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506 lines
16 KiB
506 lines
16 KiB
/****************************************************************************** |
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* |
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* Copyright (C) 2005-2012 Broadcom Corporation |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at: |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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* |
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******************************************************************************/ |
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#include <string.h> |
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#include "bt_target.h" |
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#if (BTA_HH_INCLUDED == TRUE) |
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#include "bta_hh_int.h" |
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#include "osi/include/osi.h" |
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/* if SSR max latency is not defined by remote device, set the default value |
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as half of the link supervision timeout */ |
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#define BTA_HH_GET_DEF_SSR_MAX_LAT(x) ((x) >> 1) |
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/***************************************************************************** |
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* Constants |
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****************************************************************************/ |
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#define BTA_HH_KB_CTRL_MASK 0x11 |
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#define BTA_HH_KB_SHIFT_MASK 0x22 |
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#define BTA_HH_KB_ALT_MASK 0x44 |
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#define BTA_HH_KB_GUI_MASK 0x88 |
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#define BTA_HH_KB_CAPS_LOCK 0x39 /* caps lock */ |
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#define BTA_HH_KB_NUM_LOCK 0x53 /* num lock */ |
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#define BTA_HH_MAX_RPT_CHARS 8 |
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static const uint8_t bta_hh_mod_key_mask[BTA_HH_MOD_MAX_KEY] = { |
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BTA_HH_KB_CTRL_MASK, BTA_HH_KB_SHIFT_MASK, BTA_HH_KB_ALT_MASK, |
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BTA_HH_KB_GUI_MASK}; |
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/******************************************************************************* |
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* |
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* Function bta_hh_find_cb |
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* |
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* Description Find best available control block according to BD address. |
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* |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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uint8_t bta_hh_find_cb(const RawAddress& bda) { |
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uint8_t xx; |
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/* See how many active devices there are. */ |
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for (xx = 0; xx < BTA_HH_MAX_DEVICE; xx++) { |
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/* check if any active/known devices is a match */ |
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if ((bda == bta_hh_cb.kdev[xx].addr && !bda.IsEmpty())) { |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("found kdev_cb[%d] hid_handle = %d ", xx, |
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bta_hh_cb.kdev[xx].hid_handle) |
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#endif |
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return xx; |
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} |
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#if (BTA_HH_DEBUG == TRUE) |
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else |
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APPL_TRACE_DEBUG("in_use ? [%d] kdev[%d].hid_handle = %d state = [%d]", |
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bta_hh_cb.kdev[xx].in_use, xx, |
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bta_hh_cb.kdev[xx].hid_handle, bta_hh_cb.kdev[xx].state); |
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#endif |
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} |
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/* if no active device match, find a spot for it */ |
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for (xx = 0; xx < BTA_HH_MAX_DEVICE; xx++) { |
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if (!bta_hh_cb.kdev[xx].in_use |
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/** M: Bug Check state item for connection conflict @{ */ |
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&& bta_hh_cb.kdev[xx].state == BTA_HH_IDLE_ST |
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/** @} */) { |
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bta_hh_cb.kdev[xx].addr = bda; |
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break; |
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} |
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} |
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/* If device list full, report BTA_HH_IDX_INVALID */ |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("bta_hh_find_cb:: index = %d while max = %d", xx, |
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BTA_HH_MAX_DEVICE); |
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#endif |
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if (xx == BTA_HH_MAX_DEVICE) xx = BTA_HH_IDX_INVALID; |
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return xx; |
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} |
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/******************************************************************************* |
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* |
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* Function bta_hh_clean_up_kdev |
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* |
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* Description Clean up device control block when device is removed from |
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* manitainace list, and update control block index map. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void bta_hh_clean_up_kdev(tBTA_HH_DEV_CB* p_cb) { |
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uint8_t index; |
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if (p_cb->hid_handle != BTA_HH_INVALID_HANDLE) { |
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#if (BTA_HH_LE_INCLUDED == TRUE) |
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if (p_cb->is_le_device) |
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bta_hh_cb.le_cb_index[BTA_HH_GET_LE_CB_IDX(p_cb->hid_handle)] = |
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BTA_HH_IDX_INVALID; |
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else |
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#endif |
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bta_hh_cb.cb_index[p_cb->hid_handle] = BTA_HH_IDX_INVALID; |
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} |
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/* reset device control block */ |
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index = p_cb->index; /* Preserve index for this control block */ |
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/* Free buffer for report descriptor info */ |
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osi_free_and_reset((void**)&p_cb->dscp_info.descriptor.dsc_list); |
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memset(p_cb, 0, sizeof(tBTA_HH_DEV_CB)); /* Reset control block */ |
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p_cb->index = index; /* Restore index for this control block */ |
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p_cb->state = BTA_HH_IDLE_ST; |
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p_cb->hid_handle = BTA_HH_INVALID_HANDLE; |
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} |
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/******************************************************************************* |
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* |
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* Function bta_hh_update_di_info |
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* |
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* Description Maintain a known device list for BTA HH. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void bta_hh_update_di_info(tBTA_HH_DEV_CB* p_cb, uint16_t vendor_id, |
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uint16_t product_id, uint16_t version, |
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#if (BTA_HH_LE_INCLUDED == TRUE) |
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uint8_t flag) |
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#else |
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UNUSED_ATTR uint8_t flag) |
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#endif |
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{ |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("vendor_id = 0x%2x product_id = 0x%2x version = 0x%2x", |
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vendor_id, product_id, version); |
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#endif |
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p_cb->dscp_info.vendor_id = vendor_id; |
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p_cb->dscp_info.product_id = product_id; |
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p_cb->dscp_info.version = version; |
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#if (BTA_HH_LE_INCLUDED == TRUE) |
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p_cb->dscp_info.flag = flag; |
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#endif |
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} |
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/******************************************************************************* |
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* |
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* Function bta_hh_add_device_to_list |
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* |
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* Description Maintain a known device list for BTA HH. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void bta_hh_add_device_to_list(tBTA_HH_DEV_CB* p_cb, uint8_t handle, |
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uint16_t attr_mask, |
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tHID_DEV_DSCP_INFO* p_dscp_info, |
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uint8_t sub_class, uint16_t ssr_max_latency, |
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uint16_t ssr_min_tout, uint8_t app_id) { |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("subclass = 0x%2x", sub_class); |
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#endif |
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p_cb->hid_handle = handle; |
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p_cb->in_use = true; |
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p_cb->attr_mask = attr_mask; |
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p_cb->sub_class = sub_class; |
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p_cb->app_id = app_id; |
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p_cb->dscp_info.ssr_max_latency = ssr_max_latency; |
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p_cb->dscp_info.ssr_min_tout = ssr_min_tout; |
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/* store report descriptor info */ |
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if (p_dscp_info) { |
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osi_free_and_reset((void**)&p_cb->dscp_info.descriptor.dsc_list); |
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if (p_dscp_info->dl_len) { |
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p_cb->dscp_info.descriptor.dsc_list = |
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(uint8_t*)osi_malloc(p_dscp_info->dl_len); |
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p_cb->dscp_info.descriptor.dl_len = p_dscp_info->dl_len; |
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memcpy(p_cb->dscp_info.descriptor.dsc_list, p_dscp_info->dsc_list, |
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p_dscp_info->dl_len); |
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} |
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} |
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} |
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/******************************************************************************* |
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* |
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* Function bta_hh_tod_spt |
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* |
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* Description Check to see if this type of device is supported |
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* |
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* Returns |
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* |
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******************************************************************************/ |
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bool bta_hh_tod_spt(tBTA_HH_DEV_CB* p_cb, uint8_t sub_class) { |
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uint8_t xx; |
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uint8_t cod = (sub_class >> 2); /* lower two bits are reserved */ |
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for (xx = 0; xx < p_bta_hh_cfg->max_devt_spt; xx++) { |
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if (cod == (uint8_t)p_bta_hh_cfg->p_devt_list[xx].tod) { |
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p_cb->app_id = p_bta_hh_cfg->p_devt_list[xx].app_id; |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_EVENT("bta_hh_tod_spt sub_class:0x%x supported", sub_class); |
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#endif |
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return true; |
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} |
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} |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_EVENT("bta_hh_tod_spt sub_class:0x%x NOT supported", sub_class); |
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#endif |
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return false; |
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} |
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/******************************************************************************* |
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* |
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* Function bta_hh_parse_keybd_rpt |
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* |
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* Description This utility function parse a boot mode keyboard report. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void bta_hh_parse_keybd_rpt(tBTA_HH_BOOT_RPT* p_kb_data, uint8_t* p_report, |
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uint16_t report_len) { |
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tBTA_HH_KB_CB* p_kb = &bta_hh_cb.kb_cb; |
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tBTA_HH_KEYBD_RPT* p_data = &p_kb_data->data_rpt.keybd_rpt; |
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uint8_t this_char, ctl_shift; |
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uint16_t xx, yy, key_idx = 0; |
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uint8_t this_report[BTA_HH_MAX_RPT_CHARS]; |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("bta_hh_parse_keybd_rpt: (report=%p, report_len=%d) called", |
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p_report, report_len); |
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#endif |
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if (report_len < 2) return; |
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ctl_shift = *p_report++; |
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report_len--; |
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if (report_len > BTA_HH_MAX_RPT_CHARS) report_len = BTA_HH_MAX_RPT_CHARS; |
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memset(this_report, 0, BTA_HH_MAX_RPT_CHARS); |
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memset(p_data, 0, sizeof(tBTA_HH_KEYBD_RPT)); |
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memcpy(this_report, p_report, report_len); |
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/* Take care of shift, control, GUI and alt, modifier keys */ |
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for (xx = 0; xx < BTA_HH_MOD_MAX_KEY; xx++) { |
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if (ctl_shift & bta_hh_mod_key_mask[xx]) { |
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APPL_TRACE_DEBUG("Mod Key[%02x] pressed", bta_hh_mod_key_mask[xx]); |
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p_kb->mod_key[xx] = true; |
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} else if (p_kb->mod_key[xx]) { |
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p_kb->mod_key[xx] = false; |
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} |
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/* control key flag is set */ |
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p_data->mod_key[xx] = p_kb->mod_key[xx]; |
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} |
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/***************************************************************************/ |
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/* First step is to remove all characters we saw in the last report */ |
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/***************************************************************************/ |
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for (xx = 0; xx < report_len; xx++) { |
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for (yy = 0; yy < BTA_HH_MAX_RPT_CHARS; yy++) { |
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if (this_report[xx] == p_kb->last_report[yy]) { |
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this_report[xx] = 0; |
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} |
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} |
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} |
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/***************************************************************************/ |
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/* Now, process all the characters in the report, up to 6 keycodes */ |
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/***************************************************************************/ |
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for (xx = 0; xx < report_len; xx++) { |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("this_char = %02x", this_report[xx]); |
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#endif |
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this_char = this_report[xx]; |
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if (this_char == 0) continue; |
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/* take the key code as the report data */ |
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if (this_report[xx] == BTA_HH_KB_CAPS_LOCK) |
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p_kb->caps_lock = p_kb->caps_lock ? false : true; |
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else if (this_report[xx] == BTA_HH_KB_NUM_LOCK) |
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p_kb->num_lock = p_kb->num_lock ? false : true; |
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else |
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p_data->this_char[key_idx++] = this_char; |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("found keycode %02x ", this_report[xx]); |
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#endif |
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p_data->caps_lock = p_kb->caps_lock; |
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p_data->num_lock = p_kb->num_lock; |
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} |
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memset(p_kb->last_report, 0, BTA_HH_MAX_RPT_CHARS); |
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memcpy(p_kb->last_report, p_report, report_len); |
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return; |
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} |
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/******************************************************************************* |
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* |
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* Function bta_hh_parse_mice_rpt |
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* |
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* Description This utility function parse a boot mode mouse report. |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void bta_hh_parse_mice_rpt(tBTA_HH_BOOT_RPT* p_mice_data, uint8_t* p_report, |
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uint16_t report_len) { |
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tBTA_HH_MICE_RPT* p_data = &p_mice_data->data_rpt.mice_rpt; |
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#if (BTA_HH_DEBUG == TRUE) |
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uint8_t xx; |
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APPL_TRACE_DEBUG( |
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"bta_hh_parse_mice_rpt: bta_keybd_rpt_rcvd(report=%p, \ |
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report_len=%d) called", |
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p_report, report_len); |
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#endif |
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if (report_len < 3) return; |
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if (report_len > BTA_HH_MAX_RPT_CHARS) report_len = BTA_HH_MAX_RPT_CHARS; |
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#if (BTA_HH_DEBUG == TRUE) |
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for (xx = 0; xx < report_len; xx++) { |
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APPL_TRACE_DEBUG("this_char = %02x", p_report[xx]); |
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} |
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#endif |
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/* only first bytes lower 3 bits valid */ |
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p_data->mouse_button = (p_report[0] & 0x07); |
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/* x displacement */ |
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p_data->delta_x = p_report[1]; |
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/* y displacement */ |
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p_data->delta_y = p_report[2]; |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("mice button: 0x%2x", p_data->mouse_button); |
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APPL_TRACE_DEBUG("mice move: x = %d y = %d", p_data->delta_x, |
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p_data->delta_y); |
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#endif |
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return; |
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} |
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/******************************************************************************* |
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* |
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* Function bta_hh_read_ssr_param |
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* |
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* Description Read the SSR Parameter for the remote device |
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* |
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* Returns tBTA_HH_STATUS operation status |
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* |
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******************************************************************************/ |
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tBTA_HH_STATUS bta_hh_read_ssr_param(const RawAddress& bd_addr, |
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uint16_t* p_max_ssr_lat, |
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uint16_t* p_min_ssr_tout) { |
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tBTA_HH_STATUS status = BTA_HH_ERR; |
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tBTA_HH_CB* p_cb = &bta_hh_cb; |
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uint8_t i; |
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uint16_t ssr_max_latency; |
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for (i = 0; i < BTA_HH_MAX_KNOWN; i++) { |
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if (p_cb->kdev[i].addr == bd_addr) { |
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/* if remote device does not have HIDSSRHostMaxLatency attribute in SDP, |
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set SSR max latency default value here. */ |
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if (p_cb->kdev[i].dscp_info.ssr_max_latency == HID_SSR_PARAM_INVALID) { |
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/* The default is calculated as half of link supervision timeout.*/ |
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BTM_GetLinkSuperTout(p_cb->kdev[i].addr, &ssr_max_latency); |
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ssr_max_latency = BTA_HH_GET_DEF_SSR_MAX_LAT(ssr_max_latency); |
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/* per 1.1 spec, if the newly calculated max latency is greater than |
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BTA_HH_SSR_MAX_LATENCY_DEF which is 500ms, use |
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BTA_HH_SSR_MAX_LATENCY_DEF */ |
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if (ssr_max_latency > BTA_HH_SSR_MAX_LATENCY_DEF) |
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ssr_max_latency = BTA_HH_SSR_MAX_LATENCY_DEF; |
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*p_max_ssr_lat = ssr_max_latency; |
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} else |
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*p_max_ssr_lat = p_cb->kdev[i].dscp_info.ssr_max_latency; |
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if (p_cb->kdev[i].dscp_info.ssr_min_tout == HID_SSR_PARAM_INVALID) |
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*p_min_ssr_tout = BTA_HH_SSR_MIN_TOUT_DEF; |
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else |
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*p_min_ssr_tout = p_cb->kdev[i].dscp_info.ssr_min_tout; |
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status = BTA_HH_OK; |
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break; |
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} |
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} |
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return status; |
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} |
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|
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/******************************************************************************* |
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* |
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* Function bta_hh_cleanup_disable |
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* |
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* Description when disable finished, cleanup control block and send |
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* callback |
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* |
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* |
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* Returns void |
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* |
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******************************************************************************/ |
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void bta_hh_cleanup_disable(tBTA_HH_STATUS status) { |
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uint8_t xx; |
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/* free buffer in CB holding report descriptors */ |
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for (xx = 0; xx < BTA_HH_MAX_DEVICE; xx++) { |
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osi_free_and_reset( |
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(void**)&bta_hh_cb.kdev[xx].dscp_info.descriptor.dsc_list); |
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} |
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if (bta_hh_cb.p_disc_db) { |
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/* Cancel SDP if it had been started. */ |
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(void)SDP_CancelServiceSearch (bta_hh_cb.p_disc_db); |
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osi_free_and_reset((void**)&bta_hh_cb.p_disc_db); |
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} |
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if (bta_hh_cb.p_cback) { |
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(*bta_hh_cb.p_cback)(BTA_HH_DISABLE_EVT, (tBTA_HH*)&status); |
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/* all connections are down, no waiting for diconnect */ |
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memset(&bta_hh_cb, 0, sizeof(tBTA_HH_CB)); |
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} |
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} |
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|
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/******************************************************************************* |
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* |
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* Function bta_hh_dev_handle_to_cb_idx |
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* |
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* Description convert a HID device handle to the device control block |
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* index. |
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* |
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* |
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* Returns uint8_t: index of the device control block. |
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* |
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******************************************************************************/ |
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uint8_t bta_hh_dev_handle_to_cb_idx(uint8_t dev_handle) { |
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uint8_t index = BTA_HH_IDX_INVALID; |
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#if (BTA_HH_LE_INCLUDED == TRUE) |
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if (BTA_HH_IS_LE_DEV_HDL(dev_handle)) { |
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if (BTA_HH_IS_LE_DEV_HDL_VALID(dev_handle)) |
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index = bta_hh_cb.le_cb_index[BTA_HH_GET_LE_CB_IDX(dev_handle)]; |
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#if (BTA_HH_DEBUG == TRUE) |
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APPL_TRACE_DEBUG("bta_hh_dev_handle_to_cb_idx dev_handle = %d index = %d", |
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dev_handle, index); |
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#endif |
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} else |
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#endif |
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/* regular HID device checking */ |
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if (dev_handle < BTA_HH_MAX_KNOWN) |
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index = bta_hh_cb.cb_index[dev_handle]; |
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|
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return index; |
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} |
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#if (BTA_HH_DEBUG == TRUE) |
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/******************************************************************************* |
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* |
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* Function bta_hh_trace_dev_db |
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* |
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* Description Check to see if this type of device is supported |
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* |
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* Returns |
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* |
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******************************************************************************/ |
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void bta_hh_trace_dev_db(void) { |
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uint8_t xx; |
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|
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APPL_TRACE_DEBUG("bta_hh_trace_dev_db:: Device DB list********************"); |
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|
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for (xx = 0; xx < BTA_HH_MAX_DEVICE; xx++) { |
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APPL_TRACE_DEBUG("kdev[%d] in_use[%d] handle[%d] ", xx, |
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bta_hh_cb.kdev[xx].in_use, bta_hh_cb.kdev[xx].hid_handle); |
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|
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APPL_TRACE_DEBUG( |
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"\t\t\t attr_mask[%04x] state [%d] sub_class[%02x] index = %d", |
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bta_hh_cb.kdev[xx].attr_mask, bta_hh_cb.kdev[xx].state, |
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bta_hh_cb.kdev[xx].sub_class, bta_hh_cb.kdev[xx].index); |
|
} |
|
APPL_TRACE_DEBUG("*********************************************************"); |
|
} |
|
#endif |
|
#endif /* HL_INCLUDED */
|
|
|