trainings/AdvancedCppV2/Presentation/smart_pointers_shared_ptr.md

4.7 KiB

std::shared_ptr<>


std::shared_ptr<>

  • one object == multiple owners
  • last referrer destroys the object
  • copying allowed
  • moving allowed
  • can use custom deleter
  • can use custom allocator
  • has a control block == impact on size of pointer end efficiency
shared pointers

std::shared_ptr<> usage (1)

  • Copying and moving is allowed
std::shared_ptr<MyData> source();
void sink(std::shared_ptr<MyData> ptr);

void simpleUsage() {
    source();
    sink(source());
    auto ptr = source();
    sink(ptr);
    sink(std::move(ptr));
    auto p1 = source();
    auto p2 = p1;
    p2 = std::move(p1);
    p1 = p2;
    p1 = std::move(p2);
}

std::shared_ptr<MyData> source();
void sink(std::shared_ptr<MyData> ptr);

void collections() {
    std::vector<std::shared_ptr<MyData>> v;

    v.push_back(source());

    auto tmp = source();
    v.push_back(tmp);
    v.push_back(std::move(tmp));

    sink(v[0]);
    sink(std::move(v[0]));
}

std::shared_ptr<> usage (2)

#include <memory>
#include <map>
#include <string>

class Gadget {};
std::map<std::string, std::shared_ptr<Gadget>> gadgets;

void foo() {
    std::shared_ptr<Gadget> p1{new Gadget()};   // reference counter = 1
    {
        auto p2 = p1;                           // copy (reference counter == 2)
        gadgets.insert(make_pair("mp3", p2));   // copy (reference counter == 3)
        p2->use();
    }                                           // destruction of p2, reference counter = 2
}                                               // destruction of p1, reference counter = 1

int main() {
    foo();
    gadgets.clear();                            // reference counter = 0 - gadget is removed
}

Custom deleter

  • Don't change a type of shared_ptr because data is stored in control block
  • Don't change a size of shared_ptr because data is stored in control block
  • You can have a collection of shared_ptr which has different deleter
class Foo {};

void deleter1(Foo* const foo) {
    std::cout << "Deleter1\n";
    delete foo;
}

int main() {
    std::vector<std::shared_ptr<Foo>> vec;
    std::shared_ptr<Foo> ptr1(new Foo(), deleter1);
    vec.push_back(std::move(ptr1));

    auto deleter2 = [](Foo* const foo) { 
        std::cout << "Deleter2\n"; 
        delete foo; 
    };
    vec.emplace_back(new Foo(), deleter2);             
}
Deleter1
Deleter2

Problem with shared_ptr

Let's look at a short story:

  • Programmer1 : Why do you pass shared_ptr by copy? Passing by copy increment counter (slower then unique or raw ptr)
  • Programmer2: Ok, so I will pass it by const reference instead! And avoid unnecessary incrementation of the control block.
  • Programmer1: So if you don't need to copy it (don't need to have 2 owners) why don't use unique_ptr?
  • Reassume: shared_ptr should be use only when given resource need to have few owners (very rare situation). In other case use always unique_ptr!

std::shared_ptr<> cyclic dependencies

  • What happens here?
#include <memory>

struct Node {
    std::shared_ptr<Node> child;
    std::shared_ptr<Node> parent;
};

int main () {
    auto root = std::shared_ptr<Node>(new Node);
    auto child = std::shared_ptr<Node>(new Node);

    root->child = child;
    child->parent = root;
}


Memory leak! kot