Atmosphere-libs/include/stratosphere/isession.hpp
Michael Scire 26e676424d fs.mitm: WIP LayeredFS impl (NOTE: UNUSABLE ATM)
Also greatly refactors libstratosphere, and does a lot of other things.
There is a lot of code in this one.
2018-06-14 17:51:18 -06:00

292 lines
11 KiB
C++

#pragma once
#include <switch.h>
#include <type_traits>
#include "ipc_templating.hpp"
#include "iserviceobject.hpp"
#include "iwaitable.hpp"
#include "iserver.hpp"
#include "domainowner.hpp"
enum IpcControlCommand {
IpcCtrl_Cmd_ConvertCurrentObjectToDomain = 0,
IpcCtrl_Cmd_CopyFromCurrentDomain = 1,
IpcCtrl_Cmd_CloneCurrentObject = 2,
IpcCtrl_Cmd_QueryPointerBufferSize = 3,
IpcCtrl_Cmd_CloneCurrentObjectEx = 4
};
#define POINTER_BUFFER_SIZE_MAX 0xFFFF
#define RESULT_DEFER_SESSION (0x6580A)
template <typename T>
class IServer;
class IServiceObject;
template <typename T>
class ISession : public IWaitable {
static_assert(std::is_base_of<IServiceObject, T>::value, "Service Objects must derive from IServiceObject");
protected:
std::shared_ptr<T> service_object;
IServer<T> *server;
Handle server_handle;
Handle client_handle;
char *pointer_buffer;
size_t pointer_buffer_size;
bool is_domain;
std::shared_ptr<DomainOwner> domain;
std::shared_ptr<IServiceObject> active_object;
static_assert(sizeof(pointer_buffer) <= POINTER_BUFFER_SIZE_MAX, "Incorrect Size for PointerBuffer!");
public:
ISession<T>(IServer<T> *s, Handle s_h, Handle c_h, size_t pbs = 0x400) : server(s), server_handle(s_h), client_handle(c_h), pointer_buffer_size(pbs) {
this->service_object = std::make_shared<T>();
if (this->pointer_buffer_size) {
this->pointer_buffer = new char[this->pointer_buffer_size];
}
this->is_domain = false;
this->domain.reset();
this->active_object.reset();
}
ISession<T>(IServer<T> *s, Handle s_h, Handle c_h, std::shared_ptr<T> so, size_t pbs = 0x400) : service_object(so), server(s), server_handle(s_h), client_handle(c_h), pointer_buffer_size(pbs) {
if (this->pointer_buffer_size) {
this->pointer_buffer = new char[this->pointer_buffer_size];
}
this->is_domain = false;
this->domain.reset();
this->active_object.reset();
}
~ISession() override {
delete this->pointer_buffer;
if (server_handle) {
svcCloseHandle(server_handle);
}
if (client_handle) {
svcCloseHandle(client_handle);
}
}
void close_handles() {
if (server_handle) {
svcCloseHandle(server_handle);
server_handle = 0;
}
if (client_handle) {
svcCloseHandle(client_handle);
client_handle = 0;
}
}
std::shared_ptr<T> get_service_object() { return this->service_object; }
Handle get_server_handle() { return this->server_handle; }
Handle get_client_handle() { return this->client_handle; }
DomainOwner *get_owner() { return this->is_domain ? this->domain.get() : NULL; }
/* IWaitable */
Handle get_handle() override {
return this->server_handle;
}
void handle_deferred() override {
Result rc = this->service_object->handle_deferred();
int handle_index;
if (rc != RESULT_DEFER_SESSION) {
this->set_deferred(false);
if (rc == 0xF601) {
svcCloseHandle(this->get_handle());
} else {
rc = svcReplyAndReceive(&handle_index, &this->server_handle, 0, this->server_handle, 0);
}
}
}
virtual Result handle_message(IpcParsedCommand &r) {
Result retval = 0xF601;
IpcCommand c;
ipcInitialize(&c);
if (r.IsDomainMessage && this->active_object == NULL) {
return 0xF601;
}
if (r.IsDomainMessage && r.MessageType == DomainMessageType_Close) {
this->domain->delete_object(this->active_object);
this->active_object = NULL;
struct {
u64 magic;
u64 result;
} *raw = (decltype(raw))ipcPrepareHeader(&c, sizeof(*raw));
raw->magic = SFCO_MAGIC;
raw->result = 0x0;
return 0x0;
}
u64 cmd_id = ((u32 *)r.Raw)[2];
switch (r.CommandType) {
case IpcCommandType_Close:
/* TODO: This should close the session and clean up its resources. */
retval = 0xF601;
break;
case IpcCommandType_LegacyControl:
/* TODO: What does this allow one to do? */
retval = 0xF601;
break;
case IpcCommandType_LegacyRequest:
/* TODO: What does this allow one to do? */
retval = 0xF601;
break;
case IpcCommandType_Request:
case IpcCommandType_RequestWithContext:
retval = this->active_object->dispatch(r, c, cmd_id, (u8 *)this->pointer_buffer, this->pointer_buffer_size);
break;
case IpcCommandType_Control:
case IpcCommandType_ControlWithContext:
retval = this->dispatch_control_command(r, c, cmd_id);
break;
case IpcCommandType_Invalid:
default:
retval = 0xF601;
break;
}
return retval;
}
virtual void postprocess(IpcParsedCommand &r, u64 cmd_id) {
/* ... */
(void)(r);
(void)(cmd_id);
}
virtual void cleanup() {
/* ... */
}
Result handle_signaled(u64 timeout) override {
Result rc;
int handle_index;
/* Prepare pointer buffer... */
IpcCommand c_for_reply;
ipcInitialize(&c_for_reply);
ipcAddRecvStatic(&c_for_reply, this->pointer_buffer, this->pointer_buffer_size, 0);
ipcPrepareHeader(&c_for_reply, 0);
if (R_SUCCEEDED(rc = svcReplyAndReceive(&handle_index, &this->server_handle, 1, 0, U64_MAX))) {
if (handle_index != 0) {
/* TODO: Panic? */
}
IpcParsedCommand r;
u64 cmd_id;
Result retval = ipcParse(&r);
if (R_SUCCEEDED(retval)) {
if (this->is_domain && (r.CommandType == IpcCommandType_Request || r.CommandType == IpcCommandType_RequestWithContext)) {
retval = ipcParseForDomain(&r);
if (!r.IsDomainMessage || r.ThisObjectId >= DOMAIN_ID_MAX) {
retval = 0xF601;
} else {
this->active_object = this->domain->get_domain_object(r.ThisObjectId);
}
} else {
this->active_object = this->service_object;
}
}
if (R_SUCCEEDED(retval)) {
cmd_id = ((u32 *)r.Raw)[2];
}
if (R_SUCCEEDED(retval)) {
retval = this->handle_message(r);
}
if (retval == RESULT_DEFER_SESSION) {
/* Session defer. */
this->active_object.reset();
this->set_deferred(true);
rc = retval;
} else if (retval == 0xF601) {
/* Session close. */
this->active_object.reset();
rc = retval;
} else {
if (R_SUCCEEDED(retval)) {
this->postprocess(r, cmd_id);
}
this->active_object.reset();
rc = svcReplyAndReceive(&handle_index, &this->server_handle, 0, this->server_handle, 0);
if (rc == 0xEA01) {
rc = 0x0;
}
this->cleanup();
}
}
return rc;
}
Result dispatch_control_command(IpcParsedCommand &r, IpcCommand &out_c, u64 cmd_id) {
Result rc = 0xF601;
/* TODO: Implement. */
switch ((IpcControlCommand)cmd_id) {
case IpcCtrl_Cmd_ConvertCurrentObjectToDomain:
rc = WrapIpcCommandImpl<&ISession::ConvertCurrentObjectToDomain>(this, r, out_c, (u8 *)this->pointer_buffer, this->pointer_buffer_size);
break;
case IpcCtrl_Cmd_CopyFromCurrentDomain:
rc = WrapIpcCommandImpl<&ISession::CopyFromCurrentDomain>(this, r, out_c, (u8 *)this->pointer_buffer, this->pointer_buffer_size);
break;
case IpcCtrl_Cmd_CloneCurrentObject:
rc = WrapIpcCommandImpl<&ISession::CloneCurrentObject>(this, r, out_c, (u8 *)this->pointer_buffer, this->pointer_buffer_size);
break;
case IpcCtrl_Cmd_QueryPointerBufferSize:
rc = WrapIpcCommandImpl<&ISession::QueryPointerBufferSize>(this, r, out_c, (u8 *)this->pointer_buffer, this->pointer_buffer_size);
break;
case IpcCtrl_Cmd_CloneCurrentObjectEx:
rc = WrapIpcCommandImpl<&ISession::CloneCurrentObjectEx>(this, r, out_c, (u8 *)this->pointer_buffer, sizeof(this->pointer_buffer));
break;
default:
break;
}
return rc;
}
/* Control commands. */
std::tuple<Result> ConvertCurrentObjectToDomain() {
/* TODO */
return {0xF601};
}
std::tuple<Result> CopyFromCurrentDomain() {
/* TODO */
return {0xF601};
}
std::tuple<Result> CloneCurrentObject() {
/* TODO */
return {0xF601};
}
std::tuple<Result, u32> QueryPointerBufferSize() {
return {0x0, (u32)this->pointer_buffer_size};
}
std::tuple<Result> CloneCurrentObjectEx() {
/* TODO */
return {0xF601};
}
};