early-access version 3690
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8bd9518b52
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ec90002758
@ -1,7 +1,7 @@
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yuzu emulator early access
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=============
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This is the source code for early-access 3689.
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This is the source code for early-access 3690.
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## Legal Notice
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14
externals/nx_tzdb/CMakeLists.txt
vendored
14
externals/nx_tzdb/CMakeLists.txt
vendored
@ -11,16 +11,16 @@ find_program(GNU_DATE date)
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set(CAN_BUILD_NX_TZDB true)
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if ("${GIT}" STREQUAL "GIT-NOTFOUND")
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if (NOT GIT)
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set(CAN_BUILD_NX_TZDB false)
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endif()
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if ("${GNU_MAKE}" STREQUAL "GNU_MAKE-NOTFOUND")
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if (NOT GNU_MAKE)
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set(CAN_BUILD_NX_TZDB false)
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endif()
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if ("${GNU_DATE}" STREQUAL "GNU_DATE-NOTFOUND")
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if (NOT GNU_DATE)
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set(CAN_BUILD_NX_TZDB false)
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endif()
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if ("${CMAKE_SYSTEM_NAME}" STREQUAL "Windows" OR ANDROID)
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if (CMAKE_SYSTEM_NAME STREQUAL "Windows" OR ANDROID)
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# tzdb_to_nx currently requires a posix-compliant host
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# MinGW and Android are handled here due to the executable format being different from the host system
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# TODO (lat9nq): cross-compiling support
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@ -32,14 +32,14 @@ set(NX_TZDB_ARCHIVE "${CMAKE_CURRENT_BINARY_DIR}/${NX_TZDB_VERSION}.zip")
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set(NX_TZDB_ROMFS_DIR "${CMAKE_CURRENT_BINARY_DIR}/nx_tzdb")
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if ((NOT ${CAN_BUILD_NX_TZDB} OR ${YUZU_DOWNLOAD_TIME_ZONE_DATA}) AND NOT EXISTS ${NX_TZDB_ARCHIVE})
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if ((NOT CAN_BUILD_NX_TZDB OR YUZU_DOWNLOAD_TIME_ZONE_DATA) AND NOT EXISTS ${NX_TZDB_ARCHIVE})
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set(NX_TZDB_DOWNLOAD_URL "https://github.com/lat9nq/tzdb_to_nx/releases/download/${NX_TZDB_VERSION}/${NX_TZDB_VERSION}.zip")
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message(STATUS "Downloading time zone data from ${NX_TZDB_DOWNLOAD_URL}...")
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file(DOWNLOAD ${NX_TZDB_DOWNLOAD_URL} ${NX_TZDB_ARCHIVE}
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STATUS NX_TZDB_DOWNLOAD_STATUS)
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list(GET NX_TZDB_DOWNLOAD_STATUS 0 NX_TZDB_DOWNLOAD_STATUS_CODE)
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if (NOT "${NX_TZDB_DOWNLOAD_STATUS_CODE}" STREQUAL "0")
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if (NOT NX_TZDB_DOWNLOAD_STATUS_CODE EQUAL 0)
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message(FATAL_ERROR "Time zone data download failed (status code ${NX_TZDB_DOWNLOAD_STATUS_CODE})")
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endif()
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@ -48,7 +48,7 @@ if ((NOT ${CAN_BUILD_NX_TZDB} OR ${YUZU_DOWNLOAD_TIME_ZONE_DATA}) AND NOT EXISTS
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${NX_TZDB_ARCHIVE}
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DESTINATION
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${NX_TZDB_ROMFS_DIR})
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elseif (${CAN_BUILD_NX_TZDB} AND NOT ${YUZU_DOWNLOAD_TIME_ZONE_DATA})
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elseif (CAN_BUILD_NX_TZDB AND NOT YUZU_DOWNLOAD_TIME_ZONE_DATA)
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add_subdirectory(tzdb_to_nx)
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add_dependencies(nx_tzdb x80e)
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8
externals/nx_tzdb/NxTzdbCreateHeader.cmake
vendored
8
externals/nx_tzdb/NxTzdbCreateHeader.cmake
vendored
@ -15,7 +15,7 @@ set(DIRECTORY_NAME ${HEADER_NAME})
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set(FILE_DATA "")
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foreach(ZONE_FILE ${FILE_LIST})
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if ("${ZONE_FILE}" STREQUAL "\n")
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if (ZONE_FILE STREQUAL "\n")
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continue()
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endif()
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@ -26,13 +26,13 @@ foreach(ZONE_FILE ${FILE_LIST})
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foreach(I RANGE 0 ${ZONE_DATA_LEN} 2)
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math(EXPR BREAK_LINE "(${I} + 2) % 38")
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string(SUBSTRING "${ZONE_DATA}" "${I}" "2" HEX_DATA)
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if ("${HEX_DATA}" STREQUAL "")
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string(SUBSTRING "${ZONE_DATA}" "${I}" 2 HEX_DATA)
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if (NOT HEX_DATA)
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break()
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endif()
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string(APPEND FILE_DATA "0x${HEX_DATA},")
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if ("${BREAK_LINE}" STREQUAL "0")
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if (BREAK_LINE EQUAL 0)
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string(APPEND FILE_DATA "\n")
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else()
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string(APPEND FILE_DATA " ")
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@ -716,6 +716,7 @@ void BufferCache<P>::BindHostIndexBuffer() {
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template <class P>
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void BufferCache<P>::BindHostVertexBuffers() {
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HostBindings<typename P::Buffer> host_bindings;
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bool any_valid{false};
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auto& flags = maxwell3d->dirty.flags;
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for (u32 index = 0; index < NUM_VERTEX_BUFFERS; ++index) {
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const Binding& binding = channel_state->vertex_buffers[index];
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@ -727,17 +728,27 @@ void BufferCache<P>::BindHostVertexBuffers() {
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}
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flags[Dirty::VertexBuffer0 + index] = false;
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host_bindings.min_index = std::min(host_bindings.min_index, index);
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host_bindings.max_index = std::max(host_bindings.max_index, index);
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any_valid = true;
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}
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if (any_valid) {
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host_bindings.max_index++;
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for (u32 index = host_bindings.min_index; index < host_bindings.max_index; index++) {
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flags[Dirty::VertexBuffer0 + index] = false;
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const Binding& binding = channel_state->vertex_buffers[index];
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Buffer& buffer = slot_buffers[binding.buffer_id];
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const u32 stride = maxwell3d->regs.vertex_streams[index].stride;
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const u32 offset = buffer.Offset(binding.cpu_addr);
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host_bindings.buffers.push_back(&buffer);
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host_bindings.offsets.push_back(offset);
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host_bindings.sizes.push_back(binding.size);
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host_bindings.strides.push_back(stride);
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host_bindings.min_index = std::min(host_bindings.min_index, index);
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host_bindings.count++;
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}
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if (host_bindings.count > 0) {
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runtime.BindVertexBuffers(host_bindings);
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}
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}
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@ -790,7 +801,8 @@ void BufferCache<P>::BindHostGraphicsUniformBuffer(size_t stage, u32 index, u32
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!HasFastUniformBufferBound(stage, binding_index) ||
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channel_state->uniform_buffer_binding_sizes[stage][binding_index] != size;
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if (should_fast_bind) {
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// We only have to bind when the currently bound buffer is not the fast version
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// We only have to bind when the currently bound buffer is not the fast
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// version
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channel_state->fast_bound_uniform_buffers[stage] |= 1U << binding_index;
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channel_state->uniform_buffer_binding_sizes[stage][binding_index] = size;
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runtime.BindFastUniformBuffer(stage, binding_index, size);
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@ -893,6 +905,7 @@ void BufferCache<P>::BindHostTransformFeedbackBuffers() {
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return;
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}
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HostBindings<typename P::Buffer> host_bindings;
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bool any_valid{false};
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for (u32 index = 0; index < NUM_TRANSFORM_FEEDBACK_BUFFERS; ++index) {
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const Binding& binding = channel_state->transform_feedback_buffers[index];
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if (maxwell3d->regs.transform_feedback.controls[index].varying_count == 0 &&
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@ -908,9 +921,12 @@ void BufferCache<P>::BindHostTransformFeedbackBuffers() {
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host_bindings.buffers.push_back(&buffer);
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host_bindings.offsets.push_back(offset);
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host_bindings.sizes.push_back(binding.size);
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host_bindings.count++;
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host_bindings.min_index = std::min(host_bindings.min_index, index);
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host_bindings.max_index = std::max(host_bindings.max_index, index);
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any_valid = true;
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}
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if (host_bindings.count > 0) {
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if (any_valid) {
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host_bindings.max_index++;
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runtime.BindTransformFeedbackBuffers(host_bindings);
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}
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}
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@ -1306,8 +1322,8 @@ typename BufferCache<P>::OverlapResult BufferCache<P>::ResolveOverlaps(VAddr cpu
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}
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stream_score += overlap.StreamScore();
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if (stream_score > STREAM_LEAP_THRESHOLD && !has_stream_leap) {
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// When this memory region has been joined a bunch of times, we assume it's being used
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// as a stream buffer. Increase the size to skip constantly recreating buffers.
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// When this memory region has been joined a bunch of times, we assume it's being
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// used as a stream buffer. Increase the size to skip constantly recreating buffers.
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has_stream_leap = true;
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if (expands_right) {
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begin -= CACHING_PAGESIZE * 256;
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@ -1701,16 +1717,17 @@ Binding BufferCache<P>::StorageBufferBinding(GPUVAddr ssbo_addr, u32 cbuf_index,
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const GPUVAddr gpu_addr = gpu_memory->Read<u64>(ssbo_addr);
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const auto size = [&]() {
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const bool is_nvn_cbuf = cbuf_index == 0;
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// The NVN driver buffer (index 0) is known to pack the SSBO address followed by its size.
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// The NVN driver buffer (index 0) is known to pack the SSBO address followed by its
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// size.
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if (is_nvn_cbuf) {
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const u32 ssbo_size = gpu_memory->Read<u32>(ssbo_addr + 8);
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if (ssbo_size != 0) {
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return ssbo_size;
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}
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}
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// Other titles (notably Doom Eternal) may use STG/LDG on buffer addresses in custom defined
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// cbufs, which do not store the sizes adjacent to the addresses, so use the fully
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// mapped buffer size for now.
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// Other titles (notably Doom Eternal) may use STG/LDG on buffer addresses in custom
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// defined cbufs, which do not store the sizes adjacent to the addresses, so use the
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// fully mapped buffer size for now.
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const u32 memory_layout_size = static_cast<u32>(gpu_memory->GetMemoryLayoutSize(gpu_addr));
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return std::min(memory_layout_size, static_cast<u32>(8_MiB));
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}();
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boost::container::small_vector<u64, NUM_VERTEX_BUFFERS> sizes;
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boost::container::small_vector<u64, NUM_VERTEX_BUFFERS> strides;
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u32 min_index{NUM_VERTEX_BUFFERS};
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u32 count{0};
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u32 max_index{0};
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};
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class BufferCacheChannelInfo : public ChannelInfo {
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@ -518,15 +518,15 @@ void BufferCacheRuntime::BindVertexBuffers(VideoCommon::HostBindings<Buffer>& bi
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if (device.IsExtExtendedDynamicStateSupported()) {
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scheduler.Record([bindings = std::move(bindings),
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buffer_handles = std::move(buffer_handles)](vk::CommandBuffer cmdbuf) {
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cmdbuf.BindVertexBuffers2EXT(bindings.min_index, bindings.count, buffer_handles.data(),
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bindings.offsets.data(), bindings.sizes.data(),
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bindings.strides.data());
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cmdbuf.BindVertexBuffers2EXT(
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bindings.min_index, bindings.max_index - bindings.min_index, buffer_handles.data(),
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bindings.offsets.data(), bindings.sizes.data(), bindings.strides.data());
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});
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} else {
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scheduler.Record([bindings = std::move(bindings),
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buffer_handles = std::move(buffer_handles)](vk::CommandBuffer cmdbuf) {
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cmdbuf.BindVertexBuffers(bindings.min_index, bindings.count, buffer_handles.data(),
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bindings.offsets.data());
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cmdbuf.BindVertexBuffers(bindings.min_index, bindings.max_index - bindings.min_index,
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buffer_handles.data(), bindings.offsets.data());
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});
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}
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}
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@ -563,8 +563,9 @@ void BufferCacheRuntime::BindTransformFeedbackBuffers(VideoCommon::HostBindings<
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}
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scheduler.Record([bindings = std::move(bindings),
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buffer_handles = std::move(buffer_handles)](vk::CommandBuffer cmdbuf) {
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cmdbuf.BindTransformFeedbackBuffersEXT(0, bindings.count, buffer_handles.data(),
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bindings.offsets.data(), bindings.sizes.data());
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cmdbuf.BindTransformFeedbackBuffersEXT(0, bindings.max_index - bindings.max_index,
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buffer_handles.data(), bindings.offsets.data(),
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bindings.sizes.data());
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});
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}
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