/* * Header file describing the internal (inter-module) DHD interfaces. * * Provides type definitions and function prototypes used to link the * DHD OS, bus, and protocol modules. * * Copyright (C) 1999-2017, Broadcom Corporation * * Unless you and Broadcom execute a separate written software license * agreement governing use of this software, this software is licensed to you * under the terms of the GNU General Public License version 2 (the "GPL"), * available at http://www.broadcom.com/licenses/GPLv2.php, with the * following added to such license: * * As a special exception, the copyright holders of this software give you * permission to link this software with independent modules, and to copy and * distribute the resulting executable under terms of your choice, provided that * you also meet, for each linked independent module, the terms and conditions of * the license of that module. An independent module is a module which is not * derived from this software. The special exception does not apply to any * modifications of the software. * * Notwithstanding the above, under no circumstances may you combine this * software in any way with any other Broadcom software provided under a license * other than the GPL, without Broadcom's express prior written consent. * * * <> * * $Id: dhd_bus.h 698895 2017-05-11 02:55:17Z $ */ #ifndef _dhd_bus_h_ #define _dhd_bus_h_ extern int dbus_up(struct dhd_bus *pub); extern int dbus_stop(struct dhd_bus *pub); extern int dbus_send_ctl(struct dhd_bus *pub, uint8 *buf, int len); extern int dbus_recv_ctl(struct dhd_bus *pub, uint8 *buf, int len); #ifdef BCM_REQUEST_FW extern int dbus_reg_notify(void* semaphore); extern void dbus_unreg_notify(void); #endif /* * Exported from dhd bus module (dhd_usb, dhd_sdio) */ /* Indicate (dis)interest in finding dongles. */ extern int dhd_bus_register(void); extern void dhd_bus_unregister(void); /* Download firmware image and nvram image */ extern int dhd_bus_download_firmware(struct dhd_bus *bus, osl_t *osh, char *fw_path, char *nv_path, char *clm_path, char *conf_path); #if defined(BT_OVER_SDIO) extern int dhd_bus_download_btfw(struct dhd_bus *bus, osl_t *osh, char *btfw_path); #endif /* defined (BT_OVER_SDIO) */ /* Stop bus module: clear pending frames, disable data flow */ extern void dhd_bus_stop(struct dhd_bus *bus, bool enforce_mutex); /* Initialize bus module: prepare for communication w/dongle */ extern int dhd_bus_init(dhd_pub_t *dhdp, bool enforce_mutex); /* Get the Bus Idle Time */ extern void dhd_bus_getidletime(dhd_pub_t *dhdp, int *idletime); /* Set the Bus Idle Time */ extern void dhd_bus_setidletime(dhd_pub_t *dhdp, int idle_time); /* Size of Extended Trap data Buffer */ #ifdef BCMPCIE #define BCMPCIE_EXT_TRAP_DATA_MAXLEN 4096 #endif /* Send a data frame to the dongle. Callee disposes of txp. */ #ifdef BCMPCIE extern int dhd_bus_txdata(struct dhd_bus *bus, void *txp, uint8 ifidx); #else extern int dhd_bus_txdata(struct dhd_bus *bus, void *txp); #endif extern struct device * dhd_bus_to_dev(struct dhd_bus *bus); /* Send/receive a control message to/from the dongle. * Expects caller to enforce a single outstanding transaction. */ extern int dhd_bus_txctl(struct dhd_bus *bus, uchar *msg, uint msglen); extern int dhd_bus_rxctl(struct dhd_bus *bus, uchar *msg, uint msglen); /* Watchdog timer function */ extern bool dhd_bus_watchdog(dhd_pub_t *dhd); extern int dhd_bus_oob_intr_register(dhd_pub_t *dhdp); extern void dhd_bus_oob_intr_unregister(dhd_pub_t *dhdp); extern void dhd_bus_oob_intr_set(dhd_pub_t *dhdp, bool enable); extern void dhd_bus_dev_pm_stay_awake(dhd_pub_t *dhdpub); extern void dhd_bus_dev_pm_relax(dhd_pub_t *dhdpub); extern bool dhd_bus_dev_pm_enabled(dhd_pub_t *dhdpub); /* Device console input function */ extern int dhd_bus_console_in(dhd_pub_t *dhd, uchar *msg, uint msglen); /* Deferred processing for the bus, return TRUE requests reschedule */ extern bool dhd_bus_dpc(struct dhd_bus *bus); extern void dhd_bus_isr(bool * InterruptRecognized, bool * QueueMiniportHandleInterrupt, void *arg); /* Check for and handle local prot-specific iovar commands */ extern int dhd_bus_iovar_op(dhd_pub_t *dhdp, const char *name, void *params, int plen, void *arg, int len, bool set); /* Add bus dump output to a buffer */ extern void dhd_bus_dump(dhd_pub_t *dhdp, struct bcmstrbuf *strbuf); /* Clear any bus counters */ extern void dhd_bus_clearcounts(dhd_pub_t *dhdp); /* return the dongle chipid */ extern uint dhd_bus_chip(struct dhd_bus *bus); /* return the dongle chiprev */ extern uint dhd_bus_chiprev(struct dhd_bus *bus); /* Set user-specified nvram parameters. */ extern void dhd_bus_set_nvram_params(struct dhd_bus * bus, const char *nvram_params); extern void *dhd_bus_pub(struct dhd_bus *bus); extern void *dhd_bus_txq(struct dhd_bus *bus); extern const void *dhd_bus_sih(struct dhd_bus *bus); extern uint dhd_bus_hdrlen(struct dhd_bus *bus); #ifdef BCMSDIO extern void dhd_bus_set_dotxinrx(struct dhd_bus *bus, bool val); /* return sdio io status */ extern uint8 dhd_bus_is_ioready(struct dhd_bus *bus); #else #define dhd_bus_set_dotxinrx(a, b) do {} while (0) #endif #define DHD_SET_BUS_STATE_DOWN(_bus) do { \ (_bus)->dhd->busstate = DHD_BUS_DOWN; \ } while (0) /* Register a dummy SDIO client driver in order to be notified of new SDIO device */ extern int dhd_bus_reg_sdio_notify(void* semaphore); extern void dhd_bus_unreg_sdio_notify(void); extern void dhd_txglom_enable(dhd_pub_t *dhdp, bool enable); extern int dhd_bus_get_ids(struct dhd_bus *bus, uint32 *bus_type, uint32 *bus_num, uint32 *slot_num); #if defined(DHD_FW_COREDUMP) && (defined(BCMPCIE) || defined(BCMSDIO)) extern int dhd_bus_mem_dump(dhd_pub_t *dhd); #else #define dhd_bus_mem_dump(x) #endif /* DHD_FW_COREDUMP && (BCMPCIE || BCMSDIO) */ #ifdef BCMPCIE enum { /* Scratch buffer confiuguration update */ D2H_DMA_SCRATCH_BUF, D2H_DMA_SCRATCH_BUF_LEN, /* DMA Indices array buffers for: H2D WR and RD, and D2H WR and RD */ H2D_DMA_INDX_WR_BUF, /* update H2D WR dma indices buf base addr to dongle */ H2D_DMA_INDX_RD_BUF, /* update H2D RD dma indices buf base addr to dongle */ D2H_DMA_INDX_WR_BUF, /* update D2H WR dma indices buf base addr to dongle */ D2H_DMA_INDX_RD_BUF, /* update D2H RD dma indices buf base addr to dongle */ /* DHD sets/gets WR or RD index, in host's H2D and D2H DMA indices buffer */ H2D_DMA_INDX_WR_UPD, /* update H2D WR index in H2D WR dma indices buf */ H2D_DMA_INDX_RD_UPD, /* update H2D RD index in H2D RD dma indices buf */ D2H_DMA_INDX_WR_UPD, /* update D2H WR index in D2H WR dma indices buf */ D2H_DMA_INDX_RD_UPD, /* update D2H RD index in D2H RD dma indices buf */ /* DHD Indices array buffers and update for: H2D flow ring WR */ H2D_IFRM_INDX_WR_BUF, /* update H2D WR dma indices buf base addr to dongle */ H2D_IFRM_INDX_WR_UPD, /* update H2D WR dma indices buf base addr to dongle */ /* H2D and D2H Mailbox data update */ H2D_MB_DATA, D2H_MB_DATA, /* (Common) MsgBuf Ring configuration update */ RING_BUF_ADDR, /* update ring base address to dongle */ RING_ITEM_LEN, /* update ring item size to dongle */ RING_MAX_ITEMS, /* update ring max items to dongle */ /* Update of WR or RD index, for a MsgBuf Ring */ RING_RD_UPD, /* update ring read index from/to dongle */ RING_WR_UPD, /* update ring write index from/to dongle */ TOTAL_LFRAG_PACKET_CNT, MAX_HOST_RXBUFS, HOST_API_VERSION, DNGL_TO_HOST_TRAP_ADDR, #ifdef HOFFLOAD_MODULES WRT_HOST_MODULE_ADDR #endif }; typedef void (*dhd_mb_ring_t) (struct dhd_bus *, uint32); typedef void (*dhd_mb_ring_2_t) (struct dhd_bus *, uint32, bool); extern void dhd_bus_cmn_writeshared(struct dhd_bus *bus, void * data, uint32 len, uint8 type, uint16 ringid); extern void dhd_bus_ringbell(struct dhd_bus *bus, uint32 value); extern void dhd_bus_ringbell_2(struct dhd_bus *bus, uint32 value, bool devwake); extern void dhd_bus_cmn_readshared(struct dhd_bus *bus, void* data, uint8 type, uint16 ringid); extern uint32 dhd_bus_get_sharedflags(struct dhd_bus *bus); extern void dhd_bus_rx_frame(struct dhd_bus *bus, void* pkt, int ifidx, uint pkt_count); extern void dhd_bus_start_queue(struct dhd_bus *bus); extern void dhd_bus_stop_queue(struct dhd_bus *bus); extern dhd_mb_ring_t dhd_bus_get_mbintr_fn(struct dhd_bus *bus); extern dhd_mb_ring_2_t dhd_bus_get_mbintr_2_fn(struct dhd_bus *bus); extern void dhd_bus_write_flow_ring_states(struct dhd_bus *bus, void * data, uint16 flowid); extern void dhd_bus_read_flow_ring_states(struct dhd_bus *bus, void * data, uint8 flowid); extern int dhd_bus_flow_ring_create_request(struct dhd_bus *bus, void *flow_ring_node); extern void dhd_bus_clean_flow_ring(struct dhd_bus *bus, void *flow_ring_node); extern void dhd_bus_flow_ring_create_response(struct dhd_bus *bus, uint16 flow_id, int32 status); extern int dhd_bus_flow_ring_delete_request(struct dhd_bus *bus, void *flow_ring_node); extern void dhd_bus_flow_ring_delete_response(struct dhd_bus *bus, uint16 flowid, uint32 status); extern int dhd_bus_flow_ring_flush_request(struct dhd_bus *bus, void *flow_ring_node); extern void dhd_bus_flow_ring_flush_response(struct dhd_bus *bus, uint16 flowid, uint32 status); extern uint32 dhd_bus_max_h2d_queues(struct dhd_bus *bus); extern int dhd_bus_schedule_queue(struct dhd_bus *bus, uint16 flow_id, bool txs); extern void dhd_bus_set_linkdown(dhd_pub_t *dhdp, bool val); #ifdef IDLE_TX_FLOW_MGMT extern void dhd_bus_flow_ring_resume_response(struct dhd_bus *bus, uint16 flowid, int32 status); #endif /* IDLE_TX_FLOW_MGMT */ extern int dhdpcie_bus_clock_start(struct dhd_bus *bus); extern int dhdpcie_bus_clock_stop(struct dhd_bus *bus); extern int dhdpcie_bus_enable_device(struct dhd_bus *bus); extern int dhdpcie_bus_disable_device(struct dhd_bus *bus); extern int dhdpcie_bus_alloc_resource(struct dhd_bus *bus); extern void dhdpcie_bus_free_resource(struct dhd_bus *bus); extern bool dhdpcie_bus_dongle_attach(struct dhd_bus *bus); extern int dhd_bus_release_dongle(struct dhd_bus *bus); extern int dhd_bus_request_irq(struct dhd_bus *bus); extern int dhdpcie_get_pcieirq(struct dhd_bus *bus, unsigned int *irq); extern void dhdpcie_cto_init(struct dhd_bus *bus, bool enable); #ifdef DHD_FW_COREDUMP extern struct dhd_bus *g_dhd_bus; extern int dhd_dongle_mem_dump(void); #endif /* DHD_FW_COREDUMP */ #ifdef IDLE_TX_FLOW_MGMT extern void dhd_bus_idle_tx_ring_suspend(dhd_pub_t *dhd, uint16 flow_ring_id); #endif /* IDLE_TX_FLOW_MGMT */ extern void dhd_bus_handle_mb_data(struct dhd_bus *bus, uint32 d2h_mb_data); #endif /* BCMPCIE */ /* dump the device trap informtation */ extern void dhd_bus_dump_trap_info(struct dhd_bus *bus, struct bcmstrbuf *b); /* Function to set default min res mask */ extern bool dhd_bus_set_default_min_res_mask(struct dhd_bus *bus); /* Function to reset PMU registers */ extern void dhd_bus_pmu_reg_reset(dhd_pub_t *dhdp); #ifdef DHD_ULP extern void dhd_bus_ulp_disable_console(dhd_pub_t *dhdp); extern void dhd_bus_ucode_download(struct dhd_bus *bus); #endif /* DHD_ULP */ extern int dhd_bus_readwrite_bp_addr(dhd_pub_t *dhdp, uint addr, uint size, uint* data, bool read); #ifdef BT_OVER_SDIO /* * SDIO layer clock control functions exposed to be called from other layers. * This is required especially in the case where the BUS is shared between * BT and SDIO and we have to control the clock. The callers of this function * are expected to hold the sdlock */ int __dhdsdio_clk_enable(struct dhd_bus *bus, bus_owner_t owner, int can_wait); int __dhdsdio_clk_disable(struct dhd_bus *bus, bus_owner_t owner, int can_wait); void dhdsdio_reset_bt_use_count(struct dhd_bus *bus); #endif /* BT_OVER_SDIO */ #ifdef BCMPCIE extern void dhd_bus_dump_console_buffer(struct dhd_bus *bus); #else #define dhd_bus_dump_console_buffer(x) #endif /* BCMPCIE */ extern uint16 dhd_get_chipid(dhd_pub_t *dhd); extern int dhd_get_idletime(dhd_pub_t *dhd); #ifdef DHD_WAKE_STATUS extern wake_counts_t* dhd_bus_get_wakecount(dhd_pub_t *dhd); extern int dhd_bus_get_bus_wake(dhd_pub_t * dhd); #endif /* DHD_WAKE_STATUS */ #endif /* _dhd_bus_h_ */