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673 lines
22 KiB
673 lines
22 KiB
/*
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* Copyright 2020 HIMSA II K/S - www.himsa.com. Represented by EHIMA -
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* www.ehima.com
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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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#include <map>
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#include <queue>
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#include "acl_api.h"
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#include "base/bind_helpers.h"
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#include "bt_types.h"
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#include "device/include/controller.h"
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#include "eatt.h"
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#include "l2c_api.h"
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#include "osi/include/alarm.h"
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#include "stack/btm/btm_sec.h"
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#include "stack/gatt/gatt_int.h"
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#include "stack/l2cap/l2c_int.h"
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namespace bluetooth {
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namespace eatt {
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#define BLE_GATT_SVR_SUP_FEAT_EATT_BITMASK 0x01
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class eatt_device {
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public:
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RawAddress bda_;
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uint16_t rx_mtu_;
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uint16_t rx_mps_;
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tGATT_TCB* eatt_tcb_;
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std::map<uint16_t, std::shared_ptr<EattChannel>> eatt_channels;
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eatt_device(const RawAddress& bd_addr, uint16_t mtu, uint16_t mps)
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: rx_mtu_(mtu), rx_mps_(mps), eatt_tcb_(nullptr) {
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bda_ = bd_addr;
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}
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};
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struct eatt_impl {
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std::vector<eatt_device> devices_;
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uint16_t psm_;
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uint16_t default_mtu_;
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uint16_t max_mps_;
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tL2CAP_APPL_INFO reg_info_;
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eatt_impl() {
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default_mtu_ = EATT_DEFAULT_MTU;
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max_mps_ = EATT_MIN_MTU_MPS;
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psm_ = BT_PSM_EATT;
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};
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~eatt_impl() = default;
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eatt_device* find_device_by_cid(uint16_t lcid) {
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/* This works only because Android CIDs are unique across the ACL
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* connections */
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auto iter = find_if(devices_.begin(), devices_.end(),
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[&lcid](const eatt_device& ed) {
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auto it = ed.eatt_channels.find(lcid);
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return it != ed.eatt_channels.end();
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});
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return (iter == devices_.end()) ? nullptr : &(*iter);
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}
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EattChannel* find_channel_by_cid(uint16_t lcid) {
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eatt_device* eatt_dev = find_device_by_cid(lcid);
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if (!eatt_dev) return nullptr;
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auto it = eatt_dev->eatt_channels.find(lcid);
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return (it == eatt_dev->eatt_channels.end()) ? nullptr : it->second.get();
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}
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EattChannel* find_channel_by_cid(const RawAddress& bdaddr, uint16_t lcid) {
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eatt_device* eatt_dev = find_device_by_address(bdaddr);
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if (!eatt_dev) return nullptr;
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auto it = eatt_dev->eatt_channels.find(lcid);
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return (it == eatt_dev->eatt_channels.end()) ? nullptr : it->second.get();
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}
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void remove_channel_by_cid(eatt_device* eatt_dev, uint16_t lcid) {
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eatt_dev->eatt_channels.erase(lcid);
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if (eatt_dev->eatt_channels.size() == 0) eatt_dev->eatt_tcb_ = NULL;
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}
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void remove_channel_by_cid(uint16_t lcid) {
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eatt_device* eatt_dev = find_device_by_cid(lcid);
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if (!eatt_dev) return;
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remove_channel_by_cid(eatt_dev, lcid);
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}
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void eatt_l2cap_connect_ind(const RawAddress& bda,
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std::vector<uint16_t>& lcids, uint16_t psm,
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uint16_t peer_mtu, uint8_t identifier) {
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/* The assumption is that L2CAP layer already check parameters etc.
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* Get our capabilities and accept all the channels.
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*/
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eatt_device* eatt_dev = this->find_device_by_address(bda);
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if (!eatt_dev) {
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LOG(ERROR) << __func__ << " unknown device: " << bda;
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L2CA_ConnectCreditBasedRsp(bda, identifier, lcids,
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L2CAP_CONN_NO_RESOURCES, NULL);
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return;
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}
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uint16_t max_mps = controller_get_interface()->get_acl_data_size_ble();
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tL2CAP_LE_CFG_INFO local_coc_cfg = {
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.mtu = eatt_dev->rx_mtu_,
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.mps = eatt_dev->rx_mps_ < max_mps ? eatt_dev->rx_mps_ : max_mps,
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.credits = L2CAP_LE_CREDIT_DEFAULT};
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if (!L2CA_ConnectCreditBasedRsp(bda, identifier, lcids, L2CAP_CONN_OK,
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&local_coc_cfg))
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return;
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if (!eatt_dev->eatt_tcb_) {
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eatt_dev->eatt_tcb_ =
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gatt_find_tcb_by_addr(eatt_dev->bda_, BT_TRANSPORT_LE);
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CHECK(eatt_dev->eatt_tcb_);
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}
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for (uint16_t cid : lcids) {
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EattChannel* channel = find_eatt_channel_by_cid(bda, cid);
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CHECK(!channel);
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auto chan = std::make_shared<EattChannel>(eatt_dev->bda_, cid, peer_mtu,
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eatt_dev->rx_mtu_);
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eatt_dev->eatt_channels.insert({cid, chan});
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chan->EattChannelSetState(EattChannelState::EATT_CHANNEL_OPENED);
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eatt_dev->eatt_tcb_->eatt++;
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LOG(INFO) << __func__ << " Channel connected CID " << loghex(cid);
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}
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}
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void eatt_l2cap_connect_cfm(const RawAddress& bda, uint16_t lcid,
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uint16_t peer_mtu, uint16_t result) {
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LOG(INFO) << __func__ << " bda: " << bda << " cid: " << +lcid
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<< "peer mtu: " << +peer_mtu << " result " << +result;
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eatt_device* eatt_dev = find_device_by_address(bda);
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if (!eatt_dev) {
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LOG(ERROR) << __func__ << " unknown device";
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return;
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}
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EattChannel* channel = this->find_channel_by_cid(bda, lcid);
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if (!channel) {
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LOG(ERROR) << __func__ << " unknown cid: " << loghex(lcid);
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return;
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}
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if (result != L2CAP_CONN_OK) {
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LOG(ERROR) << __func__
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<< " Could not connect CoC result: " << loghex(result);
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remove_channel_by_cid(eatt_dev, lcid);
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return;
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}
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channel->EattChannelSetState(EattChannelState::EATT_CHANNEL_OPENED);
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channel->EattChannelSetTxMTU(peer_mtu);
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CHECK(eatt_dev->eatt_tcb_);
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CHECK(eatt_dev->bda_ == channel->bda_);
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eatt_dev->eatt_tcb_->eatt++;
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LOG(INFO) << __func__ << " Channel connected CID " << loghex(lcid);
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}
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void eatt_l2cap_reconfig_completed(const RawAddress& bda, uint16_t lcid,
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bool is_local_cfg,
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tL2CAP_LE_CFG_INFO* p_cfg) {
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LOG(INFO) << __func__ << "lcid: " << loghex(lcid)
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<< " local cfg?: " << is_local_cfg;
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if (p_cfg->result != L2CAP_CFG_OK) {
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LOG(INFO) << __func__ << " reconfig failed lcid: " << loghex(lcid)
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<< " result: " << loghex(p_cfg->result);
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return;
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}
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EattChannel* channel = find_channel_by_cid(bda, lcid);
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if (!channel) return;
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/* On this layer we don't care about mps as this is handled in L2CAP layer
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*/
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if (is_local_cfg)
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channel->rx_mtu_ = p_cfg->mtu;
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else
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channel->EattChannelSetTxMTU(p_cfg->mtu);
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/* Go back to open state */
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channel->EattChannelSetState(EattChannelState::EATT_CHANNEL_OPENED);
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}
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void eatt_l2cap_error_cb(uint16_t lcid, uint16_t reason) {
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LOG(INFO) << __func__ << " cid: " << loghex(lcid) << " reason "
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<< loghex(reason);
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/*TODO: provide address in the L2CAP callback */
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EattChannel* channel = find_channel_by_cid(lcid);
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if (!channel) {
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LOG(ERROR) << __func__ << "Unknown lcid";
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return;
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}
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eatt_device* eatt_dev = find_device_by_address(channel->bda_);
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switch (channel->state_) {
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case EattChannelState::EATT_CHANNEL_PENDING:
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LOG(ERROR) << "Connecting failed";
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remove_channel_by_cid(eatt_dev, lcid);
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break;
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case EattChannelState::EATT_CHANNEL_RECONFIGURING:
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/* Just go back to open state */
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LOG(ERROR) << "Reconfig failed";
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channel->EattChannelSetState(EattChannelState::EATT_CHANNEL_OPENED);
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break;
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default:
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LOG(ERROR) << __func__ << "Invalid state: "
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<< static_cast<uint8_t>(channel->state_);
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break;
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}
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}
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void eatt_l2cap_disconnect_ind(uint16_t lcid, bool please_confirm) {
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LOG(INFO) << __func__ << " cid: " << loghex(lcid);
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eatt_device* eatt_dev = find_device_by_cid(lcid);
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if (!eatt_dev) {
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LOG(ERROR) << __func__ << " unknown cid: " << loghex(lcid);
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return;
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}
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eatt_dev->eatt_tcb_->eatt--;
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remove_channel_by_cid(eatt_dev, lcid);
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}
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void eatt_l2cap_data_ind(uint16_t lcid, BT_HDR* data_p) {
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LOG(INFO) << __func__ << " cid: " << loghex(lcid);
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eatt_device* eatt_dev = find_device_by_cid(lcid);
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if (!eatt_dev) {
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LOG(ERROR) << __func__ << " unknown cid: " << loghex(lcid);
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return;
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}
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EattChannel* channel = find_channel_by_cid(eatt_dev->bda_, lcid);
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if (!channel) {
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LOG(ERROR) << __func__ << "Received data on closed channel "
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<< loghex(lcid);
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return;
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}
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gatt_data_process(*eatt_dev->eatt_tcb_, channel->cid_, data_p);
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osi_free(data_p);
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}
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bool is_eatt_supported_by_peer(const RawAddress& bd_addr) {
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return gatt_profile_get_eatt_support(bd_addr);
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}
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eatt_device* find_device_by_address(const RawAddress& bd_addr) {
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auto iter = find_if(
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devices_.begin(), devices_.end(),
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[&bd_addr](const eatt_device& ed) { return ed.bda_ == bd_addr; });
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return iter == devices_.end() ? nullptr : &(*iter);
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}
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eatt_device* add_eatt_device(const RawAddress& bd_addr) {
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devices_.push_back(eatt_device(bd_addr, default_mtu_, max_mps_));
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eatt_device* eatt_dev = &devices_.back();
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return eatt_dev;
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}
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void connect_eatt(eatt_device* eatt_dev) {
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/* Let us use maximum possible mps */
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if (eatt_dev->rx_mps_ == EATT_MIN_MTU_MPS)
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eatt_dev->rx_mps_ = controller_get_interface()->get_acl_data_size_ble();
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tL2CAP_LE_CFG_INFO local_coc_cfg = {
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.mtu = eatt_dev->rx_mtu_,
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.mps = eatt_dev->rx_mps_,
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.credits = L2CAP_LE_CREDIT_DEFAULT,
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};
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/* Warning! CIDs in Android are unique across the ACL connections */
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std::vector<uint16_t> connecting_cids =
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L2CA_ConnectCreditBasedReq(psm_, eatt_dev->bda_, &local_coc_cfg);
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if (connecting_cids.size() == 0) {
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LOG(ERROR) << "Unable to get cid";
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return;
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}
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LOG(INFO) << __func__
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<< "Successfully sent CoC request, number of channel: "
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<< +connecting_cids.size();
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for (uint16_t cid : connecting_cids) {
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LOG(INFO) << " \t cid: " << loghex(cid);
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auto chan = std::make_shared<EattChannel>(eatt_dev->bda_, cid, 0,
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eatt_dev->rx_mtu_);
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eatt_dev->eatt_channels.insert({cid, chan});
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}
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if (eatt_dev->eatt_tcb_) {
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LOG(INFO) << __func__ << " has tcb ? " << eatt_dev->eatt_tcb_;
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return;
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}
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eatt_dev->eatt_tcb_ =
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gatt_find_tcb_by_addr(eatt_dev->bda_, BT_TRANSPORT_LE);
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CHECK(eatt_dev->eatt_tcb_);
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}
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EattChannel* find_eatt_channel_by_cid(const RawAddress& bd_addr,
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uint16_t cid) {
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eatt_device* eatt_dev = find_device_by_address(bd_addr);
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LOG(INFO) << __func__ << bd_addr << " " << +cid;
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if (!eatt_dev) return nullptr;
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auto iter = find_if(
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eatt_dev->eatt_channels.begin(), eatt_dev->eatt_channels.end(),
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[&cid](const std::pair<uint16_t, std::shared_ptr<EattChannel>>& el) {
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return el.first == cid;
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});
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return iter == eatt_dev->eatt_channels.end() ? nullptr : iter->second.get();
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}
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EattChannel* find_eatt_channel_by_transid(const RawAddress& bd_addr,
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uint32_t trans_id) {
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eatt_device* eatt_dev = find_device_by_address(bd_addr);
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if (!eatt_dev) return nullptr;
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auto iter = find_if(
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eatt_dev->eatt_channels.begin(), eatt_dev->eatt_channels.end(),
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[&trans_id](
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const std::pair<uint16_t, std::shared_ptr<EattChannel>>& el) {
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return el.second->server_outstanding_cmd_.trans_id == trans_id;
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});
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return iter == eatt_dev->eatt_channels.end() ? nullptr : iter->second.get();
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}
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bool is_indication_pending(const RawAddress& bd_addr,
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uint16_t indication_handle) {
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eatt_device* eatt_dev = find_device_by_address(bd_addr);
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if (!eatt_dev) return false;
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auto iter = find_if(
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eatt_dev->eatt_channels.begin(), eatt_dev->eatt_channels.end(),
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[&indication_handle](
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const std::pair<uint16_t, std::shared_ptr<EattChannel>>& el) {
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return el.second->indicate_handle_ == indication_handle;
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});
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return (iter != eatt_dev->eatt_channels.end());
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};
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EattChannel* get_channel_available_for_indication(const RawAddress& bd_addr) {
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eatt_device* eatt_dev = find_device_by_address(bd_addr);
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auto iter = find_if(
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eatt_dev->eatt_channels.begin(), eatt_dev->eatt_channels.end(),
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[](const std::pair<uint16_t, std::shared_ptr<EattChannel>>& el) {
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return !GATT_HANDLE_IS_VALID(el.second->indicate_handle_);
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});
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return (iter == eatt_dev->eatt_channels.end()) ? nullptr
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: iter->second.get();
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};
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EattChannel* get_channel_available_for_client_request(
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const RawAddress& bd_addr) {
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eatt_device* eatt_dev = find_device_by_address(bd_addr);
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if (!eatt_dev) return nullptr;
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auto iter = find_if(
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eatt_dev->eatt_channels.begin(), eatt_dev->eatt_channels.end(),
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[](const std::pair<uint16_t, std::shared_ptr<EattChannel>>& el) {
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return el.second->cl_cmd_q_.empty();
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});
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return (iter == eatt_dev->eatt_channels.end()) ? nullptr
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: iter->second.get();
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}
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void free_gatt_resources(const RawAddress& bd_addr) {
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eatt_device* eatt_dev = find_device_by_address(bd_addr);
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if (!eatt_dev) return;
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auto iter = eatt_dev->eatt_channels.begin();
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while (iter != eatt_dev->eatt_channels.end()) {
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EattChannel* channel = iter->second.get();
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fixed_queue_free(channel->server_outstanding_cmd_.multi_rsp_q, NULL);
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channel->server_outstanding_cmd_.multi_rsp_q = NULL;
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}
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}
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bool is_outstanding_msg_in_send_queue(const RawAddress& bd_addr) {
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eatt_device* eatt_dev = find_device_by_address(bd_addr);
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if (!eatt_dev) return false;
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auto iter = find_if(
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eatt_dev->eatt_channels.begin(), eatt_dev->eatt_channels.end(),
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[](const std::pair<uint16_t, std::shared_ptr<EattChannel>>& el) {
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return !el.second->cl_cmd_q_.empty();
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});
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return (iter != eatt_dev->eatt_channels.end());
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}
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EattChannel* get_channel_with_queued_data(const RawAddress& bd_addr) {
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eatt_device* eatt_dev = find_device_by_address(bd_addr);
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if (!eatt_dev) return nullptr;
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auto iter = find_if(
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eatt_dev->eatt_channels.begin(), eatt_dev->eatt_channels.end(),
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[](const std::pair<uint16_t, std::shared_ptr<EattChannel>>& el) {
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return !el.second->cl_cmd_q_.empty();
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});
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return (iter == eatt_dev->eatt_channels.end()) ? nullptr
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: iter->second.get();
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}
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static void eatt_ind_ack_timeout(void* data) {
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EattChannel* channel = (EattChannel*)data;
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tGATT_TCB* p_tcb = gatt_find_tcb_by_addr(channel->bda_, BT_TRANSPORT_LE);
|
|
|
|
LOG(WARNING) << __func__ << ": send ack now";
|
|
attp_send_cl_confirmation_msg(*p_tcb, channel->cid_);
|
|
}
|
|
|
|
static void eatt_ind_confirmation_timeout(void* data) {
|
|
EattChannel* channel = (EattChannel*)data;
|
|
tGATT_TCB* p_tcb = gatt_find_tcb_by_addr(channel->bda_, BT_TRANSPORT_LE);
|
|
|
|
LOG(WARNING) << __func__ << " disconnecting...";
|
|
gatt_disconnect(p_tcb);
|
|
}
|
|
|
|
void start_indication_confirm_timer(const RawAddress& bd_addr, uint16_t cid) {
|
|
EattChannel* channel = find_eatt_channel_by_cid(bd_addr, cid);
|
|
if (!channel) {
|
|
LOG(ERROR) << __func__ << "Unknown cid: " << loghex(cid) << " or device "
|
|
<< bd_addr;
|
|
return;
|
|
}
|
|
|
|
alarm_set_on_mloop(channel->ind_confirmation_timer_,
|
|
GATT_WAIT_FOR_RSP_TIMEOUT_MS,
|
|
eatt_ind_confirmation_timeout, channel);
|
|
}
|
|
|
|
void stop_indication_confirm_timer(const RawAddress& bd_addr, uint16_t cid) {
|
|
EattChannel* channel = find_eatt_channel_by_cid(bd_addr, cid);
|
|
if (!channel) {
|
|
LOG(ERROR) << __func__ << "Unknown cid: " << loghex(cid) << " or device "
|
|
<< bd_addr;
|
|
return;
|
|
}
|
|
|
|
alarm_cancel(channel->ind_confirmation_timer_);
|
|
}
|
|
|
|
void start_app_indication_timer(const RawAddress& bd_addr, uint16_t cid) {
|
|
EattChannel* channel = find_eatt_channel_by_cid(bd_addr, cid);
|
|
if (!channel) {
|
|
LOG(ERROR) << __func__ << "Unknown cid: " << loghex(cid) << " or device "
|
|
<< bd_addr;
|
|
return;
|
|
}
|
|
|
|
alarm_set_on_mloop(channel->ind_ack_timer_, GATT_WAIT_FOR_RSP_TIMEOUT_MS,
|
|
eatt_ind_ack_timeout, channel);
|
|
}
|
|
|
|
void stop_app_indication_timer(const RawAddress& bd_addr, uint16_t cid) {
|
|
EattChannel* channel = find_eatt_channel_by_cid(bd_addr, cid);
|
|
if (!channel) {
|
|
LOG(ERROR) << __func__ << "Unknown cid: " << loghex(cid) << " or device "
|
|
<< bd_addr;
|
|
return;
|
|
}
|
|
|
|
alarm_cancel(channel->ind_ack_timer_);
|
|
}
|
|
|
|
void reconfigure(const RawAddress& bd_addr, uint16_t cid, uint16_t new_mtu) {
|
|
eatt_device* eatt_dev = find_device_by_address(bd_addr);
|
|
if (!eatt_dev) {
|
|
LOG(ERROR) << __func__ << "Unknown device " << bd_addr;
|
|
return;
|
|
}
|
|
|
|
EattChannel* channel = find_eatt_channel_by_cid(bd_addr, cid);
|
|
if (!channel) {
|
|
LOG(ERROR) << __func__ << "Unknown cid: " << loghex(cid) << " or device "
|
|
<< bd_addr;
|
|
return;
|
|
}
|
|
|
|
if (new_mtu <= channel->rx_mtu_) {
|
|
LOG(ERROR) << __func__ << "Invalid mtu: " << loghex(new_mtu);
|
|
return;
|
|
}
|
|
|
|
std::vector<uint16_t> cids = {cid};
|
|
|
|
tL2CAP_LE_CFG_INFO cfg = {.mps = eatt_dev->rx_mps_, .mtu = new_mtu};
|
|
|
|
if (!L2CA_ReconfigCreditBasedConnsReq(eatt_dev->bda_, cids, &cfg))
|
|
LOG(ERROR) << __func__ << "Could not start reconfig cid: " << loghex(cid)
|
|
<< " or device " << bd_addr;
|
|
}
|
|
|
|
void reconfigure_all(const RawAddress& bd_addr, uint16_t new_mtu) {
|
|
eatt_device* eatt_dev = find_device_by_address(bd_addr);
|
|
if (!eatt_dev) {
|
|
LOG(ERROR) << __func__ << "Unknown device " << bd_addr;
|
|
return;
|
|
}
|
|
|
|
uint8_t num_of_channels = eatt_dev->eatt_channels.size();
|
|
if (num_of_channels == 0) {
|
|
LOG(ERROR) << __func__ << "No channels for device " << bd_addr;
|
|
return;
|
|
}
|
|
|
|
std::vector<uint16_t> cids;
|
|
|
|
auto iter = eatt_dev->eatt_channels.begin();
|
|
while (iter != eatt_dev->eatt_channels.end()) {
|
|
uint16_t cid = iter->first;
|
|
cids.push_back(cid);
|
|
iter++;
|
|
}
|
|
|
|
if (new_mtu <= EATT_MIN_MTU_MPS) {
|
|
LOG(ERROR) << __func__ << "Invalid mtu: " << loghex(new_mtu);
|
|
return;
|
|
}
|
|
|
|
tL2CAP_LE_CFG_INFO cfg = {.mps = eatt_dev->rx_mps_, .mtu = new_mtu};
|
|
|
|
if (!L2CA_ReconfigCreditBasedConnsReq(eatt_dev->bda_, cids, &cfg))
|
|
LOG(ERROR) << __func__ << "Could not start reconfig for device "
|
|
<< bd_addr;
|
|
}
|
|
|
|
void supported_features_cb(uint8_t role, const RawAddress& bd_addr,
|
|
uint8_t features) {
|
|
bool is_eatt_supported = features & BLE_GATT_SVR_SUP_FEAT_EATT_BITMASK;
|
|
|
|
LOG(INFO) << __func__ << " " << bd_addr
|
|
<< " is_eatt_supported = " << int(is_eatt_supported);
|
|
if (!is_eatt_supported) return;
|
|
|
|
eatt_device* eatt_dev = add_eatt_device(bd_addr);
|
|
|
|
if (role != HCI_ROLE_CENTRAL) {
|
|
/* TODO For now do nothing, we could run a timer here and start EATT if
|
|
* not started by central */
|
|
LOG(INFO)
|
|
<< " EATT Should be connected by the central. Let's wait for it.";
|
|
return;
|
|
}
|
|
|
|
connect_eatt(eatt_dev);
|
|
}
|
|
|
|
void disconnect_channel(uint16_t cid) { L2CA_DisconnectReq(cid); }
|
|
|
|
void disconnect(const RawAddress& bd_addr) {
|
|
LOG(INFO) << __func__ << " " << bd_addr;
|
|
|
|
eatt_device* eatt_dev = find_device_by_address(bd_addr);
|
|
if (!eatt_dev) {
|
|
LOG(WARNING) << __func__ << " no eatt device found";
|
|
return;
|
|
}
|
|
|
|
if (!eatt_dev->eatt_tcb_) {
|
|
LOG_ASSERT(eatt_dev->eatt_channels.size() == 0);
|
|
LOG(WARNING) << __func__ << " no eatt channels found";
|
|
return;
|
|
}
|
|
|
|
auto iter = eatt_dev->eatt_channels.begin();
|
|
while (iter != eatt_dev->eatt_channels.end()) {
|
|
uint16_t cid = iter->first;
|
|
disconnect_channel(cid);
|
|
/* When initiating disconnection, stack will not notify us that it is
|
|
* done. We need to assume success
|
|
*/
|
|
iter = eatt_dev->eatt_channels.erase(iter);
|
|
}
|
|
eatt_dev->eatt_tcb_->eatt = 0;
|
|
eatt_dev->eatt_tcb_ = nullptr;
|
|
}
|
|
|
|
void connect(const RawAddress& bd_addr) {
|
|
eatt_device* eatt_dev = find_device_by_address(bd_addr);
|
|
|
|
uint8_t role = L2CA_GetBleConnRole(bd_addr);
|
|
if (role == HCI_ROLE_UNKNOWN) {
|
|
LOG(ERROR) << __func__ << "Could not get device role" << bd_addr;
|
|
return;
|
|
}
|
|
|
|
LOG(INFO) << __func__ << " device " << bd_addr << " role"
|
|
<< (role == HCI_ROLE_CENTRAL ? "central" : "peripheral");
|
|
|
|
if (eatt_dev) {
|
|
/* We are reconnecting device we know that support EATT.
|
|
* Just connect CoC
|
|
*/
|
|
LOG(INFO) << __func__ << " Known device, connect eCoC";
|
|
|
|
if (role != HCI_ROLE_CENTRAL) {
|
|
LOG(INFO)
|
|
<< " EATT Should be connected by the central. Let's wait for it.";
|
|
return;
|
|
}
|
|
|
|
connect_eatt(eatt_dev);
|
|
return;
|
|
}
|
|
|
|
/* For new device, first read GATT server supported features. */
|
|
if (gatt_cl_read_sr_supp_feat_req(
|
|
bd_addr, base::BindOnce(&eatt_impl::supported_features_cb,
|
|
base::Unretained(this), role)) == false) {
|
|
LOG(INFO) << __func__ << "Eatt is not supported. Checked for device "
|
|
<< bd_addr;
|
|
}
|
|
}
|
|
|
|
void add_from_storage(const RawAddress& bd_addr) {
|
|
eatt_device* eatt_dev = find_device_by_address(bd_addr);
|
|
|
|
LOG(INFO) << __func__ << ", restoring: " << bd_addr;
|
|
|
|
if (!eatt_dev) add_eatt_device(bd_addr);
|
|
}
|
|
};
|
|
|
|
} // namespace eatt
|
|
} // namespace bluetooth
|