mirror of
https://github.com/Atmosphere-NX/Atmosphere.git
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155 lines
7.7 KiB
C++
155 lines
7.7 KiB
C++
/*
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* Copyright (c) 2018-2020 Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <mesosphere.hpp>
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namespace ams::kern::svc {
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/* ============================= Common ============================= */
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namespace {
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ALWAYS_INLINE Result ReplyAndReceiveImpl(int32_t *out_index, uintptr_t message, size_t buffer_size, KPhysicalAddress message_paddr, KSynchronizationObject **objs, int32_t num_objects, ams::svc::Handle reply_target, int64_t timeout_ns) {
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/* Reply to the target, if one is specified. */
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if (reply_target != ams::svc::InvalidHandle) {
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/* TODO */
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MESOSPHERE_UNIMPLEMENTED();
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}
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/* Receive a message. */
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{
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/* Convert the timeout from nanoseconds to ticks. */
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/* NOTE: Nintendo does not use this conversion logic in WaitSynchronization... */
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s64 timeout;
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if (timeout_ns > 0) {
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const ams::svc::Tick offset_tick(TimeSpan::FromNanoSeconds(timeout_ns));
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if (AMS_LIKELY(offset_tick > 0)) {
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timeout = KHardwareTimer::GetTick() + offset_tick + 2;
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if (AMS_UNLIKELY(timeout <= 0)) {
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timeout = std::numeric_limits<s64>::max();
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}
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} else {
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timeout = std::numeric_limits<s64>::max();
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}
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} else {
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timeout = timeout_ns;
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}
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/* Wait for a message. */
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while (true) {
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s32 index;
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Result result = Kernel::GetSynchronization().Wait(std::addressof(index), objs, num_objects, timeout);
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if (svc::ResultTimedOut::Includes(result)) {
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return result;
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}
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if (R_SUCCEEDED(result)) {
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KServerSession *session = objs[index]->DynamicCast<KServerSession *>();
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if (session != nullptr) {
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result = session->ReceiveRequest(message, buffer_size, message_paddr);
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if (svc::ResultNotFound::Includes(result)) {
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continue;
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}
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}
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}
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*out_index = index;
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return result;
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}
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}
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}
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ALWAYS_INLINE Result ReplyAndReceiveImpl(int32_t *out_index, uintptr_t message, size_t buffer_size, KPhysicalAddress message_paddr, KUserPointer<const ams::svc::Handle *> user_handles, int32_t num_handles, ams::svc::Handle reply_target, int64_t timeout_ns) {
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/* Ensure number of handles is valid. */
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R_UNLESS(0 <= num_handles && num_handles <= ams::svc::ArgumentHandleCountMax, svc::ResultOutOfRange());
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/* Get the synchronization context. */
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auto &handle_table = GetCurrentProcess().GetHandleTable();
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KSynchronizationObject **objs = GetCurrentThread().GetSynchronizationObjectBuffer();
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ams::svc::Handle *handles = GetCurrentThread().GetHandleBuffer();
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/* Copy user handles. */
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if (num_handles > 0) {
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/* Ensure that we can try to get the handles. */
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R_UNLESS(GetCurrentProcess().GetPageTable().Contains(KProcessAddress(user_handles.GetUnsafePointer()), num_handles * sizeof(ams::svc::Handle)), svc::ResultInvalidPointer());
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/* Get the handles. */
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R_TRY(user_handles.CopyArrayTo(handles, num_handles));
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/* Convert the handles to objects. */
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R_UNLESS(handle_table.GetMultipleObjects<KSynchronizationObject>(objs, handles, num_handles), svc::ResultInvalidHandle());
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}
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/* Ensure handles are closed when we're done. */
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ON_SCOPE_EXIT {
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for (auto i = 0; i < num_handles; ++i) {
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objs[i]->Close();
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}
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};
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return ReplyAndReceiveImpl(out_index, message, buffer_size, message_paddr, objs, num_handles, reply_target, timeout_ns);
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}
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ALWAYS_INLINE Result ReplyAndReceive(int32_t *out_index, KUserPointer<const ams::svc::Handle *> handles, int32_t num_handles, ams::svc::Handle reply_target, int64_t timeout_ns) {
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return ReplyAndReceiveImpl(out_index, 0, 0, Null<KPhysicalAddress>, handles, num_handles, reply_target, timeout_ns);
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}
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}
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/* ============================= 64 ABI ============================= */
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Result SendSyncRequest64(ams::svc::Handle session_handle) {
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MESOSPHERE_PANIC("Stubbed SvcSendSyncRequest64 was called.");
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}
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Result SendSyncRequestWithUserBuffer64(ams::svc::Address message_buffer, ams::svc::Size message_buffer_size, ams::svc::Handle session_handle) {
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MESOSPHERE_PANIC("Stubbed SvcSendSyncRequestWithUserBuffer64 was called.");
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}
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Result SendAsyncRequestWithUserBuffer64(ams::svc::Handle *out_event_handle, ams::svc::Address message_buffer, ams::svc::Size message_buffer_size, ams::svc::Handle session_handle) {
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MESOSPHERE_PANIC("Stubbed SvcSendAsyncRequestWithUserBuffer64 was called.");
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}
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Result ReplyAndReceive64(int32_t *out_index, KUserPointer<const ams::svc::Handle *> handles, int32_t num_handles, ams::svc::Handle reply_target, int64_t timeout_ns) {
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return ReplyAndReceive(out_index, handles, num_handles, reply_target, timeout_ns);
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}
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Result ReplyAndReceiveWithUserBuffer64(int32_t *out_index, ams::svc::Address message_buffer, ams::svc::Size message_buffer_size, KUserPointer<const ams::svc::Handle *> handles, int32_t num_handles, ams::svc::Handle reply_target, int64_t timeout_ns) {
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MESOSPHERE_PANIC("Stubbed SvcReplyAndReceiveWithUserBuffer64 was called.");
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}
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/* ============================= 64From32 ABI ============================= */
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Result SendSyncRequest64From32(ams::svc::Handle session_handle) {
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MESOSPHERE_PANIC("Stubbed SvcSendSyncRequest64From32 was called.");
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}
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Result SendSyncRequestWithUserBuffer64From32(ams::svc::Address message_buffer, ams::svc::Size message_buffer_size, ams::svc::Handle session_handle) {
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MESOSPHERE_PANIC("Stubbed SvcSendSyncRequestWithUserBuffer64From32 was called.");
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}
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Result SendAsyncRequestWithUserBuffer64From32(ams::svc::Handle *out_event_handle, ams::svc::Address message_buffer, ams::svc::Size message_buffer_size, ams::svc::Handle session_handle) {
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MESOSPHERE_PANIC("Stubbed SvcSendAsyncRequestWithUserBuffer64From32 was called.");
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}
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Result ReplyAndReceive64From32(int32_t *out_index, KUserPointer<const ams::svc::Handle *> handles, int32_t num_handles, ams::svc::Handle reply_target, int64_t timeout_ns) {
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return ReplyAndReceive(out_index, handles, num_handles, reply_target, timeout_ns);
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}
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Result ReplyAndReceiveWithUserBuffer64From32(int32_t *out_index, ams::svc::Address message_buffer, ams::svc::Size message_buffer_size, KUserPointer<const ams::svc::Handle *> handles, int32_t num_handles, ams::svc::Handle reply_target, int64_t timeout_ns) {
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MESOSPHERE_PANIC("Stubbed SvcReplyAndReceiveWithUserBuffer64From32 was called.");
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}
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}
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