intmask = BRCMF_PCIE_PCIE2REG_INTMASK,
444 	.mailboxint = BRCMF_PCIE_PCIE2REG_MAILBOXINT,
445 	.mailboxmask = BRCMF_PCIE_PCIE2REG_MAILBOXMASK,
446 	.h2d_mailbox_0 = BRCMF_PCIE_PCIE2REG_H2D_MAILBOX_0,
447 	.h2d_mailbox_1 = BRCMF_PCIE_PCIE2REG_H2D_MAILBOX_1,
448 	.int_d2h_db = BRCMF_PCIE_MB_INT_D2H_DB,
449 	.int_fn0 = BRCMF_PCIE_MB_INT_FN0,
450 };
451 
452 static const struct brcmf_pcie_reginfo brcmf_reginfo_64 = {
453 	.intmask = BRCMF_PCIE_64_PCIE2REG_INTMASK,
454 	.mailboxint = BRCMF_PCIE_64_PCIE2REG_MAILBOXINT,
455 	.mailboxmask = BRCMF_PCIE_64_PCIE2REG_MAILBOXMASK,
456 	.h2d_mailbox_0 = BRCMF_PCIE_64_PCIE2REG_H2D_MAILBOX_0,
457 	.h2d_mailbox_1 = BRCMF_PCIE_64_PCIE2REG_H2D_MAILBOX_1,
458 	.int_d2h_db = BRCMF_PCIE_64_MB_INT_D2H_DB,
459 	.int_fn0 = 0,
460 };
461 
462 static void brcmf_pcie_setup(struct device *dev, int ret,
463 			     struct brcmf_fw_request *fwreq);
464 static struct brcmf_fw_request *
465 brcmf_pcie_prepare_fw_request(struct brcmf_pciedev_info *devinfo);
466 static void
467 brcmf_pcie_fwcon_timer(struct brcmf_pciedev_info *devinfo, bool active);
468 static void brcmf_pcie_debugfs_create(struct device *dev);
469 
470 static u16
brcmf_pcie_read_reg16(struct brcmf_pciedev_info * devinfo,u32 reg_offset)471 brcmf_pcie_read_reg16(struct brcmf_pciedev_info *devinfo, u32 reg_offset)
472 {
473 	void __iomem *address = devinfo->regs + reg_offset;
474 
475 	return ioread16(address);
476 }
477 
478 static u32
brcmf_pcie_read_reg32(struct brcmf_pciedev_info * devinfo,u32 reg_offset)479 brcmf_pcie_read_reg32(struct brcmf_pciedev_info *devinfo, u32 reg_offset)
480 {
481 	void __iomem *address = devinfo->regs + reg_offset;
482 
483 	return (ioread32(address));
484 }
485 
486 
487 static void
brcmf_pcie_write_reg32(struct brcmf_pciedev_info * devinfo,u32 reg_offset,u32 value)488 brcmf_pcie_write_reg32(struct brcmf_pciedev_info *devinfo, u32 reg_offset,
489 		       u32 value)
490 {
491 	void __iomem *address = devinfo->regs + reg_offset;
492 
493 	iowrite32(value, address);
494 }
495 
496 
497 static u8
brcmf_pcie_read_tcm8(struct brcmf_pciedev_info * devinfo,u32 mem_offset)498 brcmf_pcie_read_tcm8(struct brcmf_pciedev_info *devinfo, u32 mem_offset)
499 {
500 	void __iomem *address = devinfo->tcm + mem_offset;
501 
502 	return (ioread8(address));
503 }
504 
505 
506 static u16
brcmf_pcie_read_tcm16(struct brcmf_pciedev_info * devinfo,u32 mem_offset)507 brcmf_pcie_read_tcm16(struct brcmf_pciedev_info *devinfo, u32 mem_offset)
508 {
509 	void __iomem *address = devinfo->tcm + mem_offset;
510 
511 	return (ioread16(address));
512 }
513 
514 
515 static void
brcmf_pcie_write_tcm16(struct brcmf_pciedev_info * devinfo,u32 mem_offset,u16 value)516 brcmf_pcie_write_tcm16(struct brcmf_pciedev_info *devinfo, u32 mem_offset,
517 		       u16 value)
518 {
519 	void __iomem *address = devinfo->tcm + mem_offset;
520 
521 	iowrite16(value, address);
522 }
523 
524 
525 static u16
brcmf_pcie_read_idx(struct brcmf_pciedev_info * devinfo,u32 mem_offset)526 brcmf_pcie_read_idx(struct brcmf_pciedev_info *devinfo, u32 mem_offset)
527 {
528 	u16 *address = devinfo->idxbuf + mem_offset;
529 
530 	return (*(address));
531 }
532 
533 
534 static void
brcmf_pcie_write_idx(struct brcmf_pciedev_info * devinfo,u32 mem_offset,u16 value)535 brcmf_pcie_write_idx(struct brcmf_pciedev_info *devinfo, u32 mem_offset,
536 		     u16 value)
537 {
538 	u16 *address = devinfo->idxbuf + mem_offset;
539 
540 	*(address) = value;
541 }
542 
543 
544 static u32
brcmf_pcie_read_tcm32(struct brcmf_pciedev_info * devinfo,u32 mem_offset)545 brcmf_pcie_read_tcm32(struct brcmf_pciedev_info *devinfo, u32 mem_offset)
546 {
547 	void __iomem *address = devinfo->tcm + mem_offset;
548 
549 	return (ioread32(address));
550 }
551 
552 
553 static void
brcmf_pcie_write_tcm32(struct brcmf_pciedev_info * devinfo,u32 mem_offset,u32 value)554 brcmf_pcie_write_tcm32(struct brcmf_pciedev_info *devinfo, u32 mem_offset,
555 		       u32 value)
556 {
557 	void __iomem *address = devinfo->tcm + mem_offset;
558 
559 	iowrite32(value, address);
560 }
561 
562 
563 static u32
brcmf_pcie_read_ram32(struct brcmf_pciedev_info * devinfo,u32 mem_offset)564 brcmf_pcie_read_ram32(struct brcmf_pciedev_info *devinfo, u32 mem_offset)
565 {
566 	void __iomem *addr = devinfo->tcm + devinfo->ci->rambase + mem_offset;
567 
568 	return (ioread32(addr));
569 }
570 
571 
572 static void
brcmf_pcie_write_ram32(struct brcmf_pciedev_info * devinfo,u32 mem_offset,u32 value)573 brcmf_pcie_write_ram32(struct brcmf_pciedev_info *devinfo, u32 mem_offset,
574 		       u32 value)
575 {
576 	void __iomem *addr = devinfo->tcm + devinfo->ci->rambase + mem_offset;
577 
578 	iowrite32(value, addr);
579 }
580 
581 
582 static void
brcmf_pcie_copy_dev_tomem(struct brcmf_pciedev_info * devinfo,u32 mem_offset,void * dstaddr,u32 len)583 brcmf_pcie_copy_dev_tomem(struct brcmf_pciedev_info *devinfo, u32 mem_offset,
584 			  void *dstaddr, u32 len)
585 {
586 	void __iomem *address = devinfo->tcm + mem_offset;
587 	__le32 *dst32;
588 	__le16 *dst16;
589 	u8 *dst8;
590 
591 	if (((ulong)address & 4) || ((ulong)dstaddr & 4) || (len & 4)) {
592 		if (((ulong)address & 2) || ((ulong)dstaddr & 2) || (len & 2)) {
593 			dst8 = (u8 *)dstaddr;
594 			while (len) {
595 				*dst8 = ioread8(address);
596 				address++;
597 				dst8++;
598 				len--;
599 			}
600 		} else {
601 			len = len / 2;
602 			dst16 = (__le16 *)dstaddr;
603 			while (len) {
604 				*dst16 = cpu_to_le16(ioread16(address));
605 				address += 2;
606 				dst16++;
607 				len--;
608 			}
609 		}
610 	} else {
611 		len = len / 4;
612 		dst32 = (__le32 *)dstaddr;
613 		while (len) {
614 			*dst32 = cpu_to_le32(ioread32(address));
615 			address += 4;
616 			dst32++;
617 			len--;
618 		}
619 	}
620 }
621 
622 
623 #define READCC32(devinfo, reg) brcmf_pcie_read_reg32(devinfo, \
624 		CHIPCREGOFFS(reg))
625 #define WRITECC32(devinfo, reg, value) brcmf_pcie_write_reg32(devinfo, \
626 		CHIPCREGOFFS(reg), value)
627 
628 
629 static void
brcmf_pcie_select_core(struct brcmf_pciedev_info * devinfo,u16 coreid)630 brcmf_pcie_select_core(struct brcmf_pciedev_info *devinfo, u16 coreid)
631 {
632 	const struct pci_dev *pdev = devinfo->pdev;
633 	struct brcmf_bus *bus = dev_get_drvdata(&pdev->dev);
634 	struct brcmf_core *core;
635 	u32 bar0_win;
636 
637 	core = brcmf_chip_get_core(devinfo->ci, coreid);
638 	if (core) {
639 		bar0_win = core->base;
640 		pci_write_config_dword(pdev, BRCMF_PCIE_BAR0_WINDOW, bar0_win);
641 		if (pci_read_config_dword(pdev, BRCMF_PCIE_BAR0_WINDOW,
642 					  &bar0_win) == 0) {
643 			if (bar0_win != core->base) {
644 				bar0_win = core->base;
645 				pci_write_config_dword(pdev,
646 						       BRCMF_PCIE_BAR0_WINDOW,
647 						       bar0_win);
648 			}
649 		}
650 	} else {
651 		brcmf_err(bus, "Unsupported core selected %x\n", coreid);
652 	}
653 }
654 
655 
brcmf_pcie_reset_device(struct brcmf_pciedev_info * devinfo)656 static void brcmf_pcie_reset_device(struct brcmf_pciedev_info *devinfo)
657 {
658 	struct brcmf_core *core;
659 	static const u16 cfg_offset[] = {
660 		BRCMF_PCIE_CFGREG_STATUS_CMD,
661 		BRCMF_PCIE_CFGREG_PM_CSR,
662 		BRCMF_PCIE_CFGREG_MSI_CAP,
663 		BRCMF_PCIE_CFGREG_MSI_ADDR_L,
664 		BRCMF_PCIE_CFGREG_MSI_ADDR_H,
665 		BRCMF_PCIE_CFGREG_MSI_DATA,
666 		BRCMF_PCIE_CFGREG_LINK_STATUS_CTRL2,
667 		BRCMF_PCIE_CFGREG_RBAR_CTRL,
668 		BRCMF_PCIE_CFGREG_PML1_SUB_CTRL1,
669 		BRCMF_PCIE_CFGREG_REG_BAR2_CONFIG,
670 		BRCMF_PCIE_CFGREG_REG_BAR3_CONFIG
671 	};
672 	u32 i;
673 	u32 val;
674 	u32 lsc;
675 
676 	if (!devinfo->ci)
677 		return;
678 
679 	/* Disable ASPM */
680 	brcmf_pcie_select_core(devinfo, BCMA_CORE_PCIE2);
681 	pci_read_config_dword(devinfo->pdev, BRCMF_PCIE_REG_LINK_STATUS_CTRL,
682 			      &lsc);
683 	val = lsc & (~BRCMF_PCIE_LINK_STATUS_CTRL_ASPM_ENAB);
684 	pci_write_config_dword(devinfo->pdev, BRCMF_PCIE_REG_LINK_STATUS_CTRL,
685 			       val);
686 
687 	/* Watchdog reset */
688 	brcmf_pcie_select_core(devinfo, BCMA_CORE_CHIPCOMMON);
689 	WRITECC32(devinfo, watchdog, 4);
690 	msleep(100);
691 
692 	/* Restore ASPM */
693 	brcmf_pcie_select_core(devinfo, BCMA_CORE_PCIE2);
694 	pci_write_config_dword(devinfo->pdev, BRCMF_PCIE_REG_LINK_STATUS_CTRL,
695 			       lsc);
696 
697 	core = brcmf_chip_get_core(devinfo->ci, BCMA_CORE_PCIE2);
698 	if (core->rev <= 13) {
699 		for (i = 0; i < ARRAY_SIZE(cfg_offset); i++) {
700 			brcmf_pcie_write_reg32(devinfo,
701 					       BRCMF_PCIE_PCIE2REG_CONFIGADDR,
702 					       cfg_offset[i]);
703 			val = brcmf_pcie_read_reg32(devinfo,
704 				BRCMF_PCIE_PCIE2REG_CONFIGDATA);
705 			brcmf_dbg(PCIE, "config offset 0x%04x, value 0x%04x\n",
706 				  cfg_offset[i], val);
707 			brcmf_pcie_write_reg32(devinfo,
708 					       BRCMF_PCIE_PCIE2REG_CONFIGDATA,
709 					       val);
710 		}
711 	}
712 }
713 
714 
brcmf_pcie_attach(struct brcmf_pciedev_info * devinfo)715 static void brcmf_pcie_attach(struct brcmf_pciedev_info *devinfo)
716 {
717 	u32 config;
718 
719 	/* BAR1 window may not be sized properly */
720 	brcmf_pcie_select_core(devinfo, BCMA_CORE_PCIE2);
721 	brcmf_pcie_write_reg32(devinfo, BRCMF_PCIE_PCIE2REG_CONFIGADDR, 0x4e0);
722 	config = brcmf_pcie_read_reg32(devinfo, BRCMF_PCIE_PCIE2REG_CONFIGDATA);
723 	brcmf_pcie_write_reg32(devinfo, BRCMF_PCIE_PCIE2REG_CONFIGDATA, config);
724 
725 	device_wakeup_enable(&devinfo->pdev->dev);
726 }
727 
728 
brcmf_pcie_enter_download_state(struct brcmf_pciedev_info * devinfo)729 static int brcmf_pcie_enter_download_state(struct brcmf_pciedev_info *devinfo)
730 {
731 	if (devinfo->ci->chip == BRCM_CC_43602_CHIP_ID) {
732 		brcmf_pcie_select_core(devinfo, BCMA_CORE_ARM_CR4);
733 		brcmf_pcie_write_reg32(devinfo, BRCMF_PCIE_ARMCR4REG_BANKIDX,
734 				       5);
735 		brcmf_pcie_write_reg32(devinfo, BRCMF_PCIE_ARMCR4REG_BANKPDA,
736 				       0);
737 		brcmf_pcie_write_reg32(devinfo, BRCMF_PCIE_ARMCR4REG_BANKIDX,
738 				       7);
739 		brcmf_pcie_write_reg32(devinfo, BRCMF_PCIE_ARMCR4REG_BANKPDA,
740 				       0);
741 	}
742 	return 0;
743 }
744 
745 
brcmf_pcie_exit_download_state(struct brcmf_pciedev_info * devinfo,u32 resetintr)746 static int brcmf_pcie_exit_download_state(struct brcmf_pciedev_info *devinfo,
747 					  u32 resetintr)
748 {
749 	struct brcmf_core *core;
750 
751 	if (devinfo->ci->chip == BRCM_CC_43602_CHIP_ID) {
752 		core = brcmf_chip_get_core(devinfo->ci, BCMA_CORE_INTERNAL_MEM);
753 		brcmf_chip_resetcore(core, 0, 0, 0);
754 	}
755 
756 	if (!brcmf_chip_set_active(devinfo->ci, resetintr))
757 		return -EIO;
758 	return 0;
759 }
760 
761 
762 static int
brcmf_pcie_send_mb_data(struct brcmf_pciedev_info * devinfo,u32 htod_mb_data)763 brcmf_pcie_send_mb_data(struct brcmf_pciedev_info *devinfo, u32 htod_mb_data)
764 {
765 	struct brcmf_pcie_shared_info *shared;
766 	struct brcmf_core *core;
767 	u32 addr;
768 	u32 cur_htod_mb_data;
769 	u32 i;
770 
771 	shared = &devinfo->shared;
772 	addr = shared->htod_mb_data_addr;
773 	cur_htod_mb_data = brcmf_pcie_read_tcm32(devinfo, addr);
774 
775 	if (cur_htod_mb_data != 0)
776 		brcmf_dbg(PCIE, "MB transaction is already pending 0x%04x\n",
777 			  cur_htod_mb_data);
778 
779 	i = 0;
780 	while (cur_htod_mb_data != 0) {
781 		msleep(10);
782 		i++;
783 		if (i > 100)
784 			return -EIO;
785 		cur_htod_mb_data = brcmf_pcie_read_tcm32(devinfo, addr);
786 	}
787 
788 	brcmf_pcie_write_tcm32(devinfo, addr, htod_mb_data);
789 	pci_write_config_dword(devinfo->pdev, BRCMF_PCIE_REG_SBMBX, 1);
790 
791 	/* Send mailbox interrupt twice as a hardware workaround */
792 	core = brcmf_chip_get_core(devinfo->ci, BCMA_CORE_PCIE2);
793 	if (core->rev <= 13)
794 		pci_write_config_dword(devinfo->pdev, BRCMF_PCIE_REG_SBMBX, 1);
795 
796 	return 0;
797 }
798 
799 
brcmf_pcie_handle_mb_data(struct brcmf_pciedev_info * devinfo)800 static void brcmf_pcie_handle_mb_data(struct brcmf_pciedev_info *devinfo)
801 {
802 	struct brcmf_pcie_shared_info *shared;
803 	u32 addr;
804 	u32 dtoh_mb_data;
805 
806 	shared = &devinfo->shared;
807 	addr = shared->dtoh_mb_data_addr;
808 	dtoh_mb_data = brcmf_pcie_read_tcm32(devinfo, addr);
809 
810 	if (!dtoh_mb_data)
811 		return;
812 
813 	brcmf_pcie_write_tcm32(devinfo, addr, 0);
814 
815 	brcmf_dbg(PCIE, "D2H_MB_DATA: 0x%04x\n", dtoh_mb_data);
816 	if (dtoh_mb_data & BRCMF_D2H_DEV_DS_ENTER_REQ)  {
817 		brcmf_dbg(PCIE, "D2H_MB_DATA: DEEP SLEEP REQ\n");
818 		brcmf_pcie_send_mb_data(devinfo, BRCMF_H2D_HOST_DS_ACK);
819 		brcmf_dbg(PCIE, "D2H_MB_DATA: sent DEEP SLEEP ACK\n");
820 	}
821 	if (dtoh_mb_data & BRCMF_D2H_DEV_DS_EXIT_NOTE)
822 		brcmf_dbg(PCIE, "D2H_MB_DATA: DEEP SLEEP EXIT\n");
823 	if (dtoh_mb_data & BRCMF_D2H_DEV_D3_ACK) {
824 		brcmf_dbg(PCIE, "D2H_MB_DATA: D3 ACK\n");
825 		devinfo->mbdata_completed = true;
826 		wake_up(&devinfo->mbdata_resp_wait);
827 	}
828 	if (dtoh_mb_data & BRCMF_D2H_DEV_FWHALT) {
829 		brcmf_dbg(PCIE, "D2H_MB_DATA: FW HALT\n");
830 		brcmf_fw_crashed(&devinfo->pdev->dev);
831 	}
832 }
833 
834 
brcmf_pcie_bus_console_init(struct brcmf_pciedev_info * devinfo)835 static void brcmf_pcie_bus_console_init(struct brcmf_pciedev_info *devinfo)
836 {
837 	struct brcmf_pcie_shared_info *shared;
838 	struct brcmf_pcie_console *console;
839 	u32 addr;
840 
841 	shared = &devinfo->shared;
842 	console = &shared->console;
843 	addr = shared->tcm_base_address + BRCMF_SHARED_CONSOLE_ADDR_OFFSET;
844 	console->base_addr = brcmf_pcie_read_tcm32(devinfo, addr);
845 
846 	addr = console->base_addr + BRCMF_CONSOLE_BUFADDR_OFFSET;
847 	console->buf_addr = brcmf_pcie_read_tcm32(devinfo, addr);
848 	addr = console->base_addr + BRCMF_CONSOLE_BUFSIZE_OFFSET;
849 	console->bufsize = brcmf_pcie_read_tcm32(devinfo, addr);
850 
851 	brcmf_dbg(FWCON, "Console: base %x, buf %x, size %d\n",
852 		  console->base_addr, console->buf_addr, console->bufsize);
853 }
854 
855 /**
856  * brcmf_pcie_bus_console_read - reads firmware messages
857  *
858  * @devinfo: pointer to the device data structure
859  * @error: specifies if error has occurred (prints messages unconditionally)
860  */
brcmf_pcie_bus_console_read(struct brcmf_pciedev_info * devinfo,bool error)861 static void brcmf_pcie_bus_console_read(struct brcmf_pciedev_info *devinfo,
862 					bool error)
863 {
864 	struct pci_dev *pdev = devinfo->pdev;
865 	struct brcmf_bus *bus = dev_get_drvdata(&pdev->dev);
866 	struct brcmf_pcie_console *console;
867 	u32 addr;
868 	u8 ch;
869 	u32 newidx;
870 
871 	if (!error && !BRCMF_FWCON_ON())
872 		return;
873 
874 	console = &devinfo->shared.console;
875 	if (!console->base_addr)
876 		return;
877 	addr = console->base_addr + BRCMF_CONSOLE_WRITEIDX_OFFSET;
878 	newidx = brcmf_pcie_read_tcm32(devinfo, addr);
879 	while (newidx != console->read_idx) {
880 		addr = console->buf_addr + console->read_idx;
881 		ch = brcmf_pcie_read_tcm8(devinfo, addr);
882 		console->read_idx++;
883 		if (console->read_idx == console->bufsize)
884 			console->read_idx = 0;
885 		if (ch == '\r')
886 			continue;
887 		console->log_str[console->log_idx] = ch;
888 		console->log_idx++;
889 		if ((ch != '\n') &&
890 		    (console->log_idx == (sizeof(console->log_str) - 2))) {
891 			ch = '\n';
892 			console->log_str[console->log_idx] = ch;
893 			console->log_idx++;
894 		}
895 		if (ch == '\n') {
896 			console->log_str[console->log_idx] = 0;
897 			if (error)
898 				__brcmf_err(bus, __func__, "CONSOLE: %s",
899 					    console->log_str);
900 			else
901 				pr_debug("CONSOLE: %s", console->log_str);
902 			console->log_idx = 0;
903 		}
904 	}
905 }
906 
907 
brcmf_pcie_intr_disable(struct brcmf_pciedev_info * devinfo)908 static void brcmf_pcie_intr_disable(struct brcmf_pciedev_info *devinfo)
909 {
910 	brcmf_pcie_write_reg32(devinfo, devinfo->reginfo->mailboxmask, 0);
911 }
912 
913 
brcmf_pcie_intr_enable(struct brcmf_pciedev_info * devinfo)914 static void brcmf_pcie_intr_enable(struct brcmf_pciedev_info *devinfo)
915 {
916 	brcmf_pcie_write_reg32(devinfo, devinfo->reginfo->mailboxmask,
917 			       devinfo->reginfo->int_d2h_db |
918 			       devinfo->reginfo->int_fn0);
919 }
920 
brcmf_pcie_hostready(struct brcmf_pciedev_info * devinfo)921 static void brcmf_pcie_hostready(struct brcmf_pciedev_info *devinfo)
922 {
923 	if (devinfo->shared.flags & BRCMF_PCIE_SHARED_HOSTRDY_DB1)
924 		brcmf_pcie_write_reg32(devinfo,
925 				       devinfo->reginfo->h2d_mailbox_1, 1);
926 }
927 
brcmf_pcie_quick_check_isr(int irq,void * arg)928 static irqreturn_t brcmf_pcie_quick_check_isr(int irq, void *arg)
929 {
930 	struct brcmf_pciedev_info *devinfo = (struct brcmf_pciedev_info *)arg;
931 
932 	if (brcmf_pcie_read_reg32(devinfo, devinfo->reginfo->mailboxint)) {
933 		brcmf_pcie_intr_disable(devinfo);
934 		brcmf_dbg(PCIE, "Enter\n");
935 		return IRQ_WAKE_THREAD;
936 	}
937 	return IRQ_NONE;
938 }
939 
940 
brcmf_pcie_isr_thread(int irq,void * arg)941 static irqreturn_t brcmf_pcie_isr_thread(int irq, void *arg)
942 {
943 	struct brcmf_pciedev_info *devinfo = (struct brcmf_pciedev_info *)arg;
944 	u32 status;
945 
946 	devinfo->in_irq = true;
947 	status = brcmf_pcie_read_reg32(devinfo, devinfo->reginfo->mailboxint);
948 	brcmf_dbg(PCIE, "Enter %x\n", status);
949 	if (status) {
950 		brcmf_pcie_write_reg32(devinfo, devinfo->reginfo->mailboxint,
951 				       status);
952 		if (status & devinfo->reginfo->int_fn0)
953 			brcmf_pcie_handle_mb_data(devinfo);
954 		if (status & devinfo->reginfo->int_d2h_db) {
955 			if (devinfo->state == BRCMFMAC_PCIE_STATE_UP)
956 				brcmf_proto_msgbuf_rx_trigger(
957 							&devinfo->pdev->dev);
958 		}
959 	}
960 	brcmf_pcie_bus_console_read(devinfo, false);
961 	if (devinfo->state == BRCMFMAC_PCIE_STATE_UP)
962 		brcmf_pcie_intr_enable(devinfo);
963 	devinfo->in_irq = false;
964 	return IRQ_HANDLED;
965 }
966 
967 
brcmf_pcie_request_irq(struct brcmf_pciedev_info * devinfo)968 static int brcmf_pcie_request_irq(struct brcmf_pciedev_info *devinfo)
969 {
970 	struct pci_dev *pdev = devinfo->pdev;
971 	struct brcmf_bus *bus = dev_get_drvdata(&pdev->dev);
972 
973 	brcmf_pcie_intr_disable(devinfo);
974 
975 	brcmf_dbg(PCIE, "Enter\n");
976 
977 	pci_enable_msi(pdev);
978 	if (request_threaded_irq(pdev->irq, brcmf_pcie_quick_check_isr,
979 				 brcmf_pcie_isr_thread, IRQF_SHARED,
980 				 "brcmf_pcie_intr", devinfo)) {
981 		pci_disable_msi(pdev);
982 		brcmf_err(bus, "Failed to request IRQ %d\n", pdev->irq);
983 		return -EIO;
984 	}
985 	devinfo->irq_allocated = true;
986 	return 0;
987 }
988 
989 
brcmf_pcie_release_irq(struct brcmf_pciedev_info * devinfo)990 static void brcmf_pcie_release_irq(struct brcmf_pciedev_info *devinfo)
991 {
992 	struct pci_dev *pdev = devinfo->pdev;
993 	struct brcmf_bus *bus = dev_get_drvdata(&pdev->dev);
994 	u32 status;
995 	u32 count;
996 
997 	if (!devinfo->irq_allocated)
998 		return;
999 
1000 	brcmf_pcie_intr_disable(devinfo);
1001 	free_irq(pdev->irq, devinfo);
1002 	pci_disable_msi(pdev);
1003 
1004 	msleep(50);
1005 	count = 0;
1006 	while ((devinfo->in_irq) && (count < 20)) {
1007 		msleep(50);
1008 		count++;
1009 	}
1010 	if (devinfo->in_irq)
1011 		brcmf_err(bus, "Still in IRQ (processing) !!!\n");
1012 
1013 	status = brcmf_pcie_read_reg32(devinfo, devinfo->reginfo->mailboxint);
1014 	brcmf_pcie_write_reg32(devinfo, devinfo->reginfo->mailboxint, status);
1015 
1016 	devinfo->irq_allocated = false;
1017 }
1018 
1019 
brcmf_pcie_ring_mb_write_rptr(void * ctx)1020 static int brcmf_pcie_ring_mb_write_rptr(void *ctx)
1021 {
1022 	struct brcmf_pcie_ringbuf *ring = (struct brcmf_pcie_ringbuf *)ctx;
1023 	struct brcmf_pciedev_info *devinfo = ring->devinfo;
1024 	struct brcmf_commonring *commonring = &ring->commonring;
1025 
1026 	if (devinfo->state != BRCMFMAC_PCIE_STATE_UP)
1027 		return -EIO;
1028 
1029 	brcmf_dbg(PCIE, "W r_ptr %d (%d), ring %d\n", commonring->r_ptr,
1030 		  commonring->w_ptr, ring->id);
1031 
1032 	devinfo->write_ptr(devinfo, ring->r_idx_addr, commonring->r_ptr);
1033 
1034 	return 0;
1035 }
1036 
1037 
brcmf_pcie_ring_mb_write_wptr(void * ctx)1038 static int brcmf_pcie_ring_mb_write_wptr(void *ctx)
1039 {
1040 	struct brcmf_pcie_ringbuf *ring = (struct brcmf_pcie_ringbuf *)ctx;
1041 	struct brcmf_pciedev_info *devinfo = ring->devinfo;
1042 	struct brcmf_commonring *commonring = &ring->commonring;
1043 
1044 	if (devinfo->state != BRCMFMAC_PCIE_STATE_UP)
1045 		return -EIO;
1046 
1047 	brcmf_dbg(PCIE, "W w_ptr %d (%d), ring %d\n", commonring->w_ptr,
1048 		  commonring->r_ptr, ring->id);
1049 
1050 	devinfo->write_ptr(devinfo, ring->w_idx_addr, commonring->w_ptr);
1051 
1052 	return 0;
1053 }
1054 
1055 
brcmf_pcie_ring_mb_ring_bell(void * ctx)1056 static int brcmf_pcie_ring_mb_ring_bell(void *ctx)
1057 {
1058 	struct brcmf_pcie_ringbuf *ring = (struct brcmf_pcie_ringbuf *)ctx;
1059 	struct brcmf_pciedev_info *devinfo = ring->devinfo;
1060 
1061 	if (devinfo->state != BRCMFMAC_PCIE_STATE_UP)
1062 		return -EIO;
1063 
1064 	brcmf_dbg(PCIE, "RING !\n");
1065 	/* Any arbitrary value will do, lets use 1 */
1066 	brcmf_pcie_write_reg32(devinfo, devinfo->reginfo->h2d_mailbox_0, 1);
1067 
1068 	return 0;
1069 }
1070 
1071 
brcmf_pcie_ring_mb_update_rptr(void * ctx)1072 static int brcmf_pcie_ring_mb_update_rptr(void *ctx)
1073 {
1074 	struct brcmf_pcie_ringbuf *ring = (struct brcmf_pcie_ringbuf *)ctx;
1075 	struct brcmf_pciedev_info *devinfo = ring->devinfo;
1076 	struct brcmf_commonring *commonring = &ring->commonring;
1077 
1078 	if (devinfo->state != BRCMFMAC_PCIE_STATE_UP)
1079 		return -EIO;
1080 
1081 	commonring->r_ptr = devinfo->read_ptr(devinfo, ring->r_idx_addr);
1082 
1083 	brcmf_dbg(PCIE, "R r_ptr %d (%d), ring %d\n", commonring->r_ptr,
1084 		  commonring->w_ptr, ring->id);
1085 
1086 	return 0;
1087 }
1088 
1089 
brcmf_pcie_ring_mb_update_wptr(void * ctx)1090 static int brcmf_pcie_ring_mb_update_wptr(void *ctx)
1091 {
1092 	struct brcmf_pcie_ringbuf *ring = (struct brcmf_pcie_ringbuf *)ctx;
1093 	struct brcmf_pciedev_info *devinfo = ring->devinfo;
1094 	struct brcmf_commonring *commonring = &ring->commonring;
1095 
1096 	if (devinfo->state != BRCMFMAC_PCIE_STATE_UP)
1097 		return -EIO;
1098 
1099 	commonring->w_ptr = devinfo->read_ptr(devinfo, ring->w_idx_addr);
1100 
1101 	brcmf_dbg(PCIE, "R w_ptr %d (%d), ring %d\n", commonring->w_ptr,
1102 		  commonring->r_ptr, ring->id);
1103 
1104 	return 0;
1105 }
1106 
1107 
1108 static void *
brcmf_pcie_init_dmabuffer_for_device(struct brcmf_pciedev_info * devinfo,u32 size,u32 tcm_dma_phys_addr,dma_addr_t * dma_handle)1109 brcmf_pcie_init_dmabuffer_for_device(struct brcmf_pciedev_info *devinfo,
1110 				     u32 size, u32 tcm_dma_phys_addr,
1111 				     dma_addr_t *dma_handle)
1112 {
1113 	void *ring;
1114 	u64 address;
1115 
1116 	ring = dma_alloc_coherent(&devinfo->pdev->dev, size, dma_handle,
1117 				  GFP_KERNEL);
1118 	if (!ring)
1119 		return NULL;
1120 
1121 	address = (u64)*dma_handle;
1122 	brcmf_pcie_write_tcm32(devinfo, tcm_dma_phys_addr,
1123 			       address & 0xffffffff);
1124 	brcmf_pcie_write_tcm32(devinfo, tcm_dma_phys_addr + 4, address >> 32);
1125 
1126 	return (ring);
1127 }
1128 
1129 
1130 static struct brcmf_pcie_ringbuf *
brcmf_pcie_alloc_dma_and_ring(struct brcmf_pciedev_info * devinfo,u32 ring_id,u32 tcm_ring_phys_addr)1131 brcmf_pcie_alloc_dma_and_ring(struct brcmf_pciedev_info *devinfo, u32 ring_id,
1132 			      u32 tcm_ring_phys_addr)
1133 {
1134 	void *dma_buf;
1135 	dma_addr_t dma_handle;
1136 	struct brcmf_pcie_ringbuf *ring;
1137 	u32 size;
1138 	u32 addr;
1139 	const u32 *ring_itemsize_array;
1140 
1141 	if (devinfo->shared.version < BRCMF_PCIE_SHARED_VERSION_7)
1142 		ring_itemsize_array = brcmf_ring_itemsize_pre_v7;
1143 	else
1144 		ring_itemsize_array = brcmf_ring_itemsize;
1145 
1146 	size = brcmf_ring_max_item[ring_id] * ring_itemsize_array[ring_id];
1147 	dma_buf = brcmf_pcie_init_dmabuffer_for_device(devinfo, size,
1148 			tcm_ring_phys_addr + BRCMF_RING_MEM_BASE_ADDR_OFFSET,
1149 			&dma_handle);
1150 	if (!dma_buf)
1151 		return NULL;
1152 
1153 	addr = tcm_ring_phys_addr + BRCMF_RING_MAX_ITEM_OFFSET;
1154 	brcmf_pcie_write_tcm16(devinfo, addr, brcmf_ring_max_item[ring_id]);
1155 	addr = tcm_ring_phys_addr + BRCMF_RING_LEN_ITEMS_OFFSET;
1156 	brcmf_pcie_write_tcm16(devinfo, addr, ring_itemsize_array[ring_id]);
1157 
1158 	ring = kzalloc_obj(*ring);
1159 	if (!ring) {
1160 		dma_free_coherent(&devinfo->pdev->dev, size, dma_buf,
1161 				  dma_handle);
1162 		return NULL;
1163 	}
1164 	brcmf_commonring_config(&ring->commonring, brcmf_ring_max_item[ring_id],
1165 				ring_itemsize_array[ring_id], dma_buf);
1166 	ring->dma_handle = dma_handle;
1167 	ring->devinfo = devinfo;
1168 	brcmf_commonring_register_cb(&ring->commonring,
1169 				     brcmf_pcie_ring_mb_ring_bell,
1170 				     brcmf_pcie_ring_mb_update_rptr,
1171 				     brcmf_pcie_ring_mb_update_wptr,
1172 				     brcmf_pcie_ring_mb_write_rptr,
1173 				     brcmf_pcie_ring_mb_write_wptr, ring);
1174 
1175 	return (ring);
1176 }
1177 
1178 
brcmf_pcie_release_ringbuffer(struct device * dev,struct brcmf_pcie_ringbuf * ring)1179 static void brcmf_pcie_release_ringbuffer(struct device *dev,
1180 					  struct brcmf_pcie_ringbuf *ring)
1181 {
1182 	void *dma_buf;
1183 	u32 size;
1184 
1185 	if (!ring)
1186 		return;
1187 
1188 	dma_buf = ring->commonring.buf_addr;
1189 	if (dma_buf) {
1190 		size = ring->commonring.depth * ring->commonring.item_len;
1191 		dma_free_coherent(dev, size, dma_buf, ring->dma_handle);
1192 	}
1193 	kfree(ring);
1194 }
1195 
1196 
brcmf_pcie_release_ringbuffers(struct brcmf_pciedev_info * devinfo)1197 static void brcmf_pcie_release_ringbuffers(struct brcmf_pciedev_info *devinfo)
1198 {
1199 	u32 i;
1200 
1201 	for (i = 0; i < BRCMF_NROF_COMMON_MSGRINGS; i++) {
1202 		brcmf_pcie_release_ringbuffer(&devinfo->pdev->dev,
1203 					      devinfo->shared.commonrings[i]);
1204 		devinfo->shared.commonrings[i] = NULL;
1205 	}
1206 	kfree(devinfo->shared.flowrings);
1207 	devinfo->shared.flowrings = NULL;
1208 	if (devinfo->idxbuf) {
1209 		dma_free_coherent(&devinfo->pdev->dev,
1210 				  devinfo->idxbuf_sz,
1211 				  devinfo->idxbuf,
1212 				  devinfo->idxbuf_dmahandle);
1213 		devinfo->idxbuf = NULL;
1214 	}
1215 }
1216 
1217 
brcmf_pcie_init_ringbuffers(struct brcmf_pciedev_info * devinfo)1218 static int brcmf_pcie_init_ringbuffers(struct brcmf_pciedev_info *devinfo)
1219 {
1220 	struct brcmf_bus *bus = dev_get_drvdata(&devinfo->pdev->dev);
1221 	struct brcmf_pcie_ringbuf *ring;
1222 	struct brcmf_pcie_ringbuf *rings;
1223 	u32 d2h_w_idx_ptr;
1224 	u32 d2h_r_idx_ptr;
1225 	u32 h2d_w_idx_ptr;
1226 	u32 h2d_r_idx_ptr;
1227 	u32 ring_mem_ptr;
1228 	u32 i;
1229 	u64 address;
1230 	u32 bufsz;
1231 	u8 idx_offset;
1232 	struct brcmf_pcie_dhi_ringinfo ringinfo;
1233 	u16 max_flowrings;
1234 	u16 max_submissionrings;
1235 	u16 max_completionrings;
1236 
1237 	memcpy_fromio(&ringinfo, devinfo->tcm + devinfo->shared.ring_info_addr,
1238 		      sizeof(ringinfo));
1239 	if (devinfo->shared.version >= 6) {
1240 		max_submissionrings = le16_to_cpu(ringinfo.max_submissionrings);
1241 		max_flowrings = le16_to_cpu(ringinfo.max_flowrings);
1242 		max_completionrings = le16_to_cpu(ringinfo.max_completionrings);
1243 	} else {
1244 		max_submissionrings = le16_to_cpu(ringinfo.max_flowrings);
1245 		max_flowrings = max_submissionrings -
1246 				BRCMF_NROF_H2D_COMMON_MSGRINGS;
1247 		max_completionrings = BRCMF_NROF_D2H_COMMON_MSGRINGS;
1248 	}
1249 	if (max_flowrings > 512) {
1250 		brcmf_err(bus, "invalid max_flowrings(%d)\n", max_flowrings);
1251 		return -EIO;
1252 	}
1253 
1254 	if (devinfo->dma_idx_sz != 0) {
1255 		bufsz = (max_submissionrings + max_completionrings) *
1256 			devinfo->dma_idx_sz * 2;
1257 		devinfo->idxbuf = dma_alloc_coherent(&devinfo->pdev->dev, bufsz,
1258 						     &devinfo->idxbuf_dmahandle,
1259 						     GFP_KERNEL);
1260 		if (!devinfo->idxbuf)
1261 			devinfo->dma_idx_sz = 0;
1262 	}
1263 
1264 	if (devinfo->dma_idx_sz == 0) {
1265 		d2h_w_idx_ptr = le32_to_cpu(ringinfo.d2h_w_idx_ptr);
1266 		d2h_r_idx_ptr = le32_to_cpu(ringinfo.d2h_r_idx_ptr);
1267 		h2d_w_idx_ptr = le32_to_cpu(ringinfo.h2d_w_idx_ptr);
1268 		h2d_r_idx_ptr = le32_to_cpu(ringinfo.h2d_r_idx_ptr);
1269 		idx_offset = sizeof(u32);
1270 		devinfo->write_ptr = brcmf_pcie_write_tcm16;
1271 		devinfo->read_ptr = brcmf_pcie_read_tcm16;
1272 		brcmf_dbg(PCIE, "Using TCM indices\n");
1273 	} else {
1274 		memset(devinfo->idxbuf, 0, bufsz);
1275 		devinfo->idxbuf_sz = bufsz;
1276 		idx_offset = devinfo->dma_idx_sz;
1277 		devinfo->write_ptr = brcmf_pcie_write_idx;
1278 		devinfo->read_ptr = brcmf_pcie_read_idx;
1279 
1280 		h2d_w_idx_ptr = 0;
1281 		address = (u64)devinfo->idxbuf_dmahandle;
1282 		ringinfo.h2d_w_idx_hostaddr.low_addr =
1283 			cpu_to_le32(address & 0xffffffff);
1284 		ringinfo.h2d_w_idx_hostaddr.high_addr =
1285 			cpu_to_le32(address >> 32);
1286 
1287 		h2d_r_idx_ptr = h2d_w_idx_ptr +
1288 				max_submissionrings * idx_offset;
1289 		address += max_submissionrings * idx_offset;
1290 		ringinfo.h2d_r_idx_hostaddr.low_addr =
1291 			cpu_to_le32(address & 0xffffffff);
1292 		ringinfo.h2d_r_idx_hostaddr.high_addr =
1293 			cpu_to_le32(address >> 32);
1294 
1295 		d2h_w_idx_ptr = h2d_r_idx_ptr +
1296 				max_submissionrings * idx_offset;
1297 		address += max_submissionrings * idx_offset;
1298 		ringinfo.d2h_w_idx_hostaddr.low_addr =
1299 			cpu_to_le32(address & 0xffffffff);
1300 		ringinfo.d2h_w_idx_hostaddr.high_addr =
1301 			cpu_to_le32(address >> 32);
1302 
1303 		d2h_r_idx_ptr = d2h_w_idx_ptr +
1304 				max_completionrings * idx_offset;
1305 		address += max_completionrings * idx_offset;
1306 		ringinfo.d2h_r_idx_hostaddr.low_addr =
1307 			cpu_to_le32(address & 0xffffffff);
1308 		ringinfo.d2h_r_idx_hostaddr.high_addr =
1309 			cpu_to_le32(address >> 32);
1310 
1311 		memcpy_toio(devinfo->tcm + devinfo->shared.ring_info_addr,
1312 			    &ringinfo, sizeof(ringinfo));
1313 		brcmf_dbg(PCIE, "Using host memory indices\n");
1314 	}
1315 
1316 	ring_mem_ptr = le32_to_cpu(ringinfo.ringmem);
1317 
1318 	for (i = 0; i < BRCMF_NROF_H2D_COMMON_MSGRINGS; i++) {
1319 		ring = brcmf_pcie_alloc_dma_and_ring(devinfo, i, ring_mem_ptr);
1320 		if (!ring)
1321 			goto fail;
1322 		ring->w_idx_addr = h2d_w_idx_ptr;
1323 		ring->r_idx_addr = h2d_r_idx_ptr;
1324 		ring->id = i;
1325 		devinfo->shared.commonrings[i] = ring;
1326 
1327 		h2d_w_idx_ptr += idx_offset;
1328 		h2d_r_idx_ptr += idx_offset;
1329 		ring_mem_ptr += BRCMF_RING_MEM_SZ;
1330 	}
1331 
1332 	for (i = BRCMF_NROF_H2D_COMMON_MSGRINGS;
1333 	     i < BRCMF_NROF_COMMON_MSGRINGS; i++) {
1334 		ring = brcmf_pcie_alloc_dma_and_ring(devinfo, i, ring_mem_ptr);
1335 		if (!ring)
1336 			goto fail;
1337 		ring->w_idx_addr = d2h_w_idx_ptr;
1338 		ring->r_idx_addr = d2h_r_idx_ptr;
1339 		ring->id = i;
1340 		devinfo->shared.commonrings[i] = ring;
1341 
1342 		d2h_w_idx_ptr += idx_offset;
1343 		d2h_r_idx_ptr += idx_offset;
1344 		ring_mem_ptr += BRCMF_RING_MEM_SZ;
1345 	}
1346 
1347 	devinfo->shared.max_flowrings = max_flowrings;
1348 	devinfo->shared.max_submissionrings = max_submissionrings;
1349 	devinfo->shared.max_completionrings = max_completionrings;
1350 	rings = kzalloc_objs(*ring, max_flowrings);
1351 	if (!rings)
1352 		goto fail;
1353 
1354 	brcmf_dbg(PCIE, "Nr of flowrings is %d\n", max_flowrings);
1355 
1356 	for (i = 0; i < max_flowrings; i++) {
1357 		ring = &rings[i];
1358 		ring->devinfo = devinfo;
1359 		ring->id = i + BRCMF_H2D_MSGRING_FLOWRING_IDSTART;
1360 		brcmf_commonring_register_cb(&ring->commonring,
1361 					     brcmf_pcie_ring_mb_ring_bell,
1362 					     brcmf_pcie_ring_mb_update_rptr,
1363 					     brcmf_pcie_ring_mb_update_wptr,
1364 					     brcmf_pcie_ring_mb_write_rptr,
1365 					     brcmf_pcie_ring_mb_write_wptr,
1366 					     ring);
1367 		ring->w_idx_addr = h2d_w_idx_ptr;
1368 		ring->r_idx_addr = h2d_r_idx_ptr;
1369 		h2d_w_idx_ptr += idx_offset;
1370 		h2d_r_idx_ptr += idx_offset;
1371 	}
1372 	devinfo->shared.flowrings = rings;
1373 
1374 	return 0;
1375 
1376 fail:
1377 	brcmf_err(bus, "Allocating ring buffers failed\n");
1378 	brcmf_pcie_release_ringbuffers(devinfo);
1379 	return -ENOMEM;
1380 }
1381 
1382 
1383 static void
brcmf_pcie_release_scratchbuffers(struct brcmf_pciedev_info * devinfo)1384 brcmf_pcie_release_scratchbuffers(struct brcmf_pciedev_info *devinfo)
1385 {
1386 	if (devinfo->shared.scratch) {
1387 		dma_free_coherent(&devinfo->pdev->dev,
1388 				  BRCMF_DMA_D2H_SCRATCH_BUF_LEN,
1389 				  devinfo->shared.scratch,
1390 				  devinfo->shared.scratch_dmahandle);
1391 		devinfo->shared.scratch = NULL;
1392 	}
1393 	if (devinfo->shared.ringupd) {
1394 		dma_free_coherent(&devinfo->pdev->dev,
1395 				  BRCMF_DMA_D2H_RINGUPD_BUF_LEN,
1396 				  devinfo->shared.ringupd,
1397 				  devinfo->shared.ringupd_dmahandle);
1398 		devinfo->shared.ringupd = NULL;
1399 	}
1400 }
1401 
brcmf_pcie_init_scratchbuffers(struct brcmf_pciedev_info * devinfo)1402 static int brcmf_pcie_init_scratchbuffers(struct brcmf_pciedev_info *devinfo)
1403 {
1404 	struct brcmf_bus *bus = dev_get_drvdata(&devinfo->pdev->dev);
1405 	u64 address;
1406 	u32 addr;
1407 
1408 	devinfo->shared.scratch =
1409 		dma_alloc_coherent(&devinfo->pdev->dev,
1410 				   BRCMF_DMA_D2H_SCRATCH_BUF_LEN,
1411 				   &devinfo->shared.scratch_dmahandle,
1412 				   GFP_KERNEL);
1413 	if (!devinfo->shared.scratch)
1414 		goto fail;
1415 
1416 	addr = devinfo->shared.tcm_base_address +
1417 	       BRCMF_SHARED_DMA_SCRATCH_ADDR_OFFSET;
1418 	address = (u64)devinfo->shared.scratch_dmahandle;
1419 	brcmf_pcie_write_tcm32(devinfo, addr, address & 0xffffffff);
1420 	brcmf_pcie_write_tcm32(devinfo, addr + 4, address >> 32);
1421 	addr = devinfo->shared.tcm_base_address +
1422 	       BRCMF_SHARED_DMA_SCRATCH_LEN_OFFSET;
1423 	brcmf_pcie_write_tcm32(devinfo, addr, BRCMF_DMA_D2H_SCRATCH_BUF_LEN);
1424 
1425 	devinfo->shared.ringupd =
1426 		dma_alloc_coherent(&devinfo->pdev->dev,
1427 				   BRCMF_DMA_D2H_RINGUPD_BUF_LEN,
1428 				   &devinfo->shared.ringupd_dmahandle,
1429 				   GFP_KERNEL);
1430 	if (!devinfo->shared.ringupd)
1431 		goto fail;
1432 
1433 	addr = devinfo->shared.tcm_base_address +
1434 	       BRCMF_SHARED_DMA_RINGUPD_ADDR_OFFSET;
1435 	address = (u64)devinfo->shared.ringupd_dmahandle;
1436 	brcmf_pcie_write_tcm32(devinfo, addr, address & 0xffffffff);
1437 	brcmf_pcie_write_tcm32(devinfo, addr + 4, address >> 32);
1438 	addr = devinfo->shared.tcm_base_address +
1439 	       BRCMF_SHARED_DMA_RINGUPD_LEN_OFFSET;
1440 	brcmf_pcie_write_tcm32(devinfo, addr, BRCMF_DMA_D2H_RINGUPD_BUF_LEN);
1441 	return 0;
1442 
1443 fail:
1444 	brcmf_err(bus, "Allocating scratch buffers failed\n");
1445 	brcmf_pcie_release_scratchbuffers(devinfo);
1446 	return -ENOMEM;
1447 }
1448 
1449 
brcmf_pcie_down(struct device * dev)1450 static void brcmf_pcie_down(struct device *dev)
1451 {
1452 	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
1453 	struct brcmf_pciedev *pcie_bus_dev = bus_if->bus_priv.pcie;
1454 	struct brcmf_pciedev_info *devinfo = pcie_bus_dev->devinfo;
1455 
1456 	brcmf_pcie_fwcon_timer(devinfo, false);
1457 }
1458 
brcmf_pcie_preinit(struct device * dev)1459 static int brcmf_pcie_preinit(struct device *dev)
1460 {
1461 	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
1462 	struct brcmf_pciedev *buspub = bus_if->bus_priv.pcie;
1463 
1464 	brcmf_dbg(PCIE, "Enter\n");
1465 
1466 	brcmf_pcie_intr_enable(buspub->devinfo);
1467 	brcmf_pcie_hostready(buspub->devinfo);
1468 
1469 	return 0;
1470 }
1471 
brcmf_pcie_tx(struct device * dev,struct sk_buff * skb)1472 static int brcmf_pcie_tx(struct device *dev, struct sk_buff *skb)
1473 {
1474 	return 0;
1475 }
1476 
1477 
brcmf_pcie_tx_ctlpkt(struct device * dev,unsigned char * msg,uint len)1478 static int brcmf_pcie_tx_ctlpkt(struct device *dev, unsigned char *msg,
1479 				uint len)
1480 {
1481 	return 0;
1482 }
1483 
1484 
brcmf_pcie_rx_ctlpkt(struct device * dev,unsigned char * msg,uint len)1485 static int brcmf_pcie_rx_ctlpkt(struct device *dev, unsigned char *msg,
1486 				uint len)
1487 {
1488 	return 0;
1489 }
1490 
1491 
brcmf_pcie_wowl_config(struct device * dev,bool enabled)1492 static void brcmf_pcie_wowl_config(struct device *dev, bool enabled)
1493 {
1494 	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
1495 	struct brcmf_pciedev *buspub = bus_if->bus_priv.pcie;
1496 	struct brcmf_pciedev_info *devinfo = buspub->devinfo;
1497 
1498 	brcmf_dbg(PCIE, "Configuring WOWL, enabled=%d\n", enabled);
1499 	devinfo->wowl_enabled = enabled;
1500 }
1501 
1502 
brcmf_pcie_get_ramsize(struct device * dev)1503 static size_t brcmf_pcie_get_ramsize(struct device *dev)
1504 {
1505 	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
1506 	struct brcmf_pciedev *buspub = bus_if->bus_priv.pcie;
1507 	struct brcmf_pciedev_info *devinfo = buspub->devinfo;
1508 
1509 	return devinfo->ci->ramsize - devinfo->ci->srsize;
1510 }
1511 
1512 
brcmf_pcie_get_memdump(struct device * dev,void * data,size_t len)1513 static int brcmf_pcie_get_memdump(struct device *dev, void *data, size_t len)
1514 {
1515 	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
1516 	struct brcmf_pciedev *buspub = bus_if->bus_priv.pcie;
1517 	struct brcmf_pciedev_info *devinfo = buspub->devinfo;
1518 
1519 	brcmf_dbg(PCIE, "dump at 0x%08X: len=%zu\n", devinfo->ci->rambase, len);
1520 	brcmf_pcie_copy_dev_tomem(devinfo, devinfo->ci->rambase, data, len);
1521 	return 0;
1522 }
1523 
brcmf_pcie_get_blob(struct device * dev,const struct firmware ** fw,enum brcmf_blob_type type)1524 static int brcmf_pcie_get_blob(struct device *dev, const struct firmware **fw,
1525 			       enum brcmf_blob_type type)
1526 {
1527 	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
1528 	struct brcmf_pciedev *buspub = bus_if->bus_priv.pcie;
1529 	struct brcmf_pciedev_info *devinfo = buspub->devinfo;
1530 
1531 	switch (type) {
1532 	case BRCMF_BLOB_CLM:
1533 		*fw = devinfo->clm_fw;
1534 		devinfo->clm_fw = NULL;
1535 		break;
1536 	case BRCMF_BLOB_TXCAP:
1537 		*fw = devinfo->txcap_fw;
1538 		devinfo->txcap_fw = NULL;
1539 		break;
1540 	default:
1541 		return -ENOENT;
1542 	}
1543 
1544 	if (!*fw)
1545 		return -ENOENT;
1546 
1547 	return 0;
1548 }
1549 
brcmf_pcie_reset(struct device * dev)1550 static int brcmf_pcie_reset(struct device *dev)
1551 {
1552 	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
1553 	struct brcmf_pciedev *buspub = bus_if->bus_priv.pcie;
1554 	struct brcmf_pciedev_info *devinfo = buspub->devinfo;
1555 	struct brcmf_fw_request *fwreq;
1556 	int err;
1557 
1558 	brcmf_pcie_intr_disable(devinfo);
1559 
1560 	brcmf_pcie_bus_console_read(devinfo, true);
1561 
1562 	brcmf_detach(dev);
1563 
1564 	brcmf_pcie_release_irq(devinfo);
1565 	brcmf_pcie_release_scratchbuffers(devinfo);
1566 	brcmf_pcie_release_ringbuffers(devinfo);
1567 	brcmf_pcie_reset_device(devinfo);
1568 
1569 	fwreq = brcmf_pcie_prepare_fw_request(devinfo);
1570 	if (!fwreq) {
1571 		dev_err(dev, "Failed to prepare FW request\n");
1572 		return -ENOMEM;
1573 	}
1574 
1575 	err = brcmf_fw_get_firmwares(dev, fwreq, brcmf_pcie_setup);
1576 	if (err) {
1577 		dev_err(dev, "Failed to prepare FW request\n");
1578 		kfree(fwreq);
1579 	}
1580 
1581 	return err;
1582 }
1583 
1584 static const struct brcmf_bus_ops brcmf_pcie_bus_ops = {
1585 	.preinit = brcmf_pcie_preinit,
1586 	.txdata = brcmf_pcie_tx,
1587 	.stop = brcmf_pcie_down,
1588 	.txctl = brcmf_pcie_tx_ctlpkt,
1589 	.rxctl = brcmf_pcie_rx_ctlpkt,
1590 	.wowl_config = brcmf_pcie_wowl_config,
1591 	.get_ramsize = brcmf_pcie_get_ramsize,
1592 	.get_memdump = brcmf_pcie_get_memdump,
1593 	.get_blob = brcmf_pcie_get_blob,
1594 	.reset = brcmf_pcie_reset,
1595 	.debugfs_create = brcmf_pcie_debugfs_create,
1596 };
1597 
1598 
1599 static void
brcmf_pcie_adjust_ramsize(struct brcmf_pciedev_info * devinfo,u8 * data,u32 data_len)1600 brcmf_pcie_adjust_ramsize(struct brcmf_pciedev_info *devinfo, u8 *data,
1601 			  u32 data_len)
1602 {
1603 	__le32 *field;
1604 	u32 newsize;
1605 
1606 	if (data_len < BRCMF_RAMSIZE_OFFSET + 8)
1607 		return;
1608 
1609 	field = (__le32 *)&data[BRCMF_RAMSIZE_OFFSET];
1610 	if (le32_to_cpup(field) != BRCMF_RAMSIZE_MAGIC)
1611 		return;
1612 	field++;
1613 	newsize = le32_to_cpup(field);
1614 
1615 	brcmf_dbg(PCIE, "Found ramsize info in FW, adjusting to 0x%x\n",
1616 		  newsize);
1617 	devinfo->ci->ramsize = newsize;
1618 }
1619 
1620 
1621 static int
brcmf_pcie_init_share_ram_info(struct brcmf_pciedev_info * devinfo,u32 sharedram_addr)1622 brcmf_pcie_init_share_ram_info(struct brcmf_pciedev_info *devinfo,
1623 			       u32 sharedram_addr)
1624 {
1625 	struct brcmf_bus *bus = dev_get_drvdata(&devinfo->pdev->dev);
1626 	struct brcmf_pcie_shared_info *shared;
1627 	u32 addr;
1628 
1629 	shared = &devinfo->shared;
1630 	shared->tcm_base_address = sharedram_addr;
1631 
1632 	shared->flags = brcmf_pcie_read_tcm32(devinfo, sharedram_addr);
1633 	shared->version = (u8)(shared->flags & BRCMF_PCIE_SHARED_VERSION_MASK);
1634 	brcmf_dbg(PCIE, "PCIe protocol version %d\n", shared->version);
1635 	if ((shared->version > BRCMF_PCIE_MAX_SHARED_VERSION) ||
1636 	    (shared->version < BRCMF_PCIE_MIN_SHARED_VERSION)) {
1637 		brcmf_err(bus, "Unsupported PCIE version %d\n",
1638 			  shared->version);
1639 		return -EINVAL;
1640 	}
1641 
1642 	/* check firmware support dma indicies */
1643 	if (shared->flags & BRCMF_PCIE_SHARED_DMA_INDEX) {
1644 		if (shared->flags & BRCMF_PCIE_SHARED_DMA_2B_IDX)
1645 			devinfo->dma_idx_sz = sizeof(u16);
1646 		else
1647 			devinfo->dma_idx_sz = sizeof(u32);
1648 	}
1649 
1650 	addr = sharedram_addr + BRCMF_SHARED_MAX_RXBUFPOST_OFFSET;
1651 	shared->max_rxbufpost = brcmf_pcie_read_tcm16(devinfo, addr);
1652 	if (shared->max_rxbufpost == 0)
1653 		shared->max_rxbufpost = BRCMF_DEF_MAX_RXBUFPOST;
1654 
1655 	addr = sharedram_addr + BRCMF_SHARED_RX_DATAOFFSET_OFFSET;
1656 	shared->rx_dataoffset = brcmf_pcie_read_tcm32(devinfo, addr);
1657 
1658 	addr = sharedram_addr + BRCMF_SHARED_HTOD_MB_DATA_ADDR_OFFSET;
1659 	shared->htod_mb_data_addr = brcmf_pcie_read_tcm32(devinfo, addr);
1660 
1661 	addr = sharedram_addr + BRCMF_SHARED_DTOH_MB_DATA_ADDR_OFFSET;
1662 	shared->dtoh_mb_data_addr = brcmf_pcie_read_tcm32(devinfo, addr);
1663 
1664 	addr = sharedram_addr + BRCMF_SHARED_RING_INFO_ADDR_OFFSET;
1665 	shared->ring_info_addr = brcmf_pcie_read_tcm32(devinfo, addr);
1666 
1667 	brcmf_dbg(PCIE, "max rx buf post %d, rx dataoffset %d\n",
1668 		  shared->max_rxbufpost, shared->rx_dataoffset);
1669 
1670 	brcmf_pcie_bus_console_init(devinfo);
1671 	brcmf_pcie_bus_console_read(devinfo, false);
1672 
1673 	return 0;
1674 }
1675 
1676 struct brcmf_random_seed_footer {
1677 	__le32 length;
1678 	__le32 magic;
1679 };
1680 
1681 #define BRCMF_RANDOM_SEED_MAGIC		0xfeedc0de
1682 #define BRCMF_RANDOM_SEED_LENGTH	0x100
1683 
1684 static noinline_for_stack void
brcmf_pcie_provide_random_bytes(struct brcmf_pciedev_info * devinfo,u32 address)1685 brcmf_pcie_provide_random_bytes(struct brcmf_pciedev_info *devinfo, u32 address)
1686 {
1687 	u8 randbuf[BRCMF_RANDOM_SEED_LENGTH];
1688 
1689 	get_random_bytes(randbuf, BRCMF_RANDOM_SEED_LENGTH);
1690 	memcpy_toio(devinfo->tcm + address, randbuf, BRCMF_RANDOM_SEED_LENGTH);
1691 }
1692 
brcmf_pcie_download_fw_nvram(struct brcmf_pciedev_info * devinfo,const struct firmware * fw,void * nvram,u32 nvram_len)1693 static int brcmf_pcie_download_fw_nvram(struct brcmf_pciedev_info *devinfo,
1694 					const struct firmware *fw, void *nvram,
1695 					u32 nvram_len)
1696 {
1697 	struct brcmf_bus *bus = dev_get_drvdata(&devinfo->pdev->dev);
1698 	u32 sharedram_addr;
1699 	u32 sharedram_addr_written;
1700 	u32 loop_counter;
1701 	int err;
1702 	u32 address;
1703 	u32 resetintr;
1704 
1705 	brcmf_dbg(PCIE, "Halt ARM.\n");
1706 	err = brcmf_pcie_enter_download_state(devinfo);
1707 	if (err)
1708 		return err;
1709 
1710 	brcmf_dbg(PCIE, "Download FW %s\n", devinfo->fw_name);
1711 	memcpy_toio(devinfo->tcm + devinfo->ci->rambase,
1712 		    (void *)fw->data, fw->size);
1713 
1714 	resetintr = get_unaligned_le32(fw->data);
1715 	release_firmware(fw);
1716 
1717 	/* reset last 4 bytes of RAM address. to be used for shared
1718 	 * area. This identifies when FW is running
1719 	 */
1720 	brcmf_pcie_write_ram32(devinfo, devinfo->ci->ramsize - 4, 0);
1721 
1722 	if (nvram) {
1723 		brcmf_dbg(PCIE, "Download NVRAM %s\n", devinfo->nvram_name);
1724 		address = devinfo->ci->rambase + devinfo->ci->ramsize -
1725 			  nvram_len;
1726 		memcpy_toio(devinfo->tcm + address, nvram, nvram_len);
1727 		brcmf_fw_nvram_free(nvram);
1728 
1729 		if (devinfo->fwseed) {
1730 			size_t rand_len = BRCMF_RANDOM_SEED_LENGTH;
1731 			struct brcmf_random_seed_footer footer = {
1732 				.length = cpu_to_le32(rand_len),
1733 				.magic = cpu_to_le32(BRCMF_RANDOM_SEED_MAGIC),
1734 			};
1735 
1736 			/* Some chips/firmwares expect a buffer of random
1737 			 * data to be present before NVRAM
1738 			 */
1739 			brcmf_dbg(PCIE, "Download random seed\n");
1740 
1741 			address -= sizeof(footer);
1742 			memcpy_toio(devinfo->tcm + address, &footer,
1743 				    sizeof(footer));
1744 
1745 			address -= rand_len;
1746 			brcmf_pcie_provide_random_bytes(devinfo, address);
1747 		}
1748 	} else {
1749 		brcmf_dbg(PCIE, "No matching NVRAM file found %s\n",
1750 			  devinfo->nvram_name);
1751 	}
1752 
1753 	sharedram_addr_written = brcmf_pcie_read_ram32(devinfo,
1754 						       devinfo->ci->ramsize -
1755 						       4);
1756 	brcmf_dbg(PCIE, "Bring ARM in running state\n");
1757 	err = brcmf_pcie_exit_download_state(devinfo, resetintr);
1758 	if (err)
1759 		return err;
1760 
1761 	brcmf_dbg(PCIE, "Wait for FW init\n");
1762 	sharedram_addr = sharedram_addr_written;
1763 	loop_counter = BRCMF_PCIE_FW_UP_TIMEOUT / 50;
1764 	while ((sharedram_addr == sharedram_addr_written) && (loop_counter)) {
1765 		msleep(50);
1766 		sharedram_addr = brcmf_pcie_read_ram32(devinfo,
1767 						       devinfo->ci->ramsize -
1768 						       4);
1769 		loop_counter--;
1770 	}
1771 	if (sharedram_addr == sharedram_addr_written) {
1772 		brcmf_err(bus, "FW failed to initialize\n");
1773 		return -ENODEV;
1774 	}
1775 	if (sharedram_addr < devinfo->ci->rambase ||
1776 	    sharedram_addr >= devinfo->ci->rambase + devinfo->ci->ramsize) {
1777 		brcmf_err(bus, "Invalid shared RAM address 0x%08x\n",
1778 			  sharedram_addr);
1779 		return -ENODEV;
1780 	}
1781 	brcmf_dbg(PCIE, "Shared RAM addr: 0x%08x\n", sharedram_addr);
1782 
1783 	return (brcmf_pcie_init_share_ram_info(devinfo, sharedram_addr));
1784 }
1785 
1786 
brcmf_pcie_get_resource(struct brcmf_pciedev_info * devinfo)1787 static int brcmf_pcie_get_resource(struct brcmf_pciedev_info *devinfo)
1788 {
1789 	struct pci_dev *pdev = devinfo->pdev;
1790 	struct brcmf_bus *bus = dev_get_drvdata(&pdev->dev);
1791 	int err;
1792 	phys_addr_t  bar0_addr, bar1_addr;
1793 	ulong bar1_size;
1794 
1795 	err = pci_enable_device(pdev);
1796 	if (err) {
1797 		brcmf_err(bus, "pci_enable_device failed err=%d\n", err);
1798 		return err;
1799 	}
1800 
1801 	pci_set_master(pdev);
1802 
1803 	/* Bar-0 mapped address */
1804 	bar0_addr = pci_resource_start(pdev, 0);
1805 	/* Bar-1 mapped address */
1806 	bar1_addr = pci_resource_start(pdev, 2);
1807 	/* read Bar-1 mapped memory range */
1808 	bar1_size = pci_resource_len(pdev, 2);
1809 	if ((bar1_size == 0) || (bar1_addr == 0)) {
1810 		brcmf_err(bus, "BAR1 Not enabled, device size=%ld, addr=%#016llx\n",
1811 			  bar1_size, (unsigned long long)bar1_addr);
1812 		return -EINVAL;
1813 	}
1814 
1815 	devinfo->regs = ioremap(bar0_addr, BRCMF_PCIE_REG_MAP_SIZE);
1816 	devinfo->tcm = ioremap(bar1_addr, bar1_size);
1817 
1818 	if (!devinfo->regs || !devinfo->tcm) {
1819 		brcmf_err(bus, "ioremap() failed (%p,%p)\n", devinfo->regs,
1820 			  devinfo->tcm);
1821 		return -EINVAL;
1822 	}
1823 	brcmf_dbg(PCIE, "Phys addr : reg space = %p base addr %#016llx\n",
1824 		  devinfo->regs, (unsigned long long)bar0_addr);
1825 	brcmf_dbg(PCIE, "Phys addr : mem space = %p base addr %#016llx size 0x%x\n",
1826 		  devinfo->tcm, (unsigned long long)bar1_addr,
1827 		  (unsigned int)bar1_size);
1828 
1829 	return 0;
1830 }
1831 
1832 
brcmf_pcie_release_resource(struct brcmf_pciedev_info * devinfo)1833 static void brcmf_pcie_release_resource(struct brcmf_pciedev_info *devinfo)
1834 {
1835 	if (devinfo->tcm)
1836 		iounmap(devinfo->tcm);
1837 	if (devinfo->regs)
1838 		iounmap(devinfo->regs);
1839 
1840 	pci_disable_device(devinfo->pdev);
1841 }
1842 
1843 
brcmf_pcie_buscore_prep_addr(const struct pci_dev * pdev,u32 addr)1844 static u32 brcmf_pcie_buscore_prep_addr(const struct pci_dev *pdev, u32 addr)
1845 {
1846 	u32 ret_addr;
1847 
1848 	ret_addr = addr & (BRCMF_PCIE_BAR0_REG_SIZE - 1);
1849 	addr &= ~(BRCMF_PCIE_BAR0_REG_SIZE - 1);
1850 	pci_write_config_dword(pdev, BRCMF_PCIE_BAR0_WINDOW, addr);
1851 
1852 	return ret_addr;
1853 }
1854 
1855 
brcmf_pcie_buscore_read32(void * ctx,u32 addr)1856 static u32 brcmf_pcie_buscore_read32(void *ctx, u32 addr)
1857 {
1858 	struct brcmf_pciedev_info *devinfo = (struct brcmf_pciedev_info *)ctx;
1859 
1860 	addr = brcmf_pcie_buscore_prep_addr(devinfo->pdev, addr);
1861 	return brcmf_pcie_read_reg32(devinfo, addr);
1862 }
1863 
1864 
brcmf_pcie_buscore_write32(void * ctx,u32 addr,u32 value)1865 static void brcmf_pcie_buscore_write32(void *ctx, u32 addr, u32 value)
1866 {
1867 	struct brcmf_pciedev_info *devinfo = (struct brcmf_pciedev_info *)ctx;
1868 
1869 	addr = brcmf_pcie_buscore_prep_addr(devinfo->pdev, addr);
1870 	brcmf_pcie_write_reg32(devinfo, addr, value);
1871 }
1872 
1873 
brcmf_pcie_buscoreprep(void * ctx)1874 static int brcmf_pcie_buscoreprep(void *ctx)
1875 {
1876 	return brcmf_pcie_get_resource(ctx);
1877 }
1878 
1879 
brcmf_pcie_buscore_reset(void * ctx,struct brcmf_chip * chip)1880 static int brcmf_pcie_buscore_reset(void *ctx, struct brcmf_chip *chip)
1881 {
1882 	struct brcmf_pciedev_info *devinfo = (struct brcmf_pciedev_info *)ctx;
1883 	struct brcmf_core *core;
1884 	u32 val, reg;
1885 
1886 	devinfo->ci = chip;
1887 	brcmf_pcie_reset_device(devinfo);
1888 
1889 	/* reginfo is not ready yet */
1890 	core = brcmf_chip_get_core(chip, BCMA_CORE_PCIE2);
1891 	if (core->rev >= 64)
1892 		reg = BRCMF_PCIE_64_PCIE2REG_MAILBOXINT;
1893 	else
1894 		reg = BRCMF_PCIE_PCIE2REG_MAILBOXINT;
1895 
1896 	val = brcmf_pcie_read_reg32(devinfo, reg);
1897 	if (val != 0xffffffff)
1898 		brcmf_pcie_write_reg32(devinfo, reg, val);
1899 
1900 	return 0;
1901 }
1902 
1903 
brcmf_pcie_buscore_activate(void * ctx,struct brcmf_chip * chip,u32 rstvec)1904 static void brcmf_pcie_buscore_activate(void *ctx, struct brcmf_chip *chip,
1905 					u32 rstvec)
1906 {
1907 	struct brcmf_pciedev_info *devinfo = (struct brcmf_pciedev_info *)ctx;
1908 
1909 	brcmf_pcie_write_tcm32(devinfo, 0, rstvec);
1910 }
1911 
1912 
1913 static const struct brcmf_buscore_ops brcmf_pcie_buscore_ops = {
1914 	.prepare = brcmf_pcie_buscoreprep,
1915 	.reset = brcmf_pcie_buscore_reset,
1916 	.activate = brcmf_pcie_buscore_activate,
1917 	.read32 = brcmf_pcie_buscore_read32,
1918 	.write32 = brcmf_pcie_buscore_write32,
1919 };
1920 
1921 #define BRCMF_OTP_SYS_VENDOR	0x15
1922 #define BRCMF_OTP_BRCM_CIS	0x80
1923 
1924 #define BRCMF_OTP_VENDOR_HDR	0x00000008
1925 
1926 static int
brcmf_pcie_parse_otp_sys_vendor(struct brcmf_pciedev_info * devinfo,u8 * data,size_t size)1927 brcmf_pcie_parse_otp_sys_vendor(struct brcmf_pciedev_info *devinfo,
1928 				u8 *data, size_t size)
1929 {
1930 	int idx = 4;
1931 	const char *chip_params;
1932 	const char *board_params;
1933 	const char *p;
1934 
1935 	/* 4-byte header and two empty strings */
1936 	if (size < 6)
1937 		return -EINVAL;
1938 
1939 	if (get_unaligned_le32(data) != BRCMF_OTP_VENDOR_HDR)
1940 		return -EINVAL;
1941 
1942 	chip_params = &data[idx];
1943 
1944 	/* Skip first string, including terminator */
1945 	idx += strnlen(chip_params, size - idx) + 1;
1946 	if (idx >= size)
1947 		return -EINVAL;
1948 
1949 	board_params = &data[idx];
1950 
1951 	/* Skip to terminator of second string */
1952 	idx += strnlen(board_params, size - idx);
1953 	if (idx >= size)
1954 		return -EINVAL;
1955 
1956 	/* At this point both strings are guaranteed NUL-terminated */
1957 	brcmf_dbg(PCIE, "OTP: chip_params='%s' board_params='%s'\n",
1958 		  chip_params, board_params);
1959 
1960 	p = skip_spaces(board_params);
1961 	while (*p) {
1962 		char tag = *p++;
1963 		const char *end;
1964 		size_t len;
1965 
1966 		if (*p++ != '=') /* implicit NUL check */
1967 			return -EINVAL;
1968 
1969 		/* *p might be NUL here, if so end == p and len == 0 */
1970 		end = strchrnul(p, ' ');
1971 		len = end - p;
1972 
1973 		/* leave 1 byte for NUL in destination string */
1974 		if (len > (BRCMF_OTP_MAX_PARAM_LEN - 1))
1975 			return -EINVAL;
1976 
1977 		/* Copy len characters plus a NUL terminator */
1978 		switch (tag) {
1979 		case 'M':
1980 			strscpy(devinfo->otp.module, p, len + 1);
1981 			break;
1982 		case 'V':
1983 			strscpy(devinfo->otp.vendor, p, len + 1);
1984 			break;
1985 		case 'm':
1986 			strscpy(devinfo->otp.version, p, len + 1);
1987 			break;
1988 		}
1989 
1990 		/* Skip to next arg, if any */
1991 		p = skip_spaces(end);
1992 	}
1993 
1994 	brcmf_dbg(PCIE, "OTP: module=%s vendor=%s version=%s\n",
1995 		  devinfo->otp.module, devinfo->otp.vendor,
1996 		  devinfo->otp.version);
1997 
1998 	if (!devinfo->otp.module[0] ||
1999 	    !devinfo->otp.vendor[0] ||
2000 	    !devinfo->otp.version[0])
2001 		return -EINVAL;
2002 
2003 	devinfo->otp.valid = true;
2004 	return 0;
2005 }
2006 
2007 static int
brcmf_pcie_parse_otp(struct brcmf_pciedev_info * devinfo,u8 * otp,size_t size)2008 brcmf_pcie_parse_otp(struct brcmf_pciedev_info *devinfo, u8 *otp, size_t size)
2009 {
2010 	int p = 0;
2011 	int ret = -EINVAL;
2012 
2013 	brcmf_dbg(PCIE, "parse_otp size=%zd\n", size);
2014 
2015 	while (p < (size - 1)) {
2016 		u8 type = otp[p];
2017 		u8 length = otp[p + 1];
2018 
2019 		if (type == 0)
2020 			break;
2021 
2022 		if ((p + 2 + length) > size)
2023 			break;
2024 
2025 		switch (type) {
2026 		case BRCMF_OTP_SYS_VENDOR:
2027 			brcmf_dbg(PCIE, "OTP @ 0x%x (%d): SYS_VENDOR\n",
2028 				  p, length);
2029 			ret = brcmf_pcie_parse_otp_sys_vendor(devinfo,
2030 							      &otp[p + 2],
2031 							      length);
2032 			break;
2033 		case BRCMF_OTP_BRCM_CIS:
2034 			brcmf_dbg(PCIE, "OTP @ 0x%x (%d): BRCM_CIS\n",
2035 				  p, length);
2036 			break;
2037 		default:
2038 			brcmf_dbg(PCIE, "OTP @ 0x%x (%d): Unknown type 0x%x\n",
2039 				  p, length, type);
2040 			break;
2041 		}
2042 
2043 		p += 2 + length;
2044 	}
2045 
2046 	return ret;
2047 }
2048 
brcmf_pcie_read_otp(struct brcmf_pciedev_info * devinfo)2049 static int brcmf_pcie_read_otp(struct brcmf_pciedev_info *devinfo)
2050 {
2051 	const struct pci_dev *pdev = devinfo->pdev;
2052 	struct brcmf_bus *bus = dev_get_drvdata(&pdev->dev);
2053 	u32 coreid, base, words, idx, sromctl;
2054 	u16 *otp;
2055 	struct brcmf_core *core;
2056 	int ret;
2057 
2058 	switch (devinfo->ci->chip) {
2059 	case BRCM_CC_4355_CHIP_ID:
2060 		coreid = BCMA_CORE_CHIPCOMMON;
2061 		base = 0x8c0;
2062 		words = 0xb2;
2063 		break;
2064 	case BRCM_CC_4364_CHIP_ID:
2065 		coreid = BCMA_CORE_CHIPCOMMON;
2066 		base = 0x8c0;
2067 		words = 0x1a0;
2068 		break;
2069 	case BRCM_CC_4377_CHIP_ID:
2070 	case BRCM_CC_4378_CHIP_ID:
2071 		coreid = BCMA_CORE_GCI;
2072 		base = 0x1120;
2073 		words = 0x170;
2074 		break;
2075 	case BRCM_CC_4387_CHIP_ID:
2076 		coreid = BCMA_CORE_GCI;
2077 		base = 0x113c;
2078 		words = 0x170;
2079 		break;
2080 	default:
2081 		/* OTP not supported on this chip */
2082 		return 0;
2083 	}
2084 
2085 	core = brcmf_chip_get_core(devinfo->ci, coreid);
2086 	if (!core) {
2087 		brcmf_err(bus, "No OTP core\n");
2088 		return -ENODEV;
2089 	}
2090 
2091 	if (coreid == BCMA_CORE_CHIPCOMMON) {
2092 		/* Chips with OTP accessed via ChipCommon need additional
2093 		 * handling to access the OTP
2094 		 */
2095 		brcmf_pcie_select_core(devinfo, coreid);
2096 		sromctl = READCC32(devinfo, sromcontrol);
2097 
2098 		if (!(sromctl & BCMA_CC_SROM_CONTROL_OTP_PRESENT)) {
2099 			/* Chip lacks OTP, try without it... */
2100 			brcmf_err(bus,
2101 				  "OTP unavailable, using default firmware\n");
2102 			return 0;
2103 		}
2104 
2105 		/* Map OTP to shadow area */
2106 		WRITECC32(devinfo, sromcontrol,
2107 			  sromctl | BCMA_CC_SROM_CONTROL_OTPSEL);
2108 	}
2109 
2110 	otp = kcalloc(words, sizeof(u16), GFP_KERNEL);
2111 	if (!otp)
2112 		return -ENOMEM;
2113 
2114 	/* Map bus window to SROM/OTP shadow area in core */
2115 	base = brcmf_pcie_buscore_prep_addr(devinfo->pdev, base + core->base);
2116 
2117 	brcmf_dbg(PCIE, "OTP data:\n");
2118 	for (idx = 0; idx < words; idx++) {
2119 		otp[idx] = brcmf_pcie_read_reg16(devinfo, base + 2 * idx);
2120 		brcmf_dbg(PCIE, "[%8x] 0x%04x\n", base + 2 * idx, otp[idx]);
2121 	}
2122 
2123 	if (coreid == BCMA_CORE_CHIPCOMMON) {
2124 		brcmf_pcie_select_core(devinfo, coreid);
2125 		WRITECC32(devinfo, sromcontrol, sromctl);
2126 	}
2127 
2128 	ret = brcmf_pcie_parse_otp(devinfo, (u8 *)otp, 2 * words);
2129 	kfree(otp);
2130 
2131 	return ret;
2132 }
2133 
2134 #define BRCMF_PCIE_FW_CODE	0
2135 #define BRCMF_PCIE_FW_NVRAM	1
2136 #define BRCMF_PCIE_FW_CLM	2
2137 #define BRCMF_PCIE_FW_TXCAP	3
2138 
brcmf_pcie_setup(struct device * dev,int ret,struct brcmf_fw_request * fwreq)2139 static void brcmf_pcie_setup(struct device *dev, int ret,
2140 			     struct brcmf_fw_request *fwreq)
2141 {
2142 	const struct firmware *fw;
2143 	void *nvram;
2144 	struct brcmf_bus *bus;
2145 	struct brcmf_pciedev *pcie_bus_dev;
2146 	struct brcmf_pciedev_info *devinfo;
2147 	struct brcmf_commonring **flowrings;
2148 	u32 i, nvram_len;
2149 
2150 	bus = dev_get_drvdata(dev);
2151 	pcie_bus_dev = bus->bus_priv.pcie;
2152 	devinfo = pcie_bus_dev->devinfo;
2153 
2154 	/* check firmware loading result */
2155 	if (ret)
2156 		goto fail;
2157 
2158 	brcmf_pcie_attach(devinfo);
2159 
2160 	fw = fwreq->items[BRCMF_PCIE_FW_CODE].binary;
2161 	nvram = fwreq->items[BRCMF_PCIE_FW_NVRAM].nv_data.data;
2162 	nvram_len = fwreq->items[BRCMF_PCIE_FW_NVRAM].nv_data.len;
2163 	devinfo->clm_fw = fwreq->items[BRCMF_PCIE_FW_CLM].binary;
2164 	devinfo->txcap_fw = fwreq->items[BRCMF_PCIE_FW_TXCAP].binary;
2165 	kfree(fwreq);
2166 
2167 	ret = brcmf_chip_get_raminfo(devinfo->ci);
2168 	if (ret) {
2169 		brcmf_err(bus, "Failed to get RAM info\n");
2170 		release_firmware(fw);
2171 		brcmf_fw_nvram_free(nvram);
2172 		goto fail;
2173 	}
2174 
2175 	/* Some of the firmwares have the size of the memory of the device
2176 	 * defined inside the firmware. This is because part of the memory in
2177 	 * the device is shared and the devision is determined by FW. Parse
2178 	 * the firmware and adjust the chip memory size now.
2179 	 */
2180 	brcmf_pcie_adjust_ramsize(devinfo, (u8 *)fw->data, fw->size);
2181 
2182 	ret = brcmf_pcie_download_fw_nvram(devinfo, fw, nvram, nvram_len);
2183 	if (ret)
2184 		goto fail;
2185 
2186 	devinfo->state = BRCMFMAC_PCIE_STATE_UP;
2187 
2188 	ret = brcmf_pcie_init_ringbuffers(devinfo);
2189 	if (ret)
2190 		goto fail;
2191 
2192 	ret = brcmf_pcie_init_scratchbuffers(devinfo);
2193 	if (ret)
2194 		goto fail;
2195 
2196 	brcmf_pcie_select_core(devinfo, BCMA_CORE_PCIE2);
2197 	ret = brcmf_pcie_request_irq(devinfo);
2198 	if (ret)
2199 		goto fail;
2200 
2201 	/* hook the commonrings in the bus structure. */
2202 	for (i = 0; i < BRCMF_NROF_COMMON_MSGRINGS; i++)
2203 		bus->msgbuf->commonrings[i] =
2204 				&devinfo->shared.commonrings[i]->commonring;
2205 
2206 	flowrings = kzalloc_objs(*flowrings, devinfo->shared.max_flowrings);
2207 	if (!flowrings)
2208 		goto fail;
2209 
2210 	for (i = 0; i < devinfo->shared.max_flowrings; i++)
2211 		flowrings[i] = &devinfo->shared.flowrings[i].commonring;
2212 	bus->msgbuf->flowrings = flowrings;
2213 
2214 	bus->msgbuf->rx_dataoffset = devinfo->shared.rx_dataoffset;
2215 	bus->msgbuf->max_rxbufpost = devinfo->shared.max_rxbufpost;
2216 	bus->msgbuf->max_flowrings = devinfo->shared.max_flowrings;
2217 
2218 	init_waitqueue_head(&devinfo->mbdata_resp_wait);
2219 
2220 	ret = brcmf_attach(&devinfo->pdev->dev);
2221 	if (ret)
2222 		goto fail;
2223 
2224 	brcmf_pcie_bus_console_read(devinfo, false);
2225 
2226 	brcmf_pcie_fwcon_timer(devinfo, true);
2227 
2228 	return;
2229 
2230 fail:
2231 	brcmf_err(bus, "Dongle setup failed\n");
2232 	brcmf_pcie_bus_console_read(devinfo, true);
2233 	brcmf_fw_crashed(dev);
2234 	device_release_driver(dev);
2235 }
2236 
2237 static struct brcmf_fw_request *
brcmf_pcie_prepare_fw_request(struct brcmf_pciedev_info * devinfo)2238 brcmf_pcie_prepare_fw_request(struct brcmf_pciedev_info *devinfo)
2239 {
2240 	struct brcmf_fw_request *fwreq;
2241 	struct brcmf_fw_name fwnames[] = {
2242 		{ ".bin", devinfo->fw_name },
2243 		{ ".txt", devinfo->nvram_name },
2244 		{ ".clm_blob", devinfo->clm_name },
2245 		{ ".txcap_blob", devinfo->txcap_name },
2246 	};
2247 
2248 	fwreq = brcmf_fw_alloc_request(devinfo->ci->chip, devinfo->ci->chiprev,
2249 				       brcmf_pcie_fwnames,
2250 				       ARRAY_SIZE(brcmf_pcie_fwnames),
2251 				       fwnames, ARRAY_SIZE(fwnames));
2252 	if (!fwreq)
2253 		return NULL;
2254 
2255 	fwreq->items[BRCMF_PCIE_FW_CODE].type = BRCMF_FW_TYPE_BINARY;
2256 	fwreq->items[BRCMF_PCIE_FW_NVRAM].type = BRCMF_FW_TYPE_NVRAM;
2257 	fwreq->items[BRCMF_PCIE_FW_NVRAM].flags = BRCMF_FW_REQF_OPTIONAL;
2258 	fwreq->items[BRCMF_PCIE_FW_CLM].type = BRCMF_FW_TYPE_BINARY;
2259 	fwreq->items[BRCMF_PCIE_FW_CLM].flags = BRCMF_FW_REQF_OPTIONAL;
2260 	fwreq->items[BRCMF_PCIE_FW_TXCAP].type = BRCMF_FW_TYPE_BINARY;
2261 	fwreq->items[BRCMF_PCIE_FW_TXCAP].flags = BRCMF_FW_REQF_OPTIONAL;
2262 	/* NVRAM reserves PCI domain 0 for Broadcom's SDK faked bus */
2263 	fwreq->domain_nr = pci_domain_nr(devinfo->pdev->bus) + 1;
2264 	fwreq->bus_nr = devinfo->pdev->bus->number;
2265 
2266 	/* Apple platforms with fancy firmware/NVRAM selection */
2267 	if (devinfo->settings->board_type &&
2268 	    devinfo->settings->antenna_sku &&
2269 	    devinfo->otp.valid) {
2270 		const struct brcmf_otp_params *otp = &devinfo->otp;
2271 		struct device *dev = &devinfo->pdev->dev;
2272 		const char **bt = fwreq->board_types;
2273 
2274 		brcmf_dbg(PCIE, "Apple board: %s\n",
2275 			  devinfo->settings->board_type);
2276 
2277 		/* Example: apple,shikoku-RASP-m-6.11-X3 */
2278 		bt[0] = devm_kasprintf(dev, GFP_KERNEL, "%s-%s-%s-%s-%s",
2279 				       devinfo->settings->board_type,
2280 				       otp->module, otp->vendor, otp->version,
2281 				       devinfo->settings->antenna_sku);
2282 		bt[1] = devm_kasprintf(dev, GFP_KERNEL, "%s-%s-%s-%s",
2283 				       devinfo->settings->board_type,
2284 				       otp->module, otp->vendor, otp->version);
2285 		bt[2] = devm_kasprintf(dev, GFP_KERNEL, "%s-%s-%s",
2286 				       devinfo->settings->board_type,
2287 				       otp->module, otp->vendor);
2288 		bt[3] = devm_kasprintf(dev, GFP_KERNEL, "%s-%s",
2289 				       devinfo->settings->board_type,
2290 				       otp->module);
2291 		bt[4] = devm_kasprintf(dev, GFP_KERNEL, "%s-%s",
2292 				       devinfo->settings->board_type,
2293 				       devinfo->settings->antenna_sku);
2294 		bt[5] = devinfo->settings->board_type;
2295 
2296 		if (!bt[0] || !bt[1] || !bt[2] || !bt[3] || !bt[4]) {
2297 			kfree(fwreq);
2298 			return NULL;
2299 		}
2300 	} else {
2301 		brcmf_dbg(PCIE, "Board: %s\n", devinfo->settings->board_type);
2302 		fwreq->board_types[0] = devinfo->settings->board_type;
2303 	}
2304 
2305 	return fwreq;
2306 }
2307 
2308 #ifdef DEBUG
2309 static void
brcmf_pcie_fwcon_timer(struct brcmf_pciedev_info * devinfo,bool active)2310 brcmf_pcie_fwcon_timer(struct brcmf_pciedev_info *devinfo, bool active)
2311 {
2312 	if (!active) {
2313 		if (devinfo->console_active) {
2314 			timer_delete_sync(&devinfo->timer);
2315 			devinfo->console_active = false;
2316 		}
2317 		return;
2318 	}
2319 
2320 	/* don't start the timer */
2321 	if (devinfo->state != BRCMFMAC_PCIE_STATE_UP ||
2322 	    !devinfo->console_interval || !BRCMF_FWCON_ON())
2323 		return;
2324 
2325 	if (!devinfo->console_active) {
2326 		devinfo->timer.expires = jiffies + devinfo->console_interval;
2327 		add_timer(&devinfo->timer);
2328 		devinfo->console_active = true;
2329 	} else {
2330 		/* Reschedule the timer */
2331 		mod_timer(&devinfo->timer, jiffies + devinfo->console_interval);
2332 	}
2333 }
2334 
2335 static void
brcmf_pcie_fwcon(struct timer_list * t)2336 brcmf_pcie_fwcon(struct timer_list *t)
2337 {
2338 	struct brcmf_pciedev_info *devinfo = timer_container_of(devinfo, t,
2339 								timer);
2340 
2341 	if (!devinfo->console_active)
2342 		return;
2343 
2344 	brcmf_pcie_bus_console_read(devinfo, false);
2345 
2346 	/* Reschedule the timer if console interval is not zero */
2347 	mod_timer(&devinfo->timer, jiffies + devinfo->console_interval);
2348 }
2349 
brcmf_pcie_console_interval_get(void * data,u64 * val)2350 static int brcmf_pcie_console_interval_get(void *data, u64 *val)
2351 {
2352 	struct brcmf_pciedev_info *devinfo = data;
2353 
2354 	*val = devinfo->console_interval;
2355 
2356 	return 0;
2357 }
2358 
brcmf_pcie_console_interval_set(void * data,u64 val)2359 static int brcmf_pcie_console_interval_set(void *data, u64 val)
2360 {
2361 	struct brcmf_pciedev_info *devinfo = data;
2362 
2363 	if (val > MAX_CONSOLE_INTERVAL)
2364 		return -EINVAL;
2365 
2366 	devinfo->console_interval = val;
2367 
2368 	if (!val && devinfo->console_active)
2369 		brcmf_pcie_fwcon_timer(devinfo, false);
2370 	else if (val)
2371 		brcmf_pcie_fwcon_timer(devinfo, true);
2372 
2373 	return 0;
2374 }
2375 
2376 DEFINE_SIMPLE_ATTRIBUTE(brcmf_pcie_console_interval_fops,
2377 			brcmf_pcie_console_interval_get,
2378 			brcmf_pcie_console_interval_set,
2379 			"%llu\n");
2380 
brcmf_pcie_debugfs_create(struct device * dev)2381 static void brcmf_pcie_debugfs_create(struct device *dev)
2382 {
2383 	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
2384 	struct brcmf_pub *drvr = bus_if->drvr;
2385 	struct brcmf_pciedev *pcie_bus_dev = bus_if->bus_priv.pcie;
2386 	struct brcmf_pciedev_info *devinfo = pcie_bus_dev->devinfo;
2387 	struct dentry *dentry = brcmf_debugfs_get_devdir(drvr);
2388 
2389 	if (IS_ERR_OR_NULL(dentry))
2390 		return;
2391 
2392 	devinfo->console_interval = BRCMF_CONSOLE;
2393 
2394 	debugfs_create_file("console_interval", 0644, dentry, devinfo,
2395 			    &brcmf_pcie_console_interval_fops);
2396 }
2397 
2398 #else
brcmf_pcie_fwcon_timer(struct brcmf_pciedev_info * devinfo,bool active)2399 void brcmf_pcie_fwcon_timer(struct brcmf_pciedev_info *devinfo, bool active)
2400 {
2401 }
2402 
brcmf_pcie_debugfs_create(struct device * dev)2403 static void brcmf_pcie_debugfs_create(struct device *dev)
2404 {
2405 }
2406 #endif
2407 
2408 struct brcmf_pcie_drvdata {
2409 	enum brcmf_fwvendor vendor;
2410 	bool fw_seed;
2411 };
2412 
2413 enum {
2414 	BRCMF_DRVDATA_CYW,
2415 	BRCMF_DRVDATA_BCA,
2416 	BRCMF_DRVDATA_WCC,
2417 	BRCMF_DRVDATA_WCC_SEED,
2418 };
2419 
2420 static const struct brcmf_pcie_drvdata drvdata[] = {
2421 	[BRCMF_DRVDATA_CYW] = {
2422 		.vendor = BRCMF_FWVENDOR_CYW,
2423 		.fw_seed = false,
2424 	},
2425 	[BRCMF_DRVDATA_BCA] = {
2426 		.vendor = BRCMF_FWVENDOR_BCA,
2427 		.fw_seed = false,
2428 	},
2429 	[BRCMF_DRVDATA_WCC] = {
2430 		.vendor = BRCMF_FWVENDOR_WCC,
2431 		.fw_seed = false,
2432 	},
2433 	[BRCMF_DRVDATA_WCC_SEED] = {
2434 		.vendor = BRCMF_FWVENDOR_WCC,
2435 		.fw_seed = true,
2436 	},
2437 };
2438 
2439 /* Forward declaration for pci_match_id() call */
2440 static const struct pci_device_id brcmf_pcie_devid_table[];
2441 
2442 static int
brcmf_pcie_probe(struct pci_dev * pdev,const struct pci_device_id * id)2443 brcmf_pcie_probe(struct pci_dev *pdev, const struct pci_device_id *id)
2444 {
2445 	int ret;
2446 	struct brcmf_fw_request *fwreq;
2447 	struct brcmf_pciedev_info *devinfo;
2448 	struct brcmf_pciedev *pcie_bus_dev;
2449 	struct brcmf_core *core;
2450 	struct brcmf_bus *bus;
2451 
2452 	if (!id) {
2453 		id = pci_match_id(brcmf_pcie_devid_table, pdev);
2454 		if (!id) {
2455 			pci_err(pdev, "Error could not find pci_device_id for %x:%x\n", pdev->vendor, pdev->device);
2456 			return -ENODEV;
2457 		}
2458 	}
2459 
2460 	brcmf_dbg(PCIE, "Enter %x:%x\n", pdev->vendor, pdev->device);
2461 
2462 	ret = -ENOMEM;
2463 	devinfo = kzalloc_obj(*devinfo);
2464 	if (devinfo == NULL)
2465 		return ret;
2466 
2467 	devinfo->pdev = pdev;
2468 	pcie_bus_dev = NULL;
2469 	devinfo->ci = brcmf_chip_attach(devinfo, pdev->device,
2470 					&brcmf_pcie_buscore_ops);
2471 	if (IS_ERR(devinfo->ci)) {
2472 		ret = PTR_ERR(devinfo->ci);
2473 		devinfo->ci = NULL;
2474 		goto fail;
2475 	}
2476 
2477 	core = brcmf_chip_get_core(devinfo->ci, BCMA_CORE_PCIE2);
2478 	if (core->rev >= 64)
2479 		devinfo->reginfo = &brcmf_reginfo_64;
2480 	else
2481 		devinfo->reginfo = &brcmf_reginfo_default;
2482 
2483 	pcie_bus_dev = kzalloc_obj(*pcie_bus_dev);
2484 	if (pcie_bus_dev == NULL) {
2485 		ret = -ENOMEM;
2486 		goto fail;
2487 	}
2488 
2489 	devinfo->settings = brcmf_get_module_param(&devinfo->pdev->dev,
2490 						   BRCMF_BUSTYPE_PCIE,
2491 						   devinfo->ci->chip,
2492 						   devinfo->ci->chiprev);
2493 	if (!devinfo->settings) {
2494 		ret = -ENOMEM;
2495 		goto fail;
2496 	}
2497 	ret = PTR_ERR_OR_ZERO(devinfo->settings);
2498 	if (ret < 0)
2499 		goto fail;
2500 
2501 	bus = kzalloc_obj(*bus);
2502 	if (!bus) {
2503 		ret = -ENOMEM;
2504 		goto fail;
2505 	}
2506 	mutex_init(&bus->bus_reset_lock);
2507 	bus->msgbuf = kzalloc_obj(*bus->msgbuf);
2508 	if (!bus->msgbuf) {
2509 		ret = -ENOMEM;
2510 		kfree(bus);
2511 		goto fail;
2512 	}
2513 
2514 	/* hook it all together. */
2515 	pcie_bus_dev->devinfo = devinfo;
2516 	pcie_bus_dev->bus = bus;
2517 	bus->dev = &pdev->dev;
2518 	bus->bus_priv.pcie = pcie_bus_dev;
2519 	bus->ops = &brcmf_pcie_bus_ops;
2520 	bus->proto_type = BRCMF_PROTO_MSGBUF;
2521 	bus->chip = devinfo->coreid;
2522 	bus->wowl_supported = pci_pme_capable(pdev, PCI_D3hot);
2523 	bus->fwvid = drvdata[id->driver_data].vendor;
2524 	devinfo->fwseed = drvdata[id->driver_data].fw_seed;
2525 	dev_set_drvdata(&pdev->dev, bus);
2526 
2527 	ret = brcmf_alloc(&devinfo->pdev->dev, devinfo->settings);
2528 	if (ret)
2529 		goto fail_bus;
2530 
2531 	/* otp read operation */
2532 	switch (bus->fwvid) {
2533 	case BRCMF_FWVENDOR_WCC:
2534 	case BRCMF_FWVENDOR_BCA:
2535 		ret = brcmf_pcie_read_otp(devinfo);
2536 		if (ret) {
2537 			brcmf_err(bus, "failed to parse OTP\n");
2538 			goto fail_brcmf;
2539 		}
2540 		break;
2541 	case BRCMF_FWVENDOR_CYW:
2542 	default:
2543 		break;
2544 	}
2545 
2546 #ifdef DEBUG
2547 	/* Set up the fwcon timer */
2548 	timer_setup(&devinfo->timer, brcmf_pcie_fwcon, 0);
2549 #endif
2550 
2551 	fwreq = brcmf_pcie_prepare_fw_request(devinfo);
2552 	if (!fwreq) {
2553 		ret = -ENOMEM;
2554 		goto fail_brcmf;
2555 	}
2556 
2557 	ret = brcmf_fw_get_firmwares(bus->dev, fwreq, brcmf_pcie_setup);
2558 	if (ret < 0) {
2559 		kfree(fwreq);
2560 		goto fail_brcmf;
2561 	}
2562 	return 0;
2563 
2564 fail_brcmf:
2565 	brcmf_free(&devinfo->pdev->dev);
2566 fail_bus:
2567 	kfree(bus->msgbuf);
2568 	kfree(bus);
2569 fail:
2570 	brcmf_err(NULL, "failed %x:%x\n", pdev->vendor, pdev->device);
2571 	brcmf_pcie_release_resource(devinfo);
2572 	if (devinfo->ci)
2573 		brcmf_chip_detach(devinfo->ci);
2574 	if (devinfo->settings)
2575 		brcmf_release_module_param(devinfo->settings);
2576 	kfree(pcie_bus_dev);
2577 	kfree(devinfo);
2578 	return ret;
2579 }
2580 
2581 
2582 static void
brcmf_pcie_remove(struct pci_dev * pdev)2583 brcmf_pcie_remove(struct pci_dev *pdev)
2584 {
2585 	struct brcmf_pciedev_info *devinfo;
2586 	struct brcmf_bus *bus;
2587 
2588 	brcmf_dbg(PCIE, "Enter\n");
2589 
2590 	bus = dev_get_drvdata(&pdev->dev);
2591 	if (bus == NULL)
2592 		return;
2593 
2594 	devinfo = bus->bus_priv.pcie->devinfo;
2595 	brcmf_pcie_bus_console_read(devinfo, false);
2596 	brcmf_pcie_fwcon_timer(devinfo, false);
2597 
2598 	devinfo->state = BRCMFMAC_PCIE_STATE_DOWN;
2599 	if (devinfo->ci)
2600 		brcmf_pcie_intr_disable(devinfo);
2601 
2602 	if (devinfo->irq_allocated)
2603 		synchronize_irq(pdev->irq);
2604 
2605 	brcmf_bus_cancel_reset_work(bus);
2606 
2607 	brcmf_detach(&pdev->dev);
2608 	brcmf_free(&pdev->dev);
2609 
2610 	kfree(bus->bus_priv.pcie);
2611 	kfree(bus->msgbuf->flowrings);
2612 	kfree(bus->msgbuf);
2613 	kfree(bus);
2614 
2615 	brcmf_pcie_release_irq(devinfo);
2616 	brcmf_pcie_release_scratchbuffers(devinfo);
2617 	brcmf_pcie_release_ringbuffers(devinfo);
2618 	brcmf_pcie_reset_device(devinfo);
2619 	brcmf_pcie_release_resource(devinfo);
2620 	release_firmware(devinfo->clm_fw);
2621 	release_firmware(devinfo->txcap_fw);
2622 
2623 	if (devinfo->ci)
2624 		brcmf_chip_detach(devinfo->ci);
2625 	if (devinfo->settings)
2626 		brcmf_release_module_param(devinfo->settings);
2627 
2628 	kfree(devinfo);
2629 	dev_set_drvdata(&pdev->dev, NULL);
2630 }
2631 
2632 
2633 #ifdef CONFIG_PM
2634 
2635 
brcmf_pcie_pm_enter_D3(struct device * dev)2636 static int brcmf_pcie_pm_enter_D3(struct device *dev)
2637 {
2638 	struct brcmf_pciedev_info *devinfo;
2639 	struct brcmf_bus *bus;
2640 
2641 	brcmf_dbg(PCIE, "Enter\n");
2642 
2643 	bus = dev_get_drvdata(dev);
2644 	devinfo = bus->bus_priv.pcie->devinfo;
2645 
2646 	brcmf_pcie_fwcon_timer(devinfo, false);
2647 	brcmf_bus_change_state(bus, BRCMF_BUS_DOWN);
2648 
2649 	devinfo->mbdata_completed = false;
2650 	brcmf_pcie_send_mb_data(devinfo, BRCMF_H2D_HOST_D3_INFORM);
2651 
2652 	wait_event_timeout(devinfo->mbdata_resp_wait, devinfo->mbdata_completed,
2653 			   BRCMF_PCIE_MBDATA_TIMEOUT);
2654 	if (!devinfo->mbdata_completed) {
2655 		brcmf_err(bus, "Timeout on response for entering D3 substate\n");
2656 		brcmf_bus_change_state(bus, BRCMF_BUS_UP);
2657 		return -EIO;
2658 	}
2659 
2660 	devinfo->state = BRCMFMAC_PCIE_STATE_DOWN;
2661 
2662 	return 0;
2663 }
2664 
2665 
brcmf_pcie_pm_leave_D3(struct device * dev)2666 static int brcmf_pcie_pm_leave_D3(struct device *dev)
2667 {
2668 	struct brcmf_pciedev_info *devinfo;
2669 	struct brcmf_bus *bus;
2670 	struct pci_dev *pdev;
2671 	int err;
2672 
2673 	brcmf_dbg(PCIE, "Enter\n");
2674 
2675 	bus = dev_get_drvdata(dev);
2676 	devinfo = bus->bus_priv.pcie->devinfo;
2677 	brcmf_dbg(PCIE, "Enter, dev=%p, bus=%p\n", dev, bus);
2678 
2679 	/* Check if device is still up and running, if so we are ready */
2680 	if (brcmf_pcie_read_reg32(devinfo, devinfo->reginfo->intmask) != 0) {
2681 		brcmf_dbg(PCIE, "Try to wakeup device....\n");
2682 		if (brcmf_pcie_send_mb_data(devinfo, BRCMF_H2D_HOST_D0_INFORM))
2683 			goto cleanup;
2684 		brcmf_dbg(PCIE, "Hot resume, continue....\n");
2685 		devinfo->state = BRCMFMAC_PCIE_STATE_UP;
2686 		brcmf_pcie_select_core(devinfo, BCMA_CORE_PCIE2);
2687 		brcmf_bus_change_state(bus, BRCMF_BUS_UP);
2688 		brcmf_pcie_intr_enable(devinfo);
2689 		brcmf_pcie_hostready(devinfo);
2690 		brcmf_pcie_fwcon_timer(devinfo, true);
2691 		return 0;
2692 	}
2693 
2694 cleanup:
2695 	brcmf_chip_detach(devinfo->ci);
2696 	devinfo->ci = NULL;
2697 	pdev = devinfo->pdev;
2698 	brcmf_pcie_remove(pdev);
2699 
2700 	err = brcmf_pcie_probe(pdev, NULL);
2701 	if (err)
2702 		__brcmf_err(NULL, __func__, "probe after resume failed, err=%d\n", err);
2703 
2704 	return err;
2705 }
2706 
2707 
2708 static const struct dev_pm_ops brcmf_pciedrvr_pm = {
2709 	.suspend = brcmf_pcie_pm_enter_D3,
2710 	.resume = brcmf_pcie_pm_leave_D3,
2711 	.freeze = brcmf_pcie_pm_enter_D3,
2712 	.restore = brcmf_pcie_pm_leave_D3,
2713 };
2714 
2715 
2716 #endif /* CONFIG_PM */
2717 
2718 
2719 #define BRCMF_PCIE_DEVICE(dev_id, fw_vend) \
2720 	{ \
2721 		PCI_DEVICE(BRCM_PCIE_VENDOR_ID_BROADCOM, (dev_id)), \
2722 		.class = PCI_CLASS_NETWORK_OTHER << 8, \
2723 		.class_mask = 0xffff00, \
2724 		.driver_data = BRCMF_DRVDATA_ ## fw_vend, \
2725 	}
2726 #define BRCMF_PCIE_DEVICE_SUB(dev_id, subvend, subdev, fw_vend) \
2727 	{ \
2728 		PCI_DEVICE_SUB(BRCM_PCIE_VENDOR_ID_BROADCOM, (dev_id), \
2729 			       (subvend), (subdev)), \
2730 		.class = PCI_CLASS_NETWORK_OTHER << 8, \
2731 		.class_mask = 0xffff00, \
2732 		.driver_data = BRCMF_DRVDATA_ ## fw_vend, \
2733 	}
2734 
2735 static const struct pci_device_id brcmf_pcie_devid_table[] = {
2736 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4350_DEVICE_ID, WCC),
2737 	BRCMF_PCIE_DEVICE_SUB(0x4355, BRCM_PCIE_VENDOR_ID_BROADCOM, 0x4355, WCC),
2738 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4354_RAW_DEVICE_ID, WCC),
2739 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4355_DEVICE_ID, WCC_SEED),
2740 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4356_DEVICE_ID, WCC),
2741 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43567_DEVICE_ID, WCC),
2742 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43570_DEVICE_ID, WCC),
2743 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43570_RAW_DEVICE_ID, WCC),
2744 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4358_DEVICE_ID, WCC),
2745 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4359_DEVICE_ID, WCC),
2746 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43602_DEVICE_ID, WCC),
2747 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43602_2G_DEVICE_ID, WCC),
2748 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43602_5G_DEVICE_ID, WCC),
2749 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43602_RAW_DEVICE_ID, WCC),
2750 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4364_DEVICE_ID, WCC_SEED),
2751 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4365_DEVICE_ID, BCA),
2752 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4365_2G_DEVICE_ID, BCA),
2753 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4365_5G_DEVICE_ID, BCA),
2754 	BRCMF_PCIE_DEVICE_SUB(0x4365, BRCM_PCIE_VENDOR_ID_BROADCOM, 0x4365, BCA),
2755 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4366_DEVICE_ID, BCA),
2756 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4366_2G_DEVICE_ID, BCA),
2757 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4366_5G_DEVICE_ID, BCA),
2758 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4371_DEVICE_ID, WCC),
2759 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43596_DEVICE_ID, CYW),
2760 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4377_DEVICE_ID, WCC_SEED),
2761 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4378_DEVICE_ID, WCC_SEED),
2762 	BRCMF_PCIE_DEVICE(BRCM_PCIE_4387_DEVICE_ID, WCC_SEED),
2763 	BRCMF_PCIE_DEVICE(BRCM_PCIE_43752_DEVICE_ID, WCC_SEED),
2764 	BRCMF_PCIE_DEVICE(CY_PCIE_54591_DEVICE_ID, CYW),
2765 	{ /* end: all zeroes */ }
2766 };
2767 
2768 
2769 MODULE_DEVICE_TABLE(pci, brcmf_pcie_devid_table);
2770 
2771 
2772 static struct pci_driver brcmf_pciedrvr = {
2773 	.name = KBUILD_MODNAME,
2774 	.id_table = brcmf_pcie_devid_table,
2775 	.probe = brcmf_pcie_probe,
2776 	.remove = brcmf_pcie_remove,
2777 #ifdef CONFIG_PM
2778 	.driver.pm = &brcmf_pciedrvr_pm,
2779 #endif
2780 	.driver.coredump = brcmf_dev_coredump,
2781 };
2782 
2783 
brcmf_pcie_register(void)2784 int brcmf_pcie_register(void)
2785 {
2786 	brcmf_dbg(PCIE, "Enter\n");
2787 	return pci_register_driver(&brcmf_pciedrvr);
2788 }
2789 
2790 
brcmf_pcie_exit(void)2791 void brcmf_pcie_exit(void)
2792 {
2793 	brcmf_dbg(PCIE, "Enter\n");
2794 	pci_unregister_driver(&brcmf_pciedrvr);
2795 }
2796