mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2024-11-10 07:06:34 +00:00
ad636f7216
* Stratosphere: Use modern C++ idioms in some places * algorithms like std::for_each are used instead of raw loops * Stratosphere: Replace more raw loops with algorithms * Stratosphere: Add a utility predicate function to test for equality with a reference element This can be used to rewrite some common raw loops using algorithms instead * fs.mitm: Use variant * fs.mitm: Use enum class * fs.mitm: Turn RomFSSourceInfo::Cleanup into a destructor This obsoletes the need for a custom deleter in other places * fs.mitm: Use enum class some more * fs.mitm: Use unique_ptr * fs.mitm: Simplify initialization * Stratosphere: Simplify initialization * fs.mitm: Use unique_ptr (fix memory leak along the way) The previous code was using "delete" rather than "delete[]" * fs.mitm: Use vector::emplace_back rather than push_back emplace_back constructs elements in-place, hence avoiding a redundant element copy. * Stratosphere: Replace more raw loops with algorithms * Stratosphere: Use unique_ptr * fs.mitm: Replace more raw loops with algorithms * Stratosphere: Prefer move-construction over copy-construction when moving sink parameters around
468 lines
13 KiB
C++
468 lines
13 KiB
C++
#include <switch.h>
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#include <algorithm>
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#include <stratosphere/servicesession.hpp>
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#include "sm_registration.hpp"
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#include "meta_tools.hpp"
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static std::array<Registration::Process, REGISTRATION_LIST_MAX_PROCESS> g_process_list = {0};
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static std::array<Registration::Service, REGISTRATION_LIST_MAX_SERVICE> g_service_list = {0};
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static u64 g_initial_process_id_low = 0;
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static u64 g_initial_process_id_high = 0;
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static bool g_determined_initial_process_ids = false;
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u64 GetServiceNameLength(u64 service) {
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u64 service_name_len = 0;
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while (service & 0xFF) {
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service_name_len++;
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service >>= 8;
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}
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return service_name_len;
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}
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/* Utilities. */
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Registration::Process *Registration::GetProcessForPid(u64 pid) {
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auto process_it = std::find_if(g_process_list.begin(), g_process_list.end(), member_equals_fn(&Process::pid, pid));
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if (process_it == g_process_list.end()) {
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return nullptr;
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}
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return &*process_it;
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}
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Registration::Process *Registration::GetFreeProcess() {
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return GetProcessForPid(0);
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}
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Registration::Service *Registration::GetService(u64 service_name) {
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auto service_it = std::find_if(g_service_list.begin(), g_service_list.end(), member_equals_fn(&Service::service_name, service_name));
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if (service_it == g_service_list.end()) {
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return nullptr;
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}
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return &*service_it;
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}
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Registration::Service *Registration::GetFreeService() {
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return GetService(0);
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}
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bool Registration::IsValidForSac(u8 *sac, size_t sac_size, u64 service, bool is_host) {
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u8 cur_ctrl;
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u64 cur_service;
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u64 service_for_compare;
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bool cur_is_host;
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size_t remaining = sac_size;
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while (remaining) {
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cur_ctrl = *sac++;
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remaining--;
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size_t cur_size = (cur_ctrl & 7) + 1;
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if (cur_size > remaining) {
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break;
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}
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cur_is_host = (cur_ctrl & 0x80) != 0;
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cur_service = 0;
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for (unsigned int i = 0; i < cur_size; i++) {
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cur_service |= ((u64)sac[i]) << (8 * i);
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}
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/* Check if the last byte is a wildcard ('*') */
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service_for_compare = service;
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if (sac[cur_size - 1] == '*') {
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u64 mask = U64_MAX;
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for (unsigned int i = 0; i < 8 - (cur_size - 1); i++) {
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mask >>= 8;
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}
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/* Mask cur_service, service with 0xFF.. up until the wildcard. */
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cur_service &= mask;
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service_for_compare &= mask;
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}
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if (cur_service == service_for_compare && (is_host == cur_is_host)) {
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return true;
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}
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sac += cur_size;
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remaining -= cur_size;
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}
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return false;
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}
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bool Registration::ValidateSacAgainstRestriction(u8 *r_sac, size_t r_sac_size, u8 *sac, size_t sac_size) {
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u8 cur_ctrl;
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u64 cur_service;
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bool cur_is_host;
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size_t remaining = sac_size;
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while (remaining) {
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cur_ctrl = *sac++;
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remaining--;
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size_t cur_size = (cur_ctrl & 7) + 1;
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if (cur_size > remaining) {
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break;
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}
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cur_is_host = (cur_ctrl & 0x80) != 0;
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cur_service = 0;
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for (unsigned int i = 0; i < cur_size; i++) {
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cur_service |= ((u64)sac[i]) << (8 * i);
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}
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if (!IsValidForSac(r_sac, r_sac_size, cur_service, cur_is_host)) {
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return false;
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}
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sac += cur_size;
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remaining -= cur_size;
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}
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return true;
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}
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void Registration::CacheInitialProcessIdLimits() {
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if (g_determined_initial_process_ids) {
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return;
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}
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if (kernelAbove500()) {
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svcGetSystemInfo(&g_initial_process_id_low, 2, 0, 0);
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svcGetSystemInfo(&g_initial_process_id_high, 2, 0, 1);
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} else {
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g_initial_process_id_low = 0;
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g_initial_process_id_high = REGISTRATION_INITIAL_PID_MAX;
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}
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g_determined_initial_process_ids = true;
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}
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bool Registration::IsInitialProcess(u64 pid) {
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CacheInitialProcessIdLimits();
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return g_initial_process_id_low <= pid && pid <= g_initial_process_id_high;
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}
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u64 Registration::GetInitialProcessId() {
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CacheInitialProcessIdLimits();
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return g_initial_process_id_low;
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}
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/* Process management. */
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Result Registration::RegisterProcess(u64 pid, u8 *acid_sac, size_t acid_sac_size, u8 *aci0_sac, size_t aci0_sac_size) {
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Registration::Process *proc = GetFreeProcess();
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if (aci0_sac_size > REGISTRATION_MAX_SAC_SIZE) {
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return 0x1215;
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}
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if (proc == NULL) {
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return 0x215;
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}
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if (aci0_sac_size && !ValidateSacAgainstRestriction(acid_sac, acid_sac_size, aci0_sac, aci0_sac_size)) {
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return 0x1015;
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}
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proc->pid = pid;
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proc->sac_size = aci0_sac_size;
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std::copy(aci0_sac, aci0_sac + aci0_sac_size, proc->sac);
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return 0;
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}
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Result Registration::UnregisterProcess(u64 pid) {
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Registration::Process *proc = GetProcessForPid(pid);
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if (proc == NULL) {
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return 0x415;
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}
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proc->pid = 0;
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return 0;
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}
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/* Service management. */
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bool Registration::HasService(u64 service) {
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return std::any_of(g_service_list.begin(), g_service_list.end(), member_equals_fn(&Service::service_name, service));
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}
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Result Registration::GetServiceHandle(u64 pid, u64 service, Handle *out) {
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Registration::Service *target_service = GetService(service);
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if (target_service == NULL) {
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/* Note: This defers the result until later. */
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return RESULT_DEFER_SESSION;
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}
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*out = 0;
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Result rc;
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if (target_service->mitm_pid == 0 || target_service->mitm_pid == pid) {
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rc = svcConnectToPort(out, target_service->port_h);
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} else {
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IpcCommand c;
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ipcInitialize(&c);
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struct {
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u64 magic;
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u64 cmd_id;
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u64 pid;
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} *info = ((decltype(info))ipcPrepareHeader(&c, sizeof(*info)));
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info->magic = SFCI_MAGIC;
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info->cmd_id = 65000;
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info->pid = pid;
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rc = ipcDispatch(target_service->mitm_query_h);
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if (R_SUCCEEDED(rc)) {
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IpcParsedCommand r;
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ipcParse(&r);
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struct {
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u64 magic;
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u64 result;
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u64 should_mitm;
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} *resp = ((decltype(resp))r.Raw);
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rc = resp->result;
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if (R_SUCCEEDED(rc)) {
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if (resp->should_mitm) {
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rc = svcConnectToPort(out, target_service->mitm_port_h);
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} else {
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rc = svcConnectToPort(out, target_service->port_h);
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}
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}
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}
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if (R_FAILED(rc)) {
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rc = svcConnectToPort(out, target_service->port_h);
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}
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}
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if (R_FAILED(rc)) {
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if ((rc & 0x3FFFFF) == 0xE01) {
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return 0x615;
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}
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}
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return rc;
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}
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Result Registration::GetServiceForPid(u64 pid, u64 service, Handle *out) {
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if (!service) {
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return 0xC15;
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}
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u64 service_name_len = GetServiceNameLength(service);
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/* If the service has bytes after a null terminator, that's no good. */
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if (service_name_len != 8 && (service >> (8 * service_name_len))) {
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return 0xC15;
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}
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if (!IsInitialProcess(pid)) {
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Registration::Process *proc = GetProcessForPid(pid);
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if (proc == NULL) {
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return 0x415;
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}
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if (!IsValidForSac(proc->sac, proc->sac_size, service, false)) {
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return 0x1015;
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}
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}
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return GetServiceHandle(pid, service, out);
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}
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Result Registration::RegisterServiceForPid(u64 pid, u64 service, u64 max_sessions, bool is_light, Handle *out) {
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if (!service) {
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return 0xC15;
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}
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u64 service_name_len = GetServiceNameLength(service);
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/* If the service has bytes after a null terminator, that's no good. */
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if (service_name_len != 8 && (service >> (8 * service_name_len))) {
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return 0xC15;
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}
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if (!IsInitialProcess(pid)) {
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Registration::Process *proc = GetProcessForPid(pid);
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if (proc == NULL) {
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return 0x415;
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}
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if (!IsValidForSac(proc->sac, proc->sac_size, service, true)) {
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return 0x1015;
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}
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}
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if (HasService(service)) {
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return 0x815;
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}
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#ifdef SM_MINIMUM_SESSION_LIMIT
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if (max_sessions < SM_MINIMUM_SESSION_LIMIT) {
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max_sessions = SM_MINIMUM_SESSION_LIMIT;
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}
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#endif
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Registration::Service *free_service = GetFreeService();
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if (free_service == NULL) {
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return 0xA15;
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}
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*out = 0;
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*free_service = (const Registration::Service){0};
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Result rc = svcCreatePort(out, &free_service->port_h, max_sessions, is_light, (char *)&free_service->service_name);
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if (R_SUCCEEDED(rc)) {
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free_service->service_name = service;
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free_service->owner_pid = pid;
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free_service->max_sessions = max_sessions;
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free_service->is_light = is_light;
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}
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return rc;
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}
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Result Registration::RegisterServiceForSelf(u64 service, u64 max_sessions, bool is_light, Handle *out) {
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u64 pid;
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Result rc = svcGetProcessId(&pid, CUR_PROCESS_HANDLE);
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if (R_FAILED(rc)) {
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return rc;
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}
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u64 service_name_len = GetServiceNameLength(service);
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/* If the service has bytes after a null terminator, that's no good. */
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if (service_name_len != 8 && (service >> (8 * service_name_len))) {
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return 0xC15;
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}
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if (HasService(service)) {
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return 0x815;
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}
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#ifdef SM_MINIMUM_SESSION_LIMIT
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if (max_sessions < SM_MINIMUM_SESSION_LIMIT) {
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max_sessions = SM_MINIMUM_SESSION_LIMIT;
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}
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#endif
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Registration::Service *free_service = GetFreeService();
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if (free_service == NULL) {
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return 0xA15;
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}
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*out = 0;
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*free_service = (const Registration::Service){0};
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rc = svcCreatePort(out, &free_service->port_h, max_sessions, is_light, (char *)&free_service->service_name);
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if (R_SUCCEEDED(rc)) {
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free_service->service_name = service;
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free_service->owner_pid = pid;
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free_service->max_sessions = max_sessions;
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free_service->is_light = is_light;
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}
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return rc;
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}
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Result Registration::UnregisterServiceForPid(u64 pid, u64 service) {
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if (!service) {
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return 0xC15;
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}
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u64 service_name_len = GetServiceNameLength(service);
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/* If the service has bytes after a null terminator, that's no good. */
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if (service_name_len != 8 && (service >> (8 * service_name_len))) {
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return 0xC15;
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}
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Registration::Service *target_service = GetService(service);
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if (target_service == NULL) {
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return 0xE15;
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}
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if (!IsInitialProcess(pid) && target_service->owner_pid != pid) {
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return 0x1015;
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}
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svcCloseHandle(target_service->port_h);
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svcCloseHandle(target_service->mitm_port_h);
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svcCloseHandle(target_service->mitm_query_h);
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*target_service = (const Registration::Service){0};
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return 0;
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}
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Result Registration::InstallMitmForPid(u64 pid, u64 service, Handle *out, Handle *query_out) {
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if (!service) {
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return 0xC15;
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}
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u64 service_name_len = GetServiceNameLength(service);
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/* If the service has bytes after a null terminator, that's no good. */
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if (service_name_len != 8 && (service >> (8 * service_name_len))) {
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return 0xC15;
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}
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/* Verify we're allowed to mitm the service. */
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if (!IsInitialProcess(pid)) {
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Registration::Process *proc = GetProcessForPid(pid);
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if (proc == NULL) {
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return 0x415;
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}
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if (!IsValidForSac(proc->sac, proc->sac_size, service, true)) {
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return 0x1015;
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}
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}
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/* Verify the service exists. */
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Registration::Service *target_service = GetService(service);
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if (target_service == NULL) {
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return 0xE15;
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}
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/* Verify the service isn't already being mitm'd. */
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if (target_service->mitm_pid != 0) {
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return 0x815;
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}
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*out = 0;
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u64 x = 0;
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Result rc = svcCreatePort(out, &target_service->mitm_port_h, target_service->max_sessions, target_service->is_light, (char *)&x);
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if (R_SUCCEEDED(rc) && R_SUCCEEDED((rc = svcCreateSession(query_out, &target_service->mitm_query_h, 0, 0)))) {
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target_service->mitm_pid = pid;
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}
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return rc;
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}
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Result Registration::UninstallMitmForPid(u64 pid, u64 service) {
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if (!service) {
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return 0xC15;
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}
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u64 service_name_len = GetServiceNameLength(service);
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/* If the service has bytes after a null terminator, that's no good. */
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if (service_name_len != 8 && (service >> (8 * service_name_len))) {
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return 0xC15;
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}
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Registration::Service *target_service = GetService(service);
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if (target_service == NULL) {
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return 0xE15;
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}
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if (!IsInitialProcess(pid) && target_service->mitm_pid != pid) {
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return 0x1015;
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}
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svcCloseHandle(target_service->mitm_port_h);
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svcCloseHandle(target_service->mitm_query_h);
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target_service->mitm_pid = 0;
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return 0;
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}
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Result Registration::AssociatePidTidForMitm(u64 pid, u64 tid) {
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for (auto &service : g_service_list) {
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if (service.mitm_pid) {
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IpcCommand c;
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ipcInitialize(&c);
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struct {
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u64 magic;
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u64 cmd_id;
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u64 pid;
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u64 tid;
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} *info = ((decltype(info))ipcPrepareHeader(&c, sizeof(*info)));
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info->magic = SFCI_MAGIC;
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info->cmd_id = 65001;
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info->pid = pid;
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info->tid = tid;
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ipcDispatch(service.mitm_query_h);
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}
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}
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return 0x0;
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}
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