[nca] Use better tight loop allocation schemes (none at all) for AES decrypt/encrypt and force MbedTLS to use AES x86_64 instructions (#2750)

Uses stack instead of allocating stuff haphazardly (16 bytes and 512 bytes respectively) - removes malloc() pollution and all that nasty stuff from tight loops
Original work by Ribbit but edited by me.
Will NOT bring a massive speedup since the main bottleneck is mbedtls itself, but may bring nice oddities to STARTUP TIMES nonetheless.
AES instructions being forced wont affect CPUs without them since there is always a runtime check for them.

Signed-off-by: lizzie lizzie@eden-emu.dev
Co-authored-by: Ribbit <ribbit@placeholder.com>
Reviewed-on: https://git.eden-emu.dev/eden-emu/eden/pulls/2750
Reviewed-by: CamilleLaVey <camillelavey99@gmail.com>
Co-authored-by: lizzie <lizzie@eden-emu.dev>
Co-committed-by: lizzie <lizzie@eden-emu.dev>
This commit is contained in:
lizzie
2025-10-17 05:08:51 +02:00
committed by crueter
parent 551f244dfd
commit 440ee4916d
9 changed files with 200 additions and 130 deletions
+31 -18
View File
@@ -1,3 +1,6 @@
// SPDX-FileCopyrightText: Copyright 2025 Eden Emulator Project
// SPDX-License-Identifier: GPL-3.0-or-later
// SPDX-FileCopyrightText: Copyright 2018 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
@@ -15,26 +18,36 @@ std::size_t CTREncryptionLayer::Read(u8* data, std::size_t length, std::size_t o
if (length == 0)
return 0;
const auto sector_offset = offset & 0xF;
if (sector_offset == 0) {
std::size_t total_read = 0;
// Handle an initial misaligned portion if needed.
if (auto const sector_offset = offset & 0xF; sector_offset != 0) {
const std::size_t aligned_off = offset - sector_offset;
std::array<u8, 0x10> block{};
if (auto const got = base->Read(block.data(), block.size(), aligned_off); got != 0) {
UpdateIV(base_offset + aligned_off);
cipher.Transcode(block.data(), got, block.data(), Op::Decrypt);
auto const to_copy = std::min<std::size_t>(length, got > sector_offset ? got - sector_offset : 0);
if (to_copy > 0) {
std::memcpy(data, block.data() + sector_offset, to_copy);
data += to_copy;
offset += to_copy;
length -= to_copy;
total_read += to_copy;
}
} else {
return 0;
}
}
if (length > 0) {
// Now aligned to 0x10
UpdateIV(base_offset + offset);
std::vector<u8> raw = base->ReadBytes(length, offset);
cipher.Transcode(raw.data(), raw.size(), data, Op::Decrypt);
return length;
const std::size_t got = base->Read(data, length, offset);
if (got > 0) {
cipher.Transcode(data, got, data, Op::Decrypt);
total_read += got;
}
}
// offset does not fall on block boundary (0x10)
std::vector<u8> block = base->ReadBytes(0x10, offset - sector_offset);
UpdateIV(base_offset + offset - sector_offset);
cipher.Transcode(block.data(), block.size(), block.data(), Op::Decrypt);
std::size_t read = 0x10 - sector_offset;
if (length + sector_offset < 0x10) {
std::memcpy(data, block.data() + sector_offset, std::min<u64>(length, read));
return std::min<u64>(length, read);
}
std::memcpy(data, block.data() + sector_offset, read);
return read + Read(data + read, length - read, offset + read);
return total_read;
}
void CTREncryptionLayer::SetIV(const IVData& iv_) {