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Author SHA1 Message Date
lizzie 9ef11f5a0f 2026-09-28 14:39:30
Signed-off-by: lizzie <lizzie@eden-emu.dev>
2026-09-28 14:39:30 +00:00
6 changed files with 79 additions and 45 deletions
@@ -0,0 +1,40 @@
diff --git a/cmake/ConfigureOpenSSL.cmake b/cmake/ConfigureOpenSSL.cmake
index 3012e05..2ae23ff 100644
--- a/cmake/ConfigureOpenSSL.cmake
+++ b/cmake/ConfigureOpenSSL.cmake
@@ -108,7 +108,8 @@ function(configure_openssl)
)
if(NOT "${CONFIGURE_OPTIONS_OLD}" STREQUAL "")
- if(CONFIGURE_OPTIONS STREQUAL CONFIGURE_OPTIONS_OLD)
+ # TODO(lizzie): Emscripten has issues with rebuilding due to the wrapper it uses
+ if(CMAKE_SYSTEM_NAME MATCHES "Emscripten" OR CONFIGURE_OPTIONS STREQUAL CONFIGURE_OPTIONS_OLD)
message(STATUS "Found previous configure results. Don't perform configuration")
return()
endif()
@@ -134,10 +135,24 @@ function(configure_openssl)
set(VERBOSE_OPTION OUTPUT_QUIET)
endif()
+ if (CMAKE_SYSTEM_NAME MATCHES "Emscripten")
+ set(EMSCRIPTEN_CMAKE_WRAPPER "emcmake")
+ find_program(EMCC emcc REQUIRED)
+ set(EMSCRIPTEN_LINKER ${EMCC})
+ list(APPEND CONFIGURE_COMMAND wasm64)
+ else()
+ set(EMSCRIPTEN_CMAKE_WRAPPER "")
+ set(EMSCRIPTEN_LINKER ${CMAKE_LINKER})
+ endif ()
+
execute_process(
- COMMAND ${CMAKE_COMMAND} -E env
+ COMMAND ${EMSCRIPTEN_CMAKE_WRAPPER} ${CMAKE_COMMAND} -E env
"CFLAGS=${CMAKE_C_FLAGS}"
"CXXFLAGS=${CMAKE_CXX_FLAGS}"
+ "LDFLAGS=${CMAKE_CXX_LINK_FLAGS}"
+ "CC=${CMAKE_C_COMPILER}"
+ "CXX=${CMAKE_CXX_COMPILER}"
+ "LD=${EMSCRIPTEN_LINKER}"
${CONFIGURE_COMMAND}
WORKING_DIRECTORY ${CONFIGURE_BUILD_DIR}
${VERBOSE_OPTION}
+2 -1
View File
@@ -202,7 +202,8 @@
"0001-cpmutil-compat.patch",
"0002-use-ccache.patch",
"0003-use-cmake-compiler-flags.patch",
"0004-use-shell-wrapper.patch"
"0004-use-shell-wrapper.patch",
"0005-cross-compile.patch"
],
"repo": "jimmy-park/openssl-cmake",
"version": "3.6.2"
+25 -4
View File
@@ -6,10 +6,31 @@ General guide for cross compiling.
A painless guide for cross compilation (or to test NCE) from a x86_64 system without polluting your main.
- Install QEMU: `sudo pkg install qemu`
- Download Debian 13: `wget https://cdimage.debian.org/debian-cd/current/arm64/iso-cd/debian-13.0.0-arm64-netinst.iso`
- Create a system disk: `qemu-img create -f qcow2 debian-13-arm64-ci.qcow2 30G`
- Run the VM: `qemu-system-aarch64 -M virt -m 2G -cpu max -bios /usr/local/share/qemu/edk2-aarch64-code.fd -drive if=none,file=debian-13.0.0-arm64-netinst.iso,format=raw,id=cdrom -device scsi-cd,drive=cdrom -drive if=none,file=debian-13-arm64-ci.qcow2,id=hd0,format=qcow2 -device virtio-blk-device,drive=hd0 -device virtio-gpu-pci -device usb-ehci -device usb-kbd -device intel-hda -device hda-output -nic user,model=virtio-net-pci`
```sh
#!/bin/sh
ISO_FILE="debian-13.0.0-arm64-netinst.iso"
DISK_FILE="debian-13-arm64-ci.qcow2"
which -- qemu-system-aarch64 || sudo pkg install qemu
[ -f "$ISO_FILE" ] || wget https://cdimage.debian.org/debian-cd/current/arm64/iso-cd/$ISO_FILE
[ -f "$DISK_FILE" ] || qemu-img create -f qcow2 "$DISK_FILE" 30G
QEMU_FLAGS=(
-M virt
-m 2G
-cpu max
-bios /usr/local/share/qemu/edk2-aarch64-code.fd
-drive if=none,file=$ISO_FILE,format=raw,id=cdrom
-drive if=none,file=$DISK_FILE,id=hd0,format=qcow2
-device scsi-cd,drive=cdrom
-device virtio-blk-device,drive=hd0
-device virtio-gpu-pci
-device usb-ehci
-device usb-kbd
-device intel-hda
-device hda-output
-nic user,model=virtio-net-pci
)
qemu-system-aarch64 "${QEMU_FLAGS[@]}"
```
## Gentoo
+5 -5
View File
@@ -101,6 +101,11 @@ endfunction()
# ia64 exists
# the rest exist, but are probably less popular than ia64
detect_architecture_symbols(
ARCH wasm
SYMBOLS
"__EMSCRIPTEN__")
detect_architecture_symbols(
ARCH arm64
SYMBOLS
@@ -203,11 +208,6 @@ detect_architecture_symbols(
"__loongarch__"
"__loongarch64")
detect_architecture_symbols(
ARCH wasm
SYMBOLS
"__EMSCRIPTEN__")
# "generic" target
# If you have reached this point, you're on some as-of-yet unsupported architecture.
# See the docs up above for known unsupported architectures
+2 -30
View File
@@ -16,10 +16,6 @@
#include "core/hle/service/ro/ro_types.h"
#include "core/hle/service/server_manager.h"
#include "core/hle/service/service.h"
#ifdef HAS_NCE
#include "core/arm/nce/patcher.h"
#include "core/hle/kernel/k_shared_memory.h"
#endif
namespace Service::RO {
@@ -390,7 +386,7 @@ public:
R_SUCCEED();
}
Result MapManualLoadModuleMemory(Kernel::KernelCore& kernel, u64* out_address, size_t context_id, u64 nro_address,
Result MapManualLoadModuleMemory(u64* out_address, size_t context_id, u64 nro_address,
u64 nro_size, u64 bss_address, u64 bss_size) {
// Get context.
ProcessContext* context = this->GetContextById(context_id);
@@ -425,31 +421,7 @@ public:
R_TRY(context->ValidateNro(std::addressof(nro_info->module_id), std::addressof(rx_size),
std::addressof(ro_size), std::addressof(rw_size),
nro_info->base_address, nro_size, bss_size));
#ifdef HAS_NCE
if (Settings::IsNceEnabled()) {
auto* process = context->GetProcess();
auto& memory = process->GetMemory();
std::vector<u8> image(total_size);
memory.ReadBlock(nro_info->base_address, image.data(), rx_size);
Kernel::CodeSet::Segment code{.size = static_cast<u32>(rx_size)};
Core::NCE::Patcher patch;
patch.PatchText(image, code);
patch.RelocateAndCopy(nro_info->base_address, code, image, nullptr);
const u64 patch_address = nro_info->base_address + total_size;
const size_t patch_size = patch.GetSectionSize();
constexpr auto permission = Kernel::Svc::MemoryPermission::ReadExecute;
auto* patch_memory = Kernel::KSharedMemory::Create(kernel);
R_TRY(patch_memory->Initialize(kernel, kernel.System().DeviceMemory(), process, permission, permission, patch_size));
std::memcpy(patch_memory->GetPointer(), image.data() + total_size, patch_size);
R_TRY(process->AddSharedMemory(kernel, patch_memory, patch_address, patch_size));
R_TRY(patch_memory->Map(*process, patch_address, patch_size, permission));
memory.WriteBlock(nro_info->base_address, image.data(), rx_size);
}
#endif
// Set NRO perms.
R_TRY(SetNroPerms(context->GetProcess(), nro_info->base_address, rx_size, ro_size,
rw_size + bss_size));
@@ -559,7 +531,7 @@ public:
Result MapManualLoadModuleMemory(Out<u64> out_load_address, ClientProcessId client_pid,
u64 nro_address, u64 nro_size, u64 bss_address, u64 bss_size) {
R_TRY(m_ro->ValidateProcess(m_context_id, *client_pid));
R_RETURN(m_ro->MapManualLoadModuleMemory(system.Kernel(), out_load_address.Get(), m_context_id, nro_address,
R_RETURN(m_ro->MapManualLoadModuleMemory(out_load_address.Get(), m_context_id, nro_address,
nro_size, bss_address, bss_size));
}
@@ -197,15 +197,15 @@ void EmitA32Terminal(biscuit::Assembler& as, EmitContext& ctx, IR::Term::CheckHa
void EmitA32LeafTerminal(biscuit::Assembler& as, EmitContext& ctx, IR::Term::LeafTerminal terminal, IR::LocationDescriptor initial_location, bool is_single_step) {
if (auto const x = std::get_if<IR::Term::ReturnToDispatch>(&terminal))
return EmitA32LeafTerminal(as, ctx, *x, initial_location, is_single_step);
return EmitA32Terminal(as, ctx, *x, initial_location, is_single_step);
if (auto const x = std::get_if<IR::Term::LinkBlock>(&terminal))
return EmitA32LeafTerminal(as, ctx, *x, initial_location, is_single_step);
return EmitA32Terminal(as, ctx, *x, initial_location, is_single_step);
if (auto const x = std::get_if<IR::Term::LinkBlockFast>(&terminal))
return EmitA32LeafTerminal(as, ctx, *x, initial_location, is_single_step);
return EmitA32Terminal(as, ctx, *x, initial_location, is_single_step);
if (auto const x = std::get_if<IR::Term::PopRSBHint>(&terminal))
return EmitA32LeafTerminal(as, ctx, *x, initial_location, is_single_step);
return EmitA32Terminal(as, ctx, *x, initial_location, is_single_step);
if (auto const x = std::get_if<IR::Term::FastDispatchHint>(&terminal))
return EmitA32LeafTerminal(as, ctx, *x, initial_location, is_single_step);
return EmitA32Terminal(as, ctx, *x, initial_location, is_single_step);
UNREACHABLE();
}