572 lines
17 KiB
C
572 lines
17 KiB
C
/*
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* Dongle BUS interface Abstraction layer
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* target serial buses like USB, SDIO, SPI, etc.
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*
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* Copyright (C) 1999-2012, Broadcom Corporation
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*
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* Unless you and Broadcom execute a separate written software license
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* agreement governing use of this software, this software is licensed to you
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* under the terms of the GNU General Public License version 2 (the "GPL"),
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* available at http://www.broadcom.com/licenses/GPLv2.php, with the
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* following added to such license:
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*
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* As a special exception, the copyright holders of this software give you
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* permission to link this software with independent modules, and to copy and
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* distribute the resulting executable under terms of your choice, provided that
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* you also meet, for each linked independent module, the terms and conditions of
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* the license of that module. An independent module is a module which is not
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* derived from this software. The special exception does not apply to any
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* modifications of the software.
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*
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* Notwithstanding the above, under no circumstances may you combine this
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* software in any way with any other Broadcom software provided under a license
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* other than the GPL, without Broadcom's express prior written consent.
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*
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* $Id: dbus.h 323680 2012-03-26 17:52:31Z $
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*/
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#ifndef __DBUS_H__
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#define __DBUS_H__
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#include "typedefs.h"
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#define DBUSTRACE(args)
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#define DBUSERR(args)
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#define DBUSINFO(args)
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#define DBUSTRACE(args)
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#define DBUSDBGLOCK(args)
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enum {
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DBUS_OK = 0,
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DBUS_ERR = -200,
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DBUS_ERR_TIMEOUT,
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DBUS_ERR_DISCONNECT,
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DBUS_ERR_NODEVICE,
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DBUS_ERR_UNSUPPORTED,
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DBUS_ERR_PENDING,
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DBUS_ERR_NOMEM,
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DBUS_ERR_TXFAIL,
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DBUS_ERR_TXTIMEOUT,
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DBUS_ERR_TXDROP,
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DBUS_ERR_RXFAIL,
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DBUS_ERR_RXDROP,
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DBUS_ERR_TXCTLFAIL,
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DBUS_ERR_RXCTLFAIL,
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DBUS_ERR_REG_PARAM,
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DBUS_STATUS_CANCELLED,
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DBUS_ERR_NVRAM,
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DBUS_JUMBO_NOMATCH,
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DBUS_JUMBO_BAD_FORMAT,
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DBUS_NVRAM_NONTXT
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};
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#define BCM_OTP_SIZE_43236 84 /* number of 16 bit values */
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#define BCM_OTP_SW_RGN_43236 24 /* start offset of SW config region */
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#define BCM_OTP_ADDR_43236 0x18000800 /* address of otp base */
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#define ERR_CBMASK_TXFAIL 0x00000001
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#define ERR_CBMASK_RXFAIL 0x00000002
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#define ERR_CBMASK_ALL 0xFFFFFFFF
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#define DBUS_CBCTL_WRITE 0
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#define DBUS_CBCTL_READ 1
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#if defined(INTR_EP_ENABLE)
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#define DBUS_CBINTR_POLL 2
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#endif /* defined(INTR_EP_ENABLE) */
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#define DBUS_TX_RETRY_LIMIT 3 /* retries for failed txirb */
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#define DBUS_TX_TIMEOUT_INTERVAL 250 /* timeout for txirb complete, in ms */
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#define DBUS_BUFFER_SIZE_TX 16000
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#define DBUS_BUFFER_SIZE_RX 5000
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#define DBUS_BUFFER_SIZE_TX_NOAGG 2048
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#define DBUS_BUFFER_SIZE_RX_NOAGG 2048
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/* DBUS types */
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enum {
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DBUS_USB,
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DBUS_SDIO,
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DBUS_SPI,
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DBUS_UNKNOWN
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};
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enum dbus_state {
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DBUS_STATE_DL_PENDING,
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DBUS_STATE_DL_DONE,
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DBUS_STATE_UP,
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DBUS_STATE_DOWN,
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DBUS_STATE_PNP_FWDL,
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DBUS_STATE_DISCONNECT,
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DBUS_STATE_SLEEP
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};
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enum dbus_pnp_state {
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DBUS_PNP_DISCONNECT,
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DBUS_PNP_SLEEP,
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DBUS_PNP_RESUME
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};
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enum dbus_file {
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DBUS_FIRMWARE,
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DBUS_NVFILE
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};
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typedef enum _DEVICE_SPEED {
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INVALID_SPEED = -1,
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LOW_SPEED = 1, /* USB 1.1: 1.5 Mbps */
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FULL_SPEED, /* USB 1.1: 12 Mbps */
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HIGH_SPEED, /* USB 2.0: 480 Mbps */
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SUPER_SPEED, /* USB 3.0: 4.8 Gbps */
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} DEVICE_SPEED;
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typedef struct {
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int bustype;
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int vid;
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int pid;
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int devid;
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int chiprev; /* chip revsion number */
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int mtu;
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int nchan; /* Data Channels */
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int has_2nd_bulk_in_ep;
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} dbus_attrib_t;
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/* FIX: Account for errors related to DBUS;
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* Let upper layer account for packets/bytes
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*/
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typedef struct {
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uint32 rx_errors;
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uint32 tx_errors;
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uint32 rx_dropped;
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uint32 tx_dropped;
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} dbus_stats_t;
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/*
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* Configurable BUS parameters
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*/
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typedef struct {
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bool rxctl_deferrespok;
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} dbus_config_t;
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/*
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* External Download Info
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*/
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typedef struct dbus_extdl {
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uint8 *fw;
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int fwlen;
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uint8 *vars;
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int varslen;
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} dbus_extdl_t;
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struct dbus_callbacks;
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struct exec_parms;
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typedef void *(*probe_cb_t)(void *arg, const char *desc, uint32 bustype, uint32 hdrlen);
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typedef void (*disconnect_cb_t)(void *arg);
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typedef void *(*exec_cb_t)(struct exec_parms *args);
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/* Client callbacks registered during dbus_attach() */
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typedef struct dbus_callbacks {
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void (*send_complete)(void *cbarg, void *info, int status);
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void (*recv_buf)(void *cbarg, uint8 *buf, int len);
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void (*recv_pkt)(void *cbarg, void *pkt);
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void (*txflowcontrol)(void *cbarg, bool onoff);
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void (*errhandler)(void *cbarg, int err);
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void (*ctl_complete)(void *cbarg, int type, int status);
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void (*state_change)(void *cbarg, int state);
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void *(*pktget)(void *cbarg, uint len, bool send);
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void (*pktfree)(void *cbarg, void *p, bool send);
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} dbus_callbacks_t;
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struct dbus_pub;
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struct bcmstrbuf;
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struct dbus_irb;
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struct dbus_irb_rx;
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struct dbus_irb_tx;
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struct dbus_intf_callbacks;
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typedef struct {
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void* (*attach)(struct dbus_pub *pub, void *cbarg, struct dbus_intf_callbacks *cbs);
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void (*detach)(struct dbus_pub *pub, void *bus);
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int (*up)(void *bus);
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int (*down)(void *bus);
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int (*send_irb)(void *bus, struct dbus_irb_tx *txirb);
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int (*recv_irb)(void *bus, struct dbus_irb_rx *rxirb);
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int (*cancel_irb)(void *bus, struct dbus_irb_tx *txirb);
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int (*send_ctl)(void *bus, uint8 *buf, int len);
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int (*recv_ctl)(void *bus, uint8 *buf, int len);
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int (*get_stats)(void *bus, dbus_stats_t *stats);
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int (*get_attrib)(void *bus, dbus_attrib_t *attrib);
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int (*pnp)(void *bus, int evnt);
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int (*remove)(void *bus);
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int (*resume)(void *bus);
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int (*suspend)(void *bus);
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int (*stop)(void *bus);
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int (*reset)(void *bus);
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/* Access to bus buffers directly */
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void *(*pktget)(void *bus, int len);
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void (*pktfree)(void *bus, void *pkt);
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int (*iovar_op)(void *bus, const char *name, void *params, int plen, void *arg, int len,
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bool set);
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void (*dump)(void *bus, struct bcmstrbuf *strbuf);
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int (*set_config)(void *bus, dbus_config_t *config);
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int (*get_config)(void *bus, dbus_config_t *config);
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bool (*device_exists)(void *bus);
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bool (*dlneeded)(void *bus);
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int (*dlstart)(void *bus, uint8 *fw, int len);
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int (*dlrun)(void *bus);
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bool (*recv_needed)(void *bus);
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void *(*exec_rxlock)(void *bus, exec_cb_t func, struct exec_parms *args);
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void *(*exec_txlock)(void *bus, exec_cb_t func, struct exec_parms *args);
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int (*tx_timer_init)(void *bus);
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int (*tx_timer_start)(void *bus, uint timeout);
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int (*tx_timer_stop)(void *bus);
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int (*sched_dpc)(void *bus);
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int (*lock)(void *bus);
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int (*unlock)(void *bus);
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int (*sched_probe_cb)(void *bus);
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int (*shutdown)(void *bus);
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int (*recv_stop)(void *bus);
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int (*recv_resume)(void *bus);
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int (*recv_irb_from_ep)(void *bus, struct dbus_irb_rx *rxirb, uint ep_idx);
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int (*readreg)(void *bus, uint32 regaddr, int datalen, uint32 *value);
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/* Add from the bottom */
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} dbus_intf_t;
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typedef struct dbus_pub {
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struct osl_info *osh;
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dbus_stats_t stats;
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dbus_attrib_t attrib;
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enum dbus_state busstate;
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DEVICE_SPEED device_speed;
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int ntxq, nrxq, rxsize;
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void *bus;
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struct shared_info *sh;
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void *dev_info;
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} dbus_pub_t;
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#define BUS_INFO(bus, type) (((type *) bus)->pub->bus)
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#define ALIGNED_LOCAL_VARIABLE(var, align) \
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uint8 buffer[SDALIGN+64]; \
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uint8 *var = (uint8 *)(((uintptr)&buffer[0]) & ~(align-1)) + align;
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/*
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* Public Bus Function Interface
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*/
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/*
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* FIX: Is there better way to pass OS/Host handles to DBUS but still
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* maintain common interface for all OS??
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* Under NDIS, param1 needs to be MiniportHandle
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* For NDIS60, param2 is WdfDevice
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* Under Linux, param1 and param2 are NULL;
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*/
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extern int dbus_register(int vid, int pid, probe_cb_t prcb, disconnect_cb_t discb, void *prarg,
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void *param1, void *param2);
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extern int dbus_deregister(void);
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extern dbus_pub_t *dbus_attach(struct osl_info *osh, int rxsize, int nrxq, int ntxq,
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void *cbarg, dbus_callbacks_t *cbs, dbus_extdl_t *extdl, struct shared_info *sh);
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extern void dbus_detach(dbus_pub_t *pub);
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extern int dbus_up(dbus_pub_t *pub);
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extern int dbus_down(dbus_pub_t *pub);
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extern int dbus_stop(dbus_pub_t *pub);
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extern int dbus_shutdown(dbus_pub_t *pub);
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extern void dbus_flowctrl_rx(dbus_pub_t *pub, bool on);
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extern int dbus_send_txdata(dbus_pub_t *dbus, void *pktbuf);
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extern int dbus_send_buf(dbus_pub_t *pub, uint8 *buf, int len, void *info);
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extern int dbus_send_pkt(dbus_pub_t *pub, void *pkt, void *info);
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extern int dbus_send_ctl(dbus_pub_t *pub, uint8 *buf, int len);
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extern int dbus_recv_ctl(dbus_pub_t *pub, uint8 *buf, int len);
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extern int dbus_recv_bulk(dbus_pub_t *pub, uint32 ep_idx);
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extern int dbus_poll_intr(dbus_pub_t *pub);
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extern int dbus_get_stats(dbus_pub_t *pub, dbus_stats_t *stats);
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extern int dbus_get_attrib(dbus_pub_t *pub, dbus_attrib_t *attrib);
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extern int dbus_get_device_speed(dbus_pub_t *pub);
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extern int dbus_set_config(dbus_pub_t *pub, dbus_config_t *config);
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extern int dbus_get_config(dbus_pub_t *pub, dbus_config_t *config);
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extern void * dbus_get_devinfo(dbus_pub_t *pub);
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extern void *dbus_pktget(dbus_pub_t *pub, int len);
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extern void dbus_pktfree(dbus_pub_t *pub, void* pkt);
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extern int dbus_set_errmask(dbus_pub_t *pub, uint32 mask);
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extern int dbus_pnp_sleep(dbus_pub_t *pub);
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extern int dbus_pnp_resume(dbus_pub_t *pub, int *fw_reload);
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extern int dbus_pnp_disconnect(dbus_pub_t *pub);
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extern int dbus_iovar_op(dbus_pub_t *pub, const char *name,
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void *params, int plen, void *arg, int len, bool set);
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extern void *dhd_dbus_txq(const dbus_pub_t *pub);
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extern uint dhd_dbus_hdrlen(const dbus_pub_t *pub);
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/*
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* Private Common Bus Interface
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*/
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/* IO Request Block (IRB) */
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typedef struct dbus_irb {
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struct dbus_irb *next; /* it's casted from dbus_irb_tx or dbus_irb_rx struct */
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} dbus_irb_t;
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typedef struct dbus_irb_rx {
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struct dbus_irb irb; /* Must be first */
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uint8 *buf;
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int buf_len;
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int actual_len;
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void *pkt;
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void *info;
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void *arg;
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} dbus_irb_rx_t;
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typedef struct dbus_irb_tx {
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struct dbus_irb irb; /* Must be first */
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uint8 *buf;
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int len;
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void *pkt;
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int retry_count;
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void *info;
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void *arg;
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void *send_buf; /* linear bufffer for LINUX when aggreagtion is enabled */
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} dbus_irb_tx_t;
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/* DBUS interface callbacks are different from user callbacks
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* so, internally, different info can be passed to upper layer
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*/
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typedef struct dbus_intf_callbacks {
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void (*send_irb_timeout)(void *cbarg, dbus_irb_tx_t *txirb);
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void (*send_irb_complete)(void *cbarg, dbus_irb_tx_t *txirb, int status);
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void (*recv_irb_complete)(void *cbarg, dbus_irb_rx_t *rxirb, int status);
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void (*errhandler)(void *cbarg, int err);
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void (*ctl_complete)(void *cbarg, int type, int status);
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void (*state_change)(void *cbarg, int state);
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bool (*isr)(void *cbarg, bool *wantdpc);
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bool (*dpc)(void *cbarg, bool bounded);
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void (*watchdog)(void *cbarg);
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void *(*pktget)(void *cbarg, uint len, bool send);
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void (*pktfree)(void *cbarg, void *p, bool send);
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struct dbus_irb* (*getirb)(void *cbarg, bool send);
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void (*rxerr_indicate)(void *cbarg, bool on);
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} dbus_intf_callbacks_t;
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/*
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* Porting: To support new bus, port these functions below
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*/
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/*
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* Bus specific Interface
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* Implemented by dbus_usb.c/dbus_sdio.c
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*/
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extern int dbus_bus_register(int vid, int pid, probe_cb_t prcb, disconnect_cb_t discb, void *prarg,
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dbus_intf_t **intf, void *param1, void *param2);
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extern int dbus_bus_deregister(void);
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extern void dbus_bus_fw_get(void *bus, uint8 **fw, int *fwlen, int *decomp);
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/*
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* Bus-specific and OS-specific Interface
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* Implemented by dbus_usb_[linux/ndis].c/dbus_sdio_[linux/ndis].c
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*/
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extern int dbus_bus_osl_register(int vid, int pid, probe_cb_t prcb, disconnect_cb_t discb,
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void *prarg, dbus_intf_t **intf, void *param1, void *param2);
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extern int dbus_bus_osl_deregister(void);
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/*
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* Bus-specific, OS-specific, HW-specific Interface
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* Mainly for SDIO Host HW controller
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*/
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extern int dbus_bus_osl_hw_register(int vid, int pid, probe_cb_t prcb, disconnect_cb_t discb,
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void *prarg, dbus_intf_t **intf);
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extern int dbus_bus_osl_hw_deregister(void);
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extern uint usbdev_bulkin_eps(void);
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#if defined(BCM_REQUEST_FW)
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extern void *dbus_get_fw_nvfile(int devid, uint8 **fw, int *fwlen, int type,
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uint16 boardtype, uint16 boardrev);
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extern void dbus_release_fw_nvfile(void *firmware);
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#endif /* #if defined(BCM_REQUEST_FW) */
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#if defined(EHCI_FASTPATH_TX) || defined(EHCI_FASTPATH_RX)
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#if (LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 0))
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/* Backward compatibility */
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typedef unsigned int gfp_t;
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#define dma_pool pci_pool
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#define dma_pool_create(name, dev, size, align, alloc) \
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pci_pool_create(name, dev, size, align, alloc, GFP_DMA | GFP_ATOMIC)
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#define dma_pool_destroy(pool) pci_pool_destroy(pool)
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#define dma_pool_alloc(pool, flags, handle) pci_pool_alloc(pool, flags, handle)
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#define dma_pool_free(pool, vaddr, addr) pci_pool_free(pool, vaddr, addr)
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#define dma_map_single(dev, addr, size, dir) pci_map_single(dev, addr, size, dir)
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#define dma_unmap_single(dev, hnd, size, dir) pci_unmap_single(dev, hnd, size, dir)
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#define DMA_FROM_DEVICE PCI_DMA_FROMDEVICE
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#define DMA_TO_DEVICE PCI_DMA_TODEVICE
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#endif /* (LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 0)) */
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/* Availability of these functions varies (when present, they have two arguments) */
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#ifndef hc32_to_cpu
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#define hc32_to_cpu(x) le32_to_cpu(x)
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#define cpu_to_hc32(x) cpu_to_le32(x)
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typedef unsigned int __hc32;
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#else
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#error Two-argument functions needed
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#endif
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/* Private USB opcode base */
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#define EHCI_FASTPATH 0x31
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#define EHCI_SET_EP_BYPASS EHCI_FASTPATH
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#define EHCI_SET_BYPASS_CB (EHCI_FASTPATH + 1)
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#define EHCI_SET_BYPASS_DEV (EHCI_FASTPATH + 2)
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#define EHCI_DUMP_STATE (EHCI_FASTPATH + 3)
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#define EHCI_SET_BYPASS_POOL (EHCI_FASTPATH + 4)
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#define EHCI_CLR_EP_BYPASS (EHCI_FASTPATH + 5)
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/*
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* EHCI QTD structure (hardware and extension)
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* NOTE that is does not need to (and does not) match its kernel counterpart
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*/
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#define EHCI_QTD_NBUFFERS 5
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#define EHCI_QTD_ALIGN 32
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#define EHCI_BULK_PACKET_SIZE 512
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#define EHCI_QTD_XACTERR_MAX 32
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struct ehci_qtd {
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/* Hardware map */
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volatile uint32_t qtd_next;
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volatile uint32_t qtd_altnext;
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volatile uint32_t qtd_status;
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#define EHCI_QTD_GET_BYTES(x) (((x)>>16) & 0x7fff)
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#define EHCI_QTD_IOC 0x00008000
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#define EHCI_QTD_GET_CERR(x) (((x)>>10) & 0x3)
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#define EHCI_QTD_SET_CERR(x) ((x) << 10)
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#define EHCI_QTD_GET_PID(x) (((x)>>8) & 0x3)
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#define EHCI_QTD_SET_PID(x) ((x) << 8)
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#define EHCI_QTD_ACTIVE 0x80
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#define EHCI_QTD_HALTED 0x40
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#define EHCI_QTD_BUFERR 0x20
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#define EHCI_QTD_BABBLE 0x10
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#define EHCI_QTD_XACTERR 0x08
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#define EHCI_QTD_MISSEDMICRO 0x04
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volatile uint32_t qtd_buffer[EHCI_QTD_NBUFFERS];
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volatile uint32_t qtd_buffer_hi[EHCI_QTD_NBUFFERS];
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/* Implementation extension */
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dma_addr_t qtd_self; /* own hardware address */
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struct ehci_qtd *obj_next; /* software link to the next QTD */
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void *rpc; /* pointer to the rpc buffer */
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size_t length; /* length of the data in the buffer */
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void *buff; /* pointer to the reassembly buffer */
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int xacterrs; /* retry counter for qtd xact error */
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} __attribute__ ((aligned(EHCI_QTD_ALIGN)));
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|
|
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#define EHCI_NULL __constant_cpu_to_le32(1) /* HW null pointer shall be odd */
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|
|
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#define SHORT_READ_Q(token) (EHCI_QTD_GET_BYTES(token) != 0 && EHCI_QTD_GET_PID(token) == 1)
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|
|
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/* Queue Head */
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|
/* NOTE This structure is slightly different from the one in the kernel; but needs to stay
|
|
* compatible
|
|
*/
|
|
struct ehci_qh {
|
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/* Hardware map */
|
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volatile uint32_t qh_link;
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volatile uint32_t qh_endp;
|
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volatile uint32_t qh_endphub;
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volatile uint32_t qh_curqtd;
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|
|
|
/* QTD overlay */
|
|
volatile uint32_t ow_next;
|
|
volatile uint32_t ow_altnext;
|
|
volatile uint32_t ow_status;
|
|
volatile uint32_t ow_buffer [EHCI_QTD_NBUFFERS];
|
|
volatile uint32_t ow_buffer_hi [EHCI_QTD_NBUFFERS];
|
|
|
|
/* Extension (should match the kernel layout) */
|
|
dma_addr_t unused0;
|
|
void *unused1;
|
|
struct list_head unused2;
|
|
struct ehci_qtd *dummy;
|
|
struct ehci_qh *unused3;
|
|
|
|
struct ehci_hcd *unused4;
|
|
#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0))
|
|
struct kref unused5;
|
|
unsigned unused6;
|
|
|
|
uint8_t unused7;
|
|
|
|
/* periodic schedule info */
|
|
uint8_t unused8;
|
|
uint8_t unused9;
|
|
uint8_t unused10;
|
|
uint16_t unused11;
|
|
uint16_t unused12;
|
|
uint16_t unused13;
|
|
struct usb_device *unused14;
|
|
#else
|
|
unsigned unused5;
|
|
|
|
u8 unused6;
|
|
|
|
/* periodic schedule info */
|
|
u8 unused7;
|
|
u8 unused8;
|
|
u8 unused9;
|
|
unsigned short unused10;
|
|
unsigned short unused11;
|
|
#define NO_FRAME ((unsigned short)~0)
|
|
#ifdef EHCI_QUIRK_FIX
|
|
struct usb_device *unused12;
|
|
#endif /* EHCI_QUIRK_FIX */
|
|
#endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0)) */
|
|
struct ehci_qtd *first_qtd;
|
|
/* Link to the first QTD; this is an optimized equivalent of the qtd_list field */
|
|
/* NOTE that ehci_qh in ehci.h shall reserve this word */
|
|
} __attribute__ ((aligned(EHCI_QTD_ALIGN)));
|
|
|
|
#if (LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 0))
|
|
/* The corresponding structure in the kernel is used to get the QH */
|
|
struct hcd_dev { /* usb_device.hcpriv points to this */
|
|
struct list_head unused0;
|
|
struct list_head unused1;
|
|
|
|
/* array of QH pointers */
|
|
void *ep[32];
|
|
};
|
|
#endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0)) */
|
|
|
|
int optimize_qtd_fill_with_rpc(const dbus_pub_t *pub, int epn, struct ehci_qtd *qtd, void *rpc,
|
|
int token, int len);
|
|
int optimize_qtd_fill_with_data(const dbus_pub_t *pub, int epn, struct ehci_qtd *qtd, void *data,
|
|
int token, int len);
|
|
int optimize_submit_async(struct ehci_qtd *qtd, int epn);
|
|
void inline optimize_ehci_qtd_init(struct ehci_qtd *qtd, dma_addr_t dma);
|
|
struct ehci_qtd *optimize_ehci_qtd_alloc(gfp_t flags);
|
|
void optimize_ehci_qtd_free(struct ehci_qtd *qtd);
|
|
void optimize_submit_rx_request(const dbus_pub_t *pub, int epn, struct ehci_qtd *qtd_in, void *buf);
|
|
#endif /* EHCI_FASTPATH_TX || EHCI_FASTPATH_RX */
|
|
|
|
void dbus_flowctrl_tx(void *dbi, bool on);
|
|
#endif /* __DBUS_H__ */
|