你基本上已经在那里了。调用您在共享内存中分配的任何对象类型SecondValue_t
。代替ShMemAllocator_t
,定义不同的进程间分配器类型,例如SecondValueAllocator_t
,用于分配SecondValue_t
对象。每当您想将ValueType
对象插入映射时,该对象的第二个值都会与实例ValueType
一起分配。SecondValueAllocator_t
这是一个完整的示例,部分使用了我对带有 Boost 的 Interprocess reader/writer lock 的回答中的代码:
#include <cstdlib>
#include <functional>
#include <iostream>
#include <string>
#include <utility>
#include <boost/scope_exit.hpp>
#include <boost/interprocess/managed_shared_memory.hpp>
#include <boost/interprocess/allocators/allocator.hpp>
#include <boost/interprocess/allocators/private_node_allocator.hpp>
#include <boost/interprocess/containers/map.hpp>
#include <boost/interprocess/sync/interprocess_upgradable_mutex.hpp>
#include <boost/interprocess/sync/scoped_lock.hpp>
#include <boost/interprocess/sync/sharable_lock.hpp>
#include <boost/interprocess/sync/upgradable_lock.hpp>
#define SHARED_MEMORY_NAME "SO13783012-MyMap"
// https://stackoverflow.com/questions/13783012/map-of-int-void-in-shared-memory-using-boostinterprocess
using namespace boost::interprocess;
typedef int SecondValue_t;
typedef allocator<SecondValue_t, managed_shared_memory::segment_manager> SecondValueAllocator_t;
typedef struct mutex_struct {
//...
} MutexType;
typedef std::pair<MutexType, SecondValueAllocator_t::pointer> ValueType;
typedef map<int, ValueType>::value_type MyMapValueType;
typedef allocator<MyMapValueType, managed_shared_memory::segment_manager> MyMapEntryAllocator_t;
typedef map<int, ValueType, std::less<int>, MyMapEntryAllocator_t> MyMap_t;
struct shared_data {
private:
typedef boost::interprocess::interprocess_upgradable_mutex upgradable_mutex_type;
mutable upgradable_mutex_type mutex;
MyMap_t my_map;
public:
shared_data(const MyMapEntryAllocator_t& alloc)
: my_map(MyMap_t::key_compare(), alloc)
{
}
// Tries to get the mapped value for the given key `k'. If successful, the mapped value is
// copied into `out' and `true' is returned. Otherwise, returns `false' and does not modify
// `out'.
bool try_get(MyMap_t::mapped_type& out, MyMap_t::key_type k) const {
boost::interprocess::sharable_lock<upgradable_mutex_type> lock(mutex);
MyMap_t::const_iterator pos = my_map.find(k);
if (pos != my_map.end()) {
out = pos->second;
return true;
}
return false;
}
void put(MyMap_t::key_type k, MyMap_t::mapped_type v) {
boost::interprocess::scoped_lock<upgradable_mutex_type> lock(mutex);
my_map.insert(MyMap_t::value_type(my_map.size(), v));
}
};
int main(int argc, char *argv[])
{
if (argc != 2) {
std::cerr << "Usage: " << argv[0] << " WHICH\n";
return EXIT_FAILURE;
}
const std::string which = argv[1];
if (which == "parent") {
shared_memory_object::remove(SHARED_MEMORY_NAME);
BOOST_SCOPE_EXIT(argc) {
shared_memory_object::remove(SHARED_MEMORY_NAME);
} BOOST_SCOPE_EXIT_END;
managed_shared_memory shm(create_only, SHARED_MEMORY_NAME, 65536);
MyMapEntryAllocator_t entry_alloc(shm.get_segment_manager());
shared_data& d = *shm.construct<shared_data>("theSharedData")(entry_alloc);
SecondValueAllocator_t second_value_alloc(shm.get_segment_manager());
// Insert some test data.
SecondValueAllocator_t::pointer p;
p = second_value_alloc.allocate(1);
second_value_alloc.construct(p, -3);
d.put(0, std::make_pair(MutexType(), p));
p = second_value_alloc.allocate(1);
second_value_alloc.construct(p, 70);
d.put(1, std::make_pair(MutexType(), p));
p = second_value_alloc.allocate(1);
second_value_alloc.construct(p, -18);
d.put(2, std::make_pair(MutexType(), p));
p = second_value_alloc.allocate(1);
second_value_alloc.construct(p, 44);
d.put(3, std::make_pair(MutexType(), p));
p = second_value_alloc.allocate(1);
second_value_alloc.construct(p, 0);
d.put(4, std::make_pair(MutexType(), p));
// Go to sleep for a minute - gives us a chance to start a child process.
sleep(60);
} else {
managed_shared_memory shm(open_only, SHARED_MEMORY_NAME);
std::pair<shared_data *, std::size_t> find_res = shm.find<shared_data>("theSharedData");
if (!find_res.first) {
std::cerr << "Failed to find `theSharedData'.\n";
return EXIT_FAILURE;
}
shared_data& d = *find_res.first;
MyMap_t::mapped_type v;
int i = 0;
for (; d.try_get(v, i); ++i) {
std::cout << i << ": " << *v.second << '\n';
}
// Add an entry.
srand(time(NULL));
SecondValueAllocator_t second_value_alloc(shm.get_segment_manager());
SecondValueAllocator_t::pointer p = second_value_alloc.allocate(1);
second_value_alloc.construct(p, (rand() % 200) - 100);
d.put(i, v = std::make_pair(MutexType(), p));
std::cout << "placed " << *v.second << " into the map.\n";
}
return EXIT_SUCCESS;
}
首先启动父进程来测试它:
./SO13783012 父级
然后是一些孩子:
./SO13783012 孩子
样本输出:
> ./SO13783012 孩子
0:-3
1:70
2:-18
3:44
4:0
将 5:-63 放入地图。
> ./SO13783012 孩子
0:-3
1:70
2:-18
3:44
4:0
5:-63
将6:-42放入地图。
> ./SO13783012 孩子
0:-3
1:70
2:-18
3:44
4:0
5:-63
6:-42
将7:-28放入地图。