dhd_sdio.c 106.8 KB
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/*
 * Copyright (c) 2010 Broadcom Corporation
 *
 * Permission to use, copy, modify, and/or distribute this software for any
 * purpose with or without fee is hereby granted, provided that the above
 * copyright notice and this permission notice appear in all copies.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
 * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
 * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
 * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
 */

#include <linux/types.h>
#include <linux/kernel.h>
#include <linux/kthread.h>
#include <linux/printk.h>
#include <linux/pci_ids.h>
#include <linux/netdevice.h>
#include <linux/interrupt.h>
#include <linux/sched.h>
#include <linux/mmc/sdio.h>
#include <linux/mmc/sdio_func.h>
#include <linux/mmc/card.h>
#include <linux/semaphore.h>
#include <linux/firmware.h>
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#include <linux/module.h>
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#include <linux/bcma/bcma.h>
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#include <linux/debugfs.h>
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#include <linux/vmalloc.h>
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#include <linux/platform_data/brcmfmac-sdio.h>
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#include <asm/unaligned.h>
#include <defs.h>
#include <brcmu_wifi.h>
#include <brcmu_utils.h>
#include <brcm_hw_ids.h>
#include <soc.h>
#include "sdio_host.h"
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#include "sdio_chip.h"
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#define DCMD_RESP_TIMEOUT  2000	/* In milli second */

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#ifdef DEBUG
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#define BRCMF_TRAP_INFO_SIZE	80

#define CBUF_LEN	(128)

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/* Device console log buffer state */
#define CONSOLE_BUFFER_MAX	2024

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struct rte_log_le {
	__le32 buf;		/* Can't be pointer on (64-bit) hosts */
	__le32 buf_size;
	__le32 idx;
	char *_buf_compat;	/* Redundant pointer for backward compat. */
};

struct rte_console {
	/* Virtual UART
	 * When there is no UART (e.g. Quickturn),
	 * the host should write a complete
	 * input line directly into cbuf and then write
	 * the length into vcons_in.
	 * This may also be used when there is a real UART
	 * (at risk of conflicting with
	 * the real UART).  vcons_out is currently unused.
	 */
	uint vcons_in;
	uint vcons_out;

	/* Output (logging) buffer
	 * Console output is written to a ring buffer log_buf at index log_idx.
	 * The host may read the output when it sees log_idx advance.
	 * Output will be lost if the output wraps around faster than the host
	 * polls.
	 */
	struct rte_log_le log_le;

	/* Console input line buffer
	 * Characters are read one at a time into cbuf
	 * until <CR> is received, then
	 * the buffer is processed as a command line.
	 * Also used for virtual UART.
	 */
	uint cbuf_idx;
	char cbuf[CBUF_LEN];
};

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#endif				/* DEBUG */
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#include <chipcommon.h>

#include "dhd_bus.h"
#include "dhd_dbg.h"
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#include "tracepoint.h"
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#define TXQLEN		2048	/* bulk tx queue length */
#define TXHI		(TXQLEN - 256)	/* turn on flow control above TXHI */
#define TXLOW		(TXHI - 256)	/* turn off flow control below TXLOW */
#define PRIOMASK	7

#define TXRETRIES	2	/* # of retries for tx frames */

#define BRCMF_RXBOUND	50	/* Default for max rx frames in
				 one scheduling */

#define BRCMF_TXBOUND	20	/* Default for max tx frames in
				 one scheduling */

#define BRCMF_TXMINMAX	1	/* Max tx frames if rx still pending */

#define MEMBLOCK	2048	/* Block size used for downloading
				 of dongle image */
#define MAX_DATA_BUF	(32 * 1024)	/* Must be large enough to hold
				 biggest possible glom */

#define BRCMF_FIRSTREAD	(1 << 6)


/* SBSDIO_DEVICE_CTL */

/* 1: device will assert busy signal when receiving CMD53 */
#define SBSDIO_DEVCTL_SETBUSY		0x01
/* 1: assertion of sdio interrupt is synchronous to the sdio clock */
#define SBSDIO_DEVCTL_SPI_INTR_SYNC	0x02
/* 1: mask all interrupts to host except the chipActive (rev 8) */
#define SBSDIO_DEVCTL_CA_INT_ONLY	0x04
/* 1: isolate internal sdio signals, put external pads in tri-state; requires
 * sdio bus power cycle to clear (rev 9) */
#define SBSDIO_DEVCTL_PADS_ISO		0x08
/* Force SD->SB reset mapping (rev 11) */
#define SBSDIO_DEVCTL_SB_RST_CTL	0x30
/*   Determined by CoreControl bit */
#define SBSDIO_DEVCTL_RST_CORECTL	0x00
/*   Force backplane reset */
#define SBSDIO_DEVCTL_RST_BPRESET	0x10
/*   Force no backplane reset */
#define SBSDIO_DEVCTL_RST_NOBPRESET	0x20

/* direct(mapped) cis space */

/* MAPPED common CIS address */
#define SBSDIO_CIS_BASE_COMMON		0x1000
/* maximum bytes in one CIS */
#define SBSDIO_CIS_SIZE_LIMIT		0x200
/* cis offset addr is < 17 bits */
#define SBSDIO_CIS_OFT_ADDR_MASK	0x1FFFF

/* manfid tuple length, include tuple, link bytes */
#define SBSDIO_CIS_MANFID_TUPLE_LEN	6

/* intstatus */
#define I_SMB_SW0	(1 << 0)	/* To SB Mail S/W interrupt 0 */
#define I_SMB_SW1	(1 << 1)	/* To SB Mail S/W interrupt 1 */
#define I_SMB_SW2	(1 << 2)	/* To SB Mail S/W interrupt 2 */
#define I_SMB_SW3	(1 << 3)	/* To SB Mail S/W interrupt 3 */
#define I_SMB_SW_MASK	0x0000000f	/* To SB Mail S/W interrupts mask */
#define I_SMB_SW_SHIFT	0	/* To SB Mail S/W interrupts shift */
#define I_HMB_SW0	(1 << 4)	/* To Host Mail S/W interrupt 0 */
#define I_HMB_SW1	(1 << 5)	/* To Host Mail S/W interrupt 1 */
#define I_HMB_SW2	(1 << 6)	/* To Host Mail S/W interrupt 2 */
#define I_HMB_SW3	(1 << 7)	/* To Host Mail S/W interrupt 3 */
#define I_HMB_SW_MASK	0x000000f0	/* To Host Mail S/W interrupts mask */
#define I_HMB_SW_SHIFT	4	/* To Host Mail S/W interrupts shift */
#define I_WR_OOSYNC	(1 << 8)	/* Write Frame Out Of Sync */
#define I_RD_OOSYNC	(1 << 9)	/* Read Frame Out Of Sync */
#define	I_PC		(1 << 10)	/* descriptor error */
#define	I_PD		(1 << 11)	/* data error */
#define	I_DE		(1 << 12)	/* Descriptor protocol Error */
#define	I_RU		(1 << 13)	/* Receive descriptor Underflow */
#define	I_RO		(1 << 14)	/* Receive fifo Overflow */
#define	I_XU		(1 << 15)	/* Transmit fifo Underflow */
#define	I_RI		(1 << 16)	/* Receive Interrupt */
#define I_BUSPWR	(1 << 17)	/* SDIO Bus Power Change (rev 9) */
#define I_XMTDATA_AVAIL (1 << 23)	/* bits in fifo */
#define	I_XI		(1 << 24)	/* Transmit Interrupt */
#define I_RF_TERM	(1 << 25)	/* Read Frame Terminate */
#define I_WF_TERM	(1 << 26)	/* Write Frame Terminate */
#define I_PCMCIA_XU	(1 << 27)	/* PCMCIA Transmit FIFO Underflow */
#define I_SBINT		(1 << 28)	/* sbintstatus Interrupt */
#define I_CHIPACTIVE	(1 << 29)	/* chip from doze to active state */
#define I_SRESET	(1 << 30)	/* CCCR RES interrupt */
#define I_IOE2		(1U << 31)	/* CCCR IOE2 Bit Changed */
#define	I_ERRORS	(I_PC | I_PD | I_DE | I_RU | I_RO | I_XU)
#define I_DMA		(I_RI | I_XI | I_ERRORS)

/* corecontrol */
#define CC_CISRDY		(1 << 0)	/* CIS Ready */
#define CC_BPRESEN		(1 << 1)	/* CCCR RES signal */
#define CC_F2RDY		(1 << 2)	/* set CCCR IOR2 bit */
#define CC_CLRPADSISO		(1 << 3)	/* clear SDIO pads isolation */
#define CC_XMTDATAAVAIL_MODE	(1 << 4)
#define CC_XMTDATAAVAIL_CTRL	(1 << 5)

/* SDA_FRAMECTRL */
#define SFC_RF_TERM	(1 << 0)	/* Read Frame Terminate */
#define SFC_WF_TERM	(1 << 1)	/* Write Frame Terminate */
#define SFC_CRC4WOOS	(1 << 2)	/* CRC error for write out of sync */
#define SFC_ABORTALL	(1 << 3)	/* Abort all in-progress frames */

/*
 * Software allocation of To SB Mailbox resources
 */

/* tosbmailbox bits corresponding to intstatus bits */
#define SMB_NAK		(1 << 0)	/* Frame NAK */
#define SMB_INT_ACK	(1 << 1)	/* Host Interrupt ACK */
#define SMB_USE_OOB	(1 << 2)	/* Use OOB Wakeup */
#define SMB_DEV_INT	(1 << 3)	/* Miscellaneous Interrupt */

/* tosbmailboxdata */
#define SMB_DATA_VERSION_SHIFT	16	/* host protocol version */

/*
 * Software allocation of To Host Mailbox resources
 */

/* intstatus bits */
#define I_HMB_FC_STATE	I_HMB_SW0	/* Flow Control State */
#define I_HMB_FC_CHANGE	I_HMB_SW1	/* Flow Control State Changed */
#define I_HMB_FRAME_IND	I_HMB_SW2	/* Frame Indication */
#define I_HMB_HOST_INT	I_HMB_SW3	/* Miscellaneous Interrupt */

/* tohostmailboxdata */
#define HMB_DATA_NAKHANDLED	1	/* retransmit NAK'd frame */
#define HMB_DATA_DEVREADY	2	/* talk to host after enable */
#define HMB_DATA_FC		4	/* per prio flowcontrol update flag */
#define HMB_DATA_FWREADY	8	/* fw ready for protocol activity */

#define HMB_DATA_FCDATA_MASK	0xff000000
#define HMB_DATA_FCDATA_SHIFT	24

#define HMB_DATA_VERSION_MASK	0x00ff0000
#define HMB_DATA_VERSION_SHIFT	16

/*
 * Software-defined protocol header
 */

/* Current protocol version */
#define SDPCM_PROT_VERSION	4

/*
 * Shared structure between dongle and the host.
 * The structure contains pointers to trap or assert information.
 */
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#define SDPCM_SHARED_VERSION       0x0003
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#define SDPCM_SHARED_VERSION_MASK  0x00FF
#define SDPCM_SHARED_ASSERT_BUILT  0x0100
#define SDPCM_SHARED_ASSERT        0x0200
#define SDPCM_SHARED_TRAP          0x0400

/* Space for header read, limit for data packets */
#define MAX_HDR_READ	(1 << 6)
#define MAX_RX_DATASZ	2048

/* Maximum milliseconds to wait for F2 to come up */
#define BRCMF_WAIT_F2RDY	3000

/* Bump up limit on waiting for HT to account for first startup;
 * if the image is doing a CRC calculation before programming the PMU
 * for HT availability, it could take a couple hundred ms more, so
 * max out at a 1 second (1000000us).
 */
#undef PMU_MAX_TRANSITION_DLY
#define PMU_MAX_TRANSITION_DLY 1000000

/* Value for ChipClockCSR during initial setup */
#define BRCMF_INIT_CLKCTL1	(SBSDIO_FORCE_HW_CLKREQ_OFF |	\
					SBSDIO_ALP_AVAIL_REQ)

/* Flags for SDH calls */
#define F2SYNC	(SDIO_REQ_4BYTE | SDIO_REQ_FIXED)

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#define BRCMF_IDLE_IMMEDIATE	(-1)	/* Enter idle immediately */
#define BRCMF_IDLE_ACTIVE	0	/* Do not request any SD clock change
					 * when idle
					 */
#define BRCMF_IDLE_INTERVAL	1

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#define KSO_WAIT_US 50
#define MAX_KSO_ATTEMPTS (PMU_MAX_TRANSITION_DLY/KSO_WAIT_US)

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/*
 * Conversion of 802.1D priority to precedence level
 */
static uint prio2prec(u32 prio)
{
	return (prio == PRIO_8021D_NONE || prio == PRIO_8021D_BE) ?
	       (prio^2) : prio;
}

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#ifdef DEBUG
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/* Device console log buffer state */
struct brcmf_console {
	uint count;		/* Poll interval msec counter */
	uint log_addr;		/* Log struct address (fixed) */
	struct rte_log_le log_le;	/* Log struct (host copy) */
	uint bufsize;		/* Size of log buffer */
	u8 *buf;		/* Log buffer (host copy) */
	uint last;		/* Last buffer read index */
};
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struct brcmf_trap_info {
	__le32		type;
	__le32		epc;
	__le32		cpsr;
	__le32		spsr;
	__le32		r0;	/* a1 */
	__le32		r1;	/* a2 */
	__le32		r2;	/* a3 */
	__le32		r3;	/* a4 */
	__le32		r4;	/* v1 */
	__le32		r5;	/* v2 */
	__le32		r6;	/* v3 */
	__le32		r7;	/* v4 */
	__le32		r8;	/* v5 */
	__le32		r9;	/* sb/v6 */
	__le32		r10;	/* sl/v7 */
	__le32		r11;	/* fp/v8 */
	__le32		r12;	/* ip */
	__le32		r13;	/* sp */
	__le32		r14;	/* lr */
	__le32		pc;	/* r15 */
};
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#endif				/* DEBUG */
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struct sdpcm_shared {
	u32 flags;
	u32 trap_addr;
	u32 assert_exp_addr;
	u32 assert_file_addr;
	u32 assert_line;
	u32 console_addr;	/* Address of struct rte_console */
	u32 msgtrace_addr;
	u8 tag[32];
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	u32 brpt_addr;
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};

struct sdpcm_shared_le {
	__le32 flags;
	__le32 trap_addr;
	__le32 assert_exp_addr;
	__le32 assert_file_addr;
	__le32 assert_line;
	__le32 console_addr;	/* Address of struct rte_console */
	__le32 msgtrace_addr;
	u8 tag[32];
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	__le32 brpt_addr;
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};

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/* dongle SDIO bus specific header info */
struct brcmf_sdio_hdrinfo {
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	u8 seq_num;
	u8 channel;
	u16 len;
	u16 len_left;
	u16 len_nxtfrm;
	u8 dat_offset;
};
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/* misc chip info needed by some of the routines */
/* Private data for SDIO bus interaction */
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struct brcmf_sdio {
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	struct brcmf_sdio_dev *sdiodev;	/* sdio device handler */
	struct chip_info *ci;	/* Chip info struct */
	char *vars;		/* Variables (from CIS and/or other) */
	uint varsz;		/* Size of variables buffer */

	u32 ramsize;		/* Size of RAM in SOCRAM (bytes) */

	u32 hostintmask;	/* Copy of Host Interrupt Mask */
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	atomic_t intstatus;	/* Intstatus bits (events) pending */
	atomic_t fcstate;	/* State of dongle flow-control */
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	uint blocksize;		/* Block size of SDIO transfers */
	uint roundup;		/* Max roundup limit */

	struct pktq txq;	/* Queue length used for flow-control */
	u8 flowcontrol;	/* per prio flow control bitmask */
	u8 tx_seq;		/* Transmit sequence number (next) */
	u8 tx_max;		/* Maximum transmit sequence allowed */

	u8 hdrbuf[MAX_HDR_READ + BRCMF_SDALIGN];
	u8 *rxhdr;		/* Header of current rx frame (in hdrbuf) */
	u8 rx_seq;		/* Receive sequence number (expected) */
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	struct brcmf_sdio_hdrinfo cur_read;
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				/* info of current read frame */
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	bool rxskip;		/* Skip receive (awaiting NAK ACK) */
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	bool rxpending;		/* Data frame pending in dongle */
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	uint rxbound;		/* Rx frames to read before resched */
	uint txbound;		/* Tx frames to send before resched */
	uint txminmax;

	struct sk_buff *glomd;	/* Packet containing glomming descriptor */
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	struct sk_buff_head glom; /* Packet list for glommed superframe */
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	uint glomerr;		/* Glom packet read errors */

	u8 *rxbuf;		/* Buffer for receiving control packets */
	uint rxblen;		/* Allocated length of rxbuf */
	u8 *rxctl;		/* Aligned pointer into rxbuf */
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	u8 *rxctl_orig;		/* pointer for freeing rxctl */
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	uint rxlen;		/* Length of valid data in buffer */
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	spinlock_t rxctl_lock;	/* protection lock for ctrl frame resources */
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	u8 sdpcm_ver;	/* Bus protocol reported by dongle */

	bool intr;		/* Use interrupts */
	bool poll;		/* Use polling */
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	atomic_t ipend;		/* Device interrupt is pending */
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	uint spurious;		/* Count of spurious interrupts */
	uint pollrate;		/* Ticks between device polls */
	uint polltick;		/* Tick counter */

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#ifdef DEBUG
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	uint console_interval;
	struct brcmf_console console;	/* Console output polling support */
	uint console_addr;	/* Console address from shared struct */
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#endif				/* DEBUG */
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	uint clkstate;		/* State of sd and backplane clock(s) */
	bool activity;		/* Activity flag for clock down */
	s32 idletime;		/* Control for activity timeout */
	s32 idlecount;	/* Activity timeout counter */
	s32 idleclock;	/* How to set bus driver when idle */
	bool rxflow_mode;	/* Rx flow control mode */
	bool rxflow;		/* Is rx flow control on */
	bool alp_only;		/* Don't use HT clock (ALP only) */

	u8 *ctrl_frame_buf;
	u32 ctrl_frame_len;
	bool ctrl_frame_stat;

	spinlock_t txqlock;
	wait_queue_head_t ctrl_wait;
	wait_queue_head_t dcmd_resp_wait;

	struct timer_list timer;
	struct completion watchdog_wait;
	struct task_struct *watchdog_tsk;
	bool wd_timer_valid;
	uint save_ms;

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	struct workqueue_struct *brcmf_wq;
	struct work_struct datawork;
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	atomic_t dpc_tskcnt;
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	bool txoff;		/* Transmit flow-controlled */
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	struct brcmf_sdio_count sdcnt;
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	bool sr_enabled; /* SaveRestore enabled */
	bool sleeping; /* SDIO bus sleeping */
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	u8 tx_hdrlen;		/* sdio bus header length for tx packet */
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};

/* clkstate */
#define CLK_NONE	0
#define CLK_SDONLY	1
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#define CLK_PENDING	2
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#define CLK_AVAIL	3

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#ifdef DEBUG
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static int qcount[NUMPRIO];
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#endif				/* DEBUG */
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#define DEFAULT_SDIO_DRIVE_STRENGTH	6	/* in milliamps */
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#define RETRYCHAN(chan) ((chan) == SDPCM_EVENT_CHANNEL)

/* Retry count for register access failures */
static const uint retry_limit = 2;

/* Limit on rounding up frames */
static const uint max_roundup = 512;

#define ALIGNMENT  4

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enum brcmf_sdio_frmtype {
	BRCMF_SDIO_FT_NORMAL,
	BRCMF_SDIO_FT_SUPER,
	BRCMF_SDIO_FT_SUB,
};

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#define BCM43143_FIRMWARE_NAME		"brcm/brcmfmac43143-sdio.bin"
#define BCM43143_NVRAM_NAME		"brcm/brcmfmac43143-sdio.txt"
#define BCM43241B0_FIRMWARE_NAME	"brcm/brcmfmac43241b0-sdio.bin"
#define BCM43241B0_NVRAM_NAME		"brcm/brcmfmac43241b0-sdio.txt"
#define BCM43241B4_FIRMWARE_NAME	"brcm/brcmfmac43241b4-sdio.bin"
#define BCM43241B4_NVRAM_NAME		"brcm/brcmfmac43241b4-sdio.txt"
#define BCM4329_FIRMWARE_NAME		"brcm/brcmfmac4329-sdio.bin"
#define BCM4329_NVRAM_NAME		"brcm/brcmfmac4329-sdio.txt"
#define BCM4330_FIRMWARE_NAME		"brcm/brcmfmac4330-sdio.bin"
#define BCM4330_NVRAM_NAME		"brcm/brcmfmac4330-sdio.txt"
#define BCM4334_FIRMWARE_NAME		"brcm/brcmfmac4334-sdio.bin"
#define BCM4334_NVRAM_NAME		"brcm/brcmfmac4334-sdio.txt"
#define BCM4335_FIRMWARE_NAME		"brcm/brcmfmac4335-sdio.bin"
#define BCM4335_NVRAM_NAME		"brcm/brcmfmac4335-sdio.txt"

MODULE_FIRMWARE(BCM43143_FIRMWARE_NAME);
MODULE_FIRMWARE(BCM43143_NVRAM_NAME);
MODULE_FIRMWARE(BCM43241B0_FIRMWARE_NAME);
MODULE_FIRMWARE(BCM43241B0_NVRAM_NAME);
MODULE_FIRMWARE(BCM43241B4_FIRMWARE_NAME);
MODULE_FIRMWARE(BCM43241B4_NVRAM_NAME);
MODULE_FIRMWARE(BCM4329_FIRMWARE_NAME);
MODULE_FIRMWARE(BCM4329_NVRAM_NAME);
MODULE_FIRMWARE(BCM4330_FIRMWARE_NAME);
MODULE_FIRMWARE(BCM4330_NVRAM_NAME);
MODULE_FIRMWARE(BCM4334_FIRMWARE_NAME);
MODULE_FIRMWARE(BCM4334_NVRAM_NAME);
MODULE_FIRMWARE(BCM4335_FIRMWARE_NAME);
MODULE_FIRMWARE(BCM4335_NVRAM_NAME);

struct brcmf_firmware_names {
	u32 chipid;
	u32 revmsk;
	const char *bin;
	const char *nv;
};

enum brcmf_firmware_type {
	BRCMF_FIRMWARE_BIN,
	BRCMF_FIRMWARE_NVRAM
};

#define BRCMF_FIRMWARE_NVRAM(name) \
	name ## _FIRMWARE_NAME, name ## _NVRAM_NAME

static const struct brcmf_firmware_names brcmf_fwname_data[] = {
	{ BCM43143_CHIP_ID, 0xFFFFFFFF, BRCMF_FIRMWARE_NVRAM(BCM43143) },
	{ BCM43241_CHIP_ID, 0x0000001F, BRCMF_FIRMWARE_NVRAM(BCM43241B0) },
	{ BCM43241_CHIP_ID, 0xFFFFFFE0, BRCMF_FIRMWARE_NVRAM(BCM43241B4) },
	{ BCM4329_CHIP_ID, 0xFFFFFFFF, BRCMF_FIRMWARE_NVRAM(BCM4329) },
	{ BCM4330_CHIP_ID, 0xFFFFFFFF, BRCMF_FIRMWARE_NVRAM(BCM4330) },
	{ BCM4334_CHIP_ID, 0xFFFFFFFF, BRCMF_FIRMWARE_NVRAM(BCM4334) },
	{ BCM4335_CHIP_ID, 0xFFFFFFFF, BRCMF_FIRMWARE_NVRAM(BCM4335) }
};


static const struct firmware *brcmf_sdbrcm_get_fw(struct brcmf_sdio *bus,
						  enum brcmf_firmware_type type)
{
	const struct firmware *fw;
	const char *name;
	int err, i;

	for (i = 0; i < ARRAY_SIZE(brcmf_fwname_data); i++) {
		if (brcmf_fwname_data[i].chipid == bus->ci->chip &&
		    brcmf_fwname_data[i].revmsk & BIT(bus->ci->chiprev)) {
			switch (type) {
			case BRCMF_FIRMWARE_BIN:
				name = brcmf_fwname_data[i].bin;
				break;
			case BRCMF_FIRMWARE_NVRAM:
				name = brcmf_fwname_data[i].nv;
				break;
			default:
				brcmf_err("invalid firmware type (%d)\n", type);
				return NULL;
			}
			goto found;
		}
	}
	brcmf_err("Unknown chipid %d [%d]\n",
		  bus->ci->chip, bus->ci->chiprev);
	return NULL;

found:
	err = request_firmware(&fw, name, &bus->sdiodev->func[2]->dev);
	if ((err) || (!fw)) {
		brcmf_err("fail to request firmware %s (%d)\n", name, err);
		return NULL;
	}

	return fw;
}

582 583 584 585 586 587 588 589 590 591 592
static void pkt_align(struct sk_buff *p, int len, int align)
{
	uint datalign;
	datalign = (unsigned long)(p->data);
	datalign = roundup(datalign, (align)) - datalign;
	if (datalign)
		skb_pull(p, datalign);
	__skb_trim(p, len);
}

/* To check if there's window offered */
593
static bool data_ok(struct brcmf_sdio *bus)
594 595 596 597 598 599 600 601 602
{
	return (u8)(bus->tx_max - bus->tx_seq) != 0 &&
	       ((u8)(bus->tx_max - bus->tx_seq) & 0x80) == 0;
}

/*
 * Reads a register in the SDIO hardware block. This block occupies a series of
 * adresses on the 32 bit backplane bus.
 */
603 604
static int
r_sdreg32(struct brcmf_sdio *bus, u32 *regvar, u32 offset)
605
{
606
	u8 idx = brcmf_sdio_chip_getinfidx(bus->ci, BCMA_CORE_SDIO_DEV);
607
	int ret;
608 609 610 611 612

	*regvar = brcmf_sdio_regrl(bus->sdiodev,
				   bus->ci->c_inf[idx].base + offset, &ret);

	return ret;
613 614
}

615 616
static int
w_sdreg32(struct brcmf_sdio *bus, u32 regval, u32 reg_offset)
617
{
618
	u8 idx = brcmf_sdio_chip_getinfidx(bus->ci, BCMA_CORE_SDIO_DEV);
619
	int ret;
620 621 622 623 624 625

	brcmf_sdio_regwl(bus->sdiodev,
			 bus->ci->c_inf[idx].base + reg_offset,
			 regval, &ret);

	return ret;
626 627
}

628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683
static int
brcmf_sdbrcm_kso_control(struct brcmf_sdio *bus, bool on)
{
	u8 wr_val = 0, rd_val, cmp_val, bmask;
	int err = 0;
	int try_cnt = 0;

	brcmf_dbg(TRACE, "Enter\n");

	wr_val = (on << SBSDIO_FUNC1_SLEEPCSR_KSO_SHIFT);
	/* 1st KSO write goes to AOS wake up core if device is asleep  */
	brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_SLEEPCSR,
			 wr_val, &err);
	if (err) {
		brcmf_err("SDIO_AOS KSO write error: %d\n", err);
		return err;
	}

	if (on) {
		/* device WAKEUP through KSO:
		 * write bit 0 & read back until
		 * both bits 0 (kso bit) & 1 (dev on status) are set
		 */
		cmp_val = SBSDIO_FUNC1_SLEEPCSR_KSO_MASK |
			  SBSDIO_FUNC1_SLEEPCSR_DEVON_MASK;
		bmask = cmp_val;
		usleep_range(2000, 3000);
	} else {
		/* Put device to sleep, turn off KSO */
		cmp_val = 0;
		/* only check for bit0, bit1(dev on status) may not
		 * get cleared right away
		 */
		bmask = SBSDIO_FUNC1_SLEEPCSR_KSO_MASK;
	}

	do {
		/* reliable KSO bit set/clr:
		 * the sdiod sleep write access is synced to PMU 32khz clk
		 * just one write attempt may fail,
		 * read it back until it matches written value
		 */
		rd_val = brcmf_sdio_regrb(bus->sdiodev, SBSDIO_FUNC1_SLEEPCSR,
					  &err);
		if (((rd_val & bmask) == cmp_val) && !err)
			break;
		brcmf_dbg(SDIO, "KSO wr/rd retry:%d (max: %d) ERR:%x\n",
			  try_cnt, MAX_KSO_ATTEMPTS, err);
		udelay(KSO_WAIT_US);
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_SLEEPCSR,
				 wr_val, &err);
	} while (try_cnt++ < MAX_KSO_ATTEMPTS);

	return err;
}

684 685 686 687 688
#define PKT_AVAILABLE()		(intstatus & I_HMB_FRAME_IND)

#define HOSTINTMASK		(I_HMB_SW_MASK | I_CHIPACTIVE)

/* Turn backplane clock on or off */
689
static int brcmf_sdbrcm_htclk(struct brcmf_sdio *bus, bool on, bool pendok)
690 691 692 693 694
{
	int err;
	u8 clkctl, clkreq, devctl;
	unsigned long timeout;

695
	brcmf_dbg(SDIO, "Enter\n");
696 697 698

	clkctl = 0;

699 700 701 702 703
	if (bus->sr_enabled) {
		bus->clkstate = (on ? CLK_AVAIL : CLK_SDONLY);
		return 0;
	}

704 705 706 707 708
	if (on) {
		/* Request HT Avail */
		clkreq =
		    bus->alp_only ? SBSDIO_ALP_AVAIL_REQ : SBSDIO_HT_AVAIL_REQ;

709 710
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_CHIPCLKCSR,
				 clkreq, &err);
711
		if (err) {
712
			brcmf_err("HT Avail request error: %d\n", err);
713 714 715 716
			return -EBADE;
		}

		/* Check current status */
717 718
		clkctl = brcmf_sdio_regrb(bus->sdiodev,
					  SBSDIO_FUNC1_CHIPCLKCSR, &err);
719
		if (err) {
720
			brcmf_err("HT Avail read error: %d\n", err);
721 722 723 724 725 726
			return -EBADE;
		}

		/* Go to pending and await interrupt if appropriate */
		if (!SBSDIO_CLKAV(clkctl, bus->alp_only) && pendok) {
			/* Allow only clock-available interrupt */
727 728
			devctl = brcmf_sdio_regrb(bus->sdiodev,
						  SBSDIO_DEVICE_CTL, &err);
729
			if (err) {
730
				brcmf_err("Devctl error setting CA: %d\n",
731 732 733 734 735
					  err);
				return -EBADE;
			}

			devctl |= SBSDIO_DEVCTL_CA_INT_ONLY;
736 737
			brcmf_sdio_regwb(bus->sdiodev, SBSDIO_DEVICE_CTL,
					 devctl, &err);
738
			brcmf_dbg(SDIO, "CLKCTL: set PENDING\n");
739 740 741 742 743
			bus->clkstate = CLK_PENDING;

			return 0;
		} else if (bus->clkstate == CLK_PENDING) {
			/* Cancel CA-only interrupt filter */
744
			devctl = brcmf_sdio_regrb(bus->sdiodev,
745 746
						  SBSDIO_DEVICE_CTL, &err);
			devctl &= ~SBSDIO_DEVCTL_CA_INT_ONLY;
747 748
			brcmf_sdio_regwb(bus->sdiodev, SBSDIO_DEVICE_CTL,
					 devctl, &err);
749 750 751 752 753 754
		}

		/* Otherwise, wait here (polling) for HT Avail */
		timeout = jiffies +
			  msecs_to_jiffies(PMU_MAX_TRANSITION_DLY/1000);
		while (!SBSDIO_CLKAV(clkctl, bus->alp_only)) {
755 756 757
			clkctl = brcmf_sdio_regrb(bus->sdiodev,
						  SBSDIO_FUNC1_CHIPCLKCSR,
						  &err);
758 759 760 761 762 763
			if (time_after(jiffies, timeout))
				break;
			else
				usleep_range(5000, 10000);
		}
		if (err) {
764
			brcmf_err("HT Avail request error: %d\n", err);
765 766 767
			return -EBADE;
		}
		if (!SBSDIO_CLKAV(clkctl, bus->alp_only)) {
768
			brcmf_err("HT Avail timeout (%d): clkctl 0x%02x\n",
769 770 771 772 773 774
				  PMU_MAX_TRANSITION_DLY, clkctl);
			return -EBADE;
		}

		/* Mark clock available */
		bus->clkstate = CLK_AVAIL;
775
		brcmf_dbg(SDIO, "CLKCTL: turned ON\n");
776

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777
#if defined(DEBUG)
778
		if (!bus->alp_only) {
779
			if (SBSDIO_ALPONLY(clkctl))
780
				brcmf_err("HT Clock should be on\n");
781
		}
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782
#endif				/* defined (DEBUG) */
783 784 785 786 787 788 789

		bus->activity = true;
	} else {
		clkreq = 0;

		if (bus->clkstate == CLK_PENDING) {
			/* Cancel CA-only interrupt filter */
790 791
			devctl = brcmf_sdio_regrb(bus->sdiodev,
						  SBSDIO_DEVICE_CTL, &err);
792
			devctl &= ~SBSDIO_DEVCTL_CA_INT_ONLY;
793 794
			brcmf_sdio_regwb(bus->sdiodev, SBSDIO_DEVICE_CTL,
					 devctl, &err);
795 796 797
		}

		bus->clkstate = CLK_SDONLY;
798 799
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_CHIPCLKCSR,
				 clkreq, &err);
800
		brcmf_dbg(SDIO, "CLKCTL: turned OFF\n");
801
		if (err) {
802
			brcmf_err("Failed access turning clock off: %d\n",
803 804 805 806 807 808 809 810
				  err);
			return -EBADE;
		}
	}
	return 0;
}

/* Change idle/active SD state */
811
static int brcmf_sdbrcm_sdclk(struct brcmf_sdio *bus, bool on)
812
{
813
	brcmf_dbg(SDIO, "Enter\n");
814 815 816 817 818 819 820 821 822 823

	if (on)
		bus->clkstate = CLK_SDONLY;
	else
		bus->clkstate = CLK_NONE;

	return 0;
}

/* Transition SD and backplane clock readiness */
824
static int brcmf_sdbrcm_clkctl(struct brcmf_sdio *bus, uint target, bool pendok)
825
{
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826
#ifdef DEBUG
827
	uint oldstate = bus->clkstate;
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828
#endif				/* DEBUG */
829

830
	brcmf_dbg(SDIO, "Enter\n");
831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858

	/* Early exit if we're already there */
	if (bus->clkstate == target) {
		if (target == CLK_AVAIL) {
			brcmf_sdbrcm_wd_timer(bus, BRCMF_WD_POLL_MS);
			bus->activity = true;
		}
		return 0;
	}

	switch (target) {
	case CLK_AVAIL:
		/* Make sure SD clock is available */
		if (bus->clkstate == CLK_NONE)
			brcmf_sdbrcm_sdclk(bus, true);
		/* Now request HT Avail on the backplane */
		brcmf_sdbrcm_htclk(bus, true, pendok);
		brcmf_sdbrcm_wd_timer(bus, BRCMF_WD_POLL_MS);
		bus->activity = true;
		break;

	case CLK_SDONLY:
		/* Remove HT request, or bring up SD clock */
		if (bus->clkstate == CLK_NONE)
			brcmf_sdbrcm_sdclk(bus, true);
		else if (bus->clkstate == CLK_AVAIL)
			brcmf_sdbrcm_htclk(bus, false, false);
		else
859
			brcmf_err("request for %d -> %d\n",
860 861 862 863 864 865 866 867 868 869 870 871 872
				  bus->clkstate, target);
		brcmf_sdbrcm_wd_timer(bus, BRCMF_WD_POLL_MS);
		break;

	case CLK_NONE:
		/* Make sure to remove HT request */
		if (bus->clkstate == CLK_AVAIL)
			brcmf_sdbrcm_htclk(bus, false, false);
		/* Now remove the SD clock */
		brcmf_sdbrcm_sdclk(bus, false);
		brcmf_sdbrcm_wd_timer(bus, 0);
		break;
	}
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873
#ifdef DEBUG
874
	brcmf_dbg(SDIO, "%d -> %d\n", oldstate, bus->clkstate);
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875
#endif				/* DEBUG */
876 877 878 879

	return 0;
}

880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936
static int
brcmf_sdbrcm_bus_sleep(struct brcmf_sdio *bus, bool sleep, bool pendok)
{
	int err = 0;
	brcmf_dbg(TRACE, "Enter\n");
	brcmf_dbg(SDIO, "request %s currently %s\n",
		  (sleep ? "SLEEP" : "WAKE"),
		  (bus->sleeping ? "SLEEP" : "WAKE"));

	/* If SR is enabled control bus state with KSO */
	if (bus->sr_enabled) {
		/* Done if we're already in the requested state */
		if (sleep == bus->sleeping)
			goto end;

		/* Going to sleep */
		if (sleep) {
			/* Don't sleep if something is pending */
			if (atomic_read(&bus->intstatus) ||
			    atomic_read(&bus->ipend) > 0 ||
			    (!atomic_read(&bus->fcstate) &&
			    brcmu_pktq_mlen(&bus->txq, ~bus->flowcontrol) &&
			    data_ok(bus)))
				 return -EBUSY;
			err = brcmf_sdbrcm_kso_control(bus, false);
			/* disable watchdog */
			if (!err)
				brcmf_sdbrcm_wd_timer(bus, 0);
		} else {
			bus->idlecount = 0;
			err = brcmf_sdbrcm_kso_control(bus, true);
		}
		if (!err) {
			/* Change state */
			bus->sleeping = sleep;
			brcmf_dbg(SDIO, "new state %s\n",
				  (sleep ? "SLEEP" : "WAKE"));
		} else {
			brcmf_err("error while changing bus sleep state %d\n",
				  err);
			return err;
		}
	}

end:
	/* control clocks */
	if (sleep) {
		if (!bus->sr_enabled)
			brcmf_sdbrcm_clkctl(bus, CLK_NONE, pendok);
	} else {
		brcmf_sdbrcm_clkctl(bus, CLK_AVAIL, pendok);
	}

	return err;

}

937
static u32 brcmf_sdbrcm_hostmail(struct brcmf_sdio *bus)
938 939 940 941
{
	u32 intstatus = 0;
	u32 hmb_data;
	u8 fcbits;
942
	int ret;
943

944
	brcmf_dbg(SDIO, "Enter\n");
945 946

	/* Read mailbox data and ack that we did so */
947 948
	ret = r_sdreg32(bus, &hmb_data,
			offsetof(struct sdpcmd_regs, tohostmailboxdata));
949

950
	if (ret == 0)
951
		w_sdreg32(bus, SMB_INT_ACK,
952
			  offsetof(struct sdpcmd_regs, tosbmailbox));
953
	bus->sdcnt.f1regdata += 2;
954 955 956

	/* Dongle recomposed rx frames, accept them again */
	if (hmb_data & HMB_DATA_NAKHANDLED) {
957
		brcmf_dbg(SDIO, "Dongle reports NAK handled, expect rtx of %d\n",
958 959
			  bus->rx_seq);
		if (!bus->rxskip)
960
			brcmf_err("unexpected NAKHANDLED!\n");
961 962 963 964 965 966 967 968 969 970 971 972 973

		bus->rxskip = false;
		intstatus |= I_HMB_FRAME_IND;
	}

	/*
	 * DEVREADY does not occur with gSPI.
	 */
	if (hmb_data & (HMB_DATA_DEVREADY | HMB_DATA_FWREADY)) {
		bus->sdpcm_ver =
		    (hmb_data & HMB_DATA_VERSION_MASK) >>
		    HMB_DATA_VERSION_SHIFT;
		if (bus->sdpcm_ver != SDPCM_PROT_VERSION)
974
			brcmf_err("Version mismatch, dongle reports %d, "
975 976 977
				  "expecting %d\n",
				  bus->sdpcm_ver, SDPCM_PROT_VERSION);
		else
978
			brcmf_dbg(SDIO, "Dongle ready, protocol version %d\n",
979 980 981 982 983 984 985 986 987 988 989 990 991
				  bus->sdpcm_ver);
	}

	/*
	 * Flow Control has been moved into the RX headers and this out of band
	 * method isn't used any more.
	 * remaining backward compatible with older dongles.
	 */
	if (hmb_data & HMB_DATA_FC) {
		fcbits = (hmb_data & HMB_DATA_FCDATA_MASK) >>
							HMB_DATA_FCDATA_SHIFT;

		if (fcbits & ~bus->flowcontrol)
992
			bus->sdcnt.fc_xoff++;
993 994

		if (bus->flowcontrol & ~fcbits)
995
			bus->sdcnt.fc_xon++;
996

997
		bus->sdcnt.fc_rcvd++;
998 999 1000 1001 1002 1003 1004 1005 1006
		bus->flowcontrol = fcbits;
	}

	/* Shouldn't be any others */
	if (hmb_data & ~(HMB_DATA_DEVREADY |
			 HMB_DATA_NAKHANDLED |
			 HMB_DATA_FC |
			 HMB_DATA_FWREADY |
			 HMB_DATA_FCDATA_MASK | HMB_DATA_VERSION_MASK))
1007
		brcmf_err("Unknown mailbox data content: 0x%02x\n",
1008 1009 1010 1011 1012
			  hmb_data);

	return intstatus;
}

1013
static void brcmf_sdbrcm_rxfail(struct brcmf_sdio *bus, bool abort, bool rtx)
1014 1015 1016 1017 1018 1019
{
	uint retries = 0;
	u16 lastrbc;
	u8 hi, lo;
	int err;

1020
	brcmf_err("%sterminate frame%s\n",
1021 1022 1023 1024 1025 1026
		  abort ? "abort command, " : "",
		  rtx ? ", send NAK" : "");

	if (abort)
		brcmf_sdcard_abort(bus->sdiodev, SDIO_FUNC_2);

1027 1028
	brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_FRAMECTRL,
			 SFC_RF_TERM, &err);
1029
	bus->sdcnt.f1regdata++;
1030 1031 1032

	/* Wait until the packet has been flushed (device/FIFO stable) */
	for (lastrbc = retries = 0xffff; retries > 0; retries--) {
1033
		hi = brcmf_sdio_regrb(bus->sdiodev,
1034
				      SBSDIO_FUNC1_RFRAMEBCHI, &err);
1035
		lo = brcmf_sdio_regrb(bus->sdiodev,
1036
				      SBSDIO_FUNC1_RFRAMEBCLO, &err);
1037
		bus->sdcnt.f1regdata += 2;
1038 1039 1040 1041 1042

		if ((hi == 0) && (lo == 0))
			break;

		if ((hi > (lastrbc >> 8)) && (lo > (lastrbc & 0x00ff))) {
1043
			brcmf_err("count growing: last 0x%04x now 0x%04x\n",
1044 1045 1046 1047 1048 1049
				  lastrbc, (hi << 8) + lo);
		}
		lastrbc = (hi << 8) + lo;
	}

	if (!retries)
1050
		brcmf_err("count never zeroed: last 0x%04x\n", lastrbc);
1051
	else
1052
		brcmf_dbg(SDIO, "flush took %d iterations\n", 0xffff - retries);
1053 1054

	if (rtx) {
1055
		bus->sdcnt.rxrtx++;
1056 1057
		err = w_sdreg32(bus, SMB_NAK,
				offsetof(struct sdpcmd_regs, tosbmailbox));
1058

1059
		bus->sdcnt.f1regdata++;
1060
		if (err == 0)
1061 1062 1063 1064
			bus->rxskip = true;
	}

	/* Clear partial in any case */
1065
	bus->cur_read.len = 0;
1066 1067

	/* If we can't reach the device, signal failure */
1068
	if (err)
1069
		bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;
1070 1071
}

1072
/* return total length of buffer chain */
1073
static uint brcmf_sdbrcm_glom_len(struct brcmf_sdio *bus)
1074 1075 1076 1077 1078 1079 1080 1081 1082 1083
{
	struct sk_buff *p;
	uint total;

	total = 0;
	skb_queue_walk(&bus->glom, p)
		total += p->len;
	return total;
}

1084
static void brcmf_sdbrcm_free_glom(struct brcmf_sdio *bus)
1085 1086 1087 1088 1089 1090 1091 1092 1093
{
	struct sk_buff *cur, *next;

	skb_queue_walk_safe(&bus->glom, cur, next) {
		skb_unlink(cur, &bus->glom);
		brcmu_pkt_buf_free_skb(cur);
	}
}

1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144
/**
 * brcmfmac sdio bus specific header
 * This is the lowest layer header wrapped on the packets transmitted between
 * host and WiFi dongle which contains information needed for SDIO core and
 * firmware
 *
 * It consists of 2 parts: hw header and software header
 * hardware header (frame tag) - 4 bytes
 * Byte 0~1: Frame length
 * Byte 2~3: Checksum, bit-wise inverse of frame length
 * software header - 8 bytes
 * Byte 0: Rx/Tx sequence number
 * Byte 1: 4 MSB Channel number, 4 LSB arbitrary flag
 * Byte 2: Length of next data frame, reserved for Tx
 * Byte 3: Data offset
 * Byte 4: Flow control bits, reserved for Tx
 * Byte 5: Maximum Sequence number allowed by firmware for Tx, N/A for Tx packet
 * Byte 6~7: Reserved
 */
#define SDPCM_HWHDR_LEN			4
#define SDPCM_SWHDR_LEN			8
#define SDPCM_HDRLEN			(SDPCM_HWHDR_LEN + SDPCM_SWHDR_LEN)
/* software header */
#define SDPCM_SEQ_MASK			0x000000ff
#define SDPCM_SEQ_WRAP			256
#define SDPCM_CHANNEL_MASK		0x00000f00
#define SDPCM_CHANNEL_SHIFT		8
#define SDPCM_CONTROL_CHANNEL		0	/* Control */
#define SDPCM_EVENT_CHANNEL		1	/* Asyc Event Indication */
#define SDPCM_DATA_CHANNEL		2	/* Data Xmit/Recv */
#define SDPCM_GLOM_CHANNEL		3	/* Coalesced packets */
#define SDPCM_TEST_CHANNEL		15	/* Test/debug packets */
#define SDPCM_GLOMDESC(p)		(((u8 *)p)[1] & 0x80)
#define SDPCM_NEXTLEN_MASK		0x00ff0000
#define SDPCM_NEXTLEN_SHIFT		16
#define SDPCM_DOFFSET_MASK		0xff000000
#define SDPCM_DOFFSET_SHIFT		24
#define SDPCM_FCMASK_MASK		0x000000ff
#define SDPCM_WINDOW_MASK		0x0000ff00
#define SDPCM_WINDOW_SHIFT		8

static inline u8 brcmf_sdio_getdatoffset(u8 *swheader)
{
	u32 hdrvalue;
	hdrvalue = *(u32 *)swheader;
	return (u8)((hdrvalue & SDPCM_DOFFSET_MASK) >> SDPCM_DOFFSET_SHIFT);
}

static int brcmf_sdio_hdparse(struct brcmf_sdio *bus, u8 *header,
			      struct brcmf_sdio_hdrinfo *rd,
			      enum brcmf_sdio_frmtype type)
1145 1146 1147
{
	u16 len, checksum;
	u8 rx_seq, fc, tx_seq_max;
1148
	u32 swheader;
1149

1150
	/* hw header */
1151 1152 1153 1154 1155
	len = get_unaligned_le16(header);
	checksum = get_unaligned_le16(header + sizeof(u16));
	/* All zero means no more to read */
	if (!(len | checksum)) {
		bus->rxpending = false;
1156
		return -ENODATA;
1157 1158
	}
	if ((u16)(~(len ^ checksum))) {
1159
		brcmf_err("HW header checksum error\n");
1160 1161
		bus->sdcnt.rx_badhdr++;
		brcmf_sdbrcm_rxfail(bus, false, false);
1162
		return -EIO;
1163 1164
	}
	if (len < SDPCM_HDRLEN) {
1165
		brcmf_err("HW header length error\n");
1166
		return -EPROTO;
1167
	}
1168 1169
	if (type == BRCMF_SDIO_FT_SUPER &&
	    (roundup(len, bus->blocksize) != rd->len)) {
1170
		brcmf_err("HW superframe header length error\n");
1171
		return -EPROTO;
1172 1173
	}
	if (type == BRCMF_SDIO_FT_SUB && len > rd->len) {
1174
		brcmf_err("HW subframe header length error\n");
1175
		return -EPROTO;
1176
	}
1177 1178
	rd->len = len;

1179 1180 1181 1182
	/* software header */
	header += SDPCM_HWHDR_LEN;
	swheader = le32_to_cpu(*(__le32 *)header);
	if (type == BRCMF_SDIO_FT_SUPER && SDPCM_GLOMDESC(header)) {
1183
		brcmf_err("Glom descriptor found in superframe head\n");
1184
		rd->len = 0;
1185
		return -EINVAL;
1186
	}
1187 1188
	rx_seq = (u8)(swheader & SDPCM_SEQ_MASK);
	rd->channel = (swheader & SDPCM_CHANNEL_MASK) >> SDPCM_CHANNEL_SHIFT;
1189 1190
	if (len > MAX_RX_DATASZ && rd->channel != SDPCM_CONTROL_CHANNEL &&
	    type != BRCMF_SDIO_FT_SUPER) {
1191
		brcmf_err("HW header length too long\n");
1192 1193 1194
		bus->sdcnt.rx_toolong++;
		brcmf_sdbrcm_rxfail(bus, false, false);
		rd->len = 0;
1195
		return -EPROTO;
1196
	}
1197
	if (type == BRCMF_SDIO_FT_SUPER && rd->channel != SDPCM_GLOM_CHANNEL) {
1198
		brcmf_err("Wrong channel for superframe\n");
1199
		rd->len = 0;
1200
		return -EINVAL;
1201 1202 1203
	}
	if (type == BRCMF_SDIO_FT_SUB && rd->channel != SDPCM_DATA_CHANNEL &&
	    rd->channel != SDPCM_EVENT_CHANNEL) {
1204
		brcmf_err("Wrong channel for subframe\n");
1205
		rd->len = 0;
1206
		return -EINVAL;
1207
	}
1208
	rd->dat_offset = brcmf_sdio_getdatoffset(header);
1209
	if (rd->dat_offset < SDPCM_HDRLEN || rd->dat_offset > rd->len) {
1210
		brcmf_err("seq %d: bad data offset\n", rx_seq);
1211 1212 1213
		bus->sdcnt.rx_badhdr++;
		brcmf_sdbrcm_rxfail(bus, false, false);
		rd->len = 0;
1214
		return -ENXIO;
1215 1216
	}
	if (rd->seq_num != rx_seq) {
1217
		brcmf_err("seq %d: sequence number error, expect %d\n",
1218 1219 1220 1221
			  rx_seq, rd->seq_num);
		bus->sdcnt.rx_badseq++;
		rd->seq_num = rx_seq;
	}
1222 1223
	/* no need to check the reset for subframe */
	if (type == BRCMF_SDIO_FT_SUB)
1224
		return 0;
1225
	rd->len_nxtfrm = (swheader & SDPCM_NEXTLEN_MASK) >> SDPCM_NEXTLEN_SHIFT;
1226 1227 1228
	if (rd->len_nxtfrm << 4 > MAX_RX_DATASZ) {
		/* only warm for NON glom packet */
		if (rd->channel != SDPCM_GLOM_CHANNEL)
1229
			brcmf_err("seq %d: next length error\n", rx_seq);
1230 1231
		rd->len_nxtfrm = 0;
	}
1232 1233
	swheader = le32_to_cpu(*(__le32 *)(header + 4));
	fc = swheader & SDPCM_FCMASK_MASK;
1234 1235 1236 1237 1238 1239 1240 1241
	if (bus->flowcontrol != fc) {
		if (~bus->flowcontrol & fc)
			bus->sdcnt.fc_xoff++;
		if (bus->flowcontrol & ~fc)
			bus->sdcnt.fc_xon++;
		bus->sdcnt.fc_rcvd++;
		bus->flowcontrol = fc;
	}
1242
	tx_seq_max = (swheader & SDPCM_WINDOW_MASK) >> SDPCM_WINDOW_SHIFT;
1243
	if ((u8)(tx_seq_max - bus->tx_seq) > 0x40) {
1244
		brcmf_err("seq %d: max tx seq number error\n", rx_seq);
1245 1246 1247 1248
		tx_seq_max = bus->tx_seq + 2;
	}
	bus->tx_max = tx_seq_max;

1249
	return 0;
1250 1251
}

1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273
static inline void brcmf_sdio_update_hwhdr(u8 *header, u16 frm_length)
{
	*(__le16 *)header = cpu_to_le16(frm_length);
	*(((__le16 *)header) + 1) = cpu_to_le16(~frm_length);
}

static void brcmf_sdio_hdpack(struct brcmf_sdio *bus, u8 *header,
			      struct brcmf_sdio_hdrinfo *hd_info)
{
	u32 sw_header;

	brcmf_sdio_update_hwhdr(header, hd_info->len);

	sw_header = bus->tx_seq;
	sw_header |= (hd_info->channel << SDPCM_CHANNEL_SHIFT) &
		     SDPCM_CHANNEL_MASK;
	sw_header |= (hd_info->dat_offset << SDPCM_DOFFSET_SHIFT) &
		     SDPCM_DOFFSET_MASK;
	*(((__le32 *)header) + 1) = cpu_to_le32(sw_header);
	*(((__le32 *)header) + 2) = 0;
}

1274
static u8 brcmf_sdbrcm_rxglom(struct brcmf_sdio *bus, u8 rxseq)
1275 1276 1277
{
	u16 dlen, totlen;
	u8 *dptr, num = 0;
1278
	u32 align = 0;
1279
	u16 sublen;
1280
	struct sk_buff *pfirst, *pnext;
1281 1282

	int errcode;
1283
	u8 doff, sfdoff;
1284

1285
	struct brcmf_sdio_hdrinfo rd_new;
1286 1287 1288 1289

	/* If packets, issue read(s) and send up packet chain */
	/* Return sequence numbers consumed? */

1290
	brcmf_dbg(SDIO, "start: glomd %p glom %p\n",
1291
		  bus->glomd, skb_peek(&bus->glom));
1292

1293 1294 1295 1296 1297
	if (bus->sdiodev->pdata)
		align = bus->sdiodev->pdata->sd_sgentry_align;
	if (align < 4)
		align = 4;

1298 1299
	/* If there's a descriptor, generate the packet chain */
	if (bus->glomd) {
1300
		pfirst = pnext = NULL;
1301 1302 1303
		dlen = (u16) (bus->glomd->len);
		dptr = bus->glomd->data;
		if (!dlen || (dlen & 1)) {
1304
			brcmf_err("bad glomd len(%d), ignore descriptor\n",
1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315
				  dlen);
			dlen = 0;
		}

		for (totlen = num = 0; dlen; num++) {
			/* Get (and move past) next length */
			sublen = get_unaligned_le16(dptr);
			dlen -= sizeof(u16);
			dptr += sizeof(u16);
			if ((sublen < SDPCM_HDRLEN) ||
			    ((num == 0) && (sublen < (2 * SDPCM_HDRLEN)))) {
1316
				brcmf_err("descriptor len %d bad: %d\n",
1317 1318 1319 1320
					  num, sublen);
				pnext = NULL;
				break;
			}
1321
			if (sublen % align) {
1322
				brcmf_err("sublen %d not multiple of %d\n",
1323
					  sublen, align);
1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335
			}
			totlen += sublen;

			/* For last frame, adjust read len so total
				 is a block multiple */
			if (!dlen) {
				sublen +=
				    (roundup(totlen, bus->blocksize) - totlen);
				totlen = roundup(totlen, bus->blocksize);
			}

			/* Allocate/chain packet for next subframe */
1336
			pnext = brcmu_pkt_buf_get_skb(sublen + align);
1337
			if (pnext == NULL) {
1338
				brcmf_err("bcm_pkt_buf_get_skb failed, num %d len %d\n",
1339 1340 1341
					  num, sublen);
				break;
			}
1342
			skb_queue_tail(&bus->glom, pnext);
1343 1344

			/* Adhere to start alignment requirements */
1345
			pkt_align(pnext, sublen, align);
1346 1347 1348 1349 1350 1351 1352
		}

		/* If all allocations succeeded, save packet chain
			 in bus structure */
		if (pnext) {
			brcmf_dbg(GLOM, "allocated %d-byte packet chain for %d subframes\n",
				  totlen, num);
1353 1354
			if (BRCMF_GLOM_ON() && bus->cur_read.len &&
			    totlen != bus->cur_read.len) {
1355
				brcmf_dbg(GLOM, "glomdesc mismatch: nextlen %d glomdesc %d rxseq %d\n",
1356
					  bus->cur_read.len, totlen, rxseq);
1357 1358 1359
			}
			pfirst = pnext = NULL;
		} else {
1360
			brcmf_sdbrcm_free_glom(bus);
1361 1362 1363 1364 1365 1366
			num = 0;
		}

		/* Done with descriptor packet */
		brcmu_pkt_buf_free_skb(bus->glomd);
		bus->glomd = NULL;
1367
		bus->cur_read.len = 0;
1368 1369 1370 1371
	}

	/* Ok -- either we just generated a packet chain,
		 or had one from before */
1372
	if (!skb_queue_empty(&bus->glom)) {
1373 1374
		if (BRCMF_GLOM_ON()) {
			brcmf_dbg(GLOM, "try superframe read, packet chain:\n");
1375
			skb_queue_walk(&bus->glom, pnext) {
1376 1377 1378 1379 1380 1381
				brcmf_dbg(GLOM, "    %p: %p len 0x%04x (%d)\n",
					  pnext, (u8 *) (pnext->data),
					  pnext->len, pnext->len);
			}
		}

1382
		pfirst = skb_peek(&bus->glom);
1383
		dlen = (u16) brcmf_sdbrcm_glom_len(bus);
1384 1385 1386 1387 1388

		/* Do an SDIO read for the superframe.  Configurable iovar to
		 * read directly into the chained packet, or allocate a large
		 * packet and and copy into the chain.
		 */
1389
		sdio_claim_host(bus->sdiodev->func[1]);
F
Franky Lin 已提交
1390 1391 1392
		errcode = brcmf_sdcard_recv_chain(bus->sdiodev,
				bus->sdiodev->sbwad,
				SDIO_FUNC_2, F2SYNC, &bus->glom);
1393
		sdio_release_host(bus->sdiodev->func[1]);
1394
		bus->sdcnt.f2rxdata++;
1395 1396 1397

		/* On failure, kill the superframe, allow a couple retries */
		if (errcode < 0) {
1398
			brcmf_err("glom read of %d bytes failed: %d\n",
1399 1400
				  dlen, errcode);

1401
			sdio_claim_host(bus->sdiodev->func[1]);
1402 1403 1404 1405 1406
			if (bus->glomerr++ < 3) {
				brcmf_sdbrcm_rxfail(bus, true, true);
			} else {
				bus->glomerr = 0;
				brcmf_sdbrcm_rxfail(bus, true, false);
1407
				bus->sdcnt.rxglomfail++;
1408
				brcmf_sdbrcm_free_glom(bus);
1409
			}
1410
			sdio_release_host(bus->sdiodev->func[1]);
1411 1412
			return 0;
		}
1413 1414 1415 1416

		brcmf_dbg_hex_dump(BRCMF_GLOM_ON(),
				   pfirst->data, min_t(int, pfirst->len, 48),
				   "SUPERFRAME:\n");
1417

1418 1419
		rd_new.seq_num = rxseq;
		rd_new.len = dlen;
1420
		sdio_claim_host(bus->sdiodev->func[1]);
1421 1422
		errcode = brcmf_sdio_hdparse(bus, pfirst->data, &rd_new,
					     BRCMF_SDIO_FT_SUPER);
1423
		sdio_release_host(bus->sdiodev->func[1]);
1424
		bus->cur_read.len = rd_new.len_nxtfrm << 4;
1425 1426

		/* Remove superframe header, remember offset */
1427 1428
		skb_pull(pfirst, rd_new.dat_offset);
		sfdoff = rd_new.dat_offset;
1429
		num = 0;
1430 1431

		/* Validate all the subframe headers */
1432 1433 1434 1435 1436
		skb_queue_walk(&bus->glom, pnext) {
			/* leave when invalid subframe is found */
			if (errcode)
				break;

1437 1438
			rd_new.len = pnext->len;
			rd_new.seq_num = rxseq++;
1439
			sdio_claim_host(bus->sdiodev->func[1]);
1440 1441
			errcode = brcmf_sdio_hdparse(bus, pnext->data, &rd_new,
						     BRCMF_SDIO_FT_SUB);
1442
			sdio_release_host(bus->sdiodev->func[1]);
1443
			brcmf_dbg_hex_dump(BRCMF_GLOM_ON(),
1444
					   pnext->data, 32, "subframe:\n");
1445

1446
			num++;
1447 1448 1449 1450 1451
		}

		if (errcode) {
			/* Terminate frame on error, request
				 a couple retries */
1452
			sdio_claim_host(bus->sdiodev->func[1]);
1453 1454 1455 1456 1457 1458 1459
			if (bus->glomerr++ < 3) {
				/* Restore superframe header space */
				skb_push(pfirst, sfdoff);
				brcmf_sdbrcm_rxfail(bus, true, true);
			} else {
				bus->glomerr = 0;
				brcmf_sdbrcm_rxfail(bus, true, false);
1460
				bus->sdcnt.rxglomfail++;
1461
				brcmf_sdbrcm_free_glom(bus);
1462
			}
1463
			sdio_release_host(bus->sdiodev->func[1]);
1464
			bus->cur_read.len = 0;
1465 1466 1467 1468 1469
			return 0;
		}

		/* Basic SD framing looks ok - process each packet (header) */

1470
		skb_queue_walk_safe(&bus->glom, pfirst, pnext) {
1471 1472
			dptr = (u8 *) (pfirst->data);
			sublen = get_unaligned_le16(dptr);
1473
			doff = brcmf_sdio_getdatoffset(&dptr[SDPCM_HWHDR_LEN]);
1474

1475
			brcmf_dbg_hex_dump(BRCMF_BYTES_ON() && BRCMF_DATA_ON(),
1476 1477
					   dptr, pfirst->len,
					   "Rx Subframe Data:\n");
1478 1479 1480 1481 1482

			__skb_trim(pfirst, sublen);
			skb_pull(pfirst, doff);

			if (pfirst->len == 0) {
1483
				skb_unlink(pfirst, &bus->glom);
1484 1485 1486 1487
				brcmu_pkt_buf_free_skb(pfirst);
				continue;
			}

1488 1489 1490 1491 1492 1493 1494
			brcmf_dbg_hex_dump(BRCMF_GLOM_ON(),
					   pfirst->data,
					   min_t(int, pfirst->len, 32),
					   "subframe %d to stack, %p (%p/%d) nxt/lnk %p/%p\n",
					   bus->glom.qlen, pfirst, pfirst->data,
					   pfirst->len, pfirst->next,
					   pfirst->prev);
1495
		}
1496
		/* sent any remaining packets up */
1497
		if (bus->glom.qlen)
1498
			brcmf_rx_frames(bus->sdiodev->dev, &bus->glom);
1499

1500 1501
		bus->sdcnt.rxglomframes++;
		bus->sdcnt.rxglompkts += bus->glom.qlen;
1502 1503 1504 1505
	}
	return num;
}

1506
static int brcmf_sdbrcm_dcmd_resp_wait(struct brcmf_sdio *bus, uint *condition,
1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527
					bool *pending)
{
	DECLARE_WAITQUEUE(wait, current);
	int timeout = msecs_to_jiffies(DCMD_RESP_TIMEOUT);

	/* Wait until control frame is available */
	add_wait_queue(&bus->dcmd_resp_wait, &wait);
	set_current_state(TASK_INTERRUPTIBLE);

	while (!(*condition) && (!signal_pending(current) && timeout))
		timeout = schedule_timeout(timeout);

	if (signal_pending(current))
		*pending = true;

	set_current_state(TASK_RUNNING);
	remove_wait_queue(&bus->dcmd_resp_wait, &wait);

	return timeout;
}

1528
static int brcmf_sdbrcm_dcmd_resp_wake(struct brcmf_sdio *bus)
1529 1530 1531 1532 1533 1534 1535
{
	if (waitqueue_active(&bus->dcmd_resp_wait))
		wake_up_interruptible(&bus->dcmd_resp_wait);

	return 0;
}
static void
1536
brcmf_sdbrcm_read_control(struct brcmf_sdio *bus, u8 *hdr, uint len, uint doff)
1537 1538
{
	uint rdlen, pad;
1539
	u8 *buf = NULL, *rbuf;
1540 1541 1542 1543
	int sdret;

	brcmf_dbg(TRACE, "Enter\n");

1544 1545
	if (bus->rxblen)
		buf = vzalloc(bus->rxblen);
1546
	if (!buf)
1547
		goto done;
1548

1549 1550
	rbuf = bus->rxbuf;
	pad = ((unsigned long)rbuf % BRCMF_SDALIGN);
1551
	if (pad)
1552
		rbuf += (BRCMF_SDALIGN - pad);
1553 1554

	/* Copy the already-read portion over */
1555
	memcpy(buf, hdr, BRCMF_FIRSTREAD);
1556 1557 1558 1559 1560 1561 1562 1563
	if (len <= BRCMF_FIRSTREAD)
		goto gotpkt;

	/* Raise rdlen to next SDIO block to avoid tail command */
	rdlen = len - BRCMF_FIRSTREAD;
	if (bus->roundup && bus->blocksize && (rdlen > bus->blocksize)) {
		pad = bus->blocksize - (rdlen % bus->blocksize);
		if ((pad <= bus->roundup) && (pad < bus->blocksize) &&
1564
		    ((len + pad) < bus->sdiodev->bus_if->maxctl))
1565 1566 1567 1568 1569 1570 1571 1572 1573 1574
			rdlen += pad;
	} else if (rdlen % BRCMF_SDALIGN) {
		rdlen += BRCMF_SDALIGN - (rdlen % BRCMF_SDALIGN);
	}

	/* Satisfy length-alignment requirements */
	if (rdlen & (ALIGNMENT - 1))
		rdlen = roundup(rdlen, ALIGNMENT);

	/* Drop if the read is too big or it exceeds our maximum */
1575
	if ((rdlen + BRCMF_FIRSTREAD) > bus->sdiodev->bus_if->maxctl) {
1576
		brcmf_err("%d-byte control read exceeds %d-byte buffer\n",
1577
			  rdlen, bus->sdiodev->bus_if->maxctl);
1578 1579 1580 1581
		brcmf_sdbrcm_rxfail(bus, false, false);
		goto done;
	}

1582
	if ((len - doff) > bus->sdiodev->bus_if->maxctl) {
1583
		brcmf_err("%d-byte ctl frame (%d-byte ctl data) exceeds %d-byte limit\n",
1584
			  len, len - doff, bus->sdiodev->bus_if->maxctl);
1585
		bus->sdcnt.rx_toolong++;
1586 1587 1588 1589
		brcmf_sdbrcm_rxfail(bus, false, false);
		goto done;
	}

1590
	/* Read remain of frame body */
1591 1592 1593
	sdret = brcmf_sdcard_recv_buf(bus->sdiodev,
				bus->sdiodev->sbwad,
				SDIO_FUNC_2,
1594
				F2SYNC, rbuf, rdlen);
1595
	bus->sdcnt.f2rxdata++;
1596 1597 1598

	/* Control frame failures need retransmission */
	if (sdret < 0) {
1599
		brcmf_err("read %d control bytes failed: %d\n",
1600
			  rdlen, sdret);
1601
		bus->sdcnt.rxc_errors++;
1602 1603
		brcmf_sdbrcm_rxfail(bus, true, true);
		goto done;
1604 1605
	} else
		memcpy(buf + BRCMF_FIRSTREAD, rbuf, rdlen);
1606 1607 1608

gotpkt:

1609
	brcmf_dbg_hex_dump(BRCMF_BYTES_ON() && BRCMF_CTL_ON(),
1610
			   buf, len, "RxCtrl:\n");
1611 1612

	/* Point to valid data and indicate its length */
1613 1614
	spin_lock_bh(&bus->rxctl_lock);
	if (bus->rxctl) {
1615
		brcmf_err("last control frame is being processed.\n");
1616 1617 1618 1619 1620 1621
		spin_unlock_bh(&bus->rxctl_lock);
		vfree(buf);
		goto done;
	}
	bus->rxctl = buf + doff;
	bus->rxctl_orig = buf;
1622
	bus->rxlen = len - doff;
1623
	spin_unlock_bh(&bus->rxctl_lock);
1624 1625 1626 1627 1628 1629 1630

done:
	/* Awake any waiters */
	brcmf_sdbrcm_dcmd_resp_wake(bus);
}

/* Pad read to blocksize for efficiency */
1631
static void brcmf_pad(struct brcmf_sdio *bus, u16 *pad, u16 *rdlen)
1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642
{
	if (bus->roundup && bus->blocksize && *rdlen > bus->blocksize) {
		*pad = bus->blocksize - (*rdlen % bus->blocksize);
		if (*pad <= bus->roundup && *pad < bus->blocksize &&
		    *rdlen + *pad + BRCMF_FIRSTREAD < MAX_RX_DATASZ)
			*rdlen += *pad;
	} else if (*rdlen % BRCMF_SDALIGN) {
		*rdlen += BRCMF_SDALIGN - (*rdlen % BRCMF_SDALIGN);
	}
}

1643
static uint brcmf_sdio_readframes(struct brcmf_sdio *bus, uint maxframes)
1644 1645
{
	struct sk_buff *pkt;		/* Packet for event or data frames */
1646
	struct sk_buff_head pktlist;	/* needed for bus interface */
1647 1648
	u16 pad;		/* Number of pad bytes to read */
	uint rxleft = 0;	/* Remaining number of frames allowed */
1649
	int ret;		/* Return code from calls */
1650
	uint rxcount = 0;	/* Total frames read */
1651
	struct brcmf_sdio_hdrinfo *rd = &bus->cur_read, rd_new;
1652
	u8 head_read = 0;
1653 1654 1655 1656

	brcmf_dbg(TRACE, "Enter\n");

	/* Not finished unless we encounter no more frames indication */
1657
	bus->rxpending = true;
1658

1659
	for (rd->seq_num = bus->rx_seq, rxleft = maxframes;
1660
	     !bus->rxskip && rxleft &&
1661
	     bus->sdiodev->bus_if->state != BRCMF_BUS_DOWN;
1662
	     rd->seq_num++, rxleft--) {
1663 1664

		/* Handle glomming separately */
1665
		if (bus->glomd || !skb_queue_empty(&bus->glom)) {
1666 1667
			u8 cnt;
			brcmf_dbg(GLOM, "calling rxglom: glomd %p, glom %p\n",
1668
				  bus->glomd, skb_peek(&bus->glom));
1669
			cnt = brcmf_sdbrcm_rxglom(bus, rd->seq_num);
1670
			brcmf_dbg(GLOM, "rxglom returned %d\n", cnt);
1671
			rd->seq_num += cnt - 1;
1672 1673 1674 1675
			rxleft = (rxleft > cnt) ? (rxleft - cnt) : 1;
			continue;
		}

1676 1677
		rd->len_left = rd->len;
		/* read header first for unknow frame length */
1678
		sdio_claim_host(bus->sdiodev->func[1]);
1679
		if (!rd->len) {
1680
			ret = brcmf_sdcard_recv_buf(bus->sdiodev,
1681 1682 1683 1684 1685
						      bus->sdiodev->sbwad,
						      SDIO_FUNC_2, F2SYNC,
						      bus->rxhdr,
						      BRCMF_FIRSTREAD);
			bus->sdcnt.f2rxhdrs++;
1686
			if (ret < 0) {
1687
				brcmf_err("RXHEADER FAILED: %d\n",
1688
					  ret);
1689 1690
				bus->sdcnt.rx_hdrfail++;
				brcmf_sdbrcm_rxfail(bus, true, true);
1691
				sdio_release_host(bus->sdiodev->func[1]);
1692 1693 1694
				continue;
			}

1695
			brcmf_dbg_hex_dump(BRCMF_BYTES_ON() || BRCMF_HDRS_ON(),
1696 1697
					   bus->rxhdr, SDPCM_HDRLEN,
					   "RxHdr:\n");
1698

1699 1700
			if (brcmf_sdio_hdparse(bus, bus->rxhdr, rd,
					       BRCMF_SDIO_FT_NORMAL)) {
1701
				sdio_release_host(bus->sdiodev->func[1]);
1702 1703 1704 1705
				if (!bus->rxpending)
					break;
				else
					continue;
1706 1707
			}

1708 1709 1710 1711 1712 1713 1714 1715 1716
			if (rd->channel == SDPCM_CONTROL_CHANNEL) {
				brcmf_sdbrcm_read_control(bus, bus->rxhdr,
							  rd->len,
							  rd->dat_offset);
				/* prepare the descriptor for the next read */
				rd->len = rd->len_nxtfrm << 4;
				rd->len_nxtfrm = 0;
				/* treat all packet as event if we don't know */
				rd->channel = SDPCM_EVENT_CHANNEL;
1717
				sdio_release_host(bus->sdiodev->func[1]);
1718 1719
				continue;
			}
1720 1721 1722
			rd->len_left = rd->len > BRCMF_FIRSTREAD ?
				       rd->len - BRCMF_FIRSTREAD : 0;
			head_read = BRCMF_FIRSTREAD;
1723 1724
		}

1725
		brcmf_pad(bus, &pad, &rd->len_left);
1726

1727 1728
		pkt = brcmu_pkt_buf_get_skb(rd->len_left + head_read +
					    BRCMF_SDALIGN);
1729 1730
		if (!pkt) {
			/* Give up on data, request rtx of events */
1731
			brcmf_err("brcmu_pkt_buf_get_skb failed\n");
1732 1733
			brcmf_sdbrcm_rxfail(bus, false,
					    RETRYCHAN(rd->channel));
1734
			sdio_release_host(bus->sdiodev->func[1]);
1735 1736
			continue;
		}
1737 1738
		skb_pull(pkt, head_read);
		pkt_align(pkt, rd->len_left, BRCMF_SDALIGN);
1739

1740
		ret = brcmf_sdcard_recv_pkt(bus->sdiodev, bus->sdiodev->sbwad,
1741
					      SDIO_FUNC_2, F2SYNC, pkt);
1742
		bus->sdcnt.f2rxdata++;
1743
		sdio_release_host(bus->sdiodev->func[1]);
1744

1745
		if (ret < 0) {
1746
			brcmf_err("read %d bytes from channel %d failed: %d\n",
1747
				  rd->len, rd->channel, ret);
1748
			brcmu_pkt_buf_free_skb(pkt);
1749
			sdio_claim_host(bus->sdiodev->func[1]);
1750 1751
			brcmf_sdbrcm_rxfail(bus, true,
					    RETRYCHAN(rd->channel));
1752
			sdio_release_host(bus->sdiodev->func[1]);
1753 1754 1755
			continue;
		}

1756 1757 1758 1759 1760 1761 1762
		if (head_read) {
			skb_push(pkt, head_read);
			memcpy(pkt->data, bus->rxhdr, head_read);
			head_read = 0;
		} else {
			memcpy(bus->rxhdr, pkt->data, SDPCM_HDRLEN);
			rd_new.seq_num = rd->seq_num;
1763
			sdio_claim_host(bus->sdiodev->func[1]);
1764 1765
			if (brcmf_sdio_hdparse(bus, bus->rxhdr, &rd_new,
					       BRCMF_SDIO_FT_NORMAL)) {
1766 1767 1768 1769 1770
				rd->len = 0;
				brcmu_pkt_buf_free_skb(pkt);
			}
			bus->sdcnt.rx_readahead_cnt++;
			if (rd->len != roundup(rd_new.len, 16)) {
1771
				brcmf_err("frame length mismatch:read %d, should be %d\n",
1772 1773 1774 1775
					  rd->len,
					  roundup(rd_new.len, 16) >> 4);
				rd->len = 0;
				brcmf_sdbrcm_rxfail(bus, true, true);
1776
				sdio_release_host(bus->sdiodev->func[1]);
1777 1778 1779
				brcmu_pkt_buf_free_skb(pkt);
				continue;
			}
1780
			sdio_release_host(bus->sdiodev->func[1]);
1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791
			rd->len_nxtfrm = rd_new.len_nxtfrm;
			rd->channel = rd_new.channel;
			rd->dat_offset = rd_new.dat_offset;

			brcmf_dbg_hex_dump(!(BRCMF_BYTES_ON() &&
					     BRCMF_DATA_ON()) &&
					   BRCMF_HDRS_ON(),
					   bus->rxhdr, SDPCM_HDRLEN,
					   "RxHdr:\n");

			if (rd_new.channel == SDPCM_CONTROL_CHANNEL) {
1792
				brcmf_err("readahead on control packet %d?\n",
1793 1794 1795
					  rd_new.seq_num);
				/* Force retry w/normal header read */
				rd->len = 0;
1796
				sdio_claim_host(bus->sdiodev->func[1]);
1797
				brcmf_sdbrcm_rxfail(bus, false, true);
1798
				sdio_release_host(bus->sdiodev->func[1]);
1799 1800 1801 1802
				brcmu_pkt_buf_free_skb(pkt);
				continue;
			}
		}
1803

1804
		brcmf_dbg_hex_dump(BRCMF_BYTES_ON() && BRCMF_DATA_ON(),
1805
				   pkt->data, rd->len, "Rx Data:\n");
1806 1807

		/* Save superframe descriptor and allocate packet frame */
1808
		if (rd->channel == SDPCM_GLOM_CHANNEL) {
1809
			if (SDPCM_GLOMDESC(&bus->rxhdr[SDPCM_HWHDR_LEN])) {
1810
				brcmf_dbg(GLOM, "glom descriptor, %d bytes:\n",
1811
					  rd->len);
1812
				brcmf_dbg_hex_dump(BRCMF_GLOM_ON(),
1813
						   pkt->data, rd->len,
1814
						   "Glom Data:\n");
1815
				__skb_trim(pkt, rd->len);
1816 1817 1818
				skb_pull(pkt, SDPCM_HDRLEN);
				bus->glomd = pkt;
			} else {
1819
				brcmf_err("%s: glom superframe w/o "
1820
					  "descriptor!\n", __func__);
1821
				sdio_claim_host(bus->sdiodev->func[1]);
1822
				brcmf_sdbrcm_rxfail(bus, false, false);
1823
				sdio_release_host(bus->sdiodev->func[1]);
1824
			}
1825 1826 1827 1828 1829
			/* prepare the descriptor for the next read */
			rd->len = rd->len_nxtfrm << 4;
			rd->len_nxtfrm = 0;
			/* treat all packet as event if we don't know */
			rd->channel = SDPCM_EVENT_CHANNEL;
1830 1831 1832 1833
			continue;
		}

		/* Fill in packet len and prio, deliver upward */
1834 1835 1836 1837 1838 1839 1840 1841
		__skb_trim(pkt, rd->len);
		skb_pull(pkt, rd->dat_offset);

		/* prepare the descriptor for the next read */
		rd->len = rd->len_nxtfrm << 4;
		rd->len_nxtfrm = 0;
		/* treat all packet as event if we don't know */
		rd->channel = SDPCM_EVENT_CHANNEL;
1842 1843 1844 1845 1846 1847

		if (pkt->len == 0) {
			brcmu_pkt_buf_free_skb(pkt);
			continue;
		}

1848 1849
		skb_queue_head_init(&pktlist);
		skb_queue_tail(&pktlist, pkt);
1850
		brcmf_rx_frames(bus->sdiodev->dev, &pktlist);
1851
	}
1852

1853 1854 1855
	rxcount = maxframes - rxleft;
	/* Message if we hit the limit */
	if (!rxleft)
1856
		brcmf_dbg(DATA, "hit rx limit of %d frames\n", maxframes);
1857 1858 1859 1860
	else
		brcmf_dbg(DATA, "processed %d frames\n", rxcount);
	/* Back off rxseq if awaiting rtx, update rx_seq */
	if (bus->rxskip)
1861 1862
		rd->seq_num--;
	bus->rx_seq = rd->seq_num;
1863 1864 1865 1866 1867

	return rxcount;
}

static void
1868
brcmf_sdbrcm_wait_event_wakeup(struct brcmf_sdio *bus)
1869 1870 1871 1872 1873 1874
{
	if (waitqueue_active(&bus->ctrl_wait))
		wake_up_interruptible(&bus->ctrl_wait);
	return;
}

1875 1876 1877 1878
/**
 * struct brcmf_skbuff_cb reserves first two bytes in sk_buff::cb for
 * bus layer usage.
 */
1879
/* flag marking a dummy skb added for DMA alignment requirement */
1880
#define ALIGN_SKB_FLAG		0x8000
1881
/* bit mask of data length chopped from the previous packet */
1882 1883
#define ALIGN_SKB_CHOP_LEN_MASK	0x7fff

1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898
/**
 * brcmf_sdio_txpkt_prep - packet preparation for transmit
 * @bus: brcmf_sdio structure pointer
 * @pktq: packet list pointer
 * @chan: virtual channel to transmit the packet
 *
 * Processes to be applied to the packet
 *	- Align data buffer pointer
 *	- Align data buffer length
 *	- Prepare header
 * Return: negative value if there is error
 */
static int
brcmf_sdio_txpkt_prep(struct brcmf_sdio *bus, struct sk_buff_head *pktq,
		      uint chan)
1899
{
1900
	u16 head_pad, tail_pad, tail_chop, head_align, sg_align;
1901 1902 1903 1904
	int ntail;
	struct sk_buff *pkt_next, *pkt_new;
	u8 *dat_buf;
	unsigned blksize = bus->sdiodev->func[SDIO_FUNC_2]->cur_blksize;
1905
	struct brcmf_sdio_hdrinfo hd_info = {0};
1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917

	/* SDIO ADMA requires at least 32 bit alignment */
	head_align = 4;
	sg_align = 4;
	if (bus->sdiodev->pdata) {
		head_align = bus->sdiodev->pdata->sd_head_align > 4 ?
			     bus->sdiodev->pdata->sd_head_align : 4;
		sg_align = bus->sdiodev->pdata->sd_sgentry_align > 4 ?
			   bus->sdiodev->pdata->sd_sgentry_align : 4;
	}
	/* sg entry alignment should be a divisor of block size */
	WARN_ON(blksize % sg_align);
1918

1919 1920
	pkt_next = pktq->next;
	dat_buf = (u8 *)(pkt_next->data);
1921

1922 1923 1924 1925
	/* Check head padding */
	head_pad = ((unsigned long)dat_buf % head_align);
	if (head_pad) {
		if (skb_headroom(pkt_next) < head_pad) {
1926
			bus->sdiodev->bus_if->tx_realloc++;
1927 1928 1929
			head_pad = 0;
			if (skb_cow(pkt_next, head_pad))
				return -ENOMEM;
1930
		}
1931 1932
		skb_push(pkt_next, head_pad);
		dat_buf = (u8 *)(pkt_next->data);
1933
		memset(dat_buf, 0, head_pad + bus->tx_hdrlen);
1934 1935
	}

1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947
	/* Check tail padding */
	pkt_new = NULL;
	tail_chop = pkt_next->len % sg_align;
	tail_pad = sg_align - tail_chop;
	tail_pad += blksize - (pkt_next->len + tail_pad) % blksize;
	if (skb_tailroom(pkt_next) < tail_pad && pkt_next->len > blksize) {
		pkt_new = brcmu_pkt_buf_get_skb(tail_pad + tail_chop);
		if (pkt_new == NULL)
			return -ENOMEM;
		memcpy(pkt_new->data,
		       pkt_next->data + pkt_next->len - tail_chop,
		       tail_chop);
1948
		*(u32 *)(pkt_new->cb) = ALIGN_SKB_FLAG + tail_chop;
1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961
		skb_trim(pkt_next, pkt_next->len - tail_chop);
		__skb_queue_after(pktq, pkt_next, pkt_new);
	} else {
		ntail = pkt_next->data_len + tail_pad -
			(pkt_next->end - pkt_next->tail);
		if (skb_cloned(pkt_next) || ntail > 0)
			if (pskb_expand_head(pkt_next, 0, ntail, GFP_ATOMIC))
				return -ENOMEM;
		if (skb_linearize(pkt_next))
			return -ENOMEM;
		dat_buf = (u8 *)(pkt_next->data);
		__skb_put(pkt_next, tail_pad);
	}
1962

1963 1964
	/* Now prep the header */
	if (pkt_new)
1965
		hd_info.len = pkt_next->len + tail_chop;
1966
	else
1967 1968
		hd_info.len = pkt_next->len - tail_pad;
	hd_info.channel = chan;
1969
	hd_info.dat_offset = head_pad + bus->tx_hdrlen;
1970
	brcmf_sdio_hdpack(bus, dat_buf, &hd_info);
1971 1972 1973 1974

	if (BRCMF_BYTES_ON() &&
	    ((BRCMF_CTL_ON() && chan == SDPCM_CONTROL_CHANNEL) ||
	     (BRCMF_DATA_ON() && chan != SDPCM_CONTROL_CHANNEL)))
1975
		brcmf_dbg_hex_dump(true, pkt_next, hd_info.len, "Tx Frame:\n");
1976
	else if (BRCMF_HDRS_ON())
1977
		brcmf_dbg_hex_dump(true, pkt_next, head_pad + bus->tx_hdrlen,
1978
				   "Tx Header:\n");
1979

1980 1981
	return 0;
}
1982

1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001
/**
 * brcmf_sdio_txpkt_postp - packet post processing for transmit
 * @bus: brcmf_sdio structure pointer
 * @pktq: packet list pointer
 *
 * Processes to be applied to the packet
 *	- Remove head padding
 *	- Remove tail padding
 */
static void
brcmf_sdio_txpkt_postp(struct brcmf_sdio *bus, struct sk_buff_head *pktq)
{
	u8 *hdr;
	u32 dat_offset;
	u32 dummy_flags, chop_len;
	struct sk_buff *pkt_next, *tmp, *pkt_prev;

	skb_queue_walk_safe(pktq, pkt_next, tmp) {
		dummy_flags = *(u32 *)(pkt_next->cb);
2002 2003
		if (dummy_flags & ALIGN_SKB_FLAG) {
			chop_len = dummy_flags & ALIGN_SKB_CHOP_LEN_MASK;
2004 2005 2006 2007 2008 2009 2010 2011 2012
			if (chop_len) {
				pkt_prev = pkt_next->prev;
				memcpy(pkt_prev->data + pkt_prev->len,
				       pkt_next->data, chop_len);
				skb_put(pkt_prev, chop_len);
			}
			__skb_unlink(pkt_next, pktq);
			brcmu_pkt_buf_free_skb(pkt_next);
		} else {
2013
			hdr = pkt_next->data + SDPCM_HWHDR_LEN;
2014 2015 2016 2017 2018
			dat_offset = le32_to_cpu(*(__le32 *)hdr);
			dat_offset = (dat_offset & SDPCM_DOFFSET_MASK) >>
				     SDPCM_DOFFSET_SHIFT;
			skb_pull(pkt_next, dat_offset);
		}
2019
	}
2020
}
2021

2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037
/* Writes a HW/SW header into the packet and sends it. */
/* Assumes: (a) header space already there, (b) caller holds lock */
static int brcmf_sdbrcm_txpkt(struct brcmf_sdio *bus, struct sk_buff *pkt,
			      uint chan)
{
	int ret;
	int i;
	struct sk_buff_head localq;

	brcmf_dbg(TRACE, "Enter\n");

	__skb_queue_head_init(&localq);
	__skb_queue_tail(&localq, pkt);
	ret = brcmf_sdio_txpkt_prep(bus, &localq, chan);
	if (ret)
		goto done;
2038

2039
	sdio_claim_host(bus->sdiodev->func[1]);
2040
	ret = brcmf_sdcard_send_pkt(bus->sdiodev, bus->sdiodev->sbwad,
2041
				    SDIO_FUNC_2, F2SYNC, &localq);
2042
	bus->sdcnt.f2txdata++;
2043 2044 2045 2046 2047

	if (ret < 0) {
		/* On failure, abort the command and terminate the frame */
		brcmf_dbg(INFO, "sdio error %d, abort command and terminate frame\n",
			  ret);
2048
		bus->sdcnt.tx_sderrs++;
2049 2050

		brcmf_sdcard_abort(bus->sdiodev, SDIO_FUNC_2);
2051 2052
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_FRAMECTRL,
				 SFC_WF_TERM, NULL);
2053
		bus->sdcnt.f1regdata++;
2054 2055 2056

		for (i = 0; i < 3; i++) {
			u8 hi, lo;
2057 2058 2059 2060
			hi = brcmf_sdio_regrb(bus->sdiodev,
					      SBSDIO_FUNC1_WFRAMEBCHI, NULL);
			lo = brcmf_sdio_regrb(bus->sdiodev,
					      SBSDIO_FUNC1_WFRAMEBCLO, NULL);
2061
			bus->sdcnt.f1regdata += 2;
2062 2063 2064 2065 2066
			if ((hi == 0) && (lo == 0))
				break;
		}

	}
2067
	sdio_release_host(bus->sdiodev->func[1]);
2068
	if (ret == 0)
2069
		bus->tx_seq = (bus->tx_seq + 1) % SDPCM_SEQ_WRAP;
2070 2071

done:
2072 2073
	brcmf_sdio_txpkt_postp(bus, &localq);
	__skb_dequeue_tail(&localq);
2074
	brcmf_txcomplete(bus->sdiodev->dev, pkt, ret == 0);
2075 2076 2077
	return ret;
}

2078
static uint brcmf_sdbrcm_sendfromq(struct brcmf_sdio *bus, uint maxframes)
2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099
{
	struct sk_buff *pkt;
	u32 intstatus = 0;
	int ret = 0, prec_out;
	uint cnt = 0;
	u8 tx_prec_map;

	brcmf_dbg(TRACE, "Enter\n");

	tx_prec_map = ~bus->flowcontrol;

	/* Send frames until the limit or some other event */
	for (cnt = 0; (cnt < maxframes) && data_ok(bus); cnt++) {
		spin_lock_bh(&bus->txqlock);
		pkt = brcmu_pktq_mdeq(&bus->txq, tx_prec_map, &prec_out);
		if (pkt == NULL) {
			spin_unlock_bh(&bus->txqlock);
			break;
		}
		spin_unlock_bh(&bus->txqlock);

2100
		ret = brcmf_sdbrcm_txpkt(bus, pkt, SDPCM_DATA_CHANNEL);
2101 2102 2103 2104

		/* In poll mode, need to check for other events */
		if (!bus->intr && cnt) {
			/* Check device status, signal pending interrupt */
2105
			sdio_claim_host(bus->sdiodev->func[1]);
2106 2107 2108
			ret = r_sdreg32(bus, &intstatus,
					offsetof(struct sdpcmd_regs,
						 intstatus));
2109
			sdio_release_host(bus->sdiodev->func[1]);
2110
			bus->sdcnt.f2txdata++;
2111
			if (ret != 0)
2112 2113
				break;
			if (intstatus & bus->hostintmask)
2114
				atomic_set(&bus->ipend, 1);
2115 2116 2117 2118
		}
	}

	/* Deflow-control stack if needed */
2119
	if ((bus->sdiodev->bus_if->state == BRCMF_BUS_DATA) &&
2120
	    bus->txoff && (pktq_len(&bus->txq) < TXLOW)) {
2121 2122
		bus->txoff = false;
		brcmf_txflowblock(bus->sdiodev->dev, false);
2123
	}
2124 2125 2126 2127

	return cnt;
}

2128 2129 2130 2131 2132 2133
static void brcmf_sdbrcm_bus_stop(struct device *dev)
{
	u32 local_hostintmask;
	u8 saveclk;
	int err;
	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
2134
	struct brcmf_sdio_dev *sdiodev = bus_if->bus_priv.sdio;
2135 2136 2137 2138 2139 2140 2141 2142 2143 2144
	struct brcmf_sdio *bus = sdiodev->bus;

	brcmf_dbg(TRACE, "Enter\n");

	if (bus->watchdog_tsk) {
		send_sig(SIGTERM, bus->watchdog_tsk, 1);
		kthread_stop(bus->watchdog_tsk);
		bus->watchdog_tsk = NULL;
	}

2145
	sdio_claim_host(bus->sdiodev->func[1]);
2146 2147

	/* Enable clock for device interrupts */
2148
	brcmf_sdbrcm_bus_sleep(bus, false, false);
2149 2150

	/* Disable and clear interrupts at the chip level also */
2151
	w_sdreg32(bus, 0, offsetof(struct sdpcmd_regs, hostintmask));
2152 2153 2154 2155 2156 2157 2158
	local_hostintmask = bus->hostintmask;
	bus->hostintmask = 0;

	/* Change our idea of bus state */
	bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;

	/* Force clocks on backplane to be sure F2 interrupt propagates */
2159 2160
	saveclk = brcmf_sdio_regrb(bus->sdiodev,
				   SBSDIO_FUNC1_CHIPCLKCSR, &err);
2161
	if (!err) {
2162 2163
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_CHIPCLKCSR,
				 (saveclk | SBSDIO_FORCE_HT), &err);
2164 2165
	}
	if (err)
2166
		brcmf_err("Failed to force clock for F2: err %d\n", err);
2167 2168 2169

	/* Turn off the bus (F2), free any pending packets */
	brcmf_dbg(INTR, "disable SDIO interrupts\n");
2170 2171
	brcmf_sdio_regwb(bus->sdiodev, SDIO_CCCR_IOEx, SDIO_FUNC_ENABLE_1,
			 NULL);
2172 2173 2174

	/* Clear any pending interrupts now that F2 is disabled */
	w_sdreg32(bus, local_hostintmask,
2175
		  offsetof(struct sdpcmd_regs, intstatus));
2176 2177 2178

	/* Turn off the backplane clock (only) */
	brcmf_sdbrcm_clkctl(bus, CLK_SDONLY, false);
2179
	sdio_release_host(bus->sdiodev->func[1]);
2180 2181 2182 2183 2184 2185 2186 2187 2188 2189

	/* Clear the data packet queues */
	brcmu_pktq_flush(&bus->txq, true, NULL, NULL);

	/* Clear any held glomming stuff */
	if (bus->glomd)
		brcmu_pkt_buf_free_skb(bus->glomd);
	brcmf_sdbrcm_free_glom(bus);

	/* Clear rx control and wake any waiters */
2190
	spin_lock_bh(&bus->rxctl_lock);
2191
	bus->rxlen = 0;
2192
	spin_unlock_bh(&bus->rxctl_lock);
2193 2194 2195 2196 2197 2198 2199
	brcmf_sdbrcm_dcmd_resp_wake(bus);

	/* Reset some F2 state stuff */
	bus->rxskip = false;
	bus->tx_seq = bus->rx_seq = 0;
}

2200 2201 2202 2203
static inline void brcmf_sdbrcm_clrintr(struct brcmf_sdio *bus)
{
	unsigned long flags;

2204 2205 2206 2207 2208 2209 2210
	if (bus->sdiodev->oob_irq_requested) {
		spin_lock_irqsave(&bus->sdiodev->irq_en_lock, flags);
		if (!bus->sdiodev->irq_en && !atomic_read(&bus->ipend)) {
			enable_irq(bus->sdiodev->pdata->oob_irq_nr);
			bus->sdiodev->irq_en = true;
		}
		spin_unlock_irqrestore(&bus->sdiodev->irq_en_lock, flags);
2211 2212 2213
	}
}

2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248
static int brcmf_sdio_intr_rstatus(struct brcmf_sdio *bus)
{
	u8 idx;
	u32 addr;
	unsigned long val;
	int n, ret;

	idx = brcmf_sdio_chip_getinfidx(bus->ci, BCMA_CORE_SDIO_DEV);
	addr = bus->ci->c_inf[idx].base +
	       offsetof(struct sdpcmd_regs, intstatus);

	ret = brcmf_sdio_regrw_helper(bus->sdiodev, addr, &val, false);
	bus->sdcnt.f1regdata++;
	if (ret != 0)
		val = 0;

	val &= bus->hostintmask;
	atomic_set(&bus->fcstate, !!(val & I_HMB_FC_STATE));

	/* Clear interrupts */
	if (val) {
		ret = brcmf_sdio_regrw_helper(bus->sdiodev, addr, &val, true);
		bus->sdcnt.f1regdata++;
	}

	if (ret) {
		atomic_set(&bus->intstatus, 0);
	} else if (val) {
		for_each_set_bit(n, &val, 32)
			set_bit(n, (unsigned long *)&bus->intstatus.counter);
	}

	return ret;
}

2249
static void brcmf_sdbrcm_dpc(struct brcmf_sdio *bus)
2250
{
2251 2252
	u32 newstatus = 0;
	unsigned long intstatus;
2253 2254 2255
	uint rxlimit = bus->rxbound;	/* Rx frames to read before resched */
	uint txlimit = bus->txbound;	/* Tx frames to send before resched */
	uint framecnt = 0;	/* Temporary counter of tx/rx frames */
2256
	int err = 0, n;
2257 2258 2259

	brcmf_dbg(TRACE, "Enter\n");

2260
	sdio_claim_host(bus->sdiodev->func[1]);
2261 2262

	/* If waiting for HTAVAIL, check status */
2263
	if (!bus->sr_enabled && bus->clkstate == CLK_PENDING) {
2264 2265
		u8 clkctl, devctl = 0;

J
Joe Perches 已提交
2266
#ifdef DEBUG
2267
		/* Check for inconsistent device control */
2268 2269
		devctl = brcmf_sdio_regrb(bus->sdiodev,
					  SBSDIO_DEVICE_CTL, &err);
2270
		if (err) {
2271
			brcmf_err("error reading DEVCTL: %d\n", err);
2272
			bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;
2273
		}
J
Joe Perches 已提交
2274
#endif				/* DEBUG */
2275 2276

		/* Read CSR, if clock on switch to AVAIL, else ignore */
2277 2278
		clkctl = brcmf_sdio_regrb(bus->sdiodev,
					  SBSDIO_FUNC1_CHIPCLKCSR, &err);
2279
		if (err) {
2280
			brcmf_err("error reading CSR: %d\n",
2281
				  err);
2282
			bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;
2283 2284
		}

2285
		brcmf_dbg(SDIO, "DPC: PENDING, devctl 0x%02x clkctl 0x%02x\n",
2286 2287 2288
			  devctl, clkctl);

		if (SBSDIO_HTAV(clkctl)) {
2289 2290
			devctl = brcmf_sdio_regrb(bus->sdiodev,
						  SBSDIO_DEVICE_CTL, &err);
2291
			if (err) {
2292
				brcmf_err("error reading DEVCTL: %d\n",
2293
					  err);
2294
				bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;
2295 2296
			}
			devctl &= ~SBSDIO_DEVCTL_CA_INT_ONLY;
2297 2298
			brcmf_sdio_regwb(bus->sdiodev, SBSDIO_DEVICE_CTL,
					 devctl, &err);
2299
			if (err) {
2300
				brcmf_err("error writing DEVCTL: %d\n",
2301
					  err);
2302
				bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;
2303 2304 2305 2306 2307 2308
			}
			bus->clkstate = CLK_AVAIL;
		}
	}

	/* Make sure backplane clock is on */
2309
	brcmf_sdbrcm_bus_sleep(bus, false, true);
2310 2311

	/* Pending interrupt indicates new device status */
2312 2313
	if (atomic_read(&bus->ipend) > 0) {
		atomic_set(&bus->ipend, 0);
2314
		err = brcmf_sdio_intr_rstatus(bus);
2315 2316
	}

2317 2318
	/* Start with leftover status bits */
	intstatus = atomic_xchg(&bus->intstatus, 0);
2319 2320 2321 2322 2323 2324 2325

	/* Handle flow-control change: read new state in case our ack
	 * crossed another change interrupt.  If change still set, assume
	 * FC ON for safety, let next loop through do the debounce.
	 */
	if (intstatus & I_HMB_FC_CHANGE) {
		intstatus &= ~I_HMB_FC_CHANGE;
2326 2327
		err = w_sdreg32(bus, I_HMB_FC_CHANGE,
				offsetof(struct sdpcmd_regs, intstatus));
2328

2329 2330
		err = r_sdreg32(bus, &newstatus,
				offsetof(struct sdpcmd_regs, intstatus));
2331
		bus->sdcnt.f1regdata += 2;
2332 2333
		atomic_set(&bus->fcstate,
			   !!(newstatus & (I_HMB_FC_STATE | I_HMB_FC_CHANGE)));
2334 2335 2336 2337 2338 2339 2340 2341 2342
		intstatus |= (newstatus & bus->hostintmask);
	}

	/* Handle host mailbox indication */
	if (intstatus & I_HMB_HOST_INT) {
		intstatus &= ~I_HMB_HOST_INT;
		intstatus |= brcmf_sdbrcm_hostmail(bus);
	}

2343
	sdio_release_host(bus->sdiodev->func[1]);
2344

2345 2346
	/* Generally don't ask for these, can get CRC errors... */
	if (intstatus & I_WR_OOSYNC) {
2347
		brcmf_err("Dongle reports WR_OOSYNC\n");
2348 2349 2350 2351
		intstatus &= ~I_WR_OOSYNC;
	}

	if (intstatus & I_RD_OOSYNC) {
2352
		brcmf_err("Dongle reports RD_OOSYNC\n");
2353 2354 2355 2356
		intstatus &= ~I_RD_OOSYNC;
	}

	if (intstatus & I_SBINT) {
2357
		brcmf_err("Dongle reports SBINT\n");
2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371
		intstatus &= ~I_SBINT;
	}

	/* Would be active due to wake-wlan in gSPI */
	if (intstatus & I_CHIPACTIVE) {
		brcmf_dbg(INFO, "Dongle reports CHIPACTIVE\n");
		intstatus &= ~I_CHIPACTIVE;
	}

	/* Ignore frame indications if rxskip is set */
	if (bus->rxskip)
		intstatus &= ~I_HMB_FRAME_IND;

	/* On frame indication, read available frames */
F
Franky Lin 已提交
2372
	if (PKT_AVAILABLE() && bus->clkstate == CLK_AVAIL) {
2373 2374
		framecnt = brcmf_sdio_readframes(bus, rxlimit);
		if (!bus->rxpending)
2375 2376 2377 2378 2379
			intstatus &= ~I_HMB_FRAME_IND;
		rxlimit -= min(framecnt, rxlimit);
	}

	/* Keep still-pending events for next scheduling */
2380 2381 2382 2383
	if (intstatus) {
		for_each_set_bit(n, &intstatus, 32)
			set_bit(n, (unsigned long *)&bus->intstatus.counter);
	}
2384

2385 2386
	brcmf_sdbrcm_clrintr(bus);

2387 2388
	if (data_ok(bus) && bus->ctrl_frame_stat &&
		(bus->clkstate == CLK_AVAIL)) {
F
Franky Lin 已提交
2389
		int i;
2390

2391
		sdio_claim_host(bus->sdiodev->func[1]);
F
Franky Lin 已提交
2392
		err = brcmf_sdcard_send_buf(bus->sdiodev, bus->sdiodev->sbwad,
2393
			SDIO_FUNC_2, F2SYNC, bus->ctrl_frame_buf,
2394
			(u32) bus->ctrl_frame_len);
2395

F
Franky Lin 已提交
2396
		if (err < 0) {
2397 2398 2399
			/* On failure, abort the command and
				terminate the frame */
			brcmf_dbg(INFO, "sdio error %d, abort command and terminate frame\n",
F
Franky Lin 已提交
2400
				  err);
2401
			bus->sdcnt.tx_sderrs++;
2402 2403 2404

			brcmf_sdcard_abort(bus->sdiodev, SDIO_FUNC_2);

2405
			brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_FRAMECTRL,
2406
					 SFC_WF_TERM, &err);
2407
			bus->sdcnt.f1regdata++;
2408 2409 2410

			for (i = 0; i < 3; i++) {
				u8 hi, lo;
2411 2412
				hi = brcmf_sdio_regrb(bus->sdiodev,
						      SBSDIO_FUNC1_WFRAMEBCHI,
2413
						      &err);
2414 2415
				lo = brcmf_sdio_regrb(bus->sdiodev,
						      SBSDIO_FUNC1_WFRAMEBCLO,
2416
						      &err);
2417
				bus->sdcnt.f1regdata += 2;
2418 2419 2420 2421
				if ((hi == 0) && (lo == 0))
					break;
			}

F
Franky Lin 已提交
2422
		} else {
2423
			bus->tx_seq = (bus->tx_seq + 1) % SDPCM_SEQ_WRAP;
F
Franky Lin 已提交
2424
		}
2425
		sdio_release_host(bus->sdiodev->func[1]);
2426 2427 2428 2429
		bus->ctrl_frame_stat = false;
		brcmf_sdbrcm_wait_event_wakeup(bus);
	}
	/* Send queued frames (limit 1 if rx may still be pending) */
2430
	else if ((bus->clkstate == CLK_AVAIL) && !atomic_read(&bus->fcstate) &&
2431 2432
		 brcmu_pktq_mlen(&bus->txq, ~bus->flowcontrol) && txlimit
		 && data_ok(bus)) {
2433 2434
		framecnt = bus->rxpending ? min(txlimit, bus->txminmax) :
					    txlimit;
2435 2436 2437 2438
		framecnt = brcmf_sdbrcm_sendfromq(bus, framecnt);
		txlimit -= framecnt;
	}

2439
	if ((bus->sdiodev->bus_if->state == BRCMF_BUS_DOWN) || (err != 0)) {
2440
		brcmf_err("failed backplane access over SDIO, halting operation\n");
2441
		bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;
2442 2443 2444 2445 2446 2447
		atomic_set(&bus->intstatus, 0);
	} else if (atomic_read(&bus->intstatus) ||
		   atomic_read(&bus->ipend) > 0 ||
		   (!atomic_read(&bus->fcstate) &&
		    brcmu_pktq_mlen(&bus->txq, ~bus->flowcontrol) &&
		    data_ok(bus)) || PKT_AVAILABLE()) {
2448
		atomic_inc(&bus->dpc_tskcnt);
2449 2450 2451 2452 2453 2454
	}

	/* If we're done for now, turn off clock request. */
	if ((bus->clkstate != CLK_PENDING)
	    && bus->idletime == BRCMF_IDLE_IMMEDIATE) {
		bus->activity = false;
2455
		brcmf_dbg(SDIO, "idle state\n");
2456
		sdio_claim_host(bus->sdiodev->func[1]);
2457
		brcmf_sdbrcm_bus_sleep(bus, true, false);
2458
		sdio_release_host(bus->sdiodev->func[1]);
2459 2460 2461
	}
}

2462 2463 2464 2465 2466 2467 2468 2469 2470
static struct pktq *brcmf_sdbrcm_bus_gettxq(struct device *dev)
{
	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
	struct brcmf_sdio_dev *sdiodev = bus_if->bus_priv.sdio;
	struct brcmf_sdio *bus = sdiodev->bus;

	return &bus->txq;
}

2471
static int brcmf_sdbrcm_bus_txdata(struct device *dev, struct sk_buff *pkt)
2472 2473 2474
{
	int ret = -EBADE;
	uint datalen, prec;
2475
	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
2476
	struct brcmf_sdio_dev *sdiodev = bus_if->bus_priv.sdio;
2477
	struct brcmf_sdio *bus = sdiodev->bus;
2478
	ulong flags;
2479 2480 2481 2482 2483 2484

	brcmf_dbg(TRACE, "Enter\n");

	datalen = pkt->len;

	/* Add space for the header */
2485
	skb_push(pkt, bus->tx_hdrlen);
2486 2487 2488 2489 2490 2491 2492
	/* precondition: IS_ALIGNED((unsigned long)(pkt->data), 2) */

	prec = prio2prec((pkt->priority & PRIOMASK));

	/* Check for existing queue, current flow-control,
			 pending event, or pending clock */
	brcmf_dbg(TRACE, "deferring pktq len %d\n", pktq_len(&bus->txq));
2493
	bus->sdcnt.fcqueued++;
2494 2495

	/* Priority based enq */
2496
	spin_lock_irqsave(&bus->txqlock, flags);
2497
	if (!brcmf_c_prec_enq(bus->sdiodev->dev, &bus->txq, pkt, prec)) {
2498
		skb_pull(pkt, bus->tx_hdrlen);
2499
		brcmf_err("out of bus->txq !!!\n");
2500 2501 2502 2503 2504
		ret = -ENOSR;
	} else {
		ret = 0;
	}

2505
	if (pktq_len(&bus->txq) >= TXHI) {
2506 2507
		bus->txoff = true;
		brcmf_txflowblock(bus->sdiodev->dev, true);
2508
	}
2509
	spin_unlock_irqrestore(&bus->txqlock, flags);
2510

J
Joe Perches 已提交
2511
#ifdef DEBUG
2512 2513 2514
	if (pktq_plen(&bus->txq, prec) > qcount[prec])
		qcount[prec] = pktq_plen(&bus->txq, prec);
#endif
2515

2516 2517
	if (atomic_read(&bus->dpc_tskcnt) == 0) {
		atomic_inc(&bus->dpc_tskcnt);
2518
		queue_work(bus->brcmf_wq, &bus->datawork);
2519 2520 2521 2522 2523
	}

	return ret;
}

J
Joe Perches 已提交
2524
#ifdef DEBUG
2525 2526
#define CONSOLE_LINE_MAX	192

2527
static int brcmf_sdbrcm_readconsole(struct brcmf_sdio *bus)
2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539
{
	struct brcmf_console *c = &bus->console;
	u8 line[CONSOLE_LINE_MAX], ch;
	u32 n, idx, addr;
	int rv;

	/* Don't do anything until FWREADY updates console address */
	if (bus->console_addr == 0)
		return 0;

	/* Read console log struct */
	addr = bus->console_addr + offsetof(struct rte_console, log_le);
2540 2541
	rv = brcmf_sdio_ramrw(bus->sdiodev, false, addr, (u8 *)&c->log_le,
			      sizeof(c->log_le));
2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565
	if (rv < 0)
		return rv;

	/* Allocate console buffer (one time only) */
	if (c->buf == NULL) {
		c->bufsize = le32_to_cpu(c->log_le.buf_size);
		c->buf = kmalloc(c->bufsize, GFP_ATOMIC);
		if (c->buf == NULL)
			return -ENOMEM;
	}

	idx = le32_to_cpu(c->log_le.idx);

	/* Protect against corrupt value */
	if (idx > c->bufsize)
		return -EBADE;

	/* Skip reading the console buffer if the index pointer
	 has not moved */
	if (idx == c->last)
		return 0;

	/* Read the console buffer */
	addr = le32_to_cpu(c->log_le.buf);
2566
	rv = brcmf_sdio_ramrw(bus->sdiodev, false, addr, c->buf, c->bufsize);
2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594
	if (rv < 0)
		return rv;

	while (c->last != idx) {
		for (n = 0; n < CONSOLE_LINE_MAX - 2; n++) {
			if (c->last == idx) {
				/* This would output a partial line.
				 * Instead, back up
				 * the buffer pointer and output this
				 * line next time around.
				 */
				if (c->last >= n)
					c->last -= n;
				else
					c->last = c->bufsize - n;
				goto break2;
			}
			ch = c->buf[c->last];
			c->last = (c->last + 1) % c->bufsize;
			if (ch == '\n')
				break;
			line[n] = ch;
		}

		if (n > 0) {
			if (line[n - 1] == '\r')
				n--;
			line[n] = 0;
2595
			pr_debug("CONSOLE: %s\n", line);
2596 2597 2598 2599 2600 2601
		}
	}
break2:

	return 0;
}
J
Joe Perches 已提交
2602
#endif				/* DEBUG */
2603

2604
static int brcmf_tx_frame(struct brcmf_sdio *bus, u8 *frame, u16 len)
2605 2606 2607 2608 2609
{
	int i;
	int ret;

	bus->ctrl_frame_stat = false;
2610 2611
	ret = brcmf_sdcard_send_buf(bus->sdiodev, bus->sdiodev->sbwad,
				    SDIO_FUNC_2, F2SYNC, frame, len);
2612 2613 2614 2615 2616

	if (ret < 0) {
		/* On failure, abort the command and terminate the frame */
		brcmf_dbg(INFO, "sdio error %d, abort command and terminate frame\n",
			  ret);
2617
		bus->sdcnt.tx_sderrs++;
2618 2619 2620

		brcmf_sdcard_abort(bus->sdiodev, SDIO_FUNC_2);

2621 2622
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_FRAMECTRL,
				 SFC_WF_TERM, NULL);
2623
		bus->sdcnt.f1regdata++;
2624 2625 2626

		for (i = 0; i < 3; i++) {
			u8 hi, lo;
2627 2628 2629 2630
			hi = brcmf_sdio_regrb(bus->sdiodev,
					      SBSDIO_FUNC1_WFRAMEBCHI, NULL);
			lo = brcmf_sdio_regrb(bus->sdiodev,
					      SBSDIO_FUNC1_WFRAMEBCLO, NULL);
2631
			bus->sdcnt.f1regdata += 2;
2632 2633 2634 2635 2636 2637
			if (hi == 0 && lo == 0)
				break;
		}
		return ret;
	}

2638
	bus->tx_seq = (bus->tx_seq + 1) % SDPCM_SEQ_WRAP;
2639 2640 2641 2642

	return ret;
}

2643
static int
2644
brcmf_sdbrcm_bus_txctl(struct device *dev, unsigned char *msg, uint msglen)
2645 2646 2647 2648 2649 2650
{
	u8 *frame;
	u16 len;
	uint retries = 0;
	u8 doff = 0;
	int ret = -1;
2651
	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
2652
	struct brcmf_sdio_dev *sdiodev = bus_if->bus_priv.sdio;
2653
	struct brcmf_sdio *bus = sdiodev->bus;
2654
	struct brcmf_sdio_hdrinfo hd_info = {0};
2655 2656 2657 2658

	brcmf_dbg(TRACE, "Enter\n");

	/* Back the pointer to make a room for bus header */
2659 2660
	frame = msg - bus->tx_hdrlen;
	len = (msglen += bus->tx_hdrlen);
2661 2662 2663 2664 2665 2666 2667

	/* Add alignment padding (optional for ctl frames) */
	doff = ((unsigned long)frame % BRCMF_SDALIGN);
	if (doff) {
		frame -= doff;
		len += doff;
		msglen += doff;
2668
		memset(frame, 0, doff + bus->tx_hdrlen);
2669 2670
	}
	/* precondition: doff < BRCMF_SDALIGN */
2671
	doff += bus->tx_hdrlen;
2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688

	/* Round send length to next SDIO block */
	if (bus->roundup && bus->blocksize && (len > bus->blocksize)) {
		u16 pad = bus->blocksize - (len % bus->blocksize);
		if ((pad <= bus->roundup) && (pad < bus->blocksize))
			len += pad;
	} else if (len % BRCMF_SDALIGN) {
		len += BRCMF_SDALIGN - (len % BRCMF_SDALIGN);
	}

	/* Satisfy length-alignment requirements */
	if (len & (ALIGNMENT - 1))
		len = roundup(len, ALIGNMENT);

	/* precondition: IS_ALIGNED((unsigned long)frame, 2) */

	/* Make sure backplane clock is on */
2689
	sdio_claim_host(bus->sdiodev->func[1]);
2690
	brcmf_sdbrcm_bus_sleep(bus, false, false);
2691
	sdio_release_host(bus->sdiodev->func[1]);
2692

2693 2694 2695 2696
	hd_info.len = (u16)msglen;
	hd_info.channel = SDPCM_CONTROL_CHANNEL;
	hd_info.dat_offset = doff;
	brcmf_sdio_hdpack(bus, frame, &hd_info);
2697 2698 2699 2700 2701 2702 2703 2704 2705

	if (!data_ok(bus)) {
		brcmf_dbg(INFO, "No bus credit bus->tx_max %d, bus->tx_seq %d\n",
			  bus->tx_max, bus->tx_seq);
		bus->ctrl_frame_stat = true;
		/* Send from dpc */
		bus->ctrl_frame_buf = frame;
		bus->ctrl_frame_len = len;

2706 2707 2708
		wait_event_interruptible_timeout(bus->ctrl_wait,
						 !bus->ctrl_frame_stat,
						 msecs_to_jiffies(2000));
2709

2710
		if (!bus->ctrl_frame_stat) {
2711
			brcmf_dbg(SDIO, "ctrl_frame_stat == false\n");
2712 2713
			ret = 0;
		} else {
2714
			brcmf_dbg(SDIO, "ctrl_frame_stat == true\n");
2715 2716 2717 2718 2719
			ret = -1;
		}
	}

	if (ret == -1) {
2720 2721 2722 2723 2724
		brcmf_dbg_hex_dump(BRCMF_BYTES_ON() && BRCMF_CTL_ON(),
				   frame, len, "Tx Frame:\n");
		brcmf_dbg_hex_dump(!(BRCMF_BYTES_ON() && BRCMF_CTL_ON()) &&
				   BRCMF_HDRS_ON(),
				   frame, min_t(u16, len, 16), "TxHdr:\n");
2725 2726

		do {
2727
			sdio_claim_host(bus->sdiodev->func[1]);
2728
			ret = brcmf_tx_frame(bus, frame, len);
2729
			sdio_release_host(bus->sdiodev->func[1]);
2730 2731 2732
		} while (ret < 0 && retries++ < TXRETRIES);
	}

2733
	if ((bus->idletime == BRCMF_IDLE_IMMEDIATE) &&
2734
	    atomic_read(&bus->dpc_tskcnt) == 0) {
2735
		bus->activity = false;
2736
		sdio_claim_host(bus->sdiodev->func[1]);
2737
		brcmf_dbg(INFO, "idle\n");
2738
		brcmf_sdbrcm_clkctl(bus, CLK_NONE, true);
2739
		sdio_release_host(bus->sdiodev->func[1]);
2740 2741 2742
	}

	if (ret)
2743
		bus->sdcnt.tx_ctlerrs++;
2744
	else
2745
		bus->sdcnt.tx_ctlpkts++;
2746 2747 2748 2749

	return ret ? -EIO : 0;
}

2750
#ifdef DEBUG
2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764
static inline bool brcmf_sdio_valid_shared_address(u32 addr)
{
	return !(addr == 0 || ((~addr >> 16) & 0xffff) == (addr & 0xffff));
}

static int brcmf_sdio_readshared(struct brcmf_sdio *bus,
				 struct sdpcm_shared *sh)
{
	u32 addr;
	int rv;
	u32 shaddr = 0;
	struct sdpcm_shared_le sh_le;
	__le32 addr_le;

2765
	shaddr = bus->ci->rambase + bus->ramsize - 4;
2766 2767 2768 2769 2770

	/*
	 * Read last word in socram to determine
	 * address of sdpcm_shared structure
	 */
2771
	sdio_claim_host(bus->sdiodev->func[1]);
2772
	brcmf_sdbrcm_bus_sleep(bus, false, false);
2773
	rv = brcmf_sdio_ramrw(bus->sdiodev, false, shaddr, (u8 *)&addr_le, 4);
2774
	sdio_release_host(bus->sdiodev->func[1]);
2775 2776 2777 2778 2779
	if (rv < 0)
		return rv;

	addr = le32_to_cpu(addr_le);

2780
	brcmf_dbg(SDIO, "sdpcm_shared address 0x%08X\n", addr);
2781 2782 2783 2784 2785 2786

	/*
	 * Check if addr is valid.
	 * NVRAM length at the end of memory should have been overwritten.
	 */
	if (!brcmf_sdio_valid_shared_address(addr)) {
2787
			brcmf_err("invalid sdpcm_shared address 0x%08X\n",
2788 2789 2790 2791 2792
				  addr);
			return -EINVAL;
	}

	/* Read hndrte_shared structure */
2793 2794
	rv = brcmf_sdio_ramrw(bus->sdiodev, false, addr, (u8 *)&sh_le,
			      sizeof(struct sdpcm_shared_le));
2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806
	if (rv < 0)
		return rv;

	/* Endianness */
	sh->flags = le32_to_cpu(sh_le.flags);
	sh->trap_addr = le32_to_cpu(sh_le.trap_addr);
	sh->assert_exp_addr = le32_to_cpu(sh_le.assert_exp_addr);
	sh->assert_file_addr = le32_to_cpu(sh_le.assert_file_addr);
	sh->assert_line = le32_to_cpu(sh_le.assert_line);
	sh->console_addr = le32_to_cpu(sh_le.console_addr);
	sh->msgtrace_addr = le32_to_cpu(sh_le.msgtrace_addr);

2807 2808
	if ((sh->flags & SDPCM_SHARED_VERSION_MASK) > SDPCM_SHARED_VERSION) {
		brcmf_err("sdpcm shared version unsupported: dhd %d dongle %d\n",
2809 2810 2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829
			  SDPCM_SHARED_VERSION,
			  sh->flags & SDPCM_SHARED_VERSION_MASK);
		return -EPROTO;
	}

	return 0;
}

static int brcmf_sdio_dump_console(struct brcmf_sdio *bus,
				   struct sdpcm_shared *sh, char __user *data,
				   size_t count)
{
	u32 addr, console_ptr, console_size, console_index;
	char *conbuf = NULL;
	__le32 sh_val;
	int rv;
	loff_t pos = 0;
	int nbytes = 0;

	/* obtain console information from device memory */
	addr = sh->console_addr + offsetof(struct rte_console, log_le);
2830 2831
	rv = brcmf_sdio_ramrw(bus->sdiodev, false, addr,
			      (u8 *)&sh_val, sizeof(u32));
2832 2833 2834 2835 2836
	if (rv < 0)
		return rv;
	console_ptr = le32_to_cpu(sh_val);

	addr = sh->console_addr + offsetof(struct rte_console, log_le.buf_size);
2837 2838
	rv = brcmf_sdio_ramrw(bus->sdiodev, false, addr,
			      (u8 *)&sh_val, sizeof(u32));
2839 2840 2841 2842 2843
	if (rv < 0)
		return rv;
	console_size = le32_to_cpu(sh_val);

	addr = sh->console_addr + offsetof(struct rte_console, log_le.idx);
2844 2845
	rv = brcmf_sdio_ramrw(bus->sdiodev, false, addr,
			      (u8 *)&sh_val, sizeof(u32));
2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858
	if (rv < 0)
		return rv;
	console_index = le32_to_cpu(sh_val);

	/* allocate buffer for console data */
	if (console_size <= CONSOLE_BUFFER_MAX)
		conbuf = vzalloc(console_size+1);

	if (!conbuf)
		return -ENOMEM;

	/* obtain the console data from device */
	conbuf[console_size] = '\0';
2859 2860
	rv = brcmf_sdio_ramrw(bus->sdiodev, false, console_ptr, (u8 *)conbuf,
			      console_size);
2861 2862 2863 2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887 2888 2889 2890 2891
	if (rv < 0)
		goto done;

	rv = simple_read_from_buffer(data, count, &pos,
				     conbuf + console_index,
				     console_size - console_index);
	if (rv < 0)
		goto done;

	nbytes = rv;
	if (console_index > 0) {
		pos = 0;
		rv = simple_read_from_buffer(data+nbytes, count, &pos,
					     conbuf, console_index - 1);
		if (rv < 0)
			goto done;
		rv += nbytes;
	}
done:
	vfree(conbuf);
	return rv;
}

static int brcmf_sdio_trap_info(struct brcmf_sdio *bus, struct sdpcm_shared *sh,
				char __user *data, size_t count)
{
	int error, res;
	char buf[350];
	struct brcmf_trap_info tr;
	loff_t pos = 0;

2892 2893
	if ((sh->flags & SDPCM_SHARED_TRAP) == 0) {
		brcmf_dbg(INFO, "no trap in firmware\n");
2894
		return 0;
2895
	}
2896

2897 2898
	error = brcmf_sdio_ramrw(bus->sdiodev, false, sh->trap_addr, (u8 *)&tr,
				 sizeof(struct brcmf_trap_info));
2899 2900 2901 2902 2903 2904 2905 2906 2907 2908 2909 2910
	if (error < 0)
		return error;

	res = scnprintf(buf, sizeof(buf),
			"dongle trap info: type 0x%x @ epc 0x%08x\n"
			"  cpsr 0x%08x spsr 0x%08x sp 0x%08x\n"
			"  lr   0x%08x pc   0x%08x offset 0x%x\n"
			"  r0   0x%08x r1   0x%08x r2 0x%08x r3 0x%08x\n"
			"  r4   0x%08x r5   0x%08x r6 0x%08x r7 0x%08x\n",
			le32_to_cpu(tr.type), le32_to_cpu(tr.epc),
			le32_to_cpu(tr.cpsr), le32_to_cpu(tr.spsr),
			le32_to_cpu(tr.r13), le32_to_cpu(tr.r14),
2911
			le32_to_cpu(tr.pc), sh->trap_addr,
2912 2913 2914 2915 2916
			le32_to_cpu(tr.r0), le32_to_cpu(tr.r1),
			le32_to_cpu(tr.r2), le32_to_cpu(tr.r3),
			le32_to_cpu(tr.r4), le32_to_cpu(tr.r5),
			le32_to_cpu(tr.r6), le32_to_cpu(tr.r7));

2917
	return simple_read_from_buffer(data, count, &pos, buf, res);
2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938
}

static int brcmf_sdio_assert_info(struct brcmf_sdio *bus,
				  struct sdpcm_shared *sh, char __user *data,
				  size_t count)
{
	int error = 0;
	char buf[200];
	char file[80] = "?";
	char expr[80] = "<???>";
	int res;
	loff_t pos = 0;

	if ((sh->flags & SDPCM_SHARED_ASSERT_BUILT) == 0) {
		brcmf_dbg(INFO, "firmware not built with -assert\n");
		return 0;
	} else if ((sh->flags & SDPCM_SHARED_ASSERT) == 0) {
		brcmf_dbg(INFO, "no assert in dongle\n");
		return 0;
	}

2939
	sdio_claim_host(bus->sdiodev->func[1]);
2940
	if (sh->assert_file_addr != 0) {
2941 2942
		error = brcmf_sdio_ramrw(bus->sdiodev, false,
					 sh->assert_file_addr, (u8 *)file, 80);
2943 2944 2945 2946
		if (error < 0)
			return error;
	}
	if (sh->assert_exp_addr != 0) {
2947 2948
		error = brcmf_sdio_ramrw(bus->sdiodev, false,
					 sh->assert_exp_addr, (u8 *)expr, 80);
2949 2950 2951
		if (error < 0)
			return error;
	}
2952
	sdio_release_host(bus->sdiodev->func[1]);
2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972

	res = scnprintf(buf, sizeof(buf),
			"dongle assert: %s:%d: assert(%s)\n",
			file, sh->assert_line, expr);
	return simple_read_from_buffer(data, count, &pos, buf, res);
}

static int brcmf_sdbrcm_checkdied(struct brcmf_sdio *bus)
{
	int error;
	struct sdpcm_shared sh;

	error = brcmf_sdio_readshared(bus, &sh);

	if (error < 0)
		return error;

	if ((sh.flags & SDPCM_SHARED_ASSERT_BUILT) == 0)
		brcmf_dbg(INFO, "firmware not built with -assert\n");
	else if (sh.flags & SDPCM_SHARED_ASSERT)
2973
		brcmf_err("assertion in dongle\n");
2974 2975

	if (sh.flags & SDPCM_SHARED_TRAP)
2976
		brcmf_err("firmware trap in dongle\n");
2977 2978 2979 2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999

	return 0;
}

static int brcmf_sdbrcm_died_dump(struct brcmf_sdio *bus, char __user *data,
				  size_t count, loff_t *ppos)
{
	int error = 0;
	struct sdpcm_shared sh;
	int nbytes = 0;
	loff_t pos = *ppos;

	if (pos != 0)
		return 0;

	error = brcmf_sdio_readshared(bus, &sh);
	if (error < 0)
		goto done;

	error = brcmf_sdio_assert_info(bus, &sh, data, count);
	if (error < 0)
		goto done;
	nbytes = error;
3000 3001

	error = brcmf_sdio_trap_info(bus, &sh, data+nbytes, count);
3002 3003
	if (error < 0)
		goto done;
3004 3005 3006 3007 3008 3009
	nbytes += error;

	error = brcmf_sdio_dump_console(bus, &sh, data+nbytes, count);
	if (error < 0)
		goto done;
	nbytes += error;
3010

3011 3012
	error = nbytes;
	*ppos += nbytes;
3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034
done:
	return error;
}

static ssize_t brcmf_sdio_forensic_read(struct file *f, char __user *data,
					size_t count, loff_t *ppos)
{
	struct brcmf_sdio *bus = f->private_data;
	int res;

	res = brcmf_sdbrcm_died_dump(bus, data, count, ppos);
	if (res > 0)
		*ppos += res;
	return (ssize_t)res;
}

static const struct file_operations brcmf_sdio_forensic_ops = {
	.owner = THIS_MODULE,
	.open = simple_open,
	.read = brcmf_sdio_forensic_read
};

3035 3036 3037
static void brcmf_sdio_debugfs_create(struct brcmf_sdio *bus)
{
	struct brcmf_pub *drvr = bus->sdiodev->bus_if->drvr;
3038
	struct dentry *dentry = brcmf_debugfs_get_devdir(drvr);
3039

3040 3041 3042 3043 3044
	if (IS_ERR_OR_NULL(dentry))
		return;

	debugfs_create_file("forensics", S_IRUGO, dentry, bus,
			    &brcmf_sdio_forensic_ops);
3045 3046 3047
	brcmf_debugfs_create_sdio_count(drvr, &bus->sdcnt);
}
#else
3048 3049 3050 3051 3052
static int brcmf_sdbrcm_checkdied(struct brcmf_sdio *bus)
{
	return 0;
}

3053 3054 3055 3056 3057
static void brcmf_sdio_debugfs_create(struct brcmf_sdio *bus)
{
}
#endif /* DEBUG */

3058
static int
3059
brcmf_sdbrcm_bus_rxctl(struct device *dev, unsigned char *msg, uint msglen)
3060 3061 3062 3063
{
	int timeleft;
	uint rxlen = 0;
	bool pending;
3064
	u8 *buf;
3065
	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
3066
	struct brcmf_sdio_dev *sdiodev = bus_if->bus_priv.sdio;
3067
	struct brcmf_sdio *bus = sdiodev->bus;
3068 3069 3070 3071 3072 3073

	brcmf_dbg(TRACE, "Enter\n");

	/* Wait until control frame is available */
	timeleft = brcmf_sdbrcm_dcmd_resp_wait(bus, &bus->rxlen, &pending);

3074
	spin_lock_bh(&bus->rxctl_lock);
3075 3076
	rxlen = bus->rxlen;
	memcpy(msg, bus->rxctl, min(msglen, rxlen));
3077 3078 3079
	bus->rxctl = NULL;
	buf = bus->rxctl_orig;
	bus->rxctl_orig = NULL;
3080
	bus->rxlen = 0;
3081 3082
	spin_unlock_bh(&bus->rxctl_lock);
	vfree(buf);
3083 3084 3085 3086 3087

	if (rxlen) {
		brcmf_dbg(CTL, "resumed on rxctl frame, got %d expected %d\n",
			  rxlen, msglen);
	} else if (timeleft == 0) {
3088
		brcmf_err("resumed on timeout\n");
3089
		brcmf_sdbrcm_checkdied(bus);
3090
	} else if (pending) {
3091 3092 3093 3094
		brcmf_dbg(CTL, "cancelled\n");
		return -ERESTARTSYS;
	} else {
		brcmf_dbg(CTL, "resumed for unknown reason?\n");
3095
		brcmf_sdbrcm_checkdied(bus);
3096 3097 3098
	}

	if (rxlen)
3099
		bus->sdcnt.rx_ctlpkts++;
3100
	else
3101
		bus->sdcnt.rx_ctlerrs++;
3102 3103 3104 3105

	return rxlen ? (int)rxlen : -ETIMEDOUT;
}

3106
static bool brcmf_sdbrcm_download_state(struct brcmf_sdio *bus, bool enter)
3107
{
3108
	struct chip_info *ci = bus->ci;
3109 3110 3111 3112 3113 3114 3115

	/* To enter download state, disable ARM and reset SOCRAM.
	 * To exit download state, simply reset ARM (default is RAM boot).
	 */
	if (enter) {
		bus->alp_only = true;

3116
		brcmf_sdio_chip_enter_download(bus->sdiodev, ci);
3117
	} else {
3118 3119 3120
		if (!brcmf_sdio_chip_exit_download(bus->sdiodev, ci, bus->vars,
						   bus->varsz))
			return false;
3121 3122 3123 3124

		/* Allow HT Clock now that the ARM is running. */
		bus->alp_only = false;

3125
		bus->sdiodev->bus_if->state = BRCMF_BUS_LOAD;
3126
	}
3127 3128

	return true;
3129 3130
}

3131
static int brcmf_sdbrcm_download_code_file(struct brcmf_sdio *bus)
3132
{
3133 3134
	const struct firmware *fw;
	int err;
3135
	int offset;
3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154 3155
	int address;
	int len;

	fw = brcmf_sdbrcm_get_fw(bus, BRCMF_FIRMWARE_BIN);
	if (fw == NULL)
		return -ENOENT;

	if (brcmf_sdio_chip_getinfidx(bus->ci, BCMA_CORE_ARM_CR4) !=
	    BRCMF_MAX_CORENUM)
		memcpy(&bus->ci->rst_vec, fw->data, sizeof(bus->ci->rst_vec));

	err = 0;
	offset = 0;
	address = bus->ci->rambase;
	while (offset < fw->size) {
		len = ((offset + MEMBLOCK) < fw->size) ? MEMBLOCK :
		      fw->size - offset;
		err = brcmf_sdio_ramrw(bus->sdiodev, true, address,
				       (u8 *)&fw->data[offset], len);
		if (err) {
3156
			brcmf_err("error %d on writing %d membytes at 0x%08x\n",
3157 3158
				  err, len, address);
			goto failure;
3159
		}
3160 3161
		offset += len;
		address += len;
3162 3163
	}

3164 3165
failure:
	release_firmware(fw);
3166

3167
	return err;
3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178
}

/*
 * ProcessVars:Takes a buffer of "<var>=<value>\n" lines read from a file
 * and ending in a NUL.
 * Removes carriage returns, empty lines, comment lines, and converts
 * newlines to NULs.
 * Shortens buffer as needed and pads with NULs.  End of buffer is marked
 * by two NULs.
*/

3179 3180
static int brcmf_process_nvram_vars(struct brcmf_sdio *bus,
				    const struct firmware *nv)
3181
{
3182
	char *varbuf;
3183 3184 3185
	char *dp;
	bool findNewline;
	int column;
3186 3187 3188
	int ret = 0;
	uint buf_len, n, len;

3189
	len = nv->size;
3190 3191 3192
	varbuf = vmalloc(len);
	if (!varbuf)
		return -ENOMEM;
3193

3194
	memcpy(varbuf, nv->data, len);
3195 3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225
	dp = varbuf;

	findNewline = false;
	column = 0;

	for (n = 0; n < len; n++) {
		if (varbuf[n] == 0)
			break;
		if (varbuf[n] == '\r')
			continue;
		if (findNewline && varbuf[n] != '\n')
			continue;
		findNewline = false;
		if (varbuf[n] == '#') {
			findNewline = true;
			continue;
		}
		if (varbuf[n] == '\n') {
			if (column == 0)
				continue;
			*dp++ = 0;
			column = 0;
			continue;
		}
		*dp++ = varbuf[n];
		column++;
	}
	buf_len = dp - varbuf;
	while (dp < varbuf + n)
		*dp++ = 0;

3226
	kfree(bus->vars);
3227 3228
	/* roundup needed for download to device */
	bus->varsz = roundup(buf_len + 1, 4);
3229 3230 3231 3232 3233 3234 3235 3236 3237 3238 3239 3240 3241
	bus->vars = kmalloc(bus->varsz, GFP_KERNEL);
	if (bus->vars == NULL) {
		bus->varsz = 0;
		ret = -ENOMEM;
		goto err;
	}

	/* copy the processed variables and add null termination */
	memcpy(bus->vars, varbuf, buf_len);
	bus->vars[buf_len] = 0;
err:
	vfree(varbuf);
	return ret;
3242 3243
}

3244
static int brcmf_sdbrcm_download_nvram(struct brcmf_sdio *bus)
3245
{
3246
	const struct firmware *nv;
3247 3248
	int ret;

3249 3250 3251
	nv = brcmf_sdbrcm_get_fw(bus, BRCMF_FIRMWARE_NVRAM);
	if (nv == NULL)
		return -ENOENT;
3252

3253
	ret = brcmf_process_nvram_vars(bus, nv);
3254

3255
	release_firmware(nv);
3256 3257 3258 3259

	return ret;
}

3260
static int _brcmf_sdbrcm_download_firmware(struct brcmf_sdio *bus)
3261 3262 3263 3264
{
	int bcmerror = -1;

	/* Keep arm in reset */
3265
	if (!brcmf_sdbrcm_download_state(bus, true)) {
3266
		brcmf_err("error placing ARM core in reset\n");
3267 3268 3269 3270
		goto err;
	}

	if (brcmf_sdbrcm_download_code_file(bus)) {
3271
		brcmf_err("dongle image file download failed\n");
3272 3273 3274
		goto err;
	}

3275
	if (brcmf_sdbrcm_download_nvram(bus)) {
3276
		brcmf_err("dongle nvram file download failed\n");
3277 3278
		goto err;
	}
3279 3280

	/* Take arm out of reset */
3281
	if (!brcmf_sdbrcm_download_state(bus, false)) {
3282
		brcmf_err("error getting out of ARM core reset\n");
3283 3284 3285 3286 3287 3288 3289 3290 3291
		goto err;
	}

	bcmerror = 0;

err:
	return bcmerror;
}

3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384 3385 3386 3387 3388
static bool brcmf_sdbrcm_sr_capable(struct brcmf_sdio *bus)
{
	u32 addr, reg;

	brcmf_dbg(TRACE, "Enter\n");

	/* old chips with PMU version less than 17 don't support save restore */
	if (bus->ci->pmurev < 17)
		return false;

	/* read PMU chipcontrol register 3*/
	addr = CORE_CC_REG(bus->ci->c_inf[0].base, chipcontrol_addr);
	brcmf_sdio_regwl(bus->sdiodev, addr, 3, NULL);
	addr = CORE_CC_REG(bus->ci->c_inf[0].base, chipcontrol_data);
	reg = brcmf_sdio_regrl(bus->sdiodev, addr, NULL);

	return (bool)reg;
}

static void brcmf_sdbrcm_sr_init(struct brcmf_sdio *bus)
{
	int err = 0;
	u8 val;

	brcmf_dbg(TRACE, "Enter\n");

	val = brcmf_sdio_regrb(bus->sdiodev, SBSDIO_FUNC1_WAKEUPCTRL,
			       &err);
	if (err) {
		brcmf_err("error reading SBSDIO_FUNC1_WAKEUPCTRL\n");
		return;
	}

	val |= 1 << SBSDIO_FUNC1_WCTRL_HTWAIT_SHIFT;
	brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_WAKEUPCTRL,
			 val, &err);
	if (err) {
		brcmf_err("error writing SBSDIO_FUNC1_WAKEUPCTRL\n");
		return;
	}

	/* Add CMD14 Support */
	brcmf_sdio_regwb(bus->sdiodev, SDIO_CCCR_BRCM_CARDCAP,
			 (SDIO_CCCR_BRCM_CARDCAP_CMD14_SUPPORT |
			  SDIO_CCCR_BRCM_CARDCAP_CMD14_EXT),
			 &err);
	if (err) {
		brcmf_err("error writing SDIO_CCCR_BRCM_CARDCAP\n");
		return;
	}

	brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_CHIPCLKCSR,
			 SBSDIO_FORCE_HT, &err);
	if (err) {
		brcmf_err("error writing SBSDIO_FUNC1_CHIPCLKCSR\n");
		return;
	}

	/* set flag */
	bus->sr_enabled = true;
	brcmf_dbg(INFO, "SR enabled\n");
}

/* enable KSO bit */
static int brcmf_sdbrcm_kso_init(struct brcmf_sdio *bus)
{
	u8 val;
	int err = 0;

	brcmf_dbg(TRACE, "Enter\n");

	/* KSO bit added in SDIO core rev 12 */
	if (bus->ci->c_inf[1].rev < 12)
		return 0;

	val = brcmf_sdio_regrb(bus->sdiodev, SBSDIO_FUNC1_SLEEPCSR,
			       &err);
	if (err) {
		brcmf_err("error reading SBSDIO_FUNC1_SLEEPCSR\n");
		return err;
	}

	if (!(val & SBSDIO_FUNC1_SLEEPCSR_KSO_MASK)) {
		val |= (SBSDIO_FUNC1_SLEEPCSR_KSO_EN <<
			SBSDIO_FUNC1_SLEEPCSR_KSO_SHIFT);
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_SLEEPCSR,
				 val, &err);
		if (err) {
			brcmf_err("error writing SBSDIO_FUNC1_SLEEPCSR\n");
			return err;
		}
	}

	return 0;
}


3389
static bool
3390
brcmf_sdbrcm_download_firmware(struct brcmf_sdio *bus)
3391 3392 3393
{
	bool ret;

3394 3395
	sdio_claim_host(bus->sdiodev->func[1]);

3396 3397 3398 3399 3400 3401
	brcmf_sdbrcm_clkctl(bus, CLK_AVAIL, false);

	ret = _brcmf_sdbrcm_download_firmware(bus) == 0;

	brcmf_sdbrcm_clkctl(bus, CLK_SDONLY, false);

3402 3403
	sdio_release_host(bus->sdiodev->func[1]);

3404 3405 3406
	return ret;
}

3407
static int brcmf_sdbrcm_bus_init(struct device *dev)
3408
{
3409
	struct brcmf_bus *bus_if = dev_get_drvdata(dev);
3410
	struct brcmf_sdio_dev *sdiodev = bus_if->bus_priv.sdio;
3411
	struct brcmf_sdio *bus = sdiodev->bus;
3412 3413 3414 3415 3416 3417 3418 3419
	unsigned long timeout;
	u8 ready, enable;
	int err, ret = 0;
	u8 saveclk;

	brcmf_dbg(TRACE, "Enter\n");

	/* try to download image and nvram to the dongle */
3420
	if (bus_if->state == BRCMF_BUS_DOWN) {
3421 3422 3423 3424
		if (!(brcmf_sdbrcm_download_firmware(bus)))
			return -1;
	}

3425
	if (!bus->sdiodev->bus_if->drvr)
3426 3427 3428
		return 0;

	/* Start the watchdog timer */
3429
	bus->sdcnt.tickcnt = 0;
3430 3431
	brcmf_sdbrcm_wd_timer(bus, BRCMF_WD_POLL_MS);

3432
	sdio_claim_host(bus->sdiodev->func[1]);
3433 3434 3435 3436 3437 3438 3439

	/* Make sure backplane clock is on, needed to generate F2 interrupt */
	brcmf_sdbrcm_clkctl(bus, CLK_AVAIL, false);
	if (bus->clkstate != CLK_AVAIL)
		goto exit;

	/* Force clocks on backplane to be sure F2 interrupt propagates */
3440 3441
	saveclk = brcmf_sdio_regrb(bus->sdiodev,
				   SBSDIO_FUNC1_CHIPCLKCSR, &err);
3442
	if (!err) {
3443 3444
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_CHIPCLKCSR,
				 (saveclk | SBSDIO_FORCE_HT), &err);
3445 3446
	}
	if (err) {
3447
		brcmf_err("Failed to force clock for F2: err %d\n", err);
3448 3449 3450 3451 3452
		goto exit;
	}

	/* Enable function 2 (frame transfers) */
	w_sdreg32(bus, SDPCM_PROT_VERSION << SMB_DATA_VERSION_SHIFT,
3453
		  offsetof(struct sdpcmd_regs, tosbmailboxdata));
3454 3455
	enable = (SDIO_FUNC_ENABLE_1 | SDIO_FUNC_ENABLE_2);

3456
	brcmf_sdio_regwb(bus->sdiodev, SDIO_CCCR_IOEx, enable, NULL);
3457 3458 3459 3460

	timeout = jiffies + msecs_to_jiffies(BRCMF_WAIT_F2RDY);
	ready = 0;
	while (enable != ready) {
3461 3462
		ready = brcmf_sdio_regrb(bus->sdiodev,
					 SDIO_CCCR_IORx, NULL);
3463 3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474 3475 3476
		if (time_after(jiffies, timeout))
			break;
		else if (time_after(jiffies, timeout - BRCMF_WAIT_F2RDY + 50))
			/* prevent busy waiting if it takes too long */
			msleep_interruptible(20);
	}

	brcmf_dbg(INFO, "enable 0x%02x, ready 0x%02x\n", enable, ready);

	/* If F2 successfully enabled, set core and enable interrupts */
	if (ready == enable) {
		/* Set up the interrupt mask and enable interrupts */
		bus->hostintmask = HOSTINTMASK;
		w_sdreg32(bus, bus->hostintmask,
3477
			  offsetof(struct sdpcmd_regs, hostintmask));
3478

3479
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_WATERMARK, 8, &err);
3480
	} else {
3481 3482
		/* Disable F2 again */
		enable = SDIO_FUNC_ENABLE_1;
3483
		brcmf_sdio_regwb(bus->sdiodev, SDIO_CCCR_IOEx, enable, NULL);
3484
		ret = -ENODEV;
3485 3486
	}

3487 3488 3489 3490 3491 3492 3493
	if (brcmf_sdbrcm_sr_capable(bus)) {
		brcmf_sdbrcm_sr_init(bus);
	} else {
		/* Restore previous clock setting */
		brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_CHIPCLKCSR,
				 saveclk, &err);
	}
3494

3495
	if (ret == 0) {
3496
		ret = brcmf_sdio_intr_register(bus->sdiodev);
3497
		if (ret != 0)
3498
			brcmf_err("intr register failed:%d\n", ret);
3499 3500
	}

3501
	/* If we didn't come up, turn off backplane clock */
3502
	if (bus_if->state != BRCMF_BUS_DATA)
3503 3504 3505
		brcmf_sdbrcm_clkctl(bus, CLK_NONE, false);

exit:
3506
	sdio_release_host(bus->sdiodev->func[1]);
3507 3508 3509 3510 3511 3512

	return ret;
}

void brcmf_sdbrcm_isr(void *arg)
{
3513
	struct brcmf_sdio *bus = (struct brcmf_sdio *) arg;
3514 3515 3516 3517

	brcmf_dbg(TRACE, "Enter\n");

	if (!bus) {
3518
		brcmf_err("bus is null pointer, exiting\n");
3519 3520 3521
		return;
	}

3522
	if (bus->sdiodev->bus_if->state == BRCMF_BUS_DOWN) {
3523
		brcmf_err("bus is down. we have nothing to do\n");
3524 3525 3526
		return;
	}
	/* Count the interrupt call */
3527
	bus->sdcnt.intrcount++;
3528 3529 3530 3531
	if (in_interrupt())
		atomic_set(&bus->ipend, 1);
	else
		if (brcmf_sdio_intr_rstatus(bus)) {
3532
			brcmf_err("failed backplane access\n");
3533 3534
			bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;
		}
3535 3536 3537

	/* Disable additional interrupts (is this needed now)? */
	if (!bus->intr)
3538
		brcmf_err("isr w/o interrupt configured!\n");
3539

3540
	atomic_inc(&bus->dpc_tskcnt);
3541
	queue_work(bus->brcmf_wq, &bus->datawork);
3542 3543
}

3544
static bool brcmf_sdbrcm_bus_watchdog(struct brcmf_sdio *bus)
3545
{
J
Joe Perches 已提交
3546
#ifdef DEBUG
3547
	struct brcmf_bus *bus_if = dev_get_drvdata(bus->sdiodev->dev);
J
Joe Perches 已提交
3548
#endif	/* DEBUG */
3549 3550 3551 3552

	brcmf_dbg(TIMER, "Enter\n");

	/* Poll period: check device if appropriate. */
3553 3554
	if (!bus->sr_enabled &&
	    bus->poll && (++bus->polltick >= bus->pollrate)) {
3555 3556 3557 3558 3559 3560
		u32 intstatus = 0;

		/* Reset poll tick */
		bus->polltick = 0;

		/* Check device if no interrupts */
3561 3562
		if (!bus->intr ||
		    (bus->sdcnt.intrcount == bus->sdcnt.lastintrs)) {
3563

3564
			if (atomic_read(&bus->dpc_tskcnt) == 0) {
3565
				u8 devpend;
3566

3567
				sdio_claim_host(bus->sdiodev->func[1]);
3568 3569 3570
				devpend = brcmf_sdio_regrb(bus->sdiodev,
							   SDIO_CCCR_INTx,
							   NULL);
3571
				sdio_release_host(bus->sdiodev->func[1]);
3572 3573 3574 3575 3576 3577 3578 3579
				intstatus =
				    devpend & (INTR_STATUS_FUNC1 |
					       INTR_STATUS_FUNC2);
			}

			/* If there is something, make like the ISR and
				 schedule the DPC */
			if (intstatus) {
3580
				bus->sdcnt.pollcnt++;
3581
				atomic_set(&bus->ipend, 1);
3582

3583
				atomic_inc(&bus->dpc_tskcnt);
3584
				queue_work(bus->brcmf_wq, &bus->datawork);
3585 3586 3587 3588
			}
		}

		/* Update interrupt tracking */
3589
		bus->sdcnt.lastintrs = bus->sdcnt.intrcount;
3590
	}
J
Joe Perches 已提交
3591
#ifdef DEBUG
3592
	/* Poll for console output periodically */
H
Hante Meuleman 已提交
3593
	if (bus_if && bus_if->state == BRCMF_BUS_DATA &&
3594
	    bus->console_interval != 0) {
3595 3596 3597
		bus->console.count += BRCMF_WD_POLL_MS;
		if (bus->console.count >= bus->console_interval) {
			bus->console.count -= bus->console_interval;
3598
			sdio_claim_host(bus->sdiodev->func[1]);
3599
			/* Make sure backplane clock is on */
3600
			brcmf_sdbrcm_bus_sleep(bus, false, false);
3601 3602 3603
			if (brcmf_sdbrcm_readconsole(bus) < 0)
				/* stop on error */
				bus->console_interval = 0;
3604
			sdio_release_host(bus->sdiodev->func[1]);
3605 3606
		}
	}
J
Joe Perches 已提交
3607
#endif				/* DEBUG */
3608 3609 3610 3611 3612 3613 3614 3615 3616

	/* On idle timeout clear activity flag and/or turn off clock */
	if ((bus->idletime > 0) && (bus->clkstate == CLK_AVAIL)) {
		if (++bus->idlecount >= bus->idletime) {
			bus->idlecount = 0;
			if (bus->activity) {
				bus->activity = false;
				brcmf_sdbrcm_wd_timer(bus, BRCMF_WD_POLL_MS);
			} else {
3617
				brcmf_dbg(SDIO, "idle\n");
3618
				sdio_claim_host(bus->sdiodev->func[1]);
3619
				brcmf_sdbrcm_bus_sleep(bus, true, false);
3620
				sdio_release_host(bus->sdiodev->func[1]);
3621 3622 3623 3624
			}
		}
	}

3625
	return (atomic_read(&bus->ipend) > 0);
3626 3627
}

3628 3629 3630 3631 3632
static void brcmf_sdio_dataworker(struct work_struct *work)
{
	struct brcmf_sdio *bus = container_of(work, struct brcmf_sdio,
					      datawork);

3633
	while (atomic_read(&bus->dpc_tskcnt)) {
3634
		brcmf_sdbrcm_dpc(bus);
3635
		atomic_dec(&bus->dpc_tskcnt);
3636 3637 3638
	}
}

3639
static void brcmf_sdbrcm_release_malloc(struct brcmf_sdio *bus)
3640 3641 3642 3643 3644 3645 3646 3647
{
	brcmf_dbg(TRACE, "Enter\n");

	kfree(bus->rxbuf);
	bus->rxctl = bus->rxbuf = NULL;
	bus->rxlen = 0;
}

3648
static bool brcmf_sdbrcm_probe_malloc(struct brcmf_sdio *bus)
3649 3650 3651
{
	brcmf_dbg(TRACE, "Enter\n");

3652
	if (bus->sdiodev->bus_if->maxctl) {
3653
		bus->rxblen =
3654
		    roundup((bus->sdiodev->bus_if->maxctl + SDPCM_HDRLEN),
3655 3656 3657
			    ALIGNMENT) + BRCMF_SDALIGN;
		bus->rxbuf = kmalloc(bus->rxblen, GFP_ATOMIC);
		if (!(bus->rxbuf))
F
Franky Lin 已提交
3658
			return false;
3659 3660 3661 3662 3663 3664
	}

	return true;
}

static bool
3665
brcmf_sdbrcm_probe_attach(struct brcmf_sdio *bus, u32 regsva)
3666 3667 3668 3669 3670
{
	u8 clkctl = 0;
	int err = 0;
	int reg_addr;
	u32 reg_val;
3671
	u32 drivestrength;
3672 3673 3674

	bus->alp_only = true;

3675 3676
	sdio_claim_host(bus->sdiodev->func[1]);

3677
	pr_debug("F1 signature read @0x18000000=0x%4x\n",
3678
		 brcmf_sdio_regrl(bus->sdiodev, SI_ENUM_BASE, NULL));
3679 3680

	/*
3681
	 * Force PLL off until brcmf_sdio_chip_attach()
3682 3683 3684
	 * programs PLL control regs
	 */

3685 3686
	brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_CHIPCLKCSR,
			 BRCMF_INIT_CLKCTL1, &err);
3687
	if (!err)
3688
		clkctl = brcmf_sdio_regrb(bus->sdiodev,
3689 3690 3691
					  SBSDIO_FUNC1_CHIPCLKCSR, &err);

	if (err || ((clkctl & ~SBSDIO_AVBITS) != BRCMF_INIT_CLKCTL1)) {
3692
		brcmf_err("ChipClkCSR access: err %d wrote 0x%02x read 0x%02x\n",
3693 3694 3695 3696
			  err, BRCMF_INIT_CLKCTL1, clkctl);
		goto fail;
	}

3697
	if (brcmf_sdio_chip_attach(bus->sdiodev, &bus->ci, regsva)) {
3698
		brcmf_err("brcmf_sdio_chip_attach failed!\n");
3699 3700 3701
		goto fail;
	}

3702 3703 3704 3705 3706
	if (brcmf_sdbrcm_kso_init(bus)) {
		brcmf_err("error enabling KSO\n");
		goto fail;
	}

3707 3708 3709 3710 3711
	if ((bus->sdiodev->pdata) && (bus->sdiodev->pdata->drive_strength))
		drivestrength = bus->sdiodev->pdata->drive_strength;
	else
		drivestrength = DEFAULT_SDIO_DRIVE_STRENGTH;
	brcmf_sdio_chip_drivestrengthinit(bus->sdiodev, bus->ci, drivestrength);
3712

3713
	/* Get info on the SOCRAM cores... */
3714 3715
	bus->ramsize = bus->ci->ramsize;
	if (!(bus->ramsize)) {
3716
		brcmf_err("failed to find SOCRAM memory!\n");
3717 3718 3719
		goto fail;
	}

3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731 3732 3733 3734 3735 3736 3737 3738 3739 3740 3741 3742 3743 3744 3745 3746 3747 3748 3749 3750
	/* Set card control so an SDIO card reset does a WLAN backplane reset */
	reg_val = brcmf_sdio_regrb(bus->sdiodev,
				   SDIO_CCCR_BRCM_CARDCTRL, &err);
	if (err)
		goto fail;

	reg_val |= SDIO_CCCR_BRCM_CARDCTRL_WLANRESET;

	brcmf_sdio_regwb(bus->sdiodev,
			 SDIO_CCCR_BRCM_CARDCTRL, reg_val, &err);
	if (err)
		goto fail;

	/* set PMUControl so a backplane reset does PMU state reload */
	reg_addr = CORE_CC_REG(bus->ci->c_inf[0].base,
			       pmucontrol);
	reg_val = brcmf_sdio_regrl(bus->sdiodev,
				   reg_addr,
				   &err);
	if (err)
		goto fail;

	reg_val |= (BCMA_CC_PMU_CTL_RES_RELOAD << BCMA_CC_PMU_CTL_RES_SHIFT);

	brcmf_sdio_regwl(bus->sdiodev,
			 reg_addr,
			 reg_val,
			 &err);
	if (err)
		goto fail;

3751

3752 3753
	sdio_release_host(bus->sdiodev->func[1]);

3754 3755 3756 3757 3758 3759 3760 3761 3762 3763 3764 3765 3766 3767 3768
	brcmu_pktq_init(&bus->txq, (PRIOMASK + 1), TXQLEN);

	/* Locate an appropriately-aligned portion of hdrbuf */
	bus->rxhdr = (u8 *) roundup((unsigned long)&bus->hdrbuf[0],
				    BRCMF_SDALIGN);

	/* Set the poll and/or interrupt flags */
	bus->intr = true;
	bus->poll = false;
	if (bus->poll)
		bus->pollrate = 1;

	return true;

fail:
3769
	sdio_release_host(bus->sdiodev->func[1]);
3770 3771 3772
	return false;
}

3773
static bool brcmf_sdbrcm_probe_init(struct brcmf_sdio *bus)
3774 3775 3776
{
	brcmf_dbg(TRACE, "Enter\n");

3777 3778
	sdio_claim_host(bus->sdiodev->func[1]);

3779
	/* Disable F2 to clear any intermediate frame state on the dongle */
3780 3781
	brcmf_sdio_regwb(bus->sdiodev, SDIO_CCCR_IOEx,
			 SDIO_FUNC_ENABLE_1, NULL);
3782

3783
	bus->sdiodev->bus_if->state = BRCMF_BUS_DOWN;
3784 3785 3786
	bus->rxflow = false;

	/* Done with backplane-dependent accesses, can drop clock... */
3787
	brcmf_sdio_regwb(bus->sdiodev, SBSDIO_FUNC1_CHIPCLKCSR, 0, NULL);
3788

3789 3790
	sdio_release_host(bus->sdiodev->func[1]);

3791 3792 3793 3794 3795 3796 3797 3798 3799
	/* ...and initialize clock/power states */
	bus->clkstate = CLK_SDONLY;
	bus->idletime = BRCMF_IDLE_INTERVAL;
	bus->idleclock = BRCMF_IDLE_ACTIVE;

	/* Query the F2 block size, set roundup accordingly */
	bus->blocksize = bus->sdiodev->func[2]->cur_blksize;
	bus->roundup = min(max_roundup, bus->blocksize);

3800 3801 3802 3803
	/* SR state */
	bus->sleeping = false;
	bus->sr_enabled = false;

3804 3805 3806 3807 3808 3809
	return true;
}

static int
brcmf_sdbrcm_watchdog_thread(void *data)
{
3810
	struct brcmf_sdio *bus = (struct brcmf_sdio *)data;
3811 3812 3813 3814 3815 3816 3817

	allow_signal(SIGTERM);
	/* Run until signal received */
	while (1) {
		if (kthread_should_stop())
			break;
		if (!wait_for_completion_interruptible(&bus->watchdog_wait)) {
3818
			brcmf_sdbrcm_bus_watchdog(bus);
3819
			/* Count the tick for reference */
3820
			bus->sdcnt.tickcnt++;
3821 3822 3823 3824 3825 3826 3827 3828 3829
		} else
			break;
	}
	return 0;
}

static void
brcmf_sdbrcm_watchdog(unsigned long data)
{
3830
	struct brcmf_sdio *bus = (struct brcmf_sdio *)data;
3831 3832 3833 3834 3835 3836 3837 3838 3839 3840

	if (bus->watchdog_tsk) {
		complete(&bus->watchdog_wait);
		/* Reschedule the watchdog */
		if (bus->wd_timer_valid)
			mod_timer(&bus->timer,
				  jiffies + BRCMF_WD_POLL_MS * HZ / 1000);
	}
}

3841
static void brcmf_sdbrcm_release_dongle(struct brcmf_sdio *bus)
3842 3843 3844 3845
{
	brcmf_dbg(TRACE, "Enter\n");

	if (bus->ci) {
3846
		sdio_claim_host(bus->sdiodev->func[1]);
3847 3848
		brcmf_sdbrcm_clkctl(bus, CLK_AVAIL, false);
		brcmf_sdbrcm_clkctl(bus, CLK_NONE, false);
3849
		sdio_release_host(bus->sdiodev->func[1]);
3850
		brcmf_sdio_chip_detach(&bus->ci);
3851 3852 3853 3854 3855 3856 3857 3858 3859
		if (bus->vars && bus->varsz)
			kfree(bus->vars);
		bus->vars = NULL;
	}

	brcmf_dbg(TRACE, "Disconnected\n");
}

/* Detach and free everything */
3860
static void brcmf_sdbrcm_release(struct brcmf_sdio *bus)
3861 3862
{
	brcmf_dbg(TRACE, "Enter\n");
3863

3864 3865
	if (bus) {
		/* De-register interrupt handler */
3866
		brcmf_sdio_intr_unregister(bus->sdiodev);
3867

3868
		cancel_work_sync(&bus->datawork);
3869 3870
		if (bus->brcmf_wq)
			destroy_workqueue(bus->brcmf_wq);
3871

3872 3873
		if (bus->sdiodev->bus_if->drvr) {
			brcmf_detach(bus->sdiodev->dev);
3874 3875 3876 3877 3878 3879 3880 3881 3882 3883 3884
			brcmf_sdbrcm_release_dongle(bus);
		}

		brcmf_sdbrcm_release_malloc(bus);

		kfree(bus);
	}

	brcmf_dbg(TRACE, "Disconnected\n");
}

A
Arend van Spriel 已提交
3885 3886 3887 3888 3889 3890
static struct brcmf_bus_ops brcmf_sdio_bus_ops = {
	.stop = brcmf_sdbrcm_bus_stop,
	.init = brcmf_sdbrcm_bus_init,
	.txdata = brcmf_sdbrcm_bus_txdata,
	.txctl = brcmf_sdbrcm_bus_txctl,
	.rxctl = brcmf_sdbrcm_bus_rxctl,
3891
	.gettxq = brcmf_sdbrcm_bus_gettxq,
A
Arend van Spriel 已提交
3892 3893
};

3894
void *brcmf_sdbrcm_probe(u32 regsva, struct brcmf_sdio_dev *sdiodev)
3895 3896
{
	int ret;
3897
	struct brcmf_sdio *bus;
3898 3899
	struct brcmf_bus_dcmd *dlst;
	u32 dngl_txglom;
3900
	u32 txglomalign = 0;
3901
	u8 idx;
3902 3903 3904 3905 3906 3907 3908

	brcmf_dbg(TRACE, "Enter\n");

	/* We make an assumption about address window mappings:
	 * regsva == SI_ENUM_BASE*/

	/* Allocate private bus interface state */
3909
	bus = kzalloc(sizeof(struct brcmf_sdio), GFP_ATOMIC);
3910 3911 3912 3913 3914
	if (!bus)
		goto fail;

	bus->sdiodev = sdiodev;
	sdiodev->bus = bus;
3915
	skb_queue_head_init(&bus->glom);
3916 3917 3918
	bus->txbound = BRCMF_TXBOUND;
	bus->rxbound = BRCMF_RXBOUND;
	bus->txminmax = BRCMF_TXMINMAX;
3919
	bus->tx_seq = SDPCM_SEQ_WRAP - 1;
3920

3921 3922 3923
	INIT_WORK(&bus->datawork, brcmf_sdio_dataworker);
	bus->brcmf_wq = create_singlethread_workqueue("brcmf_wq");
	if (bus->brcmf_wq == NULL) {
3924
		brcmf_err("insufficient memory to create txworkqueue\n");
3925 3926 3927
		goto fail;
	}

3928 3929
	/* attempt to attach to the dongle */
	if (!(brcmf_sdbrcm_probe_attach(bus, regsva))) {
3930
		brcmf_err("brcmf_sdbrcm_probe_attach failed\n");
3931 3932 3933
		goto fail;
	}

3934
	spin_lock_init(&bus->rxctl_lock);
3935 3936 3937 3938 3939 3940 3941 3942 3943 3944 3945 3946 3947 3948
	spin_lock_init(&bus->txqlock);
	init_waitqueue_head(&bus->ctrl_wait);
	init_waitqueue_head(&bus->dcmd_resp_wait);

	/* Set up the watchdog timer */
	init_timer(&bus->timer);
	bus->timer.data = (unsigned long)bus;
	bus->timer.function = brcmf_sdbrcm_watchdog;

	/* Initialize watchdog thread */
	init_completion(&bus->watchdog_wait);
	bus->watchdog_tsk = kthread_run(brcmf_sdbrcm_watchdog_thread,
					bus, "brcmf_watchdog");
	if (IS_ERR(bus->watchdog_tsk)) {
3949
		pr_warn("brcmf_watchdog thread failed to start\n");
3950 3951 3952
		bus->watchdog_tsk = NULL;
	}
	/* Initialize DPC thread */
3953
	atomic_set(&bus->dpc_tskcnt, 0);
3954

3955
	/* Assign bus interface call back */
A
Arend van Spriel 已提交
3956 3957
	bus->sdiodev->bus_if->dev = bus->sdiodev->dev;
	bus->sdiodev->bus_if->ops = &brcmf_sdio_bus_ops;
3958 3959
	bus->sdiodev->bus_if->chip = bus->ci->chip;
	bus->sdiodev->bus_if->chiprev = bus->ci->chiprev;
A
Arend van Spriel 已提交
3960

3961 3962 3963 3964 3965
	/* default sdio bus header length for tx packet */
	bus->tx_hdrlen = SDPCM_HWHDR_LEN + SDPCM_SWHDR_LEN;

	/* Attach to the common layer, reserve hdr space */
	ret = brcmf_attach(bus->tx_hdrlen, bus->sdiodev->dev);
3966
	if (ret != 0) {
3967
		brcmf_err("brcmf_attach failed\n");
3968 3969 3970 3971 3972
		goto fail;
	}

	/* Allocate buffers */
	if (!(brcmf_sdbrcm_probe_malloc(bus))) {
3973
		brcmf_err("brcmf_sdbrcm_probe_malloc failed\n");
3974 3975 3976 3977
		goto fail;
	}

	if (!(brcmf_sdbrcm_probe_init(bus))) {
3978
		brcmf_err("brcmf_sdbrcm_probe_init failed\n");
3979 3980 3981
		goto fail;
	}

3982
	brcmf_sdio_debugfs_create(bus);
3983 3984
	brcmf_dbg(INFO, "completed!!\n");

3985 3986 3987
	/* sdio bus core specific dcmd */
	idx = brcmf_sdio_chip_getinfidx(bus->ci, BCMA_CORE_SDIO_DEV);
	dlst = kzalloc(sizeof(struct brcmf_bus_dcmd), GFP_KERNEL);
3988 3989 3990 3991 3992 3993 3994 3995 3996
	if (dlst) {
		if (bus->ci->c_inf[idx].rev < 12) {
			/* for sdio core rev < 12, disable txgloming */
			dngl_txglom = 0;
			dlst->name = "bus:txglom";
			dlst->param = (char *)&dngl_txglom;
			dlst->param_len = sizeof(u32);
		} else {
			/* otherwise, set txglomalign */
3997 3998 3999 4000 4001
			if (sdiodev->pdata)
				txglomalign = sdiodev->pdata->sd_sgentry_align;
			/* SDIO ADMA requires at least 32 bit alignment */
			if (txglomalign < 4)
				txglomalign = 4;
4002
			dlst->name = "bus:txglomalign";
4003
			dlst->param = (char *)&txglomalign;
4004 4005
			dlst->param_len = sizeof(u32);
		}
4006 4007 4008
		list_add(&dlst->list, &bus->sdiodev->bus_if->dcmd_list);
	}

4009
	/* if firmware path present try to download and bring up bus */
4010
	ret = brcmf_bus_start(bus->sdiodev->dev);
4011
	if (ret != 0) {
4012
		brcmf_err("dongle is not responding\n");
4013
		goto fail;
4014
	}
4015

4016 4017 4018 4019 4020 4021 4022 4023 4024
	return bus;

fail:
	brcmf_sdbrcm_release(bus);
	return NULL;
}

void brcmf_sdbrcm_disconnect(void *ptr)
{
4025
	struct brcmf_sdio *bus = (struct brcmf_sdio *)ptr;
4026 4027 4028 4029 4030 4031 4032 4033 4034 4035

	brcmf_dbg(TRACE, "Enter\n");

	if (bus)
		brcmf_sdbrcm_release(bus);

	brcmf_dbg(TRACE, "Disconnected\n");
}

void
4036
brcmf_sdbrcm_wd_timer(struct brcmf_sdio *bus, uint wdtick)
4037 4038
{
	/* Totally stop the timer */
4039
	if (!wdtick && bus->wd_timer_valid) {
4040 4041 4042 4043 4044 4045
		del_timer_sync(&bus->timer);
		bus->wd_timer_valid = false;
		bus->save_ms = wdtick;
		return;
	}

4046
	/* don't start the wd until fw is loaded */
4047
	if (bus->sdiodev->bus_if->state == BRCMF_BUS_DOWN)
4048 4049
		return;

4050 4051
	if (wdtick) {
		if (bus->save_ms != BRCMF_WD_POLL_MS) {
4052
			if (bus->wd_timer_valid)
4053 4054 4055 4056 4057 4058 4059 4060 4061 4062 4063 4064 4065 4066 4067 4068 4069 4070 4071 4072
				/* Stop timer and restart at new value */
				del_timer_sync(&bus->timer);

			/* Create timer again when watchdog period is
			   dynamically changed or in the first instance
			 */
			bus->timer.expires =
				jiffies + BRCMF_WD_POLL_MS * HZ / 1000;
			add_timer(&bus->timer);

		} else {
			/* Re arm the timer, at last watchdog period */
			mod_timer(&bus->timer,
				jiffies + BRCMF_WD_POLL_MS * HZ / 1000);
		}

		bus->wd_timer_valid = true;
		bus->save_ms = wdtick;
	}
}