This commit is contained in:
zhanglianghy 2019-08-29 15:52:31 +08:00
commit 9c3e989ff9
38 changed files with 3994 additions and 200 deletions

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@ -32,6 +32,9 @@
/*nat config */ /*nat config */
#define NAT_CONFIG_MODULE 0x00000008 #define NAT_CONFIG_MODULE 0x00000008
/*static routing*/
#define STATIC_ROUTING_CONFIG_MODULE 0x00000009
/************************* 模块定义结束 **********************/ /************************* 模块定义结束 **********************/
/************************ config id定义 **********************/ /************************ config id定义 **********************/
@ -69,8 +72,8 @@
#define NAT4_CONFIG (uint64)((uint64)NAT_CONFIG_MODULE<<32|1) #define NAT4_CONFIG (uint64)((uint64)NAT_CONFIG_MODULE<<32|1)
#define STATIC_ROUTING_CONFIG (uint64)((uint64)STATIC_ROUTING_CONFIG_MODULE<<32|1)
#define GET_ALL_ROUTING_INFO (uint64)((uint64)STATIC_ROUTING_CONFIG_MODULE<<32|2)
/************************ config id定义 end**********************/ /************************ config id定义 end**********************/
#endif #endif

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@ -7,7 +7,7 @@
#define MAX_MODULE_NAME_SZ 16 #define MAX_MODULE_NAME_SZ 16
typedef struct _klog { typedef struct _klog {
char module_name[MAX_MODULE_NAME_SZ]; char module_name[MAX_MODULE_NAME_SZ+1];
}klog_t; }klog_t;

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@ -8,7 +8,7 @@
#define MAX_MODULE_NAME_SZ 16 #define MAX_MODULE_NAME_SZ 16
typedef struct _ulog { typedef struct _ulog {
char module_name[MAX_MODULE_NAME_SZ]; char module_name[MAX_MODULE_NAME_SZ+1];
} ulog_t; } ulog_t;
ulog_t *ulog_init(const char *module_name, u8 is_print); ulog_t *ulog_init(const char *module_name, u8 is_print);

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@ -14,9 +14,14 @@ module device-status {
grouping cpu-status { grouping cpu-status {
container cpu-infos { container cpu-infos {
description "CPU的状态信息"; description "CPU的状态信息";
leaf usage-rate { list cpu-info {
type int16 { leaf position {
range "0..100"; type string ;
}
leaf usage-rate {
type int16 {
range "0..100";
}
} }
} }
} }
@ -25,12 +30,17 @@ module device-status {
grouping mem-status { grouping mem-status {
container memory-infos { container memory-infos {
description "内存的状态信息"; description "内存的状态信息";
leaf memory-total { list memory-info {
type int64 ; leaf position {
} type string ;
leaf usage-rate { }
type int16 { leaf memory-total {
range "0..100"; type int64 ;
}
leaf usage-rate {
type int16 {
range "0..100";
}
} }
} }
} }

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@ -15,9 +15,8 @@ import com.google.common.util.concurrent.Futures;
import com.google.common.util.concurrent.ThreadFactoryBuilder; import com.google.common.util.concurrent.ThreadFactoryBuilder;
import org.opendaylight.controller.md.sal.binding.api.*; import org.opendaylight.controller.md.sal.binding.api.*;
import org.opendaylight.controller.md.sal.common.api.data.LogicalDatastoreType; import org.opendaylight.controller.md.sal.common.api.data.LogicalDatastoreType;
import org.opendaylight.controller.md.sal.common.api.data.OptimisticLockFailedException;
import org.opendaylight.controller.md.sal.common.api.data.ReadFailedException; import org.opendaylight.controller.md.sal.common.api.data.ReadFailedException;
import org.opendaylight.controller.sal.binding.api.BindingAwareBroker;
import org.opendaylight.controller.sal.binding.api.BindingAwareProvider;
import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.devm.rev181123.Devm; import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.devm.rev181123.Devm;
import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.devm.rev181123.devm.CpuInfos; import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.devm.rev181123.devm.CpuInfos;
import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.devm.rev181123.devm.MemoryInfos; import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.devm.rev181123.devm.MemoryInfos;
@ -30,10 +29,13 @@ import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.ifm.r
import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.ifm.rev181123.ifm.interfaces._interface.ipv4config.am4cfgaddrs.Am4CfgAddr; import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.ifm.rev181123.ifm.interfaces._interface.ipv4config.am4cfgaddrs.Am4CfgAddr;
import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.ifm.rev181123.ifm.interfaces._interface.ipv6config.am6cfgaddrs.Am6CfgAddr; import org.opendaylight.yang.gen.v1.http.www.huawei.com.netconf.vrp.huawei.ifm.rev181123.ifm.interfaces._interface.ipv6config.am6cfgaddrs.Am6CfgAddr;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.NodeCpu; import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.NodeCpu;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.NodeCpuBuilder;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.NodeMemory; import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.NodeMemory;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.NodeMemoryBuilder;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.CpuInfosBuilder; import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.CpuInfosBuilder;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.MemoryInfosBuilder; import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.MemoryInfosBuilder;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.TpExt; import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.TpExt;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.TpExtBuilder;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.tp.status.TpInfos; import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.tp.status.TpInfos;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.tp.status.TpInfosBuilder; import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.tp.status.TpInfosBuilder;
import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.tp.status.tp.infos.IpAddress; import org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.tp.extension.rev190809.tp.status.tp.infos.IpAddress;
@ -325,40 +327,47 @@ public class HuaweiNetconfSpeaker implements DataTreeChangeListener<ConnectorInf
} catch (ReadFailedException e) { } catch (ReadFailedException e) {
throw new IllegalStateException("Unexpected error reading data from " + nodeId, e); throw new IllegalStateException("Unexpected error reading data from " + nodeId, e);
} }
List<org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.CpuInfos> ifcList = new ArrayList<>(); List<org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.cpu.infos.CpuInfo> ifcList = new ArrayList<>();
if (cupInfos.isPresent()) { if (cupInfos.isPresent()) {
List<CpuInfo> cpuInfoList = cupInfos.get().getCpuInfo(); List<CpuInfo> cpuInfoList = cupInfos.get().getCpuInfo();
for (CpuInfo cpuInfo : cpuInfoList) { for (CpuInfo cpuInfo : cpuInfoList) {
LOG.info("Show cpu with serial {},cpu usage is {} ", LOG.info("Show cpu with serial {},cpu usage is {} ",
cpuInfo.getKey().getPosition(), cpuInfo.getSystemCpuUsage()); cpuInfo.getKey().getPosition(), cpuInfo.getSystemCpuUsage());
CpuInfosBuilder builder = new CpuInfosBuilder(); org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.cpu.infos.CpuInfo temp =
org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.CpuInfos temp = builder.setUsageRate(cpuInfo.getSystemCpuUsage().shortValue()).build(); new org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.cpu.infos.CpuInfoBuilder().setPosition(cpuInfo.getKey().getPosition())
.setUsageRate(cpuInfo.getSystemCpuUsage().shortValue()).build();
ifcList.add(temp); ifcList.add(temp);
} }
} else { } else {
LOG.info("No data present on path '{}' for mountpoint: {}", LOG.info("No data present on path '{}' for mountpoint: {}",
iid, nodeId); iid, nodeId);
} }
CpuInfosBuilder cpuInfosBuilder = new CpuInfosBuilder().setCpuInfo(ifcList);
//write cpu information to layer //write cpu information to layer
InstanceIdentifier<org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.CpuInfos> cpuIid = NETCONF_TOPO_IID InstanceIdentifier<NodeCpu> cpuIid = NETCONF_TOPO_IID
.child(Node.class, new NodeKey(new NodeId(nodeId))) .child(Node.class, new NodeKey(new NodeId(nodeId)))
.augmentation(NodeCpu.class) .augmentation(NodeCpu.class);
.child(org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.cpu.status.CpuInfos.class); final WriteTransaction writeTransaction = dataBroker.newWriteOnlyTransaction();
for (int i = 0; i < ifcList.size(); i++) { writeTransaction.put(LogicalDatastoreType.OPERATIONAL, cpuIid,
final WriteTransaction writeTransaction = dataBroker.newWriteOnlyTransaction(); new NodeCpuBuilder()
writeTransaction.put(LogicalDatastoreType.OPERATIONAL, cpuIid, ifcList.get(i)); .setCpuInfos(cpuInfosBuilder.build())
Futures.addCallback(writeTransaction.submit(), new FutureCallback<Void>() { .build()
@Override );
public void onFailure(Throwable throwable) { Futures.addCallback(writeTransaction.submit(), new FutureCallback<Void>() {
@Override
public void onFailure(Throwable throwable) {
if (throwable instanceof OptimisticLockFailedException) {
LOG.warn("Write cpu information 捕获 乐观锁异常,本次获取忽略!");
} else {
LOG.error("Write cpu information failed." + throwable.getMessage()); LOG.error("Write cpu information failed." + throwable.getMessage());
} }
}
@Override @Override
public void onSuccess(Void avoid) { public void onSuccess(Void avoid) {
LOG.info("Write cpu information success."); LOG.info("Write cpu information success.");
} }
}); });
}
// Identifier path is equivalent to: // Identifier path is equivalent to:
// '.../yang-ext:mount/huawei-devm:devm/memoryInfos' // '.../yang-ext:mount/huawei-devm:devm/memoryInfos'
@ -372,98 +381,110 @@ public class HuaweiNetconfSpeaker implements DataTreeChangeListener<ConnectorInf
} catch (ReadFailedException e) { } catch (ReadFailedException e) {
throw new IllegalStateException("Unexpected error reading data from " + nodeId, e); throw new IllegalStateException("Unexpected error reading data from " + nodeId, e);
} }
List<org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.MemoryInfos> memoryList = new ArrayList<>(); List<org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.memory.infos.MemoryInfo> memoryList = new ArrayList<>();
if (memoryInfosOptional.isPresent()) { if (memoryInfosOptional.isPresent()) {
List<MemoryInfo> memoryInfoList = memoryInfosOptional.get().getMemoryInfo(); List<MemoryInfo> memoryInfoList = memoryInfosOptional.get().getMemoryInfo();
for (MemoryInfo memoryInfo : memoryInfoList) { for (MemoryInfo memoryInfo : memoryInfoList) {
LOG.info("Show memory with serial {},cpu usage is {} ", LOG.info("Show memory with serial {},memory usage is {} ",
memoryInfo.getKey().getPosition(), memoryInfo.getDoMemoryUsage()); memoryInfo.getKey().getPosition(), memoryInfo.getDoMemoryUsage());
MemoryInfosBuilder builder = new MemoryInfosBuilder();
LOG.info("Huawei Device {} OsMemoryTotal is: {}", nodeId, memoryInfo.getOsMemoryTotal()); LOG.info("Huawei Device {} OsMemoryTotal is: {}", nodeId, memoryInfo.getOsMemoryTotal());
org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.MemoryInfos temp = builder.setMemoryTotal(memoryInfo.getOsMemoryTotal()). org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.memory.infos.MemoryInfo temp =
setUsageRate(memoryInfo.getOsMemoryUsage().shortValue()).build(); new org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.memory.infos.MemoryInfoBuilder()
.setPosition(memoryInfo.getKey().getPosition())
.setMemoryTotal(memoryInfo.getOsMemoryTotal())
.setUsageRate(memoryInfo.getDoMemoryUsage().shortValue())
.build();
memoryList.add(temp); memoryList.add(temp);
} }
} else { } else {
LOG.info("No data present on path '{}' for mountpoint: {}", LOG.info("No data present on path '{}' for mountpoint: {}",
iid, nodeId); iid, nodeId);
} }
MemoryInfosBuilder memoryInfosBuilder = new MemoryInfosBuilder().setMemoryInfo(memoryList);
//write memory information to layer //write memory information to layer
InstanceIdentifier<org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.MemoryInfos> customMemoryIID = NETCONF_TOPO_IID InstanceIdentifier<NodeMemory> customMemoryIID = NETCONF_TOPO_IID
.child(Node.class, new NodeKey(new NodeId(nodeId))) .child(Node.class, new NodeKey(new NodeId(nodeId)))
.augmentation(NodeMemory.class) .augmentation(NodeMemory.class);
.child(org.opendaylight.yang.gen.v1.urn.cmcc.cmhi.adaptation.layer.device.status.rev190809.mem.status.MemoryInfos.class); final WriteTransaction writeTransaction2 = dataBroker.newWriteOnlyTransaction();
for (int i = 0; i < memoryList.size(); i++) { writeTransaction2.put(LogicalDatastoreType.OPERATIONAL, customMemoryIID,
final WriteTransaction writeTransaction = dataBroker.newWriteOnlyTransaction(); new NodeMemoryBuilder()
writeTransaction.put(LogicalDatastoreType.OPERATIONAL, customMemoryIID, memoryList.get(i)); .setMemoryInfos(memoryInfosBuilder.build())
Futures.addCallback(writeTransaction.submit(), new FutureCallback<Void>() { .build()
@Override );
public void onFailure(Throwable throwable) { Futures.addCallback(writeTransaction2.submit(), new FutureCallback<Void>() {
@Override
public void onFailure(Throwable throwable) {
if (throwable instanceof OptimisticLockFailedException) {
LOG.warn("Write memory information 捕获 乐观锁异常,本次获取忽略!");
} else {
LOG.error("Write memory information failed." + throwable.getMessage()); LOG.error("Write memory information failed." + throwable.getMessage());
} }
@Override
public void onSuccess(Void avoid) {
LOG.info("Write memory information success.");
}
});
}
InstanceIdentifier<Interfaces> interfacesIID =
InstanceIdentifier.create(Ifm.class).child(Interfaces.class);
Optional<Interfaces> interfacesOptional;
try {
// Read from a transaction is asynchronous, but a simple
// get/checkedGet makes the call synchronous
interfacesOptional = hwNodeReadTx.read(LogicalDatastoreType.OPERATIONAL, interfacesIID).checkedGet();
} catch (ReadFailedException e) {
throw new IllegalStateException("Unexpected error reading data from " + nodeId, e);
}
List<TpInfos> tpInfosList = new ArrayList<>();
if (interfacesOptional.isPresent()) {
List<Interface> interfaceList = interfacesOptional.get().getInterface();
for (Interface intf : interfaceList) {
LOG.info("Show memory with serial {},ipv4 config is {} ",
intf.getKey().getIfName(), intf.getIpv4Config());
TpInfosBuilder tpInfosBuilder = new TpInfosBuilder();
List<IpAddress> ipsOnIntf = getiplist(intf);
tpInfosBuilder.setIpAddress(ipsOnIntf);
tpInfosBuilder.setMtu(intf.getIfMtu().shortValue());
tpInfosBuilder.setTpName(intf.getIfName().getValue());
tpInfosBuilder.setTpNumber(intf.getIfNumber());
tpInfosBuilder.setTpAdminStatus(buildTpAdmin(intf.getIfAdminStatus()));
tpInfosBuilder.setTpPhyType(intf.getIfPhyType().getName());
tpInfosList.add(tpInfosBuilder.build());
} }
} else {
LOG.info("No data present on path '{}' for mountpoint: {}",
iid, nodeId);
}
@Override
public void onSuccess(Void avoid) {
LOG.info("Write memory information success.");
}
});
//write interface information to layer // InstanceIdentifier<Interfaces> interfacesIID =
for (int i = 0; i < tpInfosList.size(); i++) { // InstanceIdentifier.create(Ifm.class).child(Interfaces.class);
InstanceIdentifier<TpInfos> tpinfosIID = NETCONF_TOPO_IID //
.child(Node.class, new NodeKey(new NodeId(nodeId))) // Optional<Interfaces> interfacesOptional;
.child(TerminationPoint.class, new TerminationPointKey(new TpId(tpInfosList.get(i).getTpName()))) // try {
.augmentation(TpExt.class).child(TpInfos.class); // // Read from a transaction is asynchronous, but a simple
final WriteTransaction writeTransaction = dataBroker.newWriteOnlyTransaction(); // // get/checkedGet makes the call synchronous
writeTransaction.put(LogicalDatastoreType.OPERATIONAL, tpinfosIID, tpInfosList.get(i)); // interfacesOptional = hwNodeReadTx.read(LogicalDatastoreType.OPERATIONAL, interfacesIID).checkedGet();
Futures.addCallback(writeTransaction.submit(), new FutureCallback<Void>() { // } catch (ReadFailedException e) {
@Override // throw new IllegalStateException("Unexpected error reading data from " + nodeId, e);
public void onFailure(Throwable throwable) { // }
LOG.error("Write tp information information failed." + throwable.getMessage()); // List<TpInfos> tpInfosList = new ArrayList<>();
} // if (interfacesOptional.isPresent()) {
// List<Interface> interfaceList = interfacesOptional.get().getInterface();
@Override // for (Interface intf : interfaceList) {
public void onSuccess(Void avoid) { // LOG.info("Show memory with serial {},ipv4 config is {} ",
LOG.info("Write tp information information success."); // intf.getKey().getIfName(), intf.getIpv4Config());
} // TpInfosBuilder tpInfosBuilder = new TpInfosBuilder();
}); // List<IpAddress> ipsOnIntf = getiplist(intf);
} // tpInfosBuilder.setIpAddress(ipsOnIntf);
// tpInfosBuilder.setMtu(intf.getIfMtu().shortValue());
// tpInfosBuilder.setTpName(intf.getIfName().getValue());
// tpInfosBuilder.setTpNumber(intf.getIfNumber());
// tpInfosBuilder.setTpAdminStatus(buildTpAdmin(intf.getIfAdminStatus()));
// tpInfosBuilder.setTpPhyType(intf.getIfPhyType().getName());
// tpInfosList.add(tpInfosBuilder.build());
// }
// } else {
// LOG.info("No data present on path '{}' for mountpoint: {}",
// iid, nodeId);
// }
//
//
// //write interface information to layer
// final WriteTransaction writeTransaction3 = dataBroker.newWriteOnlyTransaction();
// for (int i = 0; i < tpInfosList.size(); i++) {
// InstanceIdentifier<TpExt> tpinfosIID = NETCONF_TOPO_IID
// .child(Node.class, new NodeKey(new NodeId(nodeId)))
// .child(TerminationPoint.class, new TerminationPointKey(new TpId(tpInfosList.get(i).getTpName())))
// .augmentation(TpExt.class);
// writeTransaction3.put(LogicalDatastoreType.OPERATIONAL, tpinfosIID,
// new TpExtBuilder()
// .setTpInfos(tpInfosList.get(i))
// .build()
// );
// }
// Futures.addCallback(writeTransaction3.submit(), new FutureCallback<Void>() {
// @Override
// public void onFailure(Throwable throwable) {
// LOG.error("Write tp information information failed." + throwable.getMessage());
// }
//
// @Override
// public void onSuccess(Void avoid) {
// LOG.info("Write tp information information success.");
// }
// });
} }

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@ -28,9 +28,9 @@ MAKE_FLAGS += -j$(shell cat /proc/cpuinfo | grep processor | wc -l)
endif endif
endif endif
.PHONY : demo database openrpc ulog klog klog_test conntrack netlink trace redismq usermanager configm webauth matchrule logging .PHONY : demo database openrpc ulog klog klog_test conntrack netlink trace redismq usermanager configm webauth matchrule logging ulog_test
all: demo database openrpc ulog klog klog_test conntrack netlink trace redismq usermanager configm webauth matchrule logging all: demo database openrpc ulog klog klog_test conntrack netlink trace redismq usermanager configm webauth matchrule logging ulog_test
ifeq ($(OPT), install) ifeq ($(OPT), install)
#$(shell `find ../release -name "*.zip" -delete`) #$(shell `find ../release -name "*.zip" -delete`)
@ -229,3 +229,12 @@ else ifeq ($(OPT), install)
else else
$(MLOG)make all $(MAKE_FLAGS) -C Platform/build -f module.klog_api.test.Makefile MLOG=$(MLOG) DISABLE_WARRING=$(DIS_BUILD_WARRING) MAKE_TARGET=test_klog_api $(MLOG)make all $(MAKE_FLAGS) -C Platform/build -f module.klog_api.test.Makefile MLOG=$(MLOG) DISABLE_WARRING=$(DIS_BUILD_WARRING) MAKE_TARGET=test_klog_api
endif endif
ulog_test:
ifeq ($(OPT), clean)
$(MLOG)make $(MAKE_FLAGS) -C Platform/build -f user.ulog.ulog-test.Makefile cleanall MLOG=$(MLOG) MAKE_TARGET=test_ulog_api
else ifeq ($(OPT), install)
$(MLOG)make $(MAKE_FLAGS) -C Platform/build -f user.ulog.ulog-test.Makefile install MLOG=$(MLOG) MAKE_TARGET=test_ulog_api
else
$(MLOG)make all $(MAKE_FLAGS) -C Platform/build -f user.ulog.ulog-test.Makefile MLOG=$(MLOG) DISABLE_WARRING=$(DIS_BUILD_WARRING) MAKE_TARGET=test_ulog_api
endif

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@ -0,0 +1,50 @@
# target name, the target name must have the same name of c source file
TARGET_NAME=rpdb
# target
# for linux module driver: KO
# for application: EXE
# for dynamic library: DLL
TARGET_TYPE = KO
# target object
# for application: APP
# for device driver: DRV
TARGET_OBJ = DRV
# custom install dir
TARGET_BOX =
#debug mode or release mode
DEBUG = TRUE
PLAT_LINUX ?= TRUE
PLAT_ARM64 ?= TRUE
VPATH = ../modules
# source code
# set the source file, don't used .o because of ...
COMMON_SRCS = ./rpdb/dpi_trie_cache.c
# MRS Board Source Files
PLAT_LINUX_SRCS = $(COMMON_SRCS)
PLAT_ARM64_SRCS = $(COMMON_SRCS)
# gcc CFLAGS
PLAT_ARM64_CFLAGS :=
PLAT_LINUX_CFLAGS := $(PLAT_ARM64_CFLAGS)
# this line must be at below of thus, because of...
include ../../Common/common.Makefile
ifeq ($(MAKECMDGOALS), )
$(shell find ./ -name "$(TARGET)-*.ko" -delete)
else
ifeq ($(MAKECMDGOALS), all)
$(shell find ./ -name "$(TARGET)-*.ko" -delete)
endif
endif

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@ -1,3 +1,4 @@
# target name, the target name must have the same name of c source file # target name, the target name must have the same name of c source file
TARGET_NAME=configm TARGET_NAME=configm
@ -39,6 +40,10 @@ COMMON_SRCS = configserver.c \
log_config/log_config_console.c log_config/log_config_init.c log_config/log_config_cm.c log_config/log_config_monitor.c log_config/log_config_remote.c log_config/log_config_file.c \ log_config/log_config_console.c log_config/log_config_init.c log_config/log_config_cm.c log_config/log_config_monitor.c log_config/log_config_remote.c log_config/log_config_file.c \
nat_config/natconfig.c \ nat_config/natconfig.c \
vlan_config/vlan_config.c \ vlan_config/vlan_config.c \
dhcp_config/dhcp_client_config.c dhcp_config/dhcp_dhcpd_lease.c dhcp_config/dhcp_host_config.c dhcp_config/dhcp_lib.c dhcp_config/dhcp_relay_config.c dhcp_config/dhcp_shared_network_config.c dhcp_config/dhcp_subnet_config.c\
static_routing_config/static_routing_config.c \
# MRS Board Source Files # MRS Board Source Files
PLAT_LINUX_SRCS = $(COMMON_SRCS) PLAT_LINUX_SRCS = $(COMMON_SRCS)

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@ -0,0 +1,67 @@
# target name, the target name must have the same name of c source file
TARGET_NAME=librpdb
# target
# for linux module driver: KO
# for application: EXE
# for dynamic library: DLL
TARGET_TYPE = DLL
# target object
# for application: APP
# for device driver: DRV
TARGET_OBJ = APP
# custom install dir
TARGET_BOX =
#debug mode or release mode
DEBUG = TRUE
PLAT_LINUX ?= TRUE
PLAT_ARM64 ?= TRUE
VPATH = ../user/rpdb/
# source code
# set the source file, don't used .o because of ...
COMMON_SRCS = rpdb.c
# MRS Board Source Files
PLAT_LINUX_SRCS = $(COMMON_SRCS)
PLAT_ARM64_SRCS = $(COMMON_SRCS)
# gcc CFLAGS
PLAT_ARM64_CFLAGS := -fPIC -I../../Common -I../common/rpdb
PLAT_LINUX_CFLAGS := -fPIC -I../../Common -I../common/rpdb
PLAT_ARM64_LDFLAGS := -fPIC -shared
PLAT_LINUX_LDFLAGS := $(PLAT_ARM64_LDFLAGS)
#gcc libs
ARM64_LIBS :=
LINUX_LIBS :=
# this line must be at below of thus, because of...
include ../../Common/common.Makefile
ifneq ($(MAKECMDGOALS), clean)
ifneq ($(MAKECMDGOALS), cleanall)
ifneq ($(notdir $(DEPEND_LIB)), $(wildcard $(DEPEND_LIB)))
$(shell $(CP) $(DEPEND_LIB) ./)
endif
endif
endif
ifeq ($(MAKECMDGOALS), )
$(shell find ./ -name "$(TARGET)-*.ko" -delete)
else
ifeq ($(MAKECMDGOALS), all)
$(shell find ./ -name "$(TARGET)-*.ko" -delete)
endif
endif

View File

@ -0,0 +1,66 @@
# target name, the target name must have the same name of c source file
TARGET_NAME=test_ulog_api
# target
# for linux module driver: KO
# for application: EXE
# for dynamic library: DLL
TARGET_TYPE = EXE
# target object
# for application: APP
# for device driver: DRV
TARGET_OBJ = APP
# custom install dir
TARGET_BOX =
#debug mode or release mode
DEBUG = TRUE
PLAT_LINUX ?= TRUE
PLAT_ARM64 ?= TRUE
VPATH = ../user/ulog/ulog-test
# source code
# set the source file, don't used .o because of ...
COMMON_SRCS = ulog_test.c
# MRS Board Source Files
PLAT_LINUX_SRCS = $(COMMON_SRCS)
PLAT_ARM64_SRCS = $(COMMON_SRCS)
# gcc CFLAGS
PLAT_ARM64_CFLAGS := -fPIC -I../../Common -I../common/ulog -I../user/ulog
PLAT_LINUX_CFLAGS := $(PLAT_ARM64_CFLAGS)
PLAT_ARM64_LDFLAGS :=
PLAT_LINUX_LDFLAGS := $(PLAT_ARM64_LDFLAGS)
#gcc libs
ARM64_LIBS := -lopenrpc-arm64 -lulogapi-arm64 -lpthread -lm -lev
LINUX_LIBS := -lopenrpc-linux -lulogapi-linux -lpthread -lm -lev
# this line must be at below of thus, because of...
include ../../Common/common.Makefile
ifneq ($(MAKECMDGOALS), clean)
ifneq ($(MAKECMDGOALS), cleanall)
ifneq ($(notdir $(DEPEND_LIB)), $(wildcard $(DEPEND_LIB)))
$(shell $(CP) $(DEPEND_LIB) ./)
endif
endif
endif
ifeq ($(MAKECMDGOALS), )
$(shell find ./ -name "$(TARGET)-*.ko" -delete)
else
ifeq ($(MAKECMDGOALS), all)
$(shell find ./ -name "$(TARGET)-*.ko" -delete)
endif
endif

View File

@ -18,8 +18,8 @@ klog_t *klog_init(const char *module_name)
len = strlen(module_name); len = strlen(module_name);
if (len >= MAX_MODULE_NAME_SZ) { if (len > MAX_MODULE_NAME_SZ) {
printk(KERN_ERR"The length:%d of module_name must be less than %d, but input module_name is %s", len, MAX_MODULE_NAME_SZ, module_name); printk(KERN_ERR"The length:%d of module_name must be not more than %d, but input module_name is %s", len, MAX_MODULE_NAME_SZ, module_name);
return NULL; return NULL;
} }
@ -28,7 +28,7 @@ klog_t *klog_init(const char *module_name)
printk(KERN_ERR"Allocating log memory is failure"); printk(KERN_ERR"Allocating log memory is failure");
return NULL; return NULL;
} }
memset(log->module_name, '\0', MAX_MODULE_NAME_SZ); memset(log->module_name, '\0', MAX_MODULE_NAME_SZ+1);
strncpy(log->module_name, module_name, len); strncpy(log->module_name, module_name, len);
return log; return log;

View File

@ -0,0 +1,296 @@
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/init.h>
#include <linux/timer.h>
#include <linux/uaccess.h>
#include <linux/sysctl.h>
#include <linux/ip.h>
#include <linux/ipv6.h>
/*
* 120s
*/
int dpi_cache_node_timeout = 120;
/*
*
*/
struct dpi_cache_node {
struct list_head list;
union {
struct in6_addr ip6;
struct in_addr ip4;
}ip;
__u16 proto;
__u16 port;
__u32 appid;
uint64_t uptime;
};
/*
* cache链表
*/
#define TRIPLE_CAHCE_HASH_SIZE (2048)
struct list_head dpi_cache_head[TRIPLE_CAHCE_HASH_SIZE] = {0};
typedef struct pkt_info{
unsigned int srcip;
unsigned short sport;
unsigned int dstip;
unsigned short dport;
unsigned short proto;
}pkt_info_t;
#define POLY 0x01101 // CRC20生成多项式x^20+x^12+x^8+1即:01101 CRC32:04C11DB7L
static unsigned int crc_table[256] = {0};
unsigned int get_sum_poly(unsigned char data)
{
unsigned int sum_poly = data;
int j;
sum_poly <<= 24;
for(j = 0; j < 8; j++)
{
int hi = sum_poly&0x80000000; // 取得reg的最高位
sum_poly <<= 1;
if(hi) sum_poly = sum_poly^POLY;
}
return sum_poly;
}
void create_crc_table(void) //在使用CRC20_key函数应该先建立crc表
{
int i;
for(i = 0; i < 256; i++)
{
crc_table[i] = get_sum_poly(i&0xFF);
}
}
unsigned int CRC20_key(unsigned char* data, int len)
{
int i;
unsigned int reg = 0xFFFFFFFF;// 0xFFFFFFFF见后面解释
for(i = 0; i < len; i++)
{
reg = (reg<<8) ^ crc_table[((reg>>24)&0xFF) ^ data[i]];
}
return (reg&0XFFFFF);//得到的reg取后20作为key值
}
/*
* dpi三元组hash链表
*/
void dpi_cache_list_init(void)
{
int i = 0;
for (i = 0; i < TRIPLE_CAHCE_HASH_SIZE; i++){
INIT_LIST_HEAD(&dpi_cache_head[i]);
}
return;
}
/*
* hash值计算
*/
int dpi_cache_node_hash(struct dpi_cache_node node)
{
int i = 0;
int dip = 0;
pkt_info_t info;
info.dport = node.port;
info.sport = 0;
info.srcip = 0;
info.proto = node.proto;
if (node.ip.ip4.s_addr !=0 ) {
info.dstip = node.ip.ip4.s_addr;
} else {
for (i = 0; i < 4; ++i) {
dip ^= node.ip.ip6.s6_addr32[i];
}
info.dstip = dip;
}
return CRC20_key((unsigned char *)&info, sizeof(pkt_info_t))&(TRIPLE_CAHCE_HASH_SIZE - 1);
}
/*
* src dst比较dst的appid,update_appid=true,update
*/
bool dpi_cache_node_compare(struct dpi_cache_node src,struct dpi_cache_node dst,bool update_appid)
{
int i = 0;
if (src.port != dst.port){
return false;
}
if (src.proto != dst.proto){
return false;
}
if(src.ip.ip4.s_addr != 0){
if(src.ip.ip4.s_addr != dst.ip.ip4.s_addr){
return false;
}
}else{
for (i = 0; i < 4; i++){
if (src.ip.ip6.s6_addr32[i] != dst.ip.ip6.s6_addr32[i]){
return false;
}
}
}
if (update_appid){
dst.appid = src.appid;
dst.uptime = get_jiffies_64();
}
return true;
}
/*
*hash链表node
*/
bool dpi_cache_node_search(struct dpi_cache_node node,int flag)
{
struct list_head * pList;
struct dpi_cache_node *pNode;
int hash = dpi_cache_node_hash(node);
list_for_each(pList,&dpi_cache_head[hash]){
pNode = list_entry(pList,struct dpi_cache_node,list);
if (dpi_cache_node_compare(node,*pNode,flag)){
return true;
}
}
return false;
}
/*
* DPI
*/
bool dpi_cache_node_add(struct dpi_cache_node node)
{
int hash = 0;
struct dpi_cache_node *pNode =NULL;
if (dpi_cache_node_search(node,true)) {
return true;
}
pNode = kmalloc(sizeof(struct dpi_cache_node), GFP_KERNEL);
if (NULL == pNode) {
return false;
}
hash = dpi_cache_node_hash(node);
pNode->uptime = get_jiffies_64();
pNode->appid = node.appid;
list_add_tail(&pNode->list,&dpi_cache_head[hash]);
return true;
}
/*
* hash链表上所有node节点
*/
void dpi_cache_list_release(void)
{
struct list_head * pList = NULL;
struct dpi_cache_node *pNode = NULL;
int i = 0;
for (i = 0; i < TRIPLE_CAHCE_HASH_SIZE; i++){
list_for_each(pList,&dpi_cache_head[i]){
pNode = list_entry(pList,struct dpi_cache_node,list);
if(pNode){
list_del(&pNode->list);
}
}
}
}
/*
*
*/
void dpi_cache_node_timeout_func(void)
{
struct list_head * pList = NULL;
struct dpi_cache_node *pNode = NULL;
int i = 0;
for (i = 0; i < TRIPLE_CAHCE_HASH_SIZE; i++){
list_for_each(pList,&dpi_cache_head[i]){
pNode = list_entry(pList,struct dpi_cache_node,list);
if(pNode&&
(get_jiffies_64() - pNode->uptime >= dpi_cache_node_timeout)){
list_del(&pNode->list);
}
}
}
}
/*
*
*/
struct timer_list gTimer;
void dpi_cache_timer_handler(unsigned long data) {
printk(KERN_INFO"timer pending:%d\n", timer_pending(&gTimer));
dpi_cache_node_timeout_func();
mod_timer(&gTimer, jiffies+msecs_to_jiffies(dpi_cache_node_timeout*1000));
}
int dpi_cache_timer_init(void) {
printk(KERN_INFO"%s jiffies:%ld\n", __func__, jiffies);
printk(KERN_INFO"ji:%d,HZ:%d\n", jiffies_to_msecs(250), HZ);
init_timer(&gTimer);
gTimer.expires = jiffies + dpi_cache_node_timeout*HZ;
gTimer.function = dpi_cache_timer_handler;
add_timer(&gTimer);
printk(KERN_INFO"timer pending:%d\n", timer_pending(&gTimer));
return 0;
}
void dpi_cache_timer_exit(void) {
printk(KERN_INFO"%s jiffies:%ld\n", __func__, jiffies);
del_timer(&gTimer);
}
int dpi_cahce_module_init(void)
{
dpi_cache_timer_init();
dpi_cache_list_init();
return 1;
}
int dpi_cache_module_exit(void)
{
dpi_cache_timer_exit();
dpi_cache_list_release();
return 1;
}
module_init(dpi_cahce_module_init);
module_exit(dpi_cache_timer_exit);
MODULE_LICENSE("GPL");

View File

@ -1,5 +1,46 @@
#include "dhcp_lib.h" #include "dhcp_lib.h"
void dhcp_config_init(void)
{
ret_code ret = RET_OK;
ret = br_event_register(BR_DELETE_EVENT_PRE,del_interface_dhcp_cb);
}
int del_interface_dhcp_cb(BR_EVENT_TYPE event_type, br_event_t event_arg)
{
ret_code ret = RET_OK;
char *segment = get_interface_subnet(event_arg.br_name);
if(NULL == segment){
return ret;
}
char *mask = get_interface_mask(event_arg.br_name);
if(NULL == mask){
return ret;
}
int len = 500;
char *cmd = (char *)malloc(len + 1);
if(NULL == cmd)
{
return RET_ERR;
}
memset(cmd, 0, len + 1);
snprintf(cmd, len, "sed -r -i 's/%s //g' /etc/default/isc-dhcp-server", event_arg.br_name);
system(cmd);
memset(cmd, 0, len + 1);
snprintf(cmd, len, "sed -r -i ':a;N;$!ba;s/[ \\t]*subnet[ \\t]+%s[ \\t]+netmask[ \\t]+%s[ \\t]*\\{[a-zA-Z#:; \\t\\n0-9\\.\\,\\-]+\\}/#/g' /etc/dhcp/dhcpd.conf", segment, mask);
system(cmd);
system("sed -r -i '/#/d' /etc/dhcp/dhcpd.conf");
if(segment){
free(segment);
}
if(mask){
free(mask);
}
/*ÔËÐÐÅäÖÃÎļþ*/
system("service isc-dhcp-server restart");
return ret;
}
char *getfileall(char *fname) char *getfileall(char *fname)
{ {

View File

@ -14,6 +14,9 @@
#include "../web_config/auth_recover_config.h" #include "../web_config/auth_recover_config.h"
#include "natconfig.h" #include "natconfig.h"
#include "vlan_config.h" #include "vlan_config.h"
#include "dhcp_lib.h"
#include "static_routing.h"
#define RET_CODE_LEN 16 #define RET_CODE_LEN 16
#define RET_MSG_LEN 128 #define RET_MSG_LEN 128
@ -31,7 +34,11 @@
{ \ { \
VLAN_CONFIG_MODULE, \ VLAN_CONFIG_MODULE, \
vlan_config_init \ vlan_config_init \
} \ }, \
{ \
DHCP_CONFIG_MODULE, \
dhcp_config_init \
} \
} }
/* /*
@ -217,6 +224,78 @@
vlan_config_proc, \ vlan_config_proc, \
vlan_config_get, \ vlan_config_get, \
vlan_config_get_all \ vlan_config_get_all \
},\
{\
DHCP_HOST_CONFIG, \
CONFIG_FROM_WEB, \
FALSE, \
dhcp_host_config_chk, \
dhcp_host_config_proc, \
dhcp_host_config_get, \
NULL \
},\
{\
DHCP_SUBNET_CONFIG, \
CONFIG_FROM_WEB, \
FALSE, \
dhcp_subnet_config_chk, \
dhcp_subnet_config_proc, \
dhcp_subnet_config_get, \
NULL \
},\
{\
DHCP_RELAY_CONFIG, \
CONFIG_FROM_WEB, \
FALSE, \
dhcp_relay_config_chk, \
dhcp_relay_config_proc, \
NULL, \
NULL \
},\
{\
DHCP_CLIENT_CONFIG, \
CONFIG_FROM_WEB, \
FALSE, \
dhcp_client_config_chk, \
dhcp_client_config_proc, \
dhcp_client_get, \
NULL \
},\
{\
DHCP_DHCPD_LEASE, \
CONFIG_FROM_WEB, \
FALSE, \
dhcp_dhcpd_lease_config_chk, \
NULL, \
NULL, \
dhcp_dhcpd_lease_get_all \
},\
{\
DHCP_SHARED_NETWORK_CONFIG, \
CONFIG_FROM_WEB, \
FALSE, \
dhcp_shared_network_config_chk, \
dhcp_shared_network_config_proc, \
NULL, \
dhcp_shared_network_config_get_all \
},\
{\
STATIC_ROUTING_CONFIG, \
CONFIG_FROM_WEB|CONFIG_FROM_NETOPEER, \
TRUE, \
routing_config_chk, \
routing_config_proc, \
NULL, \
routing_config_get_all \
},\
{\
GET_ALL_ROUTING_INFO, \
CONFIG_FROM_WEB|CONFIG_FROM_NETOPEER, \
FALSE, \
all_routing_config_chk, \
NULL, \
NULL, \
all_routing_get_all \
}\ }\
} }
@ -270,3 +349,4 @@ int cm_format_data(ret_code ret_code, cJSON *json_obj, char *output);
#endif /* RPC_COMMON_H_ */ #endif /* RPC_COMMON_H_ */

View File

@ -20,6 +20,19 @@
#include "rpc.h" #include "rpc.h"
#include "netconfig.h" #include "netconfig.h"
#include "dhcp_client_config.h"
#include "dhcp_host_config.h"
#include "dhcp_relay_config.h"
#include "dhcp_shared_network_config.h"
#include "dhcp_subnet_config.h"
#include "dhcp_dhcpd_lease.h"
void dhcp_config_init(void);
int del_interface_dhcp_cb(BR_EVENT_TYPE event_type, br_event_t event_arg);
char *getfileall(char *fname); char *getfileall(char *fname);
char *getfilefirstline(char *fname); char *getfilefirstline(char *fname);

View File

@ -0,0 +1,73 @@
#ifndef STATIC_ROUTING_H_
#define STATIC_ROUTING_H_
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#include <errno.h>
#include <unistd.h>
#include <sys/types.h>
#include <sys/socket.h>
#include <netinet/in.h>
#include <arpa/inet.h>
#include <sys/ioctl.h>
#include <net/if.h>
#define IP_MAX_LENGTH 128
#define INTERFACE_MAX_LENGTH 20
#define LINE_MAX_LENGTH 128
#define ROUTING_TABLE_MAX_NUMBER 100
#define STRING_LENGTH 128
#define IPV4_GET_STATIC_ROUTING "route -n"
#define IPV6_GET_STATIC_ROUTING "route -6"
#define IPV4_VERSION 4
#define IPV6_VERSION 6
#define ACTION_LENGTH 10
#define STATIC_ROUTING_PATH "/etc/network/static_routing"
struct routing_string{
int version;
char destip[IP_MAX_LENGTH];
int netmask;
char gateway[IP_MAX_LENGTH];
char dev[INTERFACE_MAX_LENGTH];
int metric;
};
typedef struct routing_string routing_t;
/*static routing config */
ret_code routing_config_chk(uint source, uint *config_type,
pointer input, int *input_len,
pointer output, int *output_len);
ret_code routing_config_proc(uint source, uint config_type,
pointer input, int input_len,
pointer output, int *output_len);
ret_code routing_config_get_all(uint source,
pointer output, int *output_len);
/*»ñÈ¡ËùÓзÓÉÐÅÏ¢*/
ret_code all_routing_config_chk(uint source, uint *config_type,
pointer input, int *input_len,
pointer output, int *output_len);
ret_code all_routing_get_all(uint source,
pointer output, int *output_len);
#endif

View File

@ -24,7 +24,7 @@ ret_code log_rpc_exec(char* service_name, char* method_name, pointer input, int
} }
/* 仅适用于以“key=value”方式保存的配置解析适用于log-sched.conf的解析 */ /* 仅适用于以“key=value”方式保存的配置解析适用于log-sched.conf的解析 */
ret_code cm_log_get_keyvalue_from_file(const char *file_str, const char *key_str, char *value_str, int value_len) ret_code cm_log_get_keyvalue_from_file(const char *file_str, const char *key_str, char *value_str, int value_len)
{ {
ret_code ret = RET_ERR; ret_code ret = RET_ERR;
@ -57,10 +57,10 @@ ret_code cm_log_get_keyvalue_from_file(const char *file_str, const char *key_str
pos = strstr(line, key_str); pos = strstr(line, key_str);
if (pos != NULL) if (pos != NULL)
{ {
/* 跳过key与value间的"=" */ /* 跳过key与value间的"=" */
strcpy(value_str, pos+strlen(key_str)+1); strcpy(value_str, pos+strlen(key_str)+1);
/* 滤除掉段尾的回车换行 */ /* 滤除掉段尾的回车换行 */
if ('\n' == value_str[strlen(value_str)-1]) if ('\n' == value_str[strlen(value_str)-1])
{ {
value_str[strlen(value_str)-1] = '\0'; value_str[strlen(value_str)-1] = '\0';
@ -80,7 +80,7 @@ ret_code cm_log_get_keyvalue_from_file(const char *file_str, const char *key_str
} }
/* 检查的文件存在本函数返回1否则本函数返回0 */ /* 检查的文件存在本函数返回1否则本函数返回0 */
int cm_log_check_file_is_exist(const char *file_str) int cm_log_check_file_is_exist(const char *file_str)
{ {
int is_exist = 0; int is_exist = 0;
@ -91,7 +91,7 @@ int cm_log_check_file_is_exist(const char *file_str)
} }
else else
{ {
/* 如果文件存在access返回0不存在access返回-1 */ /* 如果文件存在access返回0不存在access返回-1 */
is_exist = ((access(file_str, 0) == 0) ? 1 : 0); is_exist = ((access(file_str, 0) == 0) ? 1 : 0);
} }
@ -99,7 +99,7 @@ int cm_log_check_file_is_exist(const char *file_str)
} }
/* 适用于log-console.conf与log-pty.conf的解析 */ /* 适用于log-console.conf与log-pty.conf的解析 */
ret_code cm_log_get_module_from_file(const char *file_str, char *value_str, int value_len) ret_code cm_log_get_module_from_file(const char *file_str, char *value_str, int value_len)
{ {
ret_code ret = RET_ERR; ret_code ret = RET_ERR;
@ -154,7 +154,7 @@ ret_code cm_log_get_module_from_file(const char *file_str, char *value_str, int
return ret; return ret;
} }
/* 适用于log-console.conf与log-pty.conf的解析 */ /* 适用于log-console.conf与log-pty.conf的解析 */
ret_code cm_log_get_level_from_file(const char *file_str, u8 *value) ret_code cm_log_get_level_from_file(const char *file_str, u8 *value)
{ {
ret_code ret = RET_ERR; ret_code ret = RET_ERR;

View File

@ -38,9 +38,9 @@ static ret_code cm_get_log_file_elems(log_file_t *log_file_conf, int *err_no)
memset(log_file_conf, 0, sizeof(*log_file_conf)); memset(log_file_conf, 0, sizeof(*log_file_conf));
/* level、path、is_compress、del_over_days暂未实现 */ /* level、path、is_compress、del_over_days暂未实现 */
/* 日志文件大小上限del_over_size */ /* 日志文件大小上限del_over_size */
memset(value, 0, MAX_LINE_SZ); memset(value, 0, MAX_LINE_SZ);
if (cm_log_get_keyvalue_from_file(CM_LOG_CONF_LOGFILE_FILE, LOG_CONF_KEY_FILE_MAX_SIZE_STR, value, sizeof(value)) == 0) if (cm_log_get_keyvalue_from_file(CM_LOG_CONF_LOGFILE_FILE, LOG_CONF_KEY_FILE_MAX_SIZE_STR, value, sizeof(value)) == 0)
{ {

View File

@ -166,7 +166,7 @@ static ret_code cm_log_prase_host_from_str(char *const input_str, log_remote_hos
memset(tmp_str, 0, sizeof(tmp_str)); memset(tmp_str, 0, sizeof(tmp_str));
/* 提取日志等级 */ /* 提取日志等级 */
while (1) while (1)
{ {
pos2 = strstr(pos, ".="); pos2 = strstr(pos, ".=");
@ -202,7 +202,7 @@ static ret_code cm_log_prase_host_from_str(char *const input_str, log_remote_hos
} }
ret_host->level = (u8)tmp_value; ret_host->level = (u8)tmp_value;
/* 提取IP地址 */ /* 提取IP地址 */
pos = strstr(pos2, "@"); pos = strstr(pos2, "@");
if (NULL == pos) if (NULL == pos)
{ {
@ -230,7 +230,7 @@ static ret_code cm_log_prase_host_from_str(char *const input_str, log_remote_hos
strncpy(ret_host->host, pos, tmp_len); strncpy(ret_host->host, pos, tmp_len);
/* 提取端口 */ /* 提取端口 */
pos2 ++; pos2 ++;
pos = pos2; pos = pos2;
pos2 = strstr(pos, ":"); pos2 = strstr(pos, ":");
@ -250,7 +250,7 @@ static ret_code cm_log_prase_host_from_str(char *const input_str, log_remote_hos
} }
ret_host->port = (u16)tmp_value; ret_host->port = (u16)tmp_value;
/* 提取日志存放格式 */ /* 提取日志存放格式 */
pos2++; pos2++;
pos = pos2; pos = pos2;
@ -415,7 +415,7 @@ static ret_code cm_log_getall_host_from_file(const char *file_str, log_remote_ho
if (hosts[cnt].host[0] == '\0') if (hosts[cnt].host[0] == '\0')
{ {
/* 无效数据 */ /* 无效数据 */
memset(hosts+cnt, 0, sizeof(log_remote_host_x_t)); memset(hosts+cnt, 0, sizeof(log_remote_host_x_t));
continue; continue;
} }

File diff suppressed because it is too large Load Diff

View File

@ -1246,11 +1246,12 @@ ret_code vlan_config_json_parse(pointer input, interface_vlan_info *if_vlan_info
goto out; goto out;
} }
if(!(operate = cJSON_GetObjectItem(root, "operate"))){ if(!(operate = cJSON_GetObjectItem(root, "operate"))){
printf("[vlan]vlan_config_json_parse: No operate node.\n"); printf("[vlan]vlan_config_json_parse: Json No operate node.\n");
ret = RET_INPUTERR; ret = RET_INPUTERR;
goto out; goto out;
} }
if(!(conf_ifvlan = cJSON_GetObjectItem(root, "conf-ifvlan"))){ if(!(conf_ifvlan = cJSON_GetObjectItem(root, "conf-ifvlan"))){
printf("[vlan]vlan_config_json_parse: Json No conf_ifvlan node.\n");
ret = RET_INPUTERR; ret = RET_INPUTERR;
goto out; goto out;
} }
@ -1258,7 +1259,7 @@ ret_code vlan_config_json_parse(pointer input, interface_vlan_info *if_vlan_info
/* 解析最外层interface数组 */ /* 解析最外层interface数组 */
if_num = cJSON_GetArraySize(conf_ifvlan); if_num = cJSON_GetArraySize(conf_ifvlan);
if(if_num == 0){ if(if_num == 0){
printf("[vlan]vlan_config_json_parse: json array has no interface.\n"); printf("[vlan]vlan_config_json_parse: Json array has no interface.\n");
ret = RET_INPUTERR; ret = RET_INPUTERR;
goto out; goto out;
} }
@ -1287,7 +1288,10 @@ ret_code vlan_config_json_parse(pointer input, interface_vlan_info *if_vlan_info
} }
cJSON *ifName = cJSON_GetObjectItem(node, "if-name"); cJSON *ifName = cJSON_GetObjectItem(node, "if-name");
if(!ifName){ if(!ifName){
continue; //continue;
printf("[vlan]vlan_config_json_parse: json has no ifName node.\n");
ret = RET_INPUTERR;
goto out;
} }
if(NULL == ifName->valuestring){ if(NULL == ifName->valuestring){
printf("[vlan]vlan_config_json_parse: ifName->valuestring is null.\n"); printf("[vlan]vlan_config_json_parse: ifName->valuestring is null.\n");
@ -1298,7 +1302,10 @@ ret_code vlan_config_json_parse(pointer input, interface_vlan_info *if_vlan_info
printf("[vlan]if_vlan_info[%d].if_name=%s\n", i, if_vlan_info[i].if_name); printf("[vlan]if_vlan_info[%d].if_name=%s\n", i, if_vlan_info[i].if_name);
cJSON *ifAttr = cJSON_GetObjectItem(node, "if-attr"); cJSON *ifAttr = cJSON_GetObjectItem(node, "if-attr");
if(!ifAttr){ if(!ifAttr){
continue; //continue;
printf("[vlan]vlan_config_json_parse: Json has no ifAttr node.\n");
ret = RET_INPUTERR;
goto out;
} }
if(NULL == ifAttr->valuestring){ if(NULL == ifAttr->valuestring){
printf("[vlan]vlan_config_json_parse: ifAttr->valuestring is null.\n"); printf("[vlan]vlan_config_json_parse: ifAttr->valuestring is null.\n");
@ -1311,15 +1318,23 @@ ret_code vlan_config_json_parse(pointer input, interface_vlan_info *if_vlan_info
else if(!strcmp(ifAttr->valuestring, "access")){ else if(!strcmp(ifAttr->valuestring, "access")){
if_vlan_info[i].attr = LINK_TYPE_ACCESS; if_vlan_info[i].attr = LINK_TYPE_ACCESS;
} }
else {
printf("[vlan]vlan_config_json_parse: errror: is not trunk or access.\n");
ret = RET_INPUTERR;
goto out;
}
cJSON *vId = cJSON_GetObjectItem(node, "vid"); cJSON *vId = cJSON_GetObjectItem(node, "vid");
if(!vId){ if(!vId){
continue; //continue;
printf("[vlan]vlan_config_json_parse: Json has no vId node.\n");
ret = RET_INPUTERR;
goto out;
} }
/* 解析内层vid数组 */ /* 解析内层vid数组 */
vl_num = cJSON_GetArraySize(vId); vl_num = cJSON_GetArraySize(vId);
if(vl_num == 0){ if(vl_num == 0){
printf("[vlan]vlan_config_json_parse: json array has no vid.\n"); printf("[vlan]vlan_config_json_parse: Json array has no vid element.\n");
ret = RET_INPUTERR; ret = RET_INPUTERR;
goto out; goto out;
} }
@ -2077,7 +2092,11 @@ ret_code vlan_operate_parse(pointer input, int *oper_type)
ret = RET_OK; ret = RET_OK;
goto out; goto out;
} }
else {
printf("[vlan]vlan_operate_chk: operate-val is UNKNOWN, error.\n");
ret = RET_INPUTERR;
goto out;
}
out: out:
if(root){ if(root){
cJSON_Delete(root); cJSON_Delete(root);

View File

@ -16,7 +16,7 @@
/*定义结构体数组 存在免认证规则 */ /*定义结构体数组 存在免认证规则 */
freeauth_configure_t freeauth_array[RULE_MAX_NUM] = {0}; freeauth_configure_t freeauth_array[RULE_MAX_NUM] = {0};
#define UNAMESIZE (127 + 1) #define UNAMESIZE (60 + 1)
#define SPECHAR(element) (strpbrk((element), "~!@#$%^&*()_+{}|:\"<>?\\,./;\'[]-=`")) //校验特殊字符 #define SPECHAR(element) (strpbrk((element), "~!@#$%^&*()_+{}|:\"<>?\\,./;\'[]-=`")) //校验特殊字符
#ifdef FREEAUTH_ACK_COOKIES #ifdef FREEAUTH_ACK_COOKIES
@ -536,6 +536,8 @@ ret_code freeauth_config_mod_proc(uint source, uint config_type,
int i; int i;
int cnt; int cnt;
cJSON *res; cJSON *res;
cJSON *pJsonArry;
cJSON *pJsonsub;
authfree_result_t authfree_result; authfree_result_t authfree_result;
freeauth_configure_t *freeauth_configure = NULL; freeauth_configure_t *freeauth_configure = NULL;
uint conf_type = FREEAUTH_CONFIG_GET; uint conf_type = FREEAUTH_CONFIG_GET;
@ -564,6 +566,9 @@ ret_code freeauth_config_mod_proc(uint source, uint config_type,
freeauth_configure[j].dip, freeauth_configure[j].dport, freeauth_configure[j].dport, j); freeauth_configure[j].dip, freeauth_configure[j].dport, freeauth_configure[j].dport, j);
} }
pJsonArry= cJSON_CreateArray(); /*创建数组*/
/*查找要修改的免认证规则名字,不存在则退出程序 */ /*查找要修改的免认证规则名字,不存在则退出程序 */
for(i = 0; i < RULE_MAX_NUM; i++) { for(i = 0; i < RULE_MAX_NUM; i++) {
/*两个字符串相等 strcmp值为0*/ /*两个字符串相等 strcmp值为0*/
@ -603,34 +608,42 @@ ret_code freeauth_config_mod_proc(uint source, uint config_type,
printf("cfgchannel main exit!\r\n"); printf("cfgchannel main exit!\r\n");
#endif #endif
/*创建json对象 */ cJSON_AddItemToArray(pJsonArry, pJsonsub=cJSON_CreateObject()); /* 给创建的数组增加对象*/
res = cJSON_CreateObject();
if(!res) { /*在json对象上添加键值对*/
return RET_ERR; char *result_message = malloc(strlen(freeauth_configure[j].name)+strlen(authfree_result.message)+1);//+1 for the zero-terminator
//in real code you would check for errors in malloc here
if (result_message == NULL)
{
return RET_NOMEM;
} }
/*将json对象转换成json字符串 返回处理结果*/ strcpy(result_message, freeauth_configure[j].name);
cJSON_AddNumberToObject(res, "resultcode", authfree_result.resultcode); strcat(result_message, authfree_result.message);
cJSON_AddStringToObject(res, "message", authfree_result.message); printf("%s\n", result_message);
ret_char = cJSON_PrintUnformatted(res);
cJSON_AddNumberToObject(pJsonsub, "resultcode", authfree_result.resultcode);
cJSON_AddStringToObject(pJsonsub, "message", result_message);
ret_char = cJSON_Print(pJsonArry);
ret_int = strlen(ret_char); ret_int = strlen(ret_char);
if(output_len) { if(output_len)
{
*output_len = ret_int; *output_len = ret_int;
} }
/*超出2k的内存报错 */ /*超出2k的内存报错 */
if(ret_int >= 1024 * 2) { if(ret_int >= 1024 * 2)
{
free(ret_char); free(ret_char);
cJSON_Delete(res); cJSON_Delete(pJsonArry);
return RET_NOMEM; return RET_NOMEM;
} }
memcpy(output, ret_char, ret_int + 1); memcpy(output, ret_char, ret_int + 1);
free(ret_char); free(ret_char);
cJSON_Delete(res);
} }
} }
} }
@ -651,6 +664,8 @@ ret_code freeauth_config_del_proc(uint source, uint config_type,
int i; int i;
int cnt; int cnt;
cJSON *res; cJSON *res;
cJSON *pJsonArry;
cJSON *pJsonsub;
authfree_result_t authfree_result; authfree_result_t authfree_result;
freeauth_configure_t *freeauth_configure = NULL; freeauth_configure_t *freeauth_configure = NULL;
uint conf_type = FREEAUTH_CONFIG_GET; uint conf_type = FREEAUTH_CONFIG_GET;
@ -679,6 +694,7 @@ ret_code freeauth_config_del_proc(uint source, uint config_type,
printf("[%s %d]\n", freeauth_configure[j].name, j); printf("[%s %d]\n", freeauth_configure[j].name, j);
} }
pJsonArry= cJSON_CreateArray(); /*创建数组*/
/*查找要修改的免认证规则名字,不存在则退出程序 */ /*查找要修改的免认证规则名字,不存在则退出程序 */
for(i = 0; i < RULE_MAX_NUM; i++) { for(i = 0; i < RULE_MAX_NUM; i++) {
@ -719,18 +735,24 @@ ret_code freeauth_config_del_proc(uint source, uint config_type,
printf("cfgchannel main exit!\r\n"); printf("cfgchannel main exit!\r\n");
#endif #endif
/*创建json对象 */ cJSON_AddItemToArray(pJsonArry, pJsonsub=cJSON_CreateObject());
res = cJSON_CreateObject();
if(!res) /*在json对象上添加键值对*/
char *result_message = malloc(strlen(freeauth_configure[j].name)+strlen(authfree_result.message)+1);//+1 for the zero-terminator
//in real code you would check for errors in malloc here
if (result_message == NULL)
{ {
return RET_ERR; return RET_NOMEM;
} }
/*将json对象转换成json字符串 返回处理结果*/ strcpy(result_message, freeauth_configure[j].name);
cJSON_AddNumberToObject(res, "resultcode", authfree_result.resultcode); strcat(result_message, authfree_result.message);
cJSON_AddStringToObject(res, "message", authfree_result.message); printf("%s\n", result_message);
ret_char = cJSON_PrintUnformatted(res);
cJSON_AddNumberToObject(pJsonsub, "resultcode", authfree_result.resultcode);
cJSON_AddStringToObject(pJsonsub, "message", result_message);
ret_char = cJSON_Print(pJsonArry);
ret_int = strlen(ret_char); ret_int = strlen(ret_char);
if(output_len) if(output_len)
@ -749,7 +771,6 @@ ret_code freeauth_config_del_proc(uint source, uint config_type,
memcpy(output, ret_char, ret_int + 1); memcpy(output, ret_char, ret_int + 1);
free(ret_char); free(ret_char);
cJSON_Delete(res);
} }
} }
} }

View File

@ -36,14 +36,86 @@ log_cmd_t *get_cb_by_cmd(const char *cmd)
return NULL; return NULL;
} }
static void logging_usage()
{
int i = 0;
char tmp_str[1024] = "";
fprintf(stdout, "-----------------------------------------------------------------------------------------\n");
fprintf(stdout, "usage of %s:", LOGGING_MODULE_NAME);
for (int i = 0; i < (sizeof(g_log_cmd) / sizeof(log_cmd_t)); i++) {
strcat(tmp_str, g_log_cmd[i].cmd);
if (i < (sizeof(g_log_cmd) / sizeof(log_cmd_t))-1) {
strcat(tmp_str, "|");
}
}
fprintf(stdout, " %s %s\n", LOGGING_MODULE_NAME, tmp_str);
fprintf(stdout, "\n");
fprintf(stdout, "1. usage of %s %s:\n", LOGGING_MODULE_NAME, g_log_cmd[0].cmd);
fprintf(stdout, " %s %s <level> [<module_name>]\n", LOGGING_MODULE_NAME, g_log_cmd[0].cmd);
fprintf(stdout, " %s %s off\n", LOGGING_MODULE_NAME, g_log_cmd[0].cmd);
fprintf(stdout, " %s %s get [<module_name>]\n", LOGGING_MODULE_NAME, g_log_cmd[0].cmd);
fprintf(stdout, " <level> = emerg | alert | crit | err | warn | notice | info | debug\n");
fprintf(stdout, " <module_name> the filtering module_name, only recode this module's log while set\n");
fprintf(stdout, " eg: %s %s info moudle1\n", LOGGING_MODULE_NAME, g_log_cmd[0].cmd);
fprintf(stdout, " %s %s off\n", LOGGING_MODULE_NAME, g_log_cmd[0].cmd);
fprintf(stdout, " %s %s get\n", LOGGING_MODULE_NAME, g_log_cmd[0].cmd);
fprintf(stdout, " %s %s get module1\n", LOGGING_MODULE_NAME, g_log_cmd[0].cmd);
fprintf(stdout, "\n");
fprintf(stdout, "2. usage of %s %s is simple as %s\n", LOGGING_MODULE_NAME, g_log_cmd[1].cmd, g_log_cmd[0].cmd);
fprintf(stdout, "\n");
fprintf(stdout, "3. usage of %s %s:\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, " %s %s add <ip_addr> [<port>] [<RFCfmt>]\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, " %s %s del <ip_addr> [<port>] [<RFCfmt>]\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, " %s %s get <ip_addr>\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, " %s %s getall\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, " <ip_addr> is the ip address of remote syslog server\n");
fprintf(stdout, " <port> is the port of remote syslog server\n");
fprintf(stdout, " <RFCfmt> = RFC3164fmt|RFC5424fmt, is the version of syslog format\n");
fprintf(stdout, " eg: %s %s add 192.168.100.1 514 RFC3164fmt\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, " %s %s del 192.168.100.1 514 RFC3164fmt\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, " %s %s get 192.168.100.1\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, " %s %s getall\n", LOGGING_MODULE_NAME, g_log_cmd[2].cmd);
fprintf(stdout, "\n");
fprintf(stdout, "4. usage of %s %s:\n", LOGGING_MODULE_NAME, g_log_cmd[3].cmd);
fprintf(stdout, " %s %s <level>\n", LOGGING_MODULE_NAME, g_log_cmd[3].cmd);
fprintf(stdout, " %s %s get\n", LOGGING_MODULE_NAME, g_log_cmd[3].cmd);
fprintf(stdout, " <level> = emerg | alert | crit | err | warn | notice | info | debug \n");
fprintf(stdout, " eg: %s %s info\n", LOGGING_MODULE_NAME, g_log_cmd[3].cmd);
fprintf(stdout, " %s %s get\n", LOGGING_MODULE_NAME, g_log_cmd[3].cmd);
fprintf(stdout, "\n");
fprintf(stdout, "5. usage of %s %s:\n", LOGGING_MODULE_NAME, g_log_cmd[4].cmd);
fprintf(stdout, " %s %s <level> [<file_path>] [<is_compress>] [<del_over_days>] [<del_over_size>]\n", LOGGING_MODULE_NAME, g_log_cmd[4].cmd);
fprintf(stdout, " %s %s get\n", LOGGING_MODULE_NAME, g_log_cmd[4].cmd);
fprintf(stdout, " <level> = emerg | alert | crit | err | warn | notice | info | debug\n");
fprintf(stdout, " <file_path> is the path of syslog files saved\n");
fprintf(stdout, " <is_compress> = 0 | 1 , which 0 is syslog files is not compress while 1 is compress\n");
fprintf(stdout, " <del_over_days> is the syslog files life-time (days)\n");
fprintf(stdout, " <del_over_size> is the syslog files life-size (bytes)\n");
fprintf(stdout, " eg: %s %s info /var/log/syslog-files 0 100 1024000\n", LOGGING_MODULE_NAME, g_log_cmd[4].cmd);
fprintf(stdout, " %s %s get\n", LOGGING_MODULE_NAME, g_log_cmd[4].cmd);
fprintf(stdout, "-----------------------------------------------------------------------------------------\n");
}
int main(int argc, char **argv) int main(int argc, char **argv)
{ {
int ret = -1; int ret = -1;
if (argc < 2) { if (argc < 2) {
fprintf(stdout, "Parameter too few\n"); fprintf(stdout, "Parameter too few\n");
logging_usage();
return ret; return ret;
} }
if (strcmp(argv[1], "-h")==0 || strcmp(argv[1], "--help")==0) {
logging_usage();
return 0;
}
g_log = ulog_init(LOGGING_MODULE_NAME, 1); g_log = ulog_init(LOGGING_MODULE_NAME, 1);
if (g_log == NULL) { if (g_log == NULL) {
fprintf(stderr, "Initiating ulog is failure\n"); fprintf(stderr, "Initiating ulog is failure\n");

641
Platform/user/rpdb/list.h Normal file
View File

@ -0,0 +1,641 @@
#ifndef _LINUX_LIST_H
#define _LINUX_LIST_H
#define container_of(ptr,type,member) ((type *)((char *)(ptr)-(unsigned long)(&((type *)0)->member)))
//#if defined(__KERNEL__) || defined(_LVM_H_INCLUDE)
//#include <linux/prefetch.h>
/*
* Simple doubly linked list implementation.
*
* Some of the internal functions ("__xxx") are useful when
* manipulating whole lists rather than single entries, as
* sometimes we already know the next/prev entries and we can
* generate better code by using them directly rather than
* using the generic single-entry routines.
*/
typedef struct list_head {
struct list_head *next, *prev;
} list_t;
#define LIST_HEAD_INIT(name) { &(name), &(name) }
#define LIST_HEAD(name) \
struct list_head name = LIST_HEAD_INIT(name)
#define INIT_LIST_HEAD(ptr) do { \
(ptr)->next = (ptr); (ptr)->prev = (ptr); \
} while (0)
/*
* Insert a new entry between two known consecutive entries.
*
* This is only for internal list manipulation where we know
* the prev/next entries already!
*/
static void inline prefetch(void *p){}
static inline void __list_add(struct list_head *new,
struct list_head *prev,
struct list_head *next)
{
next->prev = new;
new->next = next;
new->prev = prev;
prev->next = new;
}
/**
* list_add - add a new entry
* @new: new entry to be added
* @head: list head to add it after
*
* Insert a new entry after the specified head.
* This is good for implementing stacks.
*/
static inline void list_add(struct list_head *new, struct list_head *head)
{
__list_add(new, head, head->next);
}
/**
* list_add_tail - add a new entry
* @new: new entry to be added
* @head: list head to add it before
*
* Insert a new entry before the specified head.
* This is useful for implementing queues.
*/
static inline void list_add_tail(struct list_head *new, struct list_head *head)
{
__list_add(new, head->prev, head);
}
/*
* Delete a list entry by making the prev/next entries
* point to each other.
*
* This is only for internal list manipulation where we know
* the prev/next entries already!
*/
static inline void __list_del(struct list_head *prev, struct list_head *next)
{
next->prev = prev;
prev->next = next;
}
/**
* list_del - deletes entry from list.
* @entry: the element to delete from the list.
* Note: list_empty on entry does not return true after this, the entry is in an undefined state.
*/
static inline void list_del(struct list_head *entry)
{
__list_del(entry->prev, entry->next);
entry->next = (void *) 0;
entry->prev = (void *) 0;
}
/**
* list_replace - replace old entry by new one
* @old : the element to be replaced
* @new : the new element to insert
*
* If @old was empty, it will be overwritten.
*/
static inline void list_replace(struct list_head *old,
struct list_head *new)
{
new->next = old->next;
new->next->prev = new;
new->prev = old->prev;
new->prev->next = new;
}
static inline void list_replace_init(struct list_head *old,
struct list_head *new)
{
list_replace(old, new);
INIT_LIST_HEAD(old);
}
/**
* list_del_init - deletes entry from list and reinitialize it.
* @entry: the element to delete from the list.
*/
static inline void list_del_init(struct list_head *entry)
{
__list_del(entry->prev, entry->next);
INIT_LIST_HEAD(entry);
}
/**
* list_move - delete from one list and add as another's head
* @list: the entry to move
* @head: the head that will precede our entry
*/
static inline void list_move(struct list_head *list, struct list_head *head)
{
__list_del(list->prev, list->next);
list_add(list, head);
}
/**
* list_move_tail - delete from one list and add as another's tail
* @list: the entry to move
* @head: the head that will follow our entry
*/
static inline void list_move_tail(struct list_head *list,
struct list_head *head)
{
__list_del(list->prev, list->next);
list_add_tail(list, head);
}
/**
* list_empty - tests whether a list is empty
* @head: the list to test.
*/
static inline int list_empty(const struct list_head *head)
{
return head->next == head;
}
static inline void __list_splice(struct list_head *list,
struct list_head *head)
{
struct list_head *first = list->next;
struct list_head *last = list->prev;
struct list_head *at = head->next;
first->prev = head;
head->next = first;
last->next = at;
at->prev = last;
}
/**
* list_splice - join two lists
* @list: the new list to add.
* @head: the place to add it in the first list.
*/
static inline void list_splice(struct list_head *list, struct list_head *head)
{
if (!list_empty(list))
__list_splice(list, head);
}
/**
* list_splice_init - join two lists and reinitialise the emptied list.
* @list: the new list to add.
* @head: the place to add it in the first list.
*
* The list at @list is reinitialised
*/
static inline void list_splice_init(struct list_head *list,
struct list_head *head)
{
if (!list_empty(list)) {
__list_splice(list, head);
INIT_LIST_HEAD(list);
}
}
/**
* list_entry - get the struct for this entry
* @ptr: the &struct list_head pointer.
* @type: the type of the struct this is embedded in.
* @member: the name of the list_head within the struct.
*/
#define list_entry(ptr, type, member) \
container_of(ptr, type, member)
/**
* list_first_entry - get the first element from a list
* @ptr: the list head to take the element from.
* @type: the type of the struct this is embedded in.
* @member: the name of the list_head within the struct.
*
* Note, that list is expected to be not empty.
*/
#define list_first_entry(ptr, type, member) \
list_entry((ptr)->next, type, member)
/**
* list_last_entry - get the last element from a list
* @ptr: the list head to take the element from.
* @type: the type of the struct this is embedded in.
* @member: the name of the list_head within the struct.
*
* Note, that list is expected to be not empty.
*/
#define list_last_entry(ptr, type, member) \
list_entry((ptr)->prev, type, member)
/**
* list_first_entry_or_null - get the first element from a list
* @ptr: the list head to take the element from.
* @type: the type of the struct this is embedded in.
* @member: the name of the list_head within the struct.
*
* Note that if the list is empty, it returns NULL.
*/
#define list_first_entry_or_null(ptr, type, member) \
(!list_empty(ptr) ? list_first_entry(ptr, type, member) : NULL)
/**
* list_next_entry - get the next element in list
* @pos: the type * to cursor
* @member: the name of the list_head within the struct.
*/
#define list_next_entry(pos, member) \
list_entry((pos)->member.next, typeof(*(pos)), member)
/**
* list_prev_entry - get the prev element in list
* @pos: the type * to cursor
* @member: the name of the list_head within the struct.
*/
#define list_prev_entry(pos, member) \
list_entry((pos)->member.prev, typeof(*(pos)), member)
/**
* list_for_each - iterate over a list
* @pos: the &struct list_head to use as a loop cursor.
* @head: the head for your list.
*/
#define list_for_each(pos, head) \
for (pos = (head)->next; pos != (head); pos = pos->next)
/**
* list_for_each_prev - iterate over a list backwards
* @pos: the &struct list_head to use as a loop cursor.
* @head: the head for your list.
*/
#define list_for_each_prev(pos, head) \
for (pos = (head)->prev; pos != (head); pos = pos->prev)
/**
* list_for_each_safe - iterate over a list safe against removal of list entry
* @pos: the &struct list_head to use as a loop cursor.
* @n: another &struct list_head to use as temporary storage
* @head: the head for your list.
*/
#define list_for_each_safe(pos, n, head) \
for (pos = (head)->next, n = pos->next; pos != (head); \
pos = n, n = pos->next)
/**
* list_for_each_prev_safe - iterate over a list backwards safe against removal of list entry
* @pos: the &struct list_head to use as a loop cursor.
* @n: another &struct list_head to use as temporary storage
* @head: the head for your list.
*/
#define list_for_each_prev_safe(pos, n, head) \
for (pos = (head)->prev, n = pos->prev; \
pos != (head); \
pos = n, n = pos->prev)
/**
* list_for_each_entry - iterate over list of given type
* @pos: the type * to use as a loop cursor.
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*/
#define list_for_each_entry(pos, head, member) \
for (pos = list_first_entry(head, typeof(*pos), member); \
&pos->member != (head); \
pos = list_next_entry(pos, member))
/**
* list_for_each_entry_reverse - iterate backwards over list of given type.
* @pos: the type * to use as a loop cursor.
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*/
#define list_for_each_entry_reverse(pos, head, member) \
for (pos = list_last_entry(head, typeof(*pos), member); \
&pos->member != (head); \
pos = list_prev_entry(pos, member))
/**
* list_prepare_entry - prepare a pos entry for use in list_for_each_entry_continue()
* @pos: the type * to use as a start point
* @head: the head of the list
* @member: the name of the list_head within the struct.
*
* Prepares a pos entry for use as a start point in list_for_each_entry_continue().
*/
#define list_prepare_entry(pos, head, member) \
((pos) ? : list_entry(head, typeof(*pos), member))
/**
* list_for_each_entry_continue - continue iteration over list of given type
* @pos: the type * to use as a loop cursor.
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*
* Continue to iterate over list of given type, continuing after
* the current position.
*/
#define list_for_each_entry_continue(pos, head, member) \
for (pos = list_next_entry(pos, member); \
&pos->member != (head); \
pos = list_next_entry(pos, member))
/**
* list_for_each_entry_continue_reverse - iterate backwards from the given point
* @pos: the type * to use as a loop cursor.
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*
* Start to iterate over list of given type backwards, continuing after
* the current position.
*/
#define list_for_each_entry_continue_reverse(pos, head, member) \
for (pos = list_prev_entry(pos, member); \
&pos->member != (head); \
pos = list_prev_entry(pos, member))
/**
* list_for_each_entry_from - iterate over list of given type from the current point
* @pos: the type * to use as a loop cursor.
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*
* Iterate over list of given type, continuing from current position.
*/
#define list_for_each_entry_from(pos, head, member) \
for (; &pos->member != (head); \
pos = list_next_entry(pos, member))
/**
* list_for_each_entry_safe - iterate over list of given type safe against removal of list entry
* @pos: the type * to use as a loop cursor.
* @n: another type * to use as temporary storage
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*/
#define list_for_each_entry_safe(pos, n, head, member) \
for (pos = list_first_entry(head, typeof(*pos), member), \
n = list_next_entry(pos, member); \
&pos->member != (head); \
pos = n, n = list_next_entry(n, member))
/**
* list_for_each_entry_safe_continue - continue list iteration safe against removal
* @pos: the type * to use as a loop cursor.
* @n: another type * to use as temporary storage
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*
* Iterate over list of given type, continuing after current point,
* safe against removal of list entry.
*/
#define list_for_each_entry_safe_continue(pos, n, head, member) \
for (pos = list_next_entry(pos, member), \
n = list_next_entry(pos, member); \
&pos->member != (head); \
pos = n, n = list_next_entry(n, member))
/**
* list_for_each_entry_safe_from - iterate over list from current point safe against removal
* @pos: the type * to use as a loop cursor.
* @n: another type * to use as temporary storage
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*
* Iterate over list of given type from current point, safe against
* removal of list entry.
*/
#define list_for_each_entry_safe_from(pos, n, head, member) \
for (n = list_next_entry(pos, member); \
&pos->member != (head); \
pos = n, n = list_next_entry(n, member))
/**
* list_for_each_entry_safe_reverse - iterate backwards over list safe against removal
* @pos: the type * to use as a loop cursor.
* @n: another type * to use as temporary storage
* @head: the head for your list.
* @member: the name of the list_head within the struct.
*
* Iterate backwards over list of given type, safe against removal
* of list entry.
*/
#define list_for_each_entry_safe_reverse(pos, n, head, member) \
for (pos = list_last_entry(head, typeof(*pos), member), \
n = list_prev_entry(pos, member); \
&pos->member != (head); \
pos = n, n = list_prev_entry(n, member))
/**
* list_safe_reset_next - reset a stale list_for_each_entry_safe loop
* @pos: the loop cursor used in the list_for_each_entry_safe loop
* @n: temporary storage used in list_for_each_entry_safe
* @member: the name of the list_head within the struct.
*
* list_safe_reset_next is not safe to use in general if the list may be
* modified concurrently (eg. the lock is dropped in the loop body). An
* exception to this is if the cursor element (pos) is pinned in the list,
* and list_safe_reset_next is called after re-taking the lock and before
* completing the current iteration of the loop body.
*/
#define list_safe_reset_next(pos, n, member) \
n = list_next_entry(pos, member)
/*
* Double linked lists with a single pointer list head.
* Mostly useful for hash tables where the two pointer list head is
* too wasteful.
* You lose the ability to access the tail in O(1).
*/
#define LIST_POISON1 NULL
#define LIST_POISON2 NULL
#define READ_ONCE(x) (x)
#define WRITE_ONCE(x, val) x=(val)
struct hlist_head {
struct hlist_node *first;
};
struct hlist_node {
struct hlist_node *next, **pprev;
};
#define HLIST_HEAD_INIT { .first = NULL }
#define HLIST_HEAD(name) struct hlist_head name = { .first = NULL }
#define INIT_HLIST_HEAD(ptr) ((ptr)->first = NULL)
static inline void INIT_HLIST_NODE(struct hlist_node *h)
{
h->next = NULL;
h->pprev = NULL;
}
static inline int hlist_unhashed(const struct hlist_node *h)
{
return !h->pprev;
}
static inline int hlist_empty(const struct hlist_head *h)
{
return !READ_ONCE(h->first);
}
static inline void __hlist_del(struct hlist_node *n)
{
struct hlist_node *next = n->next;
struct hlist_node **pprev = n->pprev;
WRITE_ONCE(*pprev, next);
if (next)
next->pprev = pprev;
}
static inline void hlist_del(struct hlist_node *n)
{
__hlist_del(n);
n->next = LIST_POISON1;
n->pprev = LIST_POISON2;
}
static inline void hlist_del_init(struct hlist_node *n)
{
if (!hlist_unhashed(n)) {
__hlist_del(n);
INIT_HLIST_NODE(n);
}
}
static inline void hlist_add_head(struct hlist_node *n, struct hlist_head *h)
{
struct hlist_node *first = h->first;
n->next = first;
if (first)
first->pprev = &n->next;
WRITE_ONCE(h->first, n);
n->pprev = &h->first;
}
/* next must be != NULL */
static inline void hlist_add_before(struct hlist_node *n,
struct hlist_node *next)
{
n->pprev = next->pprev;
n->next = next;
next->pprev = &n->next;
WRITE_ONCE(*(n->pprev), n);
}
static inline void hlist_add_behind(struct hlist_node *n,
struct hlist_node *prev)
{
n->next = prev->next;
WRITE_ONCE(prev->next, n);
n->pprev = &prev->next;
if (n->next)
n->next->pprev = &n->next;
}
/* after that we'll appear to be on some hlist and hlist_del will work */
static inline void hlist_add_fake(struct hlist_node *n)
{
n->pprev = &n->next;
}
static inline int hlist_fake(struct hlist_node *h)
{
return h->pprev == &h->next;
}
/*
* Check whether the node is the only node of the head without
* accessing head:
*/
static inline int
hlist_is_singular_node(struct hlist_node *n, struct hlist_head *h)
{
return !n->next && n->pprev == &h->first;
}
/*
* Move a list from one list head to another. Fixup the pprev
* reference of the first entry if it exists.
*/
static inline void hlist_move_list(struct hlist_head *old,
struct hlist_head *new)
{
new->first = old->first;
if (new->first)
new->first->pprev = &new->first;
old->first = NULL;
}
#define hlist_entry(ptr, type, member) container_of(ptr,type,member)
#define hlist_for_each(pos, head) \
for (pos = (head)->first; pos ; pos = pos->next)
#define hlist_for_each_safe(pos, n, head) \
for (pos = (head)->first; pos && ({ n = pos->next; 1; }); \
pos = n)
#define hlist_entry_safe(ptr, type, member) \
({ typeof(ptr) ____ptr = (ptr); \
____ptr ? hlist_entry(____ptr, type, member) : NULL; \
})
/**
* hlist_for_each_entry - iterate over list of given type
* @pos: the type * to use as a loop cursor.
* @head: the head for your list.
* @member: the name of the hlist_node within the struct.
*/
#define hlist_for_each_entry(pos, head, member) \
for (pos = hlist_entry_safe((head)->first, typeof(*(pos)), member);\
pos; \
pos = hlist_entry_safe((pos)->member.next, typeof(*(pos)), member))
/**
* hlist_for_each_entry_continue - iterate over a hlist continuing after current point
* @pos: the type * to use as a loop cursor.
* @member: the name of the hlist_node within the struct.
*/
#define hlist_for_each_entry_continue(pos, member) \
for (pos = hlist_entry_safe((pos)->member.next, typeof(*(pos)), member);\
pos; \
pos = hlist_entry_safe((pos)->member.next, typeof(*(pos)), member))
/**
* hlist_for_each_entry_from - iterate over a hlist continuing from current point
* @pos: the type * to use as a loop cursor.
* @member: the name of the hlist_node within the struct.
*/
#define hlist_for_each_entry_from(pos, member) \
for (; pos; \
pos = hlist_entry_safe((pos)->member.next, typeof(*(pos)), member))
/**
* hlist_for_each_entry_safe - iterate over list of given type safe against removal of list entry
* @pos: the type * to use as a loop cursor.
* @n: another &struct hlist_node to use as temporary storage
* @head: the head for your list.
* @member: the name of the hlist_node within the struct.
*/
#define hlist_for_each_entry_safe(pos, n, head, member) \
for (pos = hlist_entry_safe((head)->first, typeof(*pos), member);\
pos && ({ n = pos->member.next; 1; }); \
pos = hlist_entry_safe(n, typeof(*pos), member))
#endif

468
Platform/user/rpdb/rpdb.c Normal file
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@ -0,0 +1,468 @@
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <stdbool.h>
#include <arpa/inet.h>
#include <sys/types.h>
#include <regex.h>
#include "list.h"
struct rpdb_mark {
struct list_head list;
union {
struct in6_addr ip6;
struct in_addr ip4;
}ip;
int mark;
};
char rt_table[11][128]= {
"# reserved values",
"#",
"255 local",
"254 main",
"253 default",
"0 unspe",
"#",
"# local",
"#",
"#1 inr.ruhep"
};
#define RT_TABLES_PATH ("/etc/iproute2/rt_tables")
#define IPV4_PATTERN "^([0-9]|[1-9][0-9]|1[0-9]{1,2}|2[0-4][0-9]|25[0-5]).([0-9]|[1-9][0-9]|1[0-9]{1,2}|2[0-4][0-9]|25[0-5]).([0-9]|[1-9][0-9]|1[0-9]{1,2}|2[0-4][0-9]|25[0-5]).([0-9]|[1-9][0-9]|1[0-9]{1,2}|2[0-4][0-9]|25[0-5])$"
#define IPV6_PATTERN "^\s*((([0-9A-Fa-f]{1,4}:){7}([0-9A-Fa-f]{1,4}|:))|(([0-9A-Fa-f]{1,4}:){6}(:[0-9A-Fa-f]{1,4}|((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3})|:))|(([0-9A-Fa-f]{1,4}:){5}(((:[0-9A-Fa-f]{1,4}){1,2})|:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3})|:))|(([0-9A-Fa-f]{1,4}:){4}(((:[0-9A-Fa-f]{1,4}){1,3})|((:[0-9A-Fa-f]{1,4})?:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9A-Fa-f]{1,4}:){3}(((:[0-9A-Fa-f]{1,4}){1,4})|((:[0-9A-Fa-f]{1,4}){0,2}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9A-Fa-f]{1,4}:){2}(((:[0-9A-Fa-f]{1,4}){1,5})|((:[0-9A-Fa-f]{1,4}){0,3}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9A-Fa-f]{1,4}:){1}(((:[0-9A-Fa-f]{1,4}){1,6})|((:[0-9A-Fa-f]{1,4}){0,4}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(:(((:[0-9A-Fa-f]{1,4}){1,7})|((:[0-9A-Fa-f]{1,4}){0,5}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:)))(%.+)?\s*$"
#define RPDP_MARK_HASH_DEPTH (1024)
static int gRpdbMark = 0;
/*
* mark hash listsave mark
*/
struct list_head gRpdbMarkList[RPDP_MARK_HASH_DEPTH] = {0};
/*
popen
*/
void
print_result(FILE *fp)
{
char buf[100];
if(!fp) {
return;
}
printf("\n>>>\n");
memset(buf, 0, sizeof(buf));
fgets(buf, sizeof(buf) - 1, fp) ;
printf("%s", buf);
printf("\n<<<\n");
}
int rpdb_popen(char *cmd)
{
FILE *fp = NULL;
fp = NULL;
fp = popen(cmd, "r");
if(!fp)
{
perror("popen");
exit(EXIT_FAILURE);
}
print_result(fp);
pclose(fp);
sleep(1);
return 0;
}
/*
* rpdb
*/
bool rpdb_init_route()
{
FILE *fp = NULL;
int i = 0;
system("echo > /etc/iproute2/rt_tables");
fp = fopen(RT_TABLES_PATH,"w");
if (fp)
{
for (i = 0; i < 11; i++)
{
fprintf(fp,"%s\n",rt_table[i]);
}
}
else
{
return false;
}
fclose(fp);
/*
*/
for (i = 0; i < RPDP_MARK_HASH_DEPTH; i++)
{
INIT_LIST_HEAD(&gRpdbMarkList[i]);
}
return true;
}
static int gRpdbTableIndex = 1; /* 1 - 252 */
#define RPDB_TABLE_ADD (0)
#define RPDB_TABLE_DEL (1)
bool rpdb_add_delete_table(const char* gateway,const char *tbl_name,int op)
{
char table_name[128] = {0};
char line_cnt[1024] = {0};
FILE *fp = NULL;
FILE *fp_tmp = NULL;
bool ret = false;
int i = 0;
int cn_num = 0;
if (tbl_name == NULL)
{
memset(table_name,0,sizeof(table_name));
sprintf(table_name,"table_%s",gateway);
}
else
{
if (strlen(tbl_name) < 1) /* 检查name的合法性*/
{
memset(table_name,0,sizeof(table_name));
sprintf(table_name,"%s",tbl_name);
}
else
{
return false;
}
}
fp = fopen(RT_TABLES_PATH,"ra+");
if (NULL == fp)
{
return false;
}
else
{
while(!feof(fp)) /* 遍历文件每一行,查找 路由表是否存在 */
{
memset(line_cnt,0,1024);
fgets(line_cnt,1024,fp);
if(strstr(line_cnt,table_name))
{
if (op == RPDB_TABLE_ADD)
{
fclose(fp);
return true;
}
}
}
}
/*
*/
if (op == RPDB_TABLE_ADD)
{
if (gRpdbTableIndex > 252)
{
return false;
}
memset(line_cnt,0,1024);
sprintf(line_cnt,"%d %s",gRpdbTableIndex,table_name);
printf("RPDB_TABLE_ADD:%s\n",line_cnt);
fprintf(fp,"%s\n",line_cnt);
fclose(fp);
gRpdbTableIndex++;
return true;
}
if (op == RPDB_TABLE_DEL)
{
fp = fopen(RT_TABLES_PATH,"r+");
if (NULL == fp)
{
return false;
}
else
{
fp_tmp = fopen("/tmp/rt_tables","w");
if (fp_tmp == NULL) return false;
while(!feof(fp)) /* 遍历文件每一行,查找 路由表是否存在 */
{
memset(line_cnt,0,1024);
fgets(line_cnt,1024,fp);
if(!strstr(line_cnt,table_name))
{
fprintf(fp_tmp,"%s",line_cnt);
}
}
fclose(fp);
fclose(fp_tmp);
system("cp -fr /tmp/rt_tables /etc/iproute2/rt_tables");
}
}
return true;
}
/*
* ip地址是否合法
*/
int rpdb_ipaddr_match(char *ip_addr,int flag)
{
regex_t reg;
regmatch_t match[1];
int retval = 0;
if (flag == 1)
{
retval = regcomp(&reg, IPV4_PATTERN, REG_EXTENDED | REG_NEWLINE);
}
else
{
retval = regcomp(&reg, IPV6_PATTERN, REG_EXTENDED | REG_NEWLINE);
}
retval = regexec(&reg,ip_addr, sizeof match / sizeof match[0], match, 0);
printf("%s is %s\n", ip_addr, retval == 0 ? "legal" : "illegal");
regfree(&reg);
return retval;
}
int rpdb_ip_hash(struct rpdb_mark node)
{
int ip_value = 0;
int hash = 0;
int i = 0;
if (node.ip.ip4.s_addr !=0 )
{
ip_value = node.ip.ip4.s_addr;
}
else
{
for (i = 0; i < 4; ++i)
{
ip_value += node.ip.ip6.s6_addr32[i];
}
}
hash = (ip_value&0xF) + ((ip_value >> 8)&0xF) + ((ip_value >> 16)&0xF) + ((ip_value >> 24)&0xF);
hash = hash&(1024-1);
return hash;
}
/*
* node比较
*/
bool rpdb_mark_node_compare(struct rpdb_mark node1,struct rpdb_mark node2)
{
if (node1.ip.ip4.s_addr == node2.ip.ip4.s_addr)
{
return true;
}
else
{
return false;
}
}
/*
* mark ,node节点
*/
struct rpdb_mark * rpdb_mark_search(struct rpdb_mark node)
{
struct list_head * pList;
struct rpdb_mark *pNode;
int hash = rpdb_ip_hash(node);
list_for_each(pList,&gRpdbMarkList[hash]) {
pNode = list_entry(pList,struct rpdb_mark,list);
printf("%s,%d,%d,%d\n",__FUNCTION__,__LINE__,pNode->ip.ip4.s_addr,pNode->mark);
if (rpdb_mark_node_compare(node,*pNode)){
printf("%s,%d,mark = %d\n",__FUNCTION__,__LINE__,pNode->mark);
return pNode;
}
}
return NULL;
}
/*
* mark
*/
int rpdb_mark_hash_add(struct rpdb_mark node)
{
struct rpdb_mark *pNode = NULL;
int hash = 0;
pNode = rpdb_mark_search(node);
if (pNode != NULL)
{
return pNode->mark;
}
pNode = (struct rpdb_mark*)malloc(sizeof(struct rpdb_mark));
if (NULL == pNode)
{
return false;
}
hash = rpdb_ip_hash(node);
node.mark = ++gRpdbMark;
memcpy((char*)pNode,(char*)&node,sizeof(struct rpdb_mark));
printf("%s,%d,%d,%d\n",__FUNCTION__,__LINE__,pNode->ip.ip4.s_addr,pNode->mark);
/*
*/
list_add_tail(&pNode->list,&gRpdbMarkList[hash]);
return gRpdbMark;
}
/*
* mark
*/
int rpdb_gen_mark(const char* gateway)
{
in_addr_t addr;
if (NULL == gateway)
{
return -1;
}
addr = inet_addr(gateway);
struct rpdb_mark node;
node.ip.ip4.s_addr = addr;
return rpdb_mark_hash_add(node);
}
/*
*
*/
bool rpdb_add_route(const char* gateway,const char *tbl_name)
{
char cmd[256] = {0};
int status = 0;
char table_name[128] = {0};
int mark = 0;
if (tbl_name == NULL)
{
memset(table_name,0,sizeof(table_name));
sprintf(table_name,"table_%s",gateway);
}
else
{
if (strlen(tbl_name) < 1) /* 检查name的合法性*/
{
memset(table_name,0,sizeof(table_name));
sprintf(table_name,"%s",tbl_name);
}
else
{
return false;
}
}
if (rpdb_add_delete_table(gateway,tbl_name,RPDB_TABLE_ADD) == false)
{
return false;
}
if (strstr(":",gateway))
{
sprintf(cmd,"ip -6 route add default via %s table %s",gateway,table_name);
}
else
{
sprintf(cmd,"ip route add default via %s table %s",gateway,table_name);
}
printf("%s\n",cmd);
rpdb_popen(cmd);
mark = rpdb_gen_mark(gateway);
memset(cmd,0,sizeof(cmd));
sprintf(cmd,"ip rule add fwmark %d table %s",mark,table_name);
printf("%s\n",cmd);
rpdb_popen(cmd);
return 0;
}
int main()
{
//ipaddr_match("192.168.1.1",1);
//ipaddr_match("192.168.1.300",1);
//ipaddr_match("2000:0:0:0:0:0:0:1 ",2);
//ipaddr_match("fe80:0000:0000:0000:0204:61ff:fe9d:ffffff15",2);
struct rpdb_mark mark_value;
struct rpdb_mark mark_value1;
in_addr_t addr;
rpdb_init_route();
rpdb_add_delete_table("1.1.2.1",NULL,RPDB_TABLE_ADD);
rpdb_add_delete_table("1.1.2.1",NULL,RPDB_TABLE_ADD);
rpdb_add_delete_table("1.2.2.1",NULL,RPDB_TABLE_ADD);
rpdb_add_delete_table("2.1.2.1",NULL,RPDB_TABLE_ADD);
rpdb_add_delete_table("2.1.2.1",NULL,RPDB_TABLE_DEL);
//rpdb_add_delete_table("2.1.2.1",NULL,RPDB_TABLE_DEL);
//rpdb_add_delete_table("1.1.2.1",NULL,RPDB_TABLE_DEL);
addr = inet_addr("2006.6.6.6");
mark_value.ip.ip4.s_addr = addr;
rpdb_mark_hash_add(mark_value);
rpdb_mark_hash_add(mark_value);
rpdb_mark_hash_add(mark_value);
rpdb_mark_hash_add(mark_value);
addr = inet_addr("7.7.7.7");
mark_value1.ip.ip4.s_addr = addr;
rpdb_mark_hash_add(mark_value1);
rpdb_mark_hash_add(mark_value1);
rpdb_add_route("1.2.3.3",NULL);
rpdb_add_route("2.2.4.3",NULL);
rpdb_add_route("3.2.4.3",NULL);
rpdb_add_route("4.2.4.3",NULL);
return 0;
}

View File

@ -1,4 +1,5 @@
#include <errno.h> #include <errno.h>
#include <unistd.h>
#include <dirent.h> #include <dirent.h>
#include <sys/types.h> #include <sys/types.h>
@ -9,46 +10,64 @@
#include "sev_sched.h" #include "sev_sched.h"
#define LOG_CONF_COSOLE_FILE_NAME "log-console.conf" #define LOG_CONF_COSOLE_FILE_NAME "log-console.conf"
#define LOG_REDIRECT_CONSOLE "/dev/console" #define LOG_REDIRECT_CONSOLE "/dev/console"
#define PROC_SERIAL_INFO_PATH "/proc/tty/driver/serial"
#define SERIAL_DRIVER_PREFIX "uart"
#define SERIAL_NO_DRIVER_KEY SERIAL_DRIVER_PREFIX":unknown"
#define SERIAL_PREFIX "ttyS"
#ifndef CM_LOG_CONF_CONSOLE_FILE
#define CM_LOG_CONF_CONSOLE_FILE "/etc/rsyslog.d/log-console.conf"
#endif
static int write_console_content(FILE *fp, const u8 level, const char *filter_mod, void *arg) static int write_console_content(FILE *fp, const u8 level, const char *filter_mod, void *arg)
{ {
DIR *dir; int ret = -1;
FILE *driver_fp = NULL;
if ((dir = opendir(LOG_DEV_DIR)) == NULL) { driver_fp = fopen(PROC_SERIAL_INFO_PATH, "r");
ULOG_ERR(g_log, "Open dir:[%s] is failure:%d", LOG_DEV_DIR, strerror(errno)); if (driver_fp == NULL) {
return -1; ULOG_ERR(g_log, "Opening file:%s is failure:%s", PROC_SERIAL_INFO_PATH, strerror(errno));
return ret;
} }
struct dirent *ptr; char *line = NULL;
size_t n;
int num;
char path[MAX_PATH_SZ]; char path[MAX_PATH_SZ];
while ((ptr = readdir(dir)) != NULL) { while ((n = getline(&line, &n, driver_fp)) != -1) {
if ((strcmp(ptr->d_name, ".") == 0) ULOG_DEBUG(g_log, "Serial line:%s", line);
|| (strcmp(ptr->d_name, "..") == 0) if (strstr(line, SERIAL_DRIVER_PREFIX) == NULL) {
|| (ptr->d_type == DT_DIR)) { ///current dir OR parrent dir ULOG_DEBUG(g_log, "%s isn't driver line", line);
ULOG_DEBUG(g_log,"The file:[%s] or directory jump over", ptr->d_name);
continue; continue;
} }
if ((strstr(ptr->d_name, "ttyS") == NULL)) { num = atoi(line);
ULOG_DEBUG(g_log,"The file:[%s] isn't redirected", ptr->d_name); if (strstr(line, SERIAL_NO_DRIVER_KEY) != NULL) {
ULOG_DEBUG(g_log, "%s%d don't have serial", SERIAL_PREFIX, num);
continue; continue;
} }
ULOG_DEBUG(g_log, "ttyS name:%s", ptr->d_name);
if (snprintf(path, sizeof(path), "%s%s", LOG_DEV_DIR, ptr->d_name) < 0) { if (snprintf(path, sizeof(path), "%s%s%d", LOG_DEV_DIR, SERIAL_PREFIX, num) < 0) {
ULOG_ERR(g_log, "Setting %s of log console is failure", ptr->d_name); ULOG_ERR(g_log, "Setting %s%d of log console is failure", SERIAL_PREFIX, num);
return -1; goto END;
} }
ULOG_DEBUG(g_log, "ttyS name:%s", path);
if (write_conf_content_authorizing(fp, level, filter_mod, path) != 0) { if (write_conf_content_authorizing(fp, level, filter_mod, path) != 0) {
ULOG_ERR(g_log, "Writing tty[module:%s] of log is failure", filter_mod); ULOG_ERR(g_log, "Writing tty[module:%s] of log is failure", filter_mod);
return -1; goto END;
} }
} }
return 0; ret = 0;
END:
if (line != NULL) {
free(line);
}
fclose(driver_fp);
return ret;
} }
@ -111,3 +130,72 @@ void rpc_conf_log_console(rpc_conn *conn, pointer input, int input_len, pointer
*/ */
} }
ret_code console_initial()
{
ret_code ret = RET_ERR;
FILE *fp = NULL;
char *pos = NULL;
char *pos2 = NULL;
char ttyfile_str[128] = "";
int str_len = 0;
fp = fopen(CM_LOG_CONF_CONSOLE_FILE, "r");
if (NULL == fp) {
return ret;
}
if (fseek(fp, 0, SEEK_SET) == -1)
{
ULOG_ERR(g_log, "Seeknig config to begin is faiure:%s", strerror(errno));
fclose(fp);
return ret;
}
ssize_t n;
char *line = NULL;
while ((getline(&line, &n, fp)) != -1)
{
pos = strstr(line, "/");
if (pos != NULL)
{
if ((pos2 = strstr(pos, " ")) != NULL)
{
str_len = strlen(pos) - strlen(pos2);
}
else
{
str_len = strlen(pos);
}
memset(ttyfile_str, 0, sizeof(ttyfile_str));
strncpy(ttyfile_str, pos, str_len);
/* 滤除掉段尾的回车换行 */
if ('\n' == ttyfile_str[strlen(ttyfile_str)-1])
{
ttyfile_str[strlen(ttyfile_str)-1] = '\0';
}
if(modify_authorizing(ttyfile_str) == RET_OK)
{
ULOG_DEBUG(g_log, "Modify authorizing %s successed.", ttyfile_str);
}
else
{
ULOG_DEBUG(g_log, "Modify authorizing %s failed.", ttyfile_str);
}
}
}
ret = RET_OK;
if (NULL != fp)
{
fclose(fp);
}
return ret;
}

View File

@ -6,5 +6,7 @@
#include "rpc_common.h" #include "rpc_common.h"
void rpc_conf_log_console(rpc_conn *conn, pointer input, int input_len, pointer data); void rpc_conf_log_console(rpc_conn *conn, pointer input, int input_len, pointer data);
ret_code console_initial();
#endif #endif

View File

@ -1,22 +1,170 @@
#include <string.h> #include <string.h>
#include <sys/types.h> #include <unistd.h>
#include <dirent.h> #include <dirent.h>
#include <errno.h> #include <errno.h>
#include <pthread.h>
#include <sys/types.h>
#include <sys/inotify.h>
#include <sys/epoll.h>
#include "log_pty.h" #include "log_pty.h"
#include "log_types.h" #include "log_types.h"
#include "log_common.h" #include "log_common.h"
#include "ret_errno.h"
#define MAX_EVENT_NUMBER 64
#define LOG_DEV_PTY_DIR LOG_DEV_DIR"pts/" #define LOG_DEV_PTY_DIR LOG_DEV_DIR"pts/"
#define LOG_CONF_PTY_FILE_NAME "log-pty.conf" #define LOG_CONF_PTY_FILE_NAME "log-pty.conf"
int g_epoll_fd = -1;
int g_watch_fd = -1;
int g_inotify_fd = -1;
pthread_t g_monitor_thread;
static int write_pty_content(FILE *fp, const u8 level, const char *filter_mod, void *arg);
static void *pty_monitor_thread(void *arg)
{
struct epoll_event events[MAX_EVENT_NUMBER];
int ret;
char buf[MAX_LINE_SZ];
ssize_t len;
char *ptr;
struct inotify_event *inotify_ev;
ULOG_DEBUG(g_log, "Monitor pty is begining");
while (1) {
//ULOG_DEBUG(g_log, "Epoll is waiting");
ret = epoll_wait(g_epoll_fd, events, MAX_EVENT_NUMBER, 1000);
if (ret == -1) {
if (errno == EBADF) {
ULOG_DEBUG(g_log, "Epoll has been shut or invalid");
} else {
ULOG_ERR(g_log, "Waiting epoll is failure:%s, code:%d", strerror(errno), errno);
}
break;
}
if (ret == 0) { // 超时
continue;
}
for (int i = 0; i < MAX_EVENT_NUMBER; i++) {
ULOG_DEBUG(g_log, "Epoll event value is 0x%x", events[i].events);
if ((events[i].events & EPOLLIN) != EPOLLIN) {
continue;
}
len = read(g_inotify_fd, buf, sizeof(buf));
if ((len == -1) && (errno != EAGAIN)) {
ULOG_ERR(g_log, "Reading inotify is failure:%s", strerror(errno));
break;
}
if (len <= 0) {
continue;
}
for (ptr = buf; ptr < buf + len;
ptr += sizeof(struct inotify_event) + inotify_ev->len) {
inotify_ev = (struct inotify_event *) ptr;
if (((inotify_ev->mask & IN_CREATE) != IN_CREATE)
&& ((inotify_ev->mask & IN_DELETE) != IN_DELETE)) {
ULOG_DEBUG(g_log, "Current ev mask:%u, anything willn't be done", inotify_ev->mask);
continue;
}
// sleep一下防止权限修改不成功
sleep(1);
ULOG_DEBUG(g_log, "Current ev mask:%u, wo will write configure and restart rsyslog", inotify_ev->mask);
log_conf(LOG_INFO, LOG_CONF_PATH, LOG_CONF_PTY_FILE_NAME, NULL,
write_pty_content, NULL);
if (log_sev_restart() != 0) {
ULOG_ERR(g_log, "Pty monitor restart rsyslog 2 is failure");
}
}
}
}
ULOG_ERR(g_log, "Monitor pty is end");
}
static void close_monitor()
{
if (g_epoll_fd != -1) {
close(g_epoll_fd);
g_epoll_fd = -1;
}
if (g_watch_fd != -1) {
inotify_rm_watch(g_inotify_fd, g_watch_fd);
close(g_watch_fd);
g_watch_fd = -1;
}
if (g_inotify_fd != -1) {
close(g_inotify_fd);
g_inotify_fd = -1;
}
}
static ret_code start_dev_pty_monitor()
{
if (g_inotify_fd != -1) {
ULOG_ERR(g_log, "Monitoring pty has started up, value:%d", g_inotify_fd);
return RET_OK;
}
g_inotify_fd = inotify_init();
if (g_inotify_fd == -1) {
ULOG_ERR(g_log, "Initiating file notify is failure:%s", strerror(errno));
return RET_ERR;
}
g_watch_fd = inotify_add_watch(g_inotify_fd, LOG_DEV_PTY_DIR, IN_CREATE | IN_DELETE);
if(g_watch_fd == -1) {
ULOG_ERR(g_log, "Intify add watch is failure:%s", strerror(errno));
goto FAIL;
}
g_epoll_fd = epoll_create1(0);
if (g_epoll_fd == -1) {
ULOG_ERR(g_log, "Creating epoll is failure:%s", strerror(errno));
goto FAIL;
}
struct epoll_event ev;
ev.events = EPOLLIN;
ev.data.fd = g_inotify_fd;
if (epoll_ctl(g_epoll_fd, EPOLL_CTL_ADD, g_inotify_fd, &ev) == -1) {
ULOG_ERR(g_log, "Setting epoll is failure:%s", strerror(errno));
goto FAIL;
}
int ret = pthread_create(&g_monitor_thread, NULL, pty_monitor_thread, NULL);
if (ret != 0) {
ULOG_ERR(g_log, "Creating monitor thread is failure:%d", ret);
goto FAIL;
}
return RET_OK;
FAIL:
close_monitor();
return RET_ERR;
}
static void stop_dev_pty_monitor()
{
ULOG_DEBUG(g_log, "Stopping dev pty monitor");
close_monitor();
pthread_join(g_monitor_thread, NULL);
}
static int write_pty_content(FILE *fp, const u8 level, const char *filter_mod, void *arg) static int write_pty_content(FILE *fp, const u8 level, const char *filter_mod, void *arg)
{ {
DIR *dir; DIR *dir;
if ((dir = opendir(LOG_DEV_PTY_DIR)) == NULL) { if ((dir = opendir(LOG_DEV_PTY_DIR)) == NULL) {
ULOG_ERR(g_log, "Open dir:[%s] is failure:%d\n", LOG_DEV_PTY_DIR, strerror(errno)); ULOG_ERR(g_log, "Open dir:[%s] is failure:%d", LOG_DEV_PTY_DIR, strerror(errno));
return -1; return -1;
} }
@ -47,6 +195,11 @@ static int write_pty_content(FILE *fp, const u8 level, const char *filter_mod, v
} }
if (start_dev_pty_monitor() != RET_OK) {
ULOG_ERR(g_log, "Starting pty monitor is failure");
return -1;
}
return 0; return 0;
} }
@ -57,6 +210,7 @@ static int config_log_pty(const log_pty_t *conf)
switch (conf->on) switch (conf->on)
{ {
case LOG_OFF: case LOG_OFF:
stop_dev_pty_monitor();
ret = log_off_with_file(LOG_CONF_PATH, LOG_CONF_PTY_FILE_NAME); ret = log_off_with_file(LOG_CONF_PATH, LOG_CONF_PTY_FILE_NAME);
break; break;
case LOG_ON: case LOG_ON:

View File

@ -23,6 +23,17 @@ ulog_t *g_log = NULL;
FILE *g_conf_fp; FILE *g_conf_fp;
char g_conf_file[MAX_PATH_SZ]; char g_conf_file[MAX_PATH_SZ];
typedef ret_code (*initial_cb)();
typedef struct _log_initial {
char type[20];
initial_cb cb;
} log_initial_t;
log_initial_t g_log_initial[] = {
{"console", console_initial}
};
void signal_exit() void signal_exit()
{ {
log_sev_exit(); log_sev_exit();
@ -47,7 +58,7 @@ int main(int argc, char **argv)
g_log = ulog_init(LOG_SCHED_MODULE_NAME, !run_daemon); g_log = ulog_init(LOG_SCHED_MODULE_NAME, !run_daemon);
if (g_log == NULL) { if (g_log == NULL) {
fprintf(stderr, "Initiating ulog is failure"); fprintf(stderr, "Initiating ulog is failure\n");
return -1; return -1;
} }
@ -65,6 +76,11 @@ int main(int argc, char **argv)
} }
} }
/* 各类配置初始化 */
for (int i = 0; i < (sizeof(g_log_initial) / sizeof(log_initial_t)); i++) {
g_log_initial[i].cb();
}
rpc_server *server = rpc_server_create_ex(RPC_MODULE_SYSLOG_NAME); rpc_server *server = rpc_server_create_ex(RPC_MODULE_SYSLOG_NAME);
if (server == NULL) if (server == NULL)
{ {

View File

@ -13,19 +13,27 @@
ulog_t *ulog_init(const char *module_name, u8 is_print) ulog_t *ulog_init(const char *module_name, u8 is_print)
{ {
ulog_t *log; ulog_t *log;
u32 len = strlen(module_name); u32 len = 0;
if (NULL == module_name) {
fprintf(stderr, "Bad input: module_name is NULL\n");
return NULL;
}
len = strlen(module_name);
if (len > MAX_MODULE_NAME_SZ) { if (len > MAX_MODULE_NAME_SZ) {
fprintf(stderr, "The length:%d of module_name can't more than %d", len, MAX_MODULE_NAME_SZ); fprintf(stderr, "The length:%d of module_name can't more than %d\n", len, MAX_MODULE_NAME_SZ);
return NULL; return NULL;
} }
log = (ulog_t *)malloc(sizeof(*log)); log = (ulog_t *)malloc(sizeof(*log));
if (log == NULL) { if (log == NULL) {
fprintf(stderr, "Allocating log memory is failure"); fprintf(stderr, "Allocating log memory is failure\n");
return NULL; return NULL;
} }
strncpy(log->module_name, module_name, len); strncpy(log->module_name, module_name, len);
log->module_name[len] = '\0';
int opt = LOG_PERROR |LOG_PID; int opt = LOG_PERROR |LOG_PID;
if (is_print > 0) { if (is_print > 0) {
@ -47,7 +55,7 @@ void ulog_close(ulog_t *log)
void ulog_record(const ulog_t *log, int level, const char *fmt, ...) void ulog_record(const ulog_t *log, int level, const char *fmt, ...)
{ {
if (log == NULL) { if (log == NULL) {
fprintf(stderr, "Log is null"); fprintf(stderr, "Log is null\n");
return; return;
} }

View File

@ -0,0 +1,100 @@
#include <stdio.h>
#include <unistd.h>
#include <string.h>
#include <errno.h>
#include "ulog_api.h"
#include "ulog_in.h"
ulog_t *g_log = NULL;
static void test_ulog_api()
{
ULOG_DEBUG (g_log, "test for ulog_api %s", "debug");
ULOG_INFO (g_log, "test for ulog_api %s", "info");
ULOG_NOTICE (g_log, "test for ulog_api %s", "notice");
ULOG_WARNING(g_log, "test for ulog_api %s", "warning");
ULOG_ERR (g_log, "test for ulog_api %s", "err");
ULOG_CRIT (g_log, "test for ulog_api %s", "crit");
ULOG_ALERT (g_log, "test for ulog_api %s", "alert");
ULOG_EMERG (g_log, "test for ulog_api %s", "emerg");
}
static void ulog_test_usage(const char *pname)
{
if (NULL == pname)
{
return;
}
fprintf(stderr, "--------------------------------------------------------\n");
fprintf(stderr, " usage of %s:\n", pname);
fprintf(stderr, " %s [-d] [-a module_name] [-h]\n", pname);
fprintf(stderr, " \n", pname);
fprintf(stderr, " -d: daemon\n", pname);
fprintf(stderr, " -a: set module name, no longer than 16 bytes\n");
fprintf(stderr, " -h: help\n");
fprintf(stderr, "--------------------------------------------------------\n");
}
/* usage:
test_ulog_api
test_ulog_api -a test_ulog_api
test_ulog_api -a test2
test_ulog_api -a 123456789012345
test_ulog_api -a 1234567890123456
test_ulog_api -a 12345678901234567
test_ulog_api -d
test_ulog_api -d -a test_ulog_api
test_ulog_api -d -a test2
test_ulog_api -d -a 123456789012345
test_ulog_api -d -a 1234567890123456
test_ulog_api -d -a 12345678901234567
*/
int main(int argc, char **argv)
{
char *options = "da:h";
int opt;
u8 run_daemon = 0;
char module_name[MAX_MODULE_NAME_SZ+4] = "";
while ((opt = getopt(argc, argv, options)) != -1) {
switch (opt) {
case 'd':
run_daemon = 1;
break;
case 'a':
memset(module_name, 0, MAX_MODULE_NAME_SZ+4);
strncpy(module_name, optarg, MAX_MODULE_NAME_SZ+3);
break;
case 'h':
ulog_test_usage(argv[0]);
return 0;
}
}
g_log = ulog_init(module_name, run_daemon);
if (NULL == g_log)
{
goto END;
}
if (run_daemon) {
if (daemon(0, 0) == -1) {
ULOG_ERR(g_log, "Setting daemon running is failure:%s", strerror(errno));
goto END;
}
}
test_ulog_api();
END:
if (NULL != g_log)
{
ulog_close(g_log);
}
return 0;
}

View File

@ -1,5 +1,6 @@
#!/bin/sh -v #!/bin/sh -v
user=$(whoami) user=$(whoami)
cd /home/${user}/secogateway/kernel/ cd /home/${user}/secogateway/kernel/
@ -14,12 +15,14 @@ echo $(cp /home/${user}/secogateway/_install/debug/targets/ARM64/*.ko lib/module
echo $(cp /home/${user}/secogateway/_install/debug/targets/ARM64/*.so usr/Product_usr/) echo $(cp /home/${user}/secogateway/_install/debug/targets/ARM64/*.so usr/Product_usr/)
echo $(cp /home/${user}/secogateway/_install/debug/targets/ARM64/*.so usr/lib/) echo $(cp /home/${user}/secogateway/_install/debug/targets/ARM64/*.so usr/lib/)
echo $(cp /home/${user}/secogateway/_install/debug/targets/ARM64/*.exe usr/Product_usr/) echo $(cp /home/${user}/secogateway/_install/debug/targets/ARM64/*.exe usr/Product_usr/)
echo $(cp -rf /home/${user}/secogateway/libs/files usr/Product_usr/)
echo $(cp -rf /opt/huachen_sysroot/usr/* usr/)
echo $(mkdir customize_service) echo $(mkdir customize_service)
echo $(rm /home/${user}/secogateway/kernel/rootfs/etc/systemd/system/multi-user.target.wants/platform*.service) echo $(rm /home/${user}/secogateway/kernel/rootfs/etc/systemd/system/multi-user.target.wants/platform*.service)
#echo $(rm /home/${user}/secogateway/kernel/rootfs/etc/systemd/system/multi-user.target.wants/product*.service) echo $(rm /home/${user}/secogateway/kernel/rootfs/etc/systemd/system/multi-user.target.wants/product*.service)
echo $(cp -rf /home/${user}/secogateway/systemd_service/*.service /customize_service/)
echo $(ln -s /customize_service/* /home/${user}/secogateway/kernel/rootfs/etc/systemd/system/multi-user.target.wants/) echo $(ln -s /customize_service/* /home/${user}/secogateway/kernel/rootfs/etc/systemd/system/multi-user.target.wants/)

View File

@ -23,10 +23,10 @@ typedef enum { WEBM_HANDLE_INVALID_INDEX = -1,
WEBM_HANDLE_LOGIN, WEBM_HANDLE_LOGIN,
WEBM_HANDLE_HOMEPAGE, WEBM_HANDLE_HOMEPAGE,
/* <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ҳ<EFBFBD><EFBFBD>ȡ<EFBFBD><EFBFBD>չʾ<EFBFBD><EFBFBD>case<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ܿ<EFBFBD><EFBFBD><EFBFBD>ͨ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ݿ<EFBFBD><EFBFBD>ѯ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ȷŵ<EFBFBD>һ<EFBFBD><EFBFBD> */ /* 以下是页面取数展示的case后续提升性能可能通过数据库查询所以先放到一起 */
WEBM_HANDLE_CONFIG_LIST_GROUP, WEBM_HANDLE_CONFIG_LIST_GROUP,
/* <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ò<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ص<EFBFBD>case */ /* 以下是配置操作相关的case */
WEBM_HANDLE_CONFIG_ADD_GROUP, WEBM_HANDLE_CONFIG_ADD_GROUP,
WEBM_HANDLE_CONFIG_UUID_GROUP, WEBM_HANDLE_CONFIG_UUID_GROUP,
WEBM_HANDLE_CONFIG_MOD_GROUP, WEBM_HANDLE_CONFIG_MOD_GROUP,
@ -40,7 +40,12 @@ typedef enum { WEBM_HANDLE_INVALID_INDEX = -1,
WEBM_HANDLE_CONFIG_IPV4, WEBM_HANDLE_CONFIG_IPV4,
WEBM_HANDLE_CONFIG_VLAN_SET, WEBM_HANDLE_CONFIG_VLAN_SET,
WEBM_HANDLE_CONFIG_VLAN_GET, WEBM_HANDLE_CONFIG_VLAN_GET,
WEBM_HANDLE_MAX WEBM_HANDLE_MAX,
WEBM_HANDLE_CONFIG_MOD_AUTHPARA,
WEBM_HANDLE_CONFIG_ADD_AUTHRULE,
WEBM_HANDLE_CONFIG_MOD_AUTHRULE,
WEBM_HANDLE_CONFIG_DEL_AUTHRULE
} webm_handle_index; } webm_handle_index;
typedef struct _webm_config_st typedef struct _webm_config_st
@ -185,6 +190,37 @@ extern int webm_config_send_proc(server *srv, uint32_t config_type, uint64 confg
CM_CONFIG_GET, \ CM_CONFIG_GET, \
VLAN_CONFIG, \ VLAN_CONFIG, \
webm_config_send_proc \ webm_config_send_proc \
}, \
{\
WEBM_HANDLE_CONFIG_MOD_AUTHPARA, \
"/FSG-CF/userauth-parameters-mod", \
CM_CONFIG_SET, \
FREEPARAMETERS_CONFIG , \
webm_config_send_proc \
}, \
\
{\
WEBM_HANDLE_CONFIG_ADD_AUTHRULE, \
"/FSG-GF/userauth-rule-add", \
CM_CONFIG_SET, \
AUTHFREE_CONFIG, \
webm_config_send_proc \
}, \
\
{\
WEBM_HANDLE_CONFIG_MOD_AUTHRULE, \
"/FSG-GF/userauth-rule-mod", \
CM_CONFIG_SET, \
AUTHFREE_CONFIG, \
webm_config_send_proc \
}, \
\
{\
WEBM_HANDLE_CONFIG_DEL_AUTHRULE, \
"/FSG-GF/userauth-rule-del", \
CM_CONFIG_SET, \
AUTHFREE_CONFIG, \
webm_config_send_proc \
} \ } \
\ \
} }

View File

@ -0,0 +1,36 @@
--- mysql-connector-odbc-5.3.13-src/CMakeLists.txt 2019-04-16 00:56:34.000000000 +0800
+++ mysql-connector-odbc-5.3.13-src_arm/CMakeLists.txt 2019-08-28 11:42:59.514993586 +0800
@@ -56,6 +56,33 @@ endmacro()
endif()
#-----------------------------------------------------
+if(PLAT_ARM64)
+ # this one is important
+ SET(CMAKE_SYSTEM_NAME Linux)
+ #this one not so much
+ SET(CMAKE_SYSTEM_VERSION 1)
+ # this is install root directory
+ SET(CMAKE_INSTALL_PREFIX /usr)
+
+ # specify the cross compiler
+ SET(CMAKE_C_COMPILER aarch64-linux-gnu-gcc)
+ SET(CMAKE_CXX_COMPILER aarch64-linux-gnu-g++)
+ SET(CMAKE_STRIP aarch64-fsl-linux-strip)
+
+ # specify the cross compile and link flags
+ set(CMAKE_C_FLAGS "--sysroot=$ENV{SDKTARGETSYSROOT}")
+ set(CMAKE_SHARED_LINKER_FLAGS "--sysroot=$ENV{SDKTARGETSYSROOT}")
+ SET(CMAKE_LIBRARY_PATH $ENV{SDKTARGETSYSROOT}/usr/lib)
+
+ # where is the target environment
+ SET(CMAKE_FIND_ROOT_PATH ${SDKTARGETSYSROOT})
+
+ # search for programs in the build host directories
+ SET(CMAKE_FIND_ROOT_PATH_MODE_PROGRAM NEVER)
+ # for libraries and headers in the target directories
+ SET(CMAKE_FIND_ROOT_PATH_MODE_LIBRARY ONLY)
+ SET(CMAKE_FIND_ROOT_PATH_MODE_INCLUDE ONLY)
+endif()
FIND_PACKAGE(Threads)

View File

@ -0,0 +1,3 @@
cmake -G "Unix Makefiles" -DPLAT_ARM64=TRUE ../ -DWITH_UNIXODBC=TRUE -DSIZEOF_INT=4 \
-DHAVE_POSIX_TIMERS=TRUE -DHAVE_STRUCT_TIMESPEC=TRUE -DSIZEOF_CHARP=4 \
-DHAVE_PWD_H=TRUE -DHAVE_GETRUSAGE=FALSE -DDISABLE_GUI=TRUE