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359 lines
9.9 KiB
359 lines
9.9 KiB
/* |
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Copyright (c) 2013-2016, The Linux Foundation. All rights reserved. |
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Redistribution and use in source and binary forms, with or without |
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modification, are permitted provided that the following conditions are |
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met: |
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* Redistributions of source code must retain the above copyright |
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notice, this list of conditions and the following disclaimer. |
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* Redistributions in binary form must reproduce the above |
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copyright notice, this list of conditions and the following |
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disclaimer in the documentation and/or other materials provided |
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with the distribution. |
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* Neither the name of The Linux Foundation nor the names of its |
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contributors may be used to endorse or promote products derived |
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from this software without specific prior written permission. |
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THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED |
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WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF |
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MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT |
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ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS |
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BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR |
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CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF |
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SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR |
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BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, |
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WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE |
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OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN |
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IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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*/ |
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/*! |
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@file |
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IPACM_Config.h |
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@brief |
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This file implements the IPACM Configuration from XML file |
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@Author |
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Skylar Chang |
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*/ |
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#ifndef IPACM_CONFIG_H |
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#define IPACM_CONFIG_H |
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#include "IPACM_Defs.h" |
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#include "IPACM_Xml.h" |
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#include "IPACM_EvtDispatcher.h" |
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typedef struct |
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{ |
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char iface_name[IPA_IFACE_NAME_LEN]; |
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}NatIfaces; |
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/* for IPACM rm dependency use*/ |
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typedef struct _ipa_rm_client |
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{ |
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ipa_rm_resource_name producer_rm1; |
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ipa_rm_resource_name consumer_rm1; |
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ipa_rm_resource_name producer_rm2; |
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ipa_rm_resource_name consumer_rm2; |
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bool producer1_up; /* only monitor producer_rm1, not monitor producer_rm2 */ |
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bool consumer1_up; /* only monitor consumer_rm1, not monitor consumer_rm2 */ |
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bool rm_set; /* once producer1_up and consumer1_up, will add bi-directional dependency */ |
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bool rx_bypass_ipa; /* support WLAN may not register RX-property, should not add dependency */ |
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}ipa_rm_client; |
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#define MAX_NUM_EXT_PROPS 25 |
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/* used to hold extended properties */ |
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typedef struct |
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{ |
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uint8_t num_ext_props; |
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ipa_ioc_ext_intf_prop prop[MAX_NUM_EXT_PROPS]; |
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} ipacm_ext_prop; |
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/* iface */ |
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class IPACM_Config |
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{ |
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public: |
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/* IPACM ipa_client map to rm_resource*/ |
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ipa_rm_resource_name ipa_client_rm_map_tbl[IPA_CLIENT_MAX]; |
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/* IPACM monitored rm_depency table */ |
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ipa_rm_client ipa_rm_tbl[IPA_MAX_RM_ENTRY]; |
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/* IPACM rm_depency a2 endpoint check*/ |
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int ipa_rm_a2_check; |
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/* Store interested interface and their configuration from XML file */ |
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ipa_ifi_dev_name_t *iface_table; |
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/* Store interested ALG port from XML file */ |
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ipacm_alg *alg_table; |
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/* Store private subnet configuration from XML file */ |
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ipa_private_subnet private_subnet_table[IPA_MAX_PRIVATE_SUBNET_ENTRIES]; |
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/* Store the non nat iface names */ |
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NatIfaces *pNatIfaces; |
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/* Store the bridge iface names */ |
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char ipa_virtual_iface_name[IPA_IFACE_NAME_LEN]; |
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/* Store the number of interface IPACM read from XML file */ |
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int ipa_num_ipa_interfaces; |
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int ipa_num_private_subnet; |
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int ipa_num_alg_ports; |
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int ipa_nat_max_entries; |
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bool ipacm_odu_router_mode; |
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bool ipacm_odu_enable; |
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bool ipacm_odu_embms_enable; |
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bool ipacm_ip_passthrough_mode; |
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int ipa_nat_iface_entries; |
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/* Store the total number of wlan guest ap configured */ |
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int ipa_num_wlan_guest_ap; |
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/* Max valid rm entry */ |
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int ipa_max_valid_rm_entry; |
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/* Store SW-enable or not */ |
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bool ipa_sw_rt_enable; |
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/* Store bridge mode or not */ |
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bool ipa_bridge_enable; |
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/* Store bridge netdev mac */ |
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uint8_t bridge_mac[IPA_MAC_ADDR_SIZE]; |
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/* Store the flt rule count for each producer client*/ |
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int flt_rule_count_v4[IPA_CLIENT_CONS - IPA_CLIENT_PROD]; |
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int flt_rule_count_v6[IPA_CLIENT_CONS - IPA_CLIENT_PROD]; |
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/* IPACM routing table name for v4/v6 */ |
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struct ipa_ioc_get_rt_tbl rt_tbl_lan_v4, rt_tbl_wan_v4, rt_tbl_default_v4, rt_tbl_v6, rt_tbl_wan_v6; |
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struct ipa_ioc_get_rt_tbl rt_tbl_wan_dl; |
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struct ipa_ioc_get_rt_tbl rt_tbl_odu_v4, rt_tbl_odu_v6; |
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bool isMCC_Mode; |
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/* To return the instance */ |
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static IPACM_Config* GetInstance(); |
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const char* getEventName(ipa_cm_event_id event_id); |
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inline void increaseFltRuleCount(int index, ipa_ip_type iptype, int increment) |
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{ |
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if((index >= IPA_CLIENT_CONS - IPA_CLIENT_PROD) || (index < 0)) |
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{ |
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IPACMERR("Index is out of range: %d.\n", index); |
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return; |
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} |
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if(iptype == IPA_IP_v4) |
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{ |
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flt_rule_count_v4[index] += increment; |
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IPACMDBG_H("Now num of v4 flt rules on client %d is %d.\n", index, flt_rule_count_v4[index]); |
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} |
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else |
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{ |
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flt_rule_count_v6[index] += increment; |
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IPACMDBG_H("Now num of v6 flt rules on client %d is %d.\n", index, flt_rule_count_v6[index]); |
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} |
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return; |
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} |
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inline void decreaseFltRuleCount(int index, ipa_ip_type iptype, int decrement) |
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{ |
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if((index >= IPA_CLIENT_CONS - IPA_CLIENT_PROD) || (index < 0)) |
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{ |
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IPACMERR("Index is out of range: %d.\n", index); |
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return; |
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} |
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if(iptype == IPA_IP_v4) |
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{ |
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flt_rule_count_v4[index] -= decrement; |
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IPACMDBG_H("Now num of v4 flt rules on client %d is %d.\n", index, flt_rule_count_v4[index]); |
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} |
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else |
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{ |
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flt_rule_count_v6[index] -= decrement; |
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IPACMDBG_H("Now num of v6 flt rules on client %d is %d.\n", index, flt_rule_count_v6[index]); |
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} |
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return; |
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} |
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inline int getFltRuleCount(int index, ipa_ip_type iptype) |
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{ |
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if((index >= IPA_CLIENT_CONS - IPA_CLIENT_PROD) || (index < 0)) |
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{ |
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IPACMERR("Index is out of range: %d.\n", index); |
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return -1; |
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} |
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if(iptype == IPA_IP_v4) |
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{ |
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return flt_rule_count_v4[index]; |
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} |
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else |
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{ |
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return flt_rule_count_v6[index]; |
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} |
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} |
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inline int GetAlgPortCnt() |
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{ |
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return ipa_num_alg_ports; |
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} |
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int GetAlgPorts(int nPorts, ipacm_alg *pAlgPorts); |
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inline int GetNatMaxEntries(void) |
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{ |
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return ipa_nat_max_entries; |
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} |
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inline int GetNatIfacesCnt() |
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{ |
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return ipa_nat_iface_entries; |
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} |
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int GetNatIfaces(int nPorts, NatIfaces *ifaces); |
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/* for IPACM resource manager dependency usage */ |
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void AddRmDepend(ipa_rm_resource_name rm1,bool rx_bypass_ipa); |
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void DelRmDepend(ipa_rm_resource_name rm1); |
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int AddNatIfaces(char *dev_name); |
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int DelNatIfaces(char *dev_name); |
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int CheckNatIfaces(const char *dev_name); |
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inline void SetQmapId(uint8_t id) |
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{ |
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qmap_id = id; |
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} |
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inline uint8_t GetQmapId() |
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{ |
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return qmap_id; |
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} |
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int SetExtProp(ipa_ioc_query_intf_ext_props *prop); |
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ipacm_ext_prop* GetExtProp(ipa_ip_type ip_type); |
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int DelExtProp(ipa_ip_type ip_type); |
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int Init(void); |
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inline bool isPrivateSubnet(uint32_t ip_addr) |
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{ |
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for(int cnt=0; cnt<ipa_num_private_subnet; cnt++) |
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{ |
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if(private_subnet_table[cnt].subnet_addr == |
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(private_subnet_table[cnt].subnet_mask & ip_addr)) |
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{ |
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return true; |
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} |
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} |
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return false; |
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} |
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#ifdef FEATURE_IPA_ANDROID |
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inline bool AddPrivateSubnet(uint32_t ip_addr, int ipa_if_index) |
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{ |
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ipacm_cmd_q_data evt_data; |
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ipacm_event_data_fid *data_fid; |
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uint32_t subnet_mask = ~0; |
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for(int cnt=0; cnt<ipa_num_private_subnet; cnt++) |
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{ |
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if(private_subnet_table[cnt].subnet_addr == ip_addr) |
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{ |
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IPACMDBG("Already has private subnet_addr as: 0x%x in entry(%d) \n", ip_addr, cnt); |
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return true; |
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} |
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} |
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if(ipa_num_private_subnet < IPA_MAX_PRIVATE_SUBNET_ENTRIES) |
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{ |
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IPACMDBG("Add IPACM private subnet_addr as: 0x%x in entry(%d) \n", ip_addr, ipa_num_private_subnet); |
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private_subnet_table[ipa_num_private_subnet].subnet_addr = ip_addr; |
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private_subnet_table[ipa_num_private_subnet].subnet_mask = (subnet_mask >> 8) << 8; |
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ipa_num_private_subnet++; |
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/* IPACM private subnet set changes */ |
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data_fid = (ipacm_event_data_fid *)malloc(sizeof(ipacm_event_data_fid)); |
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if(data_fid == NULL) |
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{ |
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IPACMERR("unable to allocate memory for event data_fid\n"); |
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return IPACM_FAILURE; |
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} |
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data_fid->if_index = ipa_if_index; // already ipa index, not fid index |
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evt_data.event = IPA_PRIVATE_SUBNET_CHANGE_EVENT; |
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evt_data.evt_data = data_fid; |
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/* Insert IPA_PRIVATE_SUBNET_CHANGE_EVENT to command queue */ |
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IPACM_EvtDispatcher::PostEvt(&evt_data); |
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return true; |
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} |
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IPACMERR("IPACM private subnet_addr overflow, total entry(%d)\n", ipa_num_private_subnet); |
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return false; |
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} |
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inline bool DelPrivateSubnet(uint32_t ip_addr, int ipa_if_index) |
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{ |
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ipacm_cmd_q_data evt_data; |
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ipacm_event_data_fid *data_fid; |
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for(int cnt=0; cnt<ipa_num_private_subnet; cnt++) |
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{ |
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if(private_subnet_table[cnt].subnet_addr == ip_addr) |
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{ |
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IPACMDBG("Found private subnet_addr as: 0x%x in entry(%d) \n", ip_addr, cnt); |
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for (; cnt < ipa_num_private_subnet - 1; cnt++) |
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{ |
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private_subnet_table[cnt].subnet_addr = private_subnet_table[cnt+1].subnet_addr; |
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} |
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ipa_num_private_subnet = ipa_num_private_subnet - 1; |
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/* IPACM private subnet set changes */ |
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data_fid = (ipacm_event_data_fid *)malloc(sizeof(ipacm_event_data_fid)); |
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if(data_fid == NULL) |
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{ |
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IPACMERR("unable to allocate memory for event data_fid\n"); |
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return IPACM_FAILURE; |
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} |
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data_fid->if_index = ipa_if_index; // already ipa index, not fid index |
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evt_data.event = IPA_PRIVATE_SUBNET_CHANGE_EVENT; |
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evt_data.evt_data = data_fid; |
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/* Insert IPA_PRIVATE_SUBNET_CHANGE_EVENT to command queue */ |
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IPACM_EvtDispatcher::PostEvt(&evt_data); |
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return true; |
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} |
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} |
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IPACMDBG("can't find private subnet_addr as: 0x%x \n", ip_addr); |
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return false; |
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} |
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#endif /* defined(FEATURE_IPA_ANDROID)*/ |
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static const char *DEVICE_NAME_ODU; |
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private: |
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static IPACM_Config *pInstance; |
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static const char *DEVICE_NAME; |
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IPACM_Config(void); |
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int m_fd; /* File descriptor of the IPA device node /dev/ipa */ |
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uint8_t qmap_id; |
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ipacm_ext_prop ext_prop_v4; |
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ipacm_ext_prop ext_prop_v6; |
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}; |
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#endif /* IPACM_CONFIG */
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